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NXP Semiconductors 74AUP1G04GV,125

Part No.:
74AUP1G04GV,125
Manufacturer:
NXP Semiconductors
Category:
Gates and Inverters
Package:
SC-74A, SOT-753
Datasheet:
Aetrix74AUP1G04GV,125.pdf
Description:
IC INVERTER 1CH 1-INP SC74A
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:529,320

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Product details

Overview

74AUP1G04GV,125 from Nexperia is a single CMOS low-power inverter with Schmitt-trigger inputs, operating across 0.8 V to 3.6 V supply range, delivering propagation delay as low as 1.1 ns at 3.6 V (CL = 5 pF), ICC ≤ 0.9 μA max, and IOFF-enabled partial power-down capability for system-level power gating in battery-powered IoT sensors.

For engineers reviewing the 74AUP1G04GV,125 datasheet, 74AUP1G04GV,125 pinout, 74AUP1G04GV,125 application, or 74AUP1G04GV,125 equivalent, key selection criteria include ultra-low static current, rail-to-rail input tolerance up to 3.6 V, guaranteed operation at -40 °C to +125 °C, and SC-74A (SOT753) package compatibility with high-density PCB layouts.

Technical Context

This device implements a single unbuffered inverting logic gate with hysteresis on the input stage, enabling robust noise immunity against slow-rising signals and EMI in mixed-voltage domains. Its IOFF circuit actively disables output leakage when VCC = 0 V, preventing backflow current in hot-swap or multi-rail systems.

Designed for sub-1-V operation down to 0.8 V, it maintains defined VIH/VIL thresholds across all voltage grades (JESD8-12 through JESD8C), supports dynamic loading up to 30 pF, and exhibits <10% VCC overshoot/undershoot - critical for signal integrity in low-voltage microcontroller I/O expansion and level-shifting interfaces.

Key Specifications

Parameter Value and Actual Design Meaning
Supply Voltage Range 0.8 V to 3.6 V - enables direct interface with 0.9 V, 1.2 V, 1.8 V, 2.5 V, and 3.3 V logic domains without external level shifters
Max ICC (Static) 0.9 μA at 3.6 V - ensures negligible battery drain in always-on sensor nodes and wearable standby modes
tpd (A→Y) 1.1 ns typical at VCC = 3.6 V, CL = 5 pF - supports >300 MHz toggle rates in clock buffering and timing-critical feedback paths
IOFF Leakage ±0.75 μA max at VCC = 0 V - prevents cross-conduction and bus contention during power sequencing in multi-voltage SoC subsystems
Input Hysteresis Typical ΔV = 0.1×VCC - rejects noise spikes up to 360 mV at 3.6 V, eliminating need for external RC filtering in industrial control inputs
Operating Temperature -40 °C to +125 °C - qualified for under-hood automotive modules, industrial PLC I/O cards, and outdoor edge compute enclosures
ESD Rating HBM >5000 V, CDM >1000 V - withstands handling and board assembly without special ESD precautions

Pinout & Package

74AUP1G04GV,125 uses the SC-74A (SOT753) plastic surface-mounted package: 5-terminal, 1.25 mm body width, 0.65 mm lead pitch, 1.1 mm × 2.2 mm footprint, with gull-wing leads optimized for reflow soldering and AOI inspection.

Pin/Terminal Circuit Role Design Meaning
n.c. No-connect terminal Unused pad; must remain unconnected to avoid parasitic coupling or thermal stress in layout
A Logic input Inverting data input with Schmitt-trigger hysteresis; accepts 0–3.6 V regardless of VCC
GND Ground reference 0 V return path for both logic and power; requires low-inductance connection to minimize ground bounce
Y Logic output Inverted output with rail-to-rail swing; drives capacitive loads up to 30 pF while maintaining tpd spec
VCC Supply voltage Primary power rail; decoupling capacitor (100 nF X7R) required within 3 mm for stable high-speed switching

