IoT in Automotive Market – Global Industry Analysis and Forecast (2022-2029)

IoT in Automotive Market was valued US$ 66.76 Bn. in 2021 and is expected to reach US$ 373.17 Bn. by 2029, at a CAGR of 24 % during the forecast period.

IoT in Automotive Market Overview:

In the concept of IoT (Internet of Things) the instance of connected automotive is the most common and popular worldwide. Since past few years, automobiles have become extensively software-driven, among which the term IoT plays vital role. The Internet of Things (IoT) is a basis of interconnected computing devices, which supports the digital & mechanical devices along with the autonomy in data transfer. The introductions of IoT in automotive market supplement the need for automated gadgets that offers benefits like, analysing real-time data of vehicles on road and fleet operators. IoT in Automotive MarketTo know about the Research Methodology :- Request Free Sample Report Further, it is integrated with internet of smart automotive that allows diverse communication types such as, in-vehicle, vehicle-to-vehicle, and vehicle-to-infrastructure. Large base of players in automotive sector have started interlinking cars to data streams. But the relation between automotive technology and drivers is the example of most definite, productive and extended record of success & best management than any other industry. The report presents the analysis of Global IoT in Automotive Market with regards to different segments, geography and role of several small & large companies in the market. At the same time the report study has also analyzed revenue impact of COVID -19 pandemic on the sales revenue of market leaders, market followers and market disrupters in the report and same is reflected in our analysis.

IoT in Automotive Market Dynamics:

The growing focus and investments from the worldwide automobile manufacturers is boosting the development in the sector and opening doors for launch of advanced vehicles embedded with latest technology. The facilities like real-time incident, location mapping, other error detection & alarming and traffic alerts fuel the demand for latest technology like IoT in automotive world-wide. The upsurge in R&D expenses and concern for safety and other regulations from government on every vehicle manufactured is driving the growth in global market. In addition, extended version of vehicle-to-vehicle as well as vehicle-to-infrastructure communication technologies will drive the development in sector. This anticipates the automotive IoT market to witness a noteworthy growth in the forecasted years. Rising use of smart phones and other smart gadgets is estimated to bring the exponential demand and rapid adoption of automotive integrated with IoT. Conversely, lack of coverage and uneven connectivity in cellular or smart devices are likely to hamper the market growth in forecasted period. In addition, the high cost involved in the manufacturing, instalment and maintenance will affect the market adversely and the major challenges for market players to overcome. Another essential part responsible for boosting market demand is growing attraction towards latest technology embedded automotive and rise in per capita income of large amount of population around globe.

IoT in Automotive Market Regional Analysis:

In 2021, North America stood as the leading region with US$ xx Bn. The region is expected to reach US$ xx Bn by 2029 growing with CAGR xx% during forecast period. The growth in this region is mainly contributed from the emerged economy of the Canada and the U.S. as R&D units of various major companies are existed in these countries. Besides, The North America market is anticipated to be the leading region as its population has high awareness levels and buying capacity for the new technology. Europe is also estimated to grow at accelerated CAGR of xx% during forecast period owing to the attraction of people for luxury and advanced vehicles. Similarly, the report covers the detail analysis of all the regions such as, Asia Pacific, Latin America, and Middle East & Africa. Their growth rate and the reason for growth along with the expected value to be reached by end of the 2029 are mentioned in the final report.

IoT in Automotive Market Objective:

The objective of the report is to present a comprehensive analysis of the Global IoT in Automotive Market including all the stakeholders of the industry. The past and current status of the industry with forecasted market size and trends are presented in the report with the analysis of complicated data in simple language. The report covers all the aspects of the industry with a dedicated study of key players that includes market leaders, followers and new entrants. PORTER, SVOR, PESTEL analysis with the potential impact of micro-economic factors of the market have presented in the report. External as well as internal factors that are supposed to affect the business positively or negatively have been analyzed, which will give a clear futuristic view of the industry to the decision-makers. The report also helps in understanding Global IoT in Automotive Market dynamics, structure by analyzing the market segments and projects the Global IoT in Automotive Market size. Clear representation of competitive analysis of key players by Application, price, financial position, Product portfolio, growth strategies, and regional presence in the Global IoT in Automotive Market make the report investor’s guide.

