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XC7S50-2FGGA484C

Manufacturer Part Number: XC7S50-2FGGA484C Manufacturer / Brand: Xilinx
Part of Description: FPGA - Field Programmable Gate Array XC7S50-2FGGA484C Lead Free Status / RoHS Status: Digital to Analog Converters - DAC Dual, 16-Bit, 1230 MSPS, TxDAC+ Digital-to-Analog Converter
Ship From: HK/Shen Zhen Shipment Way: DHL/Fedex/TNT/UPS
Datasheets:

Product parameters

ManufacturerXilinx
DetailsRoHS
Mounting StyleSMD/SMT
Package / CaseFBGA-484
Minimum Operating Temperature– 0 C
Maximum Operating Temperature+85 C
Embedded Block RAM – EBR48 kbit
Moisture SensitiveYes
Product TypeFPGA – Field Programmable Gate Array
Factory Pack Quantity60
SubcategoryProgrammable Logic ICs
Operating Supply Current19 uA
TradenameSpartan
Unit Weight3.108306 oz

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    SUBMIT INFORMATION

    The XC7S50-2FGGA484C is a high-performance FPGA (Field-Programmable Gate Array) from Xilinx’s Spartan-7 series. Below is a detailed description of this sophisticated chip:

    Overview

    The XC7S50-2FGGA484C offers a robust and versatile platform for implementing complex digital systems. With its advanced features and high integration, this FPGA is suitable for a wide range of applications, including communications, industrial automation, medical equipment, and more.

    Key Specifications

    • Logic Cells: The chip features 52,160 logic cells, providing ample resources for implementing digital logic functions.
    • I/O Ports: With 250 user I/O ports, the XC7S50-2FGGA484C supports a wide range of signaling standards and makes it easy to connect to external devices and sensors.
    • Memory: It includes 600 kbit of distributed RAM and 2,700 kbit of block RAM, offering sufficient storage for data and program code.
    • Power Supply: The chip operates on a power supply voltage ranging from 950 mV to 1.05 V, contributing to its low power consumption.
    • Package: Packaged in a 484-ball FPBGA package, the XC7S50-2FGGA484C is suitable for applications with space constraints.

    Advanced Features

    • High-Performance Logic: Based on 6-input LUT (Look-Up Table) technology, the XC7S50-2FGGA484C offers high-performance logic capabilities.
    • Block RAM with FIFO Logic: The 36 Kb dual-port block RAM with FIFO (First In, First Out) logic is ideal for on-chip data buffering.
    • High-Speed Interfaces: The chip supports high-speed interfaces such as DDR3 and PCIe (PCI Express), enabling high-speed data transmission and processing.
    • Analog-to-Digital Converter (ADC): The user-configurable analog interface (XADC) includes a dual 12-bit, 1 MSPS ADC with on-chip thermistor and power supply sensors.
    • DSP Slices: With DSP slices featuring 25 x 18 multipliers, 48-bit accumulators, and pre-adders, the XC7S50-2FGGA484C is capable of high-performance filtering, including optimized symmetric coefficient filtering.
    • Clock Management Tiles (CMTs): The powerful CMTs, combined with PLLs (Phase-Locked Loops) and MMCMs (Mixed-Mode Clock Managers), provide high precision and low jitter clock management.

    Applications

    Due to its advanced features and high performance, the XC7S50-2FGGA484C is suitable for a wide range of applications, including:

    • Communications: It can be used in network routers, optical communication equipment, and data centers, providing high-speed data transmission and processing capabilities.
    • Industrial Automation: The chip is ideal for PLCs (Programmable Logic Controllers), motion controllers, and industrial monitoring systems, offering real-time control and high reliability.
    • Medical: It can be utilized in medical imaging systems, patient monitoring equipment, and medical diagnostic devices, providing efficient data processing and control capabilities.
    • Aerospace and Defense: The XC7S50-2FGGA484C is suitable for flight control systems, navigation systems, and radar systems, offering high performance and robustness in harsh environments.

    In summary, the XC7S50-2FGGA484C is a versatile and high-performance FPGA from Xilinx’s Spartan-7 series. Its advanced features, high integration, and low power consumption make it suitable for a wide range of applications, from communications and industrial automation to medical and aerospace systems.

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