Report Code: CMI67102

Category: Healthcare

Reports Description

Global Mobile C Arms Market size was valued at USD 1.7 Billion in 2025 and expected to reach USD 2.5 Billion by 2034, at CAGR of 4.9% during the forecast period 2025 – 2034.

Mobile C Arms Market Overview

Mobile C-arms function as medical imaging devices and provide high-quality imaging with real-time x-ray capabilities during surgery. These systems provide flexibility due to their ability to be positioned at various angles around the patient without requiring the patient to move, which is essential in orthopedic surgeries, cardiovascular procedures, neurosurgery, and pain management interventions.

The C-arm’s name comes from its anatomical resemblance to the letter C and is relative to the position of the X-ray source in relation to the detector. Increasing investments in healthcare from rising economies, the growing number of people suffering from chronic diseases, and the higher demand for imaging technology have allowed the global mobile C-arms market economy to grow.

The expansion of this market is also due to more non-invasive surgeries being performed. The flat panel detector technology is an innovation that promises continuously increasing growth in this market due to improvements in image quality and decreasing radiation levels.

Mobile C Arms Market Growth Factors

Integration of AI and Advanced Imaging Software

Artificial intelligence enhances imaging software’s accuracy while decreasing the need for repeat scans, radiation doses, and diagnostic C-arm mobile image optimization. One cutting-edge technology is the binding of 3D reconstruction, the high-res, three-dimensional view that leads to better quality spine and severe cardiovascular and orthopaedic surgery performance.

Furthermore, AI-enabled C-arms offer real-time rotary navigation, which helps to fixate the instruments in relation to the patient’s body structure, which improves operative control and reduces the time of surgery.

Automated image stitching as an AI feature increases the quality of surgical outcomes by eliminating contortion gaps and missing regions in the post-surgery images. This is especially crucial for spinal surgery and imagery of long bones.

In addition, AI technology lowers image noise and optimizes contrast so as to ensure precise radiation diagnosis. Other surgery types are also made more efficient while simultaneously augmenting health outcomes through minimally invasive techniques.

Adopting these features is no doubt a given as care provisions increasingly seek to make automated decisions. The integration of AI with novel mobile C-arms imaging software will be a gold standard for meeting the adaptive and impulsive imaging demands in modern healthcare.

Rising Demand for Minimally Invasive Surgeries

The increasing adoption of minimally invasive surgeries (MIS) is significantly bolstering the growth of the mobile C-arms market. The growing popularity of operations that involve smaller incisions and less pain, as well as shorter hospitalization stays and quicker recovery times, is driving demand from both patients and healthcare providers.

Nevertheless, these techniques require high accuracy and real-time imaging of internal body structures, which is the trick in mobile C-arms. These sophisticated devices offer real-time, high-resolution fluoroscopic assistance, which helps surgeons perform intricate manipulations on complex anatomical structures more accurately and efficiently.

This is particularly important for orthopedic surgeries like spinal fusions or joint replacements, which require very precise positions of implants. Furthermore, mobile C-arms enable real-time visualization of the vascular structures during cardiac procedures, which improves the effectiveness and safety of angioplasty or stent placement interventions.

There is also a notable market among urologists and neurologists who are starting to embrace the use of mobile C-arms for MIS due to the growing need for detailing tissues and organs involved in the surgeries. Purchasing behavior is also greatly affected by increased supply of advanced mobile C-arms that allow for 3D imaging, digital subtraction angiography, and lower radiation doses.

Mobile C-Arms Market Restraint

Stringent Regulatory Requirements and Approval Delays

The mobility of the mobile C-arms market is significantly affected by approval holdups and regulatory policies. Mobile C-arms, being medical imaging devices, are required to meet strict demands to ensure safety and effectiveness from bodies like the U.S. Food and Drug Administration (FDA), the European CE Marking, and other world health organizations.

Manufacturers are required to undergo every step cautiously, which includes executing extensive clinical trials, providing comprehensive technical documents, and complying with rigorous quality assurance protocols to receive a market approval. These steps are incredibly expensive and time intensive, leading to product launch delays.

Additionally, differences in regulatory standards add another layer of complexity, requiring manufacturers to modify their products and documents to fit within local frameworks. This added layer of complexity raises the costs of development and has a rising negative impact on pricing strategies, making it harder for cost-sensitive markets to obtain advanced mobile C-arms.

