The EPM7064SLC44-6N is a Programmable Logic Device (PLD) from Intel's MAX 7000S family. This device offers a flexible and cost-effective solution for a wide range of digital logic applications. It is characterized by its in-system programmability, high performance, and ease of use. This particular part comes in a 44-pin PLCC (Plastic Leaded Chip Carrier) package.
Applications:
- Address decoding: Used to select specific memory locations or peripherals in a system.
- Glue logic: Interconnecting various components within a digital system.
- State machine implementation: Control the sequence of operations in a digital system.
- Peripheral control: Managing the operation of external devices.
- Simple arithmetic functions: Implementing adders, subtractors, and other basic math functions.
Features:
- 64 macrocells: Each macrocell provides a configurable logic function.
- In-system programmability (ISP): Allows for easy reprogramming without removing the device from the circuit board.
- High speed: Offers a propagation delay as low as 6 ns.
- Flexible architecture: Provides a variety of logic resources to implement complex functions.
- 44-pin PLCC package: A compact and easy-to-use package for prototyping and production.
- Low power consumption: Ideal for battery-powered or energy-sensitive applications.
Benefits:
- Reduced time-to-market: ISP allows for rapid prototyping and design changes.
- Lower system cost: Integration of multiple logic functions into a single device.
- Improved system performance: High speed and flexible architecture allow for optimized designs.
- Increased design flexibility: Configurable logic resources allow for a wide range of applications.
- Simplified board design: Reduced component count and compact package size.
Additional Details:
The EPM7064SLC44-6N operates from a 5V power supply. It supports a variety of input and output standards. The '6N' designation indicates a specific speed grade within the MAX 7000S family, representing a propagation delay of 6ns. It is a non-volatile device, meaning that it retains its configuration even when power is removed. This makes it suitable for applications where data retention is critical. The device can be programmed using industry-standard programming tools. It offers a robust solution for digital logic designs.