XC7VX485T-1FFG1927C

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AMD Xilinx XC7VX485T-1FFG1927C

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Part No.:
XC7VX485T-1FFG1927C
Manufacturer:
AMD Xilinx
Package:
1924-BBGA, FCBGA
Datasheet:
XC7VX485T-1FFG1927C.pdf
Description:
IC FPGA 600 I/O 1927FCBGA
In Stock:
2288
Quantity:
  Add To Cart
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  • Purchase and inquiryPurchase and inquiry

    XC7VX485T-1FFG1927C this integrated circuit is available in factory sealed anti static packs. at icwhale.com. Please read product page below detail information. including XC7VX485T-1FFG1927C price, data-sheet, in-stock availability, technical difficulties. Also. Quickly Enter the access of compare listing to find out replaceable electronic parts. If you want to retrieve comprehensive data for XC7VX485T-1FFG1927C to optimize the supply chain (including cross references, life-cycle, parametric, counterfeit risk, obsolescence managements forecasts), please contact to our Tech-supports team.

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    XC7VX485T-1FFG1927C informationXC7VX485T-1FFG1927C information

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    XC7VX485T-1FFG1927C application case analysis in emerging technology fields


    XC7VX485T-1FFG1927C is a high-performance FPGA (Field-Programmable Gate Array) chip designed by Xilinx, offering advanced features for a wide range of applications. It boasts a large number of logic cells, high-speed transceivers, and versatile I/O interfaces, making it suitable for demanding tasks in sectors such as telecommunications, aerospace, and scientific research.

    Application Scenario:

    In radar signal processing applications, XC7VX485T-1FFG1927C can be utilized to implement complex algorithms for target detection and tracking. Its high computational capability and reconfigurability enable real-time processing of radar data, enhancing situational awareness and target identification accuracy.

    System Architecture:

    To design a radar signal processing system using XC7VX485T-1FFG1927C, the following architectural considerations are crucial:

    1. Signal Acquisition:

    Interface with radar front-end components, such as antennas and RF receivers, to capture incoming signals. Utilize the high-speed transceivers of XC7VX485T-1FFG1927C to efficiently transfer raw data to the FPGA for further processing.

    2. Digital Signal Processing:

    Implement signal processing algorithms, such as pulse compression and Doppler filtering, using the FPGA's programmable logic resources. Utilize parallel processing capabilities to handle multiple radar channels simultaneously, ensuring real-time data analysis.

    3. Target Tracking:

    Develop tracking algorithms to estimate the position, velocity, and trajectory of detected targets. Utilize the FPGA's computational resources to perform complex mathematical calculations with low latency, enabling timely updates to the tracking information.

    4. Data Fusion:

    Integrate data from multiple radar sources and other sensor modalities, such as infrared and electro-optical sensors, to improve target detection and classification accuracy. Utilize the FPGA's flexible I/O interfaces to facilitate seamless data exchange between different subsystems.

    5. System Integration:

    Ensure compatibility and interoperability with existing radar systems and network infrastructure. Utilize standard communication protocols, such as Ethernet or PCIe, to enable seamless integration of XC7VX485T-1FFG1927C-based processing units into larger sensor networks.

    Benefits:

    The use of XC7VX485T-1FFG1927C in radar signal processing offers several advantages:

    - High Performance: The FPGA's parallel processing architecture and dedicated DSP blocks enable efficient execution of complex algorithms with high throughput.

    - Flexibility: The reconfigurable nature of FPGAs allows for iterative algorithm development and rapid prototyping, facilitating quick adaptation to changing requirements and signal processing tasks.

    - Scalability: The scalability of FPGA-based solutions enables the deployment of radar systems with varying levels of processing power and complexity, tailored to specific mission objectives and operational environments.

    - Power Efficiency: Compared to traditional CPU-based processing solutions, FPGA-based implementations often offer higher performance-per-watt metrics, making them suitable for portable and power-constrained applications.

    - Real-Time Responsiveness: The deterministic nature of FPGA-based systems ensures predictable latency and response times, critical for real-time radar signal processing and target tracking applications.

    Conclusion:

    XC7VX485T-1FFG1927C serves as a powerful enabler for high-performance radar signal processing applications, offering the flexibility, scalability, and computational resources required to meet the demanding requirements of modern radar systems. By leveraging its advanced features, engineers can develop efficient and intelligent radar processing solutions, enhancing situational awareness and mission effectiveness in various defense, aerospace, and surveillance applications.

    XC7VX485T-1FFG1927C FAQ

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    3. Are the XC7VX485T-1FFG1927C price and inventory displayed accurate?

    The price and inventory of XC7VX485T-1FFG1927C fluctuates frequently and cannot be updated in time, it will be updated periodically within 24 hours. And, our quotation usually expires after 5 days.

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    6. What is the process for return or replacement of XC7VX485T-1FFG1927C?

    All goods will implement Pre-Shipment Inspection (PSI), selected at random from all batches of your order to do a systematic inspection before arranging the shipment. If there is something wrong with the XC7VX485T-1FFG1927C we delivered, we will accept the replacement or return of the XC7VX485T-1FFG1927C only when all of the below conditions are fulfilled:

    (1)Such as a deficiency in quantity, delivery of wrong items, and apparent external defects (breakage and rust, etc.), and we acknowledge such problems.

    (2)We are informed of the defect described above within 90 days after the delivery of XC7VX485T-1FFG1927C.

    (3)The PartNo is unused and only in the original unpacked packaging.

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    (1)Inform us within 90 days

    (2)Obtain Requesting Return Authorizations

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