The EPM1270T144C5N is a high-density, programmable logic device from Intel (formerly Altera), designed for a wide range of digital logic applications. Here are its key features and specifications:
- Device Type:
- MAX 7000S CPLD: A Complex Programmable Logic Device (CPLD) providing a versatile solution for implementing custom digital logic functions.
- Performance:
- Logic Elements: Features up to 128 macrocells, offering sufficient resources for complex logic designs and efficient implementation of digital functions.
- Speed Grade: Operates at a speed grade of 5, providing a balance between performance and power consumption.
- Package Type:
- TQFP-144 Package: Housed in a 144-pin Thin Quad Flat Package (TQFP), providing a compact form factor suitable for various PCB designs.
- Features:
- High Logic Density: Supports a large number of logic gates and flip-flops, enabling the implementation of complex digital circuits within a single device.
- I/O Pins: Includes a substantial number of input/output pins for flexible interfacing with external components and systems.
- Configuration: Offers in-system programmability, allowing users to reconfigure the device as needed for different applications.
- Applications:
- Digital Logic Design: Suitable for a wide range of digital logic applications, including custom logic circuits, state machines, and control systems.
- Communication Systems: Used in communication systems for implementing custom protocols and processing digital signals.
- Industrial Control: Applied in industrial control systems for designing custom control logic and interfacing with sensors and actuators.
- Consumer Electronics: Ideal for consumer electronics where custom digital functions and logic are required.
The EPM1270T144C5N is a versatile and high-density CPLD, offering substantial logic resources and flexible interfacing options for various digital logic applications. Its programmable nature and compact packaging make it a suitable choice for implementing custom logic in a wide range of electronic systems.