The global Silicon Capacitors market reached a value of about USD yy billion in 2021. The industry is projected to grow at a CAGR of around y% in the forecast period of 2022-2027 to reach a value of about USD yy billion by 2027.
The global Silicon Capacitors industry report gives a comprehensive analysis of the industry, including key segments, trends, drivers, restraints, the competitive landscape, and other essential market aspects. The use of the devices in a wide range of industries is primarily driving the market growth. The Asia Pacific is the highest category spender by region, driving the demand for the Silicon Capacitors industry.
Silicon capacitors are commonly employed in modern electronic and electrical systems for various purposes, including filtering out undesired signals and delaying voltage fluctuations, as well as storing electric charges because of their wide working frequency range, making them ideal for use in high-speed digital circuits. The Silicon Capacitors industry report comprises segments by Structure (Deep Trench Capacitor, MNOS Capacitor, MIS Capacitor, by Distribution Channel (Online, Offline), by Application (Automotive, Telecommunication, Healthcare, Aerospace and Defence, Others) and region (North America, Europe, Asia Pacific, the Middle East, and Africa, and South America).
The Asia Pacific holds the largest share in the industry and is seeing a surge in demand for silicon capacitors as they undergo modernisation and embrace advanced telecommunication equipment with new technologies.
The market is being aided by the high demand for Great-density capacitors with silicon-based dielectrics, such as silicon nitride and silicon dioxide, across many industrial applications. Furthermore, the market is being propelled by the convergence of the electronics sector with a wide range of other industry verticals, such as healthcare, automobiles, and telecommunications, which is boosting market demand. Capacitors are used in modern electronics for various purposes, including filtering out undesired signals, delaying voltage fluctuations, and storing electric charges. The workhorse that defines how capacitors are used in an electrical circuit is the dielectric material. Due to its great temperature stability and low failure rates, silicon is used as a capacitor dielectric material in various electronic devices.
Despite this, high charge leakages and a restricted capacitance range of silicone capacitors will likely hinder the market growth.
The global Silicon Capacitors industry report by Procurement Resource gives an in-depth analysis of the best buying practices followed by major global Silicon Capacitors regions across the globe, such as engagement models, contract terms, and buyer and supplier negotiation levers, among others.
Silicon-based capacitors are generally built with a single MIM (metal-insulator-metal) or multiple MIM structures using semiconductor technology. Silicon dielectrics are silicon dioxide (MIS) or silicon nitride (MOS) insulating layers. However, additional dielectric materials can be formed on top of the silicon substrate using semiconductor manufacturing processes such as atomic layer deposition (ALD). To attain a more significant surface area and a higher capacitance value, high-density silicon-based capacitors use 3D nanostructured electrodes.
The industry is witnessing growth due to the growing popularity of miniaturised electronic devices, which is likely to increase demand for capacitors with thinner dielectric films. The downsizing trend assists silicon capacitor market expansion, as it creates significant sales potential for silicon capacitors in a wide range of end-use sectors, notably in the telecommunications industry. Telecommunication equipment accounts for about four out of every ten silicon capacitors sold worldwide. The rising need for downsized, thin-film transmission lines with good RF (radio frequency) performance is propelling the industry forward. Furthermore, many end-use sectors have recognised the potential of silicon capacitors in the downsizing of electronic devices, opening up new growth opportunities for silicon capacitors in a variety of applications. Also, the aerospace and defence industries in emerging nations are expected to boost the silicon capacitors market over the forecast period.
The regional markets for the industry can be divided into North America, South America, Europe, the Middle East and Africa, and the Asia Pacific.
Leading firms account for roughly 60% of revenue share in a moderately consolidated industry like silicon capacitors. Market leaders are carefully planning their product innovation and manufacturing growth plans. Silicon capacitor manufacturers are working on offering unique features to gain a better foothold in mainstream sectors such as automotive and telecommunications.
