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Prix indicatifs Avril 2013
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http://www.farnell.com/datasheets/38088.pdf
VOIR EGALEMENT :
XLR-Farnell.htm 18-Apr-2013 08:10 2.2M
Transistor-Farnell.htm 18-Apr-2013 08:06 4.7M
Tension-2-Farnell.htm 18-Apr-2013 08:05 5.2M
Piece-Farnell.htm 18-Apr-2013 08:05 5.2M
Auto-Farnell.htm 18-Apr-2013 08:03 5.7M
Support-Farnell.htm 18-Apr-2013 08:03 5.5M
Sortie-Farnell.htm 18-Apr-2013 08:02 4.2M
Rouge-Farnell.htm 18-Apr-2013 08:01 3.8M
Cable-Farnell.htm 18-Apr-2013 08:00 4.0M
Ventilateur-Farnell.htm 18-Apr-2013 08:00 4.4M
Contact-Farnell.htm 18-Apr-2013 07:59 5.4M
XLR-2-Farnell.htm 18-Apr-2013 07:59 4.6M
Ecrou-Farnell.htm 18-Apr-2013 07:57 3.5M
Nylon-Farnell.htm 18-Apr-2013 07:57 3.6M
Action-Farnell.htm 18-Apr-2013 07:56 4.4M
Gaine-Farnell.htm 18-Apr-2013 07:56 4.1M
Manchon-Farnell.htm 18-Apr-2013 06:50 4.8M
LED-Farnell.htm 17-Apr-2013 18:25 3.4M
Joint-Farnell.htm 17-Apr-2013 18:25 3.4M
Commutateurs-Farnell..> 17-Apr-2013 18:25 2.3M
Analogique-Farnell.htm 17-Apr-2013 18:24 1.2M
CMS-Farnell.htm 17-Apr-2013 18:24 6.6M
Logique-Farnell.htm 17-Apr-2013 18:23 2.1M
Circuit-Farnell.htm 17-Apr-2013 18:23 2.0M
Regulateur-Farnell.htm 17-Apr-2013 18:22 2.1M
Tension-Farnell.htm 17-Apr-2013 18:21 1.4M
Indicateur-Farnell.htm 17-Apr-2013 18:21 1.4M
Capot-Farnell.htm 17-Apr-2013 18:21 1.8M
Embase-Farnell.htm 17-Apr-2013 18:21 7.9M
Convertisseur-Farnel..> 17-Apr-2013 18:20 2.9M
Relais-Farnell.htm 17-Apr-2013 18:19 2.2M
Dominos-Farnell.htm 17-Apr-2013 18:19 3.0M
Coffret-Farnell.htm 17-Apr-2013 18:18 1.9M
Cordon-Farnell.htm 17-Apr-2013 18:18 4.1M
Diode-Farnell.htm 17-Apr-2013 18:17 3.5M
Test-Farnell.htm 17-Apr-2013 18:16 1.2M
Femelle-Farnell.htm 17-Apr-2013 18:16 15M
Cosse-Farnell.htm 17-Apr-2013 18:16 1.5M
Male-Farnell.htm 17-Apr-2013 18:15 17M
Fiche-Farnell.htm 17-Apr-2013 18:11 3.9M
Jeu-Farnell.htm 17-Apr-2013 18:09 1.1M
Suppression-Farnell.htm 17-Apr-2013 18:09 1.4M
Fusible-Farnell.htm 17-Apr-2013 18:09 2.7M
Foret-Farnell.htm 17-Apr-2013 18:09 1.5M
Microcontroleur-Farn..> 17-Apr-2013 18:08 2.5M
Thermo-Farnell.htm 17-Apr-2013 18:08 1.6M
Carte-Farnell.htm 17-Apr-2013 18:08 3.0M
Flash-Farnell.htm 17-Apr-2013 18:08 2.7M
Kit-Farnell.htm 17-Apr-2013 18:07 1.7M
Filtre-Farnell.htm 17-Apr-2013 18:07 2.0M
XLR-Farnell.htm 17-Apr-2013 18:06 2.2M
Module-Farnell.htm 17-Apr-2013 18:06 2.7M
Bague-Farnell.htm 17-Apr-2013 18:05 2.7M
Transistor-Farnell.htm 17-Apr-2013 18:05 4.7M
Prise-Farnell.htm 17-Apr-2013 18:04 2.8M
Radial-Farnell.htm 17-Apr-2013 07:33 1.9M
Capteurs-Farnell.htm 17-Apr-2013 07:26 3.4M
Aimants-Farnell.htm 17-Apr-2013 07:26 3.4M
Accessoires-Farnell.htm 17-Apr-2013 07:25 2.9M
Adaptateurs-Farnell.htm 17-Apr-2013 07:25 3.1M
Alimentation-Farnell..> 17-Apr-2013 07:24 3.7M
Afficheurs-Farnell.htm 17-Apr-2013 07:24 3.1M
Ampli-Farnell.htm 17-Apr-2013 07:23 4.7M
Ampoules-Farnell.htm 17-Apr-2013 07:23 4.7M
Coffrets-Farnell.htm 17-Apr-2013 07:22 5.7M
Transformateurs-Farn..> 17-Apr-2013 07:21 5.0M
Adhesifs-Farnell.htm 17-Apr-2013 07:20 5.4M
Condensateurs-Farnel..> 17-Apr-2013 07:20 7.0M
Capteurs-Farnell.htm 17-Apr-2013 07:26 3.4M
Aimants-Farnell.htm 17-Apr-2013 07:26 3.4M
Accessoires-Farnell.htm 17-Apr-2013 07:25 2.9M
Adaptateurs-Farnell.htm 17-Apr-2013 07:25 3.1M
Alimentation-Farnell..> 17-Apr-2013 07:24 3.7M
Afficheurs-Farnell.htm 17-Apr-2013 07:24 3.1M
Ampli-Farnell.htm 17-Apr-2013 07:23 4.7M
Ampoules-Farnell.htm 17-Apr-2013 07:23 4.7M
Coffrets-Farnell.htm 17-Apr-2013 07:22 5.7M
Transformateurs-Farn..> 17-Apr-2013 07:21 5.0M
Adhesifs-Farnell.htm 17-Apr-2013 07:20 5.4M
Condensateurs-Farnel..> 17-Apr-2013 07:20 7.0M
Radial-Farnell.htm 17-Apr-2013 07:18 1.9M
AOP-Farnell.htm 16-Apr-2013 16:17 4.4M
Dykem-Farnell.htm 16-Apr-2013 12:03 2.9M
Duracell-Farnell.htm 16-Apr-2013 12:02 2.7M
Raspberry-pi-Farnell..> 16-Apr-2013 12:02 2.8M
Kemet-Farnell.htm 16-Apr-2013 11:43 2.7M
Oscillateurs-Farnell..> 16-Apr-2013 11:43 2.9M
Valeurs-Fixes-Divers..> 12-Apr-2013 19:37 3.2M
Produits-ROHM-Farnel..> 12-Apr-2013 19:23 2.7M
Lames-Farnell.htm 12-Apr-2013 19:23 2.8M
INTERSIL-Farnell.htm 12-Apr-2013 19:22 2.7M
RFID-Farnell.htm 12-Apr-2013 19:21 2.7M
intel-Farnell.htm 12-Apr-2013 19:06 2.9M
pressure_ic-Farnell.htm 12-Apr-2013 18:58 2.9M
Galettes-Farnell.htm 12-Apr-2013 18:58 1.3M
CINCH-SD-LB-CONNECTOR-BACKSHELL
CINCH-12-140-BLOC-DE-TERMINAISON12VOIES
CAMDEN-BOSS-BIM2001-11-EMI-RFI-COFFRET-GRIS-BLIND
SIBA-160016-5A-FUSIBLE-5A-250V-RETARDE-4.5X8MM
SERVISOL-200002000-GREASE-SILICONE-50G
CINCH-DBM25S-CONNECTEUR-SUB-MINIATURE
CINCH-50GP1-CARD-EDGE-CONNECTOR
CINCH-JA7784800000L00-FICHE-MALE-12-VOIES
CINCH-5810130045-HEADER-ENCLOSURE-LE-30WAY
ACCESSOIRE-POUR-BORN..> 14-Dec-2012 08:45 2.9K
ACCESSOIRE-POUR-BORN..> 14-Dec-2012 08:45 2.9K
ACCESSOIRE-POUR-BORN..> 14-Dec-2012 08:45 2.9K
ACCESSOIRE-POUR-BORN..> 14-Dec-2012 08:47 2.8K
ACCESSOIRE-POUR-BORN..> 14-Dec-2012 08:47 2.8K
ACCESSOIRE-POUR-BORN..> 14-Dec-2012 08:45 3.1K
ACCESSOIRE-PQ2-10751..> 14-Dec-2012 08:43 2.8K
ACCU.-NIMH-4AH-(2-CE..> 14-Dec-2012 08:50 3.0K
ACCU.-NIMH-4AH--3-CE..> 14-Dec-2012 08:53 3.0K
ACCU.-NIMH-4AH--3-CE..> 14-Dec-2012 08:52 133K
ADAPT-BNC-BHKD-ISOLE..> 14-Dec-2012 08:45 3.2K
ADAPTATEUR-12V-60W-1..> 14-Dec-2012 08:41 3.2K
ADAPTATEUR-24V-60W-1..> 14-Dec-2012 08:39 3.2K
ADAPTATEUR-ATX-20BRO..> 14-Dec-2012 08:47 3.0K
ADAPTATEUR-BNC-BKHD-..> 14-Dec-2012 08:47 3.2K
ADAPTATEUR-BNC-DROIT..> 14-Dec-2012 08:47 3.2K
ADAPTATEUR-BNC-EN-T-..> 14-Dec-2012 08:45 3.2K
ADAPTATEUR-BNC-TYPE-..> 14-Dec-2012 08:48 3.2K
ADAPTATEUR-BNC-VERS-..> 14-Dec-2012 08:41 3.2K
ADAPTATEUR-BNC-VERS-..> 14-Dec-2012 08:36 3.2K
ADAPTATEUR-BNC-VERS-..> 14-Dec-2012 08:41 3.2K
ADAPTATEUR-DE-VOYAGE..> 14-Dec-2012 08:45 2.9K
ADAPTATEUR-DROIT-BNC..> 14-Dec-2012 08:47 3.2K
ADAPTATEUR-DROIT-DOU..> 14-Dec-2012 08:44 3.2K
ADAPTATEUR-MONTAGE-P..> 14-Dec-2012 08:45 2.8K
ADAPTATEUR-PERIPH.-2..> 14-Dec-2012 08:37 3.2K
ADAPTATEUR-POUR-MEMO..> 14-Dec-2012 08:54 2.7K
ADAPTATEUR-POUR-MEMO..> 13-Dec-2012 19:02 2.7K
ADAPTATEUR-SERIE-100..> 14-Dec-2012 08:44 3.1K
ADAPTATEUR-U.FL-FEME..> 14-Dec-2012 08:43 3.2K
ADAPTATEUR-U.FL-MALE..> 14-Dec-2012 08:45 3.2K
ADAPTATEUR-USB-VERS-..> 14-Dec-2012 08:47 2.9K
ADAPTATEURS.htm 04-Jan-2013 18:16 2.9M
ADAPTOR,-MICROMOT-10..> 14-Dec-2012 08:46 3.2K
ADHESIF-DOUBLE-FACE-..> 14-Dec-2012 08:39 3.2K
ADHESIF-SILICONE-90M..> 14-Dec-2012 08:49 3.1K
ADHESIF-SILICONE-310..> 14-Dec-2012 08:48 3.1K
ADHESIVE,-EVOSTICK,-..> 14-Dec-2012 08:50 2.9K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 13-Dec-2012 19:03 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-7.6..> 13-Dec-2012 19:03 3.2K
AFFICHEUR-A-LEDS-10...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-10...> 13-Dec-2012 19:03 3.2K
AFFICHEUR-A-LEDS-10...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-10...> 13-Dec-2012 19:03 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-14...> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-14...> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 13-Dec-2012 19:03 3.2K
AFFICHEUR-A-LEDS-14...> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-14...> 13-Dec-2012 19:03 3.2K
AFFICHEUR-A-LEDS-14...> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-20...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-20...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-20...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-20...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-20...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-20...> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-20...> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-20...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-20...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-20...> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-26...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-26...> 13-Dec-2012 19:03 3.2K
AFFICHEUR-A-LEDS-26...> 14-Dec-2012 08:56 3.2K
AFFICHEUR-A-LEDS-26...> 13-Dec-2012 19:02 3.2K
AFFICHEUR-A-LEDS-26...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-26...> 13-Dec-2012 19:03 3.2K
AFFICHEUR-A-LEDS-26...> 14-Dec-2012 08:57 3.2K
AFFICHEUR-A-LEDS-26...> 13-Dec-2012 19:03 3.2K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:42 2.9K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:41 2.8K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:41 2.8K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:41 2.8K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:44 2.8K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:37 2.8K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:44 2.8K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:44 2.8K
AIMANT-PERMANENT-107..> 14-Dec-2012 08:42 2.9K
ALESOIR-107232.html 14-Dec-2012 08:44 2.8K
ALIMENTATION-10W-MON..> 14-Dec-2012 08:57 3.2K
ALIMENTATION-10W-MON..> 14-Dec-2012 08:54 3.2K
ALIMENTATION-10W-MON..> 14-Dec-2012 08:54 3.2K
ALIMENTATION-10W-MON..> 14-Dec-2012 08:56 3.2K
ALIMENTATION-10W-MON..> 14-Dec-2012 08:57 3.2K
ALIMENTATION-10W-MON..> 13-Dec-2012 19:02 3.2K
ALIMENTATION-15W-MON..> 14-Dec-2012 08:57 3.2K
ALIMENTATION-15W-MON..> 14-Dec-2012 08:56 3.2K
ALIMENTATION-15W-MON..> 13-Dec-2012 19:02 3.2K
ALIMENTATION-20W-CHA..> 14-Dec-2012 08:54 3.2K
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ALIMENTATION-20W-CHA..> 13-Dec-2012 19:02 3.2K
ALIMENTATION-100W-9V..> 14-Dec-2012 08:57 3.2K
ALIMENTATION-100W-9V..> 13-Dec-2012 19:03 3.2K
ALIMENTATION-100W-12..> 14-Dec-2012 08:56 3.2K
ALIMENTATION-100W-12..> 13-Dec-2012 19:02 3.2K
ALIMENTATION-100W-15..> 14-Dec-2012 08:54 3.2K
ALIMENTATION-100W-15..> 13-Dec-2012 19:02 3.2K
ALIMENTATION-100W-24..> 14-Dec-2012 08:54 3.2K
ALIMENTATION-100W-24..> 13-Dec-2012 19:02 3.2K
ALIMENTATION-100W-48..> 14-Dec-2012 08:57 3.2K
ALIMENTATION-100W-48..> 13-Dec-2012 19:03 3.2K
ALIMENTATION-120W-EX..> 14-Dec-2012 08:57 3.2K
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ALIMENTATION-120W-EX..> 13-Dec-2012 19:02 3.2K
ALIMENTATION-500W-24..> 14-Dec-2012 08:56 3.2K
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ALIMENTATION-500W-48..> 14-Dec-2012 08:54 3.2K
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ALIMENTATION-600W-12..> 14-Dec-2012 08:54 3.2K
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ALIMENTATION-600W-24..> 14-Dec-2012 08:56 3.2K
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ALIMENTATION-600W-48..> 14-Dec-2012 08:54 3.2K
ALIMENTATION-600W-48..> 13-Dec-2012 19:02 3.2K
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ALIMENTATION-CA-CC-1..> 14-Dec-2012 08:40 3.2K
ALIMENTATION-CA-CC-1..> 14-Dec-2012 08:39 3.2K
ALIMENTATION-CA-CC-3..> 14-Dec-2012 08:37 3.2K
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AMP.htm 05-Jan-2013 11:08 2.4M
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AMPLI-AUDIO-CMS-1W-B..> 13-Dec-2012 19:02 3.2K
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AMPLI-AUDIO-CMS-DOUB..> 14-Dec-2012 08:49 3.2K
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AMPLI-OP-BASSE-PUISS..> 14-Dec-2012 08:38 3.2K
AMPLI-OP-BIFET-10943..> 14-Dec-2012 08:40 3.2K
AMPLI-OP-CMOS-7611-D..> 14-Dec-2012 08:44 3.2K
AMPLI-OP-CMOS-PROGRA..> 14-Dec-2012 08:40 3.2K
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AMPLI-OP-CMS-1.2-GHZ..> 14-Dec-2012 08:55 3.2K
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AMPLI-OP-CMS-CMOS-PR..> 14-Dec-2012 08:38 3.2K
AMPLI-OP-CMS-DIFFERE..> 14-Dec-2012 08:55 3.2K
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DIODE-ZENER-500MW-12..> 14-Dec-2012 08:38 3.2K
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DRIVER---RECEPTEUR-D..> 14-Dec-2012 08:47 3.2K
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DRIVER-DE-MOSFET-3PH..> 14-Dec-2012 08:48 3.2K
DRIVER-DE-MOSFET-CMS..> 14-Dec-2012 08:46 3.2K
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DRIVER-DE-MOSFET-HI-..> 14-Dec-2012 08:46 3.2K
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DRIVER-DE-MOSFET-HI-..> 14-Dec-2012 08:46 3.2K
DRIVER-DE-MOSFET-HI-..> 14-Dec-2012 08:43 3.2K
DRIVER-DE-MOSFET-HI-..> 14-Dec-2012 08:46 3.2K
DRIVER-DE-MOSFET-HI-..> 14-Dec-2012 08:48 3.2K
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DRIVER-DEMI-PONT-CMS..> 14-Dec-2012 08:55 3.2K
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DRIVER-DEMI-PONT-CMS..> 13-Dec-2012 19:02 3.2K
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EMBASE-1-RANGEE-36-V..> 14-Dec-2012 08:46 3.2K
EMBASE-1-RANGEE-36-V..> 14-Dec-2012 08:49 3.2K
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RESIST.-0.1%-3K01-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-3K4-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-3K16-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-3K32-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-3K57-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-3K65-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-3K74-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-3K83-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-3K92-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-4K02-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-4K22-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-4K42-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-4K53-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-4K75-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-4K99-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-5K9-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-5K11-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-5K23-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-5K62-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-6K04-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-6K49-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-6K81-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-7K15-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-7K32-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-7K68-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-7K87-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-8K06-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-8K25-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-8K45-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-9K31-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-9K53-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-10K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-10K2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-10K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-10R-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-10R2-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-10R5-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-11K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-11K3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-11K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-11R-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-12K4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-12K7-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-12R1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-13K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-13K3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-13K7-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-13R-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-13R3-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-14K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-14K3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-14R-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-15K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-15K4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-15R-108..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-16K2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-16K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-16K9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-16R2-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-17K4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-19K1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-19K6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-19R1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-20K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-20K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-21K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-21K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-22R1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-23K7-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-23R7-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-24K9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-26K1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-27K4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-27R4-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-28K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-28R-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-28R7-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-29R4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-30K1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-30K9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-30R1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-30R9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-31K6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-31R6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-32K4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-33R2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-34K8-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-34R-108..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-35K7-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-36K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-37K4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-38K3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-38R3-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-39K2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-39R2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-40R2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-42K2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-42R2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-44K2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-45K3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-45R3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-46K4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-47K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-49K9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-49R9-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-51K1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-51R1-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-52K3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-52R3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-53K6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-53R6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-57K6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-59R-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-60R4-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-61K9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-61R9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-63R4-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-64R9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-66K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-66R5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-71K5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-71R5-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-73K2-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-75K-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-75R-108..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-76R8-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-78K7-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-78R7-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-80K6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-80R6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-82R5-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-86K6-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-88R7-10..> 14-Dec-2012 08:52 3.1K
