A54SX72A-FGG256I Overview
There are two packages that contain fpga chips: 256-LBGA package and X package. There are 203 I/Os for better data transfer. A fundamental building block contains 6036 logic elements or cells. With a Surface Mount connector, this FPGA module can be attached to the development board. In order to operate it, it requires a voltage supply of 2.25V~5.25V . The FPGA belongs to the SX-A series of FPGAs, and it is one type of FPGA. Fpga chips is recommended that the operating temperature be kept wFpga chipshin the range -40°C~85°C TA while the machine is operating. This FPGA model is contained in Tray for space saving. Related parts can be found by using its base part number A54SX72A. In this case, 256 pins are used in the design. The FPGA is built as an array of 6036 latches or CLBs. Fpga electronics is possible for this FPGA to perform as per fpga electronics s specifications as long as fpga electronics is mounted in Surface Mount direction. In the case of 2.5V supply voltage, designers can take full advantage of its flexibility. As far as the maximum operating temperature of this module is concerned, it reaches 85°C. The operating temperature should be higher than -40°C. There are 108000 gates in its basic building block. In its basic building block, it is composed of 6036 logic blocks (LABs), which are called building blocks. The structure of the registers used to store and transfer data consists of 4024 registers. Fpga semiconductor operates at a frequency of 217MHz to deliver high efficiency. A maximum supply voltage of 2.75V can be applied to this product. Using 2.25V as the minimum supply voltage, fpga semiconductor can operate. This FPGA can get as fast as 217MHz. 256-FPBGA (17x17) stands for its supplier device package.
A54SX72A-FGG256I Features
203 I/Os
256 LABs/CLBs
85°C gates
6036 logic blocks (LABs)
4024 registers
Operating from a frequency of 217MHz
A54SX72A-FGG256I Applications
There are a lot of Microsemi Corporation A54SX72A-FGG256I FPGAs applications.
- Computer hardware emulation
- Broadcast
- Radar and Sensors
- Telecommunication
- High Performance Computing
- Enterprise networking
- Image processing
- Electronic Warfare
- Industrial IoT
- Distributed Monetary Systems