Product Overview: TIBPAL16R6-25CN
The TIBPAL16R6-25CN is a high-performance programmable array logic (PAL) device manufactured by Texas Instruments, a leader in semiconductor solutions. This device is designed to offer a flexible and efficient solution for implementing combinational and sequential logic functions in various digital applications. The TIBPAL16R6-25CN is part of the Texas Instruments Bipolar PAL series, which is renowned for its speed and reliability.
Key Features
- High-Speed Performance: With a 25ns maximum propagation delay, the TIBPAL16R6-25CN ensures rapid signal processing, making it ideal for high-speed applications.
- Programmable Logic: The device features a matrix of AND gates that are programmable, allowing the user to configure specific logic functions to meet their design requirements.
- Flexibility: It offers a versatile solution with 10 outputs that can be configured either as registered or combinatorial, providing designers with the flexibility to address a wide range of logic design challenges.
- Pin-Compatible: This PAL device is pin-compatible with a wide range of other PAL devices, ensuring easy integration into existing designs without the need for board re-layout.
- Reliability: Built with Texas Instruments' proven bipolar technology, the TIBPAL16R6-25CN is designed for high-reliability applications.
Applications
The TIBPAL16R6-25CN is well-suited for various applications, including but not limited to:
- Automotive systems
- Industrial control systems
- Data communication equipment
- Complex state machines
- Custom logic circuits
Technical Specifications
| Parameter |
Value |
| Propagation Delay (Max) |
25ns |
| Operating Temperature |
0°C to 70°C |
| Supply Voltage |
5V ± 10% |
| Package |
24-Pin DIP |
The TIBPAL16R6-25CN is a testament to Texas Instruments' commitment to providing innovative and high-quality components for the electronics industry. Its combination of speed, flexibility, and reliability makes it a preferred choice for designers looking to create efficient and robust digital systems.