Report Thumbnail
Product Code MM0914014517PS
Published Date 2025/5/30
English319 PagesGlobal

Automotive Radar Market by Range (Short Range, Medium Range, Long Range), Vehicle Type (PC, LCV, HCV), Frequency (2X-GHz and 7X-GHz), EV Type (BEV, PHEV, FCEV, HEV), Mounting (In-cabin, Exterior), Application, and Region - Global Forecast to 2032 ‐ Automotive / Mobility Market


Report Thumbnail
Product Code MM0914014517PS◆The May 2026 edition is also likely available. We will check with the publisher immediately.
Published Date 2025/5/30
English 319 PagesGlobal

Automotive Radar Market by Range (Short Range, Medium Range, Long Range), Vehicle Type (PC, LCV, HCV), Frequency (2X-GHz and 7X-GHz), EV Type (BEV, PHEV, FCEV, HEV), Mounting (In-cabin, Exterior), Application, and Region - Global Forecast to 2032 ‐ Automotive / Mobility Market



Abstract

This report provides a comprehensive analysis of the global automotive radar market, which is experiencing rapid growth driven by the shift toward vehicle safety, convenience, and autonomous driving. The study examines key segments including frequency, radar range, vehicle type, and propulsion technology, highlighting the dominance of 7X-GHz systems and medium-range radar. Furthermore, the report explores regional dynamics, particularly the significant market expansion in China, while assessing competitive strategies and technological advancements like 4D imaging radar.

Related Questions

USD 5.36 billion in 2025

23.0% from 2025 to 2032

Robert Bosch GmbH, Continental AG, Aptiv, Denso Corporation, NXP Semiconductors

increasing consumer demand for ADAS, advancements in 7X-GHz radar technology, integration with electric and connected vehicles


Summary

Market Overview

The global automotive radar market is estimated to be valued at USD 5.36 billion in 2025 and is projected to reach USD 22.83 billion by 2032, growing at a CAGR of 23.0% from 2025 to 2032. The automotive sector is undergoing a significant transition, shifting focus from vehicle performance and fuel efficiency toward enhanced safety and convenience.

Key technological trends include:

  • Advanced Applications: Radar technology is essential for precise short-range detection in applications such as intelligent park assist, cross traffic alert, and autonomous emergency braking, which improve vehicle safety and maneuverability.
  • 4D Imaging Radar: The emergence of 4D imaging radar systems, capable of high-resolution object detection over extended ranges, is solidifying the role of radar in the evolution of autonomous driving technologies.

Market Segmentation

By Range

  • Short-range radar
  • Medium-range radar
  • Long-range radar

By Vehicle Type

  • Passenger car
  • Light commercial vehicle
  • Heavy commercial vehicle

By Frequency

  • 2X-GHz
  • 7X-GHz

By EV Type

  • BEV (Battery Electric Vehicle)
  • PHEV (Plug-in Hybrid Electric Vehicle)
  • FCEV (Fuel Cell Electric Vehicle)
  • HEV (Hybrid Electric Vehicle)

By Application

  • Adaptive cruise control (ACC)
  • Autonomous emergency braking (AEB)
  • Blind spot detection (BSD)
  • Forward collision warning system (FCWS)
  • Intelligent parking assistance (IPA)
  • Cross traffic alert (CTA)
  • Lane departure warning system (LDW)
  • Traffic jam assist (TJA)

By Mounting

  • In-cabin
  • Exterior

By Region

  • North America
  • Europe
  • Asia Pacific
  • Rest of the World

Key Market Insights and Trends

7X-GHz Frequency Segment Dominance

The 7X-GHz frequency segment, specifically systems operating at 77 GHz and 79 GHz, is poised to dominate the market in 2025. This dominance is driven by superior resolution and range capabilities necessary for Advanced Driver-Assistance Systems (ADAS) and autonomous driving.

  • Critical Applications: Adaptive cruise control, lane keeping assist, and automatic emergency braking.
  • Regulatory Drivers: Stringent government regulations, such as the European Union's Vehicle General Safety Regulations (effective July 2024), mandate specific ADAS functionalities (intelligent speed assistance, AEB, and lane keeping assist), accelerating adoption.
  • Industry Innovation: In November 2024, at the electronica 2024 trade fair in Munich, Bosch introduced system-on-a-chip (SoC) solutions (SX600 and SX601) designed for the 77 GHz band.

