+353-1-416-8900REST OF WORLD
+44-20-3973-8888REST OF WORLD
1-917-300-0470EAST COAST U.S
1-800-526-8630U.S. (TOLL FREE)

Automotive 5G Modules and Antenna Market Opportunity, Growth Drivers, Industry Trend Analysis, and Forecast 2026-2035

  • PDF Icon

    Report

  • 280 Pages
  • June 2026
  • Region: Global
  • Global Market Insights
  • ID: 6262242
The Global Automotive 5G Modules And Antenna Market was valued at USD 1.8 billion in 2025 and is estimated to grow at a CAGR of 19.1% to reach USD 12.3 billion by 2035.

The market is experiencing rapid growth as the automotive industry accelerates the integration of connected and autonomous vehicle technologies. Increasing digitalization across modern vehicles is creating strong demand for high-speed communication solutions capable of supporting continuous data transmission and real-time connectivity. Automakers are increasingly incorporating advanced communication systems to improve vehicle intelligence, operational efficiency, and connectivity capabilities. The growing reliance on cloud-based services, software-driven vehicle functions, and next-generation mobility platforms is further strengthening the need for robust 5G modules and antenna technologies. These solutions enable reliable communication between vehicles and external networks while supporting seamless data exchange across connected transportation ecosystems. The shift toward intelligent mobility is also encouraging investments in communication infrastructure and vehicle connectivity technologies. As automotive manufacturers focus on delivering enhanced user experiences, improved safety features, and advanced digital services, demand for automotive 5G modules and antenna systems is expected to increase substantially. Ongoing advancements in wireless communication technologies and the expansion of connected vehicle networks continue to create favorable growth opportunities for the Automotive 5G Modules and Antenna Market worldwide.

The Automotive 5G Modules and Antenna Market is benefiting from the rapid expansion of connected mobility networks. The growing deployment of Vehicle-to-Everything (V2X) communication frameworks is accelerating the adoption of automotive 5G communication technologies across the transportation sector. Public and private investments in intelligent transportation infrastructure are enabling vehicles to exchange data with surrounding mobility networks in real time. As connected transportation systems continue to evolve, demand is increasing for advanced 5G modules and multi-band antenna solutions capable of delivering ultra-low latency, improved network reliability, and enhanced communication efficiency. These technologies play an important role in supporting the expansion of smart mobility ecosystems and future transportation networks.

The 5G module segment accounted for 60% share in 2025 and is anticipated to register a CAGR of 19% between 2026 and 2035. Rising demand for connected vehicle functionalities is a primary factor driving segment growth. Modern vehicles increasingly require uninterrupted access to high-speed connectivity to support a wide range of digital services and data-intensive applications. Compared with previous communication technologies, 5G modules deliver significantly higher bandwidth and reduced latency, enabling efficient communication between vehicles, digital platforms, and mobility ecosystems. These capabilities are making 5G modules a critical component of next-generation automotive connectivity solutions.

The battery electric vehicle (BEV) segment held a 44% share in 2025 and is projected to grow at a CAGR of 20% through 2035. The rising adoption of BEVs is creating substantial demand for advanced communication hardware that can support increasingly sophisticated vehicle functions. Connected technologies have become essential for optimizing vehicle performance, improving operational efficiency, and delivering digital services in electric vehicles. The enhanced speed and responsiveness of 5G connectivity enable seamless interaction across connected mobility networks, improving vehicle functionality, customer convenience, and the overall efficiency of electric transportation systems.

China Automotive 5G Modules and Antenna Market held 45% share, generating USD 278.7 million in 2025. The country's strong position is supported by extensive investments in 5G network infrastructure and its leadership in next-generation communication deployment. The widespread availability of advanced wireless networks has established a strong foundation for connected vehicle technologies and digital mobility services. This high level of connectivity is enabling automotive manufacturers to scale advanced telematics solutions, cloud-enabled vehicle services, and V2X communication capabilities across the country's rapidly growing automotive ecosystem.

Key companies operating in the Global Automotive 5G Modules and Antenna Market include Amphenol, Fibocom, Huawei, HUBER+SUHNER, LG Electronics, Quectel, Taoglas, WISI Automotive, Yokowo, and ZTE. Companies operating in the Automotive 5G Modules and Antenna Market are focusing on innovation, strategic collaborations, and geographic expansion to strengthen their competitive position. Leading players are investing heavily in research and development to introduce high-performance 5G modules and advanced antenna solutions capable of supporting evolving connected vehicle requirements. Partnerships with automotive manufacturers, telecommunications providers, and mobility technology companies are helping businesses accelerate product deployment and expand market reach. Many companies are also enhancing manufacturing capabilities and strengthening supply chain networks to meet rising global demand.

Comprehensive Market Analysis and Forecast

  • Industry trends, key growth drivers, challenges, future opportunities, and regulatory landscape
  • Competitive landscape with Porter’s Five Forces and PESTEL analysis
  • Market size, segmentation, and regional forecasts
  • In-depth company profiles, business strategies, financial insights, and SWOT analysis

This product will be delivered within 2-4 business days.

