Functional optimization of car DVR devices is currently attracting R&D efforts of several companies, including leading automotive electronics manufacturers. ON Semiconductor, one of the Fortune 500 semiconductor suppliers, has recently registered a successful attempt of the incorporation of image sensors into in-car DVRs with an objective to achieve enhanced functionality.
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The company’s AR0237AT image sensor, which is the latest version of its AR0237 2.1-Mpixel CMOS image sensor, has been optimized for bespoke deployment in the in-built dash cam. This image sensor added to an OEM-fitted in-car DVR provides a still image capture, in addition to full HD quality video recording. Furthermore, its coupling with the DVR processor also offers a unique filter and low-light performance – attributed to the company’s Clarity+ technology. This technology allows optimization of the SNR (signal-to-noise ratio) of automotive imaging, responsible for a surplus 2x increased light capturing capability.
While IoT and IoE enabled vehicles, and connected car and autonomous driving technologies are supposed to be stepping out of their infancy anytime soon, the applicability of automotive electronic devices such as car DVR is most likely to gear up in full speed. With emergence of a heap of applications in futuristic on-road cars and a pool of untapped safety and security concerns associated with the implementation of car DVRs, the global car DVR market is expected to witness multiple opportunities in terms of car DVR security and vulnerability.
For instance, FossilShale – a leading embedded systems design innovator, has brought to the market a complete range of dual and multi-channel, HD resolution, real-time car DVR offerings – specifically designed for connected cars, which claim to possess cumulative capabilities such as accurate object detection, vision, and long and short-range RADAR. Moreover, recently registered innovations such as cloud supported wireless mini-car DVR that has an HD 4G camera are believed to be the game changers in the automotive surveillance sector.
Competition Analysis: Global Car DVR Market Landscape
For better understanding of the intensity of competition and comprehending a broader view of the key focus enabling companies to survive the competitive scenario in the global car DVR market landscape, the report on car DVR market provides an all-inclusive picture of the market competition. While this section of the report covers company profiles, financials, and strategic developments of some of the leading market players, it aims to offer an added value to the strategic efforts of key players across the value chain in car DVR market.
Honeywell, Panasonic Corporation, Garmin Ltd., Amcrest Technologies, Cobra Electronics Corporation, Lukas, ITronics Group, Hdigital-eye ltd. (VicoVation), WatchGuard Video, Blackvue, PAPAGO Inc., Fine Digital Inc., Qrontech Co. Ltd., ABEO Technology Co., Ltd., and CNSLink are among the key companies that have been covered in the competition tracking section of car DVR market report.
While a majority of the competitors in the global car DVR market landscape are including product offerings that come as in-built DVRs, many are concentrating their strategic efforts in the aftermarket sales segment of the car DVR market. Some of the key players are considering extension of their existing offerings with bespoke and scalable car VDR solutions to meet evolving car DVR requirements of Tier 1 suppliers, OEMs, and leading aftermarket product manufacturers.
Observing swelling demand for low-priced car DVR installations among consumers based in emerging economies, companies are investing in the development of affordable pricing strategy. Moreover, sustained traction for single-channel car DVR devices will continue to prompt manufacturers to continue technology innovations in single-channel car DVRs throughout the forecast period.
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Sourcing Automotive FEMs can Increase Productivity and Profits by a Considerable Margin
Automotive front end module marketplace is witnessing a momentous shift toward sourcing of the module. Still evolving, automotive front end module (FEM) is not completely accepted by original equipment manufacturers on the global front. Sourcing of automotive front end modules can support the automaker by reducing operations on assembly line, lessen tooling costs, cut down weight of vehicle and enhance working capital. Moreover, modularization of automotive front end modules has gained significant traction on the back of increased cost savings. OEMs can save production costs with modularization and can opt of sourcing automotive front end modules that can facilitate about 20% to 30% cost reductions as compared to traditional methods.
The automotive front end module market includes assessment on various key players. Major companies profiled in the report include Plastic Ominum, HBPO GmbH, MAHLE GmbH, Faurecia SA, and DENSO Corporation, to name a few.
Manufacturers are focusing on introducing innovative cost saving solutions. For instance, HBPO GmbH has introduced new automotive front end module that features innovations and cost saving along with lightweight, enhanced component integration, CO2 reduction and active aerodynamics inclusion. It is using strategic alliance strategy in a bid to expand in North America. Recently, HBPO GmbH initiated a joint venture with Plastic Ominum to add assembly plant in Michigan and aims to double the employment in the region in the coming four years. Plastic Ominum, another major player in the automotive front end module market, is focusing to strengthen its position as a global leader the front end module space. In March 2018, it signed an agreement with MAHLE GmbH to acquire its 33% shareholding in HBPO GmbH joint venture. Plastic Ominum can leverage this to reinforce and speed up the development in smart automotive front end module using HBPO GmbH’s technological expertise.
Table of Content:
Chapter 1. Global Front End Module Market - Executive Summary. 11
Chapter 2. Global Front End Module Market Overview. 13
2.1. Introduction. 13
2.1.1. Global Front End Module Market Taxonomy. 13
2.1.2. Global Front End Module Market Definition. 13
2.2. Global Front End Module Market Size (US$ Mn) and Forecast, 2012-2022. 13
2.2.1. Global Front End Module Market Y-o-Y Growth. 13
2.3. Global Automotive Front End Module Market: Macroeconomic Factors. 14
2.3.1. Economic Outlook. 14
2.3.2. International Policy. 14
2.3.3. Profitability of Enterprises. 15
2.3.4. Increasing Purchasing Power of Middle Class. 15
2.3.5. Complex Eco System. 15
2.3.6. Supply chain Issues. 15
2.3.7. End-user Sentiment. 16
2.4. Global Automotive Front end Module Market impact factors. 16
2.4.1. Autonomous Vehicles. 16
2.4.2. The Influence of China. 16
2.4.3. Dilemma on Shift to New Technologies. 17
2.4.4. Disruption in Traditional Business Models. 17
2.4.5. Rising Component Costs in Developing Countries. 17
2.4.6. Fluctuating Input costs. 17
2.4.7. Shrinking Product Development Time. 18
2.4.8. Adoption of New Mobility Solutions. 18
2.4.9. Focus on Granular Insights – City-wise Analysis will Replace Region-wise Analysis. 18
2.4.10. Rising Complexity Influencing Greater Emphasis on Platformimg. 18
2.4.11. Innovations in Technology. 19
2.5. Supply Chain. 19
2.6. Cost Structure. 20
2.7. Pricing Analysis. 20
2.8. Raw Material Sourcing Strategy and Analysis. 20
2.9. List of Distributors. 20
2.10. Key Participants Market Presence (Intensity Map) By Region. 21
2.11. Competitive Assessment and Technology Trends in Future. 21
Chapter 3. Global Front End Module Market Analysis and Forecast By Vehicle Type. 22
3.1. Global Front End Module Market Size and Forecast By Vehicle Type, 2012-2022. 22
3.1.1. PC Front End Module Market Size and Forecast, 2012-2022. 22
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Car DVR Market: Precise Scenario Covering Trends, Opportunities and Growth Forecast Till 2022
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