IoT in Automotive Market Report Scope: Inquire before buying

Global IoT in Automotive Market
Report Coverage Details
Base Year: 2021 Forecast Period: 2022-2029
Historical Data: 2017 to 2021 Market Size in 2021: US $ 66.76 Bn.
Forecast Period 2022 to 2029 CAGR: 24% Market Size in 2029: US $ 373.17 Bn.
Segments Covered: by Connectivity Form Factor • Tethered • Integrated • Embedded
by Component • Hardware • Software • Services
by Application • Navigation • Telematics • Infotainment
by Communication Type • Vehicle-to-Vehicle Communication • In-vehicle Communication • Vehicle-to-Infrastructure Communication

Global IoT in Automotive Market, By Region

• North America • Europe • Asia Pacific • Middle East & Africa • South America

IoT in Automotive Market Key Players

• Texas Instruments Inc., • General Motors, • Ford Motor Company, • Apple Inc., • Cisco Systems Inc., • Intel Corporation, • IBM Corporation, • Google Inc., • Microsoft Corporation, • Vodafone Group, • Audi AG, • Robert Bosch GmbH • NXP Semiconductors • TOMTOM • Thales SA • AT&T

Frequently Asked Questions:

1. Which region has the largest share in Global IoT in Automotive Market? Ans: North America region holds the highest share in 2021. 2. What is the growth rate of Global IoT in Automotive Market? Ans: The Global IoT in Automotive Market is growing at a CAGR of 24% during forecasting period 2022-2029. 3. What is scope of the Global IoT in Automotive market report? Ans: Global IoT in Automotive Market report helps with the PESTEL, PORTER, COVID-19 Impact analysis, Recommendations for Investors & Leaders, and market estimation of the forecast period. 4. Who are the key players in Global IoT in Automotive market? Ans: The important key players in the Global IoT in Automotive Market are – Texas Instruments Inc., General Motors, Ford Motor Company, Apple Inc., Cisco Systems Inc., Intel Corporation, IBM Corporation, Google Inc., Microsoft Corporation, Vodafone Group, Audi AG, Robert Bosch GmbH, NXP Semiconductors, TOMTOM, Thales SA, and AT&T 5. What is the study period of this market? Ans: The Global IoT in Automotive Market is studied from 2021 to 2029.
Global IoT in Automotive Market 1. Preface 1.1. Report Scope and Market Segmentation 1.2. Research Highlights 1.3. Research Objectives 2. Assumptions and Research Methodology 2.1. Report Assumptions 2.2. Abbreviations 2.3. Research Methodology 2.3.1. Secondary Research 2.3.1.1. Secondary data 2.3.1.2. Secondary Sources 2.3.2. Primary Research 2.3.2.1. Data from Primary Sources 2.3.2.2. Breakdown of Primary Sources 3. Executive Summary: Global IoT in Automotive Market Size, by Market Value (US$ Bn) 4. Market Overview 4.1. Introduction 4.2. Market Indicator 4.2.1. Drivers 4.2.2. Restraints 4.2.3. Opportunities 4.2.4. Challenges 4.3. Porter’s Analysis 4.4. Value Chain Analysis 4.5. Market Risk Analysis 4.6. SWOT Analysis 4.7. Industry Trends and Emerging Technologies 5. Supply Side and Demand Side Indicators 6. Global IoT in Automotive Market Analysis and Forecast 6.1. Global IoT in Automotive Market Size & Y-o-Y Growth Analysis 6.1.1. North America 6.1.2. Europe 6.1.3. Asia Pacific 6.1.4. Middle East & Africa 6.1.5. South America 7. Global IoT in Automotive Market Analysis and Forecast, By Connectivity Form Factor 7.1. Introduction and Definition 7.2. Key Findings 7.3. Global IoT in Automotive Market Value Share Analysis, By Connectivity Form Factor 7.4. Global IoT in Automotive Market Size (US$ Bn) Forecast, By Connectivity Form Factor 7.5. Global IoT in Automotive Market Analysis, By Connectivity Form Factor 7.6. Global IoT in Automotive