Non-Contact Radar Level Transmitter Market Share, Size [2032]

Non-Contact Radar Level Transmitter Market Share, Size [2032]

Segments - Non-Contact Radar Level Transmitter Market by Type (Frequency Modulated Continuous Wave (FMCW) Radar and Pulsed Radar), Frequency (C-band, X-band, W-band, and K-band), Application (Oil & Gas, Pharmaceutical & Biotech, Power Generation, Chemical, Food & Beverage, Water & Wastewater, Pulp & Paper, and Metals & Mining), Technology (2-wire, 4-wire, and Wireless), and Region (Asia Pacific, North America, Latin America, Europe, and Middle East & Africa) - Global Industry Analysis, Growth, Share, Size, Trends, and Forecast 2024–2032

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Author : Raksha Sharma
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Fact-checked by : Indranil Bose
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Editor : Shruti Bhat

Upcoming | Report ID :AD-6570 | 4.7 Rating | 74 Reviews | 217 Pages | Format : PDF Excel PPT

Report Description


Non-Contact Radar Level Transmitter Market Outlook 2032

The global non-contact radar level transmitter market size was USD 573.3 Million in 2023 and is estimated to reach USD 960.1 Million by 2032, expanding at a CAGR of 5.9 % during 2024–2032. The market growth is attributed to increasing industrialization, technological advancements, and the need for efficient level measurement solutions.

Increasing demand for accurate and efficient level measurement in industries such as oil & gas, chemicals, and water & wastewater treatment is propelling the market. The rising adoption of non-contact radar level transmitters owing to their ability to provide precise and reliable non-contact level measurement in challenging conditions is fueling the market.

Non-Contact Radar Level Transmitter Market Outlook

Growing technological advancements have led to the development of radar-level transmitters that operate at higher frequencies and provide accurate measurements, driving the market. Furthermore, the ability of these transmitters to function effectively in conditions with high pressure, temperature, and viscosity has increased their adoption across various industries. For instance,

  • In December 2023, the European Union updated its directives to include stricter compliance requirements for non-contact radar level transmitters used in hazardous environments. These updates are aimed at ensuring higher safety and environmental standards in the chemical and oil & gas industries. Manufacturers now need to adhere to these new regulations to market their products within the EU​.

Rapid industrialization worldwide has led to an increase in the need for efficient process control and automation systems, augmenting the market. Additionally, stringent government regulations regarding safety in industries have necessitated the use of reliable level measurement systems is propelling the market.

Impact of Artificial Intelligence (AI) in Non-Contact Radar Level Transmitter Market

Artificial Intelligence (AI) has emerged as a transformative force in the non-contact radar level transmitter market. It has revolutionized the process of level measurement by enabling accurate and efficient data analysis. AI-powered radar level transmitters ensure optimal performance by automatically adjusting to changes in process conditions, reducing the need for manual intervention and enhancing overall efficiency.

Furthermore, AI has facilitated the development of advanced radar level transmitters that are capable of predicting maintenance needs and potential failures. By analyzing historical and real-time data, AI algorithms help in proactive maintenance, thereby reducing downtime and associated costs. AI plays a crucial role in improving the accuracy of level measurement, identifying anomalies, and providing actionable insights for process optimization.

Non-Contact Radar Level Transmitter Market Dynamics

Non-Contact Radar Level Transmitter Market Dynamics

Major Drivers

High regulatory standards for safety in industries are driving the market. Government regulations require industries to maintain certain safety standards, which include the use of reliable level measurement systems. Non-contact radar level transmitters, with their accurate and reliable performance, help industries comply with these regulations. The market is expected to grow as industries continue to prioritize safety and regulatory compliance.

Rising demand from the water & wastewater treatment industry is boosting the market. This industry requires precise level measurement for efficient treatment processes and regulatory compliance. Non-contact radar level transmitters, with their ability to provide accurate measurements in challenging conditions, are ideally suited for this industry, further fueling the market.

Existing Restraints

High costs associated with the production and manufacturing of non-contact radar level transmitters are hampering the market. The complex manufacturing process and the need for high-quality components increase the overall cost of these transmitters. This high cost limits their adoption, especially in industries with constricted budget constraints. Despite the superior performance of non-contact radar level transmitters, their high cost is anticipated to restrain the market.

