#Microcontroller Socket Market
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Microcontroller Socket Market Poised for Strong Growth, Anticipated to Reach USD 2497.5 Billion by 2032
The global microcontroller socket market holds a forecasted share of USD 1236.3 million in 2022 and is likely to surpass USD 2497.5 million by 2032, moving ahead with a CAGR of 7.3% during the forecast period (2022-2032).
Socket producers are endlessly developing novel designs for interconnecting solutions for fine pitch, high I/O, and low profile applications, and for attaining severe regulations of reliability and performance.
Gradually reducing the package size in the microelectronics industry has impacted the microcontroller socket market growth in a positive manner. Industry requirements, such as higher density, increased operating speed, and lower power, have driven packaging in the industry, further leading to an enhanced demand within the microcontroller socket market.
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Microcontroller socket market: Drivers and Challenges
Narrowing costs is the key driving force in the IC manufacturing industry. Improvements in technology help to fulfill the desires of leading-edge electronic systems. Nevertheless, when an IC producer is given the option of keeping costs under control or utilizing the most progressive technology, his option mostly would lean toward minimizing costs and the same happens in microcontroller socket market.
The major challenge faced by Microcontroller socket market is the fierce competition between the leading vendors of this market which is not allowing the market to grow.
Microcontroller socket market: Competition Landscape
Key Contracts
In October 2016, STMicroelectronics acquired NFC and RFID reader assets, strengthening their portfolio of secure microcontrollers for next-generation mobile and Internet of Things devices.
In September 2012, Sensata Technology Inc. acquired WELLS-CTI Inc. a product division by the name of Qinex designs and manufactures sockets for the Semiconductors Industry. WELLS-CTI Inc. specializes in making of Test Sockets Which include Microcontroller sockets.
Key Players
Some of the key players of microcontroller socket market are: Intel, Loranger International Corporation, Aries Electronics Inc., Enplas Corporation, FCI, Johnstech International Corporation, Mill-Max Mfg. Corporation, Molex Inc., Foxconn Technology Group, Sensata Technologies B.V., Plastronics Socket Company Inc., Tyco Electronics Ltd., Chupond Precision Co. Ltd., Win Way Technology Co. Ltd., 3M Company, Enplas Corporation, Yamaichi Electronics Co. Ltd. and Johnstech International Corporation
Microcontroller socket market: Regional Overview
On the basis of geography, microcontroller socket market can be segmented into five key regions namely North America, Latin America, Europe, APAC and Middle East & Africa. Among various regions, the microcontroller socket market in APAC is expected to dominate during the forecast period owing to adoption of microcontroller socket by several industries for implementing products of automobile and healthcare industry. Asia Pacific region is expected to be followed by North America and Europe.
In North America and Europe region, the market of microcontroller socket is gradually growing owing to the presence of small and large IC manufacturers present in this region.
The report covers exhaustive analysis on
Microcontroller socket market Segments Microcontroller socket market Dynamics Historical Actual Market Size, 2012 – 2016 Microcontroller socket market Size & Forecast 2017 To 2027 Supply & Demand Value Chain Microcontroller socket market Current Trends/Issues/Challenges Competition & Companies involved Microcontroller socket Value Chain Microcontroller socket market Drivers and Restraints
Microcontroller socket market: Key Segments
By Product:
SOIC SOP BGA QFP DIP
By Application:
Consumer Electronics Medical Devices Industrial Automotive Military & Defense
By Region:
North America Latin America Asia Pacific Europe MEA
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Autotuner All-In-One ECU and TCU Tuning Tool supporting BDM/Bench and OBD
AutoTuner Automotive Tool Master Version is a newer style ECU programmer supporting BDM/Bench and OBD. Its also a ONE time payment device. Autotuner is characterised by its single fee package, its ease of use and high efficiency. Autotuner is a universal tool which is able to read information from most ECUs and microcontrollers available on the market in boot tricore Infineon (BSL) or via the OBD diagnostic socket.

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Safety Design and Certification Requirements for Power Sockets

Safety is a top priority in the design of power sockets. Poor design can lead to overloading, electrical failures, and even fires. In addition to safety features, certification and compliance with international standards are essential to ensure global market acceptance. This article discusses key safety designs and certification requirements for power sockets, including overload protection, fire prevention, certification standards, and surge protection technologies.
I. Overload Protection and Fire Prevention
1. Overload Protection
Fuses: Sockets include built-in fuses that disconnect the circuit when the current exceeds the rated value. Example: Industrial sockets with large-capacity fuses are designed for heavy-duty equipment.
