January 22, 2021

Sensor

New York City, NY: Nov. 27, 2020 – Published via (Wired Release)- Market.us recently updated imminent competitive report facilitates a deep dive into the Automotive Engine Sensor Market 2021 including assessment of business-centric facet viz. commercialization rate, concentration market ratio and popular marketing strategies. And also contains thoughtful insights, facts, historical data, and statistically supported and industry-validated market data. The report offers an extensive analysis of the changing market dynamics, prescriptive trends along with the factors and parameters impacting it in both the short and long term, major segments, market player positioning, industry roadmap, pricing analysis, and competitive scenario.

The insightful research report on the Automotive Engine Sensor Market includes Porter’s Five Forces Analysis and SWOT Analysis to understand the factors impacting consumer and supplier behaviour. It’s used a suitable set of assumptions and methodologies for future projections till 2030. The overall market is split by the company, by country, and by application/type for the competitive landscape analysis. Furthermore, the report provides powerful suggestions and recommendations to help players create strong growth strategies and ensure impressive sales in the Automotive Engine Sensor Market.

In the hindsight of COVID-19 pandemic, nation-wide lockdowns are being observed worldwide, leading to uncertainties and upheavals in business dynamics. To address the crisis, all companies in differing industry sectors are revisiting their financial trajectories and framing new strategies. Our report, having thorough documentation of the market, provides assistance in devising contingency plans to cope with industry uncertainties.

Get a PDF Sample with Complete TOC By Considering the COVID-19 Impact on Automotive Engine Sensor Market: https://market.us/report/automotive-engine-sensor-market/request-sample/

NOTE: Market.us analysts monitoring the situation across the globe explains that the market will generate remunerative prospects for producers post COVID-19 crisis. The report aims to provide an additional illustration of the latest scenario, economic slowdown and COVID-19 impact on the overall industry.

Analyzing Marketing Status:

The report contains the values as well as the right information on the market which has been analyzed on the basis of upcoming competitors and the existing leading players. The report helps in offering a proper understanding of the development of market growth.  Additionally, the market report also studies a complete assessment of the aspects that are anticipated to influence the growth of the global Automotive Engine Sensor market. Moreover, the report has been consistently studied with respect to significant market segments. Most of the companies present in the market are efficient at the technological front but require significant support for enhancing their services and expanding their businesses.

Leading competitive hierarchy analyzed in the Automotive Engine Sensor market research include  NXP Semiconductors, Robert Bosch, Continental, Sensata Technologies and Aptiv.

Interested to Procure The Data? Enquire Here (Official Communications Will Be Delivered Using Verified Corporate Email Only) @ https://market.us/report/automotive-engine-sensor-market/#inquiry  

Market Segment Analysis by Applications, Type Drivers, Regional and Forecast To 2030

Each type provides information about the production during the forecast period and The application segment also provides consumption during the forecast period of 2021 to 2030.

The report splits b types spectrum:

Mass Airflow Sensors,

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Nov 27, 2020 (Heraldkeepers) —
Automotive sensors monitor and management the chemical, physical and method changes of the cars. Sensors square measure accustomed minimize the fuel consumption, reduce onboard weight of car and comply with government laws towards the passenger’s safety.

The Global Automotive Sensor Market is expected to exceed more than US$ 5 Billion by 2024 at a CAGR of 23% in the given forecast period.

You Can Browse Full Report here: https://www.marketresearchengine.com/automotive-sensor-market

The report covers detailed competitive outlook including the market share and company profiles of the key participants operating in the global market. Key players profiled in the report include Robert Bosch GmbH (Germany), Denso Corporation (Japan), Valeo Pvt. Ltd (France), Delphi Automotive LLP (UK), Hitachi Appliances Inc. (Japan), Continental AG Corporation (Germany), Sensata Technologies Inc. (US), Infineon Technologies AG (Germany), Autoliv Inc. (US), NXP semiconductors (US), and STMicroelectronics N.V (Switzerland). Company profile includes assign such as company summary, financial summary, business strategy and planning, SWOT analysis and current developments.