RESIST.-0.1%-90K9-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-93R1-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-95R3-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-100K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-102K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-102R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-105K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-107K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-110K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-110R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-113R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-115K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-115R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-118R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-121K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-121R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-127K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-130K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-130R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-137K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-137R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-143R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-147K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-150K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-154R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-162K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-162R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-165K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-169K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-174K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-182K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-182R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-191R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-196K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-196R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-200K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-200R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-210R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-215R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-221K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-221R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-226K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-226R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-232R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-237K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-243K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-243R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-249K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-261K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-267R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-274K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-280K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-280R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-301K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-309K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-309R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-332R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-340K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-340R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-348K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-357R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-374K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-383R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-402K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-422R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-432K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-464K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-499R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-511K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-562K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-562R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-576K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-576R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-590K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-604R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-619K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-619R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-634R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-649K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-649R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-665K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-665R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-681R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-698R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-715R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-787R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-806R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-825K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-825R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-887K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-909K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-953K-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1%-976R-10..> 14-Dec-2012 08:51 3.1K
RESIST.-0.1--1K02-10..> 14-Dec-2012 08:41 3.1K
RESIST.-0.1--1K07-10..> 14-Dec-2012 08:41 3.1K
RESIST.-0.1--1K1-108..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--1K3-108..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--1K4-108..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--1K13-10..> 14-Dec-2012 08:41 3.1K
RESIST.-0.1--1K18-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--1K21-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--1K27-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--1K37-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--1K43-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--1K47-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--1K54-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--1K62-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--1K65-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--1K69-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--1K74-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--1K82-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--1K96-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--1M0-108..> 14-Dec-2012 08:37 3.1K
RESIST.-0.1--2K0-108..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--2K05-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--2K1-108..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--2K21-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--2K37-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--2K43-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--2K49-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--2K67-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--2K87-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--3K01-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--3K4-108..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--3K16-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--3K32-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--3K57-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--3K65-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--3K74-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--3K83-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--3K92-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--4K02-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--4K22-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--4K42-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--4K53-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--4K75-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--4K99-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--5K9-108..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--5K11-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--5K23-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--5K62-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--6K04-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--6K49-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--6K81-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--7K15-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--7K32-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--7K68-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--7K87-10..> 14-Dec-2012 08:38 3.1K
RESIST.-0.1--8K06-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--8K25-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--8K45-10..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--9K31-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--9K53-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--10K-108..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--10K2-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--10K5-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--10R-108..> 14-Dec-2012 08:41 3.1K
RESIST.-0.1--10R2-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--10R5-10..> 14-Dec-2012 08:42 3.1K
RESIST.-0.1--11K-108..> 14-Dec-2012 08:40 3.1K
RESIST.-0.1--11K3-10..> 14-Dec-2012 08:40 3.1K
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GAL20V8 High Performance E2 CMOS PLD Generic Array Logic™ 1 2 28 I I/CLK NC I I I I I I NC NC NC GND I I I/OE I I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I Vcc I I/O/Q 4 5 7 9 11 12 14 16 18 19 21 23 25 26 PLCC 1 12 13 I/CLK 24 I I I I I I I I I I GND Vcc I I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I I/OE 6 18 GAL20V8 Top View GAL 20V8 DIP Copyright © 2006 Lattice Semiconductor Corp. All brand or product names are trademarks or registered trademarks of their respective holders. The specifications and information herein are subject to change without notice. LATTICE SEMICONDUCTOR CORP., 5555 Northeast Moore Ct., Hillsboro, Oregon 97124, U.S.A. August 2006 Tel. (503) 268-8000; 1-800-LATTICE; FAX (503) 268-8556; http://www.latticesemi.com 20v8_07 Features • HIGH PERFORMANCE E2 CMOS® TECHNOLOGY — 5 ns Maximum Propagation Delay — Fmax = 166 MHz — 4 ns Maximum from Clock Input to Data Output — UltraMOS® Advanced CMOS Technology • 50% to 75% REDUCTION IN POWER FROM BIPOLAR — 75mA Typ Icc on Low Power Device — 45mA Typ Icc on Quarter Power Device • ACTIVE PULL-UPS ON ALL PINS • E2 CELL TECHNOLOGY — Reconfigurable Logic — Reprogrammable Cells — 100% Tested/100% Yields — High Speed Electrical Erasure (<100ms) — 20 Year Data Retention • EIGHT OUTPUT LOGIC MACROCELLS — Maximum Flexibility for Complex Logic Designs — Programmable Output Polarity — Also Emulates 24-pin PAL® Devices with Full Function/ Fuse Map/Parametric Compatibility • PRELOAD AND POWER-ON RESET OF ALL REGISTERS — 100% Functional Testability • APPLICATIONS INCLUDE: — DMA Control — State Machine Control — High Speed Graphics Processing — Standard Logic Speed Upgrade • ELECTRONIC SIGNATURE FOR IDENTIFICATION • LEAD-FREE PACKAGE OPTIONS Description The GAL20V8C, at 5ns maximum propagation delay time, combines a high performance CMOS process with Electrically Erasable (E2 ) floating gate technology to provide the highest speed performance available in the PLD market. High speed erase times (<100ms) allow the devices to be reprogrammed quickly and efficiently. The generic architecture provides maximum design flexibility by allowing the Output Logic Macrocell (OLMC) to be configured by the user. An important subset of the many architecture configurations possible with the GAL20V8 are the PAL architectures listed in the table of the macrocell description section. GAL20V8 devices are capable of emulating any of these PAL architectures with full function/fuse map/parametric compatibility. Unique test circuitry and reprogrammable cells allow complete AC, DC, and functional testing during manufacture. As a result, Lattice Semiconductor delivers 100% field programmability and functionality of all GAL products. In addition, 100 erase/write cycles and data retention in excess of 20 years are specified. Functional Block Diagram Pin Configuration I CLK I I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I/O/Q I I I I I I I I I I I/OE I/CLK OE 8 8 8 8 8 8 8 8 OLMC OLMC OLMC OLMC OLMC OLMC OLMC IMUX IMUX PROGRAMMABLE AND-ARRAY (64 X 40) OLMC Lead-Free Package Options Available!2 Specifications GAL20V8 T ) pd (ns) T ) su (ns T ) co (ns I # cc (mA O e rdering Packag 1 0 0 17 0 13 G CI AL20V8 -10LJ 28-Lead PLCC 1 I 30 G P AL20V8B-10LP 24-Pin Plastic DI 1 I 30 G C AL20V8B-10LJ 28-Lead PLC 1 2 5 1 01 0 1 I 3 G P AL20V8B-15LP 24-Pin Plastic DI 1 I 30 G C AL20V8B-15LJ 28-Lead PLC 2 3 0 1 11 56 I G P AL20V8B-20QP 24-Pin Plastic DI 6 I 5 G C AL20V8B-20QJ 28-Lead PLC 2 5 5 1 21 56 I G P AL20V8B-25QP 24-Pin Plastic DI 6 I 5 G C AL20V8B-25QJ 28-Lead PLC 1 I 30 G P AL20V8B-25LP 24-Pin Plastic DI 1 I 30 G C AL20V8B-25LJ 28-Lead PLC Industrial Grade Specifications T ) pd (ns) T ) su (ns T ) co (ns I # cc (mA O e rdering Packag 534 5 1 J 1 G C AL20V8C-5L 28-Lead PLC 7 75 5 .5 11 G CJ AL20V8 -7L 28-Lead PLCC 1 P 15 G P AL20V8B-7L 24-Pin Plastic DI 1 0 0 17 5 11 G CJ AL20V8 -10L 28-Lead PLCC 1 P 15 G P AL20V8B-10L 24-Pin Plastic DI 1 2 5 1 01 55 P G P AL20V8B-15Q 24-Pin Plastic DI 5 J 5 G C AL20V8B-15Q 28-Lead PLC 9 P 0 G P AL20V8B-15L 24-Pin Plastic DI 9 J 0 G C AL20V8B-15L 28-Lead PLC 2 5 5 1 21 55 P G P AL20V8B-25Q 24-Pin Plastic DI 5 J 5 G C AL20V8B-25Q 28-Lead PLC 9 P 0 G P AL20V8B-25L 24-Pin Plastic DI 9 J 0 G C AL20V8B-25L 28-Lead PLC GAL20V8 Ordering Information Conventional Packaging Commercial Grade SpecificationsSpecifications GAL20V8 3 Part Number Description Industrial Grade Specifications Lead-Free Packaging Commercial Grade Specifications T ) pd (ns) T ) su (ns T ) co (ns I # cc (mA O e rdering Packag 534 5 1 N 1 G C AL20V8C-5LJ Lead-Free 28-Lead PLC 7 75 5 .5 11 G CN AL20V8 -7LJ L C ead-Free 28-Lead PLC 1 N 15 G P AL20V8B-7LP Lead-Free 24-Pin Plastic DI 1 0 0 17 5 11 G CN AL20V8 -10LJ L C ead-Free 28-Lead PLC 1 N 15 G P AL20V8B-10LP Lead-Free 24-Pin Plastic DI 1 2 5 1 01 55 N G C AL20V8B-15QJ Lead-Free 28-Lead PLC 5 N 5 G P AL20V8B-15QP Lead-Free 24-Pin Plastic DI 9 N 0 G C AL20V8B-15LJ Lead-Free 28-Lead PLC 9 N 0 G P AL20V8B-15LP Lead-Free 24-Pin Plastic DI 2 5 5 1 21 55 N G C AL20V8B-25QJ Lead-Free 28-Lead PLC 5 N 5 G P AL20V8B-25QP Lead-Free 24-Pin Plastic DI 9 N 0 G e AL20V8B-25LJ L C ead-Fre 28-Lead PLC 9 N 0 G P AL20V8B-25LP Lead-Free 24-Pin Plastic DI T ) pd (ns) T ) su (ns T ) co (ns I # cc (mA O e rdering Packag 1 0 0 17 0 13 G CI AL20V8 -10LJN Lead-Free 28-Pin Plastic DIP 1 I 30 G P AL20V8B-10LPN Lead-Free 24-Pin Plastic DI 1 2 5 1 01 0 1 I 3 G C AL20V8B-15LJN Lead-Free 28-Lead PLC 1 I 30 G P AL20V8B-15LPN Lead-Free 24-Pin Plastic DI 2 3 0 1 11 56 I G C AL20V8B-20QJN Lead-Free 28-Lead PLC 6 I 5 G P AL20V8B-20QPN Lead-Free 24-Pin Plastic DI 2 5 5 1 21 56 I G C AL20V8B-25QJN Lead-Free 28-Lead PLC 6 I 5 G P AL20V8B-25QPN Lead-Free 24-Pin Plastic DI 1 I 30 G C AL20V8B-25LJN Lead-Free 28-Lead PLC 1 I 30 G P AL20V8B-25LPN Lead-Free 24-Pin Plastic DI Blank = Commercial I = Industrial Grade L = Low Power Power Package Q = Quarter Power Speed (ns) XXXXXXXX XX X XX X Device Name _ P = Plastic DIP PN = Lead-free Plastic DIP J = PLCC JN = Lead-free PLCC GAL20V8C GAL20V8B4 Specifications GAL20V8 The following discussion pertains to configuring the output logic macrocell. It should be noted that actual implementation is accomplished by development software/hardware and is completely transparent to the user. There are three global OLMC configuration modes possible: simple, complex, and registered. Details of each of these modes is illustrated in the following pages. Two global bits, SYN and AC0, control the mode configuration for all macrocells. The XOR bit of each macrocell controls the polarity of the output in any of the three modes, while the AC1 bit of each of the macrocells controls the input/output configuration. These two global and 16 individual architecture bits define all possible configurations in a GAL20V8 . The information given on these architecture bits is only to give a better understanding of the device. Compiler software will transparently set these architecture bits from the pin definitions, so the user should not need to directly manipulate these architecture bits. The following is a list of the PAL architectures that the GAL20V8 can emulate. It also shows the OLMC mode under which the devices emulate the PAL architecture. Software compilers support the three different global OLMC modes as different device types. These device types are listed in the table below. Most compilers have the ability to automatically select the device type, generally based on the register usage and output enable (OE) usage. Register usage on the device forces the software to choose the registered mode. All combinatorial outputs with OE controlled by the product term will force the software to choose the complex mode. The software will choose the simple mode only when all outputs are dedicated combinatorial without OE control. The different device types listed in the table can be used to override the automatic device selection by the software. For further details, refer to the compiler software manuals. When using compiler software to configure the device, the user must pay special attention to the following restrictions in each mode. In registered mode pin 1 and pin 13 (DIP pinout) are permanently configured as clock and output enable, respectively. These pins cannot be configured as dedicated inputs in the registered mode. In complex mode pin 1 and pin 13 become dedicated inputs and use the feedback paths of pin 22 and pin 15 respectively. Because of this feedback path usage, pin 22 and pin 15 do not have the feedback option in this mode. In simple mode all feedback paths of the output pins are routed via the adjacent pins. In doing so, the two inner most pins ( pins 18 and 19) will not have the feedback option as these pins are always configured as dedicated combinatorial output. Registered Complex Simple Auto Mode Select ABEL P20V8R P20V8C P20V8AS P20V8 CUPL G20V8MS G20V8MA G20V8AS G20V8 LOG/iC GAL20V8_R GAL20V8_C7 GAL20V8_C8 GAL20V8 OrCAD-PLD "Registered"1 "Complex"1 "Simple"1 GAL20V8A PLDesigner P20V8R2 P20V8C2 P20V8C2 P20V8A TANGO-PLD G20V8R G20V8C G20V8AS3 G20V8 1) Used with Configuration keyword. 2) Prior to Version 2.0 support. 