Table of Contents

Chapter 1 Methodology
1.1 Research approach
1.2 Quality Commitments
1.2.1 GMI AI policy & data integrity commitment
1.2.1.1 Source consistency protocol
1.3 Research Trail & Confidence Scoring
1.3.1 Research Trail Components
1.3.2 Scoring Components
1.4 Data Collection
1.4.1 Partial list of primary sources
1.5 Data mining sources
1.5.1 Paid sources
1.5.2 Sources, by region
1.6 Base estimates and calculations
1.6.1 Base year calculation
1.7 Forecast model
1.7.1 Quantified market impact analysis
1.7.1.1 Mathematical impact of growth parameters on forecast
1.8 Research transparency addendum
1.8.1 Source attribution framework
1.8.2 Quality assurance metrics
1.8.3 Our commitment to trust
Chapter 2 Executive Summary
2.1 Industry 360° synopsis, 2022-2035
2.2 Key market trends
2.2.1 Regional
2.2.2 Product
2.2.3 Application
2.2.4 Propulsion
2.2.5 Vehicle
2.2.6 Sales Channel
2.3 TAM Analysis, 2026-2035
2.4 CXO perspectives: Strategic imperatives
Chapter 3 Industry Insights
3.1 Industry ecosystem analysis
3.1.1 Supplier landscape
3.1.2 Profit margin analysis
3.1.3 Cost structure
3.1.4 Value addition at each stage
3.1.5 Factor affecting the value chain
3.1.6 Disruptions
3.2 Industry impact forces
3.2.1 Growth drivers
3.2.1.1 Growing adoption of connected and autonomous vehicles
3.2.1.2 Expansion of V2X communication deployments
3.2.1.3 Rising demand for software-defined vehicles and OTA updates
3.2.1.4 Increasing global 5G network coverage
3.2.2 Industry pitfalls and challenges
3.2.2.1 High hardware costs limiting mass-market adoption
3.2.2.2 Lengthy OEM validation and certification processes
3.2.2.3 Spectrum fragmentation across regions
3.2.3 Market opportunities
3.2.3.1 Integration of 5G mmWave for ADAS and autonomous driving
3.2.3.2 Growing BEV and PHEV adoption
3.2.3.3 Expansion of smart city and intelligent transportation infrastructure
3.2.3.4 Increasing aftermarket retrofit opportunities
3.3 Growth potential analysis
3.4 Regulatory landscape
3.4.1 North America
3.4.1.1 Environmental Protection Agency (EPA)
3.4.1.2 National Highway Traffic Safety Administration (NHTSA)
3.4.1.3 Federal Communications Commission (FCC)
3.4.1.4 U.S. Department of Transportation (DOT)
3.4.1.5 Innovation, Science and Economic Development Canada (ISED)
3.4.2 Europe
3.4.2.1 EU Radio Equipment Directive (RED)
3.4.2.2 UNECE WP.29 Cybersecurity Regulation (R155)
3.4.2.3 UNECE WP.29 Software Update Regulation (R156)
3.4.2.4 CE Marking Compliance
3.4.2.5 General Data Protection Regulation (GDPR)
3.4.3 Asia-Pacific
3.4.3.1 China Compulsory Certification (CCC)
3.4.3.2 Ministry of Industry and Information Technology (MIIT) 5G Regulations
3.4.3.3 Indian Telecommunication Engineering Centre (TEC) Certification
3.4.3.4 Japanese Radio Act Certification
3.4.3.5 Australian Communications and Media Authority (ACMA) Regulations
3.4.4 Latin America
3.4.4.1 Brazilian National Telecommunications Agency (ANATEL) Certification
3.4.4.2 Brazilian National Traffic Council (CONTRAN)
3.4.4.3 Mexican Federal Telecommunications Institute (IFT) Regulations
3.4.4.4 Regional Telecommunications Equipment Certification Requirements
3.4.4.5 Vehicle Connectivity and Spectrum Compliance Regulations
3.4.5 Middle East & Africa
3.4.5.1 GCC Telecommunications Regulatory Framework
3.4.5.2 Saudi Communications, Space & Technology Commission (CST)
3.4.5.3 Saudi Standards, Metrology and Quality Organization (SASO)
3.4.5.4 South African Independent Communications Authority (ICASA)
3.4.5.5 National Vehicle Connectivity and Telecommunications Compliance Requirements
3.5 Porter’s analysis
3.6 PESTEL analysis
3.7 Technology and innovation landscape
3.7.1 Current technological trends
3.7.2 Emerging technologies
3.8 Price analysis (Driven by Primary Research)
3.8.1 Historical Price Trend Analysis
3.8.2 Pricing Strategy by Player Type (Premium / Value / Cost-plus)
3.9 Trade data analysis (Driven by Paid Research)
