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EP2S180F1020C3N
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EP2S180F1020C3N Description
EP2S180F1020C3N Description
The EP2S180F1020C3N is a high-performance Field-Programmable Gate Array (FPGA) from Intel's Stratix® II series, designed for demanding digital logic applications. Manufactured by Intel, this FPGA integrates 179,400 logic elements and 9,383,040 RAM bits, delivering substantial processing power and memory capacity. It features 742 I/O pins in a 1020-ball FineLine BGA (FBGA) package, enabling high-density interconnects for complex designs. Operating within a 1.15V to 1.25V supply range and a 0°C to 85°C junction temperature (TJ) range, it balances power efficiency with thermal resilience. Though marked as obsolete, its robust architecture remains relevant for legacy systems requiring high-speed data processing and reconfigurable logic.
EP2S180F1020C3N Features
- High Logic Density: 179,400 logic elements and 8,970 LABs/CLBs for complex digital designs.
- Large On-Chip Memory: 9.4 Mb of embedded RAM for data-intensive applications.
- Extensive I/O Support: 742 programmable I/Os for versatile interfacing.
- Low-Power Operation: Optimized for 1.2V core voltage, reducing dynamic power consumption.
- Industrial-Grade Reliability: RoHS-compliant and REACH-unaffected, with MSL 3 (168 hours) moisture sensitivity.
- Surface-Mount FBGA Package: 1020-pin configuration for high-density PCB integration.
EP2S180F1020C3N Applications
This FPGA excels in high-performance computing, telecommunications, and defense/aerospace systems where reconfigurable logic and high-speed processing are critical. Its large memory and I/O count make it ideal for:
- Digital Signal Processing (DSP): Real-time filtering, FFT, and modulation.
- Network Infrastructure: Packet processing, routing, and switching.
- Embedded Systems: Customizable control logic for industrial automation.
- Legacy System Upgrades: Replacing ASICs in older designs requiring flexibility.
Conclusion of EP2S180F1020C3N
While the EP2S180F1020C3N is no longer in active production, its high logic density, extensive memory, and versatile I/O make it a compelling choice for legacy or long-lifecycle projects. Engineers working with high-throughput systems or retrofit designs may still find value in its performance, particularly where newer FPGAs are not backward-compatible. Its balance of power efficiency and computational power ensures continued relevance in specialized applications.



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