STMicroelectronics M74HCT14TTR Hex Schmitt Trigger Inverter
The M74HCT14TTR from STMicroelectronics is a high-performance CMOS Hex Schmitt-trigger inverter designed to operate over a broad range of supply voltages, from 4.5V to 5.5V. This integrated circuit is characterized by its high noise immunity and low power consumption, making it suitable for interfacing with TTL and CMOS logic levels. With its robust design, it is commonly used in applications such as wave shaping, signal conditioning, and in systems that require a high degree of noise immunity.
Key Features
- Logic Type: Hex Schmitt-trigger inverter
- Supply Voltage (Vcc): 4.5V to 5.5V
- Output Current: -4mA to 4mA
- Operating Temperature: -55°C to 125°C
- Package: TSSOP14 (Thin Shrink Small Outline Package)
- Mounting Type: Surface Mount
- Logic Level Compatibility: TTL and CMOS
Product Benefits
The M74HCT14TTR offers numerous benefits for designers and engineers. Its Schmitt trigger action provides a hysteresis loop that enhances noise immunity and transforms a slowly changing input signal to a fast changing, jitter-free output. This makes it especially beneficial for applications that are sensitive to operational precision and reliability. The low power consumption of the device also allows for efficient system design, minimizing the overall power requirements of electronic systems.
Applications
This versatile component is used across a wide range of applications. It is ideal for signal conditioning, voltage level conversion, and logic circuitry that requires clean and stable output signals. The M74HCT14TTR is also used in systems that demand high noise immunity, such as industrial controls, communication equipment, and data processing systems.
Quality and Reliability
STMicroelectronics ensures that the M74HCT14TTR meets the highest standards of quality and reliability. Each device undergoes rigorous testing and quality control measures to guarantee performance even in the most demanding conditions. This commitment to quality makes the M74HCT14TTR a reliable choice for critical and long-life applications.