The Global Automotive Sensor Market is segmented on the lines of its sensor type, application and regional. Based on sensor type segmentation it covers Temperature Sensors, Position Sensors, Oxygen Sensors, Nox Sensors, Speed Sensors, Inertial Sensors, Image Sensors and Other Sensors. Based on application it covers Power train, Chassis, Exhaust, Safety and Control, Application, Body Electronics, Telematics and Others. Global Automotive Sensor Market on geographic segmentation covers various regions such as North America, Europe, Asia Pacific, Latin America, Middle East and Africa. Each geographic market is further segmented to provide market revenue for select countries such as the U.S., Canada, U.K. Germany, China, Japan, India, Brazil, and GCC countries.

The scope of the report includes a detailed study of Global Automotive Sensor Market with the reasons given for variations in the growth of the industry in certain regions.

This report provides:

1) An overview of the global market for Global Automotive Sensor Market and related technologies.
2) Analyses of global market trends, with data from 2015, estimates for 2016 and 2017, and projections of compound annual growth rates (CAGRs) through 2024.
3) Identifications of new market opportunities and targeted promotional plans for Global Automotive Sensor Market.

4) Discussion of research and development, and the demand for new products and new applications.
5) Comprehensive company profiles of major players in the industry.

The restraining factors of Global Automotive Sensor Market­ are as follows:

  • High development cost including raw material cost

The major driving factors of Global Automotive Sensor Market are as follows:

  • Increasing use of sensors in hybrid and electrical cars
  • Favorable legislations to be used of automotive sensors
  • Consumer issues regarding vehicle security and atmosphere safety (includes image sensor)

The Global Automotive Sensor Market has been segmented as below:

The Global Automotive Sensor Market is segmented on the Basis of Application Type, Sensor Type and Regional Analysis. By Application Type this market is segmented on the basis of Power train, Chassis,, Exhaust, Safety and

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Pune, New York, USA, November 25 2020 (Wiredrelease) Research Dive :Light detection and ranging (LiDAR) is a vital sensing technology for enabling autonomous cars and vehicles. LiDAR uses a pulsed laser to detect angle, velocity, and distance with high precision. LiDAR can sense lane markings, classify objects, and can be also used to correctly position an autonomous vehicle.

The Research Dive published blog states that when compared with the conventional methods, automotive LiDAR sensors have made the inspection, mapping, and detection of objects easier. Precise and accurate data points can be delivered with laser light in short time. This sensor also has an ability to provide 3D scanning of images and extremely accurate data in a shorter time.

Check out How COVID-19 impact on the Automotive LiDAR Sensor Market. Click here to Speak with Analyst @ https://www.researchdive.com/connect-to-analyst/146

Trends and Recent Developments in Automotive LiDAR Sensors

In order to be beneficial for autonomous driving, automotive LiDAR sensor has to swoop the environment to build a useable 3D map. A LiDAR technology company, Velodyne has two different technologies for producing a 3D map. Surround View is one platform which achieves a 360-degree view around the sensor. This platform uses a solid-state LiDAR electronic engine, which is basically rotated on a spindle.
The other platform of Velodyne is Vellaray, which is an embeddable small form factor. This platform uses frictionless beam steering, which can be swept in two axes. However, as its field of view is limited to 120o in the horizontal plane, it is not physically rotated.

The resolution of modern automotive LiDAR sensor is good enough to differentiate between various objects. Besides distance, LiDAR sensor can also examine the reflectivity of an object. In stop signs, the background is in red and the word stop is in white. Thus, by the virtue of reflectivity, the LiDAR system can determine its nature and just not the presence of a sign. The lane markings are also more reflective than the road signs

The next generation of LiDAR system is now being developed and commercialized by Veoneer for automotive application using scalable auto-grade automotive LiDAR sensor and 3D software technology of Velodyne. Both companies will contribute technologies, key components, know-how, and other logical property that is required to improve the next generation of high performance and affordable LiDARs for the automotive market.

