Tuesday, February 14, 2012

Electric Vehicle Traction Batteries Market Research Report 2011-2021

Electric Vehicle Traction Batteries 2011-2021

Electric Vehicle Traction Batteries Market

Single User License

$3995

This comprehensive report has detailed assessments and forecasts for all the sectors using and likely to use traction batteries. There are chapters on heavy industrial, light industrial/commercial, mobility for the disabled, two wheel and allied, pure electric cars, hybrid cars, golf cars, military, marine and other. The profusion of pictures, diagrams and tables pulls the subject together to give an independent view of the future ten years. Unit sales, unit prices and total market value are forecast for each sector for 2011-2021. The replacement market is quantified and ten year technology trends by sector are in there too, with a view on winning and losing technologies and companies. This is the essential reference book for those who are anywhere in the hybrid and pure electric vehicle value chain. Those making materials, cells, battery sets or vehicles, researchers, legislators and market analysts will find it invaluable.

The whole picture

With vehicle traction batteries it is important to look at the whole picture and this report does it for the first time. The rapidly growing market for traction batteries will exceed $55 billion in only ten years. However that spans battery sets up to $500,000 each with great sophistication needed for military, marine and solar aircraft use. Huge numbers of low cost batteries are being used for e-bikes but even here several new technologies are appearing. The largest replacement market is for e-bikes today and the value market for replacement batteries will not be dominated by cars when these batteries last the life of the car – something likely to happen within ten years. The trends are therefore complex and that is why IDTechEx has analysed them with great care.

Vehicle manufacturers are often employing new battery technology first in their forklifts or e-bikes, not cars, yet there is huge progress with car batteries as well – indeed oversupply is probable in this sector at some stage. The mix is changing too. The second largest volume of electric vehicles being made in 2010 is mobility aids for the disabled but in ten years time it will be hybrid cars. The market for car traction batteries will be larger than the others but there will only be room for six or so winners in car batteries and other suppliers and users will need to dominate their own niches to achieve enduring growth and profits. Strategy must be decided now.

In this report, researched in 2010 and frequently updated, we analyze the successes, the needs, the statistics and the market potential for traction batteries for all the major applications. This has never been done before. It is important to look at the whole picture because traction battery manufacturers typically sell horizontally across many applications and electric vehicle manufacturers increasingly make versions for many applications – heavy industrial, on road, leisure and so on. Indeed, the smarter putative suppliers will choose the sectors that best leverage their strengths rather than join the herd and be obliterated by corporations of up to $100 billion in size enjoying prodigious government support.