Technical challenges associated with the use of non-contact radar level transmitters are impeding the market. These transmitters require careful installation and calibration to ensure accurate measurements. In addition, they do not perform optimally in certain conditions, such as in the presence of heavy dust or foam. These technical challenges make non-contact radar level transmitters less appealing to potential users, thereby restraining the market.

Emerging Opportunities­

High demand for automation in industries presents a significant opportunity for the market. Industries are increasingly adopting automation solutions to improve operational efficiency and productivity. Non-contact radar level transmitters, with their reliable and accurate level measurement, play a crucial role in these automation systems. The demand for non-contact radar level transmitters is expected to rise, as the trend toward factory automation continues.

Growing emphasis on safety in industries provides an opportunity for the market. Government regulations and industry standards require the use of reliable level measurement systems for safety purposes. Non-contact radar level transmitters help industries meet these safety requirements, with their accurate and reliable performance and are expected to fuel the market in the coming years.

Scope of the Non-Contact Radar Level Transmitter Market Report

The market report includes an assessment of the market trends, segments, and regional markets. Overview and dynamics have also been included in the report.

Attributes

Details

Report Title

Non-Contact Radar Level Transmitter Market -Global Industry Analysis, Growth, Share, Size, Trends, and Forecast

Base Year

2023

Historic Data

2017 -2022

Forecast Period

2024–2032

Segmentation

Type (Frequency Modulated Continuous Wave (FMCW) Radar and Pulsed Radar), Frequency (C-band, X-band, W-band, and K-band), Application (Oil & Gas, Pharmaceutical & Biotech, Power Generation, Chemical, Food & Beverage, Water & Wastewater, Pulp & Paper, Metals & Mining), and Technology (2-wire, 4-wire, and Wireless)

Regional Scope

Asia Pacific, North America, Latin America, Europe, and Middle East & Africa

Report Coverage

Company Share, Market Analysis and Size, Competitive Landscape, Growth Factors, Market Trends, and Revenue Forecast

Key Players Covered in the Report

ABB; Dandong Top Electronics Instrument Group Co. Ltd; E+H; Emerson Electric; Honeywell; KROHNE; Magnetrol International; Matsushima Measure Tech Co., Ltd.; OMEGA Engineering; Schneider Electric; Siemens AG; VEGA Grieshaber KG; Yokogawa Electric.


Regional Outlook

In terms of region, the global non-contact radar level transmitter market is classified as Asia Pacific, North America, Latin America, Europe, and Middle East & Africa. North America is expected to dominate the market during the projected period, due to the advanced industrial sector, which has a high demand for efficient and accurate level measurement solutions. The presence of a robust oil & gas industry, which requires precise level measurement for process control and safety, driving the market in the region.

The Asia Pacific region is expected to dominate the market in the coming years, attributed to rapid industrialization, leading to an increased demand for advanced-level measurement solutions. The growing emphasis on safety and regulatory compliance in industries is expected to drive the market in this region. Furthermore, the expansion of the oil & gas, chemical, and water & wastewater treatment industries in countries such as India and China are expected to fuel the market during the projected period.

Non-Contact Radar Level Transmitter Market Region

Non-Contact Radar Level Transmitter Market Segment Insights

Type Segment Analysis

Based on type, the non-contact radar level transmitter market is divided into frequency modulated continuous wave (FMCW) radar and pulsed radar. The frequency modulated continuous wave (FMCW) radar segment held the major share of the market in 2023, owing to high accuracy and resolution, making them ideal for precise level measurement in various industries. Their ability to provide reliable measurements in challenging conditions, such as high pressure, temperature, and viscosity, has contributed to their widespread adoption. For instance,

  • In 2024, Emerson unveiled the Rosemount 3408 and 5408 Level Transmitters. These transmitters utilize advanced 80GHz Fast Sweep Frequency Modulated Continuous Wave (FMCW) technology, which provides superior measurement accuracy and reliability. These devices are designed to be versatile and easy to use, featuring Bluetooth connectivity for remote configuration and diagnostics.

