The intellectual property (IP) is referred to the individuals’ new inventions and creations, such as concepts, designs, name, and symbols. In electronics, a semiconductor IP is any reusable logic unit, integrated circuit layout design, or a cell. These intellectual properties can be owned by a single party or also can be licensed to any other parties. To know about the Research Methodology :- Request Free Sample Report
Global Intellectual Property in Electronic Environments Market Scenario:The Intellectual Property in Electronic Environments Market is expected to reach $XX Bn by the year 2027, growing at a CAGR around 7.5% during the forecasted period.
Global Intellectual Property in Electronic Environments Market Overview:Semiconductor technology, being at the origin of today’s digital world, has been extensively rising in productivity, innovation, and economic growth. As today’s era is moving towards high intelligence systems, it is thereby being embedded with information processing and communication capabilities, it becomes a matter of fact that the semiconductor IPs along with some future developments are expected to have a great impact on the overall knowledge of the economy and the society.
Drivers:• Transformation of Businesses across the Globe The advancements in the multicore technologies for the consumer electronics, the increased growth rate of the mobile phones production, and the fast pace adoption of connected devices are some of the major factors responsible for bringing about in a change in the business environment around the world; which turns out to be one of the major driving factors for the market of Intellectual Property in the Electronic Environment. • Rise in the demand of teleconference devices The increased growth for the electronic devices in the healthcare sector, and the teleconference devices, amidst the COVID-19, may help in driving the growth of the intellectual property market in the electronics environment.
Restraints:• Complicated Integration Processes The manufacturing of semiconductor chips, in itself is a big complicated process. Therefore, integrating such difficult technologies and verification of many complex processes might arise a factor for hampering the growth of the market. • Technology Changes As the semiconductors form to be the basis of the technology, it is true that the rate at which we see technology changes, could be a big challenge for the manufacturing industries. For example, changes in node of a semiconductor chip requires to change the design of it; and migrating to an advanced technology node, further increases it costing for the IP vendors. Therefore, this could be big restrain to the market of intellectual properties in the electronics environment.
Opportunity:• Huge Demand from Avionics, Aerospace and Defence Industries Various sectors like defence and aerospace have witnessed a rising demand for highly complex and integrates electronic devices. This, in turn, increases the demand for various electronic and hardware semiconductor devices, which give rise to the integration of an innovative design solution for chip manufacturing. Hence, such innovations could offer some great opportunities for the intellectual property market in the electronics environment.
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Global Intellectual Property in Electronic Environments Market SegmentationThe report for the intellectual property in the electronics environment is studied across the 6 major segments:
Global Intellectual Property in Electronic Environments Market, By Design IPo Interface IP o Memory IP o Processor IP o Verification IP o Application – Specific Integrated Circuit The rise in the streaming of media and surfing across the social media networking, has forced the designers of Integrated Circuits (ICs) to use memory IPs to design efficient processing and storage devices. This reason, owes to expecting the Memory IP segment to register a highest CAGR during the forecast period.
Global Intellectual Property in Electronic Environments Market, By IP Coreo Hard Core o Soft Core • By IP Source o Licensing o Royalty o Servicing
Global Intellectual Property in Electronic Environments Market, By Applicationo Automotive o Commercial o Industrial o Consumer Electronics o Telecom & Data Centers o Defense o Others
Global Intellectual Property in Electronic Environments Market, By End Usero Fabless Firms o Foundry o Internet Download Manager (IDM) o Open – Source Appropriate Technology (OSAT)
Global Intellectual Property in Electronic Environments Market, By Geographyo North America o South America o Asia Pacific o Europe o Middle East & Africa The Asia Pacific region is expected to be a fastest growing in the market, owing to its emergence as a global focal point for huge investments and market expansion opportunities. Moreover, it is also observed that the region is expected to have a substantial development, due to the low – cost labor and huge demand for consumer electronics over there.
Global Intellectual Property in Electronic Environments Market Competitive Landscape• The major key players operating in this market include, Cobham Gaisler, Achronix Semiconductor, Eureka Technology, Mentor Graphics, Arm Holdings, Imagination Technologies, Dream Chip Technologies, Semiconductor Manufacturing International Corp (SMIC), Faraday Technology Rambus, Synopsys, Dolphin Integration, Cadence, Ememory, Transpacket, Ceva, Sonics Inc, Lattice Semiconductor, Open-Silicon Inc, Xilinx, among many others • Recent Developments: o Imagination Technologies, in June 2020 announced the launch of iEW400 – a latest IP, based on Ensigma Wi-Fi technology. This Ip is capable for battery – powered and low power applications, like, IoT, hearables, and wearables. o Cadence Design Systems, in October 2020 announced its verification IP to the Chip level with new system VIP solution. This offering, enables up to 10 times efficiency gains in the system – level test bench assembly, execution and analysis for hyper scale, automotive, mobile and consumer chips. o Synopsys, in January 2021 announced their collaboration to include Synopsys’ HBM2E IP for maximum memory throughput in AI and high performance computing applications. This advancement, along with an aggregated bandwidth of 460 gigabytes per second, delivers the massive compute performance of SOCs (System – On – Chips) in advanced FinFET processes.
About This Report
|Category||Information Technology & Telecommunication|
|Published Date||January 2021|