3) Supported on Version 1.20 or later. PAL Architectures GAL20V8 Emulated by GAL20V8 Global OLMC Mode 20R8 Registered 20R6 Registered 20R4 Registered 20RP8 Registered 20RP6 Registered 20RP4 Registered 20L8 Complex 20H8 Complex 20P8 Complex 14L8 Simple 16L6 Simple 18L4 Simple 20L2 Simple 14H8 Simple 16H6 Simple 18H4 Simple 20H2 Simple 14P8 Simple 16P6 Simple 18P4 Simple 20P2 Simple Output Logic Macrocell (OLMC) Compiler Support for OLMCSpecifications GAL20V8 5 In the Registered mode, macrocells are configured as dedicated registered outputs or as I/O functions. Architecture configurations available in this mode are similar to the common 20R8 and 20RP4 devices with various permutations of polarity, I/O and register placement. All registered macrocells share common clock and output enable control pins. Any macrocell can be configured as registered or I/ O. Up to eight registers or up to eight I/Os are possible in this mode. Dedicated input or output functions can be implemented as subsets of the I/O function. Registered outputs have eight product terms per output. I/Os have seven product terms per output. The JEDEC fuse numbers, including the User Electronic Signature (UES) fuses and the Product Term Disable (PTD) fuses, are shown on the logic diagram on the following page. Registered Configuration for Registered Mode - SYN=0. - AC0=1. - XOR=0 defines Active Low Output. - XOR=1 defines Active High Output. - AC1=0 defines this output configuration. - Pin 1 controls common CLK for the registered outputs. - Pin 13 controls common OE for the registered outputs. - Pin 1 & Pin 13 are permanently configured as CLK & OE for registered output configuration. Combinatorial Configuration for Registered Mode - SYN=0. - AC0=1. - XOR=0 defines Active Low Output. - XOR=1 defines Active High Output. - AC1=1 defines this output configuration. - Pin 1 & Pin 13 are permanently configured as CLK & OE for registered output configuration.. Note: The development software configures all of the architecture control bits and checks for proper pin usage automatically. D Q Q CLK OE XOR XOR Registered Mode6 Specifications GAL20V8 DIP (PLCC) Package Pinouts OE 0000 PTD 2640 0280 0320 0600 0640 0920 0960 1240 1280 1560 1600 1880 1920 2200 2240 2520 OLMC OLMC XOR-2567 AC1-2639 OLMC XOR-2566 AC1-2638 OLMC XOR-2565 AC1-2637 OLMC XOR-2564 AC1-2636 XOR-2563 AC1-2635 OLMC XOR-2562 AC1-2634 OLMC OLMC XOR-2561 AC1-2633 XOR-2560 AC1-2632 11(13) 10(12) 9(11) 8(10) 7(9) 6(7) 5(6) 4(5) 3(4) 2(3) 1(2) 23(27) 22(26) 21(25) 20(24) 19(23) 18(21) 17(20) 16(19) 15(18) 14(17) 13(16) SYN-2704 AC0-2705 2703 0 4 8 12 16 20 24 28 32 36 Registered Mode Logic DiagramSpecifications GAL20V8 7 In the Complex mode, macrocells are configured as output only or I/O functions. Architecture configurations available in this mode are similar to the common 20L8 and 20P8 devices with programmable polarity in each macrocell. Up to six I/Os are possible in this mode. Dedicated inputs or outputs can be implemented as subsets of the I/O function. The two outer most macrocells (pins 15 & 22) do not have input capability. Designs requiring eight I/Os can be implemented in the Registered mode. All macrocells have seven product terms per output. One product term is used for programmable output enable control. Pins 1 and 13 are always available as data inputs into the AND array. The JEDEC fuse numbers including the UES fuses and PTD fuses are shown on the logic diagram on the following page. Note: The development software configures all of the architecture control bits and checks for proper pin usage automatically. Combinatorial I/O Configuration for Complex Mode - SYN=1. - AC0=1. - XOR=0 defines Active Low Output. - XOR=1 defines Active High Output. - AC1=1. - Pin 16 through Pin 21 are configured to this function. Combinatorial Output Configuration for Complex Mode - SYN=1. - AC0=1. - XOR=0 defines Active Low Output. - XOR=1 defines Active High Output. - AC1=1. - Pin 15 and Pin 22 are configured to this function. XOR XOR Complex Mode8 Specifications GAL20V8 DIP (PLCC) Package Pinouts 0000 PTD 2640 0280 0320 0600 0640 0920 0960 1240 1280 1560 1600 1880 1920 2200 2240 2520 SYN-2704 AC0-2705 OLMC OLMC OLMC OLMC OLMC OLMC OLMC OLMC 23(27) 22(26) 21(25) 20(24) 19(23) 18(21) 17(20) 16(19) 15(18) 14(17) 13(16) 11(13) 10(12) 9(11) 8(10) 7(9) 6(7) 5(6) 4(5) 3(4) 2(3) 1(2) 2703 XOR-2567 AC1-2639 XOR-2566 AC1-2638 XOR-2565 AC1-2637 XOR-2564 AC1-2636 XOR-2563 AC1-2635 XOR-2562 AC1-2634 XOR-2561 AC1-2633 XOR-2560 AC1-2632 0 4 8 12 16 20 24 28 32 36 Complex Mode Logic DiagramSpecifications GAL20V8 9 Combinatorial Output with Feedback Configuration for Simple Mode - SYN=1. - AC0=0. - XOR=0 defines Active Low Output. - XOR=1 defines Active High Output. - AC1=0 defines this configuration. - All OLMC except pins 18 & 19 can be configured to this function. Combinatorial Output Configuration for Simple Mode - SYN=1. - AC0=0. - XOR=0 defines Active Low Output. - XOR=1 defines Active High Output. - AC1=0 defines this configuration. - Pins 18 & 19 are permanently configured to this function. Dedicated Input Configuration for Simple Mode - SYN=1. - AC0=0. - XOR=0 defines Active Low Output. - XOR=1 defines Active High Output. - AC1=1 defines this configuration. - All OLMC except pins 18 & 19 can be configured to this function. Note: The development software configures all of the architecture control bits and checks for proper pin usage automatically. In the Simple mode, pins are configured as dedicated inputs or as dedicated, always active, combinatorial outputs. Architecture configurations available in this mode are similar to the common 14L8 and 16P6 devices with many permutations of generic output polarity or input choices. All outputs in the simple mode have a maximum of eight product terms that can control the logic. In addition, each output has programmable polarity. Pins 1 and 13 are always available as data inputs into the AND array. The “center” two macrocells (pins 18 and 19) cannot be used in the input configuration. The JEDEC fuse numbers including the UES fuses and PTD fuses are shown on the logic diagram on the following page. Vcc XOR Vcc XOR Simple Mode10 Specifications GAL20V8 DIP (PLCC) Package Pinouts 0000 PTD 2640 0280 0320 0600 0640 0920 0960 1240 1280 1560 1600 1880 1920 2200 2240 2520 OLMC OLMC OLMC OLMC OLMC OLMC OLMC XOR-2560 AC1-2632 OLMC XOR-2561 AC1-2633 XOR-2562 AC1-2634 XOR-2563 AC1-2635 XOR-2564 AC1-2636 XOR-2565 AC1-2637 XOR-2566 AC1-2638 XOR-2567 AC1-2639 23(27) 22(26) 21(25) 20(24) 19(23) 18(21) 17(20) 16(19) 15(18) 14(17) 13(16) SYN-2704 AC0-2705 2703 11(13) 10(12) 9(11) 8(10) 7(9) 6(7) 5(6) 4(5) 3(4) 2(3) 1(2) 0 4 8 12 16 20 24 28 32 36 Simple Mode Logic DiagramSpecifications GAL20V8 11 GAL20V8C VIL Input Low Voltage Vss – 0.5 — 0.8 V VIH Input High Voltage 2.0 — Vcc+1 V IIL1 Input or I/O Low Leakage Current 0V ≤ VIN ≤ VIL (MAX.) — — –100 μA IIH Input or I/O High Leakage Current 3.5V≤ VIN ≤ VCC — — 10 μA VOL Output Low Voltage IOL = MAX. Vin = VIL or VIH — — 0.5 V VOH Output High Voltage IOH = MAX. Vin = VIL or VIH 2.4 — — V IOL Low Level Output Current — — 16 mA IOH High Level Output Current — — –3.2 mA IOS2 Output Short Circuit Current VCC = 5V VOUT = 0.5V TA = 25°C –30 — –150 mA Recommended Operating Conditions Commercial Devices: Ambient Temperature (TA ) ............................... 0 to 75°C Supply voltage (VCC) with Respect to Ground ..................... +4.75 to +5.25V Industrial Devices: Ambient Temperature (TA ) ........................... –40 to 85°C Supply voltage (VCC) with Respect to Ground ..................... +4.50 to +5.50V SYMBOL PARAMETER CONDITION MIN. TYP.3 MAX. UNITS COMMERCIAL ICC Operating Power VIL = 0.5V VIH = 3.0V L -5/-7/-10 — 75 115 mA Supply Current ftoggle = 15MHz Outputs Open INDUSTRIAL ICC Operating Power VIL = 0.5V VIH = 3.0V L-10 — 75 130 mA Supply Current ftoggle = 15MHz Outputs Open 1) The leakage current is due to the internal pull-up resistor on all pins. See Input Buffer section for more information. 2) One output at a time for a maximum duration of one second. Vout = 0.5V was selected to avoid test problems caused by tester ground degradation. Characterized but not 100% tested. 3) Typical values are at Vcc = 5V and TA = 25 °C Absolute Maximum Ratings(1) Supply voltage VCC ...................................... –0.5 to +7V Input voltage applied .......................... –2.5 to VCC +1.0V Off-state output voltage applied ......... –2.5 to VCC +1.0V Storage Temperature ................................ –65 to 150°C Ambient Temperature with Power Applied ........................................ –55 to 125°C 1.Stresses above those listed under the “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress only ratings and functional operation of the device at these or at any other conditions above those indicated in the operational sections of this specification is not implied (while programming, follow the programming specifications). DC Electrical Characteristics Over Recommended Operating Conditions (Unless Otherwise Specified)12 Specifications GAL20V8C GAL20V8 -7 MIN. MAX. -10 MIN. MAX. tpd A Input or I/O to 8 outputs switching 1 5 3 7.5 3 10 ns Comb. Output 1 output switching — — — 7 — — ns tco A Clock to Output Delay 1 4 2 5 2 7 ns tcf2 — Clock to Feedback Delay — 3 — 3 — 6 ns tsu — Setup Time, Input or Feedback before Clock↑ 3 — 5 — 7.5 — ns th — Hold Time, Input or Feedback after Clock↑ 0 — 0 — 0 — ns A Maximum Clock Frequency with 142.8 — 100 — 66.7 — MHz External Feedback, 1/(tsu + tco) fmax3 A Maximum Clock Frequency with 166 — 125 — 71.4 — MHz Internal Feedback, 1/(tsu + tcf) A Maximum Clock Frequency with 166 — 125 — 83.3 — MHz No Feedback twh — Clock Pulse Duration, High 3 — 4 — 6 — ns twl — Clock Pulse Duration, Low 3 — 4 — 6 — ns ten B Input or I/O to Output Enabled 1 6 3 9 3 10 ns B OE to Output Enabled 1 6 2 6 2 10 ns tdis C Input or I/O to Output Disabled 1 5 2 9 2 10 ns C OE to Output Disabled 1 5 1.5 6 1.5 10 ns PARAMETER UNITS TEST COND1 . DESCRIPTION COM COM COM/IND -5 MIN. MAX. 1) Refer to Switching Test Conditions section. 2) Calculated from fmax with internal feedback. Refer to fmax Descriptions section. 3) Refer to fmax Descriptions section. Characterized initially and after any design or process changes that may affect these parameters. SYMBOL PARAMETER MAXIMUM* UNITS TEST CONDITIONS CI Input Capacitance 8 pF VCC = 5.0V, VI = 2.0V CI/O I/O Capacitance 8 pF VCC = 5.0V, VI/O = 2.0V *Characterized but not 100% tested AC Switching Characteristics Over Recommended Operating Conditions Capacitance (TA = 25°C, f = 1.0 MHz)Specifications GAL20V8 13 GAL20V8B INDUSTRIAL ICC Operating Power VIL = 0.5V VIH = 3.0V L -10/-15/-25 — 75 130 mA Supply Current ftoggle = 15MHz Outputs Open Q -20/-25 — 45 65 mA COMMERCIAL ICC Operating Power VIL = 0.5V VIH = 3.0V L -7/-10 — 75 115 mA Supply Current ftoggle = 15MHz Outputs Open L -15/-25 — 75 90 mA Q -15/-25 — 45 55 mA Recommended Operating Conditions Commercial Devices: Ambient Temperature (TA ) ............................... 0 to 75°C Supply voltage (VCC) with Respect to Ground ..................... +4.75 to +5.25V Industrial Devices: Ambient Temperature (TA ) ........................... –40 to 85°C Supply voltage (VCC) with Respect to Ground ..................... +4.50 to +5.50V DC Electrical Characteristics Over Recommended Operating Conditions (Unless Otherwise Specified) SYMBOL PARAMETER CONDITION MIN. TYP.3 MAX. UNITS VIL Input Low Voltage Vss – 0.5 — 0.8 V VIH Input High Voltage 2.0 — Vcc+1 V IIL1 Input or I/O Low Leakage Current 0V ≤ VIN ≤ VIL (MAX.) — — –100 μA IIH Input or I/O High Leakage Current 3.5V ≤ VIN ≤ VCC — — 10 μA VOL Output Low Voltage IOL = MAX. Vin = VIL or VIH — — 0.5 V VOH Output High Voltage IOH = MAX. Vin = VIL or VIH 2.4 — — V IOL Low Level Output Current — — 24 mA IOH High Level Output Current — — –3.2 mA IOS2 Output Short Circuit Current VCC = 5V VOUT = 0.5V TA = 25°C –30 — –150 mA 1) The leakage current is due to the internal pull-up resistor on all pins. See Input Buffer section for more information. 2) One output at a time for a maximum duration of one second. Vout = 0.5V was selected to avoid test problems caused by tester ground degradation. Characterized but not 100% tested. 3) Typical values are at Vcc = 5V and TA = 25 °C Absolute Maximum Ratings(1) Supply voltage VCC ...................................... –0.5 to +7V Input voltage applied .......................... –2.5 to VCC +1.0V Off-state output voltage applied ......... –2.5 to VCC +1.0V Storage Temperature ................................ –65 to 150°C Ambient Temperature with Power Applied ........................................ –55 to 125°C 1.Stresses above those listed under the “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress only ratings and functional operation of the device at these or at any other conditions above those indicated in the operational sections of this specification is not implied (while programming, follow the programming specifications).14 Specifications GAL20V8B GAL20V8 tpd A Input or I/O to 8 outputs switching 3 7.5 3 10 3 15 3 20 3 25 ns Comb. Output 1 output switching — 7 — — — — — — — — ns tco A Clock to Output Delay 2 5 2 7 2 10 2 11 2 12 ns tcf2 — Clock to Feedback Delay — 3 — 6 — 8 — 9 — 10 ns tsu — Setup Time, Input or Fdbk before Clk↑ 7 — 10 — 12 — 13 — 15 — ns th — Hold Time, Input or Fdbk after Clk↑ 0 — 0 — 0 — 0 — 0 — ns A Maximum Clock Frequency with 83.3 — 58.8 — 45.5 — 41.6 — 37 — MHz External Feedback, 1/(tsu + tco) fmax3 A Maximum Clock Frequency with 100 — 62.5 — 50 — 45.4 — 40 — MHz Internal Feedback, 1/(tsu + tcf) A Maximum Clock Frequency with 100 — 62.5 — 62.5 — 50 — 41.7 — MHz No Feedback twh — Clock Pulse Duration, High 5 — 8 — 8 — 10 — 12 — ns twl — Clock Pulse Duration, Low 5 — 8 — 8 — 10 — 12 — ns ten B Input or I/O to Output Enabled 3 9 3 10 — 15 — 18 — 25 ns B OE to Output Enabled 2 6 2 10 — 15 — 18 — 20 ns tdis C Input or I/O to Output Disabled 2 9 2 10 — 15 — 18 — 25 ns C OE to Output Disabled 1.5 6 1.5 10 — 15 — 18 — 20 ns UNITS 1) Refer to Switching Test Conditions section. 2) Calculated from fmax with internal feedback. Refer to fmax Descriptions section. 3) Refer to fmax Descriptions section. -25 MIN. MAX. -20 MIN. MAX. -15 MIN. MAX. -10 MIN. MAX. PARAM. DESCRIPTION TEST COND1 . -7 MIN. MAX. SYMBOL PARAMETER MAXIMUM* UNITS TEST CONDITIONS CI Input Capacitance 8 pF VCC = 5.0V, VI = 2.0V CI/O I/O Capacitance 8 pF VCC = 5.0V, VI/O = 2.0V *Characterized but not 100% tested. COM COM / IND COM / IND IND COM / IND AC Switching Characteristics Over Recommended Operating Conditions Capacitance (TA = 25°C, f = 1.0 MHz)Specifications GAL20V8 15 Combinatorial Output Registered Output Input or I/O to Output Enable/Disable OE to Output Enable/Disable fmax with Feedback Clock Width COMBINATIONAL OUTPUT VALID INPUT INPUT or I/O FEEDBACK tpd CLK (w/o fb) 1/fmax twh twl INPUT or I/O FEEDBACK REGISTERED OUTPUT CLK VALID INPUT (external fdbk) tsu tco th 1/fmax OE REGISTERED OUTPUT tdis ten CLK REGISTERED FEEDBACK tcf tsu 1/fmax (internal fdbk) COMBINATIONAL OUTPUT INPUT or I/O FEEDBACK tdis ten Switching Waveforms16 Specifications GAL20V8 fmax with Internal Feedback 1/(tsu+tcf) Note: tcf is a calculated value, derived by subtracting tsu from the period of fmax w/internal feedback (tcf = 1/fmax - tsu). The value of tcf is used primarily when calculating the delay from clocking a register to a combinatorial output (through registered feedback), as shown above. For example, the timing from clock to a combinatorial output is equal to tcf + tpd. fmax with No Feedback Note:fmax with no feedback may be less than 1/(twh + twl). This is to allow for a clock duty cycle of other than 50%. GAL20V8C Output Load Conditions (see figure) Test Condition R1 R2 CL A 200Ω 200Ω 50pF B Active High ∞ 200Ω 50pF Active Low 200Ω 200Ω 50pF C Active High ∞ 200Ω 5pF Active Low 200Ω 200Ω 5pF TEST POINT C *L FROM OUTPUT (O/Q) UNDER TEST +5V *CL INCLUDES TEST FIXTURE AND PROBE CAPACITANCE R2 R1 GAL20V8B Output Load Conditions (see figure) Test Condition R1 R2 CL A 200Ω 390Ω 50pF B Active High ∞ 390Ω 50pF Active Low 200Ω 390Ω 50pF C Active High ∞ 390Ω 5pF Active Low 200Ω 390Ω 5pF CLK REGISTER LOGIC ARRAY tcf tpd fmax with External Feedback 1/(tsu+tco) Note:fmax with external feedback is calculated from measured tsu and tco. REGISTER LOGIC ARRAY ts u tc o CLK Input Pulse Levels GND to 3.0V Input Rise and GAL20V8B 2 – 3ns 10% – 90% Fall Times GAL20V8C 1.5ns 10% – 90% Input Timing Reference Levels 1.5V Output Timing Reference Levels 1.5V Output Load See Figure 3-state levels are measured 0.5V from steady-state active level. REGISTER LOGIC ARRAY CLK tsu + th fmax Descriptions Switching Test ConditionsSpecifications GAL20V8 17 1.0 2.0 3.0 4.0 5.0 -60 0 -20 -40 0 Input Voltage (Volts) Input Current (uA) Electronic Signature An electronic signature is provided in every GAL20V8 device. It contains 64 bits of reprogrammable memory that can contain user defined data. Some uses include user ID codes, revision numbers, or inventory control. The signature data is always available to the user independent of the state of the security cell. NOTE: The electronic signature is included in checksum calculations. Changing the electronic signature will alter the checksum. Security Cell A security cell is provided in the GAL20V8 devices to prevent unauthorized copying of the array patterns. Once programmed, this cell prevents further read access to the functional bits in the device. This cell can only be erased by re-programming the device, so the original configuration can never be examined once this cell is programmed. The Electronic Signature is always available to the user, regardless of the state of this control cell. Latch-Up Protection GAL20V8 devices are designed with an on-board charge pump to negatively bias the substrate. The negative bias minimizes the potential of latch-up caused by negative input undershoots. Additionally, outputs are designed with n-channel pull-ups instead of the traditional p-channel pull-ups in order to eliminate latch-up due to output overshoots. Device Programming GAL devices are programmed using a Lattice Semiconductorapproved Logic Programmer, available from a number of manufacturers. Complete programming of the device takes only a few seconds. Erasing of the device is transparent to the user, and is done automatically as part of the programming cycle. Typical Input Pull-up Characteristic Output Register Preload When testing state machine designs, all possible states and state transitions must be verified in the design, not just those required in the normal machine operations. This is because, in system operation, certain events occur that may throw the logic into an illegal state (power-up, line voltage glitches, brown-outs, etc.). To test a design for proper treatment of these conditions, a way must be provided to break the feedback paths, and force any desired (i.e., illegal) state into the registers. Then the machine can be sequenced and the outputs tested for correct next state conditions. GAL20V8 devices include circuitry that allows each registered output to be synchronously set either high or low. Thus, any present state condition can be forced for test sequencing. If necessary, approved GAL programmers capable of executing text vectors perform output register preload automatically. Input Buffers GAL20V8 devices are designed with TTL level compatible input buffers. These buffers have a characteristically high impedance, and present a much lighter load to the driving logic than bipolar TTL devices. The GAL20V8 input and I/O pins have built-in active pull-ups. As a result, unused inputs and I/O's will float to a TTL "high" (logical "1"). Lattice Semiconductor recommends that all unused inputs and tri-stated I/O pins be connected to another active input, VCC, or Ground. Doing this will tend to improve noise immunity and reduce ICC for the device.18 Specifications GAL20V8 Typ. Vref = 3.2V Typical Output Typ. Vref = 3.2V Typical Input Vcc PIN Vcc Vref Active Pull-up Circuit ESD Protection Circuit ESD Protection Circuit Vcc PIN Vcc PIN Tri-State Vref Control Active Pull-up Circuit Feedback (To Input Buffer) PIN Feedback Data Output Circuitry within the GAL20V8 provides a reset signal to all registers during power-up. All internal registers will have their Q outputs set low after a specified time (tpr, 1μs MAX). As a result, the state on the registered output pins (if they are enabled) will always be high on power-up, regardless of the programmed polarity of the output pins. This feature can greatly simplify state machine design by providing a known state on power-up. Because of the asynchronous nature of system power-up, some conditions must be met to provide Vcc CLK INTERNAL REGISTER Q - OUTPUT FEEDBACK/EXTERNAL OUTPUT REGISTER Vcc (min.) tpr Internal Register Reset to Logic "0" Device Pin Reset to Logic "1" twl tsu a valid power-up reset of the device. First, the VCC rise must be monotonic. Second, the clock input must be at static TTL level as shown in the diagram during power up. The registers will reset within a maximum of tpr time. As in normal system operation, avoid clocking the device until all input and feedback path setup times have been met. The clock must also meet the minimum pulse width requirements. Power-Up Reset Input/Output Equivalent SchematicsSpecifications GAL20V8 19 Delta Tpd vs # of Outputs Switching Number of Outputs Switching Delta Tpd (ns) -1 -0.75 -0.5 -0.25 0 12345678 RISE