A3PE1500-FGG676I Allicdata Electronics
Allicdata Part #:

A3PE1500-FGG676I-ND

Manufacturer Part#:

A3PE1500-FGG676I

Price: $ 120.41
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microsemi Corporation
Short Description: IC FPGA 444 I/O 676FBGA
More Detail: N/A
DataSheet: A3PE1500-FGG676I datasheetA3PE1500-FGG676I Datasheet/PDF
Quantity: 1000
40 +: $ 109.46300
Stock 1000Can Ship Immediately
$ 120.41
Specifications
Series: ProASIC3E
Part Status: Active
Total RAM Bits: 276480
Number of I/O: 444
Number of Gates: 1500000
Voltage - Supply: 1.425 V ~ 1.575 V
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 100°C (TJ)
Package / Case: 676-BGA
Supplier Device Package: 676-FBGA (27x27)
Base Part Number: A3PE1500
Description

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Field programmable gate arrays (FPGAs) are becoming increasingly popular as they offer exciting possibilities for hardware design. The A3PE1500-FGG676I is a FPGA family of devices that is especially tailored to signal processing and embedded applications. The popularity of the A3PE1500-FGG676I is in part driven by its robust design, which enables it to withstand challenging environmental conditions. In addition, its cutting-edge technology enables faster and more energy-efficient data processing.

The A3PE1500-FGG676I application field spans a wide range of industries. From industrial automation and automotive to consumer electronics, the A3PE1500-FGG676I is suited for a variety of embedded applications due to its reliable performance and low power consumption. Furthermore, the device has been proven to deliver excellent signal integrity and noise immunity which makes it a great candidate for high-speed communications and exchange of data in industrial applications.

The A3PE1500-FGG676I is designed according to the field programmable gate array (FPGA) architecture which allows for the device to be reconfigured for different tasks quickly and easily. FPGAs are highly integrated devices, and the A3PE1500-FGG676I takes this concept one step further by integrating high-speed I/Os and memory blocks onto the device itself. This allows the A3PE1500-FGG676I to create custom data paths and complex integrated circuits which would otherwise require multiple components.

At a basic level, the working principle of an A3PE1500-FGG676I consists of a programmable logic array (PLA) which is embedded within the chip. This PLA is designed to work in conjunction with other components on the chip such as a bit-slice processor, input/output blocks, and memory blocks to form the device’s basic architecture. This architecture allows for each pin, or input/output channel to be programmed to receive a different signal, thus allowing for the device to have varied inputs and outputs. This feature gives FPGA’s an edge over traditional microcontrollers and ASICs, which had to be reprogrammed to fit the application’s requirements.

The A3PE1500-FGG676I also supports the register-transfer logic (RTL), a programming language which enables the netlist, which includes all of the data routing and logic, to be written quickly and efficiently. This RTL language gives FPGA designers the flexibility to quickly reconfigure the device’s functions, providing them with the ability to adapt quickly to changing customers’ needs. Through the integration of memory blocks and pre-configured RTL components, the A3PE1500-FGG676I is able to deliver efficient and reliable performance for even the most demanding applications. Additionally, due to its low power consumption and low heat generation, the A3PE1500-FGG676I is suitable for a variety of applications ranging from industrial settings to consumer electronics.

The A3PE1500-FGG676I family of FPGAs offers many attractive features and benefits, making it a top choice for embedded applications. With its robust design, excellent signal integrity and noise immunity, and its low power consumption, the A3PE1500-FGG676I is an ideal candidate for a wide range of embedded applications. Furthermore, its RTL programming language makes it easier to configure and adapt the device’s functions, giving designers the flexibility to meet the exact requirements of their application.

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

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