Thermal Protectors: Devices like thermistors and thermal cutoffs disconnect power when excessive heat is detected. Example: Household smart sockets include thermal cutoffs to ensure safe long-duration usage.
Electronic Overload Protection: Microcontrollers monitor current flow and immediately cut power in case of anomalies. Example: IoT-enabled sockets alert users of overloading via a smartphone app while shutting down the circuit.
2. Fire Prevention Design
Flame-Resistant Materials: Outer casings made of high-grade flame-retardant plastics prevent fire spread. Example: Power sockets in public areas use UL94 V-0 rated materials for enhanced fire safety.
Optimized Internal Layout: Enhanced insulation prevents arcing and overheating within the socket. Example: A commercial socket features dual-layer insulation to separate high-voltage components.
II. Certification Standards and Compliance
1. Key Certifications
UL Certification (USA): Focuses on electrical safety, overload, and temperature rise tests. Example: Smart sockets compliant with UL1363 standards are widely used in North American households.
CE Certification (EU): Ensures electromagnetic compatibility and low-voltage directive compliance. Example: Industrial-grade sockets certified under CE mark provide stable performance in European factories.
FCC Certification (USA): Addresses radio frequency interference for devices with wireless capabilities. Example: A Wi-Fi-enabled socket with FCC approval ensures smooth operation in smart home setups.
2. Industry-Specific Certifications
Medical: IEC 60601 standards ensure safe use in medical environments. Example: Sockets in hospitals meet IEC standards to power critical medical devices.
Data Centers: ANSI/TIA 942 certification validates high-performance sockets for server rooms. Example: Power strips with this certification prevent failures in data-intensive environments.
III. Surge Protection Technology
1. Lightning Protection
Built-In Surge Protectors: Divert excess current to the ground during power surges caused by lightning. Example: Outdoor sockets in EV charging stations feature multi-layer surge protection.
Efficient Grounding: Robust grounding mechanisms prevent damage to internal components. Example: Industrial power sockets in high-risk areas use advanced grounding to ensure durability.
2. Surge Suppression
MOVs (Metal Oxide Varistors): Absorb excess current to protect connected devices. Example: High-energy MOVs in smart sockets safeguard home appliances from voltage spikes.
Filtering Circuits: Built-in LC filters suppress electromagnetic interference and enhance stability. Example: Server room sockets use advanced filtering to ensure uninterrupted operation of critical systems.
IV. Future Trends in Safety Design
Smart Safety Systems: AI-powered sockets can predict potential risks and send alerts to users.
Eco-Friendly Designs: The adoption of sustainable materials and energy-saving features.
Global Compatibility: Modular designs to meet diverse regional and industrial standards.
V. Conclusion
Power socket safety design is a cornerstone of reliable electrical systems. By integrating overload protection, fire prevention, surge protection, and adhering to international certification standards, manufacturers can deliver secure and high-quality products. Continuous innovation and compliance with global regulations will remain key to advancing the power socket industry.
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Fuck you, Oral-B
I needed a new toothbrush. My gums are a bit screwed up and my wife’s cousin (who is a dentist) recommended I get one of the new Oral B “iO” models, because it would be good for the specific problem I have. But they’re expensive and so was the old Oral B I already had, so I couldn’t justify it until my existing one broke. Which it did quite suddenly, so yay! And I started researching.
The only two features I wanted were the vibration action intrinsic to the “iO” line and a travel case that charged via USB. A battery that lasted longer than about three days (as the old one did) would be good, but if I could charge via USB I already take an elaborate USB charging setup with me when I travel, so who cares.
There are seven current models in the line, the iO 3 through 10, ranging in price from about €40 to over €300 (!!!) for essentially the same device with extra features layered on at each price point. But the thing is, almost all of those features are useless. More “brushing modes”, colour screen, Bluetooth connectivity—all pointless for 95% of people, but they deliberately segment the market so if you want an actually useful feature like a travel case, or a travel charging case (different price points!), you have to spend a whole lot of money on “pretend value” you don’t want or need to get the one feature you do. And once you put an nRF52 (or whatever) microcontroller in these things it’s just a matter of software anyway and the marginal hardware BOM cost for most of these extra “features” is approximately €0.
