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市場調查報告書
商品編碼
1874459
觸覺壓力感測器:全球市場佔有率和排名、總收入和需求預測(2025-2031年)Tactile Pressure Sensor - Global Market Share and Ranking, Overall Sales and Demand Forecast 2025-2031 |
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2024 年全球觸覺壓力感測器市場規模估計為 3,850 萬美元,預計到 2031 年將達到 1.01 億美元,2025 年至 2031 年的複合年成長率為 17.0%。
本報告對近期與觸覺壓力感測器相關的關稅調整和國際策略反制措施進行了全面評估,包括其對跨境產業佈局、資本配置模式、區域經濟相互依存關係和供應鏈重組的影響。
觸覺感測器是用來測量人體與其環境之間物理互動訊息的組件。觸覺壓力感測器是一種基於動態尺寸的重要感測器類型。觸覺壓力感測器旨在測量和檢測施加在其表面的物理壓力或力。這些感測器用於量化施加在物體或表面上的力或壓力的大小,並常用於需要觸覺靈敏度或壓力檢測的應用。本報告重點關注觸覺壓力感測器市場。
推動觸覺感測器市場發展的因素包括:
1. 技術創新:從「僵化」到「靈活」的飛躍
多模態感知技術的整合
視覺觸覺感測器:基於光學原理,實現了微米級解析度的觸覺重建,突破了傳統感測器的限制。
電容式/電動式感測器:電容式感測器可以測量3D力和接近度,而電動式感測器對微弱力敏感。這兩種感測器的結合提高了抓取精度。
軟性材料應用:導電聚合物和石墨烯等材料使感測器具有高靈敏度(壓力靈敏度低至 0.1 kPa)和超薄(僅 0.1 毫米厚),模擬人類皮膚的觸覺。
利用人工智慧演算法提供智慧回饋
透過使用深度學習演算法最佳化觸覺訊號分析,實現了動態力感知和分佈式協同運動,顯著提高了機器人操作的精確度。
技術路線迭代
目前,剛性 MEMS 感測器正逐漸被軟性感測器所取代,後者在醫療機器人和消費性電子等領域得到了迅速應用。
2. 需求爆炸性成長:多元化應用場景推動市場擴張
隨著人形機器人商業化的加速,作為核心組件的觸覺感測器的需求預計將隨著機器人市場的成長而激增。
典型應用:靈巧的指尖需要整合3D力感知才能達到靈活多樣的操作。
家用電器產業的擴張
VR/AR 設備:一套 VR 手套感測器的成本超過 200 美元,但國內普及率不到 20%,這表明市場潛力巨大。
智慧型穿戴裝置:軟性觸覺感測器用於健康監測,提供心率和血壓等生理訊號的即時回饋。
醫療和工業自動化領域的需求
醫療機器人:觸覺感測器可提高手術精度並減少人為錯誤。
工業檢測:利用高精度感測器進行產品品質檢測,以提高生產效率。
物聯網與人工智慧的融合
隨著物聯網 (IoT) 設備對環境意識的需求不斷成長,作為感知層核心組件的觸覺感測器的市場需求也在持續成長。
3. 政策支持:促進全球產業發展
國家級戰略部署
中國「十四五」規劃將軟性電子產品確定為「智慧硬體」的核心領域,工業和資訊化部發布了「關於人形機器人創新和發展的指導意見」,以促進智慧感測器產業鏈的強化。
美國先進製造夥伴關係計畫正在投資1000億美元用於軟性電子產品,以增強全球技術競爭力。
地方政策支持
地方政府透過財政輔助、稅收優惠和建設工業園區等措施吸引企業,進而形成產業集群效應。
國際合作與標準制定
各國政府正在推動農業感測器等行業標準的製定,以促進技術規範和市場進入,同時加強國際合作以提高技術競爭力。
四、成本最佳化:規模經濟與國內替代
透過大規模生產降低成本
隨著產業鏈的完善和大規模生產,觸覺感測器的固定成本將被稀釋,價格預計將從每單位數千元降至更低水準。
舉例來說:鶴山科技透過全產業鏈解決方案實現了成本最佳化和市場競爭力提升。
國內替代和技術突破
國內企業在銀奈米線導電膜等關鍵材料技術領域取得了突破,減少了對進口的依賴,促進了成本最佳化。
例如,華科創志的奈米銀線導電薄膜的產量比率已提高到 85%,加快了國內替代進程。
