Exploring the EPCS16SI8: A High-Performance Serial Configuration Device
The EPCS16SI8 is a serial configuration device designed to store configuration data for FPGAs and other programmable logic devices. Manufactured by Intel (formerly Altera), this non-volatile memory chip offers 16 megabits (2MB) of storage capacity, making it ideal for applications requiring reliable data retention and fast system boot-up.
Key Features of the EPCS16SI8
1. High-Speed Serial Interface
The EPCS16SI8 utilizes a 4-wire SPI (Serial Peripheral Interface), ensuring fast data transfer and low-latency communication with host devices. Its 20 MHz clock speed enables efficient configuration loading, reducing system startup time.
2. Robust Data Retention
With a 20-year data retention capability and 100,000 program/erase cycles, the EPCS16SI8 is built for long-term reliability in industrial, automotive, and aerospace applications.
3. Compact and Durable Packaging
The SOIC-8 package provides space-saving integration while maintaining high thermal and mechanical stability, suitable for harsh environments.
4. Low Power Consumption
Operating at 3.3V, the EPCS16SI8 minimizes power usage, making it ideal for battery-powered and energy-efficient systems.
Applications of the EPCS16SI8

- FPGA Configuration Storage – Ensures quick and secure boot-up for Altera and Intel FPGAs.
- Industrial Automation – Used in PLC controllers and motor drives for firmware storage.
- Automotive Systems – Supports infotainment and ADAS modules requiring non-volatile memory.
- Aerospace & Defense – Provides radiation-tolerant data storage for satellite and avionics systems.
Why Choose the EPCS16SI8?
The EPCS16SI8 stands out due to its high endurance, fast access speed, and industry-proven reliability. Its compatibility with Altera/Intel FPGAs makes it a preferred choice for engineers seeking cost-effective configuration solutions.
ICgoodFind’s Take
The EPCS16SI8 delivers exceptional performance for serial data storage in demanding applications. Its balance of speed, durability, and power efficiency makes it a top-tier solution for modern embedded systems.
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