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Global Electronic Gyroscope Market Size By Technology, By Application, By End-User Sector, By Geographic Scope And Forecast


Published on: 2024-08-08 | No of Pages : 320 | Industry : latest updates trending Report

Publisher : MIR | Format : PDF&Excel

Global Electronic Gyroscope Market Size By Technology, By Application, By End-User Sector, By Geographic Scope And Forecast

Electronic Gyroscope Market Size And Forecast

Electronic Gyroscope Market size was valued at USD 13.5 Billion in 2023 and is projected to reach USD 49.2 Billion by 2030, growing at a CAGR of 16.2% during the forecast period 2024-2030.

Global Electronic Gyroscope Market Drivers

The growth and development of the Electronic Gyroscope Market is attributed to certain main market drivers. These factors have a big impact on how Electronic Gyroscope are demanded and adopted in different sectors. Several of the major market forces are as follows

  • Growing Demand in Consumer Electronics Virtual reality headsets, gaming consoles, tablets, smartphones, and other consumer electronics all make extensive use of electronic gyroscopes. The need for electronic gyroscopes is fueled in part by the growing use of these gadgets.
  • car areas Advanced driving assistance systems (ADAS), inertial navigation systems, and electronic stability control are just a few of the areas in which the car industry is using electronic gyroscopes. Gyroscope development has been aided by the expansion of the automotive sector, notably in the area of autonomous vehicle development.
  • Rise in Industrial Automation Gyroscopes are essential for supplying precise orientation and motion sensing data, as industrial automation depends on these technologies. The need for gyroscopes may increase as companies use automation more and more to increase productivity and accuracy.
  • Developments in MEMS Technology The fabrication of more affordable, smaller gyroscopes has been made possible by advancements in Micro-Electro-Mechanical Systems (MEMS) technology. Thanks to developments in MEMS technology, gyroscopes can now be used for a wider variety of purposes.
  • Applications in Defence and Aerospace Gyroscopes are essential parts of navigation systems for drones, aeroplanes, missiles, and other defense-related devices. The market demand for high-performance gyroscopes is influenced by the continuous advancements in aerospace and defence technologies.
  • New Uses in Healthcare Electronic gyroscopes are used in medical equipment and wearable fitness trackers, among other healthcare products. Gyroscope demand in the healthcare industry may be driven by wearable technology and the growing emphasis on health monitoring.
  • Robots and Drones Gyroscopes are necessary for the control and guidance of robots and drones. The market for electronic gyroscopes benefits from the expansion of the robotics and drone sectors.
  • Growth of the Internet of Things (IoT) As the IoT ecosystem grows, gyroscopes and other sensors become more necessary to allow smart and connected devices to collect and process motion and orientation-related data.
  • Initiatives for Research and DevelopmentMarket expansion may be fueled by ongoing R&D initiatives targeted at enhancing gyroscope performance, accuracy, and dependability.

Global Electronic Gyroscope Market Restraints

The Electronic Gyroscope Market has a lot of room to grow, but there are several industry limitations that could make it harder for it to do so. It’s imperative that industry stakeholders comprehend these difficulties. Among the significant market limitations are

  • Cost Sensitivity Expenses can be a major deterrent, particularly in regions with high levels of price sensitivity. Cost-effective gyroscope production may provide hurdles for manufacturers, especially for applications requiring a high degree of precision.
  • Competition from Alternative Technologies Electronic gyroscopes may face competition from alternative technologies like accelerometers and optical gyroscopes. These alternatives may compete on aspects like cost and performance and offer comparable functionality, depending on the application.
  • Miniaturisation Challenges Despite the fact that MEMS technology has made it possible to reduce the size of gyroscopes, there can still be difficulties in reaching the smallest form factors needed for some applications, especially when it comes to wearable technology and other small electronics.
  • Limited Accuracy and Precision in Some Applications Compared to more costly and specialised gyroscopic technologies, electronic gyroscopes may have limitations in certain high-precision applications. This can limit their use in some fields and applications.
  • Integration Problems Including gyroscopes in intricate platforms or systems can be difficult, particularly if incompatibilities occur. For best results, smooth integration with additional sensors and parts is essential.
  • Sensor Drift and Calibration Over time, electronic gyroscopes may encounter sensor drift, which could result in inaccurate readings. Particularly in applications requiring a high degree of precision, calibration requirements and the requirement for periodic recalibration might be a hindrance.
  • Technological Developments in Rival Technologies  If alternative technologies—like quantum sensors or forthcoming sensor technologies—offer better performance or distinctive features, they could threaten electronic gyroscopes’ market dominance.
  • Disruptions in the Global Supply Chain  Unexpected occurrences, natural disasters, or geopolitical unrest can all cause disruptions in the global supply chain, which can affect the availability of essential parts needed to manufacture gyroscopes.
  • Regulatory Compliance and Standards It can be difficult to follow industry rules and regulations, particularly in the aerospace and defence industries. The development and marketing of electronic gyroscopes may become more complex in order to meet the strict standards.
  • Limited Awareness in Some sectors It’s possible that some sectors don’t fully understand the advantages and potential applications of electronic gyroscopes. To encourage the adoption of these technologies in new industries, education and awareness campaigns might be required.

