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MEMS Packaging Market - Growth, Trends, And Forecast (2019 - 2024)

Published on: Sep 2019 | From USD $4250 | Published By: MORDOR INTELLIGENCE | Number Of Pages: 120

Market Overview

The global MEMS packaging market is projected to grow at a CAGR of 17.8% during the forecast period 2019 - 2024. Owing to the increase in global demand for smart automotive solutions, the demand for MEMS packaging market is also expected to go up. The increasing market demand for connected devices and consumer electronics is expected to drive the market for sensors. Global industrial sensor usage is soaring due to the ever-increasing applications of sensors and government regulations, which in turn is expected to drive the demand for MEMs packaging. Gaming industry's growth is also likely to influence the market.

- Applications of various sensors in the automotive industry are rapidly growing owing to the introduction of smart automotive solutions; the industry is shifting towards providing connected vehicles and adopting ADAS. ADAS/AV market is expected to be USD 96 billion by 2025, according to Goldman Sachs. This, in turn, is expected to drive the demand for MEMS packaging market.
- The adoption rate of smartphones is increasing, and for MEMs sensors, mobile phone industry is the significant revenue-generating segment across the globe. According to Ofcom, UK's communications regulator, during the first half of fiscal 2018, UK's smartphone adoption rate stood at 78% an increase of 2% from 76% during the second half of fiscal 2017.
- MEMs packaging plays a vital role in the protection of the wafer and chipset structure from environmental factors along with providing other benefits such as conductivity, connective communication, etc. The complex manufacturing process involved in MEMs packaging is restraining the market growth; however, continuous innovation in the manufacturing process of chipsets is mitigating such restraints.

Scope of the Report

The different type of sensors offered in the market have various applications which are increasingly adopted by industries such as automotive, mobile phones, consumer electronics, healthcare, etc. The demand for connected devices and the growing smart automotive market are expected to propel the market.
Key Market Trends

Growing Adoption of Smartphones and Connected Devices is Expected to Drive the Demand

- The global number of smartphone users is increasing significantly, and usage of smartphones for various purposes such as payments, gaming, photography, GPS, etc. is going up as well. To accomplish such capabilities in smartphones, sensors are incorporated into the hardware; this is expected to drive the market demand. According to Newzoo, the number of smartphone users during fiscal 2018 stood at 3 billion and is expected to reach 3.8 billion users by 2021.
- The ever-increasing use of sensors in the smartphones is providing intuitive capabilities to the devices, which are now capable of handling various sensitive operations and such operations require safety and privacy. According to FindBiometrics, mobile device fingerprint sensor unit shipment is expected to reach 1.6 billion by 2020.
- The increasing health consciousness amongst the global populous is driving the market for connected wearable devices, such devices use sensors to track biological data of users. The global demand for connected wearable devices is driving the demand for MEMs sensors. According to CISCO Systems, there will be 1.1 billion wearable devices globally by 2022.

North America Holds the Major Share of the Market

- Owing to the existence of countries which are one of the largest economies in the world; such as the US and Canada, the North America region holds a significant share of the electronics market. North America region holds the maximum share of the MEMS sensors market; owing to its significant global market share of smart electronic devices, IoT and Automotive industry. The region is expected to be one of the pioneers in adopting ADAS enabled vehicles and self-driven transportation solutions. According to Deutsche Bank, the US ADAS unit production volume is expected to reach 18.45 million by 2021.
- The region also holds a significant share of pure-play semiconductors foundry market and drives the demand for MEMs packaging market. According to IC insights Americas was the largest pure-play semiconductor foundry market worldwide and stood at USD 30.58 billion during fiscal 2018.
- However, the Asia-Pacific region shows the highest growth rate globally. Owing to the existence of countries such as China, Japan, Korea, and Taiwan which are home to an increasing number of semiconductor foundries are driving the market for MEMs packaging. According to Semiconductor industry association, China, Japan, Korea, and Taiwan are expected to hold 18.65%, 9.58%, 19.34%, and 11.65% of the global spending respectively on new semiconductor equipment during fiscal 2020.

