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XC7S15-1CPGA196C Description
XC7S15-1CPGA196C Description
The XC7S15-1CPGA196C is a high-performance Field-Programmable Gate Array (FPGA) from AMD's Spartan®-7 family, designed for embedded systems requiring low power, high logic density, and reliable operation in industrial environments. Packaged in a 196-ball Chip-Scale Ball Grid Array (CSBGA), this surface-mount FPGA integrates 12,800 logic cells, 1,000 CLBs (Configurable Logic Blocks), and 368 Kb of RAM, enabling flexible digital signal processing, control logic, and interfacing applications. Operating at a 0.95V–1.05V supply voltage and rated for 0°C to 85°C (TJ), it balances power efficiency with robust thermal performance.
XC7S15-1CPGA196C Features
- High Logic Density: 12,800 logic cells and 1,000 CLBs support complex designs in compact footprints.
- Low-Power Operation: Optimized for 1V core voltage, reducing dynamic and static power consumption.
- Rich I/O Capability: 100 I/O pins facilitate versatile peripheral connectivity.
- Industrial Reliability: RoHS3/REACH compliant, MSL3-rated, and EAR99/ECCN-classified for global deployment.
- On-Chip Memory: 368 Kb of distributed RAM for data buffering and storage.
- Surface-Mount CSBGA Package: Ideal for space-constrained PCB designs.
XC7S15-1CPGA196C Applications
This FPGA excels in:
- Embedded Vision: Real-time image processing in drones or medical devices.
- Industrial Automation: Motor control, PLCs, and sensor fusion.
- Communications: Protocol bridging (e.g., SPI to PCIe) in IoT gateways.
- Consumer Electronics: Low-power edge computing for wearables.
Compared to similar FPGAs, the XC7S15-1CPGA196C stands out with its Spartan-7 architecture, offering better cost-per-logic-cell efficiency and lower static power than older Spartan-6 variants.
Conclusion of XC7S15-1CPGA196C
A versatile, power-optimized FPGA, the XC7S15-1CPGA196C is tailored for designers needing high integration, industrial durability, and low-power operation in compact form factors. Its balance of performance, I/O flexibility, and cost makes it ideal for mid-complexity embedded systems across automotive, industrial, and consumer markets.



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