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市場調查報告書
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2123396

壓電裝置:市場佔有率分析、產業趨勢與統計、成長預測(2026-2031)

Piezoelectric Devices - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2026 - 2031)

出版日期: | 出版商: Mordor Intelligence | 英文 124 Pages | 商品交期: 2-3個工作天內

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簡介目錄

據 Mordor Intelligence 稱,2025 年壓電裝置市值為 329 億美元,預計到 2031 年將達到 472.9 億美元,而 2026 年為 349.5 億美元,預測期(2026-2031 年)的複合年成長率為 6.23%。

壓電裝置市場-IMG1

本報告按產品類型(執行器和馬達、感測器、換能器等)、材料(陶瓷、單晶、聚合物等)、工作模式(壓縮/D33模式、剪切/D15模式等)、終端用戶產業(IT和電信、消費性電子、醫療保健和醫療設備等)以及地區進行細分。市場預測以美元(USD)計價。

全球壓電裝置市場趨勢與洞察

用於 5G 智慧型手機的壓電MEMS 射頻濾波器小型化(亞洲)

基於氮化鋁-鈧的體聲濾波器可實現超過 6 GHz 的頻率,同時保持高達 400 度C 的熱穩定性,且其耦合係數比標準氮化鋁高 40%。這些進步將晶片尺寸縮小至 0.83 × 0.75 mm²,並將插入損耗保持在 1.5 dB 以下,從而延長智慧型手機的電池續航時間。此外, 3D奈米機械共振器將多頻段功能整合到單一晶片上,為超寬頻連接提供了可擴展的解決方案。亞洲晶圓級密封矽腔平台實現了 439 或更高的品質因數,從而降低了製造流程和成本。隨著 6G 和毫米波技術的加速發展,對基於鈮酸鋰的超小型濾波器晶片的需求不斷成長,進一步鞏固了亞太地區的技術領先地位。

歐洲高階汽車的ADAS系統採用電動燃油噴射和壓電執行器

EPCOS 的銅電極多層致動器在 170 度C高溫下可實現超過 10 億次循環的耐久性,性能比銀鈀致動器提升 20%,同時降低了材料成本。電裝的 i-ART 系統整合了微處理器和壓電噴油器,可即時最佳化燃油噴射,即使在更嚴格的排放氣體法規下也能提高引擎效率。整合在半主動懸吊模組中的壓電感測器控制磁流變阻尼器,從而提升電動平台的乘坐舒適性和穩定性。框架式致動器傳遞的力道是慣性致動器的 300 多倍,可加快高級駕駛輔助系統 (ADAS) 的機械響應速度。採用 PowerHap 堆疊的觸覺回饋模組驅動 2 公斤重的車載顯示螢幕,提供精準的觸覺回饋,增強人機互動體驗。

歐盟的無鉛指令增加了壓電陶瓷替代品的成本。

《限制有害物質指令》正在加速從壓電陶瓷(PZT)向無鉛陶瓷的過渡,但這導致製造成本增加15-20%,並使全球供應策略更加複雜。基於KNN的織構陶瓷最近實現了550 pC/N的壓電係數,在25 度C至150 度C的溫度範圍內,其變異性小於1.2%,使其在對性能要求極高的應用中具有競爭力。一種透過對複合材料進行「反向」處理來回收氧化物的回收方法,可以將能耗降低到新生產的1%,同時保持感測性能不受影響。製造商必須維持雙供應鏈,以便在為歐盟買家擴建新生產線的同時,繼續向依賴壓電陶瓷的地區供貨,這增加了管理成本。儘管監管期限不到兩年,但成本差異正在減緩對價格敏感的家用電子電器產業對替代材料的採用。

