LiDAR for Cars and Light Trucks Market Size, Share, Trend, Growth, Analysis and Forecast Report 2017 To 2023

WinterGreen Research announces that it has published a new study LiDAR for Cars and Light trucks Market Shares, Strategy, and Forecasts, Worldwide, 2017 to 2023.  The 2017 study has 566 pages, 233 tables and figures.  Worldwide markets are poised to achieve significant growth as LiDAR sensors for cars and light trucks permit users to implement automated driving.  Fleet vehicles from Uber, Google and similar users are likely to be the early adopter groups, creating vehicles that do package delivery and ride sharing.  Tesla, Mercedes, and Audi are among the vendors with a leadership position in the personal luxury vehicle artificial intelligence LiDAR car markets.  These cars provide performance and cater to individual preference in feature function packages and styling.

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LIDAR stands for light detection and ranging which is remote sensing. LIDAR does not require electromagnetic radiation but it requires laser pulses that strike the object and return back to the sensor.   The laser pulse measures the distance from the sensor to the object by determining the time between the release to reception of the reflected pulse.

3D scanning market and imaging are expected to propel growth.  Major technological developments include emergence of optically extended MEMS scanning mirror for low-altitude and light weight flying platforms.  Long term reliability of number of key laser components drive the LiDAR market.  Key components include optical coatings, optics, and diodes in vacuum and radiation environment of space.

Every car maker seeks to participate in this Artificial Intelligence (AI) personal vehicle market leveraging LiDAR.   The ability to do so depends on implementing next generation technology that is very expensive to get working.  Vendors ae seeking to work together to set standards and develop shared modules that provide basic functionality.  Cameras, sensors, artificial intelligence software, and LiDAR are among the modules being developed.

Autonomous vehicle technology has the potential to institute major change in personal mobility.  Autonomous cars are the next generation of manual cars, poised to provide thrust for a large replacement market.  Autonomous vehicles are the base for building personal car services, particularly in large cities.  Carmakers and Silicon Valley companies bring different skills to the task of building a Artificial Intelligence (AI) car.  LiDAR is a significant sensor that supports autonomous operations.  Autonomous vehicles transform the personal transport industry.

Every person who owns a vehicle has a preference on performance.   The Tesla has gained recognition for offering a Artificial Intelligence (AI) vehicle, but it is first and foremost a performance vehicle.  This characteristic will not change as Artificial Intelligence (AI) vehicles come on the market.  People like the customization of features and functions in their car.

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1. Biomaterials for Hearing Implants: Market Description
and Market Dynamics 21
1.1 Use Of Cochlear Implants 21
1.2 Ear Description 25
1.2.1 Cochlear Implant (CI) System 26
1.2.2 Biomaterial As A Substance 27
1.3 Bilateral CI Fitting 30
1.4 Cochlear Implants Biomaterials 30
1.4.1 Silicone 31
1.4.2 Platinum 33
1.4.3 Titanium 33
1.4.4 Ceramics 35
1.5 Biomaterials in Hearing Implant 36

2. Hearing Implants and Biomaterials Market Shares and
Forecasts 41
2.1 Hearing Implants and Biomaterials Market Driving Forces 41
2.1.1 Surgical Cochlear Implantation Is By And Large Safe 42
2.2 Hearing Implant Market Shares 44
2.2.1 Cochlear 48
2.2.2 Advanced Bionics AG 49
2.2.3 Med-EL EAS 50
2.3 Biomaterials Market Forecasts 50
2.3.1 Biomaterial Hearing Implant Segments, Children, Adults Age 19 to 50,
Adults 51 to 64, Adults Over 65, Market Forecasts 56
2.3.2 Biomaterial Hearing Implant Market Installed Base Forecasts 59
2.4 Global Biomaterials Market 60
2.4.1 Optimizing the Biocompatibility Properties Of The Hearing Implant 64
2.4.2 Biofilms 66
2.4.3 Teflon for Cochlear Implants 67
2.4.4 Electrically Conducting Polymers 67
2.4.5 Polyimides 68
2.4.6 Silicon Electrodes 68
2.4.7 Physical Functionalization Of Surfaces 69
2.4.8 Drug Delivery In The Inner Ear (Neurotrophic Effects) 70
2.4.9 BioMaterial Nanoparticles 70
2.4.10 Nanoparticles And Cochlear Implants 71
2.4.11 Biomaterials Market Overview 71
2.5 Cochlear (CI) Implant Technical Specifications 77
2.5.1 Advanced Bionics Technical Specifications 77
2.5.2 Cochlear Technical Specifications 78
2.6 Biomaterials Pricing 79
2.7 Biomaterials Regional Segment Analysis 79
2.7.1 United States 81
2.7.2 Europe 83
2.7.3 Rapid Development of Middle Class in South America 84

3. Biomaterial Hearing Implants Product Description 91
3.1 Cochlear 91
3.1.1 Cochlear Kanso™ Sound Processor 95
3.1.2 Cochlear Nucleus® 6 Sound Processor 96
3.1.3 Cochlear Hearing Implant Specifications 97
3.1.4 Cochlear Implant Technical Specifications 101
3.2 Med-El GmbH’s Flex EAS 102
3.2.1 Med-EL EAS™ Hearing Implant System for Partial Mild To Moderate
Deafness 102
3.2.2 Hearing Implant Advantages Of Bilateral Implantation 103
3.2.3 MedEL Implant Concerto 106
3.2.4 MedEL Implant Concerto Structure Preservation 107
3.2.1 MedEL Implant Concerto Complete Cochlear Coverage CCC 108
3.2.2 Med-EL Electrode Arrays 109
3.2.3 Med-EL FLEX Tip Technology 112
3.2.4 Med-EL Classic Series 114
3.2.5 Med-EL FLEX Series 114
3.2.6 FDA Approves the MED-EL Synchrony EAS Hearing Implant System 115
3.2.7 Med-EL Addresses Hearing Loss in the US 117
3.2.8 MED-EL Technical Specifications 118
3.3 Sonova / Advanced Bionics AG 119
3.3.1 Advanced Bionics Implant Specifications 120

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