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Wearable Health Monitoring Patent Snapshot 2026

Wearable Health Monitoring Patent Snapshot 2026
Evidence Snapshot
Wearable Health Monitoring Patent Snapshot in 2026

The identified corpus of 11 patent families is concentrated exclusively in India and dominated by academic institutions, each holding a single patent record, indicating an early-stage and highly fragmented filing environment. Activity is essentially a 2025–2026 phenomenon, with diagnostic sensing (A61B) anchoring nearly all filings and several textile-integration and signal-processing branches remaining sparsely covered.

11
Patent families in scope
N/A
Concentration not assessed
N/A
Growth trend not assessed
India
Leading jurisdiction
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Published byPatsnap Insights Team··5 min readVerified by Patsnap Eureka data
Overview

A fragmented, institution-led field with no single dominant filer

No applicant holds more than one patent record; the top five filers together account for 31% of the ranked applicants visible in this query’ combined total, confirming a flat, dispersed visible assignee structure rather than a concentrated one led by a visible player.

The absence of a clear tier gap — every ranked applicant sits at parity — means no incumbent has established a defensible portfolio lead. Entry barriers from IP concentration are currently low within this corpus.

Leading applicants
#ApplicantPatent recordsShare
1Ramdeobaba University1
2Lovely Professional University1
3Sona College of Technology1
4Chandigarh University1
5Vaibhav Laxman Dhasal (Director)1
6SHRI RAMDEOBABA COLLEGE OF ENG & MANAGEMENT1
7Prof. Indhuja Balakrishnan1
8Ram Sandeep Duvvada1
#ApplicantPatent recordsShare
9Prof. Annakumari R1
10Agarwal Priyanka Mittal1
11Hardas Bhalchandra M1
12K R Mangalam University1
13CVR College of Engineering1
14SR University1
15Prof. Suvarna Hugar1
16REVA University1
↗ Hover a row · click a company to ask Eureka

The leaders’ positions, held by institutions such as Ramdeobaba University, Lovely Professional University, Sona College of Technology, and Chandigarh University, suggest that academic prototyping rather than commercial product development is driving current filings.

All filing activity in this corpus falls within 20252026; the most recent months are subject to publication lag and likely undercount actual filings submitted in that window. Longer-window growth, applicant concentration, and technology-route coverage are therefore more reliable signals than the latest-year bar alone.

Source: Patsnap Eureka. Chart shows the top applicants ranked by patent records; the corpus total is measured in patent families. These figures use different units and should not be compared directly. This same dataset is now available on Patsnap Open Platform via MCP.Connect via MCP →
Trends & Structure

Filing activity emerged in 2025; diagnosis sensing anchors the technology mix

The annual trend and technology composition charts together reveal a field that began generating recorded filings only in 2025, with a specific concentration in biomedical sensing. The branch mix shows clear adjacent areas that remain lightly covered.

Annual filing trend

Zero filings appear from 2017 through 2024; all 11 patent families surface in 2025 and 2026. Because the most recent 18–24 months are subject to publication lag, the 2026 count of 4 records almost certainly understates true 2026 activity. No multi-year trend can yet be established; the field is at its earliest recorded stage.

Annual filing trendAnnual values from 2017 to 2026, peaking at 7 in 2025.02017020180201902020020210202202023020247202542026↗ Hover for values · click a bar to ask Eureka

Technology composition

A61B (Diagnosis and surgery) accounts for all 11 patent records and is the clear anchor branch. A41D (Outerwear and garments) and B32B (Layered products and laminates) appear as secondary themes, reflecting interest in embedding sensors into fabric structures. H01Q (Antennas), textile-process branches (D03D, D04B, D06M), and computing branches (G06N, G16H) each appear only once or twice, signaling early exploratory work in wireless integration, smart-textile processing, and AI-assisted health analytics.