Medium-Range Radar Segment

The medium-range radar segment is expected to hold a significant market share due to its optimal balance of performance and cost.

  • Capabilities: Typically covers a range of 30 to 80 meters, making it ideal for highway and urban driving.
  • Applications: Adaptive cruise control, blind spot detection, and lane change assistance.
  • Vehicle Integration: Integrated into models such as the Mercedes-Benz C-Class, Volkswagen ID.4, and Toyota Camry. Its effectiveness in diverse weather and lighting conditions supports its strong position as automakers prioritize semi-autonomous features.

Regional Spotlight: China (Asia Pacific)

China is the dominant force in the Asia Pacific region, fueled by rapid advancements in 4D millimeter-wave (mmWave) radar technology and domestic production.

  • Technological Advancements: NIO's second brand, Lixiang L60 (launched in 2024), features 4D imaging mmWave radar developed by SAEON Lingdong, with backing from Xiaomi and NIO Capital.
  • BYD Auto Strategy: In April 2025, BYD unveiled its 'God's Eye' self-driving system, intended for all models including Denza, Fangcheng Bao, and Yangwang. By developing its own SoC and partnering with NVIDIA and Horizon Robotics, BYD provides cost-effective ADAS for entry-level EVs under USD 10,000, intensifying price competition and driving nationwide adoption.
  • OEM Trends: Chinese OEMs like BYD, NIO, and Li Auto are adopting a 5-radar (5R) approach to enhance Navigation on Autopilot (NOA) and Level 3 (L3) autonomous driving.

Competitive Landscape

Key Vendors

  • Robert Bosch GmbH (Germany)
  • Continental AG (Germany)
  • Aptiv (Ireland)
  • Denso Corporation (Japan)
  • NXP Semiconductors (Netherlands)

Competitive Analysis Scope

The report provides an in-depth analysis of these key players, including:

  • Company profiles
  • Recent developments
  • Key market strategies
  • Business overviews, solutions, and services
  • Contracts, partnerships, and agreements
  • New product and service launches
  • Mergers and acquisitions
  • Competitive assessment of upcoming startups in the ecosystem

Primary Interview Breakdown

In-depth interviews were conducted with CEOs, marketing directors, innovation/technology directors, and executives.

  • By Company Type:
  • Tier I: 41%
  • Tier II: 24%
  • OEMs: 35%
  • By Designation:
  • C-Level: 35%
  • D-Level: 49%
  • Others: 16%
  • By Region:
  • Asia Pacific: 37%
  • Europe: 36%
  • North America: 24%
  • Rest of the World: 7%

Strategic Value: Reasons to Buy This Report

This report serves as a critical resource for market leaders and new entrants by providing:

  • Market Intelligence: Closest approximations of revenue numbers for the overall market and subsegments to assist in positioning and go-to-market strategies.
  • Market Pulse: Insights into key drivers, restraints, challenges, and opportunities.
  • Key Analytical Pillars:
  • Drivers: Increasing consumer demand for ADAS, reliance on Doppler frequency shift technology, advancements in 7X-GHz technology, and integration with electric/connected vehicles.
  • Restraints: Inability to distinguish multiple targets and varying climate conditions affecting performance.
  • Opportunities: The push for autonomous vehicles, new business models/smart mobility solutions, and the adoption of 4D imaging radar for enhanced safety and cost-effective sensor fusion.
  • Challenges: Competition from alternative technologies and fluctuating raw material prices/supply chain disruptions.
  • Product Development/Innovation: Insights into upcoming technologies and R&D activities.
  • Market Development: Analysis of lucrative markets across varied regions.
  • Market Diversification: Information on new products, services, untapped geographies, and recent investments.