The Oral B marketing websites deliberately obfuscate all of this, of course. None of them explain in real English words what the differences between the models are and on top of that it’s one of those horrible product categories that’s SEO’d out the wazoo so nobody else will explain it to you either. I found exactly one third-party website which went into any useful detail what the actual differences between the models were. And only from that one was I finally convinced I’d have to shell out €200 to get the one feature over the base model that I wanted, a USB travel charging case.
So with great reluctance, because I detest being scammed like this (especially when I can see the exact nature of the scam), I bit the bullet and paid €200 for an Oral B iO 9 “Special Edition”, which came with a travel charging case and a little bag that goes in which somehow made it “special”.
It arrived, I opened the box and found… what I assumed to be a USB-C travel case had a proprietary connector and cable with a hard-wired wall-wart. I was fucking livid. I had made the assumption that the only reasonable way this could possibly be designed would be for the case to have a USB-C socket—but no, because the product development team at Oral B are maliciously insane, they had implemented a proprietary connector hard wired to a two-pin Europlug wall-wart. This entirely defeats the fucking purpose. Have none of these people ever gone anywhere? Instead of a small USB cable which literally everyone in 2023 takes a charger for with them every time they travel, they expect me to take a separate cable, with its own wall-wart, plus a power socket pin-adapter for whatever country I was going to. Utterly user-hostile product design.
I contacted the retailer wanting to return this €200 piece of useless garbage under the statutory European 14 day purchase cooling-off period. But then I was told there was an exception for “hygiene articles” like toothbrushes and since I had broken the “safety seal” (the only way to collapse the marketing bullshit wave function and determine the deficient reality of the product) it didn’t apply, and I was stuck with it.
Then I got really fucking mad.
I looked closer at the wall-wart. In 3-point regulation-mandated flyspeck, it detailed an input voltage of 110-220V AC and an output of 12V DC at 0.4A. Hm. USB-C trigger cables are a thing… but on closer inspection, 12V isn’t actually an official part of the USB-C PD spec, so it might not work on all USB-C charging ports. But you can buy USB-A cables with 12V boost converters built in and 12V @ 0.4A is 4.8W which is within the USB-A spec. Two days and nine whole Euros later (for two!) I had the offending part in my hand. I snipped the proprietary Oral B connector off and, carefully having tested the polarity with a multimeter, wired it to the USB-A 12V boost cable (“solderless” butt connectors are cool.) Then I plugged it in to the charging case.

Fuck me, it worked first time. Perfectly.
So now I have an obviously useful thing Oral-B refused to sell me because they’d prefer to soak me for useless features rather than doing the pitifully simple engineering—I didn’t even need to use a god damned soldering iron—to build something actually useful that met their customers’ obvious needs.
(As a side-note, the rest of the product design is fucking awful too. There’s an accelerometer in there which makes it wait until you set it on its end before it plays a 20 second animation before showing you the current charge level. Pointless and annoying. And that end is really small on such a top-heavy device, so you have to make sure you balance it well on its normal charger to stop it toppling over onto the tiled floor literally everyone has in their bathroom. I hope you don’t have kids who think that colour screen is cool and knock your €200 device onto that tiled floor as they go to grab it! And hey, I’ve got a good idea, let’s take an item that you use when your hands are wet and make it out of smooth plastic so it’s really slippery. That’s a fucking brilliant product design decision that’s totally not a regression from the rubberised handle of the previous version. The smooth featureless membrane buttons you can’t find just by feel, that’s an improvement too! You morons.)
Fuck you, Oral B. And fuck your marketing-over-customer-needs focussed attitude and the horse it rode in on.
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Report Predicts Microcontroller Socket Market to Reach USD 1.46 billion by 2024
Report Predicts Microcontroller Socket Market to Reach USD 1.46 billion by 2024
The global microcontroller socket market is expected to value at USD 1.46 billion by 2024. The microcontroller socket industry is subject to witness a substantial growth due to the rising adoption of microcontroller devices in the communication sector, automobile industry, and consumer electronic sector. Microcontrollers are miniature electronic systems that perform and manage numerous…
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#Microcontroller Socket#Microcontroller Socket Market#Microcontroller Socket Market Growth#Microcontroller Socket Market Trends
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#Ball Grid Array (BGA) Microcontroller Socket Market by Type#Ball Grid Array (BGA) Microcontroller Socket Market Forecast#Ball Grid Array (BGA) Microcontroller Socket Market Future Innovation
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Microcontroller Socket Market – Garner Insights 2025
Global Microcontroller Socket Market: Snapshot
The global market for microcontroller socket is gaining traction from its increasing application across various sectors including automotive, consumer electronics, military and defense, and industrial, automation and re-automation in developing countries, and increase in IC packaging development. Currently, there is intense competition among the leading vendors, which is somewhat hindering the proper growth of the market.
