STMicroelectronics M74HC27RM13TR Triple 3-Input NOR Gate
The M74HC27RM13TR is a high-speed CMOS triple 3-input NOR gate integrated circuit, designed and manufactured by STMicroelectronics, a leader in semiconductor solutions. This IC is part of the HC family, which is known for its high noise immunity and low power consumption, making it an ideal choice for a wide range of digital applications.
Featuring three independent NOR gates in a single package, the M74HC27RM13TR provides a compact and efficient solution for implementing logical NOR operations in digital circuits. Each gate has three inputs, enabling complex logic functions to be realized with fewer components and simplified design efforts.
The device operates with a supply voltage range from 2V to 6V, providing compatibility with TTL levels while allowing for operation with typical CMOS voltage levels. This flexibility makes the M74HC27RM13TR suitable for interfacing with both CMOS and TTL logic devices, ensuring easy integration into mixed-technology systems.
With its fast propagation delay and high noise immunity, the M74HC27RM13TR maintains reliable performance even in demanding environments. The device is characterized for operation from -55°C to +125°C, making it suitable for use in industrial and automotive applications where extreme temperatures are common.
The M74HC27RM13TR comes in a TSSOP14 package, which is known for its small footprint and low profile. This package type is ideal for space-constrained applications, such as portable electronics, where board real estate is at a premium.
Key features of the M74HC27RM13TR include:
- Triple 3-input NOR gate functionality
- High noise immunity
- Low power consumption
- Wide operating voltage range (2V to 6V)
- Compatibility with TTL outputs
- Fast propagation delay
- Extended temperature range (-55°C to +125°C)
- Space-saving TSSOP14 package
STMicroelectronics' commitment to quality and performance is evident in the M74HC27RM13TR, making it a reliable choice for designers looking to implement NOR logic in their digital systems with confidence.