Table of Contents

  • 1 INTRODUCTION 28

    • 1.1 STUDY OBJECTIVES 28
    • 1.2 MARKET DEFINITION 29
    • 1.3 STUDY SCOPE 33
      • 1.3.1 MARKET SEGMENTATION & REGIONAL SCOPE 33
      • 1.3.2 INCLUSIONS & EXCLUSIONS 33
    • 1.4 YEARS CONSIDERED 34
    • 1.5 CURRENCY CONSIDERED 35
    • 1.6 UNITS CONSIDERED 35
    • 1.7 STAKEHOLDERS 35
    • 1.8 SUMMARY OF CHANGES 36
  • 2 RESEARCH METHODOLOGY 37

    • 2.1 RESEARCH DATA 37
      • 2.1.1 SECONDARY DATA 38
        • 2.1.1.1 List of key secondary sources 39
        • 2.1.1.2 Key data from secondary sources 40
      • 2.1.2 PRIMARY DATA 40
        • 2.1.2.1 Primary interviews: Demand and supply sides 41
        • 2.1.2.2 Primary participants 41
        • 2.1.2.3 Objectives of primary research 42
    • 2.2 MARKET SIZE ESTIMATION 42
      • 2.2.1 BOTTOM-UP APPROACH 44
      • 2.2.2 TOP-DOWN APPROACH 44
    • 2.3 DATA TRIANGULATION 46
    • 2.4 FACTOR ANALYSIS 48
      • 2.4.1 DEMAND- AND SUPPLY-SIDE FACTOR ANALYSIS 48
    • 2.5 RESEARCH ASSUMPTIONS 48
    • 2.6 RESEARCH LIMITATIONS 49
    • 2.7 RISK ANALYSIS 50
  • 3 EXECUTIVE SUMMARY 52

  • 4 PREMIUM INSIGHTS 56

    • 4.1 ATTRACTIVE OPPORTUNITIES FOR PLAYERS IN AUTOMOTIVE RADAR MARKET 56
    • 4.2 AUTOMOTIVE RADAR MARKET, BY RANGE 56
    • 4.3 AUTOMOTIVE RADAR MARKET, BY VEHICLE TYPE 57
    • 4.4 AUTOMOTIVE RADAR MARKET, BY FREQUENCY 57
    • 4.5 AUTOMOTIVE RADAR MARKET, BY EV TYPE 58
    • 4.6 AUTOMOTIVE RADAR MARKET, BY REGION 58
  • 5 MARKET OVERVIEW 59