Download Sample Copy and Reveal the Market Overview, Opportunity, Expansion and Growth of Automotive LiDAR Sensor Market. Click here to know more in details @ https://www.researchdive.com/download-sample/146

Hence, automotive LiDAR sensor provides a view of the world independent of radar and cameras. Although, cameras and radar cannot be replaced. As a backup, there will always be a necessity for a redundant sensor modality in cases where the LiDAR sensor fails.

Forecast Analysis of Automotive LiDAR Sensor Market

Global automotive LiDAR sensor market is anticipated to witness a progressive growth during the forecast period from 2019 to 2026. The improved automated processing ability of automotive LiDAR sensors in terms of data processing capabilities and

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Nov 23, 2020 (CDN Newswire via Comtex) —
MarketsandResearch.biz has newly published research study entitled Global Automotive Sensor Technologies Market 2020 by Company, Regions, Type and Application, Forecast to 2026 that incorporates the analysis of different factors that extends the market’s growth. The report assists with breaking down top makers, districts, and in like manner covers industry deals channel, wholesalers, vendors, research findings, and conclusion. The report discloses the shortest and durable growth projections of the global Automotive Sensor Technologies market. The report provides the scope of different segments and applications that can potentially influence the market in the future. It constitutes trends, restraints, and drivers as well as key challenges that are required to market growth in the projection period from 2020 to 2026. In addition, the report drops light on different opportunities, growth prospects, major segmentation, and challenges.

Short Description of The Market:

The report distributes a profound analysis of manufacturers, type, and application, forecast to 2026. The research explores fundamental components of the market that is basic to be recognized by existing and new market players. The report offers an essential vision of the worldwide position as far as market size, market possibilities, and present condition. The exploration centers around basic components, including the study of the overall industry, producing, key market players, local division, and a lot more crucial viewpoints identified with the worldwide Automotive Sensor Technologies market.

DOWNLOAD FREE SAMPLE REPORT:https://www.marketsandresearch.biz/sample-request/58184

NOTE: Our report highlights the major issues and hazards that companies might come across due to the unprecedented outbreak of COVID-19.

Leading industry players included in the report are: Analog Devices, Autoliv, Continental, Delphi Automotive, GE Measurement & Control Solutions, Hitachi Automotive Systems, Honeywell, Valeo, Aisin Seiki, Huf-group, U-Shin, ITW Automotive,

Unraveling Regional Diversification:

Further, this mindful presentation of the global market comprises vital details on regional scope and development highlighting potential growth spots. Additionally, the report serves as a convenient guide to design and implement potential growth steering activities across select regional pockets in the global Automotive Sensor Technologies market. Regional level growth, sales, revenue, gross margin from 2015-2020 has been analyzed. In addition, the production value growth rate, production growth rate, import and export, and key players of each regional market are provided.

The article is divided into the following regions: North America (United States, Canada and Mexico), Europe (Germany, France, UK, Russia and Italy), Asia-Pacific (China, Japan, Korea, India and Southeast Asia), South America (Brazil, Argentina, Colombia etc.), Middle East and Africa (Saudi Arabia, UAE, Egypt, Nigeria and South Africa)

The report highlights product types which are as follows: Rotational Motion Sensors, Chemical and Gas Sensors, Pressure Sensors, Angular and Linear Position Sensors, Temperature Sensors, Mass Airflow Sensors, Accelerometers, Image Sensors, Others

The report highlights top applications which are as follows: Passenger Cars, Commercial Vehicles,

Questions Are Answered In This Research Report:

  • Which are the most potential countries and markets?
  • What is the global Automotive Sensor Technologies
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Nov 24, 2020 (Market Insight Reports) —
Selbyville, Delaware the prime objective of Automotive Sensor report is to help the user understand the market in terms of its definition, segmentation, market potential, influential trends, and the challenges that the market is facing. Deep researches and analysis were done during the preparation of the report.