Market Attractiveness Analysis, By Connectivity Form Factor 8. Global IoT in Automotive Market Analysis and Forecast, By Component 8.1. Introduction and Definition 8.2. Key Findings 8.3. Global IoT in Automotive Market Value Share Analysis, By Component 8.4. Global IoT in Automotive Market Size (US$ Bn) Forecast, By Component 8.5. Global IoT in Automotive Market Analysis, By Component 8.6. Global IoT in Automotive Market Attractiveness Analysis, By Component 9. Global IoT in Automotive Market Analysis and Forecast, By Application 9.1. Introduction and Definition 9.2. Key Findings 9.3. Global IoT in Automotive Market Value Share Analysis, By Application 9.4. Global IoT in Automotive Market Size (US$ Bn) Forecast, By Application 9.5. Global IoT in Automotive Market Analysis, By Application 9.6. Global IoT in Automotive Market Attractiveness Analysis, By Application 10. Global IoT in Automotive Market Analysis and Forecast, By Communication Type 10.1. Introduction and Definition 10.2. Key Findings 10.3. Global IoT in Automotive Market Value Share Analysis, By Communication Type 10.4. Global IoT in Automotive Market Size (US$ Bn) Forecast, By Communication Type 10.5. Global IoT in Automotive Market Analysis, By Communication Type 10.6. Global IoT in Automotive Market Attractiveness Analysis, By Communication Type 11. Global IoT in Automotive Market Analysis, by Region 11.1. Global IoT in Automotive Market Value Share Analysis, by Region 11.2. Global IoT in Automotive Market Size (US$ Bn) Forecast, by Region 11.3. Global IoT in Automotive Market Attractiveness Analysis, by Region 12. North America IoT in Automotive Market Analysis 12.1. Key Findings 12.2. North America IoT in Automotive Market Overview 12.3. North America IoT in Automotive Market Value Share Analysis, By Connectivity Form Factor 12.4. North America IoT in Automotive Market Forecast, By Connectivity Form Factor 12.4.1. Tethered 12.4.2. Integrated 12.4.3. Embedded 12.5. North America IoT in Automotive Market Value Share Analysis, By Component 12.6. North America IoT in Automotive Market Forecast, By Component 12.6.1. Hardware 12.6.2. Software 12.6.3. Services 12.7. North America IoT in Automotive Market Value Share Analysis, By Application 12.8. North America IoT in Automotive Market Forecast, By Application 12.8.1. Navigation 12.8.2. Telematics 12.8.3. Infotainment 12.9. North America IoT in Automotive Market Value Share Analysis, By Communication Type 12.10. North America IoT in Automotive Market Forecast, By Communication Type 12.10.1. Vehicle-to-Vehicle Communication 12.10.2. In-vehicle Communication 12.10.3. Vehicle-to-Infrastructure Communication 12.11. North America IoT in Automotive Market Value Share Analysis, by Country 12.12. North America IoT in Automotive Market Forecast, by Country 12.12.1. U.S. 12.12.2. Canada 12.13. North America IoT in Automotive Market Analysis, by Country 12.14. U.S. IoT in Automotive Market Forecast, By Connectivity Form Factor 12.14.1. Tethered 12.14.2. Integrated 12.14.3. Embedded 12.15. U.S. IoT in Automotive Market Forecast, By Component 12.15.1. Hardware 12.15.2. Software 12.15.3. Services 12.16. U.S. IoT in Automotive Market Forecast, By Application 12.16.1. Navigation 12.16.2. Telematics 12.16.3. Infotainment 12.17. U.S. IoT in Automotive Market Forecast, By Communication Type 12.17.1. Vehicle-to-Vehicle Communication 12.17.2. In-vehicle Communication 12.17.3. Vehicle-to-Infrastructure Communication 12.18. Canada IoT in Automotive Market Forecast, By Connectivity Form Factor 12.18.1. Tethered 12.18.2. Integrated 12.18.3. Embedded 12.19. Canada