FALL Delta Tco vs # of Outputs Switching Number of Outputs Switching Delta Tco (ns) -1 -0.75 -0.5 -0.25 0 12345678 RISE FALL Delta Tpd vs Output Loading Output Loading (pF) Delta Tpd (ns) -2 0 2 4 6 8 0 50 100 150 200 250 300 RISE FALL Delta Tco vs Output Loading Output Loading (pF) Delta Tco (ns) -2 0 2 4 6 8 0 50 100 150 200 250 300 RISE FALL Normalized Tpd vs Vcc Supply Voltage (V) Normalized Tpd 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 PT H->L PT L->H Normalized Tco vs Vcc Supply Voltage (V) Normalized Tco 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 RISE FALL Normalized Tsu vs Vcc Supply Voltage (V) Normalized Tsu 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 PT H->L PT L->H Normalized Tpd vs Temp Temperature (deg. C) Normalized Tpd 0.7 0.8 0.9 1 1.1 1.2 1.3 -55 -25 0 25 50 75 100 125 PT H->L PT L->H Normalized Tco vs Temp Temperature (deg. C) Normalized Tco 0.7 0.8 0.9 1 1.1 1.2 1.3 -55 -25 0 25 50 75 100 125 RISE FALL Normalized Tsu vs Temp Temperature (deg. C) Normalized Tsu 0.7 0.8 0.9 1 1.1 1.2 1.3 1.4 -55 -25 0 25 50 75 100 125 PT H->L PT L->H GAL20V8C: Typical AC and DC Characteristic Diagrams20 Specifications GAL20V8 Vol vs Iol Iol (mA) Vol (V) 0 0.5 1 1.5 2 0.00 20.00 40.00 60.00 80.00 Voh vs Ioh Ioh(mA) Voh (V) 0 1 2 3 4 5 0.00 10.00 20.00 30.00 40.00 50.00 Voh vs Ioh Ioh(mA) Voh (V) 3.25 3.5 3.75 4 4.25 0.00 1.00 2.00 3.00 4.00 Normalized Icc vs Vcc Supply Voltage (V) Normalized Icc 0.80 0.90 1.00 1.10 1.20 4.50 4.75 5.00 5.25 5.50 Normalized Icc vs Temp Temperature (deg. C) Normalized Icc 0.8 0.9 1 1.1 1.2 1.3 -55 -25 0 25 50 75 100 125 Normalized Icc vs Freq. Frequency (MHz) Normalized Icc 0.80 0.90 1.00 1.10 1.20 1.30 1.40 1.50 0 25 50 75 100 Delta Icc vs Vin (1 input) Vin (V) Delta Icc (mA) 0 2 4 6 8 10 0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 Input Clamp (Vik) Vik (V) Iik (mA) 0 5 10 15 20 25 30 35 40 45 -2.00 -1.50 -1.00 -0.50 0.00 GAL20V8C: Typical AC and DC Characteristic DiagramsSpecifications GAL20V8 21 Normalized Tpd vs Vcc Supply Voltage (V) Normalized Tpd 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 PT H->L PT L->H Normalized Tco vs Vcc Supply Voltage (V) Normalized Tco 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 RISE FALL Normalized Tsu vs Vcc Supply Voltage (V) Normalized Tsu 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 PT H->L PT L->H Normalized Tpd vs Temp Temperature (deg. C) Normalized Tpd 0.7 0.8 0.9 1 1.1 1.2 1.3 -55 -25 0 25 50 75 100 125 PT H->L PT L->H Normalized Tco vs Temp Temperature (deg. C) Normalized Tco 0.7 0.8 0.9 1 1.1 1.2 1.3 -55 -25 0 25 50 75 100 125 RISE FALL Normalized Tsu vs Temp Temperature (deg. C) Normalized Tsu 0.7 0.8 0.9 1 1.1 1.2 1.3 1.4 -55 -25 0 25 50 75 100 125 PT H->L PT L->H Delta Tpd vs # of Outputs Switching Number of Outputs Switching Delta Tpd (ns) -2 -1.5 -1 -0.5 0 12345678 RISE FALL Delta Tco vs # of Outputs Switching Number of Outputs Switching Delta Tco (ns) -2 -1.5 -1 -0.5 0 12345678 RISE FALL Delta Tpd vs Output Loading Output Loading (pF) Delta Tpd (ns) -2 0 2 4 6 8 10 0 50 100 150 200 250 300 RISE FALL Delta Tco vs Output Loading Output Loading (pF) Delta Tco (ns) -2 0 2 4 6 8 10 0 50 100 150 200 250 300 RISE FALL GAL20V8B-7/-10: Typical AC and DC Characteristic Diagrams22 Specifications GAL20V8 Vol vs Iol Iol (mA) Vol (V) 0 0.25 0.5 0.75 1 0.00 20.00 40.00 60.00 80.00 100.00 Voh vs Ioh Ioh(mA) Voh (V) 0 1 2 3 4 5 0.00 10.00 20.00 30.00 40.00 50.00 60.00 Voh vs Ioh Ioh(mA) Voh (V) 3.5 3.75 4 4.25 4.5 0.00 1.00 2.00 3.00 4.00 Normalized Icc vs Vcc Supply Voltage (V) Normalized Icc 0.80 0.90 1.00 1.10 1.20 4.50 4.75 5.00 5.25 5.50 Normalized Icc vs Temp Temperature (deg. C) Normalized Icc 0.8 0.9 1 1.1 1.2 -55 -25 0 25 50 75 100 125 Normalized Icc vs Freq. Frequency (MHz) Normalized Icc 0.80 0.90 1.00 1.10 1.20 1.30 0 25 50 75 100 Delta Icc vs Vin (1 input) Vin (V) Delta Icc (mA) 0 2 4 6 8 10 0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 Input Clamp (Vik) Vik (V) Iik (mA) 0 10 20 30 40 50 60 70 80 90 100 -2.00 -1.50 -1.00 -0.50 0.00 GAL20V8B-7/-10: Typical AC and DC Characteristic DiagramsSpecifications GAL20V8 23 Normalized Tpd vs Vcc Supply Voltage (V) Normalized Tpd 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 PT H->L PT L->H Normalized Tco vs Vcc Supply Voltage (V) Normalized Tco 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 RISE FALL Normalized Tsu vs Vcc Supply Voltage (V) Normalized Tsu 0.8 0.9 1 1.1 1.2 4.50 4.75 5.00 5.25 5.50 PT H->L PT L->H Normalized Tpd vs Temp Temperature (deg. C) Normalized Tpd 0.7 0.8 0.9 1 1.1 1.2 1.3 -55 -25 0 25 50 75 100 125 PT H->L PT L->H Normalized Tco vs Temp Temperature (deg. C) Normalized Tco 0.7 0.8 0.9 1 1.1 1.2 1.3 -55 -25 0 25 50 75 100 125 RISE FALL Normalized Tsu vs Temp Temperature (deg. C) Normalized Tsu 0.7 0.8 0.9 1 1.1 1.2 1.3 1.4 -55 -25 0 25 50 75 100 125 PT H->L PT L->H Delta Tpd vs # of Outputs Switching Number of Outputs Switching Delta Tpd (ns) -2 -1.5 -1 -0.5 0 12345678 RISE FALL Delta Tco vs # of Outputs Switching Number of Outputs Switching Delta Tco (ns) -2 -1.5 -1 -0.5 0 12345678 RISE FALL Delta Tpd vs Output Loading Output Loading (pF) Delta Tpd (ns) -4 -2 0 2 4 6 8 10 0 50 100 150 200 250 300 RISE FALL Delta Tco vs Output Loading Output Loading (pF) Delta Tco (ns) -4 -2 0 2 4 6 8 10 0 50 100 150 200 250 300 RISE FALL GAL20V8B-15/-25: Typical AC and DC Characteristic Diagrams24 Specifications GAL20V8 Vol vs Iol Iol (mA) Vol (V) 0 0.5 1 1.5 2 0.00 20.00 40.00 60.00 80.00 100.00 Voh vs Ioh Ioh(mA) Voh (V) 0 1 2 3 4 5 0.00 10.00 20.00 30.00 40.00 50.00 60.00 Voh vs Ioh Ioh(mA) Voh (V) 3.25 3.5 3.75 4 4.25 0.00 1.00 2.00 3.00 4.00 Normalized Icc vs Vcc Supply Voltage (V) Normalized Icc 0.80 0.90 1.00 1.10 1.20 4.50 4.75 5.00 5.25 5.50 Normalized Icc vs Temp Temperature (deg. C) Normalized Icc 0.8 0.9 1 1.1 1.2 -55 -25 0 25 50 75 100 125 Normalized Icc vs Freq. Frequency (MHz) Normalized Icc 0.80 0.90 1.00 1.10 1.20 1.30 1.40 0 25 50 75 100 Delta Icc vs Vin (1 input) Vin (V) Delta Icc (mA) 0 2 4 6 8 10 12 0.00 0.50 1.00 1.50 2.00 2.50 3.00 3.50 4.00 Input Clamp (Vik) Vik (V) Iik (mA) 0 10 20 30 40 50 60 70 80 90 100 -2.00 -1.50 -1.00 -0.50 0.00 GAL20V8B-15/-25: Typical AC and DC Characteristic DiagramsSpecifications GAL20V8 25 Revision History Date Version Change Summary - 20v8_06 Previous Lattice release. August 2006 20v8_07 Updated for lead-free package options. DATA SHEET Product specification File under Integrated Circuits, IC06 December 1990 INTEGRATED CIRCUITS 74HC/HCT237 3-to-8 line decoder/demultiplexer with address latches For a complete data sheet, please also download: •The IC06 74HC/HCT/HCU/HCMOS Logic Family Specifications •The IC06 74HC/HCT/HCU/HCMOS Logic Package Information •The IC06 74HC/HCT/HCU/HCMOS Logic Package OutlinesDecember 1990 2 Philips Semiconductors Product specification 3-to-8 line decoder/demultiplexer with address latches 74HC/HCT237 FEATURES • Combines 3-to-8 decoder with 3-bit latch • Multiple input enable for easy expansion or independent controls • Active HIGH mutually exclusive outputs • Output capability: standard • I CC category: MSI GENERAL DESCRIPTION The 74HC/HCT237 are high-speed Si-gate CMOS devices and are pin compatible with low power Schottky TTL (LSTTL). They are specified in compliance with JEDEC standard no. 7A. The 74HC/HCT237 are 3-to-8 line decoder/demultiplexers with latches at the three address inputs (An). The “237” essentially combines the 3-to-8 decoder function with a 3-bit storage latch. When the latch is enabled (LE = LOW), the “237” acts as a 3-to-8 active LOW decoder. When the latch enable (LE) goes from LOW-to-HIGH, the last data present at the inputs before this transition, is stored in the latches. Further address changes are ignored as long as LE remains HIGH. The output enable input (E1 and E2) controls the state of the outputs independent of the address inputs or latch operation. All outputs are HIGH unless E1 is LOW and E2 is HIGH. The “237” is ideally suited for implementing non-overlapping decoders in 3-state systems and strobed (stored address) applications in bus oriented systems. QUICK REFERENCE DATA GND = 0 V; Tamb = 25 °C; tr = tf = 6 ns Notes 1. CPD is used to determine the dynamic power dissipation (PD in µW): P D = CPD × VCC2 × fi + ∑ (CL × VCC2 × f o) where: fi = input frequency in MHz f o = output frequency in MHz ∑ (CL × VCC2 × fo) = sum of outputs CL = output load capacitance in pF V CC = supply voltage in V 2. For HC the condition is VI = GND to VCC For HCT the condition is VI = GND to VCC − 1.5 V ORDERING INFORMATION See “74HC/HCT/HCU/HCMOS Logic Package Information”. SYMBOL PARAMETER CONDITIONS TYPICAL UNIT HC HCT t PHL / tPLH propagation delay CL = 15 pF; VCC = 5 V An to Yn 16 19 ns LE to Yn 19 21 ns E1 to Yn 14 17 ns E2 to Yn 14 17 ns CI input capacitance 3.5 3.5 pF CPD power dissipation capacitance per package notes 1 and 2 60 63 pFDecember 1990 3 Philips Semiconductors Product specification 3-to-8 line decoder/demultiplexer with address latches 74HC/HCT237 PIN DESCRIPTION PIN NO. SYMBOL NAME AND FUNCTION 1, 2, 3 A0 to A2 data inputs 4 LE latch enable input (active LOW) 5 E1 data enable input (active LOW) 6 E2 data enable input (active HIGH) 8 GND ground (0 V) 15, 14, 13, 12, 11, 10, 9, 7 Y0 to Y7 multiplexer outputs 16 VCC positive supply voltage Fig.1 Pin configuration. Fig.2 Logic symbol. Fig.3 IEC logic symbol.December 1990 4 Philips Semiconductors Product specification 3-to-8 line decoder/demultiplexer with address latches 74HC/HCT237 FUNCTION TABLE Notes 1. H = HIGH voltage level L = LOW voltage level X = don’t care INPUTS OUTPUTS LE E1 E2 A0 A1 A2 Y0 Y1 Y2 Y3 Y4 Y5 Y6 Y7 H L H X X X stable XHX XXX L L L L LLL L XX L XXX L L L L LLL L L L H L L L H L L L LLL L L L HHL L L H L L LLL L L L H LHL L L H L LLL L L L HHH L L L L HLLL L L L H L L H L L L LHLL L L L H H L H L L L L LHL L L L H L HH L L L L L LH L L L HHHH L L L L LLL H Fig.4 Functional diagram.December 1990 5 Philips Semiconductors Product specification 3-to-8 line decoder/demultiplexer with address latches 74HC/HCT237 Fig.5 Logic diagram.December 1990 6 Philips Semiconductors Product specification 3-to-8 line decoder/demultiplexer with address latches 74HC/HCT237 DC CHARACTERISTICS FOR 74HC For the DC characteristics see “74HC/HCT/HCU/HCMOS Logic Family Specifications”. Output capability: standard I CC category: MSI AC CHARACTERISTICS FOR 74HC GND = 0 V; tr = tf = 6 ns; CL = 50 pF SYMBOL PARAMETER Tamb (°C) UNIT TEST CONDITIONS 74HC V CC (V) WAVEFORMS +25 −40 to +85 −40 to +125 min. typ. max. min. max. min. max. t PHL/ tPLH propagation delay An to Yn 52 19 15 160 32 27 200 40 34 240 48 41 ns 2.0 4.5 6.0 Fig.6 t PHL/ tPLH propagation delay LE to Yn 61 22 18 190 38 32 240 48 41 285 57 48 ns 2.0 4.5 6.0 Fig.7 t PHL/ tPLH propagation delay E1 to Yn 47 17 14 145 29 25 180 36 31 220 44 38 ns 2.0 4.5 6.0 Fig.7 t PHL/ tPLH propagation delay E2 to Yn 47 17 14 145 29 25 180 36 31 220 44 38 ns 2.0 4.5 6.0 Fig.6 t THL/ tTLH output transition time 19 7 6 75 15 13 95 19 16 110 22 19 ns 2.0 4.5 6.0 Fig.6 t W LE pulse width LOW 50 10 9 11 4 3 65 13 11 75 15 13 ns 2.0 4.5 6.0 Fig.8 t su set-up time An to LE 50 10 9 6 2 2 65 13 11 75 15 13 ns 2.0 4.5 6.0 Fig.8 t h hold time An to LE 30 6 5 3 1 1 40 8 7 45 9 8 ns 2.0 4.5 6.0 Fig.8December 1990 7 Philips Semiconductors Product specification 3-to-8 line decoder/demultiplexer with address latches 74HC/HCT237 DC CHARACTERISTICS FOR 74HCT For the DC characteristics see “74HC/HCT/HCU/HCMOS Logic Family Specifications”. Output capability: standard I CC category: MSI Note to HCT types The value of additional quiescent supply current (∆I CC) for a unit load of 1 is given in the family specifications. To determine ∆I CC per input, multiply this value by the unit load coefficient shown in the table below. AC CHARACTERISTICS FOR 74HCT GND = 0 V; tr = tf = 6 ns; CL = 50 pF INPUT UNIT LOAD COEFFICIENT An 1.50 E1 1.50 E2 1.50 LE 1.50 SYMBOL PARAMETER Tamb (°C) UNIT TEST CONDITIONS 74HCT V CC (V) WAVEFORMS +25 −40 to +85 −40 to +125 min. typ. max. min. max. min. max. t PHL/ tPLH propagation delay An to Yn 22 38 48 57 ns 4.5 Fig.6 t PHL/ tPLH propagation delay LE to Yn 25 42 53 63 ns 4.5 Fig.7 t PHL/ tPLH propagation delay E1 to Yn 20 35 44 53 ns 4.5 Fig.7 t PHL/ tPLH propagation delay E2 to Yn 20 33 41 50 ns 4.5 Fig.6 t THL/ tTLH output transition time 7 15 19 22 ns 4.5 Fig.6 t W LE pulse width HIGH 10 5 13 15 ns 4.5 Fig.8 t su set-up time An to LE 10 2 13 15 ns 4.5 Fig.8 t h hold time An to LE 5 0 5 5 ns 4.5 Fig.8December 1990 8 Philips Semiconductors Product specification 3-to-8 line decoder/demultiplexer with address latches 74HC/HCT237 AC WAVEFORMS Fig.6 Waveforms showing the address input (An) and enable inputs (E2, LE) to output (Yn) propagation delays and the output transition times. (1) HC : VM = 50%; VI = GND to VCC . HCT: VM = 1.3 V; VI = GND to 3 V. Fig.7 Waveforms showing the enable input (E1) to output (Yn) propagation delays and the output transition times. (1) HC : VM = 50%; VI = GND to VCC . HCT: VM = 1.3 V; VI = GND to 3 V. Fig.8 Waveforms showing the data set-up, hold times for An input to LE input and the latch enable pulse width. The shaded areas indicate when the input is permitted to change for predictable output performance. (1) HC : VM = 50%; VI = GND to VCC . HCT: VM = 1.3 V; VI = GND to 3 V.December 1990 9 Philips Semiconductors Product specification 3-to-8 line decoder/demultiplexer with address latches 74HC/HCT237 APPLICATION INFORMATION PACKAGE OUTLINES See “74HC/HCT/HCU/HCMOS Logic Package Outlines”. Fig.9 6-to-64 line decoder with input address storage. August 12, 2008 DS10CP154A 1.5 Gbps 4x4 LVDS Crosspoint Switch General Description The DS10CP154A is a 1.5 Gbps 4x4 LVDS crosspoint switch optimized for high-speed signal routing and switching over FR-4 printed circuit board backplanes and balanced cables. Fully differential signal paths ensure exceptional signal integrity and noise immunity. The non-blocking architecture allows connections of any input to any output or outputs. The switch configuration can be accomplished via external pins or the System Management Bus (SMBus) interface. In addition, the SMBus circuitry enables the loss of signal (LOS) monitors that can inform a system of the presence of an open inputs condition (e.g. disconnected cable). Wide input common mode range allows the switch to accept signals with LVDS, CML and LVPECL levels; the output levels are LVDS. A very small package footprint requires a minimal space on the board while the flow-through pinout allows easy board layout. Each differential input and output is internally terminated with a 100Ω resistor to lower return losses, reduce component count and further minimize board space. Features ■ DC - 1.5 Gbps low jitter, low skew, low power operation ■ Pin and SMBus configurable, fully differential, nonblocking architecture ■ Wide input common mode range enables DC coupled interface to CML or LVPECL drivers ■ LOS circuitry detects open inputs fault condition ■ On-chip 100 Ω input and output termination minimizes insertion and return losses, reduces component count and minimizes board space ■ 8 kV ESD on LVDS I/O pins protects adjoining components ■ Small 6 mm x 6 mm LLP-40 space saving package Applications ■ High-speed channel select applications ■ Clock and data buffering and muxing ■ SD / HD SDI Routers Typical Application 30073703 © 2008 National Semiconductor Corporation 300737 www.national.com DS10CP154A 1.5 Gbps 4x4 LVDS Crosspoint SwitchOrdering Code NSID Function DS10CP154ATSQ Crosspoint Switch Block Diagram 30073701 www.national.com 2 DS10CP154AConnection Diagram 30073702 DS10CP154A Pin Diagram 3 www.national.com DS10CP154APin Descriptions Pin Name Pin Number I/O, Type Pin Description IN0+, IN0- , IN1+, IN1-, IN2+, IN2-, IN3+, IN3- 1, 2, 4, 5, 6, 7, 9, 10 I, LVDS Inverting and non-inverting high speed LVDS input pins. OUT0+, OUT0-, OUT1+, OUT1-, OUT2+, OUT2-, OUT3+, OUT3- 29, 28, 27, 26, 24, 23, 22, 21 O, LVDS Inverting and non-inverting high speed LVDS output pins. EN_smb 17 I, LVCMOS System Management Bus (SMBus) mode enable pin. The pin has an internal 20k pull down. When the pin is set to a [1], the device is in the SMBus mode. All SMBus registers are reset when the pin is toggled. S00/SCL, S01/SDA 37, 36 I/O, LVCMOS For EN_smb = [1], these pins select which LVDS input is routed to the OUT0. In the SMBus mode, when the EN_smb = [1], these pins are the SMBus clock input and data I/O pins respectively. S10/ADDR0, S11/ADDR1 35, 34 I/O, LVCMOS For EN_smb = [0], these pins select which LVDS input is routed to the OUT1. In the SMBus mode, when the EN_smb = [1], these pins are the User-Set SMBus Slave Address inputs. S20/ADDR2, S21/ADDR3 33, 32 I/O, LVCMOS For EN_smb = [0], these pins select which LVDS input is routed to the OUT2. In the SMBus mode, when the EN_smb = [1], these pins are the User-Set SMBus Slave Address inputs. S30, S31 13, 14 I, LVCMOS For EN_smb = [0], these pins select which LVDS input is routed to the OUT3. In the SMBus mode, when the EN_smb = [1], these pins are nonfunctional and should be tied to either logic [0] or [1]. PWDN 38 I, LVCMOS For EN_smb = [0], this is the power down pin. When the PWDN is set to a [0], the device is in the power down mode. The SMBus circuitry can still be accessed provided the EN_smb pin is set to a [1]. In the SMBus mode, the device is powered up by either setting the PWDN pin to [1] OR by writing a [1] to the Control Register D[7] bit ( SoftPWDN). The device will be powered down by setting the PWDN pin to [0] AND by writing a [0] to the Control Register D[7] bit ( SoftPWDN). NC 11, 12, 18, 19, 20, 31, 39, 40 No connect pins. May be left floating. VDD 3, 8, 15,25, 30 Power Power supply pins. GND 16, DAP Power Ground pin and pad (DAP - die attach pad). www.national.com 4 DS10CP154AAbsolute Maximum Ratings (Note 4) If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Supply Voltage −0.3V to +4V LVCMOS Input Voltage −0.3V to (VCC + 0.3V) LVCMOS Output Voltage −0.3V to (VCC + 0.3V) LVDS Input Voltage −0.3V to +4V LVDS Differential Input Voltage 0V to 1.0V LVDS Output Voltage −0.3V to (VCC + 0.3V) LVDS Differential Output Voltage 0V to 1.0V LVDS Output Short Circuit Current Duration 5 ms Junction Temperature +150°C Storage Temperature Range −65°C to +150°C Lead Temperature Range Soldering (4 sec.) +260°C Maximum Package Power Dissipation at 25°C SQA Package 4.65W Derate SQA Package 37.2 mW/°C above +25°C Package Thermal Resistance θJA +26.9°C/W θJC +3.8°C/W ESD Susceptibility HBM (Note 1) ≥8 kV MM (Note 2) ≥250V CDM (Note 3) ≥1250V Note 1: Human Body Model, applicable std. JESD22-A114C Note 2: Machine Model, applicable std. JESD22-A115-A Note 3: Field Induced Charge Device Model, applicable std. JESD22-C101-C Recommended Operating Conditions Min Typ Max Units Supply Voltage (VCC) 3.0 3.3 3.6 V Receiver Differential Input Voltage (VID) 0 1.0 V Operating Free Air Temperature (TA ) −40 +25 +85 °C SMBus (SDA, SCL) 3.6 V Electrical Characteristics Over recommended operating supply and temperature ranges unless otherwise specified. (Notes 5, 6, 7) Symbol Parameter Conditions Min Typ Max Units LVCMOS DC SPECIFICATIONS VIH High Level Input Voltage 2.0 VDD V VIL Low Level Input Voltage GND 0.8 V I IH High Level Input Current VIN = 3.6V VCC = 3.6V 0 ±10 μA EN_smb pin 40 175 250 μA I IL Low Level Input Current VIN = GND VCC = 3.6V 0 ±10 μA VCL Input Clamp Voltage ICL = −18 mA, VCC = 0V −0.9 −1.5 V VOL Low Level Output Voltage IOL= 4 mA SDA pin 0.4 V LVDS INPUT DC SPECIFICATIONS VID Input Differential Voltage 0 1 V VTH Differential Input High Threshold VCM = +0.05V or VCC-0.05V 0 +100 mV VTL Differential Input Low Threshold −100 0 mV VCMR Common Mode Voltage Range VID = 100 mV 0.05 VCC - 0.05 V I IN Input Current VIN = 3.6V or 0V VCC = 3.6V or 0V ±1 ±10 μA CIN Input Capacitance Any LVDS Input Pin to GND 1.7 pF RIN Input Termination Resistor Between IN+ and IN- 100 Ω 5 www.national.com DS10CP154ASymbol Parameter Conditions Min Typ Max Units LVDS OUTPUT DC SPECIFICATIONS VOD Differential Output