Competitive Landscape

The MEMS packaging market is moving towards consolidation format as the industry is capital intensive and major vendors in the market are banking on diverse product portfolio and product development to gain an edge and the innovation capabilities of any player are dependent on the investments into R&D. The industry's capital intensive nature poses an entry barrier to new entrants. Key players are ChipMos Technologies Inc., AAC Technologies, Bosch Sensortec GmbH, Infineon Technologies AG, Analog Devices, Inc., etc. A recent development in the market -

- June 2019 - AAC Technologies and Honda jointly launched a new brand of acoustic solutions for automotive which is named Personal Sound Zone (PSZ).

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- The market estimate (ME) sheet in Excel format
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1 INTRODUCTION
1.1 Scope of the Study
1.2 Key Study Deliverables
1.3 Study Assumptions

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 MARKET DYNAMICS
4.1 Market Overview
4.2 Introduction to Market Drivers
4.3 Market Drivers
4.3.1 Growing Smart Automotive Market
4.3.2 Increasing Smart Phone Adoption Rate & Connected Devices
4.3.3 Sensor Usage in Industries
4.4 Market Restraints
4.4.1 Complex Manufacturing Process
4.5 Industry Attractiveness - Porter's Five Force Analysis
4.5.1 Bargaining Power of Suppliers
4.5.2 Bargaining Power of Buyers
4.5.3 Threat of New Entrants
4.5.4 Threat of Substitute Products
4.5.5 Intensity of Competitive Rivalry
4.6 Technology Snapshot

5 MARKET SEGMENTATION
5.1 By Sensor Type
5.1.1 Inertial Sensor
5.1.2 Optical Sensor
5.1.3 Environmental Sensor
5.1.4 Ultrasonic Sensor
5.1.5 RF MEMS
5.1.6 Other Sensor Types
5.2 By End User
5.2.1 Automotive
5.2.2 Mobile Phones
5.2.3 Consumer Electronics
5.2.4 Medical Systems
5.2.5 Industrial
5.2.6 Others End Users
5.3 Geography
5.3.1 North America
5.3.2 Europe
5.3.3 Asia Pacific
5.3.4 Rest of the World

6 COMPETITIVE LANDSCAPE
6.1 Company Profiles
6.1.1 ChipMosÊTechnologies Inc.
6.1.2 AAC Technologies Holdings Inc.
6.1.3 Bosch Sensortec GmbH
6.1.4 Infineon Technologies AG
6.1.5 Analog Devices, Inc.
6.1.6 Texas Instruments Incorporated.
6.1.7 Taiwan Semiconductor Manufacturing Company Limited
6.1.8 MEMSCAP
6.1.9 Orbotech Ltd.
6.1.10 TDK Corporation

7 INVESTMENT ANALYSIS

8 MARKET OPPORTUNITIES AND FUTURE TRENDS

SECONDARY RESEARCH
Secondary Research Information is collected from a number of publicly available as well as paid databases. Public sources involve publications by different associations and governments, annual reports and statements of companies, white papers and research publications by recognized industry experts and renowned academia etc. Paid data sources include third party authentic industry databases.

PRIMARY RESEARCH
Once data collection is done through secondary research, primary interviews are conducted with different stakeholders across the value chain like manufacturers, distributors, ingredient/input suppliers, end customers and other key opinion leaders of the industry. Primary research is used both to validate the data points obtained from secondary research and to fill in the data gaps after secondary research.

MARKET ENGINEERING
The market engineering phase involves analyzing the data collected, market breakdown and forecasting. Macroeconomic indicators and bottom-up and top-down approaches are used to arrive at a complete set of data points that give way to valuable qualitative and quantitative insights. Each data point is verified by the process of data triangulation to validate the numbers and arrive at close estimates.

EXPERT VALIDATION
The market engineered data is verified and validated by a number of experts, both in-house and external.

REPORT WRITING/ PRESENTATION
After the data is curated by the mentioned highly sophisticated process, the analysts begin to write the report. Garnering insights from data and forecasts, insights are drawn to visualize the entire ecosystem in a single report.

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