    • 5.1 INTRODUCTION 59
    • 5.2 MARKET DYNAMICS 61
      • 5.2.1 DRIVERS 61
        • 5.2.1.1 Surging demand for ADAS and technological advancements to drive growth 61
        • 5.2.1.2 Increasing reliance on Doppler frequency shift technology 62
        • 5.2.1.3 Advancements in 7X-GHZ radar technology 63
        • 5.2.1.4 Integration with electric and connected vehicles 64
      • 5.2.2 RESTRAINTS 65
        • 5.2.2.1 Inability to distinguish multiple targets 65
        • 5.2.2.2 Varying weather conditions affecting radar performance and reliability 65
      • 5.2.3 OPPORTUNITIES 66
        • 5.2.3.1 Rising demand for autonomous vehicles 66
        • 5.2.3.2 Unlocking new business models and smart mobility solutions with automotive radar technology models 67
        • 5.2.3.3 Growing adoption of 4D imaging radar for enhanced safety, autonomy, and cost-effective sensor fusion in next-gen vehicles 67
      • 5.2.4 CHALLENGES 68
        • 5.2.4.1 Competition from substitute technologies 68
        • 5.2.4.2 Fluctuating raw material prices and supply chain disruptions 69
    • 5.3 TRENDS AND DISRUPTIONS IMPACTING CUSTOMER BUSINESS 71
    • 5.4 PRICING ANALYSIS 72
      • 5.4.1 AVERAGE SELLING PRICES OF KEY PLAYERS, BY RANGE 72
      • 5.4.2 AVERAGE SELLING PRICE, BY REGION 73
    • 5.5 ECOSYSTEM ANALYSIS 74
    • 5.6 SUPPLY CHAIN ANALYSIS 75
    • 5.7 CASE STUDY ANALYSIS 77
      • 5.7.1 CONTINENTAL IMPLEMENTED 4D IMAGING RADAR TECHNOLOGY WITH SOPHISTICATED MIMO ARCHITECTURE 77
      • 5.7.2 NXP DEVELOPED SAF85XX FAMILY OF RADAR SOCS TO OVERCOME LIMITATIONS OF EXISTING RADAR SYSTEMS 77
      • 5.7.3 ROBERT BOSCH LEVERAGED SYNTHETIC APERTURE RADAR (SAR) TECHNOLOGY TO OVERCOME LIMITATIONS OF TRADITIONAL AUTOMOTIVE RADAR SYSTEMS 78
      • 5.7.4 VECTOR & ROHDE AND SCHWARZ HIL SYSTEM COLLABORATED TO OFFER SOLUTION FOR COMPREHENSIVE TESTING ENVIRONMENT 78
    • 5.8 INVESTMENT & FUNDING SCENARIO 79
    • 5.9 PATENT ANALYSIS 80
      • 5.9.1 INTRODUCTION 80
      • 5.9.2 TOP PATENT APPLICANTS 81
    • 5.10 IMPACT OF AI/GEN AI 83
    • 5.11 TECHNOLOGY ANALYSIS 84
      • 5.11.1 KEY TECHNOLOGIES 84
        • 5.11.1.1 Multi-radar systems 84
          • 5.11.1.1.1 Functions of multi-radar systems 84
        • 5.11.1.2 AI-integrated radar 85
        • 5.11.1.3 Radar systems for autonomous vehicles 85
      • 5.11.2 COMPLEMENTARY TECHNOLOGIES 87
        • 5.11.2.1 Sub-Terahertz radar 87
      • 5.11.3 ADJACENT TECHNOLOGIES 88
        • 5.11.3.1 5G network on machine-to-machine communication 88
    • 5.12 HS CODES 88
      • 5.12.1 IMPORT SCENARIO 88
      • 5.12.2 EXPORT SCENARIO 90
    • 5.13 SUPPLIER ANALYSIS 91
    • 5.14 TARIFF AND REGULATORY LANDSCAPE 93
      • 5.14.1 TARIFF DATA 93
      • 5.14.2 REGULATORY BODIES, GOVERNMENT AGENCIES, AND OTHER ORGANIZATIONS 95
    • 5.15 KEY CONFERENCES & EVENTS, 2025-2026 99
    • 5.16 KEY STAKEHOLDERS AND BUYING CRITERIA 99
      • 5.16.1 KEY STAKEHOLDERS IN BUYING PROCESS 99
      • 5.16.2 BUYING CRITERIA 100
    • 5.17 US 2025 TARIFF 102
      • 5.17.1 INTRODUCTION 102
      • 5.17.2 KEY TARIFF RATES 103
      • 5.17.3 PRICE IMPACT ANALYSIS 104
      • 5.17.4 IMPACT ON COUNTRY/REGION 104
        • 5.17.4.1 North America 104
          • 5.17.4.1.1 United States-Mexico-Canada Agreement (USMCA) 104
        • 5.17.4.2 Europe 104
          • 5.17.4.2.1 Germany 105
          • 5.17.4.2.2 UK 105
          • 5.17.4.2.3 Slovakia 105
          • 5.17.4.2.4 Belgium 105
          • 5.17.4.2.5 Other countries 105
        • 5.17.4.3 Asia Pacific 105
          • 5.17.4.3.1 China 105
          • 5.17.4.3.2 Japan 106
          • 5.17.4.3.3 South Korea 106
          • 5.17.4.3.4 India 106
      • 5.17.5 IMPACT ON END USE INDUSTRY 106
        • 5.17.5.1 Strategies followed by OEMs/Automotive component manufacturers 107
  • 6 AUTOMOTIVE RADAR MARKET, BY VEHICLE TYPE 108

    • 6.1 INTRODUCTION 109
    • 6.2 PASSENGER CAR 111
      • 6.2.1 REGULATORY MANDATES AND ADAS INTEGRATION DRIVE RADAR ADOPTION IN PASSENGER VEHICLES 111
    • 6.3 LIGHT COMMERCIAL VEHICLE 112
      • 6.3.1 RISING DEMAND FOR SAFETY FEATURES IN LIGHT COMMERCIAL VEHICLES TO DRIVE MARKET 112
    • 6.4 HEAVY COMMERCIAL VEHICLE 114
      • 6.4.1 ADVANCED RADAR ENHANCES SAFETY, AUTOMATION, AND EFFICIENCY IN HEAVY COMMERCIAL VEHICLES 114
    • 6.5 KEY PRIMARY INSIGHTS 117
  • 7 AUTOMOTIVE RADAR MARKET, BY FREQUENCY 118

