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XC17128EVO8C Description
XC17128EVO8C Description
The XC17128EVO8C is an OTP (One-Time Programmable) serial configuration PROM from AMD, designed for FPGA configuration memory applications. With a 128kb memory size, it operates within a 4.75V to 5.25V supply range and is rated for commercial temperature ranges (0°C to 70°C). Housed in an 8-SOIC surface-mount package, this device is ideal for space-constrained designs. Although marked as obsolete, it remains relevant for legacy systems requiring reliable, non-volatile storage for FPGA configuration data. The device complies with EAR99 export control and is REACH unaffected, ensuring broad usability in industrial and commercial electronics.
XC17128EVO8C Features
- OTP Memory: Ensures secure, permanent storage of configuration data, preventing unauthorized modifications.
- Compact 8-SOIC Package: Optimized for surface-mount assembly, suitable for high-density PCB layouts.
- Wide Voltage Range (4.75V–5.25V): Compatible with standard 5V systems, reducing the need for additional regulation.
- Commercial-Grade Temperature Rating: Reliable performance in typical operating environments.
- Low Moisture Sensitivity (MSL 1): No baking required before assembly, simplifying production workflows.
- Legacy Support: Ideal for maintaining or repairing older FPGA-based systems where newer alternatives may not be compatible.
XC17128EVO8C Applications
- FPGA Configuration: Primary use case for storing boot code or configuration bitstreams in Xilinx or AMD FPGA systems.
- Industrial Control Systems: Suitable for machinery requiring stable, one-time programmable memory for firmware storage.
- Legacy Electronics Repair: Critical for maintaining outdated equipment where modern substitutes are unavailable.
- Embedded Systems: Used in applications demanding secure, non-volatile memory with minimal footprint.
Conclusion of XC17128EVO8C
The XC17128EVO8C offers a robust, OTP-based solution for FPGA configuration and other non-volatile memory needs. Its compact form factor, wide voltage tolerance, and commercial-grade reliability make it a practical choice for legacy and industrial applications. While newer alternatives exist, this device remains valuable for systems requiring long-term stability and backward compatibility. Engineers working with older FPGA platforms or secure configuration storage will find it a dependable component.



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