Manufacturer Part Number: TC7SZ14FU Manufacturer / Brand: Toshiba
Part of Description: SoC FPGA TC7SZ14FU Lead Free Status / RoHS Status: table_img Lead free / RoHS Compliant
Ship From: HK/Shen Zhen Shipment Way: DHL/Fedex/TNT/UPS

Product parameters

Mounting StyleSMD/SMT
Package / CaseSSOP5-P-0.65A
Minimum Operating Temperature– 40 C
Maximum Operating Temperature+ 125 C
Factory Pack Quantity3000
Moisture SensitiveYes
Operating Temperature Range– 40 C to + 85 C
Propagation Delay Time15.6 ns
Unit Weight0.000212oz

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    TC7SZ14FU Applications:

    Signal Conditioning: The Schmitt trigger inputs of the TC7SZ14FU make it suitable for conditioning noisy signals or signals with slow rise and fall times. It can be used to clean up digital signals before further processing.

    Oscillators and Clock Generators: The TC7SZ14FU can be used to build relaxation oscillators and clock generators due to its Schmitt trigger inputs, which provide hysteresis and help stabilize the oscillation frequency.

    Voltage Level Shifting: It can be used to shift the voltage levels of digital signals between different logic families or voltage domains.

    Pulse Shaping: The Schmitt trigger inputs of the TC7SZ14FU can be used to shape pulses by converting noisy or irregular input signals into clean, well-defined output pulses.

    Digital Logic Circuits: The TC7SZ14FU can be used as a building block in various digital logic circuits, such as flip-flops, counters, and registers.

    Buffering: It can be used as a buffer to isolate one part of a circuit from another, preventing loading effects and providing impedance matching.

    Waveform Generation: The TC7SZ14FU can generate square waveforms with precise duty cycles, making it suitable for waveform generation applications.

    Clock Distribution: It can be used to distribute clock signals in digital systems, ensuring synchronized operation of multiple components.

    Pulse Width Modulation (PWM): The TC7SZ14FU can be used in PWM applications to generate variable-width pulses for controlling the speed of motors, brightness of LEDs, or duty cycle of power converters.

    Sensor Interface: It can be used in sensor interface circuits to condition and process signals from sensors before further processing by a microcontroller or digital signal processor.