擴展應用場景
成本降低將促進觸覺感測器在家庭服務和遠端醫療等通用場景中的應用,從而進一步推動市場需求。
5. 升級產業鏈:將從原料到系統的整個過程連結起來
上游材料創新
應用導電矽膠和石墨烯等軟性材料可以提高感測器的靈敏度和耐用性。
MEMS微納加工技術的顯著進步將使感測器的微型化和整合化成為可能。
中游製造程序的進步
我們將透過建造自動化生產線和智慧工廠來提高生產效率和產品品質。
代表公司:Pasini Perception Technology 整合霍爾效應感測器和視覺技術,以提高抓取精度。
建構下游應用生態系統
觸覺感測器已深度融入機器人、家用電子電器、醫療等領域,形成跨境應用生態系統。
觸覺感測器市場正步入黃金時代,技術、需求、政策、成本和產業鍊等各方面都在協調發展。隨著人形機器人商業化進程的加速、家電產業的擴張以及醫療自動化需求的成長,觸覺感測器市場預計未來將持續擴張。同時,政策支援與國內替代將進一步推動產業升級,形成「技術主導→需求驅動→政策支持→成本最佳化→生態系統建設」的良性循環,為全球感測器產業注入新的活力。
在全球觸覺感測器市場,歐美、日本等已開發國家的企業佔主導地位。這些企業在技術研發、產品創新和市場拓展方面擁有強大的競爭優勢。近年來,中國觸覺感測器企業也取得了顯著進步。雖然與海外企業之間仍有一定差距,但國內企業正穩步推動技術研發和市場拓展,並逐步崛起為產業領導者。
隨著技術的不斷進步和市場的不斷擴大,相信中國觸覺感測器企業未來將面臨更廣闊的發展機會。同時,國內外企業間的合作與交流也將促進觸覺感測器技術的進一步發展與創新。
儘管近年來觸覺感測領域的研究取得了許多突破,但在實用化之前仍面臨許多挑戰。這些挑戰包括:反覆形變導致的感測器性能劣化、同時進行多維多刺激檢測時串擾的隔離,以及整合感測系統中各元件間力、熱、電特性的一致性等。這些挑戰不僅帶來了新的發展機遇,也為相關材料製備、裝置加工和系統整合指明了未來的發展方向。隨著觸覺感測器變得更加靈活、小型化,並朝著智慧化、多功能化和人性化的方向發展,其應用範圍將大大擴展,無疑將在許多領域發揮不可替代的作用。
儘管該領域前景廣闊,但高昂的研發和製造成本限制了其在未來應用中的突破。一些仿生觸覺研究仍處於探索階段。由於觸覺技術的發展有限,業界仍在探索觸覺壓力感測器的商業應用場景,市場前景存在很大的不確定性。
本報告旨在依地區/國家、類型和應用對全球觸覺壓力感測器市場進行全面分析,重點關注總銷售量、收入、價格、市場佔有率和主要企業的排名。
本報告基於2020年至2031年的歷史數據和預測數據(以2024年為基準年),提供了觸覺壓力感測器的市場規模估算和預測,單位包括銷售量(千台)和收入(百萬美元)。定量和定性分析將幫助讀者制定業務和成長策略,評估市場競爭,分析自身在當前市場中的地位,並就觸覺壓力感測器做出明智的商業決策。
市場區隔
公司
依類型分類的區隔市場
應用領域
依地區
The global market for Tactile Pressure Sensor was estimated to be worth US$ 38.5 million in 2024 and is forecast to a readjusted size of US$ 101 million by 2031 with a CAGR of 17.0% during the forecast period 2025-2031.
This report provides a comprehensive assessment of recent tariff adjustments and international strategic countermeasures on Tactile Pressure Sensor cross-border industrial footprints, capital allocation patterns, regional economic interdependencies, and supply chain reconfigurations.