    • 7.1 INTRODUCTION 119
    • 7.2 2X-GHZ 121
      • 7.2.1 2X-GHZ RADAR IS COST-EFFECTIVE IN MID-RANGE AND ENTRY-LEVEL VEHICLES 121
    • 7.3 7X-GHZ 124
      • 7.3.1 NEED FOR HIGH RESOLUTION AND ACCURACY TO DRIVE DEMAND FOR 7X-GHZ RADAR SYSTEM 124
    • 7.4 KEY PRIMARY INSIGHTS 126
  • 8 AUTOMOTIVE RADAR MARKET, BY RANGE 127

    • 8.1 INTRODUCTION 128
    • 8.2 SHORT-RANGE RADAR 131
      • 8.2.1 NEED FOR QUICK AND PRECISE RESPONSES TO IMPROVE SAFETY TO DRIVE MARKET 131
    • 8.3 MEDIUM-RANGE RADAR 133
      • 8.3.1 FOCUS ON MAINTAINING BALANCE BETWEEN CLOSE-RANGE PRECISION OF SHORT-RANGE RADAR AND EXTENDED REACH OF LONG-RANGE RADAR TO DRIVE DEMAND 133
    • 8.4 LONG-RANGE RADAR 135
      • 8.4.1 INCREASING DEMAND FOR LEVELS 2 AND 3 AUTONOMY TO DRIVE GROWTH 135
    • 8.5 KEY PRIMARY INSIGHTS 136
  • 9 AUTOMOTIVE RADAR MARKET, BY EV TYPE 137

    • 9.1 INTRODUCTION 138
    • 9.2 BATTERY ELECTRIC VEHICLE 140
      • 9.2.1 INCREASING SAFETY REGULATIONS TO DRIVE ADOPTION OF RADAR SYSTEMS IN BATTERY ELECTRIC VEHICLES 140
    • 9.3 PLUG-IN HYBRID ELECTRIC VEHICLE 140
      • 9.3.1 DEMAND FOR LEVELS 2 AND 3 DRIVING CAPABILITIES TO BOOST ADOPTION OF RADAR SYSTEMS IN PLUG-IN HYBRID ELECTRIC VEHICLES 140
    • 9.4 FUEL CELL ELECTRIC VEHICLE 140
      • 9.4.1 FOCUS ON INTEGRATING ADAS WITH AUTONOMOUS DRIVING TECHNOLOGIES TO FUEL ADOPTION OF RADAR SYSTEMS IN FUEL CELL ELECTRIC VEHICLES 140
    • 9.5 HYBRID ELECTRIC VEHICLE 141
      • 9.5.1 RISING DEMAND FOR ADOPTION OF ADAS IN HYBRID ELECTRIC VEHICLES TO BOOST GROWTH 141
    • 9.6 KEY PRIMARY INSIGHTS 141
  • 10 AUTOMOTIVE RADAR MARKET, BY MOUNTING 142

    • 10.1 INTRODUCTION 143
    • 10.2 EXTERIOR 145
      • 10.2.1 DEMAND FOR VEHICLES WITH HIGH-RESOLUTION OBJECT DETECTION AND TRACKING CAPABILITIES TO DRIVE MARKET 145
    • 10.3 IN-CABIN 147
      • 10.3.1 FOCUS ON ENHANCING CABIN SAFETY, COMFORT, AND CONVENIENCE TO DRIVE MARKET 147
  • 11 AUTOMOTIVE RADAR MARKET, BY APPLICATION 151

    • 11.1 INTRODUCTION 151
    • 11.2 ADAPTIVE CRUISE CONTROL (ACC) 151
    • 11.3 AUTOMATIC EMERGENCY BRAKING (AEB) 152
    • 11.4 BLIND SPOT DETECTION (BSD) 154
    • 11.5 FORWARD COLLISION WARNING SYSTEM (FCWS) 155
    • 11.6 INTELLIGENT PARKING ASSISTANCE (IPA) 156
    • 11.7 CROSS TRAFFIC ALERT (CTA) 157
    • 11.8 LANE DEPARTURE WARNING SYSTEM (LDWS) 158
    • 11.9 TRAFFIC JAM ASSIST (TJA) 158
  • 12 AUTOMOTIVE RADAR MARKET, BY REGION 160