細分市場分析

到2025年,感測器將佔壓電裝置市場佔有率的31.74%,這反映出其在智慧型手機、汽車和工業監控等各行業的廣泛應用。能源採集是成長最快的細分市場,複合年成長率達8.72%,這主要得益於自供電物聯網設備的部署,這類設備更傾向於免維護節點。執行器和馬達在銷售額方面佔據第二大佔有率,受益於電動車的普及和精密製造的興起。隨著5G部署對網路同步需求的增加,諧振器再次受到關注。此細分市場的加速成長反映了壓電發電機的技術突破,這些發電機利用矽橡膠複合複合材料,在日常彎曲條件下可實現1.56 pW/cm²的功率密度。混合元件現在將感測、驅動和能源採集整合在單一堆疊結構中,為自主機器人提供了緊湊的解決方案。嵌入地板磚中的發電機在行走負荷下可產生 249.6 毫瓦的功率,每塊地板磚的成本約為 10.20 美元,這使得智慧建築能夠以低成本的方式能源採集。

需求的融合推動了對耐高溫無鉛材料和低成本聚合物共混物的需求成長。在 50 kHz 頻率下轉換效率高達 88%的壓電變壓器可用於遠端感測器節點的射頻能源採集。隨著製造商將邊緣人工智慧整合到壓電裝置中,降噪測量和雙向回饋迴路變得至關重要,從而鞏固了壓電裝置市場中壓電設備的核心地位。

預計到2025年,陶瓷材料將佔銷售額的66.92%,這得益於PZT成熟的供應鏈和高電子機械耦合率。聚合物,尤其是PVDF,正經歷最快的成長,年複合成長率達8.29%,主要得益於軟性穿戴裝置和生物醫學植入。單晶產品在航太和國防領域表現出色,而複合材料結構則兼具多種優勢。濕式紡絲PVDF纖維在50 N的壓縮力下可輸出0.88 V的電壓,並展現出R²=0.996的線性度,使其應用拓展至軟體機器人領域。

帶隙為 5.9 eV 的 MgSiN2 薄膜的逆壓電係數為 2.3 pm/V,拓展了壓電在電子機械系統中的應用範圍。無鉛 Ba0.85Ca0.15Ti0.9Zr0.1O3 陶瓷的性能超過 650 pC/N,同時保持 96.5 度C的居里溫度,在不顯著降低性能的前提下滿足歐盟法規要求。透過載流子濃度控制,Y 摻雜 ZnO 的輸出功率提高了 8.5 倍,促進了氧化物半導體在濾波器和感測器領域的應用。這些並行進展表明,壓電裝置市場將繼續以陶瓷為中心,但同時也將日益多元化。

區域分析

亞太地區在行動電話組裝、汽車電氣化和5G快速部署等規模經濟因素的推動下,預計2025年將佔全球銷售額的38.46%。中國和韓國正在推動智慧超音波儀表和小型化射頻濾波器的研發,而日本的村田製作所、TDK和京瓷等公司則利用其在陶瓷領域的深厚專業知識,開發高利潤的多層元件。印度和東南亞正在吸引對成本敏感型產品的感測器組裝,而澳洲礦業公司則正在部署能量能源採集技術進行資產監測。人事費用的上升正在推動自動化領域的投資,進一步增加了對高品質壓電元件的需求。

北美佔據第二大市場佔有率,這主要得益於國防和航太專案對高超音速級陶瓷的需求。美國國防部已撥款SBIR 24.1資金用於積層製造的紋理壓電元件,刺激了國內研發。在加拿大,高功率能源採集正被指定用於偏遠地區的油井;美國的半導體製造廠也擴大採用精密平台。為了滿足美國每年30%至50%的成長需求,Physik Instrumente在麻薩諸塞州開設了一家佔地12萬平方英尺的工廠。墨西哥的汽車工廠正利用其供應鏈的接近性,將壓電噴射器和觸覺模組整合到ADAS(高級駕駛輔助系統)中。

