MarkInsights

Global Wireless Power Market - Forecast to 2032

Research scope: By Technology (Near-Field Technologies, Far-Field Technologies), By Transfer Range (Short Range, Medium Range, Long Range), By Application (Consumer Electronics, Automotive and Electric Vehicles, Healthcare and Medical Devices, Industrial Automation, Defense and Aerospace, Others), By End User (Residential, Commercial, Industrial, Others)

Domain: Semiconductor & Electronics

Report Code: MISEG 11362

  • Introduction
  • 1.1.Introduction
  • 1.2.Market Definition and Scope
  • 1.3.Inclusions and Exclusions
  • 1.4.Key Stakeholders
  • 1.5.Units, Currency, Conversions, and Years Considered
  • 1.6.Key Questions Answered
  • Executive Summary
  • Research Methodology
  • 3.1.Introduction
  • 3.2.Data Capture Sources
  • 3.3.Market Size Estimation
  • 3.4.Market Forecast
  • 3.5.Data Triangulation
  • 3.6.Assumptions and Limitations
  • Market Outlook
  • 4.1.Introduction
  • 4.2.Market Dynamics
  • 4.2.1.Drivers
  • 4.2.2.Restraints
  • 4.2.3.Opportunities
  • 4.2.4.Challenges
  • 4.3.Porter's Five Forces Analysis
  • 4.4.PEST Analysis
  • 4.5.Pricing Analysis
  • 4.6.Value/Supply Chain Analysis
  • 4.7.Regulatory Framework
  • 4.8.Key Conferences and Events, 2025-2027
  • 4.9.Buying Process
  • 4.9.1.Key Stakeholders Involved in Buying Process
  • 4.9.2.Key Customer Buying Criteria
  • 4.10.White Spaces/Opportunity Assessment
  • Wireless Power Global Market Analysis and Forecast to 2032
  • 5.1.Wireless Power Global Market Overview
  • 5.2.Wireless Power Global Market Analysis and Forecast to 2032
  • Global Wireless Power Market Analysis and Forecast to 2032, By Technology
  • 6.1.Overview
  • 6.2.Near-Field Technologies
  • 6.3.Far-Field Technologies
  • Global Wireless Power Market Analysis and Forecast to 2032, By Transfer Range
  • 7.1.Overview
  • 7.2.Short Range
  • 7.3.Medium Range
  • 7.4.Long Range
  • Global Wireless Power Market Analysis and Forecast to 2032, By Application
  • 8.1.Overview
  • 8.2.Consumer Electronics
  • 8.3.Automotive and Electric Vehicles
  • 8.4.Healthcare and Medical Devices
  • 8.5.Industrial Automation
  • 8.6.Defense and Aerospace
  • 8.7.Others
  • Global Wireless Power Market Analysis and Forecast to 2032, By End User
  • 9.1.Overview
  • 9.2.Residential
  • 9.3.Commercial
  • 9.4.Industrial
  • 9.5.Others
  • Wireless Power Global Market Analysis and Forecast to 2032, By Region
  • 10.1.North America
  • 10.1.1.North America Wireless Power Market Regional Analysis and Forecast to 2032
  • 10.1.2.North America, By Technology
  • 10.1.3.North America, By Transfer Range
  • 10.1.4.North America, By Application
  • 10.1.5.North America, By End User
  • 10.1.6.North America, By Country
  • 10.1.6.1.US
  • 10.1.6.1.1.US Wireless Power Market Country Analysis and Forecast to 2032
  • 10.1.6.1.2.US, By Technology
  • 10.1.6.1.3.US, By Transfer Range
  • 10.1.6.1.4.US, By Application
  • 10.1.6.1.5.US, By End User
  • 10.1.6.2.Canada
  • 10.1.6.2.1.Canada Wireless Power Market Country Analysis and Forecast to 2032
  • 10.1.6.2.2.Canada, By Technology
  • 10.1.6.2.3.Canada, By Transfer Range
  • 10.1.6.2.4.Canada, By Application
  • 10.1.6.2.5.Canada, By End User
  • 10.1.6.3.Mexico
  • 10.1.6.3.1.Mexico Wireless Power Market Country Analysis and Forecast to 2032
