APA300-FG144M Allicdata Electronics
Allicdata Part #:

APA300-FG144M-ND

Manufacturer Part#:

APA300-FG144M

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microsemi Corporation
Short Description: IC FPGA 100 I/O 144FBGA
More Detail: N/A
DataSheet: APA300-FG144M datasheetAPA300-FG144M Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: ProASICPLUS
Part Status: Active
Total RAM Bits: 73728
Number of I/O: 100
Number of Gates: 300000
Voltage - Supply: 2.3 V ~ 2.7 V
Mounting Type: Surface Mount
Operating Temperature: -55°C ~ 125°C (TC)
Package / Case: 144-LBGA
Supplier Device Package: 144-FPBGA (13x13)
Base Part Number: APA300
Description

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FPGAs (field-programmable gate arrays) are capable of performing many digital computing tasks by electrically reconfiguring themselves. They provide a powerful solution for many embedded computing applications and often offer advantages over traditional processors in terms of flexibility, speed, power consumption, and cost. The APA300-FG144M is an FPGA from Actel Corporation, and this paper will discuss its application field and working principle.

FPGAs are ideal for applications that require a high degree of flexibility. They operate by being configured with a custom set of logic functions, which allows them to be used for tasks that would be difficult or impossible to perform with traditional processors. The APA300-FG144M is designed for use in low-power embedded applications. Its low power consumption makes it ideal for use in applications that require long battery life, such as portable medical devices and consumer electronics. In addition, the FPGA offers the ability to reconfigure itself quickly, allowing the user to implement changes quickly and efficiently.

The APA300-FG144M is a 28 nm CMOS FPGA that offers a combination of low power consumption and high performance. Its low-power architecture allows it to consume as little as 65 mW of power in active mode and 0.2 mW in standby mode. It also provides significant logic cell density, with over 30 million 4-input lookup tables for implementing combinatorial functions. The FPGA also features a wide range of configurable I/Os, such as SPI, UART, I2C, USB, and LVDS, making it suitable for a variety of embedded applications.

The APA300-FG144M is based on Actel’s FPGA family, which provides support for several significant features: a high-performance internal fabric, on-chip memory, power-down logic, dynamic reconfiguration capability, and advanced integration options. The internal fabric allows the FPGA to route signals quickly and accurately, while the on-chip memory allows it to store data and instructions. In addition, the power down logic provides support for dynamic power management, and the advanced integration options allow the FPGA to be used with external processors and other peripherals.

The APA300-FG144M also offers support for several key design and verification tools, such as Actel’s Libero Integrated Design Environment (IDE) and Quartus II software, helping to streamline the design process. Libero IDE provides the user with an easy-to-use design environment for creating and validating designs for the FPGA, while Quartus II provides the user with an integrated suite of synthesis, analysis, place, and route tools that can be used to generate optimized designs for the FPGA.

The workings of the FPGA can be broken down into four main stages: logic synthesis, logic mapping, place and route, and configuration. Logic synthesis is the process of transforming a user’s design into an internal representation that can be used for the FPGA. Logic mapping is the process of mapping the internal representation to the actual FPGA resources. Place and route is the process of assigning physical locations in the FPGA to the user’s logic functions. Finally, the configuration process is the process of downloading the generated configuration data to the FPGA, allowing it to operate according to the user’s design.

In conclusion, the APA300-FG144M is an FPGA from Actel Corporation that is designed for use in low-power embedded applications. Its low power consumption and wide range of configurable I/Os make it suitable for use in a variety of applications. In addition, its support for several key design and verification tools makes it easy to work with. Finally, its ability to be configured with a custom set of logic functions allows it to be used for tasks that would be difficult or impossible to perform with traditional processors.

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

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