Voltage RL = 100Ω 250 350 450 mV ΔVOD Change in Magnitude of VOD for Complimentary Output States -35 35 mV VOS Offset Voltage RL = 100Ω 1.05 1.2 1.375 V ΔVOS Change in Magnitude of VOS for Complimentary Output States -35 35 mV IOS Output Short Circuit Current (Note 8) OUT to GND -25 -55 mA OUT to VCC 7 55 mA COUT Output Capacitance Any LVDS Output Pin to GND 1.2 pF ROUT Output Termination Resistor Between OUT+ and OUT- 100 Ω SUPPLY CURRENT ICC1 Supply Current PWDN = 0 40 50 mA ICC2 Supply Current PWDN = 1 Broadcast Mode (1:4) 103 125 mA ICC3 Supply Current PWDN = 1 Quad Buffer Mode (4:4) 115 140 mA Note 4: “Absolute Maximum Ratings” indicate limits beyond which damage to the device may occur, including inoperability and degradation of device reliability and/or performance. Functional operation of the device and/or non-degradation at the Absolute Maximum Ratings or other conditions beyond those indicated in the Recommended Operating Conditions is not implied. The Recommended Operating Conditions indicate conditions at which the device is functional and the device should not be operated beyond such conditions. Note 5: The Electrical Characteristics tables list guaranteed specifications under the listed Recommended Operating Conditions except as otherwise modified or specified by the Electrical Characteristics Conditions and/or Notes. Typical specifications are estimations only and are not guaranteed. Note 6: Current into device pins is defined as positive. Current out of device pins is defined as negative. All voltages are referenced to ground except VOD and ΔVOD. Note 7: Typical values represent most likely parametric norms for VCC = +3.3V and TA = +25°C, and at the Recommended Operation Conditions at the time of product characterization and are not guaranteed. Note 8: Output short circuit current (IOS) is specified as magnitude only, minus sign indicates direction only. www.national.com 6 DS10CP154AAC Electrical Characteristics Over recommended operating supply and temperature ranges unless otherwise specified. (Notes 9, 10) Symbol Parameter Conditions Min Typ Max Units LVDS OUTPUT AC SPECIFICATIONS (Note 11) tPLHD Differential Propagation Delay Low to High RL = 100Ω 500 675 ps tPHLD Differential Propagation Delay High to Low 460 675 ps tSKD1 Pulse Skew |tPLHD − tPHLD| , (Note 12) 40 100 ps tSKD2 Channel to Channel Skew , (Note 13) 40 125 ps tSKD3 Part to Part Skew , (Note 14) 50 225 ps tLHT Rise Time RL = 100Ω 145 350 ps tHLT Fall Time 145 350 ps tON Power Up Time Time from PWDN = LH to OUTn active 7 20 μs tOFF Power Down Time Time from PWDN = HL to OUTn inactive 6 25 ns tSEL Select Time Time from Sn = LH or HL to new signal at OUTn 8 12 ns JITTER PERFORMANCE (Note 11) tRJ1 Random Jitter (RMS Value) (Note 15) VID = 350 mV VCM = 1.2V Clock (RZ) 135 MHz 1 2.0 ps tRJ2 311 MHz 0.5 1.2 ps tRJ3 503 MHz 0.5 1.0 ps tRJ4 750 MHz 0.5 1.0 ps tDJ1 Deterministic Jitter (Peak to Peak Value) (Note 16) VID = 350 mV VCM = 1.2V K28.5 (NRZ) 270 Mbps 7 30 ps tDJ2 622 Mbps 12 26 ps tDJ3 1.06 Gbps 9 24 ps tDJ4 1.5 Gbps 12 28 ps tTJ1 Total Jitter (Peak to Peak Value) (Note 17) VID = 350 mV VCM = 1.2V PRBS-23 (NRZ) 270 mbps 0.008 0.036 UIP-P tTJ2 622 Mbps 0.007 0.043 UIP-P tTJ3 1.06Gbps 0.008 0.064 UIP-P tTJ4 1.5 Gbps 0.007 0.072 UIP-P 7 www.national.com DS10CP154ASymbol Parameter Conditions Min Typ Max Units SMBus AC SPECIFICATIONS fSMB SMBus Operating Frequency 10 100 kHz tBUF Bus free time between Stop and Start Conditions 4.7 μs tHD:SDA Hold time after (Repeated) Start Condition. After this period, the first clock is generated. 4.0 μs tSU:SDA Repeated Start Condition setup time. 4.7 μs tSU:SDO Stop Condition setup time 4.0 μs tHD:DAT Data hold time 300 ns tSU:DAT Data setup time 250 ns tTIMEOUT Detect clock low timeout 25 35 ms tLOW Clock low period 4.7 μs tHIGH Clock high period 4.0 50 μs tPOR Time in which a device must be operational after power-on reset 500 ms Note 9: The Electrical Characteristics tables list guaranteed specifications under the listed Recommended Operating Conditions except as otherwise modified or specified by the Electrical Characteristics Conditions and/or Notes. Typical specifications are estimations only and are not guaranteed. Note 10: Typical values represent most likely parametric norms for VCC = +3.3V and TA = +25°C, and at the Recommended Operation Conditions at the time of product characterization and are not guaranteed. Note 11: Specification is guaranteed by characterization and is not tested in production. Note 12: tSKD1, |tPLHD − tPHLD|, Pulse Skew, is the magnitude difference in differential propagation delay time between the positive going edge and the negative going edge of the same channel. Note 13: tSKD2, Channel to Channel Skew, is the difference in propagation delay (tPLHD or tPHLD) among all output channels in Broadcast mode (any one input to all outputs). Note 14: tSKD3, Part to Part Skew, is defined as the difference between the minimum and maximum differential propagation delays. This specification applies to devices at the same VCC and within 5°C of each other within the operating temperature range. Note 15: Measured on a clock edge with a histogram and an acummulation of 1500 histogram hits. Input stimulus jitter is subtracted geometrically. Note 16: Tested with a combination of the 1100000101 (K28.5+ character) and 0011111010 (K28.5- character) patterns. Input stimulus jitter is subtracted algebraically. Note 17: Measured on an eye diagram with a histogram and an acummulation of 3500 histogram hits. Input stimulus jitter is subtracted. www.national.com 8 DS10CP154ADC Test Circuits 30073720 FIGURE 1. Differential Driver DC Test Circuit AC Test Circuits and Timing Diagrams 30073721 FIGURE 2. Differential Driver AC Test Circuit 30073722 FIGURE 3. Propagation Delay Timing Diagram 30073723 FIGURE 4. LVDS Output Transition Times 9 www.national.com DS10CP154AFunctional Description The DS10CP154A is a 1.5 Gbps 4x4 LVDS digital crosspoint switch optimized for high-speed signal routing and switching over lossy FR-4 printed circuit board backplanes and balanced cables. The DS10CP154A operates in two modes: Pin Mode (EN_smb = 0) and SMBus Mode (EN_smb = 1). When in the Pin Mode, the switch is fully configurable with external pins. This is possible with two input select pins per output (e.g. S00 and S01 pins for OUT0). In the Pin Mode, feedback from the LOS (Loss Of Signal) monitor circuitry is not available (there is not an LOS output pin). When in the SMBus Mode, the full switch configuration and SoftPWDN can be programmed via the SMBus interface. In addition, by using the SMBus interface, a user can obtain the feedback from the built-in LOS circuitry which detects an open inputs fault condition. In the SMBus Mode, the S00 and S01 pins become SMBus clock (SCL) input and data (SDA) input pins respectively; the S10, S11, S21 and S21 pins become the User-Set SMBus Slave Address input pins (ADDR0, 1, 2 and 3) while the S30 and S31 pins become non-functional (tieing these two pins to either H or L is recommended if the device will function only in the SMBus mode). In the SMBus Mode, the PWDN pin remains functional. How this pin functions in each mode is detailed in the following sections. DS10CP154A OPERATION IN THE PIN MODE Power Up In the Pin Mode, when the power is applied to the device power suppy pins, the DS10CP154A enters the Power Up mode when the PWDN pin is set to logic H. When in the Power Down mode (PWDN pin is set to logic L), all circuitry is shut down except the minimum required circuitry for the LOS and SMBus Slave operation. Switch Configuration In the Pin Mode, the DS10CP154A operates as a fully pinconfigurable crosspoint switch. The following truth tables illustrate how the swich can be configured with external pins. Switch Configuration Truth Tables TABLE 1. Input Select Pins Configuration for the Output OUT0 S01 S00 INPUT SELECTED 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 TABLE 2. Input Select Pins Configuration for the Output OUT1 S11 S10 INPUT SELECTED 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 www.national.com 10 DS10CP154ATABLE 3. Input Select Pins Configuration for the Output OUT2 S21 S20 INPUT SELECTED 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 TABLE 4. Input Select Pins Configuration for the Output OUT3 S31 S30 INPUT SELECTED 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 DS10CP154A OPERATION IN THE SMBUS MODE The DS10CP154A operates as a slave on the System Management Bus (SMBus) when the EN_smb pin is set to a high (1). Under these conditions, the SCL pin is a clock input while the SDA pin is a serial data input pin. Device Address Based on the SMBus 2.0 specification, the DS10CP154A has a 7-bit slave address. The three most significant bits of the slave address are hard wired inside the DS10CP154A and are “101”. The four least significant bits of the address are assigned to pins ADDR3-ADDR0 and are set by connecting these pins to GND for a low (0) or to VCC for a high (1). The complete slave address is shown in the following table: TABLE 5. DS10CP154A Slave Address 1 0 1 ADDR3 ADDR2 ADDR1 ADDR0 MSB LSB This slave address configuration allows up to sixteen DS10CP154A devices on a single SMBus bus. Transfer of Data via the SMBus During normal operation the data on SDA must be stable during the time when SCK is high. There are three unique states for the SMBus: START: A HIGH to LOW transition on SDA while SCK is high indicates a message START condition. STOP: A LOW to HIGH transition on SDA while SCK is high indicates a message STOP condition. IDLE: If SCK and SDA are both high for a time exceeding tBUF from the last detected STOP condition or if they are high for a total exceeding the maximum specification for tHIGH then the bus will transfer to the IDLE state. SMBus Transactions A transaction begins with the host placing the DS10CP154A SMBus into the START condition, then a byte (8 bits) is transferred, MSB first, followed by a ninth ACK bit. ACK bits are ‘0’ to signify an ACK, or ‘1’ to signify NACK, after this the host holds the SCL line low, and waits for the receiver to raise the SDA line as an ACKnowledge that the byte has been received. Writing to a Register To write a register, the following protocol is used (see SMBus 2.0 specification): 1) The Host drives a START condition, the 7-bit SMBus address, and a “0” indicating a WRITE. 2) The Device (Slave) drives an ACK bit (“0”). 3) The Host drives the 8-bit Register Address. 4) The Device drives an ACK bit (“0”). 5) The Host drives the 8-bit data byte. 6) The Device drives an ACK bit “0”. 7) The Host drives a STOP condition. The WRITE transaction is completed, the bus goes Idle and communication with other SMBus devices may now occur. Reading From a Register To read a register, the following protocol is used (see SMBus 2.0 specification): 1) The Host drives a START condition, the 7-bit SMBus address, and a “0” indicating a WRITE. 2) The Device (Slave) drives an ACK bit (“0”). 3) The Host drives the 8-bit Register Address. 4) The Device drives an ACK bit (“0”). 5) The Host drives a START condition. 6) The Host drives the 7-bit SMBus Address, and a “1” indicating a READ. 7) The Device drives an ACK bit “0”. 8) The Device drives the 8-bit data value (register contents). 9) The Host drives a NACK bit “1” indicating end of READ transfer. 10) The Host drives a STOP condition. The READ transaction is completed, the bus goes Idle and communication with other SMBus devices may now occur. 11 www.national.com DS10CP154AREGISTER DESCRIPTIONS There are three data registers in the DS10CP154A accessible via the SMBus interface. TABLE 6. DS10CP154A SMBus Data Registers Address (hex) Name Access Description 0 Switch Configuration R/W Switch Configuration Register 3 Control R/W Powerdown, LOS Enable and Pin Control Register 4 LOS RO Loss Of Signal (LOS) Reporting Register 30073710 FIGURE 5. DS10CP154A Registers Block Diagram www.national.com 12 DS10CP154ASwitch Configuration Register The Switch Configuration register is utilized to configure the switch. The following two tables show the Switch Configuration Register mapping and associated truth table. Bit Default Bit Name Access Description D[1:0] 00 Input Select 0 R/W Selects which input is routed to the OUT0. D[3:2] 00 Input Select 1 R/W Selects which input is routed to the OUT1. D[5:4] 00 Input Select 2 R/W Selects which input is routed to the OUT2. D[7:6] 00 Input Select 3 R/W Selects which input is routed to the OUT3. TABLE 7. Switch Configuration Register Truth Table D1 D0 Input Routed to the OUT0 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 The truth tables for the OUT1, OUT2, and OUT3 outputs are identical to this table. The switch configuration logic has a SmartPWDN circuitry which automatically optimizes the device's power consumption based on the switch configuration (i.e. It places unused I/O blocks and other unused circuitry in the power down state). 13 www.national.com DS10CP154AControl Register The Control register enables SoftPWDN control, individual output power down (PWDNn) control and LOS Circuitry Enable control via the SMBus. The following table shows the register mapping. Bit Default Bit Name Access Description D[3:0] 1111 PWDNn R/W Writing a [0] to the bit D[n] will power down the output OUTn when either the PWDN pin OR the Control Register bit D[7] (SoftPWDN) is set to a high [1]. D[4] x n/a R/W Undefined. D[5] x n/a R/W Undefined. D[6] 0 EN_LOS R/W Writing a [1] to the bit D[6] will enable the LOS circuitry and receivers on all four inputs. The SmartPWDN circuitry will not disable any of the inputs nor any supporting LOS circuitry depending on the switch configuration. D[7] 0 SoftPWDN R/W Writing a [0] to the bit D[7] will place the device into the power down mode. This pin is ORed together with the PWDN pin. TABLE 8. DS10CP154A Power Modes Truth Table PWDN SoftPWDN PWDNn DS25CP104 Power Mode 0 0 x Power Down Mode. In this mode, all circuitry is shut down except the minimum required circuitry for the LOS and SMBus Slave operation. The SMBus circuitry allows enabling the LOS circuitry and receivers on all inputs in this mode by setting the EN_LOS bit to a [1]. 0 1 1 1 0 1 x x x Power Up Mode. In this mode, the SmartPWDN circuitry will automatically power down any unused I/O and logic blocks and other supporting circuitry depending on the switch configuration. An output will be enabled only when the SmartPWDN circuitry indicates that that particular output is needed for the particular switch configuration and the respective PWDNn bit has logic high [1]. An input will be enabled when the SmartPWDN circuitry indicates that that particular input is needed for the particular switch configuration or the EN_LOS bit is set to a [1]. LOS Register The LOS register reports an open inputs fault condition for each of the inputs. The following table shows the register mapping. Bit Default Bit Name Access Description D[0] 0 LOS0 RO Reading a [0] from the bit D[0] indicates an open inputs fault condition on the IN0. A [1] indicates presence of a valid signal. D[1] 0 LOS1 RO Reading a [0] from the bit D[1] indicates an open inputs fault condition on the IN1. A [1] indicates presence of a valid signal. D[2] 0 LOS2 RO Reading a [0] from the bit D[2] indicates an open inputs fault condition on the IN2. A [1] indicates presence of a valid signal. D[3] 0 LOS3 RO Reading a [0] from the bit D[3] indicates an open inputs fault condition on the IN3. A [1] indicates presence of a valid signal. D[7:4] 0000 Reserved RO Reserved for future use. Returns undefined value when read. www.national.com 14 DS10CP154AINPUT INTERFACING The DS10CP154A accepts differential signals and allows simple AC or DC coupling. With a wide common mode range, the DS10CP154A can be DC-coupled with all common differential drivers (i.e. LVPECL, LVDS, CML). The following three figures illustrate typical DC-coupled interface to common differential drivers. Note that the DS10CP154A inputs are internally terminated with a 100Ω resistor. 30073731 Typical LVDS Driver DC-Coupled Interface to DS10CP154A Input 30073732 Typical CML Driver DC-Coupled Interface to DS10CP154A Input 30073733 Typical LVPECL Driver DC-Coupled Interface to DS10CP154A Input 15 www.national.com DS10CP154AOUTPUT INTERFACING The DS10CP154A outputs signals that are compliant to the LVDS standard. Its outputs can be DC-coupled to most common differential receivers. The following figure illustrates typical DC-coupled interface to common differential receivers and assumes that the receivers have high impedance inputs. While most differential receivers have a common mode input range that can accomodate LVDS compliant signals, it is recommended to check respective receiver's data sheet prior to implementing the suggested interface implementation. 30073734 Typical DS10CP154A Output DC-Coupled Interface to an LVDS, CML or LVPECL Receiver www.national.com 16 DS10CP154APhysical Dimensions inches (millimeters) unless otherwise noted Order Number DS10CP154ATSQ NS Package Number SQA40A (See AN-1187 for PCB Design and Assembly Recommendations) 17 www.national.com DS10CP154ANotes DS10CP154A 1.5 Gbps 4x4 LVDS Crosspoint Switch For more National Semiconductor product information and proven design tools, visit the following Web sites at: Products Design Support Amplifiers www.national.com/amplifiers WEBENCH www.national.com/webench Audio www.national.com/audio Analog University www.national.com/AU Clock Conditioners www.national.com/timing App Notes www.national.com/appnotes Data Converters www.national.com/adc Distributors www.national.com/contacts Displays www.national.com/displays Green Compliance www.national.com/quality/green Ethernet www.national.com/ethernet Packaging www.national.com/packaging Interface www.national.com/interface Quality and Reliability www.national.com/quality LVDS www.national.com/lvds Reference Designs www.national.com/refdesigns Power Management www.national.com/power Feedback www.national.com/feedback Switching Regulators www.national.com/switchers LDOs www.national.com/ldo LED Lighting www.national.com/led PowerWise www.national.com/powerwise Serial Digital Interface (SDI) www.national.com/sdi Temperature Sensors www.national.com/tempsensors Wireless (PLL/VCO) www.national.com/wireless THE CONTENTS OF THIS DOCUMENT ARE PROVIDED IN CONNECTION WITH NATIONAL SEMICONDUCTOR CORPORATION (“NATIONAL”) PRODUCTS. 