M7A3P1000-2FGG144 Allicdata Electronics
Allicdata Part #:

M7A3P1000-2FGG144-ND

Manufacturer Part#:

M7A3P1000-2FGG144

Price: $ 70.33
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microsemi Corporation
Short Description: IC FPGA 97 I/O 144FBGA
More Detail: N/A
DataSheet: M7A3P1000-2FGG144 datasheetM7A3P1000-2FGG144 Datasheet/PDF
Quantity: 1000
160 +: $ 63.93180
Stock 1000Can Ship Immediately
$ 70.33
Specifications
Series: ProASIC3
Part Status: Not For New Designs
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: 0°C ~ 85°C (TJ)
Package / Case: 144-LBGA
Supplier Device Package: 144-FPBGA (13x13)
Base Part Number: M7A3P1000
Description

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The M7A3P1000-2FGG144 is a Field Programmable Gate Array (FPGA) device designed for application in embedded systems. This particular device is designed to provide a highly efficient environment for the development and deployment of embedded system applications—a customized hardware platform used to program and run a variety of embedded system applications.

The M7A3P1000-2FGG144 was specifically designed by a major FPGA manufacturer to support the highest possible performance in a wide range of embedded systems applications. The device incorporates thousands of input/output pins or ports, numerous logic cells and memory blocks, and different types of programmable blocks and features. These features combine to enable companies to easily customize the hardware of their device in order to efficiently meet their particular application needs.

Application Field

The M7A3P1000-2FGG144 device was developed with numerous features making it a suitable choice for embedded applications with a wide range of requirements. The low power consumption capabilities, the high speed operation, and large amounts of integration make this device suitable for industrial, medical, and telecommunications applications—uusally found in high-end embedded systems.

In industrial applications, the device can be used to drive and control different kinds of motors and machines, display systems, and customised logic systems. The low power consumption, the excellent support for external memory, and the flexible logic architecture of the device make this chip suitable for these kinds of applications.

In medical fields, the device is ideal for medical imaging systems, patient monitoring systems, and general medical diagnostics. It can also be used in areas like healthcare automations, drug delivery systems, and biometric authentication, where accuracy, speed and reliability are all extremely important.

The device is also suitable for use in telecomunication applications, such as in various types of communication and network systems. Its flexible programmable logic capabilities, high bandwidth and IO/pers, and low power consumption make it an excellent choice fortelecommunications networks and applications.

Working Principle

The M7A3P1000-2FGG144 device is designed to meet the requirements of high-end embedded systems and the needs of various application fields. The device utilizes a programmable logic core that enables developers to fabricate custom hardware with specific features, providing the necessary customizations for any of the aforementioned, demanding application types.

The increasing demand for high-performance, constantly expanding embedded systems means that today’s FPGA devices must be capable of fulfilling multiple tasks and supporting complex applications. The M7A3P1000-2FGG144 device was designed to provide exactly that—efficient support for modern, versatile and highly demanding applications.

The device is built up of several components, each providing the necessary hardware and performance. The core elements of the device include the following:

  • Programmable logic core
  • Memory blocks
  • High-speed Clock Generation Units
  • Input/output ports and pins
  • Input/output multiplexers
  • High-speed digital signal ports

The main benefit of the FPGA approach is its flexibility—it allows for custom hardware to be configured using specific components for different purposes. Combining this with the device’s high-performance capabilities, developers from different fields can create highly efficient and powerful embedded systems that use the M7A3P1000-2FGG144 FPGA as their off-the she-shelf hardware core.

In order to benefit from the FPGA’s features and capabilities, developers need to create code written specifically for the M7A3P1000-2FGG144 device. Such code is called a “configuration” and is written in either a hardware description language (HDL) or a graphical development language (GDL).

Developers use the configuration code to influence the configuration of the device’s logic cells and memory blocks, allowing them to customize the device’s hardware in order to meet the requirements of their embedded systems application. With the help of the graphical development language, developers can also create custom firmware, allowing them to increase the performance of their application and even allow for real-time interaction between their hardware and software.

By combining these different configurations and software programs, developers can create powerful and efficient embedded systems using the M7A3P1000-2FGG144 FPGA. From controlling motors in industrial applications to powering telecommunication systems, the FPGA is a versatile and powerful platform for meeting the most demanding embedded system application requirements.

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

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