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Socket Type Thermistor Market - Global Forecast 2025-2032

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    Report

  • 185 Pages
  • October 2025
  • Region: Global
  • 360iResearch™
  • ID: 6119125
UP TO OFF until Jan 01st 2026
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Socket type thermistors are proving essential for advanced temperature sensing and reliable thermal management across diverse industrial and consumer applications. As industries face complex regulatory and technological change, senior leaders are seeking solutions that deliver high performance, adaptability, and future-ready integration.

Market Snapshot: Socket Type Thermistor Market Growth and Dynamics

The socket type thermistor market expanded from USD 989.73 million in 2024 to USD 1.05 billion in 2025. Driven by ongoing innovation and shifting global requirements, it is expected to maintain a compound annual growth rate (CAGR) of 6.55% and reach USD 1.64 billion by 2032. Growth is powered by increasing adoption in sectors such as electric vehicles, industrial automation, and consumer electronics, combined with regulatory demands for sustainability and precision.

Scope & Segmentation of the Socket Type Thermistor Market

This report offers detailed analysis and forecasting across all core segments and global regions. It evaluates market structure, end uses, emerging opportunities, and supplier landscapes through comprehensive segmentation:

  • Type: Negative Temperature Coefficient and Positive Temperature Coefficient
  • Mounting: Probe (Air Probe, Immersion), Surface Mount, Through Hole
  • Termination: Lead Free, Leaded (Bent Leads, Straight Leads)
  • Application: Inrush Current Limiting, Temperature Compensation, Temperature Control & Regulation, Temperature Sensing
  • End Use Industry: Aerospace, Automotive (Electric Vehicles, Traditional Vehicles), Consumer Electronics (Laptops, Smartphones, Wearables), Industrial (HVAC, Machinery, Power Generation), Medical
  • Sales Channel: Aftermarket, Original Equipment Manufacturer
  • Regions: Americas (North America, Latin America), Europe, Middle East, Africa, Asia-Pacific (including detailed country analysis across China, India, Japan, South Korea, and others)
  • Companies Assessed: Major players including Murata Manufacturing Co., Ltd., TDK Corporation, TE Connectivity Ltd., Panasonic Corporation, Honeywell International Inc., Vishay Intertechnology, Inc., and additional key manufacturers and innovators.

Key Takeaways for Decision-Makers

  • Socket type thermistors play a central role in supporting Industry 4.0, enabling predictive maintenance and remote diagnostics across smart factories and connected product lines.
  • Advancements in material science, particularly with lead-free and miniaturized variants, assist manufacturers in achieving compliance with emerging environmental and safety regulations.
  • Growing demand from automotive electrification and aerospace innovation widens the application range of socket types, enhancing their strategic value in harsh and mission-critical environments.
  • Integration capabilities with IoT-enabled networks enable real-time data collection and analytics, empowering operational efficiency and adaptive system control in both industrial and consumer segments.
  • Dynamic end markets such as medical diagnostics and renewable energy infrastructure increasingly require bespoke thermistor assemblies with high accuracy and rapid integration capabilities.

Tariff Impact on Global Supply Chain

The introduction of elevated United States tariffs on imported temperature-sensing components in 2025 has increased production costs and encouraged manufacturers to reassess sourcing. Many have responded by diversifying supply chains through nearshoring and adopting dual-sourcing models. Although these shifts enhance resilience, they add complexity to inventory and quality management, especially for smaller suppliers. Large industry players are leveraging scale advantages to strengthen competitive positioning in this evolving regulatory context.

Methodology & Data Sources

Research findings are anchored in primary interviews with senior executives, engineers, and procurement managers, alongside secondary analysis of technical journals, regulatory filings, and market databases. Data triangulation, scenario modeling, and a multidisciplinary expert panel verify and refine all insights presented, ensuring credibility for strategic planning.

Why This Report Matters for Senior Leadership

  • Enables risk-aware decisions by providing clarity on evolving trade dynamics, regulatory shifts, and their direct impacts on operations and sourcing strategies.
  • Facilitates portfolio innovation by revealing trends in miniaturization, digital manufacturing, and end-use customization—key for success in future-ready markets.
  • Supports supply chain optimization and resilience planning with in-depth analysis of regional capabilities and supplier competencies.

Conclusion

As the landscape for socket type thermistors transforms under technological, regulatory, and geopolitical pressures, forward-thinking strategies are essential. This comprehensive market analysis empowers leaders to capitalize on emerging opportunities and drive long-term growth.

