(PKG of 5) CD74HC374E Octal D-Type Flip-Flop, Positive-Edge Triggered, PDIP-20, Harris
Package of 5!
New old stock (NOS), unused, genuine part: Harris CD74HC374E Octal D-Type Flip-Flop, 3-State Positive-Edge Triggered, PDIP-20.
Manufacturer: Harris Semiconductor
Manufacturer Part Number: CD74HC374E
74 Series Part: 74HC374
Product Category: Logic ICs, Flip Flops
Logic Family: HC
Logic Type: D-Type Flip-Flop
Number of Circuits: 8 Circuit
Polarity: Non-Inverting
Input Type: CMOS
Output Type: 3-State
Supply Voltage - Min: 2 V
Supply Voltage - Max: 6 V
Package / Case: PDIP-20, Plastic
RoHS: NO
Packaging: Anti-Static IC tube (cut-to-size)
Note: Date code may differ from picture. Part Number and Manufacturer are identical to what is shown.
Description
The 74HC374 are octal D-type flip-flops with 3-state outputs and the capability to drive 15 LSTTL loads. The eight edge-triggered flip-flops enter data into their registers on the LOW to HIGH transition of clock (CP). The output enable (OE) controls the 3-state outputs and is independent of the register operation. When OE is HIGH, the outputs are in the high-impedance state.
Description
Package of 5!
New old stock (NOS), unused, genuine part: Harris CD74HC374E Octal D-Type Flip-Flop, 3-State Positive-Edge Triggered, PDIP-20.
Manufacturer: Harris Semiconductor
Manufacturer Part Number: CD74HC374E
74 Series Part: 74HC374
Product Category: Logic ICs, Flip Flops
Logic Family: HC
Logic Type: D-Type Flip-Flop
Number of Circuits: 8 Circuit
Polarity: Non-Inverting
Input Type: CMOS
Output Type: 3-State
Supply Voltage - Min: 2 V
Supply Voltage - Max: 6 V
Package / Case: PDIP-20, Plastic
RoHS: NO
Packaging: Anti-Static IC tube (cut-to-size)
Note: Date code may differ from picture. Part Number and Manufacturer are identical to what is shown.
Description
The 74HC374 are octal D-type flip-flops with 3-state outputs and the capability to drive 15 LSTTL loads. The eight edge-triggered flip-flops enter data into their registers on the LOW to HIGH transition of clock (CP). The output enable (OE) controls the 3-state outputs and is independent of the register operation. When OE is HIGH, the outputs are in the high-impedance state.
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