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Nexperia USA Inc. 74AUP1G06GX,125

Part No.:
74AUP1G06GX,125
Manufacturer:
Nexperia USA Inc.
Category:
Gates and Inverters
Package:
4-XFDFN Exposed Pad
Datasheet:
Aetrix74AUP1G06GX,125.pdf
Description:
IC INVERTER 1CH 1-INP 5X2SON
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:2,957

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Product details

Overview

74AUP1G06GX,125 from Nexperia is a single low-power CMOS inverter with open-drain output and Schmitt-trigger input, operating across 0.8 V to 3.6 V supply, delivering ICC ≤ 1.4 μA (max) at −40 °C to +125 °C, enabling ultra-low-power level-shifting and wired-OR bus interfacing in space-constrained IoT sensor nodes.

For engineers reviewing the 74AUP1G06GX,125 datasheet, 74AUP1G06GX,125 pinout, 74AUP1G06GX,125 application, or 74AUP1G06GX,125 equivalent, this device serves as a voltage-tolerant, IOFF-enabled logic inverter for partial power-down systems requiring sub-1-μA static current, rail-to-rail input compatibility, and robust ESD immunity (HBM > 5000 V).

Technical Context

This device implements a single-stage CMOS inverter with Schmitt-trigger hysteresis on the input (VIH/VIL thresholds vary with VCC), ensuring noise immunity against slow-rising signals. Its open-drain output supports flexible pull-up configurations and bidirectional bus operation.

The IOFF circuit actively disables output leakage when VCC = 0 V, limiting backflow current to ±0.75 μA - critical for hot-swap and multi-rail power sequencing. Input overvoltage tolerance up to 3.6 V enables safe interfacing with higher-voltage domains independent of VCC.

Key Specifications

Parameter Value and Actual Design Meaning
Supply Voltage 0.8 V to 3.6 V - supports direct interface with 1.2 V, 1.8 V, 2.5 V, and 3.3 V logic domains without level shifters.
Max ICC (−40 °C to +125 °C) 1.4 μA - enables multi-year battery life in always-on sensor wake-up circuits.
IOFF Leakage (VCC = 0 V) ±0.75 μA - prevents destructive back-current during system power-down or domain isolation.
Propagation Delay (VCC = 3.3 V, CL = 15 pF) ≤ 7.2 ns - sufficient timing margin for I²C/SMBus clock stretching and GPIO debouncing.
HBM ESD Rating > 5000 V - meets industrial I/O robustness requirements without external protection.
Operating Temperature −40 °C to +125 °C - qualified for under-hood automotive and industrial control environments.
Input Hysteresis Typical ΔV = 0.1 × VCC - rejects noise on long PCB traces or unshielded sensor lines.

Pinout & Package

X2SON5 package (SOT1226-3): plastic thermal-enhanced extremely thin small outline, no leads, 5 terminals, body size 0.8 mm × 0.8 mm × 0.32 mm, side-wettable flanks not present (distinguishes from GZ variant), footprint optimized for automated optical inspection and high-density routing.

Pin/Terminal Circuit Role Design Meaning
1 (n.c.) No-connect terminal Unused pad; must remain unconnected per design - no internal bond wire or silicon connection.
2 (A) Inverting logic input Schmitt-trigger input accepts 0–3.6 V regardless of VCC; immune to slow edges and noise.
3 (GND) Ground reference Primary return path for all internal currents; requires low-impedance local decoupling.
4 (Y) Open-drain output Drains current only; requires external pull-up to define HIGH state - enables wired-AND/wired-OR.
5 (VCC) Power supply Supplies core logic and IOFF circuitry; IOFF activates automatically when VCC = 0 V.

Key Features

Feature Design Value
Wide VCC range (0.8 V–3.6 V) Eliminates need for separate level translators when interfacing mixed-voltage subsystems (e.g., 1.2 V MCU to 3.3 V sensor bus).
IOFF partial power-down Prevents back-current flow through Y or A pins during VCC ramp-down - essential for PCIe/USB hot-plug and modular power architectures.
Overvoltage-tolerant inputs Accepts up to 3.6 V on A pin even when VCC = 0.8 V - simplifies interconnection with legacy 3.3 V peripherals.
Low dynamic power (CPD = 1.2 pF) Reduces switching power to < 13 μW at 1 MHz and 3.3 V - critical for duty-cycled wireless transceivers.
Thermal-enhanced X2SON5 0.32 mm height and 0.64 mm² footprint enable placement beneath connectors or in stacked modules without thermal derating penalties.

Applications

Industrial Sensor Interface I²C Bus Level Shifting

Use Scenario: Connecting 3.3 V temperature/humidity sensors to a 1.8 V microcontroller GPIO with shared interrupt line.

IC Role / Device Role / Timing Role: Inverts and buffers sensor alert signal while providing voltage-domain isolation via open-drain output and IOFF.

Use Value: Enables direct connection without external MOSFET level shifter; IOFF prevents reverse current when MCU sleeps and sensor remains powered.

Use Scenario: Bidirectional SDA line translation between 1.2 V SoC and 3.3 V EEPROM in embedded storage module.

IC Role / Device Role / Timing Role: Acts as passive pull-down extender on SDA, preserving I²C timing integrity and bus arbitration behavior.

Use Value: Maintains standard I²C rise/fall times (tPLH/tPHL ≤ 7.2 ns @ 3.3 V) while supporting mixed-supply operation without clock stretching overhead.

Automotive Body Control Module Low-Power Wake-Up Circuit

Use Scenario: Debouncing mechanical door latch switch before feeding signal to 1.2 V ASIL-B microcontroller.