Also, the constant changing of policies, particularly with regard to radiation limits and cybersecurity of connected medical devices, calls for frequent product changes, which further prevents timely approval. Many smaller manufacturers struggle to take the necessary steps to update their services in accordance with newly formulated laws due to limited resources, which places them in high competition. Thus, these three regulations justify the slow pace of mobile C-arms market growth and the lack of innovation mobile C-arms face.

Mobile C-Arms Market Trends

Expanding Applications in Diverse Medical Specialties

The market for mobile C-arms is expected to expand as augmented adoption is being witnessed outside traditional use in orthopedic and cardiovascular surgeries. Increased mobility during intraoperative imaging is useful in neurosurgery, spinal surgery, cranial surgery, and other areas that need precise navigation.

In gastroenterology, mobile C-arms allow carrying out endoscopic procedures with precision in imaging, making diagnosis and therapy much more effective, enabling real-time imaging during the steps of the procedure. The application of mobile C-arms in pain medicine, especially for guidance of nerve blocks and epidural injections, is increasing due to the growing demand for less invasive methods of pain control.

In oncology, mobile C-arms enhance the image-guided precision of tumor ablation and biopsy procedures while ensuring patient safety. The increasing use of mobile C-arms in interventional radiology and vascular surgery speaks for their growing utility.

With the increasing acceptance of image-guided procedures by various healthcare practitioners, it is extremely best for mobile C-arm manufacturers to focus and extend their innovations onto raised uncharted territories, granting secure growth.

Mobile C-Arms Market Segment Analysis

The market for mobile C-arms by product type is divided into two segments: full-size mobile C-arms, which are designed for specialized imaging tasks, and mini-C-arms. Full-size mobile C-arms are often employed in intricate surgical operations such as those in the heart, bones, and brain because of their greater imaging capabilities. This concerns their use for imaging surgeries with 3D viewing as well as Digital Subtraction Angiography (DSA).

These C-arms drastically augment precision, thereby fostering precision in surgery as well as safety for patients. The increasing occurrence of chronic illnesses alongside the growing need for minimally invasive surgeries continues to propel the utilization of full-size C-arms across hospitals and specialized clinics.

Nevertheless, outpatient facilities along with small healthcare centres have started adopting the mini-C-arms because of their portability and straightforwardness. These devices are most used in orthopaedic surgery for procedures that need high mobility and rapid positioning, such as imaging of small joints and fracture repairs.

Mini C-arms are also cost-efficient, which makes them suitable for smaller organizations. These devices are in high demand owing to modern technology that improves image quality while simultaneously exposing them to less radiation. As more medical practitioners look for affordable and practical imaging.

Report Scope

Feature of the Report Details
Market Size in 2025 USD 1.7 Billion
Projected Market Size in 2034 USD 2.5 Billion
Market Size in 2024 USD 1.6 Billion
CAGR Growth Rate 4.9% CAGR
Base Year 2024
Forecast Period 2025-2034
Key Segment By Product Type, Application, End User and Region
Report Coverage Revenue Estimation and Forecast, Company Profile, Competitive Landscape, Growth Factors and Recent Trends
Regional Scope North America, Europe, Asia Pacific, Middle East & Africa, and South & Central America
Buying Options Request tailored purchasing options to fulfil your requirements for research.

Mobile C-Arms Market Regional Analysis

The North America mobile C arms market held the largest share in the global market and is witnessing positive changes, owing to the increasing adoption of advanced imaging services in surgical procedures. The growing rate of chronic diseases, especially in cardiovascular as well as orthopedic, is increasing the demand for intraoperative imaging to improve the surgical precision and the patients’ outcomes.

The integration of AI technology and 3D imaging is also stimulating the adoption of mobile imaging C-arms in hospitals and ambulatory surgery centers. Interventional surgery renders all other types of surgery obsolete for popular cases, hence increasing the demand for small and easy-to-use imaging devices.

Together with developed healthcare systems in the region and supportive reimbursement policies, this contributes to the growth of the market for mobile C-arms. Major companies are pursuing product development and building partnerships for expanding regional presence. With the focus of healthcare organizations shifting towards providing effective and precise diagnostics, the North American market is expected to experience considerable growth soon.

The growth of the Asia Pacific mobile C-arms market is incredibly fast due to advanced healthcare investments as well as the increased need for complex diagnostic imaging tools. With a growing rate of chronic diseases like cardiovascular, orthopedic, and cancer in China, India and Japan, there has become a critical need for accurate intraoperative imaging.

