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74HCU04PWPHIN/a190avai74HCU04; Hex inverter
74HCU04PWPHILIPSN/a100avai74HCU04; Hex inverter


74HCU04PW ,74HCU04; Hex inverterGENERAL DESCRIPTIONThe 74HCU04 is a high-speed Si-gate CMOS device and is pin compatible with low p ..
74HCU04PW ,74HCU04; Hex inverterFEATURES• Output capability: standard• I category: SSICC
74HCU04PW ,74HCU04; Hex inverterGeneral descriptionThe 74HCU04 is a hex unbuffered inverter. Inputs include clamp diodes. This enab ..
74LCX00 ,Low Voltage Quad 2-Input NAND Gate with 5V Tolerant InputsFeaturesThe LCX00 contains four 2-input NAND gates. The inputs

74HCU04PW
74HCU04; Hex inverter

Philips Semiconductors Product specification
Hex inverter 74HCU04
FEATURES
Output capability: standard ICC category: SSI
GENERAL DESCRIPTION

The 74HCU04 is a high-speed Si-gate CMOS device and is pin compatible with low power Schottky TTL (LSTTL).
It is specified in compliance with JEDEC standard no. 7A.
The 74HCU04 is a general purpose hex inverter. Each of the six inverters is a single stage
QUICK REFERENCE DATA

GND=0 V; Tamb =25 °C; tr =tf =6ns
Note
CPD is used to determine the dynamic power dissipation (PD in μW): =CPD× VCC2× fi + ∑ (CL× VCC2× fO) where:= input frequency in MHz= output frequency in MHz= output load capacitance in pF
VCC= supply voltage in V (CL× VCC2×fo)= sum of outputs
ORDERING INFORMATION

See “74HC/HCT/HCU/HCMOS Logic Package Information”.
FUNCTION TABLE
Note
H= HIGH voltage level= LOW voltage level
Philips Semiconductors Product specification
Hex inverter 74HCU04
PIN DESCRIPTION
Philips Semiconductors Product specification
Hex inverter 74HCU04
DC CHARACTERISTICS FOR 74HCU

Voltages are referenced to GND (ground=0V)
Philips Semiconductors Product specification
Hex inverter 74HCU04
AC CHARACTERISTICS FOR 74HCU

GND=0 V; tr =tf=6 ns; CL =50pF
AC WAVEFORMS
TYPICAL TRANSFER
CHARACTERISTICS
Philips Semiconductors Product specification
Hex inverter 74HCU04
APPLICATION INFORMATION

Some applications for the “HCU04” are: Linear amplifier (see Fig.12) In crystal oscillator designs (see Fig.13) Astable multivibrator (see Fig.14)
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