在歐洲,受嚴格的環保法規和豪華車生產的推動,對無鉛陶瓷和新一代致動器的需求正在成長。德國汽車製造商正在採用壓電懸吊和噴射器,北歐電力公司則在其電網中部署感測器。此外,法國航太業對高溫單晶的需求也不斷成長。預計到2031年,中東和非洲地區的複合年成長率將達到8.14%,成為成長最快的地區,這主要得益於沿岸地區管道、智慧城市和太陽能園區中管道振動能源採集和基礎設施流量計的部署。在預測期內,非洲地區為實現供應多元化所做的努力有望轉化為上游產業的實質優勢。

其他好處:

  • Excel格式的市場預測(ME)表
  • 3個月的分析師支持

目錄

第1章:引言

  • 研究假設和市場定義
  • 調查範圍

第2章:調查方法

第3章執行摘要

第4章 市場狀況

  • 市場概覽
  • 市場促進因素
    • 用於 5G 智慧型手機的壓電 MEMS 射頻濾波器小型化(亞洲)
    • 歐洲高階汽車的ADAS電動燃油噴射系統和壓電執行器
    • 美國離散製造業對符合工業 4.0 標準的壓電感測器的維修。
    • 韓國和中國的電力和燃氣公司引入智慧超音波電錶
    • 微振動能源採集在偏遠地區油氣管道的應用(中東)
    • 美國國防部門對高超音速壓電陶瓷的聯邦資助。
  • 市場限制因素
    • 歐盟的無鉛指令提高了 PZT 替代材料的成本。
    • 由於鈮和鋰的供應來源單一,導致價格波動。
    • 資本密集、多階段生產限制了中小企業的進入(JP/DE)
    • 飛機引擎中聚合物壓電薄膜的溫度極限
  • 產業供應鏈分析
  • 監管和技術展望
  • 波特五力分析

第5章 市場規模與成長預測

  • 依產品類型
    • 執行器和電機
    • 感應器
    • 感應器
    • 發電機
    • 能源採集
    • 共振器
  • 材料
    • 陶瓷
    • 單晶
    • 聚合物(例如,聚偏氟乙烯)
    • 複合材料/其他
  • 透過操作模式
    • 壓縮/D33模式
    • 剪切/d15模式
    • 彎曲製程/d31模式
    • 厚度模式超音波
  • 按最終用戶行業分類
    • 資訊科技/通訊
    • 家用電子產品
    • 製造和工業自動化
    • 汽車和運輸業
    • 醫療保健和醫療設備
    • 航太/國防
    • 能源公用事業
  • 按地區
    • 北美洲
      • 美國
      • 加拿大
      • 墨西哥
    • 歐洲
      • 德國
      • 英國
      • 法國
      • 北歐的
      • 其他歐洲國家
    • 南美洲
      • 巴西
      • 其他南美國家
    • 亞太地區
      • 中國
      • 日本
      • 印度
      • 東南亞
      • 其他亞太國家
    • 中東和非洲
      • 中東
        • 波灣合作理事會(GCC)成員國
        • 土耳其
        • 其他中東國家
      • 非洲
        • 南非
        • 其他非洲國家

第6章 競爭情勢

  • 市場集中度
  • 策略性舉措(併購、合資、資金籌措、技術許可)
  • 市佔率分析
  • 公司簡介
    • APC International, Ltd.
    • Physik Instrumente(PI)GmbH and Co. KG
    • Morgan Advanced Materials plc
    • CTS Corporation(incl. Noliac)
    • CeramTec GmbH
    • TDK Corporation
    • Murata Manufacturing Co., Ltd.
    • Kyocera Corporation
    • Piezotech SAS(Arkema Group)
    • Piezomechanik Dr. Lutz Pickelmann GmbH
    • Piezosystem Jena GmbH
    • Mad City Labs, Inc.
    • Aerotech, Inc.
    • Johnson Matthey Piezo Products GmbH
    • Kistler Group
    • Piezo.com(Meggitt PLC)
    • Parker Hannifin-Meggitt Sensing
    • Mide Technology(QinetiQ North America)
    • TRS Technologies, Inc.
    • Triumph Group-Transducer Systems

第7章 市場機會與未來展望

簡介目錄
Product Code: 67184

According to Mordor Intelligence, the piezoelectric devices market size was valued at USD 32.9 billion in 2025 and estimated to grow from USD 34.95 billion in 2026 to reach USD 47.29 billion by 2031, at a CAGR of 6.23% during the forecast period (2026-2031).

