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Global 5G in Healthcare - Market Share Analysis, Industry Trends & Statistics, Growth Forecasts (2026-2031)

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    Report

  • 120 Pages
  • August 2026
  • Region: Global
  • Mordor Intelligence
  • ID: 5616884
The 5G in healthcare market size was valued at USD 95.26 billion in 2025 and estimated to grow from USD 123.59 billion in 2026 to reach USD 454.43 billion by 2031, at a CAGR of 29.74% during the forecast period (2026-2031). This report is Segmented by Component (Hardware, Services), Communication Type (eMBB, URLLC, MMTC), Application (Telemedicine, RPM, AR/VR Therapy, Connected Ambulance, Smart Wearables, Robotic Surgery), End User (Hospitals, Clinics, Home Healthcare, Research Institutes), and Geography (North America, Europe, Asia-Pacific, South America, MEA). The Market Forecasts are Provided in Terms of Value (USD).

Global 5G In Healthcare Market Trends and Insights

Surging Tele-ICU and Remote Surgery Pilots

Tele-ICU programs are multiplying as health systems confront specialist shortages; Brazil’s national initiative treated 5,471 patients across 15 ICUs in 2022-2023, conducting 3,971 virtual rounds that matched bedside decision-making quality because 5G sustained sub-10 ms latency. China then validated cross-country robotic surgery by completing a 1,700 km thyroidectomy over 5G links with < 99 ms latency, opening a new era of distance-neutral surgical care. Together with satellite-backed operations performed via the Apstar-6D platform, these milestones demonstrate clinical reliability at continental ranges, accelerating investment in nationwide 5G surgical corridors and expanding the addressable 5G in healthcare market.

Telecom-Provider Push for Private 5G Networks in Hospitals

Operators now court hospitals as enterprise customers, building private 5G stand-alone (SA) systems that guarantee quality-of-service for life-critical workloads. Boldyn Networks switched on Europe’s first hospital-grade SA network in Finland’s Oulu University Hospital, powering live biosensor data feeds and AR-guided procedures. Verizon installed an end-to-end 5G campus at Cleveland Clinic’s Mentor facility, integrating check-in kiosks and telemetry dashboards that trimmed administrative delays. Sweden’s USD 35 million VGR-5G program will replicate that model across 500+ hospitals, signalling that managed private-network contracts could outpace raw hardware demand within the wider 5G in healthcare market.

Spectrum-Licensing Cost Burden on Healthcare Systems

Spectrum fees often exceed USD 1 billion for national operators, and that capital burden filters down to medical campuses seeking dedicated frequencies. A 10-point jump in the spectrum-cost-to-revenue ratio can trim 5G coverage 6 points and drop speeds 8%, curbing tele-surgery reliability in densely populated cities. When deployment costs per base station run USD 100,000-200,000 - and mmWave sits 1.5-2x higher - cash-constrained hospitals delay rollouts, slowing the near-term progress of the 5G in healthcare market.

Other drivers and restraints analyzed in the detailed report include:

  • Reimbursement Expansion for Video Visits & RPM
  • mMTC-Enabled Asset Tracking Cuts Hospital Opex
  • Cyber-Physical Security Vulnerabilities in Connected Devices

Segment Analysis

Hardware solutions commanded 50.12% of the 5G in healthcare market share in 2025, reflecting the heavy capital requirements of base stations, small cells, antennas, and edge servers. Early adopters treated connectivity as a construction project, funding multiyear campus overhauls that underpin surgical suites, imaging labs, and intensive-care units. Yet the services slice is scaling faster - 32.07% CAGR - because hospitals prefer turnkey subscriptions that bundle spectrum, software, and compliance services. ZTE’s integrated 5G IoT network for Soochow University Hospital connected 3,000 devices, trimmed build time 90%, and cut total cost of ownership 30%. Similar “network-as-a-service” models shift 5G in healthcare market risk off hospital balance sheets, encourage phased adoption, and spur ecosystem innovation.

That migration reshuffles vendor power. Infrastructure OEMs partner with cloud hyperscalers and cybersecurity firms to defend margins, while integrators monetise lifecycle management. Hospitals gain predictable opex, on-demand network slices, and embedded threat monitoring. Over 2026-2031, managed services could eclipse hardware shipments in annual spend, marking a structural pivot within the 5G in healthcare market.