  • The pulsed radar segment is projected to witness significant growth during the projected period. Pulsed radar transmitters offer several advantages, including the ability to measure long distances and handle difficult process conditions. They are effective in applications with heavy dust or foam, where other types of radar level transmitters face challenges. Additionally, advancements in technology are expected to enhance the segment.

Non-Contact Radar Level Transmitter Market Type

Frequency Segment Analysis

On the basis of frequency, the global market is segregated into C-band, X-band, W-band, and K-band. The K-band segment held the largest market share in 2023, as K-band radar transmitters operate at high frequencies, allowing for precise level measurement with excellent resolution. These radar transmitters are capable of measuring shorter distances with high accuracy, making them ideal for applications in smaller tanks or containers. Industries, seeking advanced-level measurement solutions in transmitters are boosting the segment.

The W-band segment is projected to witness significant growth in the market. W-band radar transmitters operate at even higher frequencies than K-band transmitters, offering superior resolution and accuracy. They are effective in applications requiring precise level measurement over short distances. Additionally, advancements in technology are expected to enhance the capabilities of W-band radar transmitters, making them appealing to potential users, and further enhancing the segment.

Application Segment Analysis

Based on the application, the market is segmented into oil & gas, pharmaceutical & biotech, power generation, chemical, food & beverage, water & wastewater, pulp & paper, and metals & mining. The oil & gas segment led the market in terms of revenue in 2023, as it requires precise level measurement for efficient process control and safety.

Non-contact radar level transmitters, with their ability to provide reliable measurements in challenging conditions, are ideally suited for this industry. Their ability to operate effectively in conditions with high pressure and temperature, common in the oil & gas industry is driving the segment.

The water & wastewater segment is projected to witness significant growth in the projected period. These transmitters, with their ability to provide accurate measurements in challenging conditions, are well-suited for water & wastewater treatment applications. The need for precise level measurement in water treatment processes and regulatory compliance is fueling the segment.

Non-Contact Radar Level Transmitter Market Application

End-user Segment Analysis

Based on end-user, the managed network services market is divided into IT & telecom, government, healthcare, BFSI, government, media & entertainment, education, and others. The IT & telecom segment is expected to expand at a significant growth rate during the projected period, owing to the growing demand for cloud computing, digital transformation, and mobile technologies. Managed network services meet requirements such as monitoring, providing network designs, security solutions, implementation, and evolving connectivity needs, propelling the segment.

The BFSI sector is anticipated to hold significant revenue in the market during the projected period, owing to the need for managed network services that offer robust network security and compliance to the sector. The BFSI segment requires managed network services to meet regulatory requirements and seamless connectivity. In addition, the increasing digitization of financial transactions, and the need for managed network services in BFSI are enhancing the segment.

Segments

The non-contact radar level transmitter market has been segmented on the basis of

Type

  • Frequency Modulated Continuous Wave (FMCW) Radar
  • Pulsed Radar

 Frequency

  • C-band
  • X-band
  • W-band
  • K-band

 Application

  • Oil & Gas
  • Pharmaceutical & Biotech
  • Power Generation
  • Chemical
  • Food & Beverage
  • Water & Wastewater
  • Pulp & Paper
  • Metals & Mining

Technology

  • 2-wire
  • 4-wire
  • Wireless

Region

  • Asia Pacific
  • North America
  • Latin America
  • Europe
  • Middle East & Africa

Key Players

  • ABB
  • Dandong Top Electronics Instrument Group Co. Ltd
  • E+H
  • Emerson Electric
  • Honeywell
  • KROHNE
  • Magnetrol International
  • Matsushima Measure Tech Co., Ltd.
  • OMEGA Engineering
  • Schneider Electric
  • Siemens AG
  • VEGA Grieshaber KG
  • Yokogawa Electric

Competitive Landscape

Key players competing in the global Non-Contact Radar Level Transmitter market are ABB; Dandong Top Electronics Instrument Group Co. Ltd; E+H; Emerson Electric; Honeywell; KROHNE; Magnetrol International; Matsushima Measure Tech Co., Ltd.; OMEGA Engineering; Schneider Electric; Siemens AG; VEGA Grieshaber KG; Yokogawa Electric.

