The Global IoT in Healthcare Market was at USD 280.5 billion in 2025 and is expected to reach USD 1,400.2 billion by the end of 2030. The market share over the forecast period of 2025-2030 is expected to grow at a compound annual growth rate of 30.7%.
IoT in healthcare can be defined as a network of interconnected technology devices, sensors, software, and systems, which is used to gather and share healthcare information. That is why today's integration of IoT technologies is changing the industry for the better due to improved operational performance, patient outcomes, and cost savings. The increase in the number of smart connected devices and healthcare system improvements are expected to define the future market development throughout the next ten years.
The global market of IoT in Healthcare continues to expand rapidly with an interconnected device and systems radically changing the landscape of healthcare provision.
Key Market Insights:
With the increasing demand for the use of IoT in healthcare as a monitoring tool, solution, alternative treatment, and data analyzer, IoT solutions in healthcare are becoming ubiquitous. For instance, smart accessories like fitness trackers and smartwatches aid in tracking the individual’s pulse rates to detect irregularities in their health. Hospitals and clinics are among the IoT adopters using it in the predictive maintenance of equipment, and operational enhancements.
Based on the global mobile health market trend for 2025, the global mobile health penetration in 2025 was 75% higher than that of 2023 due to its accelerated penetration of health-conscious wearable devices. The US and China are the largest consumers of IoT-enabled healthcare solutions and account for over 50% of the global market size. Developing countries in other Asia-Pacific, including India and nations in South East Asia, are also experiencing fast growth, mainly due to enhancements in digital ecosystems and growing governmental spending on healthcare IT.
However, with increasing numbers of individuals generating and sharing highly personal and sensitive health information, there are issues such as cybersecurity and data protection that need to be addressed to facilitate the long-term development of this sector.
IoT in Healthcare Market Drivers:
A rising Number of Smart Instruments is driving IoT Healthcare adoption via Connected Devices and Remote usage.
Integrated connected wearable sensors, connected smart beds, and connected inhalers are among the drivers of the IoT healthcare market. These devices contribute to the improvement of patient attention and allow the doctors to keep tabs on the patients and follow up without having them to be admitted to the hospital often leading to a decreased admission ratio among the patients.
For instance, remote patient monitoring solutions can help control chronic diseases such as diabetes and hypertension. The benefits the solutions bring in terms of improved and cost-effective convenience are driving both patients and providers to adopt IoT.
Real-time data analysis needs leveraging data by IoT to Predictive Analytics and Improve Healthcare processes.
The IoT systems offer real-time data that is invaluable in health care since they spearhead life-deciding decisions. Decision and risk analytics related to the IoT data collected are used to predict the patient status in terms of prognosis, increase efficiency regarding the use of resources, and decrease levels of overall inefficiency. For instance, predictive models driven by IoT data have presented a 30% cutting on the crowded nature of the emergency departments in some hospitals.
Global Healthcare Modernization through IoT and Government Initiatives.
Modernization of the healthcare sector is happening globally through the Internet of Things. For instance, the European Union’s Horizon Europe assigned a large amount of financial support for that direction in the field of IoT. Likewise, more liner healthcare solutions such as India’s Ayushman Bharat Digital Mission are being actively encouraged.
IoT Innovations Empowering Independent Living and Health Management for Seniors.
The elderly population is always on the rise, which makes constant health screening possible through IoT innovations. Smart home health and disease management solutions as well as wearable devices also enable senior citizens to live independently while expert health is being well managed.
IoT in Healthcare Market Restraints and Challenges:
This report targets the security threat that IoT devices present because of their interconnected characteristics. The violation of these controls can result in the compromise of patients’ sensitive health information and consequent reputational and financial losses. In 2025, healthcare made up about 21% of all data breaches that had been reported across the globe thus calling for better protection facilities.
The formulation of IoT in healthcare requires a great deal of capital investment in terms of hardware and software as well as personnel. These costs are often very high and may prove unaffordable to small healthcare organizations in the developing world.
