onsemi 74VHC27SJ

Lead Free NOR Gate Surface Mount RoHS Compliant NOR Gate Inverter IC -40C~85C 5.5V 8mA 8mA 218.3mg
$ 0.263
Obsolete
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Téléchargez les fiches techniques et la documentation du fabricant pour onsemi 74VHC27SJ.

IHS

Datasheet9 pagesIl y a 27 ans
Datasheet0 pageIl y a 0 an

onsemi

Fairchild Semiconductor

DigiKey

SHENGYU ELECTRONICS

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Chaîne d'approvisionnement

Export Control Classification Number (ECCN) CodeEAR99
Harmonized Tariff Schedule (HTS) Code8542.39.00.01
Introduction Date1988-01-01
Lifecycle StatusObsolete (Last Updated: 4 months ago)

Pièces détachées

onsemi74VHC27M
NOR 74VHC27 74VHC Tube logic gate circuit 7.9ns @ 5V 50pF 8.625mm 8mA 8mA 5.5V
Texas InstrumentsSN74HC27D
3-ch, 3-input, 2-V to 6-V 5.2 mA drive strength NOR gate 14-SOIC -40 to 85
Texas InstrumentsSN74HC27DR
3-ch, 3-input, 2-V to 6-V 5.2 mA drive strength NOR gate 14-SOIC -40 to 85
Texas InstrumentsCD74HC27M
3-ch, 3-input, 2-V to 6-V 5.2 mA drive strength NOR gate 14-SOIC -55 to 125
Nexperia74HC27D
TRIPLE 3-INPUT NOR GATE NOR Gate, HC/UH Series, 3-Func, 3-Input, CMOS, PDSO14
NOR 74ALS27 74ALS Tube logic gate circuit 15ns @ 5V 50pF 400muA 8mA 2V 70C

Descriptions

Descriptions de onsemi 74VHC27SJ fournies par ses distributeurs.

Lead Free NOR Gate Surface Mount RoHS Compliant NOR Gate Inverter IC -40C~85C 5.5V 8mA 8mA 218.3mg
NOR Gate, AHC/VHC Series, 3-Func, 3-Input, CMOS, PDSO14
2V~5.5V 2uA 3 7.9ns@5V,50pF NORGate SO-14P Gates ROHS
The VHC27 is an advanced high speed CMOS 3-Input NOR Gate fabricated with silicon gate CMOS technology. It achieves the high-speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS low power dissipation. The internal circuit is composed of 3 stages including buffer output, which provide high noise immunity and stable output. An input protection circuit insures that 0V to 7V can be applied to the input pins without regard to the supply voltage. This device can be used to interface 5V to 3V systems and two supply systems such as battery backup. This circuit prevents device destruction due to mismatched supply and input voltages.

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