  • 10.1.6.3.2.Mexico, By Technology
  • 10.1.6.3.3.Mexico, By Transfer Range
  • 10.1.6.3.4.Mexico, By Application
  • 10.1.6.3.5.Mexico, By End User
  • 10.2.Europe
  • 10.2.1.Europe Wireless Power Market Regional Analysis and Forecast to 2032
  • 10.2.2.Europe, By Technology
  • 10.2.3.Europe, By Transfer Range
  • 10.2.4.Europe, By Application
  • 10.2.5.Europe, By End User
  • 10.2.6.Europe, By Country
  • 10.2.6.1.Germany
  • 10.2.6.1.1.Germany Wireless Power Market Country Analysis and Forecast to 2032
  • 10.2.6.1.2.Germany, By Technology
  • 10.2.6.1.3.Germany, By Transfer Range
  • 10.2.6.1.4.Germany, By Application
  • 10.2.6.1.5.Germany, By End User
  • 10.2.6.2.UK
  • 10.2.6.2.1.UK Wireless Power Market Country Analysis and Forecast to 2032
  • 10.2.6.2.2.UK, By Technology
  • 10.2.6.2.3.UK, By Transfer Range
  • 10.2.6.2.4.UK, By Application
  • 10.2.6.2.5.UK, By End User
  • 10.2.6.3.France
  • 10.2.6.3.1.France Wireless Power Market Country Analysis and Forecast to 2032
  • 10.2.6.3.2.France, By Technology
  • 10.2.6.3.3.France, By Transfer Range
  • 10.2.6.3.4.France, By Application
  • 10.2.6.3.5.France, By End User
  • 10.2.6.4.Italy
  • 10.2.6.4.1.Italy Wireless Power Market Country Analysis and Forecast to 2032
  • 10.2.6.4.2.Italy, By Technology
  • 10.2.6.4.3.Italy, By Transfer Range
  • 10.2.6.4.4.Italy, By Application
  • 10.2.6.4.5.Italy, By End User
  • 10.2.6.5.Spain
  • 10.2.6.5.1.Spain Wireless Power Market Country Analysis and Forecast to 2032
  • 10.2.6.5.2.Spain, By Technology
  • 10.2.6.5.3.Spain, By Transfer Range
  • 10.2.6.5.4.Spain, By Application
  • 10.2.6.5.5.Spain, By End User
  • 10.2.6.6.Rest of Europe
  • 10.2.6.6.1.Rest of Europe Wireless Power Market Country Analysis and Forecast to 2032
  • 10.2.6.6.2.Rest of Europe, By Technology
  • 10.2.6.6.3.Rest of Europe, By Transfer Range
  • 10.2.6.6.4.Rest of Europe, By Application
  • 10.2.6.6.5.Rest of Europe, By End User
  • 10.3.Asia Pacific
  • 10.3.1.Asia Pacific Wireless Power Market Regional Analysis and Forecast to 2032
  • 10.3.2.Asia Pacific, By Technology
  • 10.3.3.Asia Pacific, By Transfer Range
  • 10.3.4.Asia Pacific, By Application
  • 10.3.5.Asia Pacific, By End User
  • 10.3.6.Asia Pacific, By Country
  • 10.3.6.1.China
  • 10.3.6.1.1.China Wireless Power Market Country Analysis and Forecast to 2032
  • 10.3.6.1.2.China, By Technology
  • 10.3.6.1.3.China, By Transfer Range
  • 10.3.6.1.4.China, By Application
  • 10.3.6.1.5.China, By End User
  • 10.3.6.2.India
  • 10.3.6.2.1.India Wireless Power Market Country Analysis and Forecast to 2032
  • 10.3.6.2.2.India, By Technology
  • 10.3.6.2.3.India, By Transfer Range
  • 10.3.6.2.4.India, By Application
  • 10.3.6.2.5.India, By End User
  • 10.3.6.3.Japan
  • 10.3.6.3.1.Japan Wireless Power Market Country Analysis and Forecast to 2032
  • 10.3.6.3.2.Japan, By Technology
  • 10.3.6.3.3.Japan, By Transfer Range
  • 10.3.6.3.4.Japan, By Application
  • 10.3.6.3.5.Japan, By End User
  • 10.3.6.4.South Korea
  • 10.3.6.4.1.South Korea Wireless Power Market Country Analysis and Forecast to 2032
  • 10.3.6.4.2.South Korea, By Technology
  • 10.3.6.4.3.South Korea, By Transfer Range
  • 10.3.6.4.4.South Korea, By Application
  • 10.3.6.4.5.South Korea, By End User
  • 10.3.6.5.Australia
