Product Overview: MC74VHC1GT50DF1G from ON Semiconductor
The MC74VHC1GT50DF1G is a high-performance, single-gate CMOS logic level shifter manufactured by ON Semiconductor. It's designed to address the needs for interfacing between different voltage domains in a mixed 3.3V/5V system. This device is capable of translating inputs from 3.3V to 5V levels, making it an essential component for modern digital circuit designs that require voltage level translation.
Key Features
- Logic Type: Single Non-Inverting Buffer/Line Driver with 3-State Output
- High-Speed Operation: The device is capable of operating at high speeds, which is essential for fast data transmission and processing in advanced digital systems.
- Low Power Dissipation: It has been optimized for low power consumption, which helps in reducing the overall power requirements of the system it is used in.
- Advanced CMOS Technology: Utilizes advanced silicon-gate CMOS fabrication to achieve high noise immunity and low static power consumption.
- Power Down Protection: Inputs and outputs are equipped with protection against high static voltages or electric fields, ensuring device reliability and longevity.
- Compatibility: Input levels are compatible with standard CMOS outputs; with pull-up resistors, they are compatible with LSTTL outputs as well.
- Packaging: Comes in a space-saving SC-88A package, ideal for compact circuit designs.
Applications
The MC74VHC1GT50DF1G is suitable for various applications that require logic level shifting or signal buffering. It is particularly useful in mixed-voltage digital systems, such as:
- Multivoltage digital systems integration
- Communication interfaces
- Portable devices and consumer electronics
- Data bus drivers or receivers
- Microprocessor or microcontroller interfacing
Quality and Reliability
ON Semiconductor is known for its commitment to quality and reliability, and the MC74VHC1GT50DF1G is no exception. It is designed to meet or exceed the rigorous standards set by the industry, ensuring that it performs reliably under a wide range of environmental conditions.