Here are relevant reports on : automotive-telematics-market
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Automotive Simulation Market by Deployment (On-premises & Cloud), Component (Software & Services), End Market (OEMs, Automotive Component Manufacturers, & Regulatory Bodies), and Region (Asia Pacific, Europe, North America, & RoW) - Global Forecast to 2025
The automotive simulation market is estimated to be USD 1.4 billion in 2018 and is projected to reach USD 2.9 billion by 2025, at a CAGR of 11.1% during the forecast period. Increasing focus on R&D activities and rapid technological changes owing to the changing government norms for vehicle safety are projected to drive the automotive simulation market. The automotive simulation market is dominated by globally established players such as Ansys (US), Altair (US), Siemens PLM (US), PTC (US), and Dassault Systèmes (France). Also, Design Simulation Technologies (DST) (US), SimScale (Germany), and AnyLogic (US) provide automotive simulation solutions.
- Published: November 2018
- Price: $ 4950
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Global Battery Market by Transport and Transport Mode (Two Wheeler, Automotive, Marine & Aerospace), Automotive Battery by Type (Lead Acid, Lithium Ion & Nickel Metal Hydride) & by Geography - Industry Trends & Forecast to 2021
The global battery market is projected to grow at a CAGR of 4.15% to reach a market size of 17.26 Billion by 2021. The base year for the study is 2015, and the forecast period is from 2016 to 2021. The market size in terms of value for batteries in Asia-Oceania is estimated to reach USD 9.51 Billion by 2021, owing to increasing vehicle production and aircraft shipments. The size of the North American battery market in terms of value is estimated to reach USD 3.74 Billion by 2021 witnessing a CAGR of 4.16% during the forecast period. The global battery market has been segmented by automotive application (passenger car, LCV and HCV), by two wheeler application (motorcycle and scooter), by aerospace application (general aviation and commercial aviation), by marine application (passenger, cargo and tanker), and by region (Asia-Oceania, Europe, North America, and RoW). The report also covers market for automotive batteries by type (lead acid, Ni-MH and Li-Ion).
- Published: April 2016
- Price: $ 4950
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Automotive Ceramics Market by Material (Alumina Oxide, Titanate Oxide, Zirconia Oxide), Vehicle Type (Passenger Vehicle, Commercial Vehicle), Application (Engine Parts, Exhaust Systems, Automotive Electronics), and Region - Global Forecast to 2028
The automotive ceramics market is expected to grow from USD 2.4 billion in 2023 to USD 3.2 billion by 2028, at a CAGR of 5.7% during the forecast period. To enable an in-depth understanding of the competitive landscape, the report includes the profiles of some of the top players in the automotive ceramics market. These are Kyocera Corporation (Japan), Ceramtec GmbH (Germany), Niterra (Japan), Coorstek Inc. (US), and Morgan Advanced Materials (UK).
- Published: March 2024
- Price: $ 4950
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Lubricant Anti-wear Agents Market by Type (ZDDP, Phosphate, Phosphite, Phosphonate) by Application (Engine Oil, Automotive Gear Oil, Automotive Transmission Fluid, Hydraulic oil, Metalworking Fluid, Grease) and Region - Global forecast to 2025
The Lubricant Anti-wear Agents Market is expected to grow from USD 698 million in 2020 to USD 784 million by 2025, at a CAGR of 2.4% during the forecast period. Afton Chemical (US), BASF SE (Germany), Chevron Oronite (US), Solvay (Belgium), LANXESS (Germny) are some of the leading players operating in the lubricant anti-wear agents market. These players have adopted the strategies of agreements, expansions, new product launches, acquisitions, collaborations, contracts, investments, and divestments to enhance their position in the market.
- Published: December 2020
- Price: $ 4950
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Wireless Sensor Network (Wsn) Market by Technology (Wireless Hart, Isa100, Wi-Fi, Z-Wave, Bluetooth, & Others), Application (Automotive, Military And Homeland Security,Oil & Gas, Automotive, & Others) & Geography Trend & Forecast To 2020
Wireless Sensor Network (WSN) comprises of spatially distributed wireless devices with sensors that form wireless networks independently by consuming low power. The major utility of WSN is to reduce the cost of cable-laying thereby enabling an easy arrangement and design for better changes of controls systems such as for buildings, outdoor environment monitoring, and other industrial and home systems.
