XC7VX485T-1FFG1927I
Manufacturer: XILINX
Part Number: XC7VX485T-1FFG1927I
| Attribute | Value |
| cate_name | Field Programmable Gate Arrays (FPGA) |
| Datasheet | XC7VX485T-1FFG1927I XILINX |
| rohs | Compliance |
| reference_package | BGA |
| mounting | SMD mount |
| application_level | Industrial |
| lifecycle | On sale |
| spm | tray |
| min_operating_temperature | -40℃(TJ) |
| max_operating_temperature | 100℃(TJ) |
| length_width_height | 45mm*45mm*3.65mm |
| max_operating_supply_voltage | 1.03V |
| min_operating_supply_voltage | 970mV |
| number_of_labclb | 37950 |
| number_of_logic_blocks | 485760 |
| total_ram_bits | 4.526367MB |
The Xilinx XC7VX485T-1FFG1927I is a high-performance Field Programmable Gate Array (FPGA) belonging to the Virtex-7 series. This device is designed to meet the demands of complex applications that require high-speed processing, low power consumption, and high integration.
Features:
1. High I/O count: With 1927 I/Os, the XC7VX485T-1FFG1927I can interface with a wide range of peripherals and external components.
2. Large programmable logic resources: The device offers a substantial amount of programmable logic resources, including Look-Up Tables (LUTs), flip-flops, and digital signal processing (DSP) slices.
3. High-speed transceivers: The FPGA features 8 high-speed transceivers, supporting data rates up to 12.5 Gbps, making it suitable for high-speed communication applications.
4. Integrated Block RAM: The device includes 2.5 Mbit of Block RAM, providing ample memory resources for data storage and processing.
5. Advanced power management: The XC7VX485T-1FFG1927I incorporates advanced power management features, allowing for efficient power consumption in various operating conditions.
Development Support:
Xilinx provides a comprehensive development environment, including the Vivado Design Suite, which offers a range of tools for designing, simulating, and implementing FPGA projects. Additionally, Xilinx offers IP cores, reference designs, and technical support to assist developers in their projects.
Application Areas:
The XC7VX485T-1FFG1927I is suitable for a wide range of applications, including:
1. High-speed communication systems
2. Video processing and image recognition
3. Data acquisition and signal processing
4. Embedded systems and control applications
5. Artificial intelligence and machine learning
Parameters:
- Family: Virtex-7
- Package: FineLine FCBGA
- Speed grade: -1
- I/O count: 1927
- Power dissipation (Tj max): 33°C
- Operating temperature range: -40°C to 100°C
FAQs:
Q1: What is the main advantage of using an FPGA over an ASIC?
A1: FPGAs offer flexibility, allowing for easy reprogramming and updates, while ASICs are fixed and require a new chip for any changes.
Q2: Can the XC7VX485T-1FFG1927I be used in applications?
A2: Yes, the device's high reliability and performance make it suitable for applications, provided it meets the specific requirements of the project.
Q3: How can I get started with the XC7VX485T-1FFG1927I?
A3: Start by downloading the Vivado Design Suite and exploring the documentation and tutorials provided by Xilinx. You can also reach out to Xilinx support for further assistance.
Q4: Is there a smaller package option available for the XC7VX485T-1FFG1927I?
A4: Yes, Xilinx offers various package options for the Virtex-7 series, including smaller packages with fewer I/Os and lower power dissipation.
Q5: Can the XC7VX485T-1FFG1927I be used in high-temperature environments?
A5: The device's operating temperature range is -40°C to 100°C, making it suitable for high-temperature environments within this range. However, it is essential to consider the specific thermal management requirements of your application.
Please refer to the product rule book for details.
Xilinx has consistently been at the forefront of technology, developing products that enhance the performance and flexibility of a myriad of electronic systems. The company's product line includes FPGAs, complex programmable logic devices (CPLDs), and system on chip (SoC) solutions, along with a robust suite of software tools for design and analysis. These products are fundamental in the creation of digital circuits that can be programmed and reprogrammed to perform specific functions and adapt to new requirements without the need to redesign the hardware.
One of Xilinx's key innovations is the Adaptive Compute Acceleration Platform (ACAP), a highly integrated multi-core heterogeneous compute platform that goes beyond traditional FPGA technology. ACAPs are designed to provide significant performance acceleration for a variety of applications, including machine learning, video processing, and data analytics. This technology exemplifies Xilinx's commitment to pushing the boundaries of what can be achieved with programmable logic technologies.
Xilinx's technology is crucial in numerous industries, including data centers, wireless communications, industrial, medical, , and defense sectors. In data centers, Xilinx's solutions help in accelerating workloads such as artificial intelligence and database management, thereby enhancing efficiency and reducing operational costs. In the wireless sector, the company's technology facilitates the deployment of next-generation networks, including 5G, by offering flexible and scalable solutions.
The company's approach to market-driven innovation has also led to the development of the Vivado Design Suite, an advanced and highly integrated design environment that provides system-to-IC level tools designed to increase productivity and accelerate time-to-market. Vivado uses a shared scalable data model and a common debug environment, which supports the company's devices from low-end to ultra-high-end families.
Xilinx also places a strong emphasis on sustainability and corporate responsibility. The company's initiatives focus on reducing environmental impact through energy-efficient products and solutions that contribute to the creation of sustainable technology ecosystems. Xilinx's global presence includes not only its headquarters in San Jose but also numerous offices worldwide, with a significant focus on research and development to maintain its competitive edge in the semiconductor industry.
As part of AMD, Xilinx continues to leverage its expertise in adaptive computing, contributing to AMD's broader strategy of high-performance and adaptive computing solutions. This synergy enhances the combined company's ability to drive innovation in the computing and graphics markets, furthering advancements in areas such as high-performance computing, edge computing, and more.
In conclusion, Xilinx's legacy and ongoing contributions to the semiconductor industry underline its status as a leader in adaptive and programmable computing solutions. With a history marked by innovation and a future aimed at driving technological advancements, Xilinx remains a key player in shaping the digital future.
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