A42MX36-1BG272 Allicdata Electronics
Allicdata Part #:

A42MX36-1BG272-ND

Manufacturer Part#:

A42MX36-1BG272

Price: $ 429.13
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microsemi Corporation
Short Description: IC FPGA 202 I/O 272BGA
More Detail: N/A
DataSheet: A42MX36-1BG272 datasheetA42MX36-1BG272 Datasheet/PDF
Quantity: 1000
40 +: $ 390.11200
Stock 1000Can Ship Immediately
$ 429.13
Specifications
Series: MX
Part Status: Active
Total RAM Bits: 2560
Number of I/O: 202
Number of Gates: 54000
Voltage - Supply: 3 V ~ 3.6 V, 4.75 V ~ 5.25 V
Mounting Type: Surface Mount
Operating Temperature: 0°C ~ 70°C (TA)
Package / Case: 272-BBGA
Supplier Device Package: 272-PBGA (27x27)
Base Part Number: A42MX36
Description

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Embedded - FPGAs are used in a variety of applications including automated control and monitoring systems, medical imaging, wireless communications, aerospace and military operations, automotive systems, consumer electronics, and scientific instrumentation. A key attribute of the FPGA is its reconfigurability. This allows it to be programmed for a specific application and to be modified for a different application in a short span of time.

A42MX36-1BG272 is one type of Field Programmable Gate Array, abbreviated as FPGA, which is an integrated circuit designed to be configured by a customer or a designer after manufacturing. It is like a blank check or a chip that you can program yourself with some specific instructions or configurations to meet a unique set of requirements. This makes FPGAs very popular in many high-tech applications, as they are great for developing digital logic and performing advanced processing tasks.

The A42MX36-1BG272 is a multi-standard embedded FPGA that is designed for automotive applications. It is designed with a low-power and low-cost 40nm FPGA fabric, while supporting a wide range of enhanced features and peripherals, such as DDR3, Ethernet, GPIO and a high-performance processing system. This makes it suitable for complex and highly-demanding automotive applications such as ADAS, vision processing, cluster control, advanced driver assistance systems (ADAS), infotainment, and data logging.

In addition to its automotive applications, A42MX36-1BG272 is also widely used in aerospace, medical, and industrial fields. It offers a wide range of capabilities, such as dynamic hardware reconfiguration, hardware acceleration for select operations, and embedded analytics that can result in superior performance and reduced power consumption.

The working principle of A42MX36-1BG272 is based on the reconfigurable structures typically used in designing embedded systems. It consists of a combination of Standard Cells and User-Defined Cells (UDCs) that are pre-programmed with register transfer language (RTL) and pre-defined functions. These cells are connected to the design by a network of interconnects, meaning that any combination of standard or custom cells can be used in the configuration. The Reconfiguration Unit (RU) is the main component responsible for loading the configuration data and controlling the FPGA fabric.

The Reconfiguration Unit reads the configuration data stored in the FPGA\'s non-volatile memory each time the system is powered-on or reset and loads it into the FPGA fabric. The configuration data is stored in the FPGA\'s non-volatile memory, allowing instant reconfiguration of standard or custom functions during runtime without having to reload the entire configuration or configuration data from the device\'s non-volatile memory each time it is needed.

A42MX36-1BG272 also supports an internal bus interface for external devices, including sensors and actuators. This allows the FPGA to be connected with the external system components by providing direct access to the device\'s registers and memory. Furthermore, all I/O is managed by a dedicated I/O block and contains a pre-programmed logic for implementing basic I/O functions.

To summarize, A42MX36-1BG272 is an embedded FPGA designed for automotive and other applications. It is programmed with a combination of Standard and User-Defined Cells that are connected to a network of interconnects. The Reconfiguration Unit is responsible for loading the configuration data, while providing access to external devices through the internal bus interface. This allows the FPGA to be configured and reconfigured as needed for specific applications, resulting in superior performance and reduced power consumption.

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

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