A42MX09-PQG100 Overview
The package that contains this software is called 100-BQFP. Having 83 I/Os makes data transfers more coherent. To form a fundamental building block, there are 336 logic elements/cells. FPGA modules can be attached to development boards using a Surface Mount-connector. With a supply voltage of 3V~3.6V 4.75V~5.25V, this device operates with ease. An FPGA belonging to the MX series is referred to as an FPGA. Fpga chips is necessary to keep the operating temperature wFpga chipshin 0°C~70°C TA when the device is operating. Unlike other FPGA models, this one is contained in Tray for the sake of space saving. You can find related parts by using the part number A42MX09, which is its base part number. The device has 100 pins which are included in the design. Providing the FPGA is mounted in Surface Mount as per the specifications of the IC, then it should work perfectly according to its specifications. In operation with 5V, designers can take advantage of its flexibility to the fullest extent. In this module, 70°C is the maximum operating temperature at which fpga electronics can operate. Over 0°C should be the operating temperature. The basic building block of this system consists of 14000 gates. Its basic building block is composed of 336 logic blocks (LABs). The data is stored and transferred using 516 registers that are used for this purpose. There is a maximum supply voltage of 5.25V that is supported by this product. With a minimum supply voltage of 3V, it is able to function. Fpga semiconductor is possible for this FPGA to reach speeds of up to 215MHz. 100-PQFP (20x14) stands for its supplier device package.
A42MX09-PQG100 Features
83 I/Os
100 LABs/CLBs
70°C gates
336 logic blocks (LABs)
516 registers
A42MX09-PQG100 Applications
There are a lot of Microsemi Corporation A42MX09-PQG100 FPGAs applications.
- Artificial intelligence (AI)
- Medical ultrasounds
- Software-defined radios
- Wireless Communications
- Industrial IoT
- Embedded Vision
- Camera time adjustments
- Integrating multiple SPLDs
- Bioinformatics
- High Performance Computing