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感應器、檢測主要技術:2018年

2018 Top Technologies in Sensors & Instrumentation

出版商 Frost & Sullivan 商品編碼 357216
出版日期 內容資訊 英文 75 Pages
商品交期: 最快1-2個工作天內
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感應器、檢測主要技術:2018年 2018 Top Technologies in Sensors & Instrumentation
出版日期: 2018年04月30日內容資訊: 英文 75 Pages
簡介

本報告針對短期、中期可能產生巨大影響的10組感應器、檢測技術提供各技術的破壞性、促進因素、市場潛力、專利、資金、應用、主要趨勢影響等評估報告。

第1章 摘要整理

第2章 生物感應器

  • 技術的重要性與魅力度儀表板
  • 新生物感測平台促進市場成長
  • 專利及資金動向的分析
  • 醫療及製造是高度成長市場
  • 利害關係人的生態系統

第3章 LiDAR感應器

  • 技術的重要性與魅力度儀表板
  • 技術的聚合促進了全球LiDAR技術
  • 專利動向與資金分析
  • 汽車、UAV是主要成長應用領域
  • 利害關係人的生態系統

第4章 感應器融合

  • 技術的重要性與魅力度儀表板
  • 技術的聚合促進了全球感應器融合市場
  • 專利趨勢分析及資金重點領域
  • 汽車、UAV是主要成長應用領域
  • 利害關係人的生態系統

第5章 先進駕駛輔助系統 (ADAS)

  • 技術的重要性與魅力度儀表板
  • 專利及資金狀況:合作商業模型促進商業化
  • 影像技術的發展促進市場成長
  • 主要應用的影響分析:汽車、消費電子、通信、醫療、船舶
  • 利害關係人的生態系統

第6章 智慧感應器

  • 技術的重要性與魅力度儀表板
  • 專利研究的重點領域及資金動向分析
  • IoT促進市場成長
  • 汽車、UAV是主要成長應用領域
  • 利害關係人的生態系統

第7章 光激性感應器

  • 技術的重要性與魅力度儀表板
  • 專利動向與資金狀況
  • 影像感應器及生物光激性感應器的發展促進光激性市場的成長
  • 軍隊及生物醫療部門展現高度成長
  • 利害關係人的生態系統

第8章 手勢辨識

  • 技術的重要性與魅力度儀表板
  • 用戶介面的改良促進技術開發
  • 雙向性及多樣應用性促進技術開發
  • 穿戴式、消費性電子、汽車、安全、以及教育等是影響較大的部門
  • 利害關係人的生態系統

第9章 大範圍感應器

  • 技術的重要性與魅力度儀表板
  • 革新焦點在於利用大範圍感應器的固有潛力
  • 材料革新在大範圍感應器發展中扮演關鍵角色
  • 彈性、伸縮性、列印電子可望促進市場
  • 消費性電子及醫療是影響較大的部門
  • 利害關係人的生態系統

第10章 能源採集

  • 技術的重要性與魅力度儀表板
  • 專利動向:為了改善感應功能而重視生物製劑
  • 主要資金動向:無線感應器是EH的重要使能者
  • 應用的多樣性:智慧大樓、產業及醫療是影響較大的部門
  • 利害關係人的生態系統

第11章 電子皮膚/皮膚螢幕

  • 技術的重要性與魅力度儀表板
  • 專利動向與資金狀況:醫療是主要得到投資的應用
  • E-皮膚使得彈性、伸縮性電子以及次世代穿戴式設備的開發成為可能
  • 醫療及消費性電子是影響較大的部門
  • 利害關係人的生態系統

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目錄
Product Code: D82D

Automotive, Healthcare, Industrial, and Consumer Electronics Sectors Drive Opportunities for Advanced Sensing Technologies

The technology and innovation research report covers the top 10 Sensors and Instrumentation technologies that will have highest impact in the near-to medium-term. Key technologies in the Sensors and Instrumentation cluster were evaluated to arrive at the top 10 technologies for 2018. The technologies were selected after critical evaluation of an exhaustive list of technologies using TechVision's proprietary selection methodology. The research service assesses technologies from various aspects such as nature of disruption, key technology drivers, market potential, patents, funding, applications and megatrends impacted.

The top 10 technologies covered in this research service are Biosensors, LiDAR sensors, Sensor Fusion, ADAS, Smart sensors, Photonic Sensors, Gesture Recognition, Large area sensors, Energy Harvesting and Electronic Skin/ Skinput.

Research focus areas will continue to include capabilities beyond sensing that is being more intelligent or smart and including plug-and-play features. Some of the features include enhancing automation levels, miniaturization, intelligence, and reducing cost (while still trying to be profitable and maintaining competitive advantage). IoT concept will be key aspect in driving innovations in sensors segment. Wearables and sensors will drive opportunities in advanced healthcare and medical diagnostics and home monitoring applications. Smart wearables will involve deeper patient engagement leading to predictive healthcare. Sensor fusion systems, where information from different sensors such as LiDAR and smart sensors are combined to achieve higher accuracy are expected to transform advanced driver assistance systems (ADAS) and move automation (highly automated driving (HAD)) to the next level.