IoT in Automotive Market Forecast, By Component 12.19.1. Hardware 12.19.2. Software 12.19.3. Services 12.20. Canada IoT in Automotive Market Forecast, By Application 12.20.1. Navigation 12.20.2. Telematics 12.20.3. Infotainment 12.21. Canada IoT in Automotive Market Forecast, By Communication Type 12.21.1. Vehicle-to-Vehicle Communication 12.21.2. In-vehicle Communication 12.21.3. Vehicle-to-Infrastructure Communication 12.22. North America IoT in Automotive Market Attractiveness Analysis 12.22.1. By Connectivity Form Factor 12.22.2. By Component 12.22.3. By Application 12.22.4. By Communication Type 12.23. PEST Analysis 12.24. Key Trends 12.25. Key Developments 13. Europe IoT in Automotive Market Analysis 13.1. Key Findings 13.2. Europe IoT in Automotive Market Overview 13.3. Europe IoT in Automotive Market Value Share Analysis, By Connectivity Form Factor 13.4. Europe IoT in Automotive Market Forecast, By Connectivity Form Factor 13.4.1. Tethered 13.4.2. Integrated 13.4.3. Embedded 13.5. Europe IoT in Automotive Market Value Share Analysis, By Component 13.6. Europe IoT in Automotive Market Forecast, By Component 13.6.1. Hardware 13.6.2. Software 13.6.3. Services 13.7. Europe IoT in Automotive Market Value Share Analysis, By Application 13.8. Europe IoT in Automotive Market Forecast, By Application 13.8.1. Navigation 13.8.2. Telematics 13.8.3. Infotainment 13.9. Europe IoT in Automotive Market Value Share Analysis, By Communication Type 13.10. Europe IoT in Automotive Market Forecast, By Communication Type 13.10.1. Vehicle-to-Vehicle Communication 13.10.2. In-vehicle Communication 13.10.3. Vehicle-to-Infrastructure Communication 13.11. Europe IoT in Automotive Market Value Share Analysis, by Country 13.12. Europe IoT in Automotive Market Forecast, by Country 13.12.1. Germany 13.12.2. U.K. 13.12.3. France 13.12.4. Italy 13.12.5. Spain 13.12.6. Rest of Europe 13.13. Europe IoT in Automotive Market Analysis, by Country 13.14. Germany IoT in Automotive Market Forecast, By Connectivity Form Factor 13.14.1. Tethered 13.14.2. Integrated 13.14.3. Embedded 13.15. Germany IoT in Automotive Market Forecast, By Component 13.15.1. Hardware 13.15.2. Software 13.15.3. Services 13.16. Germany IoT in Automotive Market Forecast, By Application 13.16.1. Navigation 13.16.2. Telematics 13.16.3. Infotainment 13.17. Germany IoT in Automotive Market Forecast, By Communication Type 13.17.1. Vehicle-to-Vehicle Communication 13.17.2. In-vehicle Communication 13.17.3. Vehicle-to-Infrastructure Communication 13.18. U.K. IoT in Automotive Market Forecast, By Connectivity Form Factor 13.18.1. Tethered 13.18.2. Integrated 13.18.3. Embedded 13.19. U.K. IoT in Automotive Market Forecast, By Component 13.19.1. Hardware 13.19.2. Software 13.19.3. Services 13.20. U.K. IoT in Automotive Market Forecast, By Application 13.20.1. Navigation 13.20.2. Telematics 13.20.3. Infotainment 13.21. U.K. IoT in Automotive Market Forecast, By Communication Type 13.21.1. Vehicle-to-Vehicle Communication 13.21.2. In-vehicle Communication 13.21.3. Vehicle-to-Infrastructure Communication 13.22. France IoT in Automotive Market Forecast, By Connectivity Form Factor 13.22.1. Tethered 13.22.2. Integrated 13.22.3. Embedded 13.23. France IoT in Automotive Market Forecast, By Component 13.23.1. Hardware 13.23.2. Software 13.23.3. Services 13.24. France IoT in Automotive Market Forecast, By Application 13.24.1. Navigation 13.24.2. Telematics 13.24.3. Infotainment 13.25. France IoT in Automotive Market Forecast, By Communication Type 13.25.1. Vehicle-to-Vehicle Communication 13.25.2. In-vehicle Communication 