  • In May 2021, Endress+Hauser introduced the Cerabar and Deltabar pressure transmitters, highlighting advancements for Industry 4.0 with features like Heartbeat Technology. They unveiled the next generation of Memosens technology, enhancing liquid analysis with IIoT capabilities.

  • In April 2020, Siemens recently introduced the Sitrans LR100 series, a compact radar level transmitter for continuous level measurement in liquid and solid applications. This product features Bluetooth wireless technology for easier setup and diagnostics, enhancing operational efficiency and safety.

  • Non-Contact Radar Level Transmitter Market Key Players

Table Of Content

1. Executive Summary
2. Assumptions and Acronyms Used
3. Research Methodology
4. Managed Network Services Market Overview
  4.1. Introduction
     4.1.1. Market Taxonomy
     4.1.2. Market Definition
  4.2. Macro-Economic Factors
     4.2.1. Industry Outlook
  4.3. Managed Network Services Market Dynamics
     4.3.1. Market Drivers
     4.3.2. Market Restraints
     4.3.3. Opportunity
     4.3.4. Market Trends
  4.4. Managed Network Services Market - Supply Chain
  4.5. Global Managed Network Services Market Forecast
     4.5.1. Managed Network Services Market Size (US$ Mn) and Y-o-Y Growth
     4.5.2. Managed Network Services Market Size (000’ Units) and Y-o-Y Growth
     4.5.3. Managed Network Services Market Absolute $ Opportunity
5. Global Managed Network Services Market Analysis and Forecast by Types
  5.1. Market Trends
  5.2. Introduction
     5.2.1. Basis Point Share (BPS) Analysis by Types
     5.2.2. Y-o-Y Growth Projections by Types
  5.3. Managed Network Services Market Size and Volume Forecast by Types
     5.3.1. Frequency Modulated Continuous Wave (FMCW) Radar
     5.3.2. Pulsed Radar
     5.3.3.  
  5.4. Absolute $ Opportunity Assessment by Types
  5.5. Market Attractiveness/Growth Potential Analysis by Types
6. Global Managed Network Services Market Analysis and Forecast by Applications
  6.1. Market Trends
  6.2. Introduction
     6.2.1. Basis Point Share (BPS) Analysis by Applications
     6.2.2. Y-o-Y Growth Projections by Applications
  6.3. Managed Network Services Market Size and Volume Forecast by Applications
     6.3.1. Oil & Gas
     6.3.2. Pharmaceutical & Biotech
     6.3.3. Power Generation
     6.3.4. Chemical
     6.3.5. Food & Beverage
     6.3.6. Water & Wastewater
     6.3.7. Pulp & Paper
     6.3.8. Metals & Mining
  6.4. Absolute $ Opportunity Assessment by Applications
  6.5. Market Attractiveness/Growth Potential Analysis by Applications
7. Global Managed Network Services Market Analysis and Forecast by Region
  7.1. Market Trends
  7.2. Introduction
     7.2.1. Basis Point Share (BPS) Analysis by Region
     7.2.2. Y-o-Y Growth Projections by Region
  7.3. Managed Network Services Market Size and Volume Forecast by Region
     7.3.1. North America
     7.3.2. Latin America
     7.3.3. Europe
     7.3.4. Asia Pacific
     7.3.5. Middle East and Africa (MEA)
  7.4. Absolute $ Opportunity Assessment by Region
  7.5. Market Attractiveness/Growth Potential Analysis by Region
  7.6. Global Managed Network Services Demand Share Forecast, 2019-2026
8. North America Managed Network Services Market Analysis and Forecast
  8.1. Introduction
     8.1.1. Basis Point Share (BPS) Analysis by Country
     8.1.2. Y-o-Y Growth Projections by Country
  8.2. North America Managed Network Services Market Size and Volume Forecast by Country
     8.2.1. U.S.
     8.2.2. Canada
  8.3. Absolute $ Opportunity Assessment by Country
  8.4. North America Managed Network Services Market Size and Volume Forecast by Types
