XC4010D-5PQ160C Overview
In the package 160-BQFP, this product is provided. A FIELD PROGRAMMABLE GATE ARRAY-based FPGA is one of these types. Fpga chips is programmed wFpga chipsh 129 I/Os for transferring data in a more coherent manner. Logic blocks consist of 950 logic elements/cells. Fpga chips is powered from a supply voltage of 5V. Field Programmable Gate Arrays family FPGA part. The Surface Mount-slot connector on the FPGA module can be connected to the development board. A supply voltage of 4.75V~5.25V is needed in order for fpga chips to operate. There are many types of FPGAs in the XC4000 series, this is one of them. As far as the operating temperature is concerned, it should be kept within 0°C~85°C TJ when operating. A total of 160 outputs are incorporated into this device. Unlike other FPGA models, this one is contained in Tray for the sake of space saving. In total, there are a total of 160 terminations on fpga chips. Its base part number XC4010D can be used to find related parts. 160 pins are designed into the device. An array of 400 LABs/CLBs is built into the FPGA. According to its specifications, this FPGA will be able to work fantastically as long as it is mounted in Surface Mount. Its flexibility can be fully utilized when operating with a 5V supply voltage. This is a battery operated device that operates on 5V. There are 10000 gates that make up its basic building block. The device has a total of 160 pins on fpga semiconductor. Most of the time, it uses a crystal oscillating at 133.3MHz to generate the signal. The data is stored and transferred using 1120 registers that are used for this purpose. For its architecture, 400 CLB modules are used. For the building block, it incorporates 400 logic cells that are used to make it work. In order to implement this design, 8000 equivalent gates are used in the FPGA.
XC4010D-5PQ160C Features
129 I/Os
160 LABs/CLBs
1120 registers
XC4010D-5PQ160C Applications
There are a lot of Xilinx Inc. XC4010D-5PQ160C FPGAs applications.
- Medical imaging
- Consumer Electronics
- ASIC prototyping
- Medical Electronics
- Medical ultrasounds
- Image processing
- Digital signal processing
- Software-defined radios
- Filtering and communication encoding
- Integrating multiple SPLDs