A54SX16A-TQG100 Overview
There is a 100-LQFP package that includes this component. 81 I/Os are available for transferring data more efficiently. Logic elements/cells form the fundamental building block of a computer. The Surface Mount-slot on the development board allows you to attach the FPGA module. Powered by a 2.25V~5.25V supply voltage, fpga chips is able to operate at high speeds. The SX-A series FPGA is a type of FPGA that belongs to the SX-A family of FPGAs. Fpga chips is important to maintain the operating temperature wFpga chipshin the range of 0°C~70°C TA when operating the machine. In order to save space, this FPGA model has been contained in Tray. If you are looking for related parts, you can use the base part number A54SX16A as a starting point. In order to make it work, 100 pins have been designed. This FPGA is built as an array of 1452 LABs/CLBs. I think, as long as this FPGA is mounted in Surface Mount, it could perform excellently according to its specifications as long as you mount it in Surface Mount. Design engineers can fully take advantage of its flexibility when operating at 2.5V supply voltage. During its maximal operating temperature, this module reaches 70°C. Over 0°C, the operating temperature should be higher. Among its basic building blocks, there are 24000 gates that are included in it. The basic building block of the system is composed of 1452 logic blocks (LABs). In order to store and transfer data, a total of 990 registers are used. A frequency of 227MHz provides high efficiency. Fpga semiconductor can accept a maximum voltage of 2.75V volts as a supply voltage. A minimal supply voltage of 2.25V is required for it to operate. There is a possibility that this FPGA will be able to reach a speed of 227MHz. This device package is supplied by 100-TQFP (14x14).
A54SX16A-TQG100 Features
81 I/Os
100 LABs/CLBs
70°C gates
1452 logic blocks (LABs)
990 registers
Operating from a frequency of 227MHz
A54SX16A-TQG100 Applications
There are a lot of Microsemi Corporation A54SX16A-TQG100 FPGAs applications.
- Defense Applications
- ADAS
- Radar and Sensors
- Cryptography
- Medical Electronics
- Automotive Applications
- Integrating multiple SPLDs
- Bioinformatics
- Automotive advanced driver assistance systems (ADAS)
- Digital signal processing