onsemi M74VHC1GT08DFT2G 1-Input AND Logic Gate, 5-Pin SOT-353

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Sous-total (1 paquet de 100 unités)*

11,90 €

(TVA exclue)

14,40 €

(TVA incluse)

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Prix par unité
le paquet*
100 - 4000,119 €11,90 €
500 - 9000,102 €10,20 €
1000 +0,089 €8,90 €

*Prix donné à titre indicatif

Options de conditionnement :
N° de stock RS:
184-4783
Référence fabricant:
M74VHC1GT08DFT2G
Fabricant:
onsemi
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Marque

onsemi

Logic Function

AND

Mounting Type

Surface Mount

Number of Elements

1

Number of Inputs per Gate

1

Package Type

SOT-353

Pin Count

5

Logic Family

74VHC

Input Type

CMOS, TTL

Maximum Operating Supply Voltage

5.5 V

Maximum Propagation Delay Time @ Maximum CL

16.5ns

Minimum Operating Supply Voltage

2 V

Automotive Standard

AEC-Q100

Length

2.2mm

Propagation Delay Test Condition

50pF

Maximum Operating Temperature

+125 °C

Dimensions

2.2 x 1.35 x 1mm

Minimum Operating Temperature

-55 °C

Height

1mm

Width

1.35mm

Pays d'origine :
CN
The MC74VHC1GT08 is an advanced high speed CMOS 2-input AND gate fabricated with silicon gate CMOS technology. It achieves high speed operation similar to equivalent Bipolar Schottky TTL while maintaining CMOS low power dissipation. The internal circuit is composed of three stages, including a buffer output which provides high noise immunity and stable output. The device input is compatible with TTL-type input thresholds and the output has a full 5 V CMOS level output swing. The input protection circuitry on this device allows overvoltage tolerance on the input, allowing the device to be used as a logic-level translator from 3.0 V CMOS logic to 5.0 V CMOS Logic or from 1.8 V CMOS logic to 3.0 V CMOS Logic while operating at the high-voltage power supply. The MC74VHC1GT08 input structure provides protection when voltages up to 7 V are applied, regardless of the supply voltage. This allows the MC74VHC1GT08 to be used to interface 5 V circuits to 3 V circuits. The output structures also provide protection when VCC = 0 V. These input and output structures help prevent device destruction caused by supply voltage - input/output voltage mismatch, battery backup, hot insertion, etc.

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