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XC2C512-10FT256C Description
XC2C512-10FT256C Description
The XC2C512-10FT256C is a high-performance Complex Programmable Logic Device (CPLD) from AMD's CoolRunner II series, designed for embedded systems requiring low power and high-speed operation. With 512 macrocells and 32 logic blocks, it delivers 12,000 equivalent gates and operates at a 1.7V–1.9V internal supply voltage, making it ideal for power-sensitive applications. The device features 212 I/O pins in a 256-pin FTBGA package, supporting surface-mount assembly. Its 9.2 ns propagation delay ensures rapid signal processing, while in-system programmability (ISP) allows for flexible field updates.
XC2C512-10FT256C Features
- 512 Macrocells & 32 Logic Blocks: High-density architecture for complex logic implementations.
- Low-Power Operation: 1.7V–1.9V internal voltage minimizes energy consumption.
- High-Speed Performance: 9.2 ns max delay enables real-time processing.
- In-System Programmability (ISP): Supports reconfiguration without physical removal.
- 212 I/O Pins: Extensive connectivity for interfacing with peripherals.
- Surface-Mount 256-FTBGA Package: Compact footprint for space-constrained designs.
- Industrial Temperature Range (0°C–70°C): Reliable operation in moderate environments.
- Last Time Buy Status: Suitable for legacy system maintenance.
XC2C512-10FT256C Applications
- Embedded Control Systems: Ideal for industrial automation and motor control.
- Communication Interfaces: Used in protocol bridging (UART, SPI, I2C).
- Power Management: Efficiently handles voltage sequencing in portable devices.
- Legacy System Upgrades: Replaces older CPLDs with higher performance and lower power.
- FPGA Companion Logic: Offloads glue logic tasks in FPGA-based designs.
Conclusion of XC2C512-10FT256C
The XC2C512-10FT256C stands out for its low power, high speed, and reconfigurability, making it a versatile solution for modern and legacy embedded systems. Its high I/O count and macrocell density provide flexibility in logic design, while the CoolRunner II architecture ensures energy efficiency. Though marked as Last Time Buy, it remains a robust choice for applications requiring reliable, field-programmable logic with moderate thermal requirements.



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