This has pushed the adoption of mobile C-arms in hospitals and specialty clinics, enabling improved surgical skills as well as patient outcomes. In addition, the rising use of mobile C-arms to facilitate advanced surgical procedures further increases the adoption of these systems due to greater flexibility and real-time imaging during surgery.

Market expansion is aided by technological improvements, which include the introduction of digital imaging systems and 3D visualization, and industry players are increasingly engaging in product development to meet local demands.

Moreover, construction and development of healthcare-supportive infrastructure by the government-funded initiatives and a focus on enhancing the healthcare budget are positively changing the operating environment. On the other hand, the market growth may be constrained because of high prices for advanced mobile C-arms systems and lack of adequate healthcare facilities in remote regions.

In any case, the Asia Pacific region has great potential for growth due to the increasing elderly population and an upsurge of medical tourism, especially for these elderly patients in nations.

C- Arms Market Recent News

  • In November 2024: GE HealthCare has broadened its OEC 3D mobile CBCT C-arm range by adding operations that improve fluoroscopy precision during endoscopic bronchoscopy procedures. These changes solve CT-to-body divergence issues due to variations in breathing and body stance of the patients. The OEC 3D system utilizes mobile C-arms to perform a variety of procedures, from neuro spine to interventional pulmonology, and provides high-quality 2D and 3D images.
  • In September 2024: With the first installation in California, the Ciartic Move, a fully motorized, self-driving mobile C-arm, is now in the US market thanks to Siemens Healthineers. Ciartic Move aids in automating imaging workflows in orthopaedic, trauma, spine, thorax, vascular, cardiovascular, general surgeries, urology, and interventional pulmonology by automating position changes during surgery.

C- Arms Market Competitive Landscape

The mobile C arms market is competitive with powerful market holders. New businesses are gaining market share by providing inexpensive, lightweight, and portable ones designed for ambulatory surgical centres and specialty clinics. Moreover, competition is fuelled by partnerships, mergers, and acquisitions that seek to address a new market or broaden the existing one and enhance the technological skills of the company.

At the same time, regional players are taking advantage of the local markets by manufacturing and distributing goods, which helps them beat international competitors. The trend of increasing adoption of mobile C-arms by healthcare providers is mainly driven by the global shift towards supporting minimally invasive solutions. This shift has resulted in enhanced innovation among C-arm manufacturers as they strive to remain competitive.

The key players in the mobile C arms market are:

  • DMS Group
  • Eurocolumbus srl
  • Fujifilm Holding Corporation
  • GE Healthcare
  • Genoray
  • Hologic Corporation
  • Koninklijke Philips NV
  • Recorders & Medicare Systems Pvt Ltd (RMS)
  • Shimadzu Corporation
  • Siemens Healthineers
  • SternMed GmBH
  • Turner Imaging System
  • Ziehm Imaging GmbH
  • Others

The Mobile C Arms Market is segmented as follows:

By Product Type        

  • Full-Size Mobile C-Arms
  • Mini C-Arms

By Application

  • Orthopedics and Trauma
  • Cardiology
  • Gastroenterology
  • Neurology
  • Oncology
  • Others

By End User   

  • Hospitals
  • Ambulatory Surgical Centers (ASCs)
  • Specialty Clinics

Regional Coverage:

North America

  • U.S.
  • Canada
  • Mexico
  • Rest of North America

Europe

  • Germany
  • France
  • U.K.
  • Russia
  • Italy
  • Spain
  • Netherlands
  • Rest of Europe

Asia Pacific

  • China
  • Japan
  • India
  • New Zealand
  • Australia
  • South Korea
  • Taiwan
  • Rest of Asia Pacific

The Middle East & Africa

  • Saudi Arabia
  • UAE
  • Egypt
  • Kuwait
  • South Africa
  • Rest of the Middle East & Africa

