Product Overview: 74HC147DB,118
The 74HC147DB,118 is a high-speed Si-gate CMOS device manufactured by NXP Semiconductors. It is designed to provide a priority encoding function, which is essential in digital systems where multiple inputs need to be prioritized and encoded into a binary representation. This integrated circuit is a key component in applications such as data multiplexing, control systems, and computer logic circuits.
Key Features
- 10-Line to 4-Line Priority Encoder: The device can encode ten input lines to four output lines, providing a compact solution for systems that need to handle multiple signals.
- Low Power Consumption: As part of the 74HC family, it has a low power consumption profile, making it suitable for battery-operated and power-sensitive applications.
- Wide Operating Voltage Range: It operates over a wide voltage range from 2.0V to 6.0V, which provides flexibility in different circuit environments and compatibility with TTL levels.
- High Noise Immunity: The 74HC147DB,118 features a high noise immunity characteristic of CMOS devices, ensuring stable performance in electrically noisy conditions.
- Standard Pin Configuration: The device comes in a standard SO-16 package, facilitating easy integration into various circuit designs without the need for specialized accommodations.
Applications
The 74HC147DB,118 is versatile and can be used in a variety of electronic systems, including:
- Computer systems
- Data processors
- Control panels
- Alarm systems
- Input signal multiplexing
Technical Specifications
The device's technical specifications include:
- Logic Family: HC
- Logic Type: Priority Encoder
- Number of Inputs: 10
- Number of Outputs: 4
- Output Type: Complementary
- Package Type: SO-16
- Mounting Type: Surface Mount
- Operating Temperature Range: -40°C to +125°C
For engineers and designers looking for a reliable priority encoder, the 74HC147DB,118 from NXP Semiconductors offers a balance of performance, power efficiency, and versatility, making it an excellent choice for advanced digital applications.