Piezoelectric Devices - Market - IMG1

This report is Segmented by Product Type (Actuators and Motors, Sensors, Transducers, and More), Material (Ceramics, Single-Crystal, Polymers, and More), Operating Mode (Compression/D33 Mode, Shear/D15 Mode, and More), End-User Industry (IT and Telecommunication, Consumer Electronics, Healthcare and Medical Devices, and More), and Geography. The Market Forecasts are Provided in Terms of Value (USD).

Global Piezoelectric Devices Market Trends and Insights

Miniaturization of Piezo-MEMS RF Filters for 5G Smartphones (Asia)

Bulk acoustic wave filters built on aluminum scandium nitride now achieve frequencies above 6 GHz with coupling coefficients 40% higher than standard aluminum nitride, while maintaining thermal stability to 400 °C. These advances shrink die footprints to 0.83 X 0.75 mm2 and keep insertion losses below 1.5 dB, preserving smartphone battery life. Three-dimensional nanomechanical resonators further consolidate multiband functions onto single chips, creating scalable solutions for ultrawide-band connectivity. Asian wafer-level sealed silicon cavity platforms have achieved quality factors above 439, reducing production steps and cost. As 6G and millimeter-wave initiatives gather pace, demand rises for lithium niobate-based ultra-small filter chips, reinforcing Asia-Pacific's technology leadership.

Electrified Fuel-Injection and ADAS Piezo Actuators in European Premium Cars

Copper-electroded EPCOS multilayer actuators withstand more than 1 billion cycles at 170 °C, offering 20% performance gains over silver-palladium units while trimming material expenses. DENSO's i-ART system integrates microprocessors with piezo injectors to tailor fuel delivery in real time, enhancing engine efficiency under stricter emission norms.] Piezo sensors in semi-active suspension modules support magnetorheological dampers that raise ride comfort and stability for electrified platforms. Frame-type actuators transmit forces over 300 times higher than inertial models, giving advanced driver-assistance systems quicker mechanical response. Haptic feedback modules using PowerHap stacks now move 2 kg automotive displays with precise tactile cues that bolster human-machine interaction.

EU Lead-Free Directive Increasing Cost of PZT Substitutes

The Restriction of Hazardous Substances mandate propels the migration from PZT to lead-free ceramics that carry 15-20% higher production costs and complicate global supply strategies. KNN-based textured ceramics recently reached 550 pC/N piezo coefficients with less than 1.2% variability between 25 °C and 150 °C, making them competitive for performance-critical uses. Recycling methods that reclaim oxides via upside-down composite processing slash energy demand to 1% of virgin production and keep sensing quality intact. Manufacturers must maintain twin supply chains to serve PZT-dependent regions while scaling pristine lines for EU buyers, raising overheads. Cost differentials slow substitution in price-sensitive consumer electronics even as regulatory deadlines loom within two years.

Other drivers and restraints analyzed in the detailed report include:

  1. Industry 4.0 Retrofit Demand for Piezo Sensors in United States Discrete Manufacturing
  2. Smart Ultrasonic Meter Roll-outs in South-Korea and China Utilities
  3. Price Volatility from Single-Source Niobium and Lithium Supply

For complete list of drivers and restraints, kindly check the Table Of Contents.