IC Role / Device Role / Timing Role: Schmitt-trigger input cleans noisy switch bounce; open-drain output interfaces to MCU's internal weak pull-up.

Use Value: Eliminates need for RC filter + comparator; VIH/VIL hysteresis ensures reliable detection across −40 °C to +125 °C ambient.

Use Scenario: Monitoring external motion sensor output to wake 0.9 V ultra-low-power MCU from deep sleep mode.

IC Role / Device Role / Timing Role: Provides active-low wake signal with sub-1-μA quiescent draw; IOFF isolates MCU domain during sleep.

Use Value: Reduces total system standby current by >50% versus standard inverters - extends coin-cell battery life to >5 years.

Equivalent & Alternatives

The following parts are listed as comparable options for similar inverter-with-open-drain applications.

Alternative Part Technical Difference Application Difference Selection Advice
SN74LVC1G06DBVR Higher ICC (10 μA max), no IOFF, VCC min = 1.65 V, HBM = 2000 V Lacks partial power-down capability; unsuitable for hot-swap or multi-rail isolation Select only if VCC ≥ 1.65 V and IOFF is unnecessary; lower cost but reduced system-level safety margin
74LVC1G06GW,125 Same pinout (TSSOP5), higher ICC (4 μA max), no Schmitt trigger, VCC min = 1.65 V Cannot tolerate slow input edges or high-noise environments without external filtering Choose only for cost-sensitive, noise-controlled board layouts where input edge rates exceed 200 ns/V

Compared with SN74LVC1G06DBVR and 74LVC1G06GW,125, the 74AUP1G06GX,125 uniquely combines sub-1.5-μA ICC, full 0.8–3.6 V operation, Schmitt-trigger input, and IOFF - making it the sole option for battery-powered, mixed-voltage, and thermally constrained designs requiring guaranteed power-down safety.

Availability

74AUP1G06GX,125 is available at Aetrix Electronics and suitable for industrial sensor interface, automotive body control, low-power wake-up circuits, and I²C bus level shifting requiring stable component supply across extended temperature ranges and long production lifecycles.

Supply support for 74AUP1G06GX,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 specializing in high-performance logic, analog, and discrete components, with leadership in energy-efficient and automotive-qualified devices.

The 74AUP (Advanced Ultra-low Power) product line targets battery-operated and thermally constrained applications - designed specifically for ultra-low ICC, wide VCC flexibility, and robust IOFF behavior in mixed-voltage embedded systems.

FAQ

Can 74AUP1G06GX,125 drive a 10 kΩ pull-up to 5 V?

No - the absolute maximum output voltage is +4.6 V, and the device is not rated for 5 V operation. Driving a 5 V pull-up risks violating VO limits and may cause excessive stress or latch-up. Use only with pull-ups referenced to VCC or ≤3.6 V external supplies.

Does the Schmitt-trigger input affect propagation delay?

Yes - hysteresis adds ~0.3 ns to typical tpd versus non-Schmitt inverters at same VCC and load, but enables reliable switching with input rise/fall times up to 200 ns/V, eliminating need for external RC filtering in noisy environments.

Is pin 1 (n.c.) required to be grounded or left floating?

Pin 1 is a true no-connect: no internal silicon connection exists. It must remain unconnected - neither grounded nor tied to any net - to avoid unintended parasitic coupling or solder bridging during reflow.

How does IOFF behave when VCC ramps from 0 V to 0.8 V?

IOFF remains active until VCC exceeds ~0.2 V; ΔIOFF specification confirms leakage stays ≤ ±0.75 μA up to VCC = 0.2 V, ensuring safe transition during power sequencing where downstream domains may power up before the inverter's supply.

74AUP1G06GX,125 Specifications

Product attributes
Attribute value
Manufacturer:
Nexperia USA Inc.
Series:
74AUP
Package/Case:
4-XFDFN Exposed Pad
Packaging:
Tape & Reel (TR)
Product Status:
Active
Logic Type:
Inverter
Number of Circuits:
1
Number of Inputs:
1
Features:
Open Drain
Voltage - Supply:
0.8V ~ 3.6V
Current - Quiescent (Max):
500 nA
Current - Output High, Low:
-, 4mA
Input Logic Level - Low:
0.7V ~ 0.9V
Input Logic Level - High:
1.6V ~ 2V
Max Propagation Delay @ V, Max CL:
10.5ns @ 3.3V, 30pF
Operating Temperature:
-40°C ~ 125°C
Grade:
-
Qualification:
-
Mounting Type:
Surface Mount
Supplier Device Package:
5-X2SON (0.80x0.80)

74AUP1G06GX,125 FAQ

1.How can I place an order for 74AUP1G06GX,125 through Aetrix?

Please submit a Request for Quotation (RFQ) for 74AUP1G06GX,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 74AUP1G06GX,125 reliable?

The price and inventory of 74AUP1G06GX,125 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for 74AUP1G06GX,125 is usually 5 days.

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Once your 74AUP1G06GX,125 order is processed, you will receive an email with the shipment details and tracking number.

Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.

5.How can I obtain technical support or documentation for 74AUP1G06GX,125?

For technical support, including 74AUP1G06GX,125 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your 74AUP1G06GX,125 requirements.

6.How does Aetrix verify that 74AUP1G06GX,125 is sourced from the original manufacturer or authorized distributors?

All 74AUP1G06GX,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 74AUP1G06GX,125 meets industry standards.

7.What is the process for return or replacement of 74AUP1G06GX,125?

All 74AUP1G06GX,125 units undergo pre-shipment inspection (PSI). If there is an issue with 74AUP1G06GX,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 74AUP1G06GX,125 part is unused and in its original packaging.

Return procedure for 74AUP1G06GX,125:

1.Submit a request within 90 days.

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

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