The similarity between the IoT devices and systems makes it hard to have interoperability in various platforms due to non-standardisation. These challenges are seen as barriers IoT to being fully implemented in health facilities through compromises of interoperability.
Healthcare is a very specialized industry and making possible the Internet of Things solutions compatible with the standards is a challenge, including HIPAA (Health Insurance Portability and Accountability Act) and GDPR (General Data Protection Regulation).
IoT in Healthcare Market Opportunities:
According to information from the World Health Organization, the growth of telehealth services is a clear trend, and IoT in healthcare has the potential to take advantage of it. Smart devices may be used for consultation, diagnosis, and post-treatment follow up which makes a real difference in other parts of the world. Integrating IoT with AI brings other, more complex features like accurate diagnostics, intelligent patient filtration, and smart scheduling. There are already AI- IoT solutions to predict sepsis in IC units.
IT, particularly IoT solutions, is also progressive in creating markets as tens of millions of developing region individuals are increasingly gaining access to enhanced healthcare systems as well as becoming digitally connected. Authorities in these areas remain focused on the support of digital health objectives as a way of covering the deficits in both access and quality of the offered services.
The market growth is expected to be propelled by the subsequent generations of wearables with advanced attributes such as continuous glucose monitoring, ECG tracking, and hydration monitoring. It is especially important to note that these devices are no longer uniquely expensive, so more people can afford them.
IOT IN HEALTHCARE MARKET REPORT COVERAGE:
REPORT METRIC |
DETAILS |
Market Size Available |
2024 - 2030 |
Base Year |
2024 |
Forecast Period |
2025 - 2030 |
CAGR |
30.7% |
Segments Covered |
By Component, Application, End-User, and Region |
Various Analyses Covered |
Global, Regional & Country Level Analysis, Segment-Level Analysis, DROC, PESTLE Analysis, Porter’s Five Forces Analysis, Competitive Landscape, Analyst Overview on Investment Opportunities |
Regional Scope |
North America, Europe, APAC, Latin America, Middle East & Africa |
Key Companies Profiled |
Medtronic, Philips Healthcare, GE Healthcare, Abbott Laboratories, Siemens Healthineers, Cisco Systems, IBM Corporation, Qualcomm Life, Honeywell Life Care Solutions, Resideo Technologies |
• Devices (Portable Devices, Body Devices, Fixed Devices)
• Software (healthcare analytics, IoT Platforms)
• Services (Implementation & Integration, Consulting, Managed Implementation Services)
According to the source, the devices segment was the largest in 2024 due to a higher demand for wearable health technologies. The software segment is likely to advance at a faster pace than during the given time horizon owing to the growing interest in the field of healthcare analytics.
• Remote Patient Monitoring
• Clinical Operations and Workflow Optimization
• Connected Imaging
• Medication Management
• Others
Remote patient monitoring became the most popular application in the wearables industry owing to its over 45% share in the market in 2024. This segment is benefiting from the growth of chronic disease rates and more frequent and sustained patient care needs
• Hospitals and Clinics
• Home Care Settings
• Ambulatory Surgical Centers (ASCs)
In 2024, the segment of largest end users were hospitals and clinics, but home care is projected to have the highest compound annual growth rate due to the emerging trends of decentralization in healthcare delivery.
North America
Europe
Asia-Pacific
Middle East and Africa
South America
It shows that the IoT in the healthcare market of North America dominated in 2025 in terms of revenue share and held 38%. The development of the healthcare sector, the high-technology penetration, and the favorable regulatory climate in the area are also accountable for the area’s supremacy. Europe is a big market owing to government policies escalating healthcare and smart wearable devices demands. The Early adopters of IoT in health care are Germany, France, and the UK.
During the forecast period, Asia-Pacific is anticipated to gain the highest CAGR. This is attributed to factors such as a rise in healthcare spending, a growing demographics of aged people, and enhanced technology in associated fields in emerging countries including China and India. Currently, the Middle East and Africa are budding regions in the IoT in healthcare owing to rising healthcare investments and the use of telehealth.