    • 12.1 INTRODUCTION 161
    • 12.2 ASIA PACIFIC 164
      • 12.2.1 MACROECONOMIC OUTLOOK 164
      • 12.2.2 CHINA 169
        • 12.2.2.1 Rising demand for ADAS features in passenger cars to drive market 169
      • 12.2.3 JAPAN 171
        • 12.2.3.1 Government initiatives to enhance ADAS features to drive market 171
      • 12.2.4 INDIA 172
        • 12.2.4.1 Rising focus on affordable safety solutions and technologies to drive market 172
      • 12.2.5 SOUTH KOREA 174
        • 12.2.5.1 Introduction of new vehicle models equipped with ADAS to drive market 174
      • 12.2.6 THAILAND 175
        • 12.2.6.1 Rising demand for electric vehicles to drive market 175
      • 12.2.7 INDONESIA 177
        • 12.2.7.1 Local ADAS production and strategic partnerships by OEMs to drive growth 177
      • 12.2.8 REST OF ASIA PACIFIC 179
    • 12.3 EUROPE 180
      • 12.3.1 MACROECONOMIC OUTLOOK 181
      • 12.3.2 FRANCE 186
        • 12.3.2.1 Stringent government policies for vehicle and passenger safety to drive market 186
      • 12.3.3 GERMANY 188
        • 12.3.3.1 Increasing sales of luxury vehicles with advanced safety features to drive market 188
      • 12.3.4 SPAIN 189
        • 12.3.4.1 Focus on enhanced road safety to drive market 189
      • 12.3.5 UK 191
        • 12.3.5.1 Focus on innovation and high-tech manufacturing to drive market 191
      • 12.3.6 RUSSIA 192
        • 12.3.6.1 Growing adoption of ADAS in passenger car models to drive market 192
      • 12.3.7 TURKEY 194
        • 12.3.7.1 Government support to modernize automotive sector to drive market 194
      • 12.3.8 REST OF EUROPE 195
    • 12.4 NORTH AMERICA 197
      • 12.4.1 MACROECONOMIC OUTLOOK 197
      • 12.4.2 US 203
        • 12.4.2.1 Rising need for adopting high-quality radar across various vehicle segments to drive market 203
      • 12.4.3 CANADA 204
        • 12.4.3.1 Increasing consumer demand for vehicles equipped with advanced features to drive market 204
      • 12.4.4 MEXICO 206
        • 12.4.4.1 Stringent safety standards to drive demand for automotive radar systems 206
    • 12.5 REST OF THE WORLD 207
      • 12.5.1 MACROECONOMIC OUTLOOK 208
      • 12.5.2 BRAZIL 211
        • 12.5.2.1 Strategic investments by automotive giants to drive market 211
      • 12.5.3 IRAN 213
        • 12.5.3.1 Policies promoting adoption of radar technology in commercial vehicles to drive market 213
      • 12.5.4 SOUTH AFRICA 214
        • 12.5.4.1 Shift in preference toward electric and connected vehicles to drive market 214
  • 13 COMPETITIVE LANDSCAPE 217

    • 13.1 INTRODUCTION 217
    • 13.2 KEY PLAYER STRATEGIES/RIGHT TO WIN 217
    • 13.3 MARKET SHARE ANALYSIS, 2024 220
    • 13.4 REVENUE ANALYSIS, 2020-2024 222
    • 13.5 COMPANY VALUATION AND FINANCIAL METRICS 223
      • 13.5.1 COMPANY VALUATION 223
      • 13.5.2 FINANCIAL METRICS 223
    • 13.6 BRAND/PRODUCT COMPARISON 224
    • 13.7 COMPANY EVALUATION MATRIX: KEY PLAYERS, 2024 224
      • 13.7.1 STARS 225
      • 13.7.2 EMERGING LEADERS 225
      • 13.7.3 PERVASIVE PLAYERS 225
      • 13.7.4 PARTICIPANTS 225
      • 13.7.5 COMPANY FOOTPRINT: KEY PLAYERS, 2024 227
        • 13.7.5.1 Company footprint 227
        • 13.7.5.2 Region footprint 227
        • 13.7.5.3 Frequency footprint 228
        • 13.7.5.4 Range footprint 228
    • 13.8 COMPANY EVALUATION MATRIX: STARTUPS/SMES, 2024 229
      • 13.8.1 PROGRESSIVE COMPANIES 229
      • 13.8.2 RESPONSIVE COMPANIES 229
      • 13.8.3 DYNAMIC COMPANIES 229
      • 13.8.4 STARTING BLOCKS 229
      • 13.8.5 COMPETITIVE BENCHMARKING 231
    • 13.9 COMPETITIVE SCENARIOS 232
      • 13.9.1 PRODUCT LAUNCHES 232
      • 13.9.2 DEALS 234
      • 13.9.3 EXPANSIONS 235
  • 14 COMPANY PROFILES 237