  • 10.3.6.5.1.Australia Wireless Power Market Country Analysis and Forecast to 2032
  • 10.3.6.5.2.Australia, By Technology
  • 10.3.6.5.3.Australia, By Transfer Range
  • 10.3.6.5.4.Australia, By Application
  • 10.3.6.5.5.Australia, By End User
  • 10.3.6.6.Rest of Asia Pacific
  • 10.3.6.6.1.Rest of Asia Pacific Wireless Power Market Country Analysis and Forecast to 2032
  • 10.3.6.6.2.Rest of Asia Pacific, By Technology
  • 10.3.6.6.3.Rest of Asia Pacific, By Transfer Range
  • 10.3.6.6.4.Rest of Asia Pacific, By Application
  • 10.3.6.6.5.Rest of Asia Pacific, By End User
  • 10.4.Middle East and Africa
  • 10.4.1.Middle East and Africa Wireless Power Market Regional Analysis and Forecast to 2032
  • 10.4.2.Middle East and Africa, By Technology
  • 10.4.3.Middle East and Africa, By Transfer Range
  • 10.4.4.Middle East and Africa, By Application
  • 10.4.5.Middle East and Africa, By End User
  • 10.4.6.Middle East and Africa, By Country
  • 10.4.6.1.Saudi Arabia
  • 10.4.6.1.1.Saudi Arabia Wireless Power Market Country Analysis and Forecast to 2032
  • 10.4.6.1.2.Saudi Arabia, By Technology
  • 10.4.6.1.3.Saudi Arabia, By Transfer Range
  • 10.4.6.1.4.Saudi Arabia, By Application
  • 10.4.6.1.5.Saudi Arabia, By End User
  • 10.4.6.2.UAE
  • 10.4.6.2.1.UAE Wireless Power Market Country Analysis and Forecast to 2032
  • 10.4.6.2.2.UAE, By Technology
  • 10.4.6.2.3.UAE, By Transfer Range
  • 10.4.6.2.4.UAE, By Application
  • 10.4.6.2.5.UAE, By End User
  • 10.4.6.3.South Africa
  • 10.4.6.3.1.South Africa Wireless Power Market Country Analysis and Forecast to 2032
  • 10.4.6.3.2.South Africa, By Technology
  • 10.4.6.3.3.South Africa, By Transfer Range
  • 10.4.6.3.4.South Africa, By Application
  • 10.4.6.3.5.South Africa, By End User
  • 10.4.6.4.Rest of Middle East and Africa
  • 10.4.6.4.1.Rest of Middle East and Africa Wireless Power Market Country Analysis and Forecast to 2032
  • 10.4.6.4.2.Rest of Middle East and Africa, By Technology
  • 10.4.6.4.3.Rest of Middle East and Africa, By Transfer Range
  • 10.4.6.4.4.Rest of Middle East and Africa, By Application
  • 10.4.6.4.5.Rest of Middle East and Africa, By End User
  • 10.5.South America
  • 10.5.1.South America Wireless Power Market Regional Analysis and Forecast to 2032
  • 10.5.2.South America, By Technology
  • 10.5.3.South America, By Transfer Range
  • 10.5.4.South America, By Application
  • 10.5.5.South America, By End User
  • 10.5.6.South America, By Country
  • 10.5.6.1.Brazil
  • 10.5.6.1.1.Brazil Wireless Power Market Country Analysis and Forecast to 2032
  • 10.5.6.1.2.Brazil, By Technology
  • 10.5.6.1.3.Brazil, By Transfer Range
  • 10.5.6.1.4.Brazil, By Application
  • 10.5.6.1.5.Brazil, By End User
  • 10.5.6.2.Argentina
  • 10.5.6.2.1.Argentina Wireless Power Market Country Analysis and Forecast to 2032
  • 10.5.6.2.2.Argentina, By Technology
  • 10.5.6.2.3.Argentina, By Transfer Range
  • 10.5.6.2.4.Argentina, By Application
  • 10.5.6.2.5.Argentina, By End User
  • 10.5.6.3.Rest of Latin America
  • 10.5.6.3.1.Rest of Latin America Wireless Power Market Country Analysis and Forecast to 2032
  • 10.5.6.3.2.Rest of Latin America, By Technology
  • 10.5.6.3.3.Rest of Latin America, By Transfer Range
  • 10.5.6.3.4.Rest of Latin America, By Application
  • 10.5.6.3.5.Rest of Latin America, By End User
  • Competitive Landscape