3.9.1 Import/export volume & value trends
3.9.2 Key trade corridors & tariff impact
3.10 Cost breakdown analysis
3.11 Patent analysis (Driven by Primary Research)
3.12 Impact of AI & generative AI on the market
3.12.1 AI-driven disruption of existing business models
3.12.2 GenAI use cases & adoption roadmap by segment
3.12.3 Risks, limitations & regulatory considerations
3.13 Capacity & production landscape (Driven by Primary Research)
3.13.1 Installed capacity by region & key producer
3.13.2 Capacity utilization rates & expansion pipelines
3.14 Sustainability and environmental aspects
3.14.1 Sustainable practices
3.14.2 Waste reduction strategies
3.14.3 Energy efficiency in production
3.14.4 Eco-friendly Initiatives
3.14.5 Carbon footprint considerations
3.15 Forecast assumptions & scenario analysis (Driven by Primary Research)
3.15.1 Base Case - key macro & industry variables driving CAGR
3.15.2 Optimistic Scenarios - Favorable macro and industry tailwinds
3.15.3 Pessimistic Scenario - Macroeconomic slowdown or industry headwinds
Chapter 4 Competitive Landscape, 2025
4.1 Introduction
4.2 Company market share analysis
4.2.1 North America
4.2.2 Europe
4.2.3 Asia-Pacific
4.2.4 LATAM
4.2.5 MEA
4.3 Competitive analysis of major market players
4.4 Competitive positioning matrix
4.5 Key developments
4.5.1 Mergers & acquisitions
4.5.2 Partnerships & collaborations
4.5.3 New Product Launches
4.5.4 Expansion Plans and funding
4.6 Company tier benchmarking
4.6.1 Tier classification criteria & qualifying thresholds
4.6.2 Tier positioning matrix by revenue, geography & innovation
Chapter 5 Market Estimates & Forecast, by Product, 2022-2035 ($Mn, Units)
5.1 Key trends
5.2 5G Modules
5.2.1 Embedded Modules
5.2.2 Integrated / Multi-band Modules
5.2.3 External Modules
5.3 Antennas
5.3.1 Shark-Fin Antenna
5.3.2 Glass / Integrated Antenna
5.3.3 Patch & Blade Antenna
5.3.4 MIMO Antenna
5.3.5 Intelligent Antenna Modules (IAM)
5.3.6 Others
Chapter 6 Market Estimates & Forecast, by Propulsion, 2022-2035 ($Mn, Units)
6.1 Key trends
6.2 ICE
6.3 BEV
6.4 PHEV
6.5 HEV
6.6 FCEV
Chapter 7 Market Estimates & Forecast, by Application, 2022-2035 ($Mn)
7.1 Key trends
7.2 Telematics
7.3 Infotainment
7.4 V2X Communication
7.5 ADAS & Autonomous Driving
7.6 Emergency & Safety Services
Chapter 8 Market Estimates & Forecast, by Vehicle, 2022-2035 ($Mn, Units)
8.1 Key trends
8.2 Passenger car
8.2.1 Hatchback
8.2.2 Sedan
8.2.3 SUV
8.3 Commercial Vehicle
8.3.1 Light duty
8.3.2 Medium duty
8.3.3 Heavy duty
Chapter 9 Market Estimates & Forecast, by Sales Channel, 2022-2035 ($Mn, Units)
9.1 Key trends
9.2 OEM
9.3 Aftermarket
Chapter 10 Market Estimates & Forecast, by Region, 2022-2035 ($Mn, Units)
10.1 Key trends
10.2 North America
10.2.1 US
10.2.2 Canada
10.3 Europe
10.3.1 UK
10.3.2 Germany
10.3.3 France
10.3.4 Italy
10.3.5 Spain
10.3.6 Russia
10.3.7 Nordics
10.4 Asia-Pacific
10.4.1 China
10.4.2 India
10.4.3 Japan
10.4.4 South Korea
10.4.5 Southeast Asia
10.4.5.1 Indonesia
10.4.5.2 Malaysia
10.4.5.3 Singapore
10.4.5.4 Thailand
10.4.5.5 Vietnam
10.4.6 ANZ
10.5 Latin America
10.5.1 Brazil
10.5.2 Argentina
10.5.3 Mexico
10.6 MEA
10.6.1 UAE
10.6.2 Saudi Arabia
10.6.3 South Africa
Chapter 11 Company Profiles
11.1 Global Players
11.1.1 Amphenol
11.1.2 Huawei
11.1.3 HUBER+SUHNER
11.1.4 Huf
11.1.5 LG Electronics
11.1.6 MD Elektronik
11.1.7 Taoglas
11.1.8 WISI Automotive
11.1.9 Yokowo
11.1.10 ZTE
11.2 Regional Players
11.2.1 Ace Technologies
11.2.2 Calearo
11.2.3 Fibocom
11.2.4 MeiG Smart
11.2.5 Neoway
11.2.6 Quectel
11.2.7 SIMCom
11.3 Emerging Players
11.3.1 Flaircomm
11.3.2 GosuncnWelink
11.3.3 Longsung

Companies Mentioned

  • Amphenol
  • Huawei
  • HUBER+SUHNER
  • Huf
  • LG Electronics
  • MD Elektronik
  • Taoglas
  • WISI Automotive
  • Yokowo
  • ZTE
  • Ace Technologies
  • Calearo
  • Fibocom
  • MeiG Smart
  • Neoway
  • Quectel
  • SIMCom
  • Flaircomm
  • GosuncnWelink
  • Longsung

Table Information