Table of Contents

1. Preface
1.1. Objectives of the Study
1.2. Market Segmentation & Coverage
1.3. Years Considered for the Study
1.4. Currency & Pricing
1.5. Language
1.6. Stakeholders
2. Research Methodology
3. Executive Summary
4. Market Overview
5. Market Insights
5.1. Integration of socket type thermistors into IoT-enabled HVAC systems for smart building automation
5.2. Adoption of advanced polymer-based sensor materials to enhance temperature accuracy in harsh industrial environments
5.3. Growing demand for miniaturized SMD socket type thermistors in consumer electronics for compact thermal management
5.4. Implementation of predictive maintenance analytics with socket thermistors for industrial machinery reliability improvement
5.5. Rising focus on high-temperature resistant socket thermistors for electric vehicle battery management systems
5.6. Development of low-cost flexible socket thermistor arrays for wearable health and fitness monitoring devices
5.7. Increasing usage of wireless connectivity-enabled socket thermistor modules in smart agriculture climate control
5.8. Shift toward eco-friendly lead-free socket thermistor manufacturing processes to meet regulatory compliance
5.9. Deployment of high-density socket thermistor arrays for real-time data center rack thermal mapping and AI-driven cooling optimization
5.10. Standardization of calibration and traceability protocols for factory-calibrated socket thermistors used in medical device manufacturing
6. Cumulative Impact of United States Tariffs 2025
7. Cumulative Impact of Artificial Intelligence 2025
8. Socket Type Thermistor Market, by Type
8.1. Negative Temperature Coefficient
8.2. Positive Temperature Coefficient
9. Socket Type Thermistor Market, by Mounting
9.1. Probe
9.1.1. Air Probe
9.1.2. Immersion
9.2. Surface Mount
9.3. Through Hole
10. Socket Type Thermistor Market, by Termination
10.1. Lead Free
10.2. Leaded
10.2.1. Bent Leads
10.2.2. Straight Leads
11. Socket Type Thermistor Market, by Application
11.1. Inrush Current Limiting
11.2. Temperature Compensation
11.3. Temperature Control & Regulation
11.4. Temperature Sensing
12. Socket Type Thermistor Market, by End Use Industry
12.1. Aerospace
12.2. Automotive
12.2.1. Electric Vehicles
12.2.2. Traditional Vehicles
12.3. Consumer Electronics
12.3.1. Laptops
12.3.2. Smartphones
12.3.3. Wearables
12.4. Industrial
12.4.1. HVAC
12.4.2. Machinery
12.4.3. Power Generation
12.5. Medical
13. Socket Type Thermistor Market, by Sales Channel
13.1. Aftermarket
13.2. Original Equipment Manufacturer
14. Socket Type Thermistor Market, by Region
14.1. Americas
14.1.1. North America
14.1.2. Latin America
14.2. Europe, Middle East & Africa
14.2.1. Europe
14.2.2. Middle East
14.2.3. Africa
14.3. Asia-Pacific
15. Socket Type Thermistor Market, by Group
15.1. ASEAN
15.2. GCC
15.3. European Union
15.4. BRICS
15.5. G7
15.6. NATO
16. Socket Type Thermistor Market, by Country
16.1. United States
16.2. Canada
16.3. Mexico
16.4. Brazil
16.5. United Kingdom
16.6. Germany
16.7. France
16.8. Russia
16.9. Italy
16.10. Spain
16.11. China
16.12. India
16.13. Japan
16.14. Australia
16.15. South Korea
17. Competitive Landscape
17.1. Market Share Analysis, 2024
17.2. FPNV Positioning Matrix, 2024
17.3. Competitive Analysis
17.3.1. Murata Manufacturing Co., Ltd.
17.3.2. TDK Corporation
17.3.3. TE Connectivity Ltd.
17.3.4. Amphenol Advanced Sensors, Inc.
17.3.5. Panasonic Corporation
17.3.6. Honeywell International Inc.
17.3.7. Vishay Intertechnology, Inc.
17.3.8. Yageo Corporation
17.3.9. Bourns, Inc.
17.3.10. Omega Engineering, Inc.
17.3.11. Indus Technologies
17.3.12. SEMITEC Corporation
17.3.13. KOA Corporation
17.3.14. JR Sensing & Electronics Technologies
17.3.15. ROHM Co., Ltd.
17.3.16. Kyocera Corporation
17.3.17. STMicroelectronics N.V.

Companies Mentioned

The companies profiled in this Socket Type Thermistor market report include:
  • Murata Manufacturing Co., Ltd.
  • TDK Corporation
  • TE Connectivity Ltd.
  • Amphenol Advanced Sensors, Inc.
  • Panasonic Corporation
  • Honeywell International Inc.
  • Vishay Intertechnology, Inc.
  • Yageo Corporation
  • Bourns, Inc.
  • Omega Engineering, Inc.
  • Indus Technologies
  • SEMITEC Corporation
  • KOA Corporation
  • JR Sensing & Electronics Technologies
  • ROHM Co., Ltd.
  • Kyocera Corporation
  • STMicroelectronics N.V.

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