Segment Analysis

Sensors captured 31.74% of piezoelectric devices market share in 2025, reflecting their cross-industry ubiquity in smartphones, vehicles, and industrial monitoring. Energy harvesters form the fastest-growing cohort at a 8.72% CAGR, aligned with self-powered IoT rollouts that favor maintenance-free nodes. Actuators and motors hold the second-largest slice by revenue, benefiting from EV adoption and precision manufacturing. Resonators see renewed traction as 5G deployment raises network synchronization requirements. The segment's acceleration mirrors break-throughs in piezoelectric nanogenerators that pair silicone rubber composites with power densities of 1.56 pW/cm2 under daily flexing. Hybrid devices now combine sensing, actuation, and harvesting within a single stack, offering compact solutions for autonomous robots. Generators embedded in floor tiles yield 249.6 mW under foot traffic at roughly USD 10.2 per tile, illustrating low-entry energy harvesting for smart buildings.

Demand convergence places upward pressure on high-temperature lead-free materials and low-cost polymer blends. Piezoelectric transformers boasting 88% conversion efficiency at 50 kHz enable RF-energy harvesting for distant sensor nodes As manufacturers integrate edge AI, noise-filtered measurements and two-way feedback loops become essential, preserving the centrality of sensing devices within the piezoelectric devices market.

Ceramics accounted for 66.92% of 2025 revenue, maintained by PZT's mature supply chain and high electromechanical coupling. Polymers, especially PVDF, are growing fastest at an 8.29% CAGR thanks to flexible wearables and biomedical implants. Single-crystal options deliver premium performance for aerospace and defense, while composite architectures merge disparate advantages. Wet-spun PVDF fibers now register 0.88 V outputs under 50 N compression with R2 = 0.996 linearity, extending utility into soft robotics.

MgSiN2 thin films with a 5.9 eV bandgap show converse coefficients of 2.3 pm/V, broadening piezo integration in nanoelectromechanical systems. Lead-free Ba0.85Ca0.15Ti0.9Zr0.1O3 ceramics top 650 pC/N while keeping Curie temperatures of 96.5 °C, addressing EU compliance without severe trade-offs. Y-doped ZnO exhibits an 8.5-fold output jump through carrier-concentration control, pushing oxide semiconductors toward filter and sensor roles. These parallel advances suggest the piezoelectric devices market will remain ceramic-centric yet increasingly diversified.

Complete Report Scope:

  • By Product Type
    • Actuators and Motors
    • Sensors
    • Transducers
    • Generators
    • Energy Harvesters
    • Resonators
  • By Material
    • Ceramics
    • Single-Crystal
    • Polymers (e.g., PVDF)
    • Composites/Others
  • By Operating Mode
    • Compression/d33 Mode
    • Shear/d15 Mode
    • Bending/d31 Mode
    • Thickness-Mode Ultrasonic
  • By End-user Industry
    • IT and Telecommunication
    • Consumer Electronics
    • Manufacturing and Industrial Automation
    • Automotive and Transportation
    • Healthcare and Medical Devices
    • Aerospace and Defense
    • Energy and Utilities
  • By Geography
    • North America
      • United States
      • Canada
      • Mexico
    • Europe
      • Germany
      • United Kingdom
      • France
      • Nordics
      • Rest of Europe
    • South America
      • Brazil
      • Rest of South America
    • Asia-Pacific
      • China
      • Japan
      • India
      • South-East Asia
      • Rest of Asia-Pacific
    • Middle East and Africa
      • Middle East
        • Gulf Cooperation Council Countries
        • Turkey
        • Rest of Middle East
      • Africa
        • South Africa
        • Rest of Africa

Geography Analysis

Asia-Pacific held 38.46% of global revenue in 2025, driven by scale advantages in handset assembly, automotive electrification, and fast 5G rollouts. China and South Korea advance smart ultrasonic meters and miniaturized RF filters, while Japan's Murata, TDK, and Kyocera channel deep ceramics expertise into higher-margin multilayer components. India and Southeast Asia attract sensor assembly for cost-sensitive goods, whereas Australia's mining firms deploy energy harvesting for asset monitoring. Rising labor costs spur automation investments, reinforcing premium piezo demand.

