A54SX32A-FGG256A Allicdata Electronics
Allicdata Part #:

A54SX32A-FGG256A-ND

Manufacturer Part#:

A54SX32A-FGG256A

Price: $ 112.90
Product Category:

Integrated Circuits (ICs)

Manufacturer: Microsemi Corporation
Short Description: IC FPGA 203 I/O 256FBGA
More Detail: N/A
DataSheet: A54SX32A-FGG256A datasheetA54SX32A-FGG256A Datasheet/PDF
Quantity: 1000
10080 +: $ 102.64200
Stock 1000Can Ship Immediately
$ 112.9
Specifications
Series: SX-A
Part Status: Active
Number of LABs/CLBs: 2880
Number of I/O: 203
Number of Gates: 48000
Voltage - Supply: 2.25 V ~ 5.25 V
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 125°C (TA)
Package / Case: 256-LBGA
Supplier Device Package: 256-FPBGA (17x17)
Base Part Number: A54SX32A
Description

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A54SX32A-FGG256A application field and working principle

Embedded - FPGAs (Field Programmable Gate Arrays) are one of today’s most powerful programmable logic components. They offer programmability, performance, high-level integration and reliability as well as the flexibility to design applications faster and cost effectively. The A54SX32A-FGG256A is a low-cost, medium-performance FPGA which is specifically designed for designing large embedded systems. In this article, we discuss the application fields and working principles of the A54SX32A-FGG256A.

Application Fields

The A54SX32A-FGG256A is generally used in embedded systems which require large amounts of logic. It is a popular choice for applications like digital signal processing, control and monitoring, communication systems and powercontrols, which require high-speed performance, low power dissipation, small footprint, and the flexibility to reconfigure and customize the logic design to their specific requirements. In addition, the low cost of the A54SX32A-FGG256A makes it particularly attractive for cost-sensitive applications, such as consumer and industrial automation.

Working Principle

The A54SX32A-FGG256A utilizes a structured approach to design, which requires that the user define the desired function, the inputs and outputs needed to implement it, and then for the FPGA to map those signals to the internal networks of gates and busses. Using this approach, the user can design their logic, store the design and then update it whenever needed without the need for new hardware. The A54SX32A-FGG256A also supports a soft processor core, allowing the user to implement a processor-based solution into their design. In addition, it supports a range of I/O peripherals, making it ideal for connecting to other devices and systems.

The A54SX32A-FGG256A achieves its high performance and low power dissipation by using an array of different logic blocks connected via specialized interconnects. The specialized interconnects can be used to create custom logic paths with optimized levels of power and performance. Each logic block on the A54SX32A-FGG256A consists of a programmable logic array, an arithmetic unit, a register file and a set of RAMs. Together these components work together to process data in the form of logical gates, arithmetic, registers and memories.

In addition to its programmability, the A54SX32A-FGG256A also includes some specialized features which are specific to its application. One of these features is its powerful configurability which allows the user to program the FPGA at run-time. This allows the user to update their design quickly and easily as their application\'s requirements change. The A54SX32A-FGG256A also supports a range of I/O peripherals, which allow it to easily interface with other devices. For example, it can use a wide range of FPGA I/O devices to communicate with external devices, making it ideal for high-speed communication.

In conclusion, the A54SX32A-FGG256A is a powerful and cost-effective FPGA which is specifically designed for large embedded systems. Its programmable architecture and powerful I/O peripherals make it an ideal choice for applications where cost, size and performance are of primary concern. It is highly configurable, allowing the user to quickly and easily update their design as their application\'s requirements change. In addition, its low power dissipation and small footprint make it an attractive choice for cost-sensitive embedded applications.

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

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