MM74HC04

Features: ` Typical propagation delay: 8 ns` Fan out of 10 LS-TTL loads` Quiescent power consumption: 10 W maximum at room temperature` Low input current: 1 A maximumSpecificationsSupply Voltage (VCC) −0.5 to +7.0VDC Input Voltage (VIN) −1.5 to VCC +1.5VDC Output Voltage (VOUT) −...

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SeekIC No. : 004423042 Detail

MM74HC04: Features: ` Typical propagation delay: 8 ns` Fan out of 10 LS-TTL loads` Quiescent power consumption: 10 W maximum at room temperature` Low input current: 1 A maximumSpecificationsSupply Voltage (VC...

floor Price/Ceiling Price

Part Number:
MM74HC04
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/26

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Product Details

Description



Features:

` Typical propagation delay: 8 ns
` Fan out of 10 LS-TTL loads
` Quiescent power consumption: 10 W maximum at room temperature
` Low input current: 1 A maximum



Specifications

Supply Voltage (VCC)                                −0.5 to +7.0V
DC Input Voltage (VIN)                              −1.5 to VCC +1.5V
DC Output Voltage (VOUT)                        −0.5 to VCC +0.5V
Clamp Diode Current (IIK, IOK)                 ±20 mA
DC Output Current, per pin (IOUT)            ±25 mA
DC VCC or GND Current, per pin (ICC)      ±50 mA
Storage Temperature Range (TSTG)         −65 to +150
Power Dissipation (PD)
(Note 3)                                                  600 mW
S.O. Package only                                   500 mW
Lead Temperature (TL)
(Soldering 10 seconds)                           260



Description

The MM74HC04 inverters utilize advanced silicon-gate CMOS technology to achieve operating speeds similar to LS-TTL gates with the low power consumption of standard CMOS integrated circuits.

The MM74HC04 is a triple buffered inverter. It has high noise immunity and the ability to drive 10 LS-TTL loads.

The MM74HC04 is functionally as well as pin-out compatible with the standard 74LS logic family. All inputs are protected from damage due to static discharge by internal diode clamps to VCC and ground.




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