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CD74HCU04 Series

6-ch, 4.5-V to 5.5-V inverters

Manufacturer: Texas Instruments
Link to Manufacturer Page: https://www.ti.com/

Catalog

6-ch, 4.5-V to 5.5-V inverters

PartNumber of CircuitsOperating Temperature [Min]Operating Temperature [Max]Package / CasePackage / CasePackage / CaseInput Logic Level - High [Max]Input Logic Level - High [Min]Current - Output High, LowNumber of InputsMounting TypeInput Logic Level - Low [Min]Input Logic Level - Low [Max]Max Propagation Delay @ V, Max CLVoltage - Supply [Min]Voltage - Supply [Max]Logic TypePackage / Case [custom]Package / Case [custom]Supplier Device Package
Texas Instruments
CD74HCU04M
6
-55 °C
125 °C
3.9 mm
0.154 in
14-SOIC
4.8 V
1.7 V
5.2 mA, 5.2 mA
1
Surface Mount
0.3 V
1.1 V
12 ns
2 V
6 V
Inverter
Texas Instruments
CD74HCU04PWR
6
-55 °C
125 °C
14-TSSOP
4.8 V
1.7 V
5.2 mA, 5.2 mA
1
Surface Mount
0.3 V
1.1 V
12 ns
2 V
6 V
Inverter
0.173 in
4.4 mm
14-TSSOP

Key Features

Typical Propagation Delay: 6ns at VCC= 5V, CL= 15pF, TA= 25°C, Fastest Part in QMOS LineWide Operating Temperature Range . . . –55°C to 125°CBalanced Propagation Delay and Transition TimesSignificant Power Reduction Compared to LSTTL Logic ICsHCU Types2V to 6V OperationHigh Noise Immunity: NIL= 20%, NIH= 30% of VCCat VCC= 5VCMOS Input Compatibility, Il≤ 1µA at VOL, VOHTypical Propagation Delay: 6ns at VCC= 5V, CL= 15pF, TA= 25°C, Fastest Part in QMOS LineWide Operating Temperature Range . . . –55°C to 125°CBalanced Propagation Delay and Transition TimesSignificant Power Reduction Compared to LSTTL Logic ICsHCU Types2V to 6V OperationHigh Noise Immunity: NIL= 20%, NIH= 30% of VCCat VCC= 5VCMOS Input Compatibility, Il≤ 1µA at VOL, VOH

Description

AI
The CD74HCU04 unbuffered hex inverter utilizes silicon-gate CMOS technology to achieve operation speeds similar to LSTTL gates with the low power consumption of standard CMOS integrated circuits. These devices are especially useful in crystal oscillator and analog applications. The CD74HCU04 unbuffered hex inverter utilizes silicon-gate CMOS technology to achieve operation speeds similar to LSTTL gates with the low power consumption of standard CMOS integrated circuits. These devices are especially useful in crystal oscillator and analog applications.