     8.4.1. Frequency Modulated Continuous Wave (FMCW) Radar
     8.4.2. Pulsed Radar
     8.4.3.  
  8.5. Basis Point Share (BPS) Analysis by Types
  8.6. Y-o-Y Growth Projections by Types
  8.7. North America Managed Network Services Market Size and Volume Forecast by Applications
     8.7.1. Oil & Gas
     8.7.2. Pharmaceutical & Biotech
     8.7.3. Power Generation
     8.7.4. Chemical
     8.7.5. Food & Beverage
     8.7.6. Water & Wastewater
     8.7.7. Pulp & Paper
     8.7.8. Metals & Mining
  8.8. Basis Point Share (BPS) Analysis by Applications
  8.9. Y-o-Y Growth Projections by Applications
  8.10. Market Attractiveness/Growth Potential Analysis
     8.10.1. By Country
     8.10.2. By Product Type
     8.10.3. By Application
  8.11. North America Managed Network Services Demand Share Forecast, 2019-2026
9. Latin America Managed Network Services Market Analysis and Forecast
  9.1. Introduction
     9.1.1. Basis Point Share (BPS) Analysis by Country
     9.1.2. Y-o-Y Growth Projections by Country
     9.1.3. Latin America Average Pricing Analysis
  9.2. Latin America Managed Network Services Market Size and Volume Forecast by Country
      9.2.1. Brazil
      9.2.2. Mexico
      9.2.3. Rest of Latin America
   9.3. Absolute $ Opportunity Assessment by Country
  9.4. Latin America Managed Network Services Market Size and Volume Forecast by Types
     9.4.1. Frequency Modulated Continuous Wave (FMCW) Radar
     9.4.2. Pulsed Radar
     9.4.3.  
  9.5. Basis Point Share (BPS) Analysis by Types
  9.6. Y-o-Y Growth Projections by Types
  9.7. Latin America Managed Network Services Market Size and Volume Forecast by Applications
     9.7.1. Oil & Gas
     9.7.2. Pharmaceutical & Biotech
     9.7.3. Power Generation
     9.7.4. Chemical
     9.7.5. Food & Beverage
     9.7.6. Water & Wastewater
     9.7.7. Pulp & Paper
     9.7.8. Metals & Mining
  9.8. Basis Point Share (BPS) Analysis by Applications
  9.9. Y-o-Y Growth Projections by Applications
  9.10. Market Attractiveness/Growth Potential Analysis
     9.10.1. By Country
     9.10.2. By Product Type
     9.10.3. By Application
  9.11. Latin America Managed Network Services Demand Share Forecast, 2019-2026
10. Europe Managed Network Services Market Analysis and Forecast
  10.1. Introduction
     10.1.1. Basis Point Share (BPS) Analysis by Country
     10.1.2. Y-o-Y Growth Projections by Country
     10.1.3. Europe Average Pricing Analysis
  10.2. Europe Managed Network Services Market Size and Volume Forecast by Country
     10.2.1. Germany
     10.2.2. France
     10.2.3. Italy
     10.2.4. U.K.
     10.2.5. Spain
     10.2.6. Russia
     10.2.7. Rest of Europe
  10.3. Absolute $ Opportunity Assessment by Country
  10.4. Europe Managed Network Services Market Size and Volume Forecast by Types
     10.4.1. Frequency Modulated Continuous Wave (FMCW) Radar
     10.4.2. Pulsed Radar
     10.4.3.  
  10.5. Basis Point Share (BPS) Analysis by Types
  10.6. Y-o-Y Growth Projections by Types
  10.7. Europe Managed Network Services Market Size and Volume Forecast by Applications
     10.7.1. Oil & Gas
     10.7.2. Pharmaceutical & Biotech
     10.7.3. Power Generation
     10.7.4. Chemical
     10.7.5. Food & Beverage
     10.7.6. Water & Wastewater
     10.7.7. Pulp & Paper
     10.7.8. Metals & Mining
  10.8. Basis Point Share (BPS) Analysis by Applications
  10.9. Y-o-Y Growth Projections by Applications
  10.10. Market Attractiveness/Growth Potential Analysis
     10.10.1. By Country
     10.10.2. By Product Type
     10.10.3. By Application
  10.11. Europe Managed Network Services Demand Share Forecast, 2019-2026
11. Asia Pacific Managed Network Services Market Analysis and Forecast
