onsemi M74VHC1GT50DTT1G Single Buffer Gate: Features and Applications

Release date:2026-07-07 Number of clicks:106

onsemi M74VHC1GT50DTT1G Single Buffer Gate: Features and Applications

The onsemi M74VHC1GT50DTT1G is a high-performance, single non-inverting buffer gate belonging to the Very High-Speed CMOS (VHC) family. This tiny yet robust logic gate is engineered to provide superior signal integrity and noise immunity, making it an essential component in a wide array of digital systems. Packaged in a space-saving SC-75/SOT-416 package, it is ideally suited for modern, compact electronic designs where board real estate is at a premium.

A key feature of this buffer is its wide operating voltage range of 2.0 V to 5.5 V. This flexibility allows it to seamlessly interface between components operating at different logic levels (e.g., 3.3V and 5V), making it an excellent choice for mixed-voltage system design. Despite its high-speed operation, the device maintains remarkably low power consumption, a characteristic inherent to CMOS technology. Furthermore, it offers high noise immunity and can source/sink up to 8 mA of current at its output, enabling it to drive relatively heavy loads compared to other logic gates.

The applications for the M74VHC1GT50DTT1G are extensive. It is most commonly used for signal conditioning and amplification, ensuring a weak or degraded digital signal is restored to a full logic level. It serves as an effective clock buffer to distribute timing signals across a circuit with minimal skew. Additionally, it is frequently employed as a voltage level translator in systems with multiple voltage domains and as a line driver to improve signal integrity over longer traces on a PCB or through cables. It can also be used to isolate different sections of a circuit, preventing unwanted interactions.

ICGOOODFIND: The onsemi M74VHC1GT50DTT1G single buffer gate is a fundamental building block for digital circuits, prized for its voltage-level translation capabilities, high-speed performance, and minimal footprint. It is an indispensable component for ensuring robust and reliable digital communication within mixed-voltage systems.

Keywords: Voltage Level Translation, Signal Conditioning, Very High-Speed CMOS (VHC), Non-Inverting Buffer, Mixed-Voltage Systems

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