logic

SN74LVC1G04

Every spec below is cited to the manufacturer datasheet. Compare the closest alternatives, then ask the assistant what it means for your design.

00 — Overview

What the SN74LVC1G04 does

The SN74LVC1G04 is a single inverter gate designed for 1.65V to 5.5V operation. It performs the Boolean function Y = A and supports live-insertion and partial-power-down modes. The device features a maximum propagation delay of 3.3ns at 3.3V, delivers ±24mA output drive, and maintains low static power consumption with a maximum of 10μA. Available in ultra-small packages like the 0.64mm² DPW, it is typically used in AV receivers, portable audio docks, embedded PCs, and high-definition video applications. The component also offers robust ESD protection exceeding 2000V for the human-body model.

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Start building with SN74LVC1G04 → Every number above is cited straight from the datasheet — ask what they mean for your design, and the assistant answers from the same source documents.
01 — Key specifications

Datasheet parameters

Datasheet parameters for SN74LVC1G04
ParameterMinTypMaxConditionsSource
quiescent current 100 nA 10 µA VI = 5.5V, IO = 0 UMW datasheet, p. 5
supply voltage range 1.65 V 5.5 V Operating; vcc; 5.3 Recommended Operating Conditions TI datasheet, p. 5 — 5.3 Recommended Operating Conditions
operating temperature -40 °C 125 °C ta; 5.3 Recommended Operating Conditions TI datasheet, p. 5 — 5.3 Recommended Operating Conditions
propagation delay 10 ns C = 15pF UMW datasheet, p. 5
output voltage high 1.2 V IOH = -4mA, VCC = 1.65V UMW datasheet, p. 4 — 8. Electrical Characteristics
output voltage low 100 mV IOL = 100µA; 1.65V to 5.5V; vol; over recommended operating free-air temperature range (unless otherwise noted) TI datasheet, p. 6 — over recommended operating free-air temperature range (unless otherwise no…
02 — Alternatives

Closest matches to SN74LVC1G04

74LVC245A 2.0× higher output voltage low, 1.4× lower supply voltage range, 1.2× higher propagation delay
74LVC2G14GM 1.1× lower output voltage, 1.1× higher propagation delay, similar operating temperature
NC7WZ16 10.0× lower quiescent current, 1.4× higher output voltage high, 1.1× higher output voltage
NL17SZ08 10.0× lower quiescent current, 1.2× lower output voltage low, 1.2× lower operating temperature
NC7WZ17 10.0× lower quiescent current, 1.9× lower operating temperature, 1.6× higher propagation delay
SN74AHC1G14DBVR 10.0× lower quiescent current, 1.7× higher output voltage high, 1.6× higher propagation delay
SN74LVC1G14DBVR 1.9× lower operating temperature, 1.2× higher propagation delay, similar output current
NL17SZ125 10.0× lower quiescent current, 3.8× higher output voltage high, 1.7× higher propagation delay
03 — FAQ

Frequently asked questions

What is the maximum operating temperature (ta) specified in section 5.3 Recommended Operating Conditions?

The maximum operating temperature (ta) is 125 °C.

What is the output voltage high when IOH = -4mA and VCC = 1.65V?

The output voltage high is 1.2 V.

What is the output voltage low (vol) for the SN74LVC1G04 when IOL = 100µA and the supply voltage is 1.65V to 5.5V over the recommended operating free-air temperature range?

The output voltage low is 100 mV.

What is the propagation delay when C = 15pF?

The propagation delay is 10 ns when C = 15pF.

What is the quiescent current when VI = 5.5V and IO = 0?

The quiescent current is 100 nA when VI = 5.5V and IO = 0.

What is the maximum supply voltage range under recommended operating conditions?

The maximum supply voltage is 5.5 V.

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