  • 11.1.Introduction
  • 11.2.Key Players Strategies
  • 11.3.Key Players Revenue Share Analysis
  • 11.4.Key Players Market Share Analysis
  • 11.5.Key Players Capability Assessment
  • 11.6.Key Players Differentiating Factors
  • 11.7.Market Concentration
  • 11.8.Company Assessment Matrix
  • Company Profiles
  • 12.1.WiTricity Corporation
  • 12.1.1.Key Facts
  • 12.1.2.Business Description
  • 12.1.3.Products and Services
  • 12.1.4.Financial Overview
  • 12.1.5.SWOT Analysis
  • 12.1.6.Key Developments
  • 12.2.Qualcomm Technologies
  • 12.2.1.Key Facts
  • 12.2.2.Business Description
  • 12.2.3.Products and Services
  • 12.2.4.Financial Overview
  • 12.2.5.SWOT Analysis
  • 12.2.6.Key Developments
  • 12.3.Texas Instruments
  • 12.3.1.Key Facts
  • 12.3.2.Business Description
  • 12.3.3.Products and Services
  • 12.3.4.Financial Overview
  • 12.3.5.SWOT Analysis
  • 12.3.6.Key Developments
  • 12.4.NXP Semiconductors
  • 12.4.1.Key Facts
  • 12.4.2.Business Description
  • 12.4.3.Products and Services
  • 12.4.4.Financial Overview
  • 12.4.5.SWOT Analysis
  • 12.4.6.Key Developments
  • 12.5.Renesas Electronics
  • 12.5.1.Key Facts
  • 12.5.2.Business Description
  • 12.5.3.Products and Services
  • 12.5.4.Financial Overview
  • 12.5.5.SWOT Analysis
  • 12.5.6.Key Developments
  • 12.6.Samsung Electronics
  • 12.6.1.Key Facts
  • 12.6.2.Business Description
  • 12.6.3.Products and Services
  • 12.6.4.Financial Overview
  • 12.6.5.SWOT Analysis
  • 12.6.6.Key Developments
  • 12.7.Apple Inc.
  • 12.7.1.Key Facts
  • 12.7.2.Business Description
  • 12.7.3.Products and Services
  • 12.7.4.Financial Overview
  • 12.7.5.SWOT Analysis
  • 12.7.6.Key Developments
  • 12.8.Murata Manufacturing
  • 12.8.1.Key Facts
  • 12.8.2.Business Description
  • 12.8.3.Products and Services
  • 12.8.4.Financial Overview
  • 12.8.5.SWOT Analysis
  • 12.8.6.Key Developments
  • 12.9.LG Electronics
  • 12.9.1.Key Facts
  • 12.9.2.Business Description
  • 12.9.3.Products and Services
  • 12.9.4.Financial Overview
  • 12.9.5.SWOT Analysis
  • 12.9.6.Key Developments
  • 12.10.Energous Corporation
  • 12.10.1.Key Facts
  • 12.10.2.Business Description
  • 12.10.3.Products and Services
  • 12.10.4.Financial Overview
  • 12.10.5.SWOT Analysis
  • 12.10.6.Key Developments
  • 12.11.Powermat Technologies
  • 12.11.1.Key Facts
  • 12.11.2.Business Description
  • 12.11.3.Products and Services
  • 12.11.4.Financial Overview
  • 12.11.5.SWOT Analysis
  • 12.11.6.Key Developments
  • 12.12.Integrated Device Technology
  • 12.12.1.Key Facts
  • 12.12.2.Business Description
  • 12.12.3.Products and Services
  • 12.12.4.Financial Overview
  • 12.12.5.SWOT Analysis
  • 12.12.6.Key Developments
  • 12.13.Toshiba Corporation
  • 12.13.1.Key Facts
  • 12.13.2.Business Description
  • 12.13.3.Products and Services
  • 12.13.4.Financial Overview
  • 12.13.5.SWOT Analysis
  • 12.13.6.Key Developments
  • 12.14.Panasonic Corporation
  • 12.14.1.Key Facts
  • 12.14.2.Business Description
  • 12.14.3.Products and Services
  • 12.14.4.Financial Overview
  • 12.14.5.SWOT Analysis
  • 12.14.6.Key Developments
  • 12.15.Ossia Inc.
  • 12.15.1.Key Facts
  • 12.15.2.Business Description
  • 12.15.3.Products and Services
  • 12.15.4.Financial Overview
  • 12.15.5.SWOT Analysis
  • 12.15.6.Key Developments