Key Features

Feature Design Value
Wide VCC range (0.8–3.6 V) Eliminates need for separate voltage translators when interfacing legacy 3.3 V peripherals with modern 1.2 V SoCs
IOFF partial power-down Enables safe insertion/removal of daughterboards or modular sensors without powering down entire host system
High noise immunity Input hysteresis and low input capacitance (0.8 pF) suppress false triggering from RF coupling or motor drive transients
Low dynamic power CPD = 4.0 pF at 3.6 V enables <1 μW dynamic dissipation at 1 MHz - ideal for energy-harvesting applications
JEDEC-compliant packaging SOT753 meets IPC-7351B density class L, supporting automated placement and 100% solder joint X-ray inspection

Applications

Industrial Sensor Interface IoT Edge Node Power Control

Use Scenario: Signal conditioning for analog sensor outputs feeding into low-voltage ADCs in factory-floor vibration monitors.

IC Role / Device Role / Timing Role: Inverts open-drain interrupt signals from MEMS accelerometers and provides clean, hysteresis-filtered edges to MCU GPIOs.

Use Value: Enables reliable wake-up detection under EMI-heavy environments without software debouncing, reducing firmware complexity and CPU load.

Use Scenario: Enabling/disabling power rails for BLE radios and environmental sensors in battery-operated smart meters.

IC Role / Device Role / Timing Role: Acts as active-low enable gate controlled by MCU GPIO, leveraging IOFF to isolate downstream circuits during deep sleep.

Use Value: Reduces system quiescent current by >95% versus discrete MOSFET solutions, extending battery life beyond 10 years.

Automotive Body Control Module Medical Wearable Data Acquisition

Use Scenario: Level-shifting and inversion of LIN bus diagnostic signals between 5 V microcontrollers and 3.3 V CAN transceivers.

IC Role / Device Role / Timing Role: Provides bidirectional signal conditioning with rail-tolerant inputs, ensuring interoperability across mixed-supply vehicle networks.

Use Value: Eliminates need for dual-supply level translators, saving BOM cost and PCB area in space-constrained junction boxes.

Use Scenario: Debouncing mechanical switch inputs on ECG patch housings where flex-circuit routing limits trace length.

IC Role / Device Role / Timing Role: Converts noisy tactile switch closures into clean digital pulses for ultra-low-power ARM Cortex-M0+ processors.

Use Value: Achieves >10 kV contact ESD immunity without external protection diodes, simplifying FDA Class II design validation.

Equivalent & Alternatives

The following parts are listed as comparable options for similar inverter applications.

Alternative Part Technical Difference Application Difference Selection Advice
SN74LVC1G04DBVR Wider VCC range (1.65–5.5 V); no Schmitt-trigger input; higher ICC (10 μA typ) Lacks hysteresis - unsuitable for slow-rising signals or noisy environments; better for 5 V legacy systems Select only if interfacing with 5 V peripherals and noise immunity is not required
74LVC1G14GW,125 Same SC-74A package; includes Schmitt-trigger input; higher propagation delay (5.0 ns min at 3.3 V) Higher hysteresis (≈0.3×VCC) improves noise rejection but reduces maximum toggle frequency Prefer when input signal rise time exceeds 100 ns or EMI exposure is extreme (e.g., motor drives)

Compared with SN74LVC1G04DBVR and 74LVC1G14GW,125, the 74AUP1G04GV,125 uniquely balances ultra-low ICC (<1 μA), sub-2 ns speed, and Schmitt-trigger robustness - making it optimal for always-on, space-constrained, and mixed-voltage edge devices where power, size, and noise resilience are co-prioritized.

Availability

74AUP1G04GV,125 is available at Aetrix Electronics and suitable for industrial sensor interfaces, IoT edge node power control, and automotive body control modules requiring stable component supply across extended temperature ranges and long production lifecycles.

Supply support for 74AUP1G04GV,125 includes scheduled delivery planning, volume procurement assistance, BOM continuity management, traceable sourcing, and lifecycle availability coordination for OEM customers, industrial embedded developers, connected-device designers, and electronics production programs.

