APA600-FG256 Overview
In the 256-LBGA package, you will find fpga chips. There are FIELD PROGRAMMABLE GATE ARRAY transistors in this type of FPGA. A total of 186 I/Os allow data to be transferred in a more coherent manner. 2.5V volts power it. In this case, the FPGA part belongs to the Field Programmable Gate Arrays family. With a Surface Mount connector, this FPGA module can be attached to the development board. A supply voltage of 2.3V~2.7V is needed in order for fpga chips to operate. It is a type of FPGA belonging to the ProASICPLUS seies. When operating the machine, it is important to keep the temperature within 0°C~70°C TA range. In order to make this device as versatile as possible, there are 186 different outputs included. This FPGA model is contained in Tray for space saving. In total, the terminations of this piece are 256. Fpga electronics is worth mentioning that this device provides 129024 bfpga electronics s of RAM. If you are looking for related parts, you can use the base part number APA600 as a starting point. The RAM si15.8kBe of this FPGA module reaches 15.8kB to ensure normal operation of the program. In this case, there are 256 pins on the board. 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. With a 2.5V supply voltage, designers can fully utilize the flexibility of the device. It is powered by a 2.52.5/3.3V battery, which can be purchased separately. The basic building block of this system consists of 600000 gates. Fpga semiconductor is important to note that the data is stored and transferred in 21504 different registers. To achieve high efficiency, it runs at a frequency of 180MHz.
APA600-FG256 Features
186 I/Os
Up to 129024 RAM bits
256 LABs/CLBs
21504 registers
Operating from a frequency of 180MHz
APA600-FG256 Applications
There are a lot of Microsemi Corporation APA600-FG256 FPGAs applications.
- Device controllers
- Military Temperature
- Industrial IoT
- Camera time adjustments
- Data center hardware accelerators
- Medical imaging
- Consumer Electronics
- Integrating multiple SPLDs
- Computer hardware emulation
- Software-defined radio