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Nexperia USA Inc. 74LVC1G14GM,132

Part No.:
74LVC1G14GM,132
Manufacturer:
Nexperia USA Inc.
Category:
Gates and Inverters
Package:
6-XFDFN
Datasheet:
Aetrix74LVC1G14GM,132.pdf
Description:
IC INVERT SCHMITT 1CH 1INP 6XSON
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:3,625

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Product details

Overview

74LVC1G14GM,132 from Nexperia is a single Schmitt-trigger inverter IC designed for signal conditioning in mixed-voltage digital systems. It operates from 1.65 V to 5.5 V, features ±24 mA output drive at 3.0 V, IOFF-enabled partial power-down protection, and supports translation between 3.3 V and 5 V logic domains in space-constrained PCBs.

For engineers reviewing the 74LVC1G14GM,132 datasheet, 74LVC1G14GM,132 pinout, 74LVC1G14GM,132 application, or 74LVC1G14GM,132 equivalent, this device delivers precise hysteresis-based noise immunity (VH = 0.31–0.64 V), sub-7 ns propagation delay at 3.3 V, and robust ESD protection (HBM >2000 V) - critical for reliable edge detection in industrial sensors and low-power microcontroller interfaces.

Technical Context

The 74LVC1G14GM,132 implements a CMOS-based Schmitt-trigger input stage with asymmetric threshold voltages (VT+ = 1.29 V, VT− = 0.88 V at VCC = 3.0 V), enabling clean waveform shaping of slow or noisy signals. Its IOFF circuit actively disables outputs during power-down, preventing backflow current when VCC = 0 V.

It complies with JEDEC standards JESD8-7 (1.65–1.95 V), JESD8-5 (2.3–2.7 V), JESD8C (2.7–3.6 V), and JESD36 (4.5–5.5 V), ensuring interoperability across legacy and modern logic families including TTL-level inputs.

Key Specifications

ParameterValue and Actual Design Meaning
Supply Voltage1.65 V to 5.5 V - enables direct interface with 1.8 V, 2.5 V, 3.3 V, and 5 V logic without level shifters
Hysteresis Voltage (VH)0.31 V (min) at VCC = 3.0 V - provides noise margin against false triggering on slow-rising edges
Propagation Delay (tpd)3.0 ns (typ) at VCC = 3.3 V - supports >100 MHz signal conditioning in timing-critical paths
Output Drive±24 mA at VCC = 3.0 V - sufficient to drive multiple LVC inputs or small capacitive loads (≤50 pF)
IOFF Leakage±2 μA max at VCC = 0 V - prevents damaging backfeed current during hot-swap or partial system shutdown
ESD RatingHBM >2000 V, CDM >1000 V - meets IEC 61000-4-2 system-level robustness requirements
Operating Temp−40 °C to +125 °C - qualified for under-hood automotive, industrial control, and outdoor IoT nodes

Pinout & Package

XSON6 plastic extremely thin small outline package (SOT886); 6-terminal, leadless, 1.0 × 1.45 × 0.5 mm body; no thermal pad; side-wettable flanks not present.

Pin/TerminalCircuit RoleDesign Meaning
1Not connectedElectrically isolated; no internal connection - must remain floating or grounded per layout best practice
2Data input (A)Schmitt-trigger input accepting 0–5.5 V; tolerant of slow edges and overvoltage up to 5.5 V
3Ground (GND)Reference node for all voltage levels; requires low-inductance connection to PCB ground plane
4Data output (Y)Inverted, rail-to-rail CMOS output; drives high/low with matched rise/fall times
5Not connectedElectrically isolated; no internal connection - must remain floating or grounded
6Supply voltage (VCC)Power rail; decoupling capacitor (100 nF) required within 2 mm of pin for stable switching

Key Features

FeatureDesign Value
Wide supply range1.65–5.5 V operation eliminates need for external voltage translators in multi-rail systems
IOFF partial power-downActive output disable at VCC = 0 V prevents back-current damage during board hot-plug or sleep-mode sequencing
Overvoltage-tolerant inputsWithstands 5.5 V input regardless of VCC - allows safe interfacing with 5 V microcontrollers driving 3.3 V logic
High noise immunity0.31–0.64 V hysteresis window rejects common-mode noise and contact bounce in switch debouncing
Unlimited rise/fall timesNo minimum edge rate requirement - accepts arbitrarily slow transitions without shoot-through or oscillation

Applications

Waveform ShapingAstable Multivibrator

Use Scenario: Converting noisy analog sensor outputs (e.g., thermistor voltage divider) into clean digital pulses for MCU ADC trigger or interrupt input.

IC Role / Device Role / Timing Role: Schmitt-trigger inverter acting as a noise-immune signal conditioner and edge generator.

Use Value: Eliminates false triggers caused by EMI or mechanical vibration, reducing firmware debounce overhead by >90%.

Use Scenario: Generating fixed-frequency clock signals for LED blink patterns or status indicators in battery-powered wearables.

IC Role / Device Role / Timing Role: Core inverter in RC relaxation oscillator configuration (per Fig. 10).

Use Value: Enables self-timed oscillation without external crystal or dedicated timer IC - saves BOM cost and PCB area.

Monostable MultivibratorLevel Translation Interface

Use Scenario: Creating precise pulse-width-limited wake-up signals from push-button presses in ultra-low-power IoT endpoints.

IC Role / Device Role / Timing Role: Inverter-based one-shot circuit triggered by debounced switch closure.

Use Value: Provides consistent 10–100 ms pulse width independent of button press duration - simplifies host MCU firmware.

Use Scenario: Interfacing a 5 V UART TX line from a legacy microcontroller to a 3.3 V logic-level RS-232 transceiver input.

