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  4. > pH Sensors Market: By Application (Industrial sector, Medical Sector, Paper & Pulp Industry); By Component (Sensor Body, Measuring Electrode, Reference Junction); By Measurement Technology (Optical Sensors, Ion-selective field effect transistors (ISFET))

pH represents the concentration of hydronium ion which depicts the acidic or alkaline properties of the solution. This concentration ranges from 1 to 14 where 1 represent extreme of acidic nature and 14 represents extreme of alkalinity. This pH sensor is made of measuring electrode, reference junction, temperature sensing element, reference electrolyte and so is it segmented by components in this report. Also, based on the measurement technology classification is made as Optical sensors, Ion-selective field effect transistors (ISFET), Amperometric Detectors and others.

The market forces as drivers, challenges and constraints can be understood in this report. The major industries as medical, paper & pulp, food & beverage and other such industries are served companies such as Endress+Hauser, Texas Instruments, Infineon Technologies AG, Omron Corporation and more. To understand the market across the world, region-wise segmentation is also made in this report.

The textile industry demands pH sensors to analyze the dye to be used for a particular cloth type, medical industry to check the drug efficiency. Other major application includes food and beverage production, waste water management and many more.

Table Of Contents

pH Sensors Market: By Application (Industrial sector, Medical Sector, Paper and Pulp Industry); By Component (Sensor Body, Measuring Electrode, Reference Junction); By Measurement Technology (Optical Sensors, Ion-selective field effect transistors (ISFET))
1. pH Sensors - Market Overview

2. Executive Summary

3. pH Sensors - Market Landscape

3.1. Market Share Analysis

3.2. Comparative Analysis

3.2.1. Product Benchmarking

3.2.2. End user profiling

3.2.3. Top 5 Financials Analysis

4. pH Sensors- Market Forces

4.1. Market Drivers

4.2. Market Constraints

4.3. Market Challenges

4.4. Attractiveness of the pH Sensors Industry

4.4.1. Power of Suppliers

4.4.2. Power of Customers

4.4.3. Threat of New entrants

4.4.4. Threat of Substitution

4.4.5. Degree of Competition

5. pH Sensors - Strategic Analysis

5.1. Value Chain Analysis

5.2. Pricing Analysis

5.3. Opportunities Analysis

5.4. Product/Market Life Cycle Analysis

5.5. Suppliers and Distributors

6. pH Sensors Market - By Application

6.1. Medical sector

6.2. Paper and Pulp Industry

6.3. Food and Beverage Industry

6.4. Agriculture

6.5. Metals and Mining

6.6. Industrial sector

6.7. Others

7. pH Sensors Market - By Component

7.1. Sensor Body

7.1.1. Material

7.1.2. Mounting configuration

7.2. Measuring Electrode

7.3. Reference Electrode

7.4. Temperature Sensing Element

8. pH Sensors Market - By Measurement Technology

8.1. Optical Sensors

8.2. Ion-selective field effect transistors (ISFET)

8.3. Amperometric detectors

8.4. Others

9. pH Sensors Market -Geographic Analysis

9.1. Introduction

9.2. Americas

9.2.1. North America

9.2.2. Brazil

9.2.3. Argentina

9.2.4. Mexico

9.3. Europe

9.3.1. UK

9.3.2. France

9.3.3. Germany

9.4. APAC

9.4.1. China

9.4.2. South Korea

9.4.3. Japan

9.4.4. Australia

9.5. ROW

10. Market Entropy

10.1. New Product Launches

10.2. MandAs, Collaborations, JVs and Partnerships

11. Company Profiles (Overview, Product Portfolio, Financials, Developments)

11.1. Banpil Photonics Inc

11.2. Texas Instruments

11.3. Endress+Hauser

11.4. Infineon Technologies AG

11.5. Oceana Sensor Technologies Inc.

11.6. In-Situ Inc.

11.7. Omega

11.8. Omron Corporation

11.9. Foxboro

11.10. REFEX Sensors Ltd.

11.11. Emerson Process Management

11.12. Burkert and Power Systems Inc.

11.13. Honeywell

11.14. Kobold

11.15. GF Signet

11.16. PreSens Precision Sensing

"*Financials would be provided on a best efforts basis for private companies"

12. Appendix

12.1. Abbreviations

12.2. Sources

12.3. Research Methodology

12.4. Bibliography

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