North America ranks second in value, underpinned by defense and aerospace programs that require hypersonic-grade ceramics. The Department of Defense earmarked SBIR 24.1 funds for additively manufactured textured piezo components, sparking domestic R&D. Canadian resource sites specify rugged harvesters for remote wells, and US chip fabs expand precision-stage adoption. Physik Instrumente opened a 120,000 sq ft Massachusetts plant to meet 30-50% annual US demand growth. Mexico's vehicle plants integrate piezo injectors and ADAS haptic modules, given supply chain proximity.

Europe leverages stringent environmental rules and luxury-car production to drive lead-free ceramics and next-gen actuators. German OEMs embed piezo suspensions and injectors; Nordic utilities incorporate grid sensors; France's aerospace sector demands high-temperature single crystals. The Middle East and Africa region posts the highest CAGR at 8.14% to 2031 as Gulf pipelines, smart cities, and solar parks deploy pipeline vibration harvesters and infrastructure flow meters. Supply diversification efforts in Africa could evolve into upstream material advantages over the forecast horizon.

  1. APC International, Ltd.
  2. Physik Instrumente (PI) GmbH and Co. KG
  3. Morgan Advanced Materials plc
  4. CTS Corporation (incl. Noliac)
  5. CeramTec GmbH
  6. TDK Corporation
  7. Murata Manufacturing Co., Ltd.
  8. Kyocera Corporation
  9. Piezotech S.A.S. (Arkema Group)
  10. Piezomechanik Dr. Lutz Pickelmann GmbH
  11. Piezosystem Jena GmbH
  12. Mad City Labs, Inc.
  13. Aerotech, Inc.
  14. Johnson Matthey Piezo Products GmbH
  15. Kistler Group
  16. Piezo.com (Meggitt PLC)
  17. Parker Hannifin - Meggitt Sensing
  18. Mide Technology (QinetiQ North America)
  19. TRS Technologies, Inc.
  20. Triumph Group - Transducer Systems

Additional Benefits:

  • The market estimate (ME) sheet in Excel format
  • 3 months of analyst support

TABLE OF CONTENTS

1 INTRODUCTION

  • 1.1 Study Assumptions and Market Definition
  • 1.2 Scope of the Study

2 RESEARCH METHODOLOGY

3 EXECUTIVE SUMMARY

4 MARKET LANDSCAPE

  • 4.1 Market Overview
  • 4.2 Market Drivers
    • 4.2.1 Miniaturization of Piezo-MEMS RF Filters for 5G Smartphones (Asia)
    • 4.2.2 Electrified Fuel-Injection and ADAS Piezo Actuators in European Premium Cars
    • 4.2.3 Industry 4.0 Retrofit Demand for Piezo Sensors in United States Discrete Manufacturing
    • 4.2.4 Smart Ultrasonic Meter Roll-outs in South-Korea and China Utilities
    • 4.2.5 Micro-Vibration Energy Harvesting for Remote Oil and Gas Pipelines (Middle East)
    • 4.2.6 Federal Funding for Hypersonic-Grade Piezo Ceramics in United States Defense
  • 4.3 Market Restraints
    • 4.3.1 EU Lead-Free Directive Increasing Cost of PZT Substitutes
    • 4.3.2 Price Volatility from Single-Source Niobium and Lithium Supply
    • 4.3.3 Capital-Intensive Multi-Axis Stage Production Limiting SME Entry (JP/DE)
    • 4.3.4 Temperature Limits of Polymer Piezo Films in Aero-engines
  • 4.4 Industry Supply Chain Analysis
  • 4.5 Regulatory and Technological Outlook
  • 4.6 Porter's Five Forces Analysis
    • 4.6.1 Threat of New Entrants
    • 4.6.2 Bargaining Power of Buyers
    • 4.6.3 Bargaining Power of Suppliers
    • 4.6.4 Threat of Substitutes
    • 4.6.5 Competitive Rivalry

