XCVU125-H1FLVB1760E Allicdata Electronics
Allicdata Part #:

XCVU125-H1FLVB1760E-ND

Manufacturer Part#:

XCVU125-H1FLVB1760E

Price: $ 10.40
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC FPGA VIRTEX-U 1760FCBGA
More Detail: N/A
DataSheet: XCVU125-H1FLVB1760E datasheetXCVU125-H1FLVB1760E Datasheet/PDF
Quantity: 1000
1 +: $ 9.45000
Stock 1000Can Ship Immediately
$ 10.4
Specifications
Series: Virtex® UltraScale™
Part Status: Active
Number of LABs/CLBs: 89520
Number of Logic Elements/Cells: 1566600
Total RAM Bits: 90726400
Number of I/O: 702
Voltage - Supply: 0.922 V ~ 1.030 V
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 100°C (TJ)
Package / Case: 1760-BBGA, FCBGA
Supplier Device Package: 1760-FCBGA (42.5x42.5)
Description

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FPGA stands for Field Programmable Gate Array, and it is an integral component of embedded systems. XCVU125-H1FLVB1760E is a type of FPGA and it is commonly used in the design of embedded systems that require high speed, low power, and high reliability.

Application Field of XCVU125-H1FLVB1760E

XCVU125-H1FLVB1760E is typically used in military and aerospace applications, in edge computing devices and gateways, and in industrial and factory applications. Its main features ensure that it can be used to design systems that are low power, high speed, and reliable. Its features also make it suitable for applications that call for intense computational tasks in hostile environments.

In the field of medical engineering, the XCVU125-H1FLVB1760E is often used in medical devices such as endoscopes, laboratory robots, and automatic dispensers. It is also used in artificial intelligence (AI) systems and in automotive subsystems, such as in advanced driver-assistance systems (ADAS).

Working Principle of XCVU125-H1FLVB1760E

The XCVU125-H1FLVB1760E has a heterogeneous architecture, which enables it to be programmed for a variety of tasks. At the core of this architecture is its Non-Volatile SRAM (NVSRAM) cell array. This array comprises a predetermined set of logic blocks, which can be programmed to implement a variety of digital logic functions. This logic can be broken down into combinatorial logic, sequential logic, and memory blocks.

The XCVU125-H1FLVB1760E also has dedicated block RAM, which it uses to store data. This means that when a project requires the storage of static data, the XCVU125-H1FLVB1760E can be used to store it, which can greatly reduce the amount of time and resources spent managing data storage. This block RAM can also be used to create a memory hierarchy to support caching and virtual memory.

The XCVU125-H1FLVB1760E\'s logic blocks are interconnected on a 2-D grid. This grid is divided into vertical and horizontal channels. Within these channels, dedicated wires allow for low-latency, high-speed communication. This helps ensure that the XCVU125-H1FLVB1760E is able to communicate with other devices without any performance bottlenecks.

The XCVU125-H1FLVB1760E is also equipped with various interfaces for connecting to external devices. These include LVDS (Low Voltage Differential Signalling), Global Clock Networks, Multi-Gigabit Transceivers, and Analog to Digital Converters (ADC). These peripheral devices are connected to the FPGA via a Programmable Interconnect Fabric, which allows for data to be routed at high speeds between peripherals, logic blocks, and memories.

Lastly, the XCVU125-H1FLVB1760E offers comprehensive software development support. This includes a variety of tools and libraries that can be used to design, compile, and debug projects. These tools allow developers to create complicated programs quickly and easily. Furthermore, the XCVU125-H1FLVB1760E supports an array of languages, including Verilog, VHDL, and SystemVerilog.

Conclusion

As an integral component of embedded systems, the XCVU125-H1FLVB1760E FPGA is designed to offer high speed, low power, and high reliability. It is typically used in a wide variety of military, aerospace, medical, industrial, factory, and automotive applications. Furthermore, it utilizes a heterogeneous architecture, which comprises a Non-Volatile SRAM cell array, dedicated block RAM, and a 2-D grid of interconnected logic blocks. Lastly, it supports an array of external interfaces and offers an extensive software development environment.

The specific data is subject to PDF, and the above content is for reference

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