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Copyright© 2008 National Semiconductor Corporation For the most current product information visit us at www.national.com National Semiconductor Americas Technical Support Center Email: support@nsc.com Tel: 1-800-272-9959 National Semiconductor Europe Technical Support Center Email: europe.support@nsc.com German Tel: +49 (0) 180 5010 771 English Tel: +44 (0) 870 850 4288 National Semiconductor Asia Pacific Technical Support Center Email: ap.support@nsc.com National Semiconductor Japan Technical Support Center Email: jpn.feedback@nsc.com www.national.com http://www.farnell.com/datasheets August 12, 2008 DS10CP154A 1.5 Gbps 4x4 LVDS Crosspoint Switch General Description The DS10CP154A is a 1.5 Gbps 4x4 LVDS crosspoint switch optimized for high-speed signal routing and switching over FR-4 printed circuit board backplanes and balanced cables. Fully differential signal paths ensure exceptional signal integrity and noise immunity. The non-blocking architecture allows connections of any input to any output or outputs. The switch configuration can be accomplished via external pins or the System Management Bus (SMBus) interface. In addition, the SMBus circuitry enables the loss of signal (LOS) monitors that can inform a system of the presence of an open inputs condition (e.g. disconnected cable). Wide input common mode range allows the switch to accept signals with LVDS, CML and LVPECL levels; the output levels are LVDS. A very small package footprint requires a minimal space on the board while the flow-through pinout allows easy board layout. Each differential input and output is internally terminated with a 100Ω resistor to lower return losses, reduce component count and further minimize board space. Features ■ DC - 1.5 Gbps low jitter, low skew, low power operation ■ Pin and SMBus configurable, fully differential, nonblocking architecture ■ Wide input common mode range enables DC coupled interface to CML or LVPECL drivers ■ LOS circuitry detects open inputs fault condition ■ On-chip 100 Ω input and output termination minimizes insertion and return losses, reduces component count and minimizes board space ■ 8 kV ESD on LVDS I/O pins protects adjoining components ■ Small 6 mm x 6 mm LLP-40 space saving package Applications ■ High-speed channel select applications ■ Clock and data buffering and muxing ■ SD / HD SDI Routers Typical Application 30073703 © 2008 National Semiconductor Corporation 300737 www.national.com DS10CP154A 1.5 Gbps 4x4 LVDS Crosspoint SwitchOrdering Code NSID Function DS10CP154ATSQ Crosspoint Switch Block Diagram 30073701 www.national.com 2 DS10CP154AConnection Diagram 30073702 DS10CP154A Pin Diagram 3 www.national.com DS10CP154APin Descriptions Pin Name Pin Number I/O, Type Pin Description IN0+, IN0- , IN1+, IN1-, IN2+, IN2-, IN3+, IN3- 1, 2, 4, 5, 6, 7, 9, 10 I, LVDS Inverting and non-inverting high speed LVDS input pins. OUT0+, OUT0-, OUT1+, OUT1-, OUT2+, OUT2-, OUT3+, OUT3- 29, 28, 27, 26, 24, 23, 22, 21 O, LVDS Inverting and non-inverting high speed LVDS output pins. EN_smb 17 I, LVCMOS System Management Bus (SMBus) mode enable pin. The pin has an internal 20k pull down. When the pin is set to a [1], the device is in the SMBus mode. All SMBus registers are reset when the pin is toggled. S00/SCL, S01/SDA 37, 36 I/O, LVCMOS For EN_smb = [1], these pins select which LVDS input is routed to the OUT0. In the SMBus mode, when the EN_smb = [1], these pins are the SMBus clock input and data I/O pins respectively. S10/ADDR0, S11/ADDR1 35, 34 I/O, LVCMOS For EN_smb = [0], these pins select which LVDS input is routed to the OUT1. In the SMBus mode, when the EN_smb = [1], these pins are the User-Set SMBus Slave Address inputs. S20/ADDR2, S21/ADDR3 33, 32 I/O, LVCMOS For EN_smb = [0], these pins select which LVDS input is routed to the OUT2. In the SMBus mode, when the EN_smb = [1], these pins are the User-Set SMBus Slave Address inputs. S30, S31 13, 14 I, LVCMOS For EN_smb = [0], these pins select which LVDS input is routed to the OUT3. In the SMBus mode, when the EN_smb = [1], these pins are nonfunctional and should be tied to either logic [0] or [1]. PWDN 38 I, LVCMOS For EN_smb = [0], this is the power down pin. When the PWDN is set to a [0], the device is in the power down mode. The SMBus circuitry can still be accessed provided the EN_smb pin is set to a [1]. In the SMBus mode, the device is powered up by either setting the PWDN pin to [1] OR by writing a [1] to the Control Register D[7] bit ( SoftPWDN). The device will be powered down by setting the PWDN pin to [0] AND by writing a [0] to the Control Register D[7] bit ( SoftPWDN). NC 11, 12, 18, 19, 20, 31, 39, 40 No connect pins. May be left floating. VDD 3, 8, 15,25, 30 Power Power supply pins. GND 16, DAP Power Ground pin and pad (DAP - die attach pad). www.national.com 4 DS10CP154AAbsolute Maximum Ratings (Note 4) If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Supply Voltage −0.3V to +4V LVCMOS Input Voltage −0.3V to (VCC + 0.3V) LVCMOS Output Voltage −0.3V to (VCC + 0.3V) LVDS Input Voltage −0.3V to +4V LVDS Differential Input Voltage 0V to 1.0V LVDS Output Voltage −0.3V to (VCC + 0.3V) LVDS Differential Output Voltage 0V to 1.0V LVDS Output Short Circuit Current Duration 5 ms Junction Temperature +150°C Storage Temperature Range −65°C to +150°C Lead Temperature Range Soldering (4 sec.) +260°C Maximum Package Power Dissipation at 25°C SQA Package 4.65W Derate SQA Package 37.2 mW/°C above +25°C Package Thermal Resistance θJA +26.9°C/W θJC +3.8°C/W ESD Susceptibility HBM (Note 1) ≥8 kV MM (Note 2) ≥250V CDM (Note 3) ≥1250V Note 1: Human Body Model, applicable std. JESD22-A114C Note 2: Machine Model, applicable std. JESD22-A115-A Note 3: Field Induced Charge Device Model, applicable std. JESD22-C101-C Recommended Operating Conditions Min Typ Max Units Supply Voltage (VCC) 3.0 3.3 3.6 V Receiver Differential Input Voltage (VID) 0 1.0 V Operating Free Air Temperature (TA ) −40 +25 +85 °C SMBus (SDA, SCL) 3.6 V Electrical Characteristics Over recommended operating supply and temperature ranges unless otherwise specified. (Notes 5, 6, 7) Symbol Parameter Conditions Min Typ Max Units LVCMOS DC SPECIFICATIONS VIH High Level Input Voltage 2.0 VDD V VIL Low Level Input Voltage GND 0.8 V I IH High Level Input Current VIN = 3.6V VCC = 3.6V 0 ±10 μA EN_smb pin 40 175 250 μA I IL Low Level Input Current VIN = GND VCC = 3.6V 0 ±10 μA VCL Input Clamp Voltage ICL = −18 mA, VCC = 0V −0.9 −1.5 V VOL Low Level Output Voltage IOL= 4 mA SDA pin 0.4 V LVDS INPUT DC SPECIFICATIONS VID Input Differential Voltage 0 1 V VTH Differential Input High Threshold VCM = +0.05V or VCC-0.05V 0 +100 mV VTL Differential Input Low Threshold −100 0 mV VCMR Common Mode Voltage Range VID = 100 mV 0.05 VCC - 0.05 V I IN Input Current VIN = 3.6V or 0V VCC = 3.6V or 0V ±1 ±10 μA CIN Input Capacitance Any LVDS Input Pin to GND 1.7 pF RIN Input Termination Resistor Between IN+ and IN- 100 Ω 5 www.national.com DS10CP154ASymbol Parameter Conditions Min Typ Max Units LVDS OUTPUT DC SPECIFICATIONS VOD Differential Output Voltage RL = 100Ω 250 350 450 mV ΔVOD Change in Magnitude of VOD for Complimentary Output States -35 35 mV VOS Offset Voltage RL = 100Ω 1.05 1.2 1.375 V ΔVOS Change in Magnitude of VOS for Complimentary Output States -35 35 mV IOS Output Short Circuit Current (Note 8) OUT to GND -25 -55 mA OUT to VCC 7 55 mA COUT Output Capacitance Any LVDS Output Pin to GND 1.2 pF ROUT Output Termination Resistor Between OUT+ and OUT- 100 Ω SUPPLY CURRENT ICC1 Supply Current PWDN = 0 40 50 mA ICC2 Supply Current PWDN = 1 Broadcast Mode (1:4) 103 125 mA ICC3 Supply Current PWDN = 1 Quad Buffer Mode (4:4) 115 140 mA Note 4: “Absolute Maximum Ratings” indicate limits beyond which damage to the device may occur, including inoperability and degradation of device reliability and/or performance. Functional operation of the device and/or non-degradation at the Absolute Maximum Ratings or other conditions beyond those indicated in the Recommended Operating Conditions is not implied. The Recommended Operating Conditions indicate conditions at which the device is functional and the device should not be operated beyond such conditions. Note 5: The Electrical Characteristics tables list guaranteed specifications under the listed Recommended Operating Conditions except as otherwise modified or specified by the Electrical Characteristics Conditions and/or Notes. Typical specifications are estimations only and are not guaranteed. Note 6: Current into device pins is defined as positive. Current out of device pins is defined as negative. All voltages are referenced to ground except VOD and ΔVOD. Note 7: Typical values represent most likely parametric norms for VCC = +3.3V and TA = +25°C, and at the Recommended Operation Conditions at the time of product characterization and are not guaranteed. Note 8: Output short circuit current (IOS) is specified as magnitude only, minus sign indicates direction only. www.national.com 6 DS10CP154AAC Electrical Characteristics Over recommended operating supply and temperature ranges unless otherwise specified. (Notes 9, 10) Symbol Parameter Conditions Min Typ Max Units LVDS OUTPUT AC SPECIFICATIONS (Note 11) tPLHD Differential Propagation Delay Low to High RL = 100Ω 500 675 ps tPHLD Differential Propagation Delay High to Low 460 675 ps tSKD1 Pulse Skew |tPLHD − tPHLD| , (Note 12) 40 100 ps tSKD2 Channel to Channel Skew , (Note 13) 40 125 ps tSKD3 Part to Part Skew , (Note 14) 50 225 ps tLHT Rise Time RL = 100Ω 145 350 ps tHLT Fall Time 145 350 ps tON Power Up Time Time from PWDN = LH to OUTn active 7 20 μs tOFF Power Down Time Time from PWDN = HL to OUTn inactive 6 25 ns tSEL Select Time Time from Sn = LH or HL to new signal at OUTn 8 12 ns JITTER PERFORMANCE (Note 11) tRJ1 Random Jitter (RMS Value) (Note 15) VID = 350 mV VCM = 1.2V Clock (RZ) 135 MHz 1 2.0 ps tRJ2 311 MHz 0.5 1.2 ps tRJ3 503 MHz 0.5 1.0 ps tRJ4 750 MHz 0.5 1.0 ps tDJ1 Deterministic Jitter (Peak to Peak Value) (Note 16) VID = 350 mV VCM = 1.2V K28.5 (NRZ) 270 Mbps 7 30 ps tDJ2 622 Mbps 12 26 ps tDJ3 1.06 Gbps 9 24 ps tDJ4 1.5 Gbps 12 28 ps tTJ1 Total Jitter (Peak to Peak Value) (Note 17) VID = 350 mV VCM = 1.2V PRBS-23 (NRZ) 270 mbps 0.008 0.036 UIP-P tTJ2 622 Mbps 0.007 0.043 UIP-P tTJ3 1.06Gbps 0.008 0.064 UIP-P tTJ4 1.5 Gbps 0.007 0.072 UIP-P 7 www.national.com DS10CP154ASymbol Parameter Conditions Min Typ Max Units SMBus AC SPECIFICATIONS fSMB SMBus Operating Frequency 10 100 kHz tBUF Bus free time between Stop and Start Conditions 4.7 μs tHD:SDA Hold time after (Repeated) Start Condition. After this period, the first clock is generated. 4.0 μs tSU:SDA Repeated Start Condition setup time. 4.7 μs tSU:SDO Stop Condition setup time 4.0 μs tHD:DAT Data hold time 300 ns tSU:DAT Data setup time 250 ns tTIMEOUT Detect clock low timeout 25 35 ms tLOW Clock low period 4.7 μs tHIGH Clock high period 4.0 50 μs tPOR Time in which a device must be operational after power-on reset 500 ms Note 9: The Electrical Characteristics tables list guaranteed specifications under the listed Recommended Operating Conditions except as otherwise modified or specified by the Electrical Characteristics Conditions and/or Notes. Typical specifications are estimations only and are not guaranteed. Note 10: Typical values represent most likely parametric norms for VCC = +3.3V and TA = +25°C, and at the Recommended Operation Conditions at the time of product characterization and are not guaranteed. Note 11: Specification is guaranteed by characterization and is not tested in production. Note 12: tSKD1, |tPLHD − tPHLD|, Pulse Skew, is the magnitude difference in differential propagation delay time between the positive going edge and the negative going edge of the same channel. Note 13: tSKD2, Channel to Channel Skew, is the difference in propagation delay (tPLHD or tPHLD) among all output channels in Broadcast mode (any one input to all outputs). Note 14: tSKD3, Part to Part Skew, is defined as the difference between the minimum and maximum differential propagation delays. This specification applies to devices at the same VCC and within 5°C of each other within the operating temperature range. Note 15: Measured on a clock edge with a histogram and an acummulation of 1500 histogram hits. Input stimulus jitter is subtracted geometrically. Note 16: Tested with a combination of the 1100000101 (K28.5+ character) and 0011111010 (K28.5- character) patterns. Input stimulus jitter is subtracted algebraically. Note 17: Measured on an eye diagram with a histogram and an acummulation of 3500 histogram hits. Input stimulus jitter is subtracted. www.national.com 8 DS10CP154ADC Test Circuits 30073720 FIGURE 1. Differential Driver DC Test Circuit AC Test Circuits and Timing Diagrams 30073721 FIGURE 2. Differential Driver AC Test Circuit 30073722 FIGURE 3. Propagation Delay Timing Diagram 30073723 FIGURE 4. LVDS Output Transition Times 9 www.national.com DS10CP154AFunctional Description The DS10CP154A is a 1.5 Gbps 4x4 LVDS digital crosspoint switch optimized for high-speed signal routing and switching over lossy FR-4 printed circuit board backplanes and balanced cables. The DS10CP154A operates in two modes: Pin Mode (EN_smb = 0) and SMBus Mode (EN_smb = 1). When in the Pin Mode, the switch is fully configurable with external pins. This is possible with two input select pins per output (e.g. S00 and S01 pins for OUT0). In the Pin Mode, feedback from the LOS (Loss Of Signal) monitor circuitry is not available (there is not an LOS output pin). When in the SMBus Mode, the full switch configuration and SoftPWDN can be programmed via the SMBus interface. In addition, by using the SMBus interface, a user can obtain the feedback from the built-in LOS circuitry which detects an open inputs fault condition. In the SMBus Mode, the S00 and S01 pins become SMBus clock (SCL) input and data (SDA) input pins respectively; the S10, S11, S21 and S21 pins become the User-Set SMBus Slave Address input pins (ADDR0, 1, 2 and 3) while the S30 and S31 pins become non-functional (tieing these two pins to either H or L is recommended if the device will function only in the SMBus mode). In the SMBus Mode, the PWDN pin remains functional. How this pin functions in each mode is detailed in the following sections. DS10CP154A OPERATION IN THE PIN MODE Power Up In the Pin Mode, when the power is applied to the device power suppy pins, the DS10CP154A enters the Power Up mode when the PWDN pin is set to logic H. When in the Power Down mode (PWDN pin is set to logic L), all circuitry is shut down except the minimum required circuitry for the LOS and SMBus Slave operation. Switch Configuration In the Pin Mode, the DS10CP154A operates as a fully pinconfigurable crosspoint switch. The following truth tables illustrate how the swich can be configured with external pins. Switch Configuration Truth Tables TABLE 1. Input Select Pins Configuration for the Output OUT0 S01 S00 INPUT SELECTED 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 TABLE 2. Input Select Pins Configuration for the Output OUT1 S11 S10 INPUT SELECTED 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 www.national.com 10 DS10CP154ATABLE 3. Input Select Pins Configuration for the Output OUT2 S21 S20 INPUT SELECTED 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 TABLE 4. Input Select Pins Configuration for the Output OUT3 S31 S30 INPUT SELECTED 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 DS10CP154A OPERATION IN THE SMBUS MODE The DS10CP154A operates as a slave on the System Management Bus (SMBus) when the EN_smb pin is set to a high (1). Under these conditions, the SCL pin is a clock input while the SDA pin is a serial data input pin. Device Address Based on the SMBus 2.0 specification, the DS10CP154A has a 7-bit slave address. The three most significant bits of the slave address are hard wired inside the DS10CP154A and are “101”. The four least significant bits of the address are assigned to pins ADDR3-ADDR0 and are set by connecting these pins to GND for a low (0) or to VCC for a high (1). The complete slave address is shown in the following table: TABLE 5. DS10CP154A Slave Address 1 0 1 ADDR3 ADDR2 ADDR1 ADDR0 MSB LSB This slave address configuration allows up to sixteen DS10CP154A devices on a single SMBus bus. Transfer of Data via the SMBus During normal operation the data on SDA must be stable during the time when SCK is high. There are three unique states for the SMBus: START: A HIGH to LOW transition on SDA while SCK is high indicates a message START condition. STOP: A LOW to HIGH transition on SDA while SCK is high indicates a message STOP condition. IDLE: If SCK and SDA are both high for a time exceeding tBUF from the last detected STOP condition or if they are high for a total exceeding the maximum specification for tHIGH then the bus will transfer to the IDLE state. SMBus Transactions A transaction begins with the host placing the DS10CP154A SMBus into the START condition, then a byte (8 bits) is transferred, MSB first, followed by a ninth ACK bit. ACK bits are ‘0’ to signify an ACK, or ‘1’ to signify NACK, after this the host holds the SCL line low, and waits for the receiver to raise the SDA line as an ACKnowledge that the byte has been received. Writing to a Register To write a register, the following protocol is used (see SMBus 2.0 specification): 1) The Host drives a START condition, the 7-bit SMBus address, and a “0” indicating a WRITE. 2) The Device (Slave) drives an ACK bit (“0”). 3) The Host drives the 8-bit Register Address. 4) The Device drives an ACK bit (“0”). 5) The Host drives the 8-bit data byte. 6) The Device drives an ACK bit “0”. 7) The Host drives a STOP condition. The WRITE transaction is completed, the bus goes Idle and communication with other SMBus devices may now occur. Reading From a Register To read a register, the following protocol is used (see SMBus 2.0 specification): 1) The Host drives a START condition, the 7-bit SMBus address, and a “0” indicating a WRITE. 2) The Device (Slave) drives an ACK bit (“0”). 3) The Host drives the 8-bit Register Address. 4) The Device drives an ACK bit (“0”). 5) The Host drives a START condition. 6) The Host drives the 7-bit SMBus Address, and a “1” indicating a READ. 7) The Device drives an ACK bit “0”. 8) The Device drives the 8-bit data value (register contents). 9) The Host drives a NACK bit “1” indicating end of READ transfer. 10) The Host drives a STOP condition. The READ transaction is completed, the bus goes Idle and communication with other SMBus devices may now occur. 11 www.national.com DS10CP154AREGISTER DESCRIPTIONS There are three data registers in the DS10CP154A accessible via the SMBus interface. TABLE 6. DS10CP154A SMBus Data Registers Address (hex) Name Access Description 0 Switch Configuration R/W Switch Configuration Register 3 Control R/W Powerdown, LOS Enable and Pin Control Register 4 LOS RO Loss Of Signal (LOS) Reporting Register 30073710 FIGURE 5. DS10CP154A Registers Block Diagram www.national.com 12 DS10CP154ASwitch Configuration Register The Switch Configuration register is utilized to configure the switch. The following two tables show the Switch Configuration Register mapping and associated truth table. Bit Default Bit Name Access Description D[1:0] 00 Input Select 0 R/W Selects which input is routed to the OUT0. D[3:2] 00 Input Select 1 R/W Selects which input is routed to the OUT1. D[5:4] 00 Input Select 2 R/W Selects which input is routed to the OUT2. D[7:6] 00 Input Select 3 R/W Selects which input is routed to the OUT3. TABLE 7. Switch Configuration Register Truth Table D1 D0 Input Routed to the OUT0 0 0 IN0 0 1 IN1 1 0 IN2 1 1 IN3 The truth tables for the OUT1, OUT2, and OUT3 outputs are identical to this table. The switch configuration logic has a SmartPWDN circuitry which automatically optimizes the device's power consumption based on the switch configuration (i.e. It places unused I/O blocks and other unused circuitry in the power down state). 13 www.national.com DS10CP154AControl Register The Control register enables SoftPWDN control, individual output power down (PWDNn) control and LOS Circuitry Enable control via the SMBus. The following table shows the register mapping. Bit Default Bit Name Access Description D[3:0] 1111 PWDNn R/W Writing a [0] to the bit D[n] will power down the output OUTn when either the PWDN pin OR the Control Register bit D[7] (SoftPWDN) is set to a high [1]. D[4] x n/a R/W Undefined. D[5] x n/a R/W Undefined. D[6] 0 EN_LOS R/W Writing a [1] to the bit D[6] will enable the LOS circuitry and receivers on all four inputs. The SmartPWDN circuitry will not disable any of the inputs nor any supporting LOS circuitry depending on the switch configuration. D[7] 0 SoftPWDN R/W Writing a [0] to the bit D[7] will place the device into the power down mode. This pin is ORed together with the PWDN pin. TABLE 8. DS10CP154A Power Modes Truth Table PWDN SoftPWDN PWDNn DS25CP104 Power Mode 0 0 x Power Down Mode. In this mode, all circuitry is shut down except the minimum required circuitry for the LOS and SMBus Slave operation. The SMBus circuitry allows enabling the LOS circuitry and receivers on all inputs in this mode by setting the EN_LOS bit to a [1]. 