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XC17S30XLPD8I Description
XC17S30XLPD8I Description
The XC17S30XLPD8I is an OTP (One-Time Programmable) configuration PROM from AMD, designed for use with FPGAs requiring reliable, non-volatile memory storage. This through-hole-mounted device offers a memory capacity of 300kb, operating within a 3V to 3.6V supply range, making it suitable for industrial and embedded systems demanding stable performance. Packaged in an 8-DIP tube, it is ideal for prototyping and legacy systems where through-hole mounting is preferred. The device is classified as Obsolete but remains relevant for specific applications due to its robustness and compatibility with older FPGA designs.
XC17S30XLPD8I Features
- OTP Programmability: Ensures data integrity and security, ideal for fixed-configuration applications.
- Wide Voltage Range (3V–3.6V): Compatible with low-power FPGA systems and industrial environments.
- 300kb Memory Capacity: Sufficient for storing medium-sized FPGA configurations.
- Through-Hole (DIP) Packaging: Simplifies manual assembly and repair in legacy systems.
- Industrial Temperature Support: Reliable performance in harsh conditions.
- REACH Unaffected: Compliant with environmental regulations, ensuring long-term usability.
XC17S30XLPD8I Applications
- FPGA Configuration Storage: Primary use for loading boot configurations in AMD/Xilinx FPGAs.
- Industrial Control Systems: Suitable for machinery and automation due to its rugged design.
- Legacy Equipment Maintenance: Ideal for repairing or upgrading older systems requiring DIP-packaged memory.
- Embedded Systems: Used in applications where OTP security and reliability are critical.
Conclusion of XC17S30XLPD8I
The XC17S30XLPD8I is a specialized OTP PROM offering a balance of reliability, compatibility, and ease of integration for FPGA-based systems. While obsolete, its through-hole design and industrial-grade performance make it valuable for legacy and niche applications. Engineers seeking a durable, one-time programmable solution for FPGA configuration will find this device a practical choice, particularly in environments where long-term stability is prioritized over reconfigurability.



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