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Sensors for Wearable Electronics

From Technologies to Market Sensors for Wearable Electronics &. Mobile Healthcare Report June 2015. Sensors FOR Wearable Electronics AND MOBILE HEALTHCARE. Table of Contents Executive Summary 13 Forecasts on Global Wearable Market 149. Introduction, Definitions & Methodology 14 Forecasts by Device 156. About Wearables 31 Forecasts by sensor 195. Applications and Market Segmentation 44 sensor for Consumer Sensors for wearables 52 sensor for Healthcare Key Attributes and Mapping of a Wearable Device 59 sensor for Industrial/Defense Devices & Sensors for Consumer Market 68 Technical Challenges 213.

6 THE RISE OF THE WEARABLE ELECTRONIC Technologies are now ready… @2015 | www.yole.fr | Sensors for Wearable Electronics & Mobile Healthcare Recent advances in telecommunications, microelectronics, sensor manufacturing and data analysis

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Transcription of Sensors for Wearable Electronics

1 From Technologies to Market Sensors for Wearable Electronics &. Mobile Healthcare Report June 2015. Sensors FOR Wearable Electronics AND MOBILE HEALTHCARE. Table of Contents Executive Summary 13 Forecasts on Global Wearable Market 149. Introduction, Definitions & Methodology 14 Forecasts by Device 156. About Wearables 31 Forecasts by sensor 195. Applications and Market Segmentation 44 sensor for Consumer Sensors for wearables 52 sensor for Healthcare Key Attributes and Mapping of a Wearable Device 59 sensor for Industrial/Defense Devices & Sensors for Consumer Market 68 Technical Challenges 213.

2 Inertial Sensors sensor Fusion 226. Microphone Packaging 238. Gas/Environmental FDA Regulation and Supervision 256. Pressure Consumer Market Analysis 274. NFC Conclusion & Perspectives 286. Devices & Sensors for Healthcare 96 Yole's Presentation 291. Devices & Sensors for Industrial/Defense 135. @2015 | | Sensors for Wearable Electronics & Mobile Healthcare 2. WHO SHOULD BE INTERESTED IN THIS REPORT? Integrators Government agencies Understand the system level technology trends and Find the best technologies to integrate and the best suppliers requirements for each application depending on your target markets Evaluate market potential for your components depending on Understand what will be the future applications to develop performance and technology and benefit from the recent advances in inertial technologies Understand the differentiated value of your products and Define technology roadmap / evaluate the

3 Benefits of using technologies new technologies in end systems, design architectures for the Identify new business opportunities and partners next generation of systems Monitor and benchmark your competitor's advancements Screen potential new suppliers able to provide new functionalities, or cost and size savings OEM, integrators R&D centers Evaluate the market potential of your product portfolio Evaluate market potential of future technologies and Define diversification strategies on new applications products for new applicative markets Find the best technologies to integrate and the best suppliers Identify the best candidates for technology transfer depending on your target markets Identify new business opportunities and partners Financial & strategic investors Have an exhaustive analysis of the competition on a broad

4 Understand the structure and value chain of the high-end range of IMU field inertial industry Estimate the potential of new technologies (tactical/inertial Material supplier, manufacturing service companies navigation MEMS, navigation-grade HRG ). Spot new business opportunities and prospects Get the list of main key players and emerging start-ups of this Understand the level of activity of your customers industry worldwide Understand what are the applications that will drive the volumes in 2017. @2015 | | Sensors for Wearable Electronics & Mobile Healthcare 3.

5 COMPANIES CITED IN THIS REPORT. Adidas, AiQ, Apple, Atmel, Basis, Beurer, Bosch, Cambridge CMOS Sensors , CEA Liten, China Mobile, Cisco, Darpa, Fitbit, Fraunhofer, Garmin, Google, Hillcrest Labs, Honeywell, HTC, Huawei, IBM, Imec, Infomotion Sports Technologies, Intel, InvenSense, ITL, Jabra, Jawbone, Johnson & Johnson, Kionix, Knowles Electronics , LG, LumoBack, MC10 Inc., Marlow Industries, Medtronic, MEMSIC, Micropelt, Microsoft, Misfit, Motorola, Murata, Mio, Navisens, Nike, Nintendo, Nokia, NXP Semiconductors, OMRON, Philips, Polar, Pebble, Proteus, Raytheon, Samsung, SemTech, Sensirion, Sharp, Si Time, SiLabs, SmartThings, Sony, STMicroelectronics, Synkera Technologies, Teledyne DALSA, Texas Instruments, Tronics MicroSystems, TSMC,Variable Technologies,Vital Connect, Withings, Xiaomi, X-Fab MEMS.

6 Foundry, Zephyr . @2015 | | Sensors for Wearable Electronics & Mobile Healthcare 4. INTRODUCTION. 2015, starting year for Wearable ? This document is an all new report of Yole D veloppement, about current trends in Wearable and mobile care devices. This report will cover technology trends, applications This report trends, and will provide all the data and insights required to understand the market of synthetizes Wearable and mobile care. the status of the 2015. sensor Applications are described in a synthetic way in order to provide rapid access to key information (functions, industry for specification, technical solution, geography, trends, and market evolution) and graphical representation of the Wearable and industrial chain mobile care and also future trends This report combines the best of Yole's knowledge in the consumer sensor industry and in the medical sector.

7 Yole regularly participates in industry conferences and tradeshows worldwide, and has close relations with most market leaders. This report synthetizes the status of the 2015 sensor industry for Wearable and mobile care and also future trends. @2015 | | Sensors for Wearable Electronics & Mobile Healthcare 5. THE RISE OF THE Wearable electronic . Recent advances in telecommunications, microelectronics, sensor manufacturing and data analysis techniques have opened up new opportunities for using Wearable technology in daily life to achieve a range of health outcomes.

8 Why do we note such interest in Wearable technologies and why do we see now such interest on the consumer market and not before? Many factors are converging to ease Wearable technology integration including expanded wireless capacity (Bluetooth, Wi-Fi, WiMAX, and LTE), cellular market expansion who slows down and the need for technological companies to establish new revenue streams, in the continuously decreasing cost of data, and the significant backing from huge companies including Google, Apple, and others. Technologies However, in the past, the size of Sensors and front-end Electronics made it too difficult and offered are now inaccuracy data to use them in Wearable tech to gather physiological and inertial data.

9 Ready . With the advent of Sensors integrated in smartphones initiated in 2007, Wearable simply benefits from the smooth evolution of accurate technologies already integrated in smartphones. Today, with smaller circuits, microcontroller functions, sensor fusion and wireless data transmission, Wearable Sensors are now ready to flood the @2015 | | Sensors for Wearable Electronics & Mobile Healthcare 6. DRIVERS FOR Wearable AND MOBILE CARE APPLICATIONS. Level of integration Time Wearable Everywhere Care and Mobile Care Point of Care Smartphone &.

10 Two markets Tablet revolution are mature to perform well Hospital Care Feature Phones @2015 | | Sensors for Wearable Electronics & Mobile Healthcare 7. MEMS & Sensors ROADMAP. From More than Moore towards Beyond Law TODAY. Industry competition Industry competition Industry Competition Moore More than Moore Beyond Moore Processing Sensing Actuating Information age Interaction age Enhancement age MEMS &. Sensors Telekinesis enable key functionalities Robotic Servants Current Autonomous battleground vehicles of the Drones industry Smart Quantified homes self Smartphones Personal Computers Laptop Tablets 1980 2010 2030 2040.


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