IC Role / Device Role / Timing Role: Bidirectional voltage translator leveraging overvoltage-tolerant inputs and rail-swing outputs.

Use Value: Achieves level conversion without resistive dividers or active translators - preserves signal integrity and reduces component count.

Equivalent & Alternatives

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

Alternative PartTechnical DifferenceApplication DifferenceSelection Advice
SN74LVC1G14DBVRSOT-23-5 package (5-pin); lacks n.c. pins; higher thermal resistance (RθJA = 278 K/W vs. 230 K/W)Better suited for prototyping or hand-soldered boards; less optimal for high-density automated assemblySelect when manual rework or breadboard evaluation is required; avoid in thermally constrained layouts.
74AUP1G14GW,125Lower static current (0.9 μA max vs. 4 μA); reduced drive strength (±4 mA at 3.3 V); narrower VCC range (0.8–3.6 V)Optimized for <1 μA standby power in coin-cell devices; insufficient for driving >2 LVC loads or 5 V systemsChoose only for ultra-low-power battery applications where speed and drive capability are secondary.

Compared with SN74LVC1G14DBVR and 74AUP1G14GW,125, the 74LVC1G14GM,132 uniquely balances ultra-small XSON6 footprint, full 1.65–5.5 V operation, and ±24 mA drive - making it the only option qualified for both space-constrained automotive modules and mixed-voltage industrial gateways.

Availability

74LVC1G14GM,132 is available at Aetrix Electronics and suitable for industrial sensor interfaces, automotive body control modules, and portable medical device signal conditioning requiring stable component supply across extended temperature ranges.

Supply support for 74LVC1G14GM,132 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, discrete, and MOSFET solutions for automotive, industrial, and consumer markets.

The 74LVC1G14GM,132 belongs to Nexperia's LVC logic family, engineered specifically for low-voltage, high-noise-immunity signal conditioning in miniaturized, thermally demanding applications.

FAQ

What is the maximum input frequency supported by the 74LVC1G14GM,132?

The device has no specified maximum input frequency limit due to its unlimited rise/fall time specification. However, propagation delay (tpd ≤ 7.0 ns at VCC = 3.3 V) and output load capacitance determine practical bandwidth. With 50 pF load and 3.3 V supply, it reliably handles digital signals up to ~100 MHz in clean-edge applications.

Can the 74LVC1G14GM,132 be used with a 1.8 V supply?

Yes - it is fully specified from 1.65 V to 5.5 V. At 1.8 V, typical propagation delay is 4.1 ns, VT+ is 1.0 V, VT− is 0.6 V, and hysteresis is 0.4 V. All DC and AC parameters meet datasheet limits across −40 °C to +125 °C at this voltage.

How does the IOFF feature protect the device during power sequencing?

When VCC = 0 V, the IOFF circuit disables both input and output buffers, limiting leakage current to ±2 μA. This prevents reverse current flow from powered downstream circuits (e.g., 3.3 V bus) into the unpowered 74LVC1G14GM,132 - eliminating latch-up risk and meeting IEC 61000-4-2 system-level immunity requirements.

Is the XSON6 (SOT886) package compatible with standard reflow profiles?

Yes - SOT886 is qualified for IPC/JEDEC J-STD-020D.2 moisture sensitivity level 1 (MSL-1), allowing unlimited floor life and compatibility with standard SnPb and lead-free reflow profiles (peak 260 °C). Its 0.5 mm height and 1.45 mm width support fine-pitch automated placement.

74LVC1G14GM,132 Specifications

Product attributes
Attribute value
Manufacturer:
Nexperia USA Inc.
Series:
74LVC
Package/Case:
6-XFDFN
Packaging:
Tape & Reel (TR)
Product Status:
Active
Logic Type:
Inverter
Number of Circuits:
1
Number of Inputs:
1
Features:
Schmitt Trigger
Voltage - Supply:
1.65V ~ 5.5V
Current - Quiescent (Max):
4 µA
Current - Output High, Low:
32mA, 32mA
Input Logic Level - Low:
0.46V ~ 1.58V
Input Logic Level - High:
1.14V ~ 2.79V
Max Propagation Delay @ V, Max CL:
6.5ns @ 5V, 50pF
Operating Temperature:
-40°C ~ 125°C (TA)
Grade:
-
Qualification:
-
Mounting Type:
Surface Mount
Supplier Device Package:
6-XSON, SOT886 (1.45x1)

74LVC1G14GM,132 FAQ

1.How can I place an order for 74LVC1G14GM,132 through Aetrix?

Please submit a Request for Quotation (RFQ) for 74LVC1G14GM,132 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 74LVC1G14GM,132 reliable?

The price and inventory of 74LVC1G14GM,132 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for 74LVC1G14GM,132 is usually 5 days.

3.What payment methods are accepted for 74LVC1G14GM,132?

We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for 74LVC1G14GM,132 transactions.

Note: Certain payment methods may incur a processing fee.

4.How is shipping managed for 74LVC1G14GM,132?

74LVC1G14GM,132 orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.

Once your 74LVC1G14GM,132 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 74LVC1G14GM,132?

For technical support, including 74LVC1G14GM,132 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your 74LVC1G14GM,132 requirements.

6.How does Aetrix verify that 74LVC1G14GM,132 is sourced from the original manufacturer or authorized distributors?

All 74LVC1G14GM,132 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 74LVC1G14GM,132 meets industry standards.

7.What is the process for return or replacement of 74LVC1G14GM,132?

All 74LVC1G14GM,132 units undergo pre-shipment inspection (PSI). If there is an issue with 74LVC1G14GM,132, 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 74LVC1G14GM,132 part is unused and in its original packaging.

Return procedure for 74LVC1G14GM,132:

1.Submit a request within 90 days.

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

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