Latin America

  • Brazil
  • Argentina
  • Rest of Latin America

Table of Contents

  • Chapter 1. Preface
    • 1.1 Report Description and Scope
    • 1.2 Research scope
    • 1.3 Research methodology
      • 1.3.1 Market Research Type
      • 1.3.2 Market research methodology
  • Chapter 2. Executive Summary
    • 2.1 Global Mobile C Arms Market, (2025 – 2034) (USD Billion)
    • 2.2 Global Mobile C Arms Market : snapshot
  • Chapter 3. Global Mobile C Arms Market – Industry Analysis
    • 3.1 Mobile C Arms Market: Market Dynamics
    • 3.2 Market Drivers
      • 3.2.1 Integration of AI and Advanced Imaging Software
      • 3.2.2 Rising Demand for Minimally Invasive Surgeries
    • 3.3 Market Restraints
    • 3.4 Market Opportunities
    • 3.5 Market Challenges
    • 3.6 Porter’s Five Forces Analysis
    • 3.7 Market Attractiveness Analysis
      • 3.7.1 Market attractiveness analysis By Product Type
      • 3.7.2 Market attractiveness analysis By Application
      • 3.7.3 Market attractiveness analysis By End User
  • Chapter 4. Global Mobile C Arms Market- Competitive Landscape
    • 4.1 Company market share analysis
      • 4.1.1 Global Mobile C Arms Market: company market share, 2024
    • 4.2 Strategic development
      • 4.2.1 Acquisitions & mergers
      • 4.2.2 New Product launches
      • 4.2.3 Agreements, partnerships, cullaborations, and joint ventures
      • 4.2.4 Research and development and Regional expansion
    • 4.3 Price trend analysis
  • Chapter 5. Global Mobile C Arms Market – Product Type Analysis
    • 5.1 Global Mobile C Arms Market overview: By Product Type
      • 5.1.1 Global Mobile C Arms Market share, By Product Type, 2024 and 2034
    • 5.2 Full-Size Mobile C-Arms
      • 5.2.1 Global Mobile C Arms Market by Full-Size Mobile C-Arms, 2025 – 2034 (USD Billion)
    • 5.3 Mini C-Arms
      • 5.3.1 Global Mobile C Arms Market by Mini C-Arms, 2025 – 2034 (USD Billion)
  • Chapter 6. Global Mobile C Arms Market – Application Analysis
    • 6.1 Global Mobile C Arms Market overview: By Application
      • 6.1.1 Global Mobile C Arms Market share, By Application, 2024 and 2034
    • 6.2 Orthopedics and Trauma
      • 6.2.1 Global Mobile C Arms Market by Orthopedics and Trauma, 2025 – 2034 (USD Billion)
    • 6.3 Cardiology
      • 6.3.1 Global Mobile C Arms Market by Cardiology, 2025 – 2034 (USD Billion)
    • 6.4 Gastroenterology
      • 6.4.1 Global Mobile C Arms Market by Gastroenterology, 2025 – 2034 (USD Billion)
    • 6.5 Neurology
      • 6.5.1 Global Mobile C Arms Market by Neurology, 2025 – 2034 (USD Billion)
    • 6.6 Oncology
      • 6.6.1 Global Mobile C Arms Market by Oncology, 2025 – 2034 (USD Billion)
    • 6.7 Others
      • 6.7.1 Global Mobile C Arms Market by Others, 2025 – 2034 (USD Billion)
  • Chapter 7. Global Mobile C Arms Market – End User Analysis
    • 7.1 Global Mobile C Arms Market overview: By End User
      • 7.1.1 Global Mobile C Arms Market share, By End User , 2024 and 2034
    • 7.2 Hospitals
      • 7.2.1 Global Mobile C Arms Market by Hospitals, 2025 – 2034 (USD Billion)
    • 7.3 Ambulatory Surgical Centers (ASCs)
      • 7.3.1 Global Mobile C Arms Market by Ambulatory Surgical Centers (ASCs), 2025 – 2034 (USD Billion)
    • 7.4 Specialty Clinics
      • 7.4.1 Global Mobile C Arms Market by Specialty Clinics, 2025 – 2034 (USD Billion)
  • Chapter 8. Mobile C Arms Market – Regional Analysis
    • 8.1 Global Mobile C Arms Market Regional Overview
    • 8.2 Global Mobile C Arms Market Share, by Region, 2024 & 2034 (USD Billion)
    • 8.3. North America
      • 8.3.1 North America Mobile C Arms Market, 2025 – 2034 (USD Billion)
        • 8.3.1.1 North America Mobile C Arms Market, by Country, 2025 – 2034 (USD Billion)
    • 8.4 North America Mobile C Arms Market, by Product Type, 2025 – 2034
      • 8.4.1 North America Mobile C Arms Market, by Product Type, 2025 – 2034 (USD Billion)
    • 8.5 North America Mobile C Arms Market, by Application, 2025 – 2034
      • 8.5.1 North America Mobile C Arms Market, by Application, 2025 – 2034 (USD Billion)
    • 8.6 North America Mobile C Arms Market, by End User , 2025 – 2034
      • 8.6.1 North America Mobile C Arms Market, by End User , 2025 – 2034 (USD Billion)
    • 8.7. Europe
      • 8.7.1 Europe Mobile C Arms Market, 2025 – 2034 (USD Billion)
        • 8.7.1.1 Europe Mobile C Arms Market, by Country, 2025 – 2034 (USD Billion)
    • 8.8 Europe Mobile C Arms Market, by Product Type, 2025 – 2034
      • 8.8.1 Europe Mobile C Arms Market, by Product Type, 2025 – 2034 (USD Billion)
    • 8.9 Europe Mobile C Arms Market, by Application, 2025 – 2034
      • 8.9.1 Europe Mobile C Arms Market, by Application, 2025 – 2034 (USD Billion)
    • 8.10 Europe Mobile C Arms Market, by End User , 2025 – 2034