A tactile sensor is a components that measures the physical interaction information between its body and the environment. Tactile pressure sensor is an important sensor based on the force dimension in this type of sensor. A tactile pressure sensor is a type of sensor designed to measure and detect physical pressure or force applied to its surface. These sensors are used to quantify the amount of force or pressure exerted on an object or surface and are often used in applications that require touch sensitivity or pressure detection. Report focus on tactile pressure sensor market.
The driving factors of the tactile sensor market include the following:
1. Technological innovation: a leap from "rigidity" to "flexibility"
Multimodal perception technology integration
Visual tactile sensor: based on optical principles, micron-level resolution tactile reconstruction is achieved, breaking through the limitations of traditional sensors.
Capacitive/magnetoelectric sensors: Capacitive sensors can measure three-dimensional force and proximity, and magnetoelectric sensors are sensitive to weak forces. The combination of the two improves grasping accuracy.
Flexible material application: Conductive polymers, graphene and other materials make sensors highly sensitive (pressure sensitivity up to 0.1kPa) and ultra-thin (thickness only 0.1mm), simulating human skin touch.
AI algorithm enables intelligent feedback
Deep learning algorithms optimize tactile signal analysis, realize dynamic force perception and distributed collaboration, and significantly improve robot operation accuracy.
Technical route iteration
Rigid MEMS sensors are transformed into flexible sensors, and the latter has a rapid penetration rate in medical robots, consumer electronics and other fields.
2. Demand explosion: multi-scenario applications drive market expansion
The commercialization of humanoid robots is accelerating, and tactile sensors are core components, and demand will explode with the robot market.
Typical applications: Dexterous fingertips need to integrate three-dimensional force perception to achieve generalized operation.
Expansion in the field of consumer electronics
VR/AR equipment: The cost of a single set of VR glove sensors exceeds US$200, but the domestic penetration rate is less than 20%, and the market potential is huge.
Smart wearables: Flexible tactile sensors are used for health monitoring to achieve real-time feedback of physiological signals such as heart rate and blood pressure.
Demand for medical and industrial automation
Medical robots: Tactile sensors improve surgical accuracy and reduce human errors.
Industrial testing: High-precision sensors are used for product quality testing to improve production efficiency.
Integration of the Internet of Things and Artificial Intelligence
The demand for environmental perception of Internet of Things devices has increased, and tactile sensors, as core components of the perception layer, have continued to grow in market demand.
3. Policy support: Promoting industrial upgrading worldwide
Strategic layout at the national level
China's "14th Five-Year Plan" lists flexible electronics as the core battlefield of "smart hardware". The Ministry of Industry and Information Technology issued the "Guiding Opinions on the Innovation and Development of Humanoid Robots" to promote the improvement of the smart sensor industry chain.
The US "Advanced Manufacturing Partnership Program" has invested $100 billion in flexible electronics to strengthen global technological competitiveness.
Local policy support
Local governments attract enterprises to settle in through financial subsidies, tax incentives, industrial park construction and other measures to form an industrial agglomeration effect.
International cooperation and standard setting
Governments of various countries promote the formulation of industry standards such as agricultural sensors, promote technical specifications and market access, and strengthen international cooperation to enhance technological competitiveness.
IV. Cost optimization: scale effect and domestic substitution
Massive production drives cost reduction
With the improvement of the industrial chain and large-scale production, the fixed cost of tactile sensors is diluted, and the price is expected to drop from a single thousand yuan level to a lower level.
Typical case: Heshan Technology optimizes costs and improves market competitiveness through a full-chain solution.
Domestic substitution and technological breakthroughs
Domestic companies break through key material technologies such as silver nanowire conductive films, reduce import dependence, and promote cost optimization.
For example, the yield rate of Huake Chuangzhi silver nanowire conductive film has increased to 85%, accelerating the process of domestic substitution.
Application scenario expansion
Cost reduction will promote the application of tactile sensors in generalized scenarios such as home services and telemedicine, further driving market demand.
5. Industrial chain upgrade: full-chain collaboration from materials to systems
Upstream material innovation
The application of flexible materials such as conductive silicone and graphene improves sensor sensitivity and durability.
Breakthrough in MEMS micro-nano processing technology to achieve miniaturization and integration of sensors.
Midstream manufacturing upgrade
Automated production lines and smart factory construction to improve production efficiency and product quality.
Typical enterprise: Pasini Perception Technology improves grasping accuracy through the integration of Hall effect sensors and vision.