Enhanced Mobile Broadband (eMBB) secured 51.85% share of the 5G in healthcare market size in 2025 by supporting 4K imaging, high-definition conferencing, and cloud PACS back-ups. Demand remains sticky as radiology departments shift to 8K workflows and medical schools stream volumetric video for remote training. Ultra-Reliable Low-Latency Communications (URLLC) races ahead at 32.12% CAGR, enabling precision robotics, AI-guided anaesthesia, and multi-site stroke intervention units. Singapore’s National University Health System recorded 1 Gbps downlink, 150 Mbps uplink, and sub-10 ms latency across 20 mixed-reality surgeries on 3.5 GHz spectrum. Massive Machine-Type Communications (mMTC) underpins billions of low-power sensors, from drug refrigerators to connected wearables, forming the glue for continuous care loops.

Inter-slice orchestration is emerging as the competitive pivot: vendors that seamlessly flex bandwidth between eMBB diagnostic transfers and URLLC surgical sessions will win enterprise contracts. Regulators now standardise quality-of-service thresholds, pushing suppliers to validate latency and jitter across complex hospital floorplans. These advances reinforce the climb of the 5G in healthcare market as next-generation workloads mature.

Complete Report Scope:

  • By Component (Value)
    • Hardware
    • Solutions & Platforms
    • Services
  • By Communication Type (Value)
    • Enhanced Mobile Broadband (eMBB)
    • Ultra-Reliable Low-Latency Comm. (URLLC)
    • Massive Machine-Type Comm. (mMTC)
  • By Application (Value)
    • Telemedicine & Virtual Consultation
    • Remote Patient Monitoring
    • AR/VR Assisted Therapy & Training
    • Connected Ambulance & Emergency Care
    • Smart Wearables & In-Hospital IoT
    • Robotic & Telesurgery
  • By End User (Value)
    • Hospitals & Surgical Centers
    • Ambulatory & Specialty Clinics
    • Home Healthcare Providers
    • Academic & Research Institutes
  • By Geography (Value)
    • North America
      • United States
      • Canada
      • Mexico
    • Europe
      • Germany
      • United Kingdom
      • France
      • Italy
      • Spain
      • Rest of Europe
    • Asia-Pacific
      • China
      • India
      • Japan
      • South Korea
      • Australia
      • Rest of Asia-Pacific
    • South America
      • Brazil
      • Argentina
      • Rest of South America
    • Middle East and Africa
      • GCC
      • South Africa
      • Rest of Middle East and Africa

Geography Analysis

North America retained 39.78% share of the 5G in healthcare market in 2025 thanks to early private-network investments, favourable reimbursement, and strong vendor ecosystems. Cleveland Clinic’s Mentor campus illustrates rapid ROI: 5G kiosks cut admission waits and telemetry wearables freed nursing time, validating enterprise cases for peers across the US and Canada. Structured payment for video visits and RPM further lowers adoption barriers, driving near-term revenue.

Asia-Pacific delivers the fastest 34.08% CAGR through 2031 as China’s national policy aligns spectrum allocation, infrastructure subsidies, and digital-health grants. Singapore’s NUHS and Singtel deployed a hybrid enterprise network that underpins the Holomedicine program - remote holographic visualisation that shortens surgical planning - while South Korea’s Samsung Medical Centre streams 3D CT scans onto AR headsets for trainee surgeons. Economies of scale and manufacturing depth make Asia-Pacific a cost-efficient hardware base, further amplifying regional momentum.

Europe advances more gradually. Only 2% of hospitals had 5G SA coverage in 2024 compared with 80% in China and 24% in the US, due in part to fragmented regulation and vendor swap-outs prompted by security reviews. Germany leads regional deployments, and Finland’s Oulu University Hospital hosts Europe’s most mature private medical 5G SA network. The European Commission’s Digital Compass seeks ubiquitous 5G by 2030; success will require harmonised spectrum fees, streamlined permits, and public-sector anchor projects to spur rural uptake - factors that will influence the continental slice of the 5G in healthcare market.

The Middle East and Africa trail on absolute spend but show pockets of innovation: the UAE’s e& enterprise and Burjeel Holdings launched 5G telemedicine clinics, and South African providers pilot connected ambulances with real-time sonography. Latin America, led by Brazil and Mexico, extends tele-ICU grids to address specialist deficits, with coverage gains hinging on cost-effective mid-band spectrum auctions. Each emerging-market proof point enlarges the global opportunity pool, keeping the 5G in healthcare market on its steep upward trajectory.