- Published: January 2026
- Price: $ 4950
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Cockpit Electronics Market for Automotive by Product (HUD, Information Display, Infotainment & Navigation, Instrument Cluster, and Telematics), Type (Basic and Advanced), End Market, Fuel Type (BEV, ICE and Others), and Region - Global Forecast to 2022
The cockpit electronics market for automotive is projected to grow at a CAGR of 8.60% from 2017 to 2022, to reach a market size of USD 51.54 Billion by 2022. The ecosystem of the automotive cockpit electronics market consists of automotive electronics system manufacturers and service providers such as Robert Bosch GmbH (Germany), Continental AG (Germany), Harman International (U.S), Visteon Corporation (U.S), and Delphi Automotive PLC (U.K). These systems and technologies are supplied to automotive OEMs such as Volkswagen AG (Germany), General Motors (U.S.), Daimler AG (Germany), and others.
- Published: June 2017
- Price: $ 4950
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Automotive IoT Market Size, Share, Trends, Statistics and Industry Growth Analysis Report by Offering (Hardware, Software, Services), by Connectivity Form Factor (Embedded, Tethered, Integrated), by Communication Type, by Application (Navigation, Telematics, Infotainment) and Global Growth Driver and Industry Forecast to 2028
The automotive IoT market size is expected to grow from USD 131.2 billion in 2023 to USD 322.0 billion by 2028, at a compound annual growth rate (CAGR) of 19.7% during the forecast period. The Key players NXP Semiconductors (Netherlands), Harman (US), Robert Bosch (Germany), Thales (France), TomTom International (Netherlands), IBM (US), Geotab Inc. (Canada), Texas Instruments (US), Intel Corp. (US), Eurotech (Italy), STMicroelectronics (Switzerland), Renesas (Japan), Infineon Technologies (Germany). Apart from this, Airbiquity (US), Qualcomm (US), Visteon (US), Vodafone Group (UK), Microsoft Corporation (US), Alphabet Inc. (US), AT&T (US), Cloudmade (UK), Sierra Wireless (Canada).
- Published: March 2023
- Price: $ 4950
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Automotive Aftermarket for Top 10 Components (Tire, Fluid, Filter, Battery, Brake, Collision Body, Lighting, Spark Plug, Telematics, Bearings), Vehicle Type (Passenger Car and Commercial Vehicle), and Region - Global Trends and Forecast to 2021
The automotive aftermarket for top 10 components is projected to grow at a CAGR of 7.75% from 2016 to 2021, to reach a market size of USD 302.64 Billion by 2021. The major factors responsible for growth are growing vehicle parc, increase in average life of a vehicle, rising miles driven per year and emergence of new distribution channels. Tires is the largest segment globally, in terms of value. Tires are replaced once they are driven for a fixed set of kilometers or miles. Thus, the replacement or aftermarket for tires becomes an important segment for the automotive tire market. The aftermarket for tires is led by the radial tires segment.
- Published: February 2017
- Price: $ 4950
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Automotive AI Market by Offerings (Compute, Memory, Software), Level of Autonomy (L1, L2, L3, L4, L5), Technology (Deep Learning, ML, Computer Vision, Context-aware Computing, NLP), Application (ADAS, Infotainment, Telematics) - Global Forecast to 2030
The global automotive AI market is expected to grow from USD 18.83 billion in 2025 to USD 38.45 billion by 2030, at a compound annual growth rate (CAGR) of 15.3% during the forecast period. The Key Players Tesla (US), NVIDIA Corporation (US), Mobileye (Israel), Qualcomm Technologies, Inc. (US), and Advanced Micro Devices, Inc. (US).
- Published: July 2025
- Price: $ 4950
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Automotive 3D Printing Market -Trends and Forecasts From 2012 To 2019
This market research analyses and estimates the automotive 3D printing market, which enables the production of physical items while eliminating the traditional manufacturing channel. A part of Additive Manufacturing (AM), this technology has evolved from prototyping in various applications to development of actual usable parts and products. This process involves building products through layering, without the intervention of cutting, drilling, etc. As a result, tweaking the underlying software helps in creation of different items. However, this technology differs from mass production, which results in a large volume of identical parts at low cost. While the majority of the items produced using this process have been mock-ups and prototypes, producers are migrating towards manufacturing low-volume products to be used across various industries. the foremost advantage of this technology is the production of spare parts which cannot be easily obtained otherwise.
- Published: January 2026
- Price: $ 4950
- TOC Available:
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