Based on product, the global microcontroller socket market can be segmented into Quad Flat Package (QFP), Ball Grid Array (BGA), Dual In-line Package (DIP), Small Outline IC Package (SOIC), and Small Outline Package (SOP), among which BGA microcontroller socket is anticipated to gain strong demand in the near future, driven by its use for integrated circuits and area type of surface-mount packaging. Application-wise, the prosperity of the automotive sector is projected to propel the demand for microcontroller sockets. In addition to that, escalating demand for power line communications and smart energy for metering is expected to gain traction in the near future.
This report on the global microcontroller socket market has been developed with the sole purpose of representing the present scenario as well as the future prospects, to the stakeholders connected to the value chain of this market. All important factors that may influence the demand, positively or negatively, have been analyzed and their implications have been estimated. The report also profiles a number of key companies operating in this market, estimating their market share and analyzing their product portfolio as well as recent strategic developments.
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Global Microcontroller Socket Market: Overview
The global microcontroller socket market is forecast to expand considerably in the coming years. Due to their increasing application in communication, industrial, and automobile sectors, the demand for microcontroller sockets is forecast to augment at a high pace. Microcontrollers are integrated in varied electronic devices in order to manage device operations. Because the technology allows seamless management of electronic devices, its demand is expected to scale higher in the near future.
Currently, the market is witnessing high demand across automotive, industrial, consumer electronics, military and defense, and medical devices sectors. Of these, the market is forecast to see robust growth in the automotive sector, which is witnessing rapid expansion across developing regions. In the automotive segment, microcontroller sockets find application in body electronics and information devices. Based on product, some of the key market segments are ball grid array (BGA), dual in-line package (DIP), small outline package (SOP), quad flat package (QFP), and small outline IC package (SOIC).
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Aimed at providing a comprehensive market overview, the report covers industry factors affecting its growth across then aforementioned segments. The most lucrative opportunities are identified as well based on information obtained via proven research methodologies. Compiled with the intent of helping stakeholders gain a better perspective about the global microcontroller socket market, the report also studies the effect of Porter’s five forces on the overall operations.
Global Microcontroller Socket Market: Trends and Opportunities
The rising demand for enhanced technology in order to reduce fuel consumption is stoking the demand for lower-power embedded systems. To capitalize on prevailing opportunities, manufacturers have started producing powertrain applications. These exhibit miniaturized designs, low consumption of power, and reduced weight. Such improvements have helped improving functionality per chips with high output and input. Besides, these chips are available in smaller package size. Furthermore, the use of copper wire has increased, which has reduced the cost incurred in packaging without compromising on productivity. Spurred by these factors, the demand for microcontroller socket is projected to rise in the coming years.
The market is also forecast to gain from recent developments in IC packaging enabling it deliver high application for a low cost in a low-profile and low-power design. These developments show great potential, lured by which system developers, OEMs, packaging and test subcontractors, foundries, fabless chip companies, and chip manufacturers are placing high stakes on the next generation packaging solutions. Uptake of IC packaging is therefore increasing as manufacturers look for ways of delivering better, faster, and cheaper results. This in turn will augment the demand for microcontroller socket market.
Global Microcontroller Socket Market: Regional Outlook
Due to the rising demand in Japan and China, the microcontroller socket market in Asia Pacific is forecast to exhibit robust growth. Besides this, the increasing demand for sockets in the region’s flourishing microelectronics industry will aid growth. In North America as well, the market will witness attractive opportunities. The expansion of the smart energy and communication sectors will bolster opportunities for the microcontroller socket market in North America.
Global Microcontroller Socket Market: Vendor Landscape
Mill-Max Mfg. Corporation, Aries Electronics, CNC Tech LLC, and Samtec, Inc. are among the most prominent enterprises operating in the global microcontroller socket market. In order to gain pace, a majority of these companies are focusing on product development and expanding their global footprint. Business policies and marketing strategies adopted by these enterprises will also exert considerable influence on the overall market.
