Global FPGA in Telecom Sector Market, By Technology (SRAM, Flash, Antifuse), By Configuration (Low-End FPGA, Mid-range FPGA, High-end FPGA), node size (Less than 28 nm, 28–90 nm, More than 90 nm), Application (4G, 3G, WiMax, and LTE.) — Forecast till 2023
Field-Programmable Gate Array (FPGA) is a programmable semiconductor device, which is function specific and reprogrammable according to the desired application. FPGA allows system designers to use silicon-based devices instead of merchant silicon. The latest FPGA version supports high-speed serial lanes up to 32GB/sec and integrate hard IP for 100G Ethernet, PCI Express Gen4, and DDR4 memory controllers.
Field Programmable Gate Array (FPGA) is used to implement a logical function that an application-specific integrated circuit is supposed to perform. FPGAs use pre-built logic blocks and programmable routing channels for implementing custom hardware functionality that depends on the embedded system developer. FPGAs are configured and programmed using Hardware Description Language (HDL) such as VHDL and Verilog.
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Smaller devices provide control functionality & interfacing, where larger devices enable complete system design in one or more FPGAs. Field programmable gate array is used in many applications within networking and telecom systems such as packet processing and switching, and optical transport network (OTN). In many situations, FPGAs are used to connect between merchant silicon devices together for providing proprietary functionality. FPGA are the devices which enable users to create their digital circuits. These devices are based around a matrix of configurable logic blocks, connected via programmable interconnects. Imaging equipment and automobile industry widely use FPGA as compared to other segments.
The low-end FPGAs dominated the market in 2018 due to low cost and high-performance capabilities. This type of FPGA is mostly used in displays used in military and automotive sectors. FPGAs based on SRAM technology dominated the market in 2018 as they are easily reconfigurable and can be developed by latest technology nodes that require less cost per transistor and more transistors per wafer.
One of the major growth drivers of FPGA in telecom market includes growing demand for power-efficiency and high-performance IC design. FPGAs also provide bandwidth to service operators to generate compatible networks from 2G to 3G and further from 3G to LTE which is as another factor driving the market for FPGA in the telecom sector.
FPGA in telecom sector market can be segmented as follows:
By technology, the market is sub-segmented into SRAM, Flash, and Antifuse.
By configuration, the market is sub-segmented into Low-End FPGA, Mid-range FPGA, and High-end FPGA.
By node size, the market is sub-segmented into less than 28 nm, 28–90 nm, and more than 90 nm.
By application, the market is sub-segmented into 4G, 3G, WiMax, and LTE.
The global FPGA in Telecom Sector Market is estimated to grow at a significant rate during the forecast period from 2018 – 2023 The geographical analysis of FPGA in telecom market is studied for North America, Europe, Asia Pacific, and the rest of the world.
Asia Pacific is expected to dominate the market for FPGA in telecom in the forecast period. China, Japan, India, and South Korea are the key geographies serving as markets for consumer electronics, which in turn increases the application scope for FPGAs. Furthermore, due to the high availability of low-cost smartphones & tablets, China and India have planned to raise their foreign investments.
The market in North America is also expected to grow during the forecast period due to presence of FPGA manufacturing industry. Xilinx, Inc. and Huawei Technologies Co., Ltd. jointly announced the North American debut of the Huawei FPGA accelerated cloud server (FACS) platform. Intel FPGA market also provides technologies in the automotive industry. Whereas, Europe is expected to maintain stable growth in the forecast period.
The key players in market include Xilinx Inc. (U.S.), Microsemi Corporation (U.S.), Lattice Semiconductor (U.S.), Achronix Semiconductor Corporation (U.S.), Atmel Corporation (U.S.), S2C Inc. (U.S.), Texas Instruments (U.S), Cypress Semiconductor (U.S.), Intel Corporation (U.S.), Aeroflex Inc. (U.S.) among others.
Other players in markets are Achronix Semiconductor Corporation (U.S.), QuickLogic Corporation (U.S.), SiliconBlue Technologies (U.S.), Tabula (U.S.), Applied Microcircuits Corporation (U.S.), and Taiwan Semiconductor Manufacturing Company Ltd. (Taiwan)
- Technology standards organizations, forums, alliances, and associations
- Analysts and strategic business planners
- Research organizations
- Technology investors
- Governments, financial institutions, and investment communities
- Original equipment manufacturers (OEMs) (end-user application or electronic component manufacturers)
LIST OF TABLES
Table1 World Population By Major Regions (2018 To 2023)
Table2 Global FPGA In Telecom Market: By Country, 2018-2023
Table3 North America FPGA In Telecom Market: By Country, 2018-2023
Table4 Europe FPGA In TelecomMarket: By Country, 2018-2023
Table5 Asia Pacific FPGA In TelecomMarket: By Country, 2018-2023
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LIST OF FIGURES
FIGURE 1 Global FPGA In Telecom Market Segmentation
FIGURE 2 Forecast Methodology
FIGURE 3 Porter’s Five Forces Analysis Of Global FPGA In Telecom Market
FIGURE 4 Value Chain Of Global FPGA In Telecom Market
FIGURE 5 Share Of FPGA In Telecom Market In 2018, By Country (In %)
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