XCV3200E-6CG1156C Allicdata Electronics
Allicdata Part #:

XCV3200E-6CG1156C-ND

Manufacturer Part#:

XCV3200E-6CG1156C

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC FPGA 804 I/O 1156CBGA
More Detail: N/A
DataSheet: XCV3200E-6CG1156C datasheetXCV3200E-6CG1156C Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: Virtex®-E
Part Status: Obsolete
Number of LABs/CLBs: 16224
Number of Logic Elements/Cells: 73008
Total RAM Bits: 851968
Number of I/O: 804
Number of Gates: 4074387
Voltage - Supply: 1.71 V ~ 1.89 V
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 85°C (TJ)
Package / Case: 1156-BCBGA
Supplier Device Package: 1156-CBGA (35x35)
Base Part Number: XCV3200E
Description

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FPGA stands for Field Programmable Gate Array, and XCV3200E-6CG1156C is one of the popular FPGAs from Xilinx. It has a wide range of applications in various fields due to its highly integrated and configurable architecture. This article will elaborate on the usage and working principle of XCV3200E-6CG1156C in Embedded systems.

Application Field and Use Cases of XCV3200E-6CG1156C

XCV3200E-6CG1156C is a highly integrated and configurable FPGA which makes it an ideal choice for embedded applications. It is a versatile and flexible microcontroller with a wide range of applications in embedded systems. Some of the common applications include communication controllers, automotive control systems, video and image processing, motion control, machine vision, and industrial automation. It is also used in applications such as medical imaging, radar, industrial communication protocols (IPC) and aerospace applications.

The XCV3200E-6CG1156C is designed for flexibility, scalability, and performance. It has an integrated variable-time atom (VTA) which allows variable latency in processing. This allows it to perform complex logic operations with low power consumption. It also has a wide range of memory interfaces which allow for efficient data processing and transfers. In communication applications, it supports both 10/100 Ethernet for wired communication and Wi-Fi for wireless communication.

The XCV3200E-6CG1156C is a low power device with a power consumption of only 0.445 W. It has a maximum frequency of 400 MHz and supports industry-standard serial interfaces like RS232, USB and CAN. The XCV3200E-6CG1156C has a large capacity of 128 KB of memory and is also capable of running multiple applications simultaneously.

Working Principle of XCV3200E-6CG1156C

The XCV3200E-6CG1156C is an FPGA which is programmed to perform specific tasks. The XCV3200E-6CG1156C uses a hardware description language (HDL) like Verilog or VHDL to describe the functionality of the FPGA. Once the functionality is described, the HDL description is compiled and synthesized into a bitstream which is then downloaded to the FPGA. The XCV3200E-6CG1156C then automatically reconfigures itself to perform the desired tasks.

The XCV3200E-6CG1156C has a powerful embedded processor called MicroBlaze, which can execute instructions at speeds up to 150 MHz. The MicroBlaze processor connects to a variety of peripherals such as a UART, interrupt controller, and timer. The MicroBlaze processor can also be used to interface with external memories and peripherals.

The XCV3200E-6CG1156C also supports a variety of peripherals such as GPIOs, I2C, SPI, and JTAG. These peripherals can be used for various applications such as controlling motors, sensors, and solenoids. The XCV3200E-6CG1156C also supports Power-over-Ethernet (POE) for powering remote systems and wireless network ports.

In addition, the XCV3200E-6CG1156C has an on-chip system monitor which can monitor the system\'s performance in real time. The XCV3200E-6CG1156C also supports a variety of software development tools such as an Xilinx SDK, GNU compiler, and MicroBlaze debugger.

The XCV3200E-6CG1156C is a versatile and powerful FPGA which can be used in many applications in embedded systems. Its highly integrated and configurable architecture makes it an ideal choice for embedded applications. The wide range of resources and peripherals, as well as its low power consumption and scalability, makes it an ideal solution for a variety of applications in embedded systems.

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

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