13.25.3. Vehicle-to-Infrastructure Communication 13.26. Italy IoT in Automotive Market Forecast, By Connectivity Form Factor 13.26.1. Tethered 13.26.2. Integrated 13.26.3. Embedded 13.27. Italy IoT in Automotive Market Forecast, By Component 13.27.1. Hardware 13.27.2. Software 13.27.3. Services 13.28. Italy IoT in Automotive Market Forecast, By Application 13.28.1. Navigation 13.28.2. Telematics 13.28.3. Infotainment 13.29. Italy IoT in Automotive Market Forecast, By Communication Type 13.29.1. Vehicle-to-Vehicle Communication 13.29.2. In-vehicle Communication 13.29.3. Vehicle-to-Infrastructure Communication 13.30. Spain IoT in Automotive Market Forecast, By Connectivity Form Factor 13.30.1. Tethered 13.30.2. Integrated 13.30.3. Embedded 13.31. Spain IoT in Automotive Market Forecast, By Component 13.31.1. Hardware 13.31.2. Software 13.31.3. Services 13.32. Spain IoT in Automotive Market Forecast, By Application 13.32.1. Navigation 13.32.2. Telematics 13.32.3. Infotainment 13.33. Spain IoT in Automotive Market Forecast, By Communication Type 13.33.1. Vehicle-to-Vehicle Communication 13.33.2. In-vehicle Communication 13.33.3. Vehicle-to-Infrastructure Communication 13.34. Rest of Europe IoT in Automotive Market Forecast, By Connectivity Form Factor 13.34.1. Tethered 13.34.2. Integrated 13.34.3. Embedded 13.35. Rest of Europe IoT in Automotive Market Forecast, By Component 13.35.1. Hardware 13.35.2. Software 13.35.3. Services 13.36. Rest of Europe IoT in Automotive Market Forecast, By Application 13.36.1. Navigation 13.36.2. Telematics 13.36.3. Infotainment 13.37. Rest Of Europe IoT in Automotive Market Forecast, By Communication Type 13.37.1. Vehicle-to-Vehicle Communication 13.37.2. In-vehicle Communication 13.37.3. Vehicle-to-Infrastructure Communication 13.38. Europe IoT in Automotive Market Attractiveness Analysis 13.38.1. By Connectivity Form Factor 13.38.2. By Component 13.38.3. By Application 13.38.4. By Communication Type 13.39. PEST Analysis 13.40. Key Trends 13.41. Key Developments 14. Asia Pacific IoT in Automotive Market Analysis 14.1. Key Findings 14.2. Asia Pacific IoT in Automotive Market Overview 14.3. Asia Pacific IoT in Automotive Market Value Share Analysis, By Connectivity Form Factor 14.4. Asia Pacific IoT in Automotive Market Forecast, By Connectivity Form Factor 14.4.1. Tethered 14.4.2. Integrated 14.4.3. Embedded 14.5. Asia Pacific IoT in Automotive Market Value Share Analysis, By Component 14.6. Asia Pacific IoT in Automotive Market Forecast, By Component 14.6.1. Hardware 14.6.2. Software 14.6.3. Services 14.7. Asia Pacific IoT in Automotive Market Value Share Analysis, By Application 14.8. Asia Pacific IoT in Automotive Market Forecast, By Application 14.8.1. Navigation 14.8.2. Telematics 14.8.3. Infotainment 14.9. Asia Pacific IoT in Automotive Market Value Share Analysis, By Communication Type 14.10. Asia Pacific IoT in Automotive Market Forecast, By Communication Type 14.10.1. Vehicle-to-Vehicle Communication 14.10.2. In-vehicle Communication 14.10.3. Vehicle-to-Infrastructure Communication 14.11. Asia Pacific IoT in Automotive Market Value Share Analysis, by Country 14.12. Asia Pacific IoT in Automotive Market Forecast, by Country 14.12.1. China 14.12.2. India 14.12.3. Japan 14.12.4. ASEAN 14.12.5. Rest of Asia Pacific 14.13. Asia Pacific IoT in Automotive Market Analysis, by Country 14.14. China IoT in Automotive Market Forecast, By Connectivity Form Factor 14.14.1. Tethered 14.14.2. Integrated 14.14.3. Embedded 14.15. China IoT in Automotive Market Forecast, By Component 14.15.1. Hardware 14.15.2. Software 14.15.3. Services 