Market players operating in the global automotive sensor market are investing significantly in research and development and technological innovation to develop advanced products to meet the growing consumer demands. The development of autonomous vehicles is significantly increasing the demand for automotive sensors. Autonomous cars operate using a combination of different technologies such as GPS sensing knowledge for navigation, sensors for collision avoidance, and augmented reality for driver information.

Request a sample of this premium report at: https://www.marketstudyreport.com/request-a-sample/1695182/?utm_source=Marketwatch.com&utm_medium=AN

The global Automotive Sensor Market is anticipated to reach around USD 54.92 billion by 2026 according to a new research published by The marker research report. In 2017, the engine and drivetrain application dominated the global market, in terms of revenue. In 2017, Asia-Pacific accounted for the majority share in the global Automotive Sensor market.

In 2017, Asia-Pacific accounted for the highest share in the global automotive sensor market. The primary factors driving the automotive sensor market growth in the region include established automotive industry, technological advancements, and high investment in R&D. The introduction of stringent government regulations regarding vehicular safety and emissions accelerates the adoption of automotive sensors in the region. The economic growth in countries such as China, Japan, and India, increasing development of autonomous vehicles, and growing automotive modernization further increases the demand of automotive sensors in the region.

The leading companies profiled in the Automotive Sensor Market Report include Denso Corporation, TE Connectivity Ltd., Continental AG, Analog Devices Inc., Eaton Corporation, Ford Motors, Robert Bosch GmbH, Autoliv Inc, AMETEK Inc., and General Electric. These companies launch new products and collaborate with other market leaders to innovate and launch new products to meet the increasing needs and requirements of consumers.

The expanding global automotive industry, along with increasing demand for passenger cars majorly drives the market growth. The adoption of electric vehicles has increased significantly owing to stringent government regulations regarding vehicular emissions, thereby supporting market growth. Other factors driving the market growth include growing demand of ADAS systems, technological advancements, and modernization of vehicles. New emerging markets, emerging consumer demographics, and increasing demand of vehicles would provide growth opportunities for automotive sensor market in the coming years.

For More Details on this Report At: https://www.marketstudyreport.com/reports/automotive-sensor-market-by-type-pressure-sensors-speed-sensors-temperature-sensors-position-sensors-oxygen-sensors-inertial-sensors-image-sensors-others-by-vehicle-type-passenger-vehicles-commercial-vehicles-by-application-safety-and-security-emission-control-engine-and-drivetrain-others-by-region-market-size-forecast-2018-2026?utm_source=Marketwatch.com&utm_medium=AN

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As part of modern vehicle’s transition from older technologies to new technologies, inductive position sensors aim to replace Hall effect sensors, and this transition is intrinsically tied to better management of issues related to automotive sensor degradation.

For instance, Microchip Technology has unveiled inductive position sensors for automotive applications such as automobile throttle body, transmission gear sensing, electronic power steering, and accelerator pedals. The value proposition: position measurements are immune to stray magnetic fields and don’t require an external magnetic device.

While automotive engineers want to ensure that sensors work across a range of temperatures, they are concerned about variations in the mechanical structure and magnet degradation, impacting the accuracy. On the other hand, an inductive position sensor uses a piece of metal instead of a magnet, and the piece of metal doesn’t age much over time.

“That’s a big component to watch in sensor degradation, whether something happens to IC or externally,” said Mark Smith, senior marketing manager at Microchip. When it comes to sensor degradation, engineers have to mostly worry about the longevity of the PCB when using inductive position sensors, Smith added.

It’s also crucial because sensor ICs serving automotive applications increasingly require ASIL certifications. Microchip’s inductive position sensors—LX3301A, LX3302A, and LX34050—comply with ASIL-B certification, allowing system designers to detect ≥90% of all single-point failures.

