XA6SLX25T-2FGG484Q Allicdata Electronics
Allicdata Part #:

XA6SLX25T-2FGG484Q-ND

Manufacturer Part#:

XA6SLX25T-2FGG484Q

Price: $ 52.88
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC FPGA 250 I/O 484FGGBGA
More Detail: N/A
DataSheet: XA6SLX25T-2FGG484Q datasheetXA6SLX25T-2FGG484Q Datasheet/PDF
Quantity: 1000
60 +: $ 48.06900
Stock 1000Can Ship Immediately
$ 52.88
Specifications
Series: Automotive, AEC-Q100, Spartan®-6 LXT XA
Part Status: Active
Number of LABs/CLBs: 1879
Number of Logic Elements/Cells: 24051
Total RAM Bits: 958464
Number of I/O: 250
Voltage - Supply: 1.14 V ~ 1.26 V
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C (TJ)
Package / Case: 484-BBGA
Supplier Device Package: 484-FBGA (23x23)
Base Part Number: XA6SLX25
Description

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Embedded - FPGAs (Field Programmable Gate Array)

The XA6SLX25T-2FGG48CQ family of embedded FPGAs is part of a low cost, high performance family of FPGAs for data-intensive applications in space-constrained and demanding applications. The XA6SLX25T-2FGG48CQ family of FPGAs provides a range of design, development, and deployment options. Featuring high-performance, low-power operation, and low-cost XILINX Virtex-6 FPGA architecture, the family of XA6SLX25T-2FGG48CQ FPGAs delivers an ideal solution for embedded applications.

The XA6SLX25T-2FGG48CQ family of FPGAs is especially suited for system-level design and prototyping, smart power management, communication infrastructure and building blocks for industrial, automotive, and communications applications. Equipped with low-cost, yet high-function FPGA technology, the XA6SLX25T-2FGG48CQ family enables designers to develop integrated power-efficient applications while reducing design risk, development time and ultimately system cost.

Application Fields

The XA6SLX25T-2FGG48CQ family of FPGAs are well suited towards board or system-level design and prototyping as well as commercial and industrial applications. The FPGA\'s low power and ease of use, combined with high speed and programmability, make it suitable for a range of tasks from communications infrastructure, to building block for automotive, industrial and commercial applications.

The XA6SLX25T-2FGG48CQ family of FPGAs are also well suited to applications that need to be integrated into power-efficient products, such as Smart Power Management. Smart power management is a technique used to optimize power and thermal performance for data-intensive applications such as 3-D graphics, digital signal processing and control systems.

Finally, the XA6SLX25T-2FGG48CQ family of FPGAs is ideally suited to embedded applications, with its low power and high performance capabilities in low cost and low volume applications. The FPGA\'s configurable architecture, combined with its dense logic capabilities, makes it suitable for embedded processor designs and low-power or low-profile design applications.

Working Principle

The XA6SLX25T-2FGG48CQ family of FPGAs is a family of low-cost, low-voltage, high-performance programmable logic devices. FPGA architectures have wide variety of features and function, depending on family and model. The XA6SLX25T-2FGG48CQ family includes both non-volatile and volatile FPGAs, with multiple levels of hierarchy.

The XA6SLX25T-2FGG48CQ family of FPGAs allows users to easily configure the FPGA via a configuration bitstream. This bitstream defines the desired layout and connections of the FPGA. This process is known as synthesis, which is the process of transforming high-level description of the desired circuit into a representation understandable by the FPGA.

Synthesis is then followed by the mapping or placement of the design elements on the FPGA. This process involves mapping each entity of the design to the FPGA\'s logic block, routing fabric, and memory resources. This process is the most critical step in the FPGA design process as this maps the design elements onto the FPGA\'s physical infrastructure.

Once the FPGA is mapped and placed, the actual configuration of the FPGA is performed. This involves downloading the bitstream on to the FPGA and configuring it with the design elements that have been mapped and placed.

Once configured, the FPGA is now ready to process data. The FPGA can be configured for a wide range of applications, from implementing complex combinational and sequential logic to implementing embedded processors and memory interfaces.

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

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