5 MARKET SIZE AND GROWTH FORECASTS (VALUES)

  • 5.1 By Product Type
    • 5.1.1 Actuators and Motors
    • 5.1.2 Sensors
    • 5.1.3 Transducers
    • 5.1.4 Generators
    • 5.1.5 Energy Harvesters
    • 5.1.6 Resonators
  • 5.2 By Material
    • 5.2.1 Ceramics
    • 5.2.2 Single-Crystal
    • 5.2.3 Polymers (e.g., PVDF)
    • 5.2.4 Composites/Others
  • 5.3 By Operating Mode
    • 5.3.1 Compression/d33 Mode
    • 5.3.2 Shear/d15 Mode
    • 5.3.3 Bending/d31 Mode
    • 5.3.4 Thickness-Mode Ultrasonic
  • 5.4 By End-user Industry
    • 5.4.1 IT and Telecommunication
    • 5.4.2 Consumer Electronics
    • 5.4.3 Manufacturing and Industrial Automation
    • 5.4.4 Automotive and Transportation
    • 5.4.5 Healthcare and Medical Devices
    • 5.4.6 Aerospace and Defense
    • 5.4.7 Energy and Utilities
  • 5.5 By Geography
    • 5.5.1 North America
      • 5.5.1.1 United States
      • 5.5.1.2 Canada
      • 5.5.1.3 Mexico
    • 5.5.2 Europe
      • 5.5.2.1 Germany
      • 5.5.2.2 United Kingdom
      • 5.5.2.3 France
      • 5.5.2.4 Nordics
      • 5.5.2.5 Rest of Europe
    • 5.5.3 South America
      • 5.5.3.1 Brazil
      • 5.5.3.2 Rest of South America
    • 5.5.4 Asia-Pacific
      • 5.5.4.1 China
      • 5.5.4.2 Japan
      • 5.5.4.3 India
      • 5.5.4.4 South-East Asia
      • 5.5.4.5 Rest of Asia-Pacific
    • 5.5.5 Middle East and Africa
      • 5.5.5.1 Middle East
        • 5.5.5.1.1 Gulf Cooperation Council Countries
        • 5.5.5.1.2 Turkey
        • 5.5.5.1.3 Rest of Middle East
      • 5.5.5.2 Africa
        • 5.5.5.2.1 South Africa
        • 5.5.5.2.2 Rest of Africa

6 COMPETITIVE LANDSCAPE

  • 6.1 Market Concentration
  • 6.2 Strategic Moves (M&A, JVs, Funding, Tech-Licensing)
  • 6.3 Market Share Analysis
  • 6.4 Company Profiles {(includes Global level Overview, Market level overview, Core Segments, Financials as available, Strategic Information, Market Rank/Share for key companies, Products and Services, and Recent Developments)}
    • 6.4.1 APC International, Ltd.
    • 6.4.2 Physik Instrumente (PI) GmbH and Co. KG
    • 6.4.3 Morgan Advanced Materials plc
    • 6.4.4 CTS Corporation (incl. Noliac)
    • 6.4.5 CeramTec GmbH
    • 6.4.6 TDK Corporation
    • 6.4.7 Murata Manufacturing Co., Ltd.
    • 6.4.8 Kyocera Corporation
    • 6.4.9 Piezotech S.A.S. (Arkema Group)
    • 6.4.10 Piezomechanik Dr. Lutz Pickelmann GmbH
    • 6.4.11 Piezosystem Jena GmbH
    • 6.4.12 Mad City Labs, Inc.
    • 6.4.13 Aerotech, Inc.
    • 6.4.14 Johnson Matthey Piezo Products GmbH
    • 6.4.15 Kistler Group
    • 6.4.16 Piezo.com (Meggitt PLC)
    • 6.4.17 Parker Hannifin - Meggitt Sensing
    • 6.4.18 Mide Technology (QinetiQ North America)
    • 6.4.19 TRS Technologies, Inc.
    • 6.4.20 Triumph Group - Transducer Systems

7 MARKET OPPORTUNITIES AND FUTURE OUTLOOK

  • 7.1 White-space and Unmet-Need Assessment