XC5VLX50-1FFG1153C Allicdata Electronics
Allicdata Part #:

122-1561-ND

Manufacturer Part#:

XC5VLX50-1FFG1153C

Price: $ 425.88
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC FPGA 560 I/O 1153FCBGA
More Detail: N/A
DataSheet: XC5VLX50-1FFG1153C datasheetXC5VLX50-1FFG1153C Datasheet/PDF
Quantity: 1000
1 +: $ 425.88000
10 +: $ 422.88000
100 +: $ 417.77000
1000 +: $ 410.66000
10000 +: $ 399.55000
Stock 1000Can Ship Immediately
$ 425.88
Specifications
Series: Virtex®-5 LX
Part Status: Active
Number of LABs/CLBs: 3600
Number of Logic Elements/Cells: 46080
Total RAM Bits: 1769472
Number of I/O: 560
Voltage - Supply: 0.95 V ~ 1.05 V
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 85°C (TJ)
Package / Case: 1153-BBGA, FCBGA
Supplier Device Package: 1153-FCBGA (35x35)
Base Part Number: XC5VLX50
Description

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FPGAs (Field Programmable Gate Array) are integrated circuit devices which are highly flexible, programmable and can often be integrated for use in a wide range of applications. The Xilinx XC5VLX50-1FFG1153C is a mid-range FPGA that is especially suited for high-performance and low power applications. This article will discuss its application field and working principle.

The Xilinx XC5VLX50-1FFG1153C is an advanced, complex programmable logic device (CPLD) that is suitable for high-speed, low-power applications. This device is capable of performing a wide range of functions including digital signal processing, image processing, encryption, and data communication. Its power efficiency is among the best in the industry, making it an ideal choice for battery powered applications. Additionally, the Xilinx XC5VLX50-1FFG1153C offers the highest level of programmability and flexibility, making it a versatile device for a wide range of applications.

The Xilinx XC5VLX50-1FFG1153C is a 45nm 1 million cell low power/high density FPGA with an ARM Cortex-M4 processor, 512KB of embedded SRAM, and a 64-bit FPU. This device utilizes a patented adaptive logic technology (ALT) to enable radiation sensitive designs. ALT\'s patented technology allows for data rates to exceed 1Gbps and enables designers to create power-efficient designs with a lower risk of radiation damage. The Xilinx XC5VLX50-1FFG1153C also utilizes adaptive body biasing, allowing for switching-heavy designs to operate at lower voltages and lower power.

The Xilinx XC5VLX50-1FFG1153C can be used in a variety of application fields, from communication and wireless networks, to industrial automation and factory automation. For example, it can be used to create high-speed routers, wireless access points, or communications controllers for a wide range of communication protocols. It can also be used for medical imaging, automotive safety systems, and factory automation systems. The Xilinx XC5VLX50-1FFG1153C is also useful for high-threaded video processing applications, as it can support up to 64 simultaneous video streams.

The Xilinx XC5VLX50-1FFG1153C’s working principle is based on programmability. Its vast array of features and functions are made possible through its two primary components: configurable logic blocks (CLBs) and input-output blocks (IOBs). CLBs are responsible for handling the core logic and mathematical calculations, while IOBs provide physical connections to external devices or components. When a design for an FPGA is loaded onto the device, the configuration memory cells are configured according to the program, causing the individual logic elements in the CLBs to be interconnected in the desired way. The result is a fully-functional circuit which can be used for a variety of applications.

In conclusion, the Xilinx XC5VLX50-1FFG1153C is a mid-range FPGA that is especially suited for high-performance and low-power applications. It offers a high level of flexibility, making it suitable for a wide range of applications. Its power efficiency is among the best in the industry, making it an ideal choice for battery powered applications. The device utilizes adaptive logic technology to enable radiation-sensitive designs, and adaptive body biasing technology to enable power-efficient designs. Its working principle is based on programmability, allowing for a highly flexible design.

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