Date: Jul 27, 2020
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From this article, you will get more information about FPGA application areas, so you just need to read it carefully.
1. Application of FPGA in circuit design
Connection logic and control logic are areas where FPGAs play a larger role in the early days and are the cornerstones of FPGA applications. In fact, it is still relatively difficult to apply FPGAs in circuit design. This requires developers to have corresponding hardware knowledge (circuit knowledge) and software Talents in application capabilities (development tools) are always in short supply. They are often engaged in new technologies and new products. Successfully developed products will become the mainstream basic products in the market for product designers to use in the near future, general and dedicated IP The design will become a hot industry! The prerequisite for circuit design is to have a certain hardware knowledge.
2. Product design
Applying relatively mature technology to certain specific fields such as communication, video, information processing, etc., to develop products that meet industry needs and can be accepted by industry customers. This aspect is mainly the combination of FPGA technology and professional technology. In addition, there is Interface issues with professional customers. Product design also includes professional tool products and civilian products. The former focuses on performance, while the latter is designed for price-sensitive products with product functions as the main purpose. FPGA technology is an implementation method in this field. FPGA is because With the characteristics of interface, control, functional IP, embedded CPU, etc., it is possible to realize a simple structure, high degree of solidification, and full-featured system product design will be the most widely used market for FPGA technology, and it has a huge explosive demand for products. Design requires relatively high technical personnel, and the journey is relatively long. However, the entire industry is now in the state of forming a "starting team". As long as you join, the future is bright. Product design is a career development orientation, not a simple hobby. Arrived! The product design field will create a large number of companies and entrepreneurs, which is a recent development hotspot and opportunity.
3. System level application
The system-level application is the combination of FPGA and traditional computer technology to realize an FPGA version of the computer system. For example, use Xilinx V-4, V-5 series FPGA to realize embedded POWER PC CPU, and then cooperate with various peripheral functions. To achieve a basic environment, running LINUX and other systems on this platform also supports various standard peripherals and functional interfaces (such as image interfaces), which is very helpful for quickly forming large-scale FPGA systems. The early advantages of this kind of "counterfeit" system may not be obvious. It is similar to the situation of the ARM system, but if the advantages of FPGA can be used slowly, it is also a development direction to gradually realize some characteristic systems. If in system-level applications, developers do not have the ability to expand the development of the system, it is meaningless to engage in programming. Of course, the development of device drivers is another situation. System-level applications seem to have a high starting point, but they don’t. In-depth development ability, it is possible to become a hobbyist, just like many people can do web pages but can’t be called programming. Similar to the above are a few personal developments, I hope to help people who want to learn FPGA but are at a loss. This is a good industry with a good opportunity for personal success. But it must be a highly competitive industry. The key is speed and depth, as well as market adaptability.
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Comparison of the latest released FPGAs from Xilinx, Intel, and Lattice
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FPGA XC4000X Family 10K Gates 950 Cells 0.35um Technology 3.3V 176-Pin TQFP
Xilinx TSSOP20
FPGA Virtex-4 FX Family 12312 Cells 90nm Technology 1.2V 668-Pin FCBGA
FPGA Virtex-4 FX Family 12312 Cells 90nm Technology 1.2V 363-Pin FCBGA
FPGA Virtex-4 FX Family 12312 Cells 90nm Technology 1.2V 668-Pin FCBGA
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