14.16. China IoT in Automotive Market Forecast, By Application 14.16.1. Navigation 14.16.2. Telematics 14.16.3. Infotainment 14.17. China IoT in Automotive Market Forecast, By Communication Type 14.17.1. Vehicle-to-Vehicle Communication 14.17.2. In-vehicle Communication 14.17.3. Vehicle-to-Infrastructure Communication 14.18. India IoT in Automotive Market Forecast, By Connectivity Form Factor 14.18.1. Tethered 14.18.2. Integrated 14.18.3. Embedded 14.19. India IoT in Automotive Market Forecast, By Component 14.19.1. Hardware 14.19.2. Software 14.19.3. Services 14.20. India IoT in Automotive Market Forecast, By Application 14.20.1. Navigation 14.20.2. Telematics 14.20.3. Infotainment 14.21. India IoT in Automotive Market Forecast, By Communication Type 14.21.1. Vehicle-to-Vehicle Communication 14.21.2. In-vehicle Communication 14.21.3. Vehicle-to-Infrastructure Communication 14.22. Japan IoT in Automotive Market Forecast, By Connectivity Form Factor 14.22.1. Tethered 14.22.2. Integrated 14.22.3. Embedded 14.23. Japan IoT in Automotive Market Forecast, By Component 14.23.1. Hardware 14.23.2. Software 14.23.3. Services 14.24. Japan IoT in Automotive Market Forecast, By Application 14.24.1. Navigation 14.24.2. Telematics 14.24.3. Infotainment 14.25. Japan IoT in Automotive Market Forecast, By Communication Type 14.25.1. Vehicle-to-Vehicle Communication 14.25.2. In-vehicle Communication 14.25.3. Vehicle-to-Infrastructure Communication 14.26. ASEAN IoT in Automotive Market Forecast, By Connectivity Form Factor 14.26.1. Tethered 14.26.2. Integrated 14.26.3. Embedded 14.27. ASEAN IoT in Automotive Market Forecast, By Component 14.27.1. Hardware 14.27.2. Software 14.27.3. Services 14.28. ASEAN IoT in Automotive Market Forecast, By Application 14.28.1. Navigation 14.28.2. Telematics 14.28.3. Infotainment 14.29. ASEAN IoT in Automotive Market Forecast, By Communication Type 14.29.1. Vehicle-to-Vehicle Communication 14.29.2. In-vehicle Communication 14.29.3. Vehicle-to-Infrastructure Communication 14.30. Rest of Asia Pacific IoT in Automotive Market Forecast, By Connectivity Form Factor 14.30.1. Tethered 14.30.2. Integrated 14.30.3. Embedded 14.31. Rest of Asia Pacific IoT in Automotive Market Forecast, By Component 14.31.1. Hardware 14.31.2. Software 14.31.3. Services 14.32. Rest of Asia Pacific IoT in Automotive Market Forecast, By Application 14.32.1. Navigation 14.32.2. Telematics 14.32.3. Infotainment 14.33. Rest of Asia Pacific IoT in Automotive Market Forecast, By Communication Type 14.33.1. Vehicle-to-Vehicle Communication 14.33.2. In-vehicle Communication 14.33.3. Vehicle-to-Infrastructure Communication 14.34. Asia Pacific IoT in Automotive Market Attractiveness Analysis 14.34.1. By Connectivity Form Factor 14.34.2. By Component 14.34.3. By Application 14.34.4. By Communication Type 14.35. PEST Analysis 14.36. Key Trends 14.37. Key Developments 15. Middle East & Africa IoT in Automotive Market Analysis 15.1. Key Findings 15.2. Middle East & Africa IoT in Automotive Market Overview 15.3. Middle East & Africa IoT in Automotive Market Value Share Analysis, By Connectivity Form Factor 15.4. Middle East & Africa IoT in Automotive Market Forecast, By Connectivity Form Factor 15.4.1. Tethered 15.4.2. Integrated 15.4.3. Embedded 15.5. Middle East & Africa IoT in Automotive Market Value Share Analysis, By Component 15.6. Middle East & Africa IoT in Automotive Market Forecast, By Component 15.6.1. Hardware 15.6.2. Software 15.6.3. Services 15.7. Middle East & Africa IoT in Automotive Market Value Share Analysis, By Application 15.8. Middle East & Africa