      • 8.10.1 Europe Mobile C Arms Market, by End User , 2025 – 2034 (USD Billion)
    • 8.11. Asia Pacific
      • 8.11.1 Asia Pacific Mobile C Arms Market, 2025 – 2034 (USD Billion)
        • 8.11.1.1 Asia Pacific Mobile C Arms Market, by Country, 2025 – 2034 (USD Billion)
    • 8.12 Asia Pacific Mobile C Arms Market, by Product Type, 2025 – 2034
      • 8.12.1 Asia Pacific Mobile C Arms Market, by Product Type, 2025 – 2034 (USD Billion)
    • 8.13 Asia Pacific Mobile C Arms Market, by Application, 2025 – 2034
      • 8.13.1 Asia Pacific Mobile C Arms Market, by Application, 2025 – 2034 (USD Billion)
    • 8.14 Asia Pacific Mobile C Arms Market, by End User , 2025 – 2034
      • 8.14.1 Asia Pacific Mobile C Arms Market, by End User , 2025 – 2034 (USD Billion)
    • 8.15. Latin America
      • 8.15.1 Latin America Mobile C Arms Market, 2025 – 2034 (USD Billion)
        • 8.15.1.1 Latin America Mobile C Arms Market, by Country, 2025 – 2034 (USD Billion)
    • 8.16 Latin America Mobile C Arms Market, by Product Type, 2025 – 2034
      • 8.16.1 Latin America Mobile C Arms Market, by Product Type, 2025 – 2034 (USD Billion)
    • 8.17 Latin America Mobile C Arms Market, by Application, 2025 – 2034
      • 8.17.1 Latin America Mobile C Arms Market, by Application, 2025 – 2034 (USD Billion)
    • 8.18 Latin America Mobile C Arms Market, by End User , 2025 – 2034
      • 8.18.1 Latin America Mobile C Arms Market, by End User , 2025 – 2034 (USD Billion)
    • 8.19. The Middle-East and Africa
      • 8.19.1 The Middle-East and Africa Mobile C Arms Market, 2025 – 2034 (USD Billion)
        • 8.19.1.1 The Middle-East and Africa Mobile C Arms Market, by Country, 2025 – 2034 (USD Billion)
    • 8.20 The Middle-East and Africa Mobile C Arms Market, by Product Type, 2025 – 2034
      • 8.20.1 The Middle-East and Africa Mobile C Arms Market, by Product Type, 2025 – 2034 (USD Billion)
    • 8.21 The Middle-East and Africa Mobile C Arms Market, by Application, 2025 – 2034
      • 8.21.1 The Middle-East and Africa Mobile C Arms Market, by Application, 2025 – 2034 (USD Billion)
    • 8.22 The Middle-East and Africa Mobile C Arms Market, by End User , 2025 – 2034
      • 8.22.1 The Middle-East and Africa Mobile C Arms Market, by End User , 2025 – 2034 (USD Billion)
  • Chapter 9. Company Profiles
    • 9.1 DMS Group
      • 9.1.1 Overview
      • 9.1.2 Financials
      • 9.1.3 Product Portfolio
      • 9.1.4 Business Strategy
      • 9.1.5 Recent Developments
    • 9.2 Eurocolumbus srl
      • 9.2.1 Overview
      • 9.2.2 Financials
      • 9.2.3 Product Portfolio
      • 9.2.4 Business Strategy
      • 9.2.5 Recent Developments
    • 9.3 Fujifilm Holding Corporation
      • 9.3.1 Overview
      • 9.3.2 Financials
      • 9.3.3 Product Portfolio
      • 9.3.4 Business Strategy
      • 9.3.5 Recent Developments
    • 9.4 GE Healthcare
      • 9.4.1 Overview
      • 9.4.2 Financials
      • 9.4.3 Product Portfolio
      • 9.4.4 Business Strategy
      • 9.4.5 Recent Developments
    • 9.5 Genoray
      • 9.5.1 Overview
      • 9.5.2 Financials
      • 9.5.3 Product Portfolio
      • 9.5.4 Business Strategy
      • 9.5.5 Recent Developments
    • 9.6 Hologic Corporation
      • 9.6.1 Overview
      • 9.6.2 Financials
      • 9.6.3 Product Portfolio
      • 9.6.4 Business Strategy
      • 9.6.5 Recent Developments
    • 9.7 Koninklijke Philips NV
      • 9.7.1 Overview
      • 9.7.2 Financials
      • 9.7.3 Product Portfolio
      • 9.7.4 Business Strategy
      • 9.7.5 Recent Developments
    • 9.8 Recorders & Medicare Systems Pvt Ltd (RMS)
      • 9.8.1 Overview
      • 9.8.2 Financials
      • 9.8.3 Product Portfolio
      • 9.8.4 Business Strategy
      • 9.8.5 Recent Developments
    • 9.9 Shimadzu Corporation
      • 9.9.1 Overview
      • 9.9.2 Financials
      • 9.9.3 Product Portfolio
      • 9.9.4 Business Strategy
      • 9.9.5 Recent Developments
    • 9.10 Siemens Healthineers
      • 9.10.1 Overview
      • 9.10.2 Financials
      • 9.10.3 Product Portfolio
      • 9.10.4 Business Strategy
      • 9.10.5 Recent Developments
    • 9.11 SternMed GmBH
      • 9.11.1 Overview
      • 9.11.2 Financials
      • 9.11.3 Product Portfolio
      • 9.11.4 Business Strategy
      • 9.11.5 Recent Developments
    • 9.12 Turner Imaging System
      • 9.12.1 Overview
      • 9.12.2 Financials
      • 9.12.3 Product Portfolio
      • 9.12.4 Business Strategy
      • 9.12.5 Recent Developments
    • 9.13 Ziehm Imaging GmbH
      • 9.13.1 Overview
      • 9.13.2 Financials
      • 9.13.3 Product Portfolio
      • 9.13.4 Business Strategy
      • 9.13.5 Recent Developments
    • 9.14 Others.
      • 9.14.1 Overview
      • 9.14.2 Financials
      • 9.14.3 Product Portfolio
      • 9.14.4 Business Strategy
      • 9.14.5 Recent Developments
List Of Figures