Figure 1 A greater EEPROM space in LX3302A inductive position sensor facilitates eight calibration points to ensure sensor measurement accuracy. Source: Microchip

Sensor degradation management

Currently, the industry is managing sensor degradation-related problems from the ground up to comply with ASIL certifications. What happens if this transistor fails or that circuit malfunctions? What can engineers do if a sensor is short on output? “It’s a very deterministic and time-consuming approach,” Smith said.

Specific experiments must be carried out to check or justify certain numbers, also known as coverage rates. Automotive engineers can create a fault and ensure that it can be detected while using reliability charts from industry standards. “It’s a relatively simple system, and engineers can efficiently handle them,” Smith added.

Today’s vehicles use around 50 position sensors, so a shift from Hall effect sensors to inductive position sensors can be critical in managing automotive sensor degradation. Beyond the selection of sensors in which materials don’t age much, what else is on the cards in efficiently managing sensor degradation in vehicles? Smith believes machine learning is the way forward.

Smith said that machine learning models could implement pattern recognition before failures show up in automotive sensors. “Automotive engineers can analyze five different sensors and detect a system-level failure as well as degradation at a higher level.”

Machine learning is the future

While the automotive industry is looking at the sensor degradation problems very deterministically, moving forward, there is an ample opportunity for using some of the advanced computing techniques to perform degradation-related analysis using machine learning. However, the idea of using machine learning to manage sensor degradation in vehicles is currently in infancy and will require far more compute power.

Figure

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FILE PHOTO: A Velodyne LiDAR sensor is seen on an autonomous vehicle at the BlackBerry QNX headquarters in Ottawa, Ontario, Canada, February 15, 2019. REUTERS/Chris Wattie/File Photo

(Reuters) – Velodyne Lidar Inc said on Friday it would introduce a new lidar unit, a key sensor in self-driving cars, with a target price point of less than $500 and no moving parts.

Velodyne became a public company in September and is one of several companies vying to supply automakers with lidar, a sensor that generates a three-dimensional map of the road ahead. Velodyne was an early entrant into the market, and its units have powered research operations for many automakers.

Some of those early research units were bulky, contained many moving parts and cost well above $10,000. For mass production in passenger vehicles, automakers and their major suppliers seek units that are sleek enough to fit into attractive car designs and cost well below $1,000.

The autonomous vehicle technology company said the Velarray H800 will have a target price of less than $500. In an interview with Reuters, Velodyne Chief Executive Anand Gopalan said the company is working with contract manufacturing partner Fabrinet to assemble test devices and that mass production will happen at a Fabrinet factory in Thailand.

Velodyne expects automotive-grade mass manufacturing to be under way by the second half of 2021 and that the devices could show up in vehicles in 2022 or 2023, Gopalan told Reuters.

“We have clear line of sight into being able to hit those costs today,” he said of the sub-$500 price point.

The company said the unit will have no moving parts – known as “solid state” in the industry – and will be small enough to fit behind the windshield of a car. It said the sensor can be used for self-driving vehicles or existing driver-assistance features such as emergency braking and lane-keeping assistance.

Velodyne is among a trio of lidar technology developers coming to public markets. Silicon Valley firm Aeva Inc aims to go public by merging with blank-check acquisition company InterPrivate Acquisition Corp, and Luminar Technologies Inc is working through a similar transaction with Gores Metropoulos Inc.

Reporting by Stephen Nellis in San Francisco, Editing by Sherry Jacob-Phillips and Paul Simao

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By Stephen Nellis

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Nov 13 (Reuters) – Velodyne Lidar Inc said on Friday it would introduce a new lidar unit, a key sensor in self-driving cars, with a target price point of less than $500 and no moving parts.

Velodyne became a public company in September and is one of the several companies vying to supply automakers with lidar, a sensor that generates a three-dimensional map of the road ahead. Velodyne was an early entrant into the market and its units have powered research operations for many automakers.