Technology compositionA61B · Diagnosis & surgery leads with 11; A41D · Outerwear & garments 5.A61B · Diagnosis & surgery11A41D · Outerwear & garme…5B32B · Layered products …3H01Q · Antennas2D03D · Woven fabrics & w…1D04B · Knitting1D06M · Textile chemical …1G01S · Radar, sonar & po…1↗ Hover for values · click a bar to ask Eureka
Source: Patsnap Eureka. Technology-branch counts are measured in patent records; a single patent family can carry several IPC classes, so class totals can exceed the family total in scope.Explore deeper in Eureka →
Key Patents

Highly cited patent families surfaced by the query

Citation-heavy patent families returned by the query. Use this section as citation context, not as a curated list of the most topic-specific patents.

Featured patent
IN202641015922APublished 2026-02-20

An autonomous agentic ecosystem for SAR-mitigated …

Sr University

The present invention an Autonomous Agentic Ecosystem for SAR-Mitigated Textile Antenna for Real-Time Intelligent Health Monitoring introduces an innovative approach to health monitoring using smart textile technology integrated with advanced antenna systems. This ecosystem addresses the limitations of traditional wearable health monitoring devices… (excerpt from the patent abstract)

Open this patent in Eureka →

Ranked by total forward citations. Citation counts favour older and broadly cited patent families, and broad or adjacent patents may appear when they match the search scope. Treat this section as citation context, not as a curated list of the most topic-specific patents. Some patent titles may be shown in their original, non-English language where an accurate translation could not be guaranteed.

Source: Patsnap Eureka. Citation-ranked patent families surfaced by this query.Open in Eureka →
Visible assignees

Assignee snapshot from the current evidence set

The applicants below are visible in this query result. Because the evidence set is relatively small, read this section as a directional snapshot rather than a full competitive ranking.

Leader · Ramdeobaba University

Ramdeobaba University

Ramdeobaba University holds 1 patent record with a technology focus spanning outerwear and garments (A41D 31), diagnostic sensing (A61B 5), and layered textile laminates (B32B 5), indicating work on sensor-embedded fabric structures. It is also the only applicant that appears as a co-filer hub, collaborating with both Shri Ramdeobaba College of Engineering and Management and individual inventor Sanodiya Tushar. Applicant momentum data is not available in the evidence.

patent records: 1
Challenger · SR University

SR University

SR University holds 1 patent record with a notably broader technology footprint than most peers, combining diagnostic sensing (A61B 5), radar and positioning (G01S 13), and antenna design (H01Q 1) — suggesting interest in non-contact or radar-based health monitoring approaches. This multi-branch profile distinguishes it technically, though its single-record position means no portfolio advantage over other filers yet. Applicant momentum data is not available in the evidence.

patent records: 1
🔍
More assignee evidence is available in Eureka
Use Eureka to validate whether these visible assignees remain central after refining the query scope and adding related patent classes.
Chandigarh UniversitySona College of Technology+ more
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Source: Patsnap Eureka. Assignee evidence is drawn from the current PatSnap Eureka query. In small evidence sets, applicant counts should be treated as directional signals, not a complete competitive ranking.Explore players →
Frequently asked questions

Frequently asked questions

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Built on Patsnap Open Platform

This report’s underlying patent dataset — filings, assignees, technology clusters — is open for developers via MCP and REST API. Free to start, 10,000 credits, no credit card required.

Disclaimer. This page is generated from Patsnap Eureka data drawn from a limited snapshot of global patent and scientific-literature records, and is provided for general information and reference only.

Patent data carries inherent limitations: recent filings (typically the most recent 18–24 months) are under-counted due to standard publication lag; counts may be reported at either a patent-family or a patent-record basis and are not always directly comparable; classification, applicant-name, and citation data may contain errors, duplicates, or omissions; and the underlying search query defines and constrains the scope shown. As a result, the analysis may be incomplete or inaccurate and may not reflect the full technology landscape.

Nothing on this page constitutes an exhaustive prior-art, novelty, freedom-to-operate, or validity search, nor does it constitute legal, financial, investment, or professional advice, and it should not be relied upon as such. Any patent, commercial, or strategic decision should be verified independently and reviewed with qualified patent, legal, and domain professionals. Patsnap makes no warranties, express or implied, as to the accuracy, completeness, or fitness for any particular purpose of the information presented.

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