IoT in Automotive Market Forecast, By Application 15.8.1. Navigation 15.8.2. Telematics 15.8.3. Infotainment 15.9. Middle East & Africa IoT in Automotive Market Value Share Analysis, By Communication Type 15.10. Middle East & Africa IoT in Automotive Market Forecast, By Communication Type 15.10.1. Vehicle-to-Vehicle Communication 15.10.2. In-vehicle Communication 15.10.3. Vehicle-to-Infrastructure Communication 15.11. Middle East & Africa IoT in Automotive Market Value Share Analysis, by Country 15.12. Middle East & Africa IoT in Automotive Market Forecast, by Country 15.12.1. GCC 15.12.2. South Africa 15.12.3. Rest of Middle East & Africa 15.13. Middle East & Africa IoT in Automotive Market Analysis, by Country 15.14. GCC IoT in Automotive Market Forecast, By Connectivity Form Factor 15.14.1. Tethered 15.14.2. Integrated 15.14.3. Embedded 15.15. GCC IoT in Automotive Market Forecast, By Component 15.15.1. Hardware 15.15.2. Software 15.15.3. Services 15.16. GCC IoT in Automotive Market Forecast, By Application 15.16.1. Navigation 15.16.2. Telematics 15.16.3. Infotainment 15.17. GCC IoT in Automotive Market Forecast, By Communication Type 15.17.1. Vehicle-to-Vehicle Communication 15.17.2. In-vehicle Communication 15.17.3. Vehicle-to-Infrastructure Communication 15.18. South Africa IoT in Automotive Market Forecast, By Connectivity Form Factor 15.18.1. Tethered 15.18.2. Integrated 15.18.3. Embedded 15.19. South Africa IoT in Automotive Market Forecast, By Component 15.19.1. Hardware 15.19.2. Software 15.19.3. Services 15.20. South Africa IoT in Automotive Market Forecast, By Application 15.20.1. Navigation 15.20.2. Telematics 15.20.3. Infotainment 15.21. South Africa IoT in Automotive Market Forecast, By Communication Type 15.21.1. Vehicle-to-Vehicle Communication 15.21.2. In-vehicle Communication 15.21.3. Vehicle-to-Infrastructure Communication 15.22. Rest of Middle East & Africa IoT in Automotive Market Forecast, By Connectivity Form Factor 15.22.1. Tethered 15.22.2. Integrated 15.22.3. Embedded 15.23. Rest of Middle East & Africa IoT in Automotive Market Forecast, By Component 15.23.1. Hardware 15.23.2. Software 15.23.3. Services 15.24. Rest of Middle East & Africa IoT in Automotive Market Forecast, By Application 15.24.1. Navigation 15.24.2. Telematics 15.24.3. Infotainment 15.25. Rest of Middle East & Africa IoT in Automotive Market Forecast, By Communication Type 15.25.1. Vehicle-to-Vehicle Communication 15.25.2. In-vehicle Communication 15.25.3. Vehicle-to-Infrastructure Communication 15.26. Middle East & Africa IoT in Automotive Market Attractiveness Analysis 15.26.1. By Connectivity Form Factor 15.26.2. By Component 15.26.3. By Application 15.26.4. By Communication Type 15.27. PEST Analysis 15.28. Key Trends 15.29. Key Developments 16. South America IoT in Automotive Market Analysis 16.1. Key Findings 16.2. South America IoT in Automotive Market Overview 16.3. South America IoT in Automotive Market Value Share Analysis, By Connectivity Form Factor 16.4. South America IoT in Automotive Market Forecast, By Connectivity Form Factor 16.4.1. Tethered 16.4.2. Integrated 16.4.3. Embedded 16.5. South America IoT in Automotive Market Value Share Analysis, By Component 16.6. South America IoT in Automotive Market Forecast, By Component 16.6.1. Hardware 16.6.2. Software 16.6.3. Services 16.7. South America IoT in Automotive Market Value Share Analysis, By Application 16.8. South America IoT in Automotive Market Forecast, By Application 16.8.1. Navigation 16.8.2. Telematics 16.8.3. Infotainment 16.9. South America IoT in Automotive Market Value Share