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SN74LVC2G14DBVR

Manufacturer Part Number: SN74LVC2G14DBVR Manufacturer / Brand: TI
Part of Description: Inverters Dual Schmitt-Trigger Lead Free Status / RoHS Status: table_img Lead free / RoHS Compliant
Ship From: HK/Shen Zhen Shipment Way: DHL/Fedex/TNT/UPS
Datasheets:

Product parameters

ManufacturerTI
RoHSDetails
Mounting StyleSMD/SMT
Package / CaseSOT-23-6
Operating Supply Current200 uA
Supply Voltage – Max5.5 V
PackagingReel
Minimum Operating Temperature– 40 C
Maximum Operating Temperature+ 125 C
Factory Pack Quantity100
SubcategoryLogic ICs
Product TypeInverters
Unit Weight0.001446 oz

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    The SN74LVC2G14DBVR is a dual Schmitt-trigger inverter from Texas Instruments, designed for high-speed logic-level translation and signal conditioning. It features:

    1. Schmitt-Trigger Inputs: Provides hysteresis for noise immunity and ensures clean transitions with noisy or slow input signals.
    2. Dual Inverters: Contains two independent inverters in a single package, allowing for flexible use in various circuit designs.
    3. Wide Voltage Range: Operates over a wide supply voltage range of 1.65V to 5.5V, making it suitable for both low-voltage and standard logic systems.
    4. High-Speed Operation: Supports high-speed operation, with a typical propagation delay of just a few nanoseconds, making it ideal for timing-sensitive applications.
    5. Low Power Consumption: Designed with low power dissipation, ensuring efficient operation in battery-powered and portable devices.
    6. Small Package Size: Available in a compact SOT-23-6 package, the SN74LVC2G14DBVR is well-suited for space-constrained applications.
    7. Applications:
      • Signal Conditioning: Ideal for improving signal integrity in systems with noisy or slow input signals.
      • Logic Level Shifting: Suitable for converting logic levels between different voltage domains.
      • Timing Applications: Can be used in clock and timing circuits requiring precise signal control.

    The SN74LVC2G14DBVR is a versatile component commonly used in digital systems requiring reliable signal processing and noise immunity.

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