Figures No 1 to 27

List Of Tables

Tables No 1 to 77

Prominent Player

  • DMS Group
  • Eurocolumbus srl
  • Fujifilm Holding Corporation
  • GE Healthcare
  • Genoray
  • Hologic Corporation
  • Koninklijke Philips NV
  • Recorders & Medicare Systems Pvt Ltd (RMS)
  • Shimadzu Corporation
  • Siemens Healthineers
  • SternMed GmBH
  • Turner Imaging System
  • Ziehm Imaging GmbH
  • Others

FAQs

The key factors driving the Market are Integration of AI and Advanced Imaging Software, Rising Demand for Minimally Invasive Surgeries.

The “Orthopedics and Trauma” had the largest share in the global market for Mobile C Arms.

The “Full-Size Mobile C-Arms” category dominated the market in 2024.

The key players in the market are DMS Group, Eurocolumbus srl, Fujifilm Holding Corporation, GE Healthcare, Genoray, Hologic Corporation, Koninklijke Philips NV, Recorders & Medicare Systems Pvt Ltd (RMS), Shimadzu Corporation, Siemens Healthineers, SternMed GmBH, Turner Imaging System, Ziehm Imaging GmbH, Others.

“Asia Pacific” had the largest share in the Mobile C Arms Market.

The global market is projected to grow at a CAGR of 4.9% during the forecast period, 2025-2034.

The Mobile C Arms Market size was valued at USD 1.7 Billion in 2025.

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