A3P1000-1FGG144M Allicdata Electronics
Allicdata Part #:

A3P1000-1FGG144M-ND

Manufacturer Part#:

A3P1000-1FGG144M

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microsemi Corporation
Short Description: IC FPGA 97 I/O 144FBGA
More Detail: N/A
DataSheet: A3P1000-1FGG144M datasheetA3P1000-1FGG144M Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: ProASIC3
Part Status: Active
Total RAM Bits: 147456
Number of I/O: 97
Number of Gates: 1000000
Voltage - Supply: 1.425 V ~ 1.575 V
Mounting Type: Surface Mount
Operating Temperature: -55°C ~ 125°C (TJ)
Package / Case: 144-LBGA
Supplier Device Package: 144-FPBGA (13x13)
Base Part Number: A3P1000
Description

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Embedded Field Programmable Gate Arrays (FPGAs) have evolved to become more than just systems for digital logic control, offering a wide range of embedded applications that are able to offer the user greater flexibility and performance. The A3P1000-1FGG144M is a type of embedded FPGA that has proven to be popular for many applications, with its unique design providing more efficient design capabilities and system performance. In this article, we will take a look at the application field, and the working principles of the A3P1000-1FGG144M.

Applications of the A3P1000-1FGG144M

The A3P1000 1FGG144M is commonly used in a variety of applications, such as: audio and video processing, embedded system control, automotive systems, network data storage, industrial automation, medical and aerospace products, electronic gaming consoles, smart homes and energy conservation, among others. Furthermore, the FPGA provides ideal solutions for applications that need to meet high-speed performance requirements, environment tolerant operation and high-density logic, such as communications and image processing.

The A3P1000-1FGG144M is also capable of handling a wide variety of programming languages, including Verilog, VHDL, Java, C++ and more. This wide compatibility enhances its application range, since users have the freedom to use their preferred system design architecture, while still taking advantage of the FPGA’s flexibility. On top of this, the A3P1000-1FGG144M is compatible with the various development tools, accelerators and IP cores available, allowing users to achieve their desired performance and diverse system design.

Working Principles of the A3P1000-1FGG144M

The A3P1000-1FGG144M is based on Field Programmable Gate Array (FPGA) technology. This technology utilizes an array of reconfigurable logic circuits, known as Logic Cells, which contain multiple transistors and programmable interconnects between them.

The system design is stored in the FPGA in the form of a bitstream, which consists of configuration data for the logic cells and interconnects. The system design is then written to the FPGA as a set of instructions and configuration information. The result is a device whose logic can be reprogrammed in minutes or hours as opposed to the weeks or months required to re-design a system using traditional methods.

The A3P1000-1FGG144M is designed with advanced low-power features, meaning it has a low power consumption. Additionally, it is designed with an advanced pin-locking feature, allowing users to configure the device with a reduced risk of accidental changes. The device also comes with on-board Serial Peripheral Interfaces (SPI) and JTAG Interfaces, allowing for easy system connection.

Benefits of Using the A3P1000-1FGG144M

The A3P1000-1FGG144M offers many advantages for embedded applications, including high performance, flexibility and scalability. The device’s low-power consumption and pin-locking feature further ensure that system performance is maximized with low power consumption. Additionally, its on-board SPI and JTAG interfaces make it easy to connect to other systems. Furthermore, its wide programming language compatibility allows users to choose their preferred programming language.

In conclusion, the A3P1000-1FGG144M is an ideal choice for a wide range of applications, providing users with flexibility, scalability, and reliable performance. With its advanced features, users can take advantage of its wide range of capabilities and enjoy a robust system design.

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

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