The study presents reliable qualitative and quantitative insights into:
Market segments and sub-segments
Market trends and dynamics
Supply and demand chain of the market
Market valuation (revenue and/or volume)
Key trends/opportunities/challenges
Forces defining present and estimated future state of the competitive landscape
Technological developments
Value chain and stakeholder analysis
The regional analysis covers:
North America
Latin America
Europe
Asia Pacific
Middle East and Africa
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TMR Research is a premier provider of customized market research and consulting services to business entities keen on succeeding in today’s supercharged economic climate. Armed with an experienced, dedicated, and dynamic team of analysts, we are redefining the way our clients’ conduct business by providing them with authoritative and trusted research studies in tune with the latest methodologies and market trends.
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San Francisco, CA 94121
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Tel: +1-415-520-1050
Email: [email protected]
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Global Microcontroller Socket Market 2018- Texas Instruments, Aries Electronics
Global Microcontroller Socket Market 2018- Texas Instruments, Aries Electronics
Global Microcontroller Socket market analyses the present industry situations on a broad scale to provide the Microcontroller Socket market trends, market size and growth estimates. The key details related to Microcontroller Socket market drivers, vital market segments, development opportunities and Microcontroller Socket market constraints are presented in this report. Further, this report lists…
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Microcontroller Socket Market is forecasted to register a 7.3% CAGR during the period (2022-2032) and is projected to reach US$ 2497.5 million by 2032 Read more@ https://www.futuremarketinsights.com/reports/microcontroller-socket-market
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Growth of Microcontroller Socket Market Analysis and Forecasts to 2021
Growth of Microcontroller Socket Market Analysis and Forecasts to 2021
MarketResearchNest.com adds “Global Microcontroller Socket Market 2017-2021” new report to its research database. The report spread across 68 pages with table and figures in it.
Research analysts forecast the global microcontroller socket market to grow at a CAGR of 7.25% during the period 2017-2021.
About Microcontroller Socket
A microcontroller socket is an electromechanical device, which…
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#Microcontroller Socket#Microcontroller Socket Analysis#Microcontroller Socket Growth#Microcontroller Socket Industry#Microcontroller Socket Industry Trends#Microcontroller Socket Market#Microcontroller Socket Share#Microcontroller Socket Size#Microcontroller Socket Trends
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Microcontroller Socket Market to Increase Rapidly by 2024
Microcontroller Socket Market to Increase Rapidly by 2024
Microcontroller Socket Market: Overview
The microcontroller socket is widely used in various industries such as consumer electronics, industrial, re-automation, automotive, military and defense, and automation. The manufacturers of the microcontroller socket are developing innovative designs for the high I/O, interconnecting solutions for fine pitch, low profile applications, and to attain…
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Microcontroller Socket Market Size, Share And Trends Report Till 2024 Focusing on Key Players : CNC Tech LLC & Samtec, Inc
The global microcontroller socket market is expected to value at USD 1.46 billion by 2024. The microcontroller socket industry is subject to witness a substantial growth due to the rising adoption of microcontroller devices in the communication sector, automobile industry, and consumer electronic sector.
Microcontrollers are miniature electronic systems that perform and manage numerous operations. This technology offer seamless management of electronic devices through set of instructions. Globally, the microcontroller socket market is predicted to grow at higher CAGR in the forecast period, providing numerous opportunities for market players to invest for research and development in the microcontroller socket industry.
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The microcontroller socket are also termed as low-power embedded systems that offers advantages such as low power consumption, optimal data bandwidth, and high-end user interface support. Other advantages include flexibility, susceptibility and low system cost. These factors are anticipated to fuel market demand for microcontroller sockets in the upcoming years. Increasing demand for microcontroller technology from automotive sector to reduce operation cost during various manufacturing processes and to improve overall fuel economy are expected to stimulate market expansion over the forecast period. Introduction of power train feature for manufacturing and designing processes is projected to positively impact market growth as well in the years to come.
Development of integrated circuits (IC) solution that can perform range of application with low-cost, low-profile, and low-power design requirements are major contributing factor for industry growth in the upcoming years. Number of original equipment manufacturers (OEMs), system developers, foundries, packaging and test sub-contractors, and chip manufacturers are investing heavily to develop the next generation packaging solutions. These next generation packaging solutions are capable of delivering faster and economical solutions. These factors are expected to amplify market value of microcontroller sockets over the forecast period.
The microcontroller socket market is broadly categorized into five major segments based on the product type such as Dual In-line Package (DIP), Ball Grid Array (BGA), Quad Flat Package (QFP), Small Outline Package (SOP), and Small Outline IC Package (SOIC). The Ball Grid Array (BGA) is considered as one of the fastest growing segment in the with substantial revenue generation in the last few years.
