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XC4VSX35-10FF668I
+StücklisteIC FPGA 448 I/O 668FCBGA
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HerstellerAMD
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Herstellerteil #XC4VSX35-10FF668I
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Auf Lager6512
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Spezifikationen
| Attribut | Wert |
| Series | Virtex®-4 SX |
| PartStatus | Active |
| DigiKeyProgrammable | Not Verified |
| TotalRAMBits | 3538944 |
| NumberofI/O | 448 |
| Voltage-Supply | 1.14V ~ 1.26V |
| MountingType | Surface Mount |
| OperatingTemperature | -40°C ~ 100°C (TJ) |
| Package/Case | 668-BBGA, FCBGA |
| SupplierDevicePackage | 668-FCBGA (27x27) |
| BaseProductNumber | XC4VSX35 |
| NumberofLogicElements/Cells | 34560 |
| NumberofLABs/CLBs | 3840 |
Übersicht
Description
The "10" in its designation indicates a speed grade, while "FF668" refers to the package type and pin count, which is a fine-pitch BGA with 668 pins. This FPGA supports various I/O standards, making it versatile for different applications, including telecommunications, automotive, and consumer electronics.
Additionally, the XC4VSX35 integrates built-in memory blocks, digital signal processing (DSP) slices, and advanced configuration options, providing flexibility in design. Tools like Xilinx ISE (Integrated Software Environment) facilitate development, allowing engineers to implement and optimize their designs effectively. Overall, the XC4VSX35-10FF668I is a powerful solution for demanding design requirements.
Equivalent
Features
1. Logic Cells: It offers 35,000 system gates and multiple configurable logic blocks (CLBs) for high-density logic implementations.
2. DSP Slices: Integrated DSP slices facilitate high-performance digital signal processing applications.
3. I/O Pins: Features up to 668 user I/O pins with flexible configuration options for various signaling standards.
4. Memory: On-chip memory resources include block RAM and FIFO structures for efficient data handling.
5. Programmability: Fully reconfigurable, allowing for rapid prototyping and design changes.
6. Performance: Operates at a maximum clock frequency of 450 MHz.
7. Power: Designed for low power consumption, making it suitable for portable and embedded applications.
8. Development Support: Compatible with Xilinx design tools and IP cores, facilitating development and integration.
This FPGA is ideal for applications in telecommunications, video processing, and embedded systems.
Pinout
The primary functions of the pins include:
- I/O Pins: Configurable for general input/output operations.
- Power Pins: For supplying the FPGA core and I/O banks with the necessary voltage levels.
- Configuration Pins: Used for programming the FPGA.
- Clock Pins: For receiving clock signals to synchronize operations within the FPGA.
- Ground Pins: Essential for circuit grounding to ensure proper operation and signal integrity.
The device supports various I/O standards and protocols, allowing it to interface with other components and systems effectively. Overall, the XC4VSX35-10FF668I is designed for high-performance applications in areas such as telecommunications, automotive, and digital signal processing.
Manufacturer
Xilinx's products, including the Spartan and Virtex series of FPGAs, are widely used for their flexibility and ability to be programmed for specific applications, allowing engineers to implement custom hardware designs efficiently. The XC4VSX35-10FF668I is part of the Virtex-4 series, which is designed for high-performance applications requiring advanced processing capabilities.
In 2020, Xilinx was acquired by AMD (Advanced Micro Devices), further expanding its influence in the semiconductor market. The acquisition has allowed both companies to enhance their product offerings and strengthen their position in high-performance computing and AI-driven applications.
Application
1. Telecommunications: For baseband processing and protocol handling.
2. Aerospace and Defense: In radar, signal processing, and avionics systems.
3. Industrial Automation: For control systems and robotics.
4. Medical Imaging: In ultrasound and MRI systems for real-time processing.
5. Video and Image Processing: For high-definition video encoding/decoding and real-time analysis.
Its versatility and high-speed capabilities make it suitable for complex digital signal processing tasks across these domains.