Frequently Asked Questions

1. How big is the Wireless Power Market and what will it be worth by 2032?

The global Wireless Power Market was valued at approximately USD 19.31 billion in 2026 and is projected to reach around USD 43.73 billion by 2032, driven by Qi2 standardization supporting over 1,100 new product lines and 1.5 billion devices within one year of launch, EV wireless charging under SAE J2954 shipping in production vehicles, and implanted medical device wireless power receiving FDA approval for clinical deployment.

2. What is the CAGR of the Wireless Power Market from 2026 to 2032?

The market is forecast to grow at a CAGR of approximately 14.6% over the 2026–2032 period, propelled by Samsung's Qi2 growth endorsement at CES 2025, US Infrastructure Investment and Jobs Act allocating USD 7.5 billion to EV charging infrastructure accelerating wireless deployment, and WiTricity commercializing SAE J2954-aligned automotive platforms under licensing agreements with major OEMs including Genesis GV60.

3. What are the key drivers and restraints shaping the Wireless Power Market?

Key Drivers:

Qi2 standardization creating durable momentum — with over 1,100 new product lines and 1.5 billion devices within one year of launch, consumer electronics manufacturers globally embedding Qi2-certified modules from Qualcomm, Texas Instruments, NXP Semiconductors, and Renesas Electronics as standard product design elements

EV wireless charging deployment scaling from luxury prototype to production vehicle reality — WiTricity, Genesis GV60, and BMW deploying SAE J2954 and IEC 61980 standard wireless charging pads, with autonomous rideshare and delivery fleet cable management impracticality making plug-in solutions increasingly unviable

Implanted medical device wireless power gaining FDA approval for clinical deployment — transcutaneous energy transfer enabling cardiac devices, neurostimulators, and drug delivery systems to eliminate transcutaneous wire infection risks permanently

US Infrastructure Investment and Jobs Act directing USD 7.5 billion toward EV charging infrastructure with wireless deployment pilots at public parking facilities alongside Apple MagSafe and Qi2 ecosystem proliferation across the North American smartphone base

Key Restraints:

Wireless power efficiency drops versus wired solutions triggering thermal issues and spiking electricity consumption per charge cycle — stalling high-power EV wireless adoption for cost-focused fleet operators tracking electricity expense per mile precisely

Standards fragmentation across Qi2, SAE J2954, AirFuel Resonant, and proprietary medical protocols forcing OEMs to absorb higher development costs and preventing shared infrastructure spending across consumer electronics, automotive, industrial, and medical categories