    • 14.1 KEY PLAYERS 237
      • 14.1.1 ROBERT BOSCH GMBH 237
        • 14.1.1.1 Business overview 237
        • 14.1.1.2 Products offered 238
        • 14.1.1.3 Recent developments 239
          • 14.1.1.3.1 Product launches/developments 239
          • 14.1.1.3.2 Deals 240
          • 14.1.1.3.3 Expansions 240
        • 14.1.1.4 MnM view 241
          • 14.1.1.4.1 Key strengths 241
          • 14.1.1.4.2 Strategic choices 241
          • 14.1.1.4.3 Weaknesses and competitive threats 241
      • 14.1.2 CONTINENTAL AG 242
        • 14.1.2.1 Business overview 242
        • 14.1.2.2 Products offered 244
        • 14.1.2.3 Recent developments 245
          • 14.1.2.3.1 Product launches/developments 245
          • 14.1.2.3.2 Expansions 246
          • 14.1.2.3.3 Other developments 247
        • 14.1.2.4 MnM view 247
          • 14.1.2.4.1 Key strengths 247
          • 14.1.2.4.2 Strategic choices 247
          • 14.1.2.4.3 Weaknesses and competitive threats 248
      • 14.1.3 APTIV 249
        • 14.1.3.1 Business overview 249
        • 14.1.3.2 Products offered 250
        • 14.1.3.3 Recent developments 251
          • 14.1.3.3.1 Product launches/developments 251
          • 14.1.3.3.2 Deals 252
          • 14.1.3.3.3 Expansions 252
        • 14.1.3.4 MnM view 253
          • 14.1.3.4.1 Key strengths 253
          • 14.1.3.4.2 Strategic choices 253
          • 14.1.3.4.3 Weaknesses and competitive threats 253
      • 14.1.4 DENSO CORPORATION 254
        • 14.1.4.1 Business overview 254
        • 14.1.4.2 Products offered 256
        • 14.1.4.3 Recent developments 256
          • 14.1.4.3.1 Product launches/developments 256
          • 14.1.4.3.2 Deals 257
          • 14.1.4.3.3 Expansions 257
        • 14.1.4.4 MnM view 258
          • 14.1.4.4.1 Key strengths 258
          • 14.1.4.4.2 Strategic choices 258
          • 14.1.4.4.3 Weaknesses and competitive threats 258
      • 14.1.5 NXP SEMICONDUCTORS 259
        • 14.1.5.1 Business overview 259
        • 14.1.5.2 Products offered 260
        • 14.1.5.3 Recent developments 261
          • 14.1.5.3.1 Product launches/developments 261
          • 14.1.5.3.2 Deals 262
        • 14.1.5.4 MnM view 263
          • 14.1.5.4.1 Key strengths 263
          • 14.1.5.4.2 Strategic choices 263
          • 14.1.5.4.3 Weaknesses and competitive threats 263
      • 14.1.6 FICOSA INTERNACIONAL SA 264
        • 14.1.6.1 Business overview 264
        • 14.1.6.2 Products offered 265
        • 14.1.6.3 Recent developments 265
          • 14.1.6.3.1 Product launches/developments 265
          • 14.1.6.3.2 Deals 265
          • 14.1.6.3.3 Expansions 266
          • 14.1.6.3.4 Other developments 266
      • 14.1.7 INFINEON TECHNOLOGIES AG 267
        • 14.1.7.1 Business overview 267
        • 14.1.7.2 Products offered 268
        • 14.1.7.3 Recent developments 269
          • 14.1.7.3.1 Product launches/developments 269
          • 14.1.7.3.2 Deals 270
      • 14.1.8 VALEO 271
        • 14.1.8.1 Business overview 271
        • 14.1.8.2 Products offered 273
        • 14.1.8.3 Recent developments 273
          • 14.1.8.3.1 Product launches/developments 273
          • 14.1.8.3.2 Deals 274
          • 14.1.8.3.3 Expansions 275
          • 14.1.8.3.4 Other developments 275
      • 14.1.9 ZF FRIEDRICHSHAFEN AG 276
        • 14.1.9.1 Business overview 276
        • 14.1.9.2 Products offered 277
        • 14.1.9.3 Recent developments 278
          • 14.1.9.3.1 Product launches/developments 278
          • 14.1.9.3.2 Deals 279
          • 14.1.9.3.3 Expansions 279
      • 14.1.10 TEXAS INSTRUMENTS INCORPORATED 280
        • 14.1.10.1 Business overview 280
        • 14.1.10.2 Products offered 281
        • 14.1.10.3 Recent developments 282
          • 14.1.10.3.1 Product launches/developments 282
          • 14.1.10.3.2 Deals 282
      • 14.1.11 MAGNA INTERNATIONAL INC 284
        • 14.1.11.1 Business overview 284
        • 14.1.11.2 Products offered 285
        • 14.1.11.3 Recent developments 286
          • 14.1.11.3.1 Deals 286
          • 14.1.11.3.2 Expansions 287
          • 14.1.11.3.3 Other developments 288
      • 14.1.12 RENESAS ELECTRONICS CORPORATION 289
        • 14.1.12.1 Business overview 289
        • 14.1.12.2 Products offered 290
        • 14.1.12.3 Recent developments 291
          • 14.1.12.3.1 Product launches/developments 291
          • 14.1.12.3.2 Deals 291
    • 14.2 OTHER PLAYERS 292
      • 14.2.1 HL KLEMOVE 292
      • 14.2.2 AMBARELLA INTERNATIONAL LP 293
      • 14.2.3 ASTEMO, LTD 294
      • 14.2.4 KYOCERA CORPORATION 295
      • 14.2.5 SAMSUNG ELECTRO-MECHANICS 296
      • 14.2.6 HYUNDAI MOBIS 297
      • 14.2.7 STONKAM CO., LTD 298
      • 14.2.8 BRIGADE ELECTRONICS GROUP PLC 299
      • 14.2.9 LG ELECTRONICS 299
      • 14.2.10 VAYYAR AUTOMOTIVE 300
      • 14.2.11 STMICROELECTRONICS 301
      • 14.2.12 NOVELIC 302
      • 14.2.13 HUAWEI TECHNOLOGIES CO., LTD 303
      • 14.2.14 HELLA GMBH & CO. KGAA 304
      • 14.2.15 SPARTAN RADAR, INC 305
      • 14.2.16 BITSENSING INC 305
      • 14.2.17 ALTOS RADAR 306
      • 14.2.18 LUNEWAVE INC 307
      • 14.2.19 NPS (NEURAL PROPULSION SYSTEMS, INC) 308
  • 15 RECOMMENDATIONS BY MARKETSANDMARKETS 309