Global Electronic Gyroscope Market Segmentation Analysis

The Global Electronic Gyroscope Market is Segmented on the basis of Technology, Application, End-User Sector, and Geography.

1. By Technology

  • MEMS Gyroscopes These gyroscopes may be miniaturised and integrated into small electronic devices like wearables, smartphones, and consumer electronics since they are based on Micro-Electro-Mechanical Systems (MEMS) technology.
  • Fibre Optic Gyroscopes (FOG) These gyroscopes measure rotation by measuring the interference of light in optical fibres. FOGs are frequently utilised in aerospace and defence applications and are renowned for their extreme precision.
  • Ring Laser Gyroscopes (RLGs) RLGs detect rotation by means of the Sagnac effect in a closed loop of optical fibre. They are frequently used in missile, ship, and aircraft navigation systems.

2. By Application

  • Consumer Electronics Gyroscopes are widely utilised for motion sensing, gaming, and orientation detection in smartphones, tablets, gaming consoles, and virtual reality devices.
  • Car Gyroscopes are used in advanced driving assistance systems (ADAS), inertial navigation systems, and electronic stability control in the car industry.
  • Defence and Aerospace Gyroscopes are essential parts of navigation systems for drones, missiles, aeroplanes, and other defense-related applications.
  • Industrial Automation Accurate orientation and motion sensing data are provided by gyroscopes to industrial automation systems.
  • Healthcare Gyroscopes are used to monitor motion and orientation in wearable fitness trackers and medical devices.
  • Robotics and Drones Gyroscopes help drones and robotic devices navigate and stabilise.
  • IoT Devices As the Internet of Things (IoT) expands, gyroscopes are being incorporated for motion sensing applications into a wide range of smart and networked devices.

3. By End-User Sector

  • Telecommunications Gyroscopes are employed in the infrastructure of telecommunications companies for tasks such as antenna placement.
  • Medical Devices Gyroscopes are used in surgical instruments, patient monitoring devices, and medical imaging equipment in the healthcare industry.
  • Oil and Gas To precisely assess borehole parameters, downhole drilling instruments use gyroscopes.
  • Entertainment and Gaming Applications for gaming controllers, virtual reality headsets, and motion-sensing gear that are geared at consumers.
  • Precision Agriculture Precision agriculture equipment can use gyroscopes for precise positioning and monitoring.

4. By Geography

  • North America
  • Europe
  • Asia-Pacific
  • Latin America
  • Middle East and Africa

Key Players

The major players in the Electronic Gyroscope Market are

  • InvenSense (US) (now part of TDK)
  • Bosch Sensortec GmbH (Germany)
  • STMicroelectronics N.V. (Switzerland)
  • TE Connectivity Ltd. (Switzerland)
  • Honeywell International Inc. (US)
  • Analog Devices, Inc. (US)
  • NXP Semiconductors N.V. (Netherlands)
  • Murata Manufacturing Co., Ltd. (Japan)
  • Seiko Epson Corporation (Japan)
  • Panasonic Corporation (Japan)

Report Scope

REPORT ATTRIBUTESDETAILS
STUDY PERIOD

2020-2030

BASE YEAR

2023

FORECAST PERIOD

2024-2030

HISTORICAL PERIOD

2020-2022

UNIT

Value (USD Billion)

KEY COMPANIES PROFILED
  • InvenSense (US) (now part of TDK)
  • Bosch Sensortec GmbH (Germany)
  • STMicroelectronics N.V. (Switzerland)
  • TE Connectivity Ltd. (Switzerland)
  • Honeywell International Inc. (US)
  • Analog Devices, Inc. (US)
  • NXP Semiconductors N.V. (Netherlands)
  • Murata Manufacturing Co., Ltd. (Japan)
SEGMENTS COVERED

Technology, Application, End-User Sector, and Geography.

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