0 1 1 1 0 1 x x x Power Up Mode. In this mode, the SmartPWDN circuitry will automatically power down any unused I/O and logic blocks and other supporting circuitry depending on the switch configuration. An output will be enabled only when the SmartPWDN circuitry indicates that that particular output is needed for the particular switch configuration and the respective PWDNn bit has logic high [1]. An input will be enabled when the SmartPWDN circuitry indicates that that particular input is needed for the particular switch configuration or the EN_LOS bit is set to a [1]. LOS Register The LOS register reports an open inputs fault condition for each of the inputs. The following table shows the register mapping. Bit Default Bit Name Access Description D[0] 0 LOS0 RO Reading a [0] from the bit D[0] indicates an open inputs fault condition on the IN0. A [1] indicates presence of a valid signal. D[1] 0 LOS1 RO Reading a [0] from the bit D[1] indicates an open inputs fault condition on the IN1. A [1] indicates presence of a valid signal. D[2] 0 LOS2 RO Reading a [0] from the bit D[2] indicates an open inputs fault condition on the IN2. A [1] indicates presence of a valid signal. D[3] 0 LOS3 RO Reading a [0] from the bit D[3] indicates an open inputs fault condition on the IN3. A [1] indicates presence of a valid signal. D[7:4] 0000 Reserved RO Reserved for future use. Returns undefined value when read. www.national.com 14 DS10CP154AINPUT INTERFACING The DS10CP154A accepts differential signals and allows simple AC or DC coupling. With a wide common mode range, the DS10CP154A can be DC-coupled with all common differential drivers (i.e. LVPECL, LVDS, CML). The following three figures illustrate typical DC-coupled interface to common differential drivers. Note that the DS10CP154A inputs are internally terminated with a 100Ω resistor. 30073731 Typical LVDS Driver DC-Coupled Interface to DS10CP154A Input 30073732 Typical CML Driver DC-Coupled Interface to DS10CP154A Input 30073733 Typical LVPECL Driver DC-Coupled Interface to DS10CP154A Input 15 www.national.com DS10CP154AOUTPUT INTERFACING The DS10CP154A outputs signals that are compliant to the LVDS standard. Its outputs can be DC-coupled to most common differential receivers. The following figure illustrates typical DC-coupled interface to common differential receivers and assumes that the receivers have high impedance inputs. While most differential receivers have a common mode input range that can accomodate LVDS compliant signals, it is recommended to check respective receiver's data sheet prior to implementing the suggested interface implementation. 30073734 Typical DS10CP154A Output DC-Coupled Interface to an LVDS, CML or LVPECL Receiver www.national.com 16 DS10CP154APhysical Dimensions inches (millimeters) unless otherwise noted Order Number DS10CP154ATSQ NS Package Number SQA40A (See AN-1187 for PCB Design and Assembly Recommendations) 17 www.national.com DS10CP154ANotes DS10CP154A 1.5 Gbps 4x4 LVDS Crosspoint Switch For more National Semiconductor product information and proven design tools, visit the following Web sites at: Products Design Support Amplifiers www.national.com/amplifiers WEBENCH www.national.com/webench Audio www.national.com/audio Analog University www.national.com/AU Clock Conditioners www.national.com/timing App Notes www.national.com/appnotes Data Converters www.national.com/adc Distributors www.national.com/contacts Displays www.national.com/displays Green Compliance www.national.com/quality/green Ethernet www.national.com/ethernet Packaging www.national.com/packaging Interface www.national.com/interface Quality and Reliability www.national.com/quality LVDS www.national.com/lvds Reference Designs www.national.com/refdesigns Power Management www.national.com/power Feedback www.national.com/feedback Switching Regulators www.national.com/switchers LDOs www.national.com/ldo LED Lighting www.national.com/led PowerWise www.national.com/powerwise Serial Digital Interface (SDI) www.national.com/sdi Temperature Sensors www.national.com/tempsensors Wireless (PLL/VCO) www.national.com/wireless THE CONTENTS OF THIS DOCUMENT ARE PROVIDED IN CONNECTION WITH NATIONAL SEMICONDUCTOR CORPORATION (“NATIONAL”) PRODUCTS. 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Copyright© 2008 National Semiconductor Corporation For the most current product information visit us at www.national.com National Semiconductor Americas Technical Support Center Email: support@nsc.com Tel: 1-800-272-9959 National Semiconductor Europe Technical Support Center Email: europe.support@nsc.com German Tel: +49 (0) 180 5010 771 English Tel: +44 (0) 870 850 4288 National Semiconductor Asia Pacific Technical Support Center Email: ap.support@nsc.com National Semiconductor Japan Technical Support Center Email: jpn.feedback@nsc.com www.national.com OXPCIe840, PCI Express to Parallel Port Highlights General Features oSingle IEEE1284 parallel port oPCIe x1 end-point -Integrated 2.5 GT/s SerDes o11 x 11mm2 , 120-pin TFBGA package oTypical Power: 200 mWatts Key Features oStandards Compliant -PCI Express Base Specification, r1.1 (backwards compatible with PCIe r1.0a) -PCI Power Management Spec, r1.2 -ExpressCard, Mini Card & AIC compatible -MSI/MSI-X compatible - ASPM (L0S, L1) Link power management oHigh Performance -IEEE1284 compliant parallel port: Supports SPP, EPP, and ECP modes 5V tolerant parallel port IOs Direction control logic for external parallel port drivers oFlexibility -8 user-configurable GPIOs/PWMs - Device parameters configurable via EEPROM -1.8V, 2.5V or 3.3V UART & GPIO I/O voltage oRobust Operation - Operation from a single 3.3 V supply -Industrial temperature range -40°C to 85°C oBroad Device Driver Support -Windows Vista/XP/2K -WinCE 4.2/5.0/6.0 -Linux 2.4/2.6 Part of the Expresso family of high performance PCI Express devices, the OXPCIe840 is a single chip parallel port device in a range of 2, 4 & 8 serial port solutions, that includes the OXPCIe952, OXPCIe954 & OXPCIe958. Incorporating PLX Technology’s high performance parallel port technology, it combines outstanding system performance with unrivaled flexibility for a class leading connectivity solution. Complete with the Oxide development tools and certified device drivers, the OXPCIe840 is easy to design-in and the ideal connectivity solution for a diverse range of products including: PC Add-on Cards, Industrial PC, Point of Sale Terminals, Industrial Control, and Embedded Systems. Accelerate your product development and time to market with Oxide and PLX Technology’s easy to design-in, high performance serial connectivity solutions that just work. © PLX Technology, www.plxtech.com Page 1 of 2 4/29/2009, Version 1.00 OXPCIe840, PCI Express to Parallel Port Outstanding Performance The OXPCIe840 offers the flexibility of SPP, EPP, and ECP modes of parallel port operation, with advanced MSI interrupt handling for optimum system performance. Its 5V tolerant IOs can be connected directly to a parallel port device or for true 5V signalling environments the OXPCIe840 includes the direction control logic required for an external parallel port driver. Additionally the device provides 8 GPIO/PWM lines for further flexibility and product customization. With comprehensive power management and industrial temperature range as standard, the OXPCIe840 is perfect for power and temperature sensitive ExpressCard and MiniCarddesigns and is the choice for high performance systems. To support these advanced features the OXPCIe840 is backed by a dedicated PLX device driver that is quality assured, exhaustively tested and WHQL approved; saving development time and providing peace of mind. OXPCIe840 Development Support Design and evaluation of the OXPCIe840 couldn’t be easier with this comprehensive reference design kit (RDK). The RDK includes everything you need for PC installation and evaluation including Hardware, Oxide Development Tools and software device drivers. Simply plug the half length PCI Express evaluation board into any PCI Express slot, install the software and its ready to go. Changing the dynamics of device customization, Oxide development tools enable customization of the OXPCIe840 in minutes. No more complex, time consuming, error prone manual editing of programming files and driver source code; Oxide’s intuitive graphical user interface provides simple ‘point and click’ feature selection and text box entry for fast, error free customization with minimal software expertise as well as instant access to up to date documentation, software and reference designs. Check the PLX website for details. Ordering Information Part Number Description OXPCIe840-FBAG Parallel Port to PCIe Bridge EK-OXPCIe840 Reference Design Kit © PLX Technology, www.plxtech.com Page 2 of 2 4/29/2009, Version 1.00 BALADEUSE ETANCHE HLWC 111; Tension, alimentation:230V; Puissance:11W; Light Source:Fluorescente; Longueur:265mm; Couleur, lentilles:Clear; IP / NEMA Rating:IP67; Largeur (externe):50mm; Longueur/hauteur:265mm; Matière:Plastic; Poids:1kg; Tension d'alimentation Vac:230V MAGNIFIER, LUMINAIRE, SNL319 - UK; Tension, alimentation:230V; Lamp Base Type:3 x fluocompact 9W; Puissance:9W; Light Source:Fluorescente; Longueur:830mm; Diamètre, lentille:162.11mm; Couleur:Light grey RAL7035; Tension d'alimentation Vac:230V LUMINAIRE, 3-ARM, IP64, ES, 60W; Tension, alimentation:240V; Puissance:60W; Light Source:Å” incandescence; Longueur:750mm; Diamètre, lentille:127mm; Diamètre, extérieur:127mm; IP / NEMA Rating:IP64; Longueur (max..):750mm TUBULAR LIGHT, CFL, 110V EXT, 18W; Tension, alimentation:110V; Lamp Base Type:Bi-broche; Puissance:18W; Light Source:Fluorescente compacte; Longueur:478mm; Diamètre, lentille:60mm; Diamètre, extérieur:60mm; IP / NEMA Rating:IP67; Longueur (max..):478mm; Longueur cordon:2.75m; Longueur/hauteur:478mm; Tension, alimentation c.c.:110V FLUORESCENT FITTING, T5 LINK, 570MM; Tension, alimentation:230V; Lamp Base Type:T5; Puissance:13W; Longueur:570mm; SVHC:No SVHC (19-Dec-2011); Couleur:White; Hauteur:43mm; IP / NEMA Rating:IP20; Largeur (externe):21mm; Light Source:Fluorescente; Longueur/hauteur:570mm; Matière:Polycarbonate; Profondeur:55mm; Tension d'alimentation Vac:230V TUBULAR LIGHT, T8, IP67, 240V, 36W; Tension, alimentation:240V; Lamp Base Type:T8; Puissance:36W; Light Source:Fluorescente; Longueur:1.35m; Diamètre, lentille:80mm; Diamètre, extérieur:80mm; IP / NEMA Rating:IP67; Longueur (max..):1350mm; Longueur cordon:2.75m; Longueur/hauteur:1350mm; Tension d'alimentation Vac:240V TUBULAR LIGHT, CFL, 110V INT, 24W; Tension, alimentation:110V; Lamp Base Type:Bi-broche; Puissance:24W; Light Source:Fluorescente compacte; Longueur:579mm; Diamètre, lentille:60mm; Diamètre, extérieur:60mm; IP / NEMA Rating:IP67; Longueur (max..):579mm; Longueur cordon:2.75m; Longueur/hauteur:579mm; Tension, alimentation c.c.:110V ECLAIRAGE MURAL BLANC; Light Source:BC GLS 100W; Longueur:220mm; Largeur:230mm; Profondeur:230mm; SVHC:No SVHC (19-Dec-2011); Couleur:Blanc; Hauteur:220mm; IP / NEMA Rating:IP65; Lamp Base Type:BC 100W; Matière:Cast Aluminium; Puissance:100W; Tension, alimentation:230V; Tension d'alimentation Vac:230V LIGHT FITTING, CEILING BRASS; SVHC:No SVHC (19-Dec-2011); Couleur:Brass; Diamètre, extérieur:305mm; IP / NEMA Rating:IP20; Lamp Base Type:BC 60W; Light Source:1 x lampe GLS 60W BC; Longueur/hauteur:90mm; Matière:Pressed Steel; Profondeur:90mm; Puissance:60W; Tension, alimentation:230V; Tension d'alimentation Vac:230V LIGHT FITTING, CEILING, SLIM, 16W; Largeur:295mm; Profondeur:45mm; SVHC:No SVHC (19-Dec-2011); Couleur:White; Diamètre, extérieur:295mm; IP / NEMA Rating:IP20; Lamp Base Type:4 broches double-D; Largeur (externe):295mm; Light Source:1 x 4 broches 2D 16W; Longueur/hauteur:45mm; Matière:Steel/Acrylic; Profondeur:45mm; Puissance:16W; Tension, alimentation:230V; Tension d'alimentation Vac:230V ECLAIRAGE SIMPLE SPOT BLANC; Longueur:145mm; Largeur:90mm; Profondeur:160mm; SVHC:No SVHC (19-Dec-2011); Couleur:White; Diamètre, extérieur:90mm; Hauteur:160mm; IP / NEMA Rating:IP20; Lamp Base Type:ES R80; Largeur (externe):90mm; Light Source:1 x ES R80 100W; Longueur/hauteur:145mm; Matière:Pressed Steel; Profondeur:160mm; Puissance:100W; Tension, alimentation:230V; Tension d'alimentation Vac:230V TRACKLIGHT, COUPLER; SVHC:No SVHC (19-Dec-2011); Couleur:White; IP / NEMA Rating:IP20 TRACKLIGHT, FLEXIBLE TRACK COUPLER; SVHC:No SVHC (19-Dec-2011); Couleur:White; IP / NEMA Rating:IP20 TRACKLIGHT, LIVE END; SVHC:No SVHC (19-Dec-2011); Couleur:White; IP / NEMA Rating:IP20 TRACKLIGHT, TRACK 1200MM; Longueur:1.2m; SVHC:No SVHC (19-Dec-2011); Couleur:White; IP / NEMA Rating:IP20; Longueur/hauteur:1200mm ECLAIRAGE TRIPLE SPOT GZ10 BLANC; Longueur:257mm; Profondeur:120mm; SVHC:No SVHC (19-Dec-2011); Couleur:White; Diamètre, extérieur:257mm; Hauteur:120mm; IP / NEMA Rating:IP21; Lamp Base Type:GZ10, 50W; Largeur (externe):55mm; Light Source:Halogène; Longueur/hauteur:257mm; Matière:Pressed Steel/Cast Aluminium; Puissance:50W; Tension, alimentation:230V; Tension d'alimentation Vac:230V ECLAIRAGE DOUBLE SPOTS BLANC; Longueur:370mm; Largeur:90mm; Profondeur:170mm; SVHC:No SVHC (19-Dec-2011); Couleur:White; Diamètre, extérieur:90mm; Hauteur:170mm; IP / NEMA Rating:IP20; Lamp Base Type:ES R80; Largeur (externe):90mm; Light Source:2 x ES R80 100W; Longueur/hauteur:370mm; Matière:Pressed Steel; Puissance:100W; Tension, alimentation:230V; Tension d'alimentation Vac:230V VOYANT NEON; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Vert; Couleur:vert; Diamètre de découpe panneau:9.5mm; Diamètre, lentille:12mm; Dimension de la lentille:12mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:31mm; Profondeur, derrière panneau:9mm; Taille de lampe:12mm; Tension d'alimentation Vac:250V INDICATOR NEON 110V BLEU; Tension, alimentation:110V; Lamp Base Type:Fil; Intensité lumineuse:7.5mcd; Couleur:Bleu; Diamètre trou de fixation:14mm; Courant:6mA; SVHC:No SVHC (19-Dec-2011); Approval Bodies:CE; Base Type:Fil; Couleur:Bleu; Courant, fonctionnement c.a.:6mA; Diamètre de découpe panneau:14.5mm; Diamètre, encadrement:16mm; Dimension de la lentille:10mm; Durée de vie:25000h; Durée de vie moyenne de la lampe:25000h; Intensité lumineuse typique:7.5mcd; Longueur, derrière panneau:67mm; Ma VOYANT NEON; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Ambre; Couleur:Ambre; Diamètre de découpe panneau:9.5mm; Diamètre, lentille:12mm; Dimension de la lentille:12mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:31mm; Profondeur, derrière panneau:9mm; Taille de lampe:12mm; Tension d'alimentation Vac:250V PLUNGER, RACON, DIA 11.5MM, L 4.8MM; Couleur:White; Diamètre, extérieur:11.5mm; Hauteur:9.7mm; Longueur:4.8mm; Longueur/hauteur:4.8mm CHASSIS D'INSOLATION A PRESSION 1 FACE; Longueur:625mm; Largeur:305mm; Profondeur:104mm; Working Area:254mm x 405mm; SVHC:No SVHC (19-Dec-2011); Poids:9.5kg; Puissance:60W; Temps de fonctionnement max.:7min; Tension, alimentation:220V; Tension d'alimentation Vac:220V; Tubes, nombre:4 CHASSIS D'INSOLATION A PRESSION CIP 1840; Largeur:290mm; Profondeur:135mm; Working Area:180mm x 400mm; SVHC:No SVHC (19-Dec-2011); Consommation de puissance:30W; Courant:30mA; Hauteur:135mm; Largeur (externe):290mm; Longueur/hauteur:480mm; Poids:5.5kg; Puissance:30W; Tension, alimentation:230V LAMP, E/SAVING, BC, 9W; Tension, alimentation:240V; Puissance:9W; Flux lumineux:45lm; Longueur:145mm; Diamètre de l'ampoule:41mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:41mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:145mm; Puissance GLS équivalente:40W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, CANDLE, BC, 3W; Tension, alimentation:240V; Puissance:3W; Longueur:120mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:120mm; Puissance GLS équivalente:20W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, CANDLE, ES, 3W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:3W; Longueur:120mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:120mm; Puissance GLS équivalente:20W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, MINI, BC, 14W; Tension, alimentation:240V; Puissance:14W; Longueur:132mm; Diamètre de l'ampoule:40mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:40mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:132mm; Puissance GLS équivalente:75W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, GLOBE, BC, 178MM, B22, 24W; Tension, alimentation:240V; Puissance:24W; Longueur:178mm; Diamètre de l'ampoule:110mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:110mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:178mm; Puissance GLS équivalente:120W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, GLOBE, ES, 168MM, E27, 20W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:20W; Longueur:168mm; Diamètre de l'ampoule:110mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:110mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:168mm; Puissance GLS équivalente:100W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, GLOBE, ES, 178MM, E27, 24W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:24W; Longueur:178mm; Diamètre de l'ampoule:110mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:110mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:178mm; Puissance GLS équivalente:120W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, MINI, SPIRAL, FLUO, BC, 7W; Tension, alimentation:240V; Puissance:7W; Flux lumineux:420lm; Longueur:87mm; Diamètre de l'ampoule:32mm; Température, couleur:2700K; Diamètre, extérieur:32mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:87mm; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V ENCASTRE GU10 MOULE ORIENTABLE CHROME; Profondeur:116mm; Diamètre, extérieur:80mm; Largeur (externe):80mm; Light Source:Halogène; Longueur/hauteur:116mm; Puissance:50W; Tension, alimentation:240V LAMP, LOW ENERGY, CANDLE, BC, 5W; Tension, alimentation:240V; Puissance:5W; Longueur:120mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:120mm; Puissance GLS équivalente:30W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, MINI, ES, 8W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:8W; Longueur:112mm; Diamètre de l'ampoule:40mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:40mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:112mm; Puissance GLS équivalente:40W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V FLUORESCENT LAMP, SPIRAL, BC, 20W; Tension, alimentation:240V; Puissance:20W; Longueur:138mm; Diamètre de l'ampoule:52mm; Température, couleur:2700K; Diamètre, extérieur:52mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:138mm; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V FLUORESCENT LAMP, SPIRAL, BC, 25W; Tension, alimentation:240V; Puissance:25W; Longueur:155mm; Diamètre de l'ampoule:53mm; Température, couleur:2700K; Diamètre, extérieur:53mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:155mm; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V FLUORESCENT LAMP, SPIRAL, ES, 25W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:25W; Longueur:155mm; Diamètre de l'ampoule:53mm; Température, couleur:2700K; Diamètre, extérieur:53mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:155mm; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V VOYANT NEON; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Clair; Diamètre trou de fixation:6.3mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:Clair; Diamètre de découpe panneau:6.35mm; Epaisseur, panneau max..:6.35mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:250V VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:Borne souder; Couleur:Vert; Diamètre trou de fixation:13.5mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:vert; Diamètre de découpe panneau:13.5mm; Diamètre, lentille:12mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:37.5mm; Tension d'alimentation Vac:250V LAMP, E/SAVING, ES, 9W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:9W; Flux lumineux:45lm; Longueur:145mm; Diamètre de l'ampoule:41mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:41mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:145mm; Puissance GLS équivalente:40W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, CANDLE, SES, 5W; Tension, alimentation:240V; Puissance:5W; Longueur:120mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:120mm; Puissance GLS équivalente:30W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, CANDLE, ES, 