Analysis, By Communication Type 16.10. South America IoT in Automotive Market Forecast, By Communication Type 16.10.1. Vehicle-to-Vehicle Communication 16.10.2. In-vehicle Communication 16.10.3. Vehicle-to-Infrastructure Communication 16.11. South America IoT in Automotive Market Value Share Analysis, by Country 16.12. South America IoT in Automotive Market Forecast, by Country 16.12.1. Brazil 16.12.2. Mexico 16.12.3. Rest of South America 16.13. South America IoT in Automotive Market Analysis, by Country 16.14. Brazil IoT in Automotive Market Forecast, By Connectivity Form Factor 16.14.1. Tethered 16.14.2. Integrated 16.14.3. Embedded 16.15. Brazil IoT in Automotive Market Forecast, By Component 16.15.1. Hardware 16.15.2. Software 16.15.3. Services 16.16. Brazil IoT in Automotive Market Forecast, By Application 16.16.1. Navigation 16.16.2. Telematics 16.16.3. Infotainment 16.17. Brazil IoT in Automotive Market Forecast, By Communication Type 16.17.1. Vehicle-to-Vehicle Communication 16.17.2. In-vehicle Communication 16.17.3. Vehicle-to-Infrastructure Communication 16.18. Mexico IoT in Automotive Market Forecast, By Connectivity Form Factor 16.18.1. Tethered 16.18.2. Integrated 16.18.3. Embedded 16.19. Mexico IoT in Automotive Market Forecast, By Component 16.19.1. Hardware 16.19.2. Software 16.19.3. Services 16.20. Mexico IoT in Automotive Market Forecast, By Application 16.20.1. Navigation 16.20.2. Telematics 16.20.3. Infotainment 16.21. Mexico IoT in Automotive Market Forecast, By Communication Type 16.21.1. Vehicle-to-Vehicle Communication 16.21.2. In-vehicle Communication 16.21.3. Vehicle-to-Infrastructure Communication 16.22. Rest of South America IoT in Automotive Market Forecast, By Connectivity Form Factor 16.22.1. Tethered 16.22.2. Integrated 16.22.3. Embedded 16.23. Rest of South America IoT in Automotive Market Forecast, By Component 16.23.1. Hardware 16.23.2. Software 16.23.3. Services 16.24. Rest of South America IoT in Automotive Market Forecast, By Application 16.24.1. Navigation 16.24.2. Telematics 16.24.3. Infotainment 16.25. Rest of South America IoT in Automotive Market Forecast, By Communication Type 16.25.1. Vehicle-to-Vehicle Communication 16.25.2. In-vehicle Communication 16.25.3. Vehicle-to-Infrastructure Communication 16.26. South America IoT in Automotive Market Attractiveness Analysis 16.26.1. By Connectivity Form Factor 16.26.2. By Component 16.26.3. By Application 16.26.4. By Communication Type 16.27. PEST Analysis 16.28. Key Trends 16.29. Key Developments 17. Company Profiles 17.1. Market Share Analysis, by Company 17.2. Competition Matrix 17.2.1. Competitive Benchmarking of key players by price, presence, market share, Applications and R&D investment 17.2.2. New Product Launches and Product Enhancements 17.2.3. Market Consolidation 17.2.3.1. M&A by Regions, Investment and Applications 17.2.3.2. M&A Key Players, Forward Integration and Backward Integration 17.3. Company Profiles: Key Players 17.3.1. General Motors 17.3.1.1. Company Overview 17.3.1.2. Financial Overview 17.3.1.3. Product Portfolio 17.3.1.4. Business Strategy 17.3.1.5. Recent Developments 17.3.1.6. Development Footprint 17.3.2. Texas Instruments Inc., 17.3.3. Ford Motor Company, 17.3.4. Apple Inc., 17.3.5. Cisco Systems Inc., 17.3.6. Intel Corporation, 17.3.7. IBM Corporation, 17.3.8. Google Inc., 17.3.9. Microsoft Corporation, 17.3.10. Vodafone Group, 17.3.11. Audi AG, 17.3.12. Robert Bosch GmbH 17.3.13. NXP Semiconductors 17.3.14. TOMTOM 17.3.15. Thales SA 17.3.16. AT&T 18. Primary Key Insights
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