List of Companies Covered in this Report:

  • Huawei Technologies
  • Ericsson
  • Nokia
  • Qualcomm
  • Samsung Electronics
  • AT&T
  • Verizon Communications
  • China Mobile
  • Deutsche Telekom
  • SK Telecom
  • KT Corporation
  • Telstra
  • Cisco Systems
  • ZTE Corporation
  • NEC
  • Fujitsu
  • Siemens Healthineers
  • Koninklijke Philips
  • GE Healthcare
  • Medtronic

Additional Benefits:

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

Table of Contents

1 Introduction
1.1 Study Assumptions & Market Definition
1.2 Scope of the Study
2 Research Methodology3 Executive Summary
4 Market Landscape
4.1 Market Overview
4.2 Market Drivers
4.2.1 Surging tele-ICU and remote surgery pilots
4.2.2 Telecom-provider push for private 5G networks in hospitals
4.2.3 Reimbursement expansion for video visits & RPM
4.2.4 mMTC-enabled asset tracking cuts hospital opex
4.2.5 Hyper-converged edge datacenters in smart hospitals (under-the-radar)
4.2.6 AI-assisted network slicing for clinical QoS (under-the-radar)
4.3 Market Restraints
4.3.1 Spectrum-licensing cost burden on healthcare systems
4.3.2 Cyber-physical security vulnerabilities in connected devices
4.3.3 Inter-vendor interoperability gaps (under-the-radar)
4.3.4 Clinician unions’ latency-liability concerns (under-the-radar)
4.4 Value / Supply-Chain Analysis
4.5 Regulatory Landscape
4.6 Technological Outlook
4.7 Porter’s Five Forces
4.7.1 Threat of New Entrants
4.7.2 Bargaining Power of Suppliers
4.7.3 Bargaining Power of Buyers
4.7.4 Threat of Substitutes
4.7.5 Industry Rivalry
5 Market Size & Growth Forecasts
5.1 By Component (Value)
5.1.1 Hardware
5.1.2 Solutions & Platforms
5.1.3 Services
5.2 By Communication Type (Value)
5.2.1 Enhanced Mobile Broadband (eMBB)
5.2.2 Ultra-Reliable Low-Latency Comm. (URLLC)
5.2.3 Massive Machine-Type Comm. (mMTC)
5.3 By Application (Value)
5.3.1 Telemedicine & Virtual Consultation
5.3.2 Remote Patient Monitoring
5.3.3 AR/VR Assisted Therapy & Training
5.3.4 Connected Ambulance & Emergency Care
5.3.5 Smart Wearables & In-Hospital IoT
5.3.6 Robotic & Telesurgery
5.4 By End User (Value)
5.4.1 Hospitals & Surgical Centers
5.4.2 Ambulatory & Specialty Clinics
5.4.3 Home Healthcare Providers
5.4.4 Academic & Research Institutes
5.5 By Geography (Value)
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 Italy
5.5.2.5 Spain
5.5.2.6 Rest of Europe
5.5.3 Asia-Pacific
5.5.3.1 China
5.5.3.2 India
5.5.3.3 Japan
5.5.3.4 South Korea
5.5.3.5 Australia
5.5.3.6 Rest of Asia-Pacific
5.5.4 South America
5.5.4.1 Brazil
5.5.4.2 Argentina
5.5.4.3 Rest of South America
5.5.5 Middle East and Africa
5.5.5.1 GCC
5.5.5.2 South Africa
5.5.5.3 Rest of Middle East and Africa
6 Competitive Landscape
6.1 Market Concentration
6.2 Market Share Analysis
6.3 Company Profiles (includes Global level Overview, Market level overview, Core Segments, Financials as available, Strategic Information, Market Rank/Share for key companies, Products & Services, and Recent Developments)
6.3.1 Huawei Technologies
6.3.2 Ericsson
6.3.3 Nokia
6.3.4 Qualcomm
6.3.5 Samsung Electronics
6.3.6 AT&T
6.3.7 Verizon Communications
6.3.8 China Mobile
6.3.9 Deutsche Telekom
6.3.10 SK Telecom
6.3.11 KT Corporation
6.3.12 Telstra
6.3.13 Cisco Systems
6.3.14 ZTE Corporation
6.3.15 NEC Corporation
6.3.16 Fujitsu
6.3.17 Siemens Healthineers
6.3.18 Philips Healthcare
6.3.19 GE Healthcare
6.3.20 Medtronic
7 Market Opportunities & Future Outlook
7.1 White-space & Unmet-need Assessment

Companies Mentioned (Partial List)

A selection of companies mentioned in this report includes, but is not limited to:

  • Huawei Technologies
  • Ericsson
  • Nokia
  • Qualcomm
  • Samsung Electronics
  • AT&T
  • Verizon Communications
  • China Mobile
  • Deutsche Telekom
  • SK Telecom
  • KT Corporation
  • Telstra
  • Cisco Systems
  • ZTE Corporation
  • NEC Corporation
  • Fujitsu
  • Siemens Healthineers
  • Philips Healthcare
  • GE Healthcare
  • Medtronic