COVID-19 Impact Analysis:
IoT in healthcare received considerable attention during the COVID-19 pandemic because patient monitoring and telemedicine became more necessary than ever before. This paper argues that IoT-enabled devices were very helpful in the tracking and management of the pandemic using aspects like contact tracing as well as in monitoring COVID-19 patients. However, it had some disadvantages such as problems with supply chains and the necessity to boost investment in cybersecurity.
Further, it is predicted that after the pandemic, more attention will be paid to the changes in IoT that will build the resilience of healthcare industries. IoT with blockchain provides more security to data and ensures that data is more transparent. Increased reliability of energy-efficient IoT devices with increased battery lifespan. Some of the business models involve the following ways:
Enhanced attention towards edge computing to make decisions in real-time and minimize latency. Monitoring and telehealth surged. IoT-enabled devices played a critical role in tracking and managing the pandemic, such as through contact tracing and monitoring of COVID-19 patients.
However, the pandemic also highlighted challenges such as supply chain disruptions and the need for greater investment in cybersecurity. Post-pandemic, the focus is expected to shift towards strengthening healthcare resilience through IoT.
Latest Trends/Developments:
When IoT connects with blockchain, it improves how we store and share sensitive data while making it more secure and open for everyone to see. With blockchain, IoT systems keep unchangeable logs of everything that happens, helping users feel more confident about using them. In parallel, IoT devices that run longer on batteries and use less energy lead to more convenient and sustainable use, making it easier to deploy and maintain IoT systems at scale, even in remote places. An increasing number of tech companies are partnering with healthcare organizations to create unique IoT systems. When healthcare and tech companies work together, they blend their skills to make new medical tools that improve both patient care and how healthcare runs.
Edge computing advances are making IoT devices respond quicker and think instantly, helping them make better decisions faster. When IoT applications process data near their data sources, edge computing cuts back on network and cloud usage, making these applications work better and be more reliable. The speed of information matters the most in vital service sectors where instant results are needed. As industries work together and improve their tech, IoT is becoming more widely used and making networks safer, faster, and better.
Key Players:
Medtronic
Philips Healthcare
GE Healthcare
Abbott Laboratories
Siemens Healthineers
Cisco Systems
IBM Corporation
Qualcomm Life
Honeywell Life Care Solutions
Resideo Technologies
Chapter 1. IoT in Healthcare Market – Scope & Methodology
1.1 Market Segmentation
1.2 Scope, Assumptions & Limitations
1.3 Research Methodology
1.4 Primary Sources
1.5 Secondary Sources
Chapter 2. IoT in Healthcare Market – Executive Summary
2.1 Market Size & Forecast – (2025 – 2030) ($M/$Bn)
2.2 Key Trends & Insights
2.2.1 Demand Side
2.2.2 Supply Side
2.3 Attractive Investment Propositions
2.4 COVID-19 Impact Analysis
Chapter 3. IoT in Healthcare Market – Competition Scenario
3.1 Market Share Analysis & Company Benchmarking
3.2 Competitive Strategy & Development Scenario
3.3 Competitive Pricing Analysis
3.4 Supplier-Distributor Analysis
Chapter 4. IoT in Healthcare Market Entry Scenario
4.1 Regulatory Scenario
4.2 Case Studies – Key Start-ups
4.3 Customer Analysis
4.4 PESTLE Analysis
4.5 Porters Five Force Model
4.5.1 Bargaining Power of Suppliers
4.5.2 Bargaining Powers of Customers
4.5.3 Threat of New Entrants
4.5.4 Rivalry among Existing Players
4.5.5 Threat of Substitutes
Chapter 5. IoT in Healthcare Market – Landscape
5.1 Value Chain Analysis – Key Stakeholders Impact Analysis
5.2 Market Drivers
5.3 Market Restraints/Challenges
5.4 Market Opportunities
Chapter 6. IoT in Healthcare Market – By Application
6.1 Introduction/Key Findings
6.2 Remote Patient Monitoring
6.3 Clinical Operations and Workflow Optimization
6.4 Connected Imaging
6.5 Medication Management
6.6 Others
6.7 Y-O-Y Growth trend Analysis By Application
6.8 Absolute $ Opportunity Analysis By Application, 2025-2030
Chapter 7. IoT in Healthcare Market – By Component
7.1 Introduction/Key Findings
7.2 Devices (Portable Devices, Body Devices, Fixed Devices)
7.3 Software (healthcare analytics, IoT Platforms)
7.4 Services (Implementation & Integration, Consulting, Managed Implementation Services)
7.5 Y-O-Y Growth trend Analysis By Component
7.6 Absolute $ Opportunity Analysis By Component, 2025-2030
Chapter 8. IoT in Healthcare Market – By End-User
8.1 Introduction/Key Findings
8.2 Hospitals and Clinics
8.3 Home Care Settings
8.4 Ambulatory Surgical Centers (ASCs)
8.5 Y-O-Y Growth trend Analysis By End-User
8.6 Absolute $ Opportunity Analysis By End-User, 2025-2030
Chapter 9. IoT in Healthcare Market , By Geography – Market Size, Forecast, Trends & Insights