Table of Contents

1.0. EXECUTIVE SUMMARY

  • 1.1. Research Scope
  • 1.2. Top 50 Technologies - Selection Methodology
  • 1.3. Key Findings
  • 1.3. Key Findings (continued)
  • 1.4. Sensor Technology Road Ahead

2.0. BIOSENSORS

  • 2.1. Technology Significance and Attractiveness Dashboard
  • 2.2. Novel Biosensing Platforms will Drive Market Growth by 2022
  • 2.3. Patent and Funding Trend Analysis
  • 2.4. Healthcare and Manufacturing are High Growth Markets
  • 2.5. Stakeholder Ecosystem

3.0. LIDAR SENSOR

  • 3.1. Technology Significance and Attractiveness Dashboard
  • 3.2. Convergence of Technologies will Boost the LiDAR Market Globally
  • 3.3. Patent Trend and Funding Analysis
  • 3.4. Automotive and UAV are Key Growth Applications Areas
  • 3.5. Stakeholder Ecosystem

4.0. SENSOR FUSION

  • 4.1. Technology Significance and Attractiveness Dashboard
  • 4.2. Technology Convergence will Boost the Sensor Fusion Market Globally
  • 4.3. Patent Trend Analysis and Funding Focus Areas
  • 4.4. Automotive and UAVs are Key Growth Applications
  • 4.5. Stakeholder Ecosystem

5.0. ADVANCED DRIVER ASSISTANCE SYSTEM (ADAS)

  • 5.1. Technology Significance and Attractiveness Dashboard
  • 5.2. Patent and Funding Scenario: Collaborative Business Model is Driving Commercialization
  • 5.3. Developments in Imaging Technologies will Drive Market Growth
  • 5.4. Impact Assessment of Key Applications - Automotive, Consumer Electronics, Communication, Healthcare, and Marine
  • 5.5. Stakeholder Ecosystem

6.0. SMART SENSORS

  • 6.1. Technology Significance and Attractiveness Dashboard
  • 6.2. Patent Research Focus Areas and Funding Trend Analysis
  • 6.3. IoT will Drive Market Growth
  • 6.4. Automotive and UAVs are Key Growth Applications
  • 6.5. Stakeholder Ecosystem

7.0. PHOTONIC SENSORS

  • 7.1. Technology Significance and Attractiveness Dashboard
  • 7.2. Patent Trend and Funding Scenario: Major Focus is on Improving Sensing Accuracy of Devices
  • 7.3. Developments in Image Sensors and Biophotonic Sensors will Drive Growth in the Photonics Market
  • 7.4. Military and Biomedical Sectors are High Growth Sectors
  • 7.5. Stakeholder Ecosystem

8.0. GESTURE RECOGNITION

  • 8.1. Technology Significance and Attractiveness Dashboard
  • 8.2. Enhanced User Interface is Driving Technology Development
  • 8.3. Interactivity and Varied Applicability Encouraging Technology Development
  • 8.4. Wearables, Consumer Electronics, Automotive, Security, and Education are High Impact Sectors
  • 8.5. Stakeholder Ecosystem

9.0. LARGE AREA SENSORS

  • 9.1. Technology Significance and Attractiveness Dashboard
  • 9.2. Innovations Focus on Harnessing the Inherent Potential of Large Area Sensors
  • 9.3. Innovations in Materials Play a Vital Role in Development of Large Area Sensors
  • 9.4. Flexible, Stretchable and Printed Electronics are Expected to Drive the Market
  • 9.5. Consumer Electronics and Healthcare are Highly Impacted Sectors
  • 9.6. Stakeholder Ecosystem

10.0. ENERGY HARVESTING

  • 10.1. Technology Significance and Attractiveness Dashboard
  • 10.2. Patent Trend: Focus on Biological Sector to Enhance Sensing Performance
  • 10.3. Key Funding Trends: Wireless Sensors will be a Key Enabler of EH
  • 10.4. Application Diversity: Smart Buildings, Industrial, and Healthcare are High Impact Sectors
  • 10.5. Stakeholder Ecosystem
  • 10.6. Viewpoint on Growth Opportunities

11.0. ELECTRONIC SKIN/SKINPUT

  • 11.1. Technology Significance and Attractiveness Dashboard
  • 11.2. Patent Trend and Funding Scenario: Healthcare is the Primary Application Gaining Investments
  • 11.3. E-skin Enables Development of Flexible, Stretchable Electronics and Next-gen Wearables
  • 11.4. Healthcare and Consumer Electronics are High Impact Sectors
  • 11.5. Stakeholder Ecosystem
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