2 Report Coverage – Key Segmentation and Scope
3 Report Description
3.1 Market Definition and Outlook
3.2 Properties and Applications
3.3 Market Analysis
3.4 Key Players
4 Key Assumptions
5 Executive Summary
5.2 Key Drivers
5.3 Key Developments
5.4 Competitive Structure
5.5 Key Industrial Trends
7 Industry Opportunities and Challenges
8 Global Silicon Capacitors Market Analysis
8.1 Key Industry Highlights
8.2 Global Silicon Capacitors Historical Market (2017-2021)
8.3 Global Silicon Capacitors Market Forecast (2022-2027)
8.4 Global Silicon Capacitors Market by Structure
8.4.1 Deep-Trench Capacitor
184.108.40.206 Market Share
220.127.116.11 Historical Trend (2017-2021)
18.104.22.168 Forecast Trend (2022-2027)
8.4.2 MNOS Capacitor
22.214.171.124 Market Share
126.96.36.199 Historical Trend (2017-2021)
188.8.131.52 Forecast Trend (2022-2027)
8.4.3 MIS Capacitor
184.108.40.206 Market Share
220.127.116.11 Historical Trend (2017-2021)
18.104.22.168 Forecast Trend (2022-2027)
8.5 Global Silicon Capacitors Market by Distribution Channel
22.214.171.124 Market Share
126.96.36.199 Historical Trend (2017-2021)
188.8.131.52 Forecast Trend (2022-2027)
184.108.40.206 Market Share
220.127.116.11 Historical Trend (2017-2021)
18.104.22.168 Forecast Trend (2022-2027)
8.6 Global Silicon Capacitors Market by Application
22.214.171.124 Market Share
126.96.36.199 Historical Trend (2017-2021)
188.8.131.52 Forecast Trend (2022-2027)
184.108.40.206 Market Share
220.127.116.11 Historical Trend (2017-2021)
18.104.22.168 Forecast Trend (2022-2027)
22.214.171.124 Market Share
126.96.36.199 Historical Trend (2017-2021)
188.8.131.52 Forecast Trend (2022-2027)
8.6.4 Aerospace and Defence
184.108.40.206 Market Share
220.127.116.11 Historical Trend (2017-2021)
18.104.22.168 Forecast Trend (2022-2027)
8.7 Global Silicon Capacitors Market by Region
8.7.1 Market Share
22.214.171.124 North America
126.96.36.199 Asia Pacific
188.8.131.52 Latin America
184.108.40.206 Middle East and Africa
9 Regional Analysis
9.1 North America
9.1.1 Historical Trend (2017-2021)
9.1.2 Forecast Trend (2022-2027)
9.1.3 Breakup by Country
220.127.116.11 United States of America
9.2.1 Historical Trend (2017-2021)
9.2.2 Forecast Trend (2022-2027)
9.2.3 Breakup by Country
18.104.22.168 United Kingdom
9.3 Asia Pacific
9.3.1 Historical Trend (2017-2021)
9.3.2 Forecast Trend (2022-2027)
9.3.3 Breakup by Country
9.4 Latin America
9.4.1 Historical Trend (2017-2021)
9.4.2 Forecast Trend (2022-2027)
9.4.3 Breakup by Country
9.5 Middle East and Africa
9.5.1 Historical Trend (2017-2021)
9.5.2 Forecast Trend (2022-2027)
9.5.3 Breakup by Country
22.214.171.124 Saudi Arabia
126.96.36.199 United Arab Emirates
188.8.131.52 South Africa
10 Market Dynamics
10.1 SWOT Analysis
10.2 Porter’s Five Forces Analysis
10.2.1 Supplier’s Power
10.2.2 Buyer’s Power
10.2.3 Threat of New Entrants
10.2.4 Degree of Rivalry
10.2.5 Threat of Substitutes
10.3 Key Indicators for Demand
10.4 Key Indicators for Price
11 Value Chain Analysis
12 Price Analysis
13 Competitive Landscape
13.1 Market Structure
13.2 Company Profiles
13.2.1 Arrow Electronics, Inc.
184.108.40.206 Company Overview
220.127.116.11 Product Portfolio
18.104.22.168 Demographic Reach and Achievements
13.2.2 Murata Manufacturing Co., Ltd.
22.214.171.124 Company Overview
126.96.36.199 Product Portfolio
188.8.131.52 Demographic Reach and Achievements
13.2.3 Microsemi Corporation
184.108.40.206 Company Overview
220.127.116.11 Product Portfolio
18.104.22.168 Demographic Reach and Achievements
13.2.4 Skyworks Solution, Inc.
22.214.171.124 Company Overview
126.96.36.199 Product Portfolio
188.8.131.52 Demographic Reach and Achievements
13.2.5 Vishay Intertechnology, Inc.
184.108.40.206 Company Overview
220.127.116.11 Product Portfolio
18.104.22.168 Demographic Reach and Achievements
13.2.6 MACOM Technology Solutions Inc.
22.214.171.124 Company Overview
126.96.36.199 Product Portfolio
188.8.131.52 Demographic Reach and Achievements
14 Industry Events and Developments
The global Silicon Capacitors market size was valued at USD yy billion in 2021.
As per the yy provided, the yy segment is anticipated to lead the market between the period 2021 – 2027.
The growing developments in the product are an essential driver of the Silicon Capacitors market growth.
Arrow Electronics, Inc., Murata Manufacturing Co., Ltd., Microsemi Corporation, Skyworks Solution, Inc., Vishay Intertechnology, Inc.
The Asia Pacific region of the Silicon Capacitors industry holds a significant share in the market.
The global Silicon Capacitors market attained a value of USD yy billion in 2021, driven by the high demand for Great-density capacitors with silicon-based dielectrics, such as silicon nitride and silicon dioxide, across a wide range of industrial applications. Aided by the growing popularity of miniaturised electronic devices, which is likely to increase demand for capacitors with thinner dielectric films paired with the device’s application in a wide range of end-use sectors like telecommunications, aerospace and defence, the market is expected to witness further growth in the forecast period of 2022-2027, growing at a CAGR of yy%. The market is projected to reach USD yy billion by 2027. Some of the leading players in the industry are Arrow Electronics, Inc., Murata Manufacturing Co., Ltd., Microsemi Corporation, Skyworks Solution, Inc., and Vishay Intertechnology, Inc.
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