The microcontroller socket industry is divided by region as North America, Europe, Asia-Pacific, Latin America and Africa. North America has shown major growth in recent years owing to the rise in the implementation of latest technologies in packaging sector, increase in the number of research & development activities in the region and existence of well-established industrial infrastructure. Asia-Pacific region is predicted to hold major market share in the microcontroller socket market with massive growth in forecast period.
Countries such as India, China and Singapore are leading the Asia-Pacific market with rapid industrialization, strong economic growth, and significant investment by leading industry players considering potential growth opportunities in the region. The key players in the microcontroller socket industry are Texas Instruments, Inc., Aries Electronics, Inc., Mill-Max Manufacturing Co., CNC Tech LLC, and Samtec, Inc.
Read Complete Report with TOC @ https://www.millioninsights.com/industry-reports/microcontroller-socket-market
Market Segment:
Microcontroller Socket Product Outlook (Revenue, USD Billion, 2014 - 2024) • DIP • BGA • QFP • SOP • SOIC
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Microcontroller Socket Market Reach $5.17 Billion By 2024: Grand View Research, Inc.
The global microcontroller socket market is expected to reach USD 1.46 billion by 2024, according to a new report by Grand View Research, Inc. The increasing development and growth of automation and re-automation in the emerging countries are expected to fuel the industry growth.
The growth of automation has led to miniaturization and digitization as well as facilitates dynamics in the field of technology. The increasing need of providing high performance with power efficiency has further led to the development of automation technology at a rapid pace. The increasing labor costs and the growing demand for higher quality have encouraged the industry participants to opt for automated equipment in the programming process.
Gradually reducing the package size in the microelectronics industry has also impacted the market growth in a positive manner. industry requirements, such as higher density, increased operating speed, and lower power, have driven packaging in the industry, which has further led to an enhanced demand within the market.
Furthermore, the demand for thinner, smaller, and lesser expensive device packaging has also encouraged manufacturers to control the programming cost. The increasing demand in automotive, consumer electronics, medical devices for more accurate data, and in military & defense for enhanced security has also encouraged the industry participants to further reduce the package size.
Intense competition in the market has led the industry participants to enhance the product quality and process technologies as per the market requirement. However, failure to develop new designs and delays in developing new products with advanced technology may adversely affect the manufacturer market.
Browse full research report on Microcontroller Socket Market: http://www.grandviewresearch.com/industry-analysis/microcontroller-socket-market
Further key findings from the report suggest:
The microcontroller socket market is expected to boost over the forecast period owing to the increasing microcontroller applications in various segments
The QFP socket is expected to grow at a CAGR of over 7% from 2016 to 2024, owing to the growing trend of automation and re-automation in the emerging countries
The automotive segment is projected to dominate over the forecast period owing to the huge application of the socket in the manufacturing of automobiles, such as body electronics, for enhancing driver safety
The majorindustry players in the microcontroller socket market include Texas Instruments, Aries Electronics, Mill-Max Manufacturing Corporation, and Samtec, Inc.
Browse more reports of this category by Grand View Research: http://www.grandviewresearch.com/industry/communication-services
Grand View Research has segmented the microcontroller socket market based on product, application, and region:
Microcontroller Socket Product Outlook (Revenue, USD Billion, 2014-2024)
DIP
BGA
QFP
SOP
SOIC
Microcontroller Socket Application Outlook (Revenue, USD Billion, 2014-2024)
Automotive
Consumer Electronics
Industrial
Medical Devices
Military & Defense
Microcontroller Socket Regional Outlook (Revenue, USD Billion, 2014-2024)
North America
Europe
Asia Pacific
Latin America
MEA
Access press release of this research report by Grand View Research: http://www.grandviewresearch.com/press-release/global-microcontroller-socket-market
About Grand View Research
Grand View Research, Inc. is a U.S. based market research and consulting company, registered in the State of California and headquartered in San Francisco. The company provides syndicated research reports, customized research reports, and consulting services. To help clients make informed business decisions, we offer market intelligence studies ensuring relevant and fact-based research across a range of industries, from technology to chemicals, materials and healthcare.
Contact:
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Corporate Sales Specialist, USA
Grand View Research, Inc
For more information: www.grandviewresearch.com
#Microcontroller Socket Market#Microcontroller Socket Market Size#Microcontroller Socket Market Analysis
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