  11.1. Introduction
     11.1.1. Basis Point Share (BPS) Analysis by Country
     11.1.2. Y-o-Y Growth Projections by Country
     11.1.3. Asia Pacific Average Pricing Analysis
  11.2. Asia Pacific Managed Network Services Market Size and Volume Forecast by Country
     11.2.1. China
     11.2.2. Japan
     11.2.3. South Korea
     11.2.4. India
     11.2.5. Australia
     11.2.6. Rest of Asia Pacific (APAC)
  11.3. Absolute $ Opportunity Assessment by Country
  11.4. Asia Pacific Managed Network Services Market Size and Volume Forecast by Types
     11.4.1. Frequency Modulated Continuous Wave (FMCW) Radar
     11.4.2. Pulsed Radar
     11.4.3.  
  11.5. Basis Point Share (BPS) Analysis by Types
  11.6. Y-o-Y Growth Projections by Types
  11.7. Asia Pacific Managed Network Services Market Size and Volume Forecast by Applications
     11.7.1. Oil & Gas
     11.7.2. Pharmaceutical & Biotech
     11.7.3. Power Generation
     11.7.4. Chemical
     11.7.5. Food & Beverage
     11.7.6. Water & Wastewater
     11.7.7. Pulp & Paper
     11.7.8. Metals & Mining
  11.8. Basis Point Share (BPS) Analysis by Applications
  11.9. Y-o-Y Growth Projections by Applications
  11.10. Market Attractiveness/Growth Potential Analysis
     11.10.1. By Country
     11.10.2. By Product Type
     11.10.3. By Application
  11.11. Asia Pacific Managed Network Services Demand Share Forecast, 2019-2026
12. Middle East & Africa Managed Network Services Market Analysis and Forecast
  12.1. Introduction
     12.1.1. Basis Point Share (BPS) Analysis by Country
     12.1.2. Y-o-Y Growth Projections by Country
     12.1.3. Middle East & Africa Average Pricing Analysis
  12.2. Middle East & Africa Managed Network Services Market Size and Volume Forecast by Country
     12.2.1. Saudi Arabia
     12.2.2. South Africa
     12.2.3. UAE
     12.2.4. Rest of Middle East & Africa (MEA)
  12.3. Absolute $ Opportunity Assessment by Country
  12.4. Middle East & Africa Managed Network Services Market Size and Volume Forecast by Types
     12.4.1. Frequency Modulated Continuous Wave (FMCW) Radar
     12.4.2. Pulsed Radar
     12.4.3.  
  12.5. Basis Point Share (BPS) Analysis by Types
  12.6. Y-o-Y Growth Projections by Types
  12.7. Middle East & Africa Managed Network Services Market Size and Volume Forecast by Applications
     12.7.1. Oil & Gas
     12.7.2. Pharmaceutical & Biotech
     12.7.3. Power Generation
     12.7.4. Chemical
     12.7.5. Food & Beverage
     12.7.6. Water & Wastewater
     12.7.7. Pulp & Paper
     12.7.8. Metals & Mining
  12.8. Basis Point Share (BPS) Analysis by Applications
  12.9. Y-o-Y Growth Projections by Applications
  12.10. Market Attractiveness/Growth Potential Analysis
     12.10.1. By Country
     12.10.2. By Product Type
     12.10.3. By Application
  12.11. Middle East & Africa Managed Network Services Demand Share Forecast, 2019-2026
13. Competition Landscape
  13.1. Global Managed Network Services Market: Market Share Analysis
  13.2. Managed Network Services Distributors and Customers
  13.3. Managed Network Services Market: Competitive Dashboard
  13.4. Company Profiles (Details: Overview, Financials, Developments, Strategy)
     13.4.1. ABB
     13.4.2. Dandong Top Electronics Instrument Group Co. Ltd
     13.4.3. E+H
     13.4.4. Emerson Electric
     13.4.5. Honeywell
     13.4.6. KROHNE
     13.4.7. Magnetrol International
     13.4.8. Matsushima Measure Tech Co., Ltd.
     13.4.9. OMEGA Engineering
     13.4.10. Schneider Electric
     13.4.11. Siemens AG
     13.4.12. VEGA Grieshaber KG
     13.4.13. Yokogawa Electric

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