Downstream application ecosystem construction
Tactile sensors are deeply integrated with robots, consumer electronics, medical and other fields to form a cross-border application ecosystem.
The tactile sensor market is ushering in a golden period of coordinated development of technology, demand, policy, cost and industrial chain. In the future, with the acceleration of the commercialization of humanoid robots, the expansion of the consumer electronics field and the growth of medical automation demand, the scale of the tactile sensor market will continue to expand. At the same time, policy support and domestic substitution will further promote industrial upgrading, forming a virtuous cycle of "technology-driven-demand-driven-policy-boosted-cost optimization-ecological construction", injecting new momentum into the global sensor industry.
In the global tactile sensor market, companies in developed countries such as Europe, United States, and Japan dominate. These companies have strong competitive advantages in technology research and development, product innovation, and market development. In recent years, Chinese tactile sensor companies have also made significant progress. Although there is still a certain gap compared with foreign companies, domestic companies have continued to work hard in technology research and development and market development, and are gradually emerging.
With the continuous advancement of technology and the continuous expansion of the market, it is believed that Chinese tactile sensor companies will usher in a broader development space in the future. At the same time, cooperation and exchanges between domestic and foreign companies will also promote the further development and innovation of tactile sensor technology.
Although research in the field of tactile sensing has made many breakthroughs in recent years, it still faces many challenges in practical applications, such as performance degradation of sensors during repeated deformation, crosstalk decoupling of multi-dimensional and multi-stimulus simultaneous detection, and matching of force, heat, and electrical properties between devices within the integrated sensing system. These challenges have brought new development opportunities and pointed out the future development direction for the preparation of related materials, device processing, and system integration. There is no doubt that tactile sensors will develop in a more flexible, miniaturized, intelligent, multifunctional, and humanized direction, and their applicable boundaries will be greatly broadened, playing a more irreplaceable role in more fields.
Although this field has broad prospects, the high R&D and manufacturing costs limit breakthroughs in future applications to a certain extent. Some research on bionic tactile sensations is still under exploration. Due to the limited development of tactile technology, the industry is still exploring the commercialization scenarios of tactile pressure sensor applications. There is great uncertainty in the market.
This report aims to provide a comprehensive presentation of the global market for Tactile Pressure Sensor, focusing on the total sales volume, sales revenue, price, key companies market share and ranking, together with an analysis of Tactile Pressure Sensor by region & country, by Type, and by Application.
The Tactile Pressure Sensor market size, estimations, and forecasts are provided in terms of sales volume (K Units) and sales revenue ($ millions), considering 2024 as the base year, with history and forecast data for the period from 2020 to 2031. With both quantitative and qualitative analysis, to help readers develop business/growth strategies, assess the market competitive situation, analyze their position in the current marketplace, and make informed business decisions regarding Tactile Pressure Sensor.
Market Segmentation
By Company
Segment by Type
Segment by Application
By Region
Chapter Outline
Chapter 1: Introduces the report scope of the report, global total market size (value, volume and price). This chapter also provides the market dynamics, latest developments of the market, the driving factors and restrictive factors of the market, the challenges and risks faced by manufacturers in the industry, and the analysis of relevant policies in the industry.
Chapter 2: Detailed analysis of Tactile Pressure Sensor manufacturers competitive landscape, price, sales and revenue market share, latest development plan, merger, and acquisition information, etc.
Chapter 3: Provides the analysis of various market segments by Type, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different market segments.
Chapter 4: Provides the analysis of various market segments by Application, covering the market size and development potential of each market segment, to help readers find the blue ocean market in different downstream markets.
Chapter 5: Sales, revenue of Tactile Pressure Sensor in regional level. It provides a quantitative analysis of the market size and development potential of each region and introduces the market development, future development prospects, market space, and market size of each country in the world.
Chapter 6: Sales, revenue of Tactile Pressure Sensor in country level. It provides sigmate data by Type, and by Application for each country/region.
Chapter 7: Provides profiles of key players, introducing the basic situation of the main companies in the market in detail, including product sales, revenue, price, gross margin, product introduction, recent development, etc.
Chapter 8: Analysis of industrial chain, including the upstream and downstream of the industry.
Chapter 9: Conclusion.