Manufacturer

Nexperia is a global semiconductor expert focused on essential efficiency technologies, delivering high-performance logic, analog, and discrete components for automotive, industrial, and consumer markets.

The 74AUP (Advanced Ultra-low Power) logic family targets ultra-low-power, high-noise-immunity applications in portable, battery-powered, and thermally constrained systems - emphasizing minimal ICC, wide VCC scalability, and robust IOFF behavior.

FAQ

Can 74AUP1G04GV,125 operate reliably at 0.85 V supply?

Yes. The device is fully characterized from 0.8 V to 3.6 V per JEDEC JESD8-12. At 0.85 V, VIH is guaranteed ≥0.70×VCC (≥0.595 V), VOL ≤0.11 V, and tpd ≤12.6 ns (CL = 5 pF, -40 °C to +125 °C), meeting requirements for ultra-low-voltage energy harvesting systems.

Does the n.c. pin on SOT753 require PCB pad removal or grounding?

No. Pin 1 is explicitly designated "n.c." (no connect) in Table 3 and Fig. 1. It must remain unconnected on PCB - neither grounded nor routed - to prevent unintended capacitance, thermal stress, or violation of internal die isolation boundaries specified in the package drawing.

How does IOFF behave when VCC ramps from 0 V to nominal?

IOFF activates when VCC drops below ~0.2 V and remains active until VCC exceeds ~0.4 V. During this transition, output leakage is limited to ±0.75 μA max, preventing backflow into powered sections - verified per JESD78B latch-up testing and used in hot-plug PCIe add-in cards and modular test equipment.

Is the Schmitt-trigger threshold adjustable via external components?

No. Input hysteresis is fixed and process-defined (typical ΔV ≈ 0.1×VCC), with no external adjustment pins or configuration registers. Thresholds scale automatically with VCC, ensuring consistent noise margin across all operating voltages without calibration or trimming.

74AUP1G04GV,125 Specifications

Product attributes
Attribute value
Manufacturer:
NXP Semiconductors
Series:
74AUP
Package/Case:
SC-74A, SOT-753
Packaging:
Bulk
Product Status:
Active
Logic Type:
Inverter
Number of Circuits:
1
Number of Inputs:
1
Features:
-
Voltage - Supply:
0.8V ~ 3.6V
Current - Quiescent (Max):
500 nA
Current - Output High, Low:
4mA, 4mA
Input Logic Level - Low:
0.7V ~ 0.9V
Input Logic Level - High:
1.6V ~ 2V
Max Propagation Delay @ V, Max CL:
5.4ns @ 3.3V, 30pF
Operating Temperature:
-40°C ~ 125°C
Grade:
-
Qualification:
-
Mounting Type:
Surface Mount
Supplier Device Package:
SC-74A

74AUP1G04GV,125 FAQ

1.How can I place an order for 74AUP1G04GV,125 through Aetrix?

Please submit a Request for Quotation (RFQ) for 74AUP1G04GV,125 on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.

2.Are the price and stock information for 74AUP1G04GV,125 reliable?

The price and inventory of 74AUP1G04GV,125 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for 74AUP1G04GV,125 is usually 5 days.

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5.How can I obtain technical support or documentation for 74AUP1G04GV,125?

For technical support, including 74AUP1G04GV,125 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your 74AUP1G04GV,125 requirements.

6.How does Aetrix verify that 74AUP1G04GV,125 is sourced from the original manufacturer or authorized distributors?

All 74AUP1G04GV,125 products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that 74AUP1G04GV,125 meets industry standards.

7.What is the process for return or replacement of 74AUP1G04GV,125?

All 74AUP1G04GV,125 units undergo pre-shipment inspection (PSI). If there is an issue with 74AUP1G04GV,125, returns or replacements are accepted under the following conditions:

1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.

2.The issue is reported within 90 days of delivery.

3.The 74AUP1G04GV,125 part is unused and in its original packaging.

Return procedure for 74AUP1G04GV,125:

1.Submit a request within 90 days.

2.Obtain a Return Material Authorization (RMA) from Aetrix.

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