7W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:7W; Longueur:130mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:130mm; Puissance GLS équivalente:40W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, CANDLE, ES, 11W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:11W; Longueur:130mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:130mm; Puissance GLS équivalente:60W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V FLUORESCENT LAMP, SPIRAL, ES, 11W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:11W; Longueur:113mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:113mm; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V VOYANT NEON; Tension, alimentation:130V; Lamp Base Type:Fil; Couleur:Clair; Diamètre trou de fixation:6.3mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:Clair; Diamètre de découpe panneau:6.35mm; Epaisseur, panneau max..:6.35mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:130V VOYANT NEON AMBRE; Tension, alimentation:250V; Lamp Base Type:Borne souder; Couleur:Ambre; Diamètre trou de fixation:13.5mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:Ambre; Diamètre de découpe panneau:13.5mm; Diamètre, lentille:12mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:37.5mm; Tension d'alimentation Vac:250V VOYANT NEON; Tension, alimentation:250V; Lamp Base Type:Borne souder; Couleur:Clair; Diamètre trou de fixation:13.5mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:Clair; Diamètre de découpe panneau:13.5mm; Diamètre, lentille:12mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:37.5mm; Tension d'alimentation Vac:250V VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:Borne souder; Couleur:Vert; Diamètre trou de fixation:9mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:vert; Diamètre de découpe panneau:9mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:50mm; Tension d'alimentation Vac:250V VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Vert; Diamètre trou de fixation:12.7mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:vert; Diamètre de découpe panneau:12.7mm; Diamètre, lentille:14mm; Epaisseur, panneau max..:12mm; Longueur/hauteur:40mm; Tension d'alimentation Vac:250V LAMP, 2D, 38W, 4PIN, 3500K; Tension, alimentation:110V; Lamp Base Type:GR10q; Puissance:38W; Flux lumineux:2700lm; Longueur:207mm; Température, couleur:3500K; SVHC:No SVHC (19-Dec-2011); Durée de vie:10000h; Durée de vie moyenne de la lampe:10000h; Flux lumineux typique:2700lm; Intensité lumineuse, max..:2700lm; Largeur (externe):205mm; Longueur/hauteur:207mm; Nombre de broches:4; Tension d'alimentation Vac:230V LAMP, 2D, 16W, 2PIN, 2700K; Tension, alimentation:103V; Lamp Base Type:GR8; Puissance:16W; Flux lumineux:1050lm; Longueur:141mm; Température, couleur:2700K; SVHC:No SVHC (19-Dec-2011); Durée de vie:10000h; Durée de vie moyenne de la lampe:10000h; Flux lumineux typique:1050lm; Intensité lumineuse, max..:1050lm; Largeur (externe):138mm; Longueur/hauteur:141mm; Nombre de broches:2; Tension d'alimentation Vac:230V LAMP, 2D, 28W, 4PIN, 3500K; Tension, alimentation:108V; Lamp Base Type:GR10q; Puissance:28W; Flux lumineux:2050lm; Longueur:207mm; Température, couleur:3500K; SVHC:No SVHC (19-Dec-2011); Durée de vie:10000h; Durée de vie moyenne de la lampe:10000h; Flux lumineux typique:2050lm; Intensité lumineuse, max..:2050lm; Largeur (externe):205mm; Longueur/hauteur:207mm; Nombre de broches:4; Tension d'alimentation Vac:230V VOYANT; Taille de lampe:7.6mm; Tension, alimentation:14V; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Couleur:vert; Diamètre de découpe panneau:6.3mm; Dimension de la lentille:7.6mm; Epaisseur, panneau max..:6.3mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:14V VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Vert; Diamètre trou de fixation:12mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:Ambre; Diamètre de découpe panneau:12mm; Diamètre, lentille:13.6mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:40mm; Tension d'alimentation Vac:250V LAMP, LOW ENERGY, CANDLE, SES, 3W; Tension, alimentation:240V; Puissance:3W; Longueur:120mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:120mm; Puissance GLS équivalente:20W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, CANDLE, BC, 7W; Tension, alimentation:240V; Puissance:7W; Longueur:130mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:130mm; Puissance GLS équivalente:40W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, CANDLE, SES, 7W; Tension, alimentation:240V; Puissance:7W; Longueur:130mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:130mm; Puissance GLS équivalente:40W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, CANDLE, BC, 11W; Tension, alimentation:240V; Puissance:11W; Longueur:130mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:130mm; Puissance GLS équivalente:60W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, MINI, SES, 5W; Tension, alimentation:240V; Puissance:5W; Longueur:124mm; Diamètre de l'ampoule:40mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:40mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:124mm; Puissance GLS équivalente:25W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, LOW ENERGY, MINI, ES, 14W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:14W; Longueur:132mm; Diamètre de l'ampoule:40mm; Température, couleur:2700K; Couleur:Blanc chaud; Couleur:Warm White; Diamètre, extérieur:40mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:132mm; Puissance GLS équivalente:75W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V LAMP, GLOBE, BC, 168MM, B22, 20W; Tension, alimentation:240V; Puissance:20W; Longueur:168mm; Diamètre de l'ampoule:110mm; Température, couleur:2700K; Couleur:Warm White; Couleur:Blanc chaud; Diamètre, extérieur:110mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:168mm; Puissance GLS équivalente:100W; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V FLUORESCENT LAMP, SPIRAL, BC, 15W; Tension, alimentation:240V; Puissance:15W; Longueur:128mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:128mm; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V FLUORESCENT LAMP, SPIRAL, ES, 15W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:15W; Longueur:128mm; Diamètre de l'ampoule:42mm; Température, couleur:2700K; Diamètre, extérieur:42mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:128mm; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V FLUORESCENT LAMP, SPIRAL, ES, 20W; Tension, alimentation:240V; Lamp Base Type:ES; Puissance:20W; Longueur:138mm; Diamètre de l'ampoule:52mm; Température, couleur:2700K; Diamètre, extérieur:52mm; Durée de vie:8000h; Durée de vie moyenne de la lampe:8000h; Longueur/hauteur:138mm; Tension, alimentation c.a. max..:240V; Tension, alimentation c.a. min:220V VOYANT NEON AMBRE; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Ambre; Diamètre trou de fixation:6.3mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:Ambre; Diamètre de découpe panneau:6.35mm; Epaisseur, panneau max..:6.35mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:250V VOYANT NEON AMBRE; Taille de lampe:7.6mm; Tension, alimentation:130V; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Couleur:Ambre; Diamètre de découpe panneau:6.35mm; Epaisseur, panneau max..:6.35mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:130V VOYANT NEON AMBRE; Tension, alimentation:130V; Lamp Base Type:Borne souder; Couleur:Ambre; Diamètre trou de fixation:12.7mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:Ambre; Diamètre de découpe panneau:12.7mm; Diamètre, lentille:12mm; Epaisseur, panneau max..:19mm; Longueur/hauteur:37.5mm; Tension d'alimentation Vac:130V VOYANT NEON TRANSPARENT; Tension, alimentation:130V; Lamp Base Type:Borne souder; Couleur:Clair; Diamètre trou de fixation:12.7mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:Clair; Diamètre de découpe panneau:12.7mm; Diamètre, lentille:12mm; Epaisseur, panneau max..:19mm; Longueur/hauteur:37.5mm; Tension d'alimentation Vac:130V VOYANT NEON AMBRE; Tension, alimentation:250V; Lamp Base Type:Borne souder; Couleur:Ambre; Diamètre trou de fixation:12mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:Ambre; Diamètre de découpe panneau:12mm; Diamètre, lentille:13.6mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:38.2mm; Tension d'alimentation Vac:250V VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:Borne souder; Couleur:Vert; Diamètre trou de fixation:12mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:vert; Diamètre de découpe panneau:12mm; Diamètre, lentille:13.6mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:38.2mm; Tension d'alimentation Vac:250V VOYANT NEON AMBRE; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Ambre; Diamètre trou de fixation:12mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:vert; Diamètre de découpe panneau:12mm; Diamètre, lentille:13.6mm; Epaisseur, panneau max..:2mm; Longueur/hauteur:40mm; Tension d'alimentation Vac:250V VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Vert; Diamètre trou de fixation:6.3mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:vert; Diamètre de découpe panneau:6.35mm; Epaisseur, panneau max..:6.35mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:250V VOYANT NEON VERT; Tension, alimentation:130V; Lamp Base Type:Fil; Couleur:Vert; Diamètre trou de fixation:6.3mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:vert; Diamètre de découpe panneau:6.35mm; Epaisseur, panneau max..:6.35mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:130V BATTEN, TWIN, 36W, 4FT, S/S; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:36W; Longueur:1.24m; Diamètre de l'ampoule:26mm; Température, couleur:3500K; Couleur:White; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP20; Largeur (externe):89mm; Light Source:Fluorescente; Longueur/hauteur:1238mm; Profondeur:92mm; Profondeur:92mm EXIT SIGN, MAINTAINED, 8W; Longueur:360mm; Largeur:184mm; Profondeur:70mm; Température de fonctionnement max..:+25°C; IP / NEMA Rating:IP20; Durée de vie (fonctionnement):3 Hours; Lamp Base Type:G5; Largeur (externe):360mm; Longueur/hauteur:184mm; Poids:2.10kg; Profondeur:70mm; Puissance:8W; Tension, alimentation:230V BULKHEAD, SQUARE, IP65, OPAL, 28W; Longueur:254mm; Largeur:254mm; Profondeur:95mm; Couleur:Blanc; IP / NEMA Rating:IP65; Lamp Base Type:GR10q; Poids:1.4kg; Puissance:28W; Tension, alimentation:230V VOYANT NEON AMBRE; Tension, alimentation:130V; Lamp Base Type:Fil; Couleur:Ambre; Diamètre trou de fixation:12.7mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:Ambre; Diamètre de découpe panneau:12.7mm; Diamètre, lentille:14mm; Epaisseur, panneau max..:12mm; Longueur/hauteur:40mm; Tension d'alimentation Vac:130V VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Vert; Diamètre trou de fixation:8mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:vert; Diamètre de découpe panneau:8mm; Epaisseur, panneau max..:1.6mm; Epaisseur, panneau min.:0.8mm; Longueur/hauteur:41mm; Tension d'alimentation Vac:250V VOYANT NEON AMBRE; Tension, alimentation:250V; Lamp Base Type:Fil; Couleur:Ambre; Diamètre trou de fixation:8mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Fil; Couleur:Ambre; Diamètre de découpe panneau:8mm; Epaisseur, panneau max..:1.6mm; Epaisseur, panneau min.:0.8mm; Longueur/hauteur:41mm; Tension d'alimentation Vac:250V VOYANT; Taille de lampe:7.6mm; Tension, alimentation:28V; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Couleur:rouge; Diamètre de découpe panneau:6.3mm; Dimension de la lentille:7.6mm; Epaisseur, panneau max..:6.3mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:28V BATTEN, TWIN, 70W, 6FT, S/S; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:70W; Longueur:1.8m; Diamètre de l'ampoule:26mm; Température, couleur:3500K; Couleur:White; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP20; Largeur (externe):89mm; Light Source:Fluorescente; Longueur/hauteur:1802mm; Profondeur:92mm; Profondeur:92mm BULKHEAD, 8W, NON-MAINTAINED, IP65; Longueur:390mm; Largeur:110mm; Profondeur:90mm; Température de fonctionnement max..:+25°C; IP / NEMA Rating:IP65; Couleur, base:White; Durée de vie (fonctionnement):3 Hours; Lamp Base Type:G5; Largeur (externe):110mm; Longueur/hauteur:390mm; Poids:1.80kg; Profondeur:90mm; Puissance:8W; Tension, alimentation:230V FLUORESCENT FITTING, IP65, 1X58W; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:58W; Longueur:1.57m; Diamètre de l'ampoule:26mm; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP65; Largeur (externe):100mm; Light Source:Fluorescente; Longueur/hauteur:1570mm; Profondeur:101mm; Profondeur:101mm FLUORESCENT FITTING, IP65, 2X58W; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:58W; Longueur:1.57m; Diamètre de l'ampoule:26mm; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP65; Largeur (externe):160mm; Light Source:Fluorescente; Longueur/hauteur:1570mm; Profondeur:101mm; Profondeur:101mm FLOODLIGHT, GALAXY, SON-E/I, 70W; Longueur:375mm; Largeur:300mm; Profondeur:190mm; IP / NEMA Rating:IP65; Couleur, base:Black; Largeur (externe):300mm; Longueur/hauteur:322mm; Matière:Polycarbonate; Poids:3.5kg; Profondeur:190mm; Puissance:70W; Tension, alimentation:230V LAMP, 2D, 38W, 4PIN, 2700K; Puissance:38W; Température, couleur:2700K; SVHC:No SVHC (19-Dec-2011) VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:2 broches; Couleur:Vert; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Couleur:Vert / Noir; Epaisseur, panneau max..:2.5mm; Epaisseur, panneau min.:0.75mm; Tension d'alimentation Vac:250V; Type de terminaison:Faston Tab VOYANT; Taille de lampe:7.6mm; Tension, alimentation:28V; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Couleur:Ambre; Diamètre de découpe panneau:6.3mm; Dimension de la lentille:7.6mm; Epaisseur, panneau max..:6.3mm; Longueur/hauteur:14.5mm; Tension d'alimentation Vac:28V VOYANT NEON AMBRE; Tension, alimentation:250V; Lamp Base Type:Borne souder; Couleur:Ambre; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:Ambre; Epaisseur, panneau max..:3mm; Epaisseur, panneau min.:0.75mm; Tension d'alimentation Vac:250V BATTEN, SINGLE, 58W, 5FT, S/S; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:58W; Longueur:1.54m; Diamètre de l'ampoule:26mm; Température, couleur:3500K; Couleur:White; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP20; Largeur (externe):58mm; Light Source:Fluorescente; Longueur/hauteur:1538mm; Profondeur:92mm; Profondeur:92mm BULKHEAD, 8W, NON-MAINTAINED, IP65; Longueur:351mm; Largeur:95mm; Profondeur:75mm; Température de fonctionnement max..:+25°C; IP / NEMA Rating:IP65; Couleur, base:White; Durée de vie (fonctionnement):3 Hours; Lamp Base Type:G5; Largeur (externe):95mm; Longueur/hauteur:351mm; Poids:1.20kg; Profondeur:75mm; Puissance:8W; Tension, alimentation:230V LIGHT, LOWBAY, SON-E, 250W; Longueur:600mm; Largeur:318mm; Profondeur:184mm; IP / NEMA Rating:IP20; Lamp Base Type:E40; Largeur (externe):318mm; Longueur/hauteur:600mm; Matière:Aluminium; Poids:12kg; Profondeur:184mm; Puissance:250W; Tension, alimentation:230V VOYANT NEON VERT; Tension, alimentation:130V; Lamp Base Type:Borne souder; Couleur:Vert; Diamètre trou de fixation:12.7mm; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:vert; Diamètre de découpe panneau:12.7mm; Diamètre, lentille:12mm; Epaisseur, panneau max..:19mm; Longueur/hauteur:37.5mm; Tension d'alimentation Vac:130V VOYANT NEON VERT; Tension, alimentation:250V; Lamp Base Type:Borne souder; Couleur:Vert; SVHC:No SVHC (19-Dec-2011); Base Type:Borne souder; Couleur:vert; Epaisseur, panneau max..:3mm; Epaisseur, panneau min.:0.75mm; Tension d'alimentation Vac:250V BATTEN, SINGLE, 36W, 4FT, S/S; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:36W; Longueur:1.24m; Diamètre de l'ampoule:26mm; Température, couleur:3500K; Couleur:White; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP20; Largeur (externe):58mm; Light Source:Fluorescente; Longueur/hauteur:1238mm; Profondeur:92mm; Profondeur:92mm BATTEN, SINGLE, 70W, 6FT, S/S; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:70W; Longueur:1.8m; Diamètre de l'ampoule:26mm; Température, couleur:3500K; Couleur:White; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP20; Largeur (externe):58mm; Light Source:Fluorescente; Longueur/hauteur:1802mm; Profondeur:92mm; Profondeur:92mm BATTEN, TWIN, 58W, 5FT, S/S; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:58W; Longueur:1.54m; Diamètre de l'ampoule:26mm; Température, couleur:3500K; Couleur:White; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP20; Largeur (externe):89mm; Light Source:Fluorescente; Longueur/hauteur:1538mm; Profondeur:92mm; Profondeur:92mm BATTEN, SINGLE, 58W, 5FT, HF; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:58W; Longueur:1.54m; Diamètre de l'ampoule:26mm; Température, couleur:3500K; Couleur:White; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP20; Largeur (externe):58mm; Light Source:Fluorescente; Longueur/hauteur:1538mm; Profondeur:92mm; Profondeur:92mm BATTEN, TWIN, 70W, 6FT, HF; Tension, alimentation:230V; Lamp Base Type:G13; Puissance:70W; Longueur:1.8m; Diamètre de l'ampoule:26mm; Température, couleur:3500K; Couleur:White; Diamètre, tube fluorescent:26mm; IP / NEMA Rating:IP20; Largeur (externe):89mm; Light Source:Fluorescente; Longueur/hauteur:1802mm; Profondeur:92mm; Profondeur:92mm SPOT LIGHT, TWIN, EMERGENCY, 2X18W; Longueur:355mm; Largeur:360mm; Profondeur:80mm; Température de fonctionnement max..:+25°C; IP / NEMA Rating:IP20; Durée de vie (fonctionnement):3 Hours; Lamp Base Type:Culot Wedge; Largeur (externe):360mm; Longueur/hauteur:355mm; Poids:7.0kg; Profondeur:80mm; Puissance:18W; Tension, alimentation:230V VOYANT NEON VERT; Tension, alimentation:130V; Courant:20mA; SVHC:No SVHC (19-Dec-2011); Couleur:vert; Diamètre de découpe panneau:12.7mm; Diamètre, lentille:14mm; Epaisseur, panneau max..:12mm; Longueur/hauteur:40mm; Tension d'alimentation Vac:130V FLOODLGHT, PRTBL, 38A/H, WITH TRIPOD; Couleur:Black; Durée de vie (fonctionnement):3h high 6h low; Intensité lumineuse, max..:11600lm; Light Source:Fluorescente; Matière:ABS; Tension, alimentation:12V HCI-TT POWERBALL 150W WDL; Longueur:210mm; Diamètre de l'ampoule:46mm; Température, couleur:3000K; SVHC:No SVHC (19-Dec-2011); Couleur:Warm White; Lamp Base Type:E40; Puissance:148W DETECTEUR PRSCE IR FLUSH 2000W 2 CANAUX; Angle de faisceau:360°; Longueur:52mm; Largeur:80mm; Profondeur:80mm; Distance de détection max..:7m; IP / NEMA Rating:IP40; Lamp Base Type:Incandescent / Halogène; Largeur (externe):80mm; Longueur/hauteur:52mm; Profondeur:80mm; Puissance:2kW; Tension, alimentation:230V DETECTEUR DE PRESENCE IR 2000W 2 CANAUX; Angle de faisceau:360°; Largeur:121.5mm; Distance de détection max..:7m; IP / NEMA Rating:IP40; Lamp Base Type:Incandescent / Halogène; Largeur (externe):121.5mm; Longueur/hauteur:42.5mm; Profondeur:121.5mm; Puissance:2kW; Tension, alimentation:230V DETECTEUR DE PRESENCE IR FLUSH 2000W; Angle de faisceau:360°; Longueur:52mm; Largeur:80mm; Profondeur:80mm; Distance de détection max..:7m; IP / NEMA Rating:IP40; Lamp Base Type:Incandescent / Halogène; Largeur (externe):80mm; Longueur/hauteur:52mm; Profondeur:80mm; Puissance:2kW; Tension, alimentation:230V INCANDESCENT LAMP 21VDC; Tension, alimentation:21V; Lamp Base Type:GX5,3; Puissance:150W; Durée de vie moyenne de la lampe:200h; Durée de vie:200h; Longueur/hauteur:44.5mm TUNGSTEN HALOGEN, 150 WATT; Tension, alimentation:15V; Lamp Base Type:GZ6,35; Puissance:150W; Diamètre, réflecteur:51mm HCI-TT POWERBALL 70W WDL; Longueur:155mm; Diamètre de l'ampoule:30mm; Température, couleur:3000K; SVHC:No SVHC (19-Dec-2011); Couleur:Warm White; Lamp Base Type:E27; Puissance:74W CAPTEUR IR 360° MONTAGE MURAL; Angle de faisceau:360°; Longueur:53mm; Largeur:103mm; Profondeur:103mm; Couleur:White; Fréquence:50Hz; Gamme:6m; Largeur (externe):103mm; Tension, contact c.a. max..:230V; Type de montage:Montage en surface LAMP, MASCHINE 10-40 V DC; Tension, alimentation:40V; Puissance:12W; Light Source:LED; Longueur:284mm; Couleur:White; Couleur:Blanc; IP / NEMA Rating:IP67; Poids:1kg; Safety Category:III LAMP MOBILE POWER JET-LIGHT 3X36W