Some of those early research units were bulky, contained many moving parts and cost well above $10,000. For mass production in passenger vehicles, automakers and their major suppliers seek units that are sleek enough to fit into attractive car designs and cost well below $1,000.

An increasing number of devices, such as Apple’s new iPad Pro and iPhone 12 Pro models, include lidar sensors that help with applications such as augmented reality, in which digital content is overlaid on the real world.

Velodyne on Friday floated the concept of Velarray H800, which could be “available at high-volume production levels with a target price of less than $500”, but did not say when the units would go on sale.

The autonomous vehicle technology company said the unit will have no moving parts – known as “solid state” in the industry – and will be small enough to fit behind the windshield of a car. The company said the sensor can be used for self-driving vehicles or existing driver-assistance features such as emergency braking and lane-keeping assistance.

Velodyne is among a trio of lidar technology developers coming to public markets. Silicon Valley firm Aeva Inc aims to go public by merging with blank-check acquisition company InterPrivate Acquisition Corp, and Luminar Technologies Inc is working through a similar transaction with Gores Metropoulos Inc. (Reporting by Stephen Nellis in San Francisco, Editing by Sherry Jacob-Phillips)

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Nov 11, 2020 (CDN Newswire via Comtex) —
Global Automotive Sensor Devices Market 2020 by Manufacturers, Regions, Type and Application, Forecast to 2026 is the latest market report rolled out by MarketsandResearch.biz, one of the world’s leading market research firms. The report contains a detailed description of all the major market components such as global status and trend, market size, sales volume, market share, growth, future trends analysis, segment, and forecasts from 2020 – 2026. In the research report, various factors of the market & industry including market overview, premium insights, key insights, and company profiles of the key market players have been studied/researched and compiled together. The research contains an in-depth study of the market including its key opportunities and growth trends.

Market Sectioning:

The market can be segmented into various types and applications. The report has analyzed all the type and application segments based on present and future trends and the global Automotive Sensor Devices market is estimated from 2020 to 2026. It provides an analysis of each type to understand the driving factors for the fastest-growing type segment for the market. Market share data is available on the global and regional levels. Research analysts understand the competitive strengths and give competitive analysis for each competitor separately.

DOWNLOAD FREE SAMPLE REPORT:https://www.marketsandresearch.biz/sample-request/48063

NOTE: Our analysts monitoring the situation across the globe explains that the market will generate remunerative prospects for producers post COVID-19 crisis. The report aims to provide an additional illustration of the latest scenario, economic slowdown, and COVID-19 impact on the overall industry.

The report provides all the necessary information from the introduction to the conclusion by covering every aspect, scenario, and the latest development of the global Automotive Sensor Devices market. Further, market segmentation, revenue, forecast analysis, major players, regional analysis, product types & applications, new innovation strategies & product introduction, and various other factors have been regarding the growth of the market have been mentioned. Furthermore, it highlights the specific region that holds higher revenue as compared to the other regions.

The main players examined in the report are: Robert Bosch (Germany), Continental (Germany), Delphi Automotive (UK), Denso (Japan), Infineon Technologies (Germany), Sensata Technologies (US), Allegro Microsystems (Japan), Analog Devices (US), ELMOS Semiconductor (Germany), CTS Corporation (UK), Autoliv (Sweden), NXP Semiconductors (Netherlands), TE Connectivity (Switzerland), STMicroelectronics (Switzerland), ZF Friedrichshafen (Germany), Freescale Semiconductor (US),

In market segmentation by types, the report covers: Pressure Sensor, Temperature Sensor, Speed Sensor, Position Sensor, O2 Sensor, NOx Sensor, Inertial Sensor, Image Sensor, Other

In market segmentation by application, the report covers: Passenger Cars, Commercial Cars

The report discusses the latest global Automotive Sensor Devices market import and export trends, production and consumption quotas, major market players in each region, and revenue generation. A detailed overview of major manufacturers, market segments, product line, product line, forecast period, and application landscape has shown in the report. Additionally, the study focuses on the market growth rate, key market

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