A3P1000-2FG484M Allicdata Electronics
Allicdata Part #:

A3P1000-2FG484M-ND

Manufacturer Part#:

A3P1000-2FG484M

Price: $ 167.45
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microsemi Corporation
Short Description: IC FPGA 300 I/O 484FBGA
More Detail: N/A
DataSheet: A3P1000-2FG484M datasheetA3P1000-2FG484M Datasheet/PDF
Quantity: 1000
60 +: $ 152.23000
Stock 1000Can Ship Immediately
$ 167.45
Specifications
Series: ProASIC3
Part Status: Active
Total RAM Bits: 147456
Number of I/O: 300
Number of Gates: 1000000
Voltage - Supply: 1.14 V ~ 1.575 V
Mounting Type: Surface Mount
Operating Temperature: -55°C ~ 125°C (TJ)
Package / Case: 484-BGA
Supplier Device Package: 484-FPBGA (23x23)
Description

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Embedded FPGAs (Field Programmable Gate Array) are devices that allow engineers to reprogram and configure processor-based system components on the fly in order to optimize performance or introduce new features into their system. The A3P1000-2FG484M is a powerful, integrated FPGA that can be utilized to rapidly implement, test and deploy a variety of application solutions. This article will explore the application field and working principle of the A3P1000-2FG484M in greater detail.

The A3P1000-2FG484M is an advanced embedded FPGA designed for applications requiring high level of integration, performance and flexibility. It is a powerful, multi-function FPGA with 16K logic cells, which can be used for various applications including real-time control, data acquisition and signal processing, image and video processing, bitstream control, and embedded computing.

The A3P1000-2FG484M integrates many of the common functions used in embedded system designs, including 48 gigahertz wideband analog-to-digital converters (ADC), digital-to-analog converters (DAC), dual-core 32-bit CPU, over 500 I/O pins, management cores to handle packetization and communication, re-configurable basic blocks and leading-edge programmable logic. This high-performance FPGA is capable of operating at up to 122 MHz and is optimized for applications such as audio coding and decoding, image and video coding, special effects and content filtering, digital signal processing and automotive. It also supports a wide range of peripherals, such as SCSI, USB, Ethernet and can be used for a variety of applications in automotive, industrial, medical, military, aerospace and communications.

An embedded FPGA can provide tremendous benefits to embedded system designers. FPGAs are re-programmable and can be updated easily to implement new features or enhance existing ones. This makes them ideal for application areas where changes in performance or new features must be introduced quickly. FPGAs are also highly resistant to corrosion, shock and vibration and are immune to ESD damage. This makes them ideal for use in systems operating in harsh environments, such as those found in aerospace, automotive and industrial applications.

The working principle of the A3P1000-2FG484M is based on a hardware description language (HDL), which is used to define the hardware of the FPGA. HDL is a text-based language which is used to describe the behaviour of the FPGA, its inputs and outputs, internal communication, and other features. The HDL code is then compiled using a synthesis tool and the gates of the FPGA are programmed according to the HDL code.

The A3P1000-2FG484M is also capable of storing and executing a variety of instructions, making it suitable for applications such as video and image processing, digital signal processing and complex control systems. The FPGA can be re-programmed on the fly in order to store and execute instructions, which offer the designer great flexibility in configuring the system. An application such as video and image processing can be written in HDL, compiled and deployed on the FPGA quickly and easily.

In summary, the A3P1000-2FG484M is a powerful and versatile embedded FPGA suitable for a wide range of applications. Its highly integrated, re-programmable features enable designers to rapidly implement and deploy custom solutions for a variety of applications. Its HDL-based architecture makes it easy to program the desired functions and the real-time capabilities of the FPGA enable it to execute a variety of instructions quickly and efficiently.

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

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