Part number: XC2S50-5PQ208C-ES
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XC2S50-5PQ208C-ES Component Specifications
General Information: The XC2S50-5PQ208C-ES is a specialized programmable logic device (PLD) designed for high-performance applications in the field of digital electronics. This component is renowned for its versatility, reliability, and efficiency in implementing complex logic functions and signal processing tasks.
Specifications
- Technology: Utilizes advanced Field-Programmable Gate Array (FPGA) technology to enable flexible configuration of logic circuits and algorithms, offering rapid prototyping and customization capabilities.
- Capacity: Features a logic cell capacity suitable for medium-scale integration tasks, providing ample resources for implementing diverse functions and algorithms.
- Speed: Operates at a high clock frequency to ensure rapid execution of logic operations and signal processing tasks, meeting the performance demands of modern digital systems.
- Package: Housed in a PQ208 package, the XC2S50-5PQ208C-ES offers convenient integration and compatibility with standard PCB designs and assembly processes.
Applications
- Embedded Systems: Ideal for use in embedded systems, industrial automation, and control applications where programmable logic capabilities are essential for system operation.
- Digital Signal Processing: Well-suited for implementing digital signal processing algorithms, filters, and data processing tasks in communication systems and consumer electronics.
- Prototyping: Valuable for rapid prototyping of digital designs, allowing engineers to test and iterate on complex logic functions before finalizing hardware implementations.
Compliance
Industry Standards: The XC2S50-5PQ208C-ES complies with industry standards for programmable logic devices, ensuring compatibility, reliability, and performance in accordance with established norms and guidelines.
Identification
The code XC2S50-5PQ208C-ES provides specific details about the PLD, including its capacity, package type, and performance characteristics, facilitating accurate selection and integration into digital design projects.
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