Residential and commercial wireless EV charging pad costs exceeding Level 2 wired charger costs — restricting early adoption to luxury vehicles and profitable commercial operators rather than mass market EV drivers

FCC, ETSI, and national spectrum authorities demanding individual approvals for far-field RF transmitter power exceeding FCC Part 15 thresholds — blocking industrial IoT and building-scale ambient harvesting deployments, while consumer skepticism about wireless charging speeds versus wired fast charging tanks accessory attachment rates among performance-focused users

4. What are the major segments and which region leads the Wireless Power Market?

Market Segments:

By Technology: Near-Field Technologies, Far-Field Technologies

Near-Field Technologies capture segment leadership decisively through inductive coupling and magnetic resonance transfer working across millimeters — with over 1,100 product lines carrying Qi or Qi2 certification, EV wireless charging shipping in production vehicles, and medical device transcutaneous energy transfer achieving FDA clinical approval.

By Transfer Range: Short Range, Medium Range, Long Range

Short Range commands the dominant market position through hundreds of millions of active Qi and Qi2 certified devices across consumer electronics globally — anchored by established FCC, CE, and electromagnetic compatibility regulatory compliance pathways that provide significant competitive advantages and an insurmountable installed base lead over medium and long range alternatives.

By Application: Consumer Electronics, Automotive and Electric Vehicles, Healthcare and Medical Devices, Industrial Automation, Defense and Aerospace, Others

Consumer Electronics leads the application segment through the 6 billion global smartphone installed base anchoring Qi2 15W fast charging demand with Samsung Galaxy Charging Hub, Apple MagSafe ecosystem accessory replacement cycles, smartwatch inductive cradles, and wireless earbud cases — while Automotive and Electric Vehicles represents the fastest-growing segment through SAE J2954 and IEC 61980 production vehicle deployment eliminating manual plugging.

By End User: Residential, Commercial, Industrial, Others

Residential dominates the end user segment through billions of consumer electronics in global homes pushing wireless charging pad adoption, continuous smartphone upgrade cycles driving MagSafe and Qi2 accessory repeat purchases, and premium furniture manufacturers embedding wireless charging surfaces into high-end home furnishings — while Commercial grows fastest through hotel rooms, airport lounges, cafés, and retail environments standardizing wireless charging surfaces as amenity infrastructure.

Regional Leadership:

Asia Pacific leads globally — anchored by China's MIIT wireless charging standards aligned with IEC 61980-1 EV frameworks, South Korea's Ministry of Science and ICT backing Samsung and LG ecosystem growth, Japan's METI Connected Industries supporting Panasonic and Toshiba platform expansion, and Samsung Electronics dominating consumer wireless charging through Galaxy and SmartThings integration

North America is the fastest-growing region — driven by USD 7.5 billion Infrastructure Investment and Jobs Act EV charging allocation, Apple MagSafe and Qi2 proliferation across the North American smartphone base, WiTricity SAE J2954 automotive platform commercialization, and FDA 510(k) pathways enabling implanted medical device wireless charging systems

5. Who are the leading companies in the Wireless Power Market?

As per the analysis, the top five players — WiTricity, Texas Instruments, NXP Semiconductors, Samsung Electronics, and Energous Corporation — collectively command 35–45% of global wireless power revenue:

WiTricity — dominates EV wireless charging through critical SAE J2954 patents licensed to automotive manufacturers including Genesis GV60 already shipping with their solution as a production vehicle

Texas Instruments — owns consumer charging through BQ series chips powering both Qi and Qi2 standards across the entire consumer electronics IC supply chain

NXP Semiconductors — differentiates by combining NFC with wireless charging in single IC packages handling both payment and power transfer simultaneously for multi-function consumer devices

Samsung Electronics — advances Qi2 adoption through Galaxy Charging Hub and SmartThings ecosystem deployment cementing consumer electronics wireless charging standardization

Energous Corporation — leads far-field RF wireless power with FCC approval already granted — targeting IoT device charging rather than smartphones through ambient RF energy harvesting for sensor nodes and connected devices

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