9.1 North America
9.1.1 By Country
9.1.1.1 U.S.A.
9.1.1.2 Canada
9.1.1.3 Mexico
9.1.2 By Application
9.1.3 By Component
9.1.4 By End-User
9.1.5 Countries & Segments - Market Attractiveness Analysis
9.2 Europe
9.2.1 By Country
9.2.1.1 U.K
9.2.1.2 Germany
9.2.1.3 France
9.2.1.4 Italy
9.2.1.5 Spain
9.2.1.6 Rest of Europe
9.2.2 By Application
9.2.3 By Component
9.2.4 By End-User
9.2.5 Countries & Segments - Market Attractiveness Analysis
9.3 Asia Pacific
9.3.1 By Country
9.3.1.1 China
9.3.1.2 Japan
9.3.1.3 South Korea
9.3.1.4 India
9.3.1.5 Australia & New Zealand
9.3.1.6 Rest of Asia-Pacific
9.3.2 By Application
9.3.3 By Component
9.3.4 By End-User
9.3.5 Countries & Segments - Market Attractiveness Analysis
9.4 South America
9.4.1 By Country
9.4.1.1 Brazil
9.4.1.2 Argentina
9.4.1.3 Colombia
9.4.1.4 Chile
9.4.1.5 Rest of South America
9.4.2 By Application
9.4.3 By Component
9.4.4 By End-User
9.4.5 Countries & Segments - Market Attractiveness Analysis
9.5 Middle East & Africa
9.5.1 By Country
9.5.1.1 United Arab Emirates (UAE)
9.5.1.2 Saudi Arabia
9.5.1.3 Qatar
9.5.1.4 Israel
9.5.1.5 South Africa
9.5.1.6 Nigeria
9.5.1.7 Kenya
9.5.1.8 Egypt
9.5.1.9 Rest of MEA
9.5.2 By Application
9.5.3 By Component
9.5.4 By End-User
9.5.5 Countries & Segments - Market Attractiveness Analysis
Chapter 10. IoT in Healthcare Market – Company Profiles – (Overview, Product Portfolio, Financials, Strategies & Developments)
10.1 Medtronic
10.2 Philips Healthcare
10.3 GE Healthcare
10.4 Abbott Laboratories
10.5 Siemens Healthineers
10.6 Cisco Systems
10.7 IBM Corporation
10.8 Qualcomm Life
10.9 Honeywell Life Care Solutions
10.10 Resideo Technologies
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Frequently Asked Questions
The Global IoT in Health Care Market was valued at USD 280.5 billion and is projected to reach a market size of USD 1,400.2 billion by the end of 2030. Over the forecast period of 2025-2030, the market is projected to grow at a CAGR of 30.7%.
Increasing adoption of connected devices, real-time data analytics, and government initiatives are propelling the global medical tourism industry.
Remote patient monitoring dominates the market, accounting for over 45% of the share in 2025.
North America is the most dominant region for the Global IoT in the Health Care Market.
Medtronic, Philips Healthcare, GE Healthcare, and Abbott Laboratories are the key players in the Global IoT in the Health Care Market.
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