    • 15.1 EUROPE TO BE PROMINENT MARKET FOR AUTOMOTIVE RADAR 309
    • 15.2 TECHNICAL DEVELOPMENTS IN 7X-GHZ RADAR TECHNOLOGY TO IMPACT MARKET GROWTH 309
    • 15.3 DEMAND FOR ADVANCED DRIVER ASSISTANCE SYSTEMS TO DRIVE NEED FOR AUTOMOTIVE RADAR SYSTEMS 310
    • 15.4 CONCLUSION 311
  • 16 APPENDIX 312

    • 16.1 KEY INSIGHTS OF INDUSTRY EXPERTS 312
    • 16.2 DISCUSSION GUIDE 312
    • 16.3 KNOWLEDGESTORE: MARKETSANDMARKETS’ SUBSCRIPTION PORTAL 315
    • 16.4 CUSTOMIZATION OPTIONS 317
      • 16.4.1 COMPANY PROFILES 317
        • 16.4.1.1 Profiling of Additional Market Players (Up to 5) 317
      • 16.4.2 AUTOMOTIVE RADAR MARKET, BY RANGE, AT COUNTRY LEVEL 317
      • 16.4.3 AUTOMOTIVE RADAR MARKET, BY FREQUENCY, AT COUNTRY LEVEL 317
    • 16.5 RELATED REPORTS 317
    • 16.6 AUTHOR DETAILS 318
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