1. EXECUTIVE SUMMARY AND CONCLUSIONS
1.1. Market 2011-2021
1.2. Replacement business
1.3. Price war
1.4. Massive investments
1.5. Largest sectors
1.6. Market for EV components
1.7. Who is winning in lithium-ion traction batteries – and why
1.7.1. The needs have radically changed
1.7.2. It started with cobalt
1.7.3. Great variety of recipes
1.7.4. Other factors
1.7.5. Check with reality
1.7.6. Lithium winners today and soon
1.7.7. Reasons for winning
1.7.8. Winner will be Toyota?
1.7.9. Lithium polymer electrolyte now important
1.7.10. Genuinely Solid State Traction Batteries
1.7.11. Winning chemistry
1.7.12. Titanate establishes a place
1.7.13. Laminar structure
1.7.14. Niche winners
1.7.15. Fluid situation
2. INTRODUCTION
2.1. Definitions, scope, history
2.2. The EV value chain
2.3. Pure electric vs hybrid vehicles
2.4. Battery cells, modules, packs
2.5. Construction of battery packs
2.5.1. Changing factors
2.5.2. NiMH vs lithium
2.5.3. Replacement traction battery pack market 2011-2021
2.5.4. Plug in hybrids take over from mild hybrids
2.6. Pure electric and hybrid converge
2.6.1. Two options converge
2.7. Fuel cells
2.8. The ideal car traction battery pack
2.9. Traction batteries today
2.10. First generation lithium traction batteries
2.11. Second generation lithium traction batteries
2.12. The future
2.12.1. Third generation lithium traction batteries
2.12.2. Trends in energy storage vs battery pack voltage
2.12.3. Companies wishing to make the new batteries
2.13. How to improve lithium traction batteries
2.13.1. Basic needs
2.13.2. Life
2.13.3. Safety
2.14. USA and Europe play catch up
2.15. Technological leapfrog
2.16. Academic research and small companies
2.17. Industrial leverage
2.17.1. Major funding can have strange impacts
2.17.2. Rapid profits for some
2.17.3. Impediments
2.18. Benefits of EVs
2.19. Traction battery design considerations
2.20. Future evolution of hybrids and pure electric cars
2.20.1. Specification changes
2.20.2. Move to high voltage
2.20.3. Battery performance over time – battery life
2.20.4. Battery state of charge
2.20.5. Depth of discharge affects life
2.20.6. Capacity rating
2.20.7. Daily depth of discharge
2.20.8. Charging and discharging rates
2.21. Requirements – hybrids vs pure electric
2.21.1. Plug in requirements align with pure electric cars
2.21.2. Hybrids need power and pure electrics need capacity – for now
2.21.3. Parallel hybrids differ
2.21.4. Plug in hybrids try to be the best of both worlds
2.21.5. Watt hours per mile
2.21.6. Charging rates
2.21.7. Custom packaging
2.22. Fast charging batteries and infrastructure
3. PROGRESS WITH NEW GENERATION LITHIUM TRACTION BATTERIES
3.1. Introduction
3.2. Lithium manganese
3.3. Lithium iron phosphate
3.4. Lithium air and lithium metal
3.5. Lithium sulfur
3.5.1. Other challenges
4. HEAVY INDUSTRIAL EVS
4.1. Examples of battery suppliers to this sector
4.1.1. GE USA
4.1.2. East Penn Manufacturing Corporation USA
4.1.3. Furukawa Battery Japan
4.1.4. Nissan lithium forklift Japan
4.1.5. Balqon lithium heavy duty vehicles USA
4.2. Listing of manufacturers
4.3. Market size
4.4. Heavy industrial traction battery market forecasts 2011 to 2021
5. LIGHT INDUSTRIAL AND COMMERCIAL EVS
5.1.1. Sub categories
5.1.2. Buses
5.2. Examples of battery suppliers to this sector
5.2.1. A123 Systems
5.2.2. Axeon UK
5.2.3. Eaton Corporation USA
5.2.4. KD Advanced Battery Group Dow USA Kokam Korea
5.2.5. Lithium Technology Corporation/GAIA USA
5.2.6. MAGNA STEYR AG & Co KG Austria
5.2.7. Valence Technologies USA
5.2.8. Lishen Power Battery China
5.3. Market drivers
5.3.1. Governments get involved
5.4. Importance of batteries and power trains
5.4.1. Freightliner and Enova
5.4.2. China Vehicles Company
5.4.3. Ford Transit
5.5. EVs for local services
5.6. Airport EVs
5.7. Small people-movers
5.8. Light industrial aids
5.8.1. Heavy duty on-road trucks become hybrids
5.9. Listing of manufacturers
5.10. Light industrial / commercial traction battery market forecasts 2011-2021
6. MOBILITY FOR THE DISABLED
6.1. Examples of battery suppliers to this sector
6.2. The sector with the most compelling and enduring need
6.3. Laws make mobility easier
6.4. Interchina Industry Group China
6.5. Market drivers
6.5.1. Geographical distribution
6.5.2. Zhejiang R&P Industry China
6.6. Listing of manufacturers
6.7. Mobility aid traction battery market forecasts 2011 to 2021
6.7.1. Growth by creating new markets
7. TWO WHEELED EVS AND ALLIED VEHICLES
7.1. Examples of battery suppliers to this sector
7.1.1. PowerGenix USA
7.1.2. ReVolt Technologies Ltd Switzerland
7.1.3. Toshiba Japan
7.1.4. Advanced Battery Technologies (ABAT) China
7.2. Batteries and specifications for two wheelers
7.2.1. Electric two wheelers prices and performance
7.2.2. Yamaha lithium Japan
7.2.3. Eko Vehicles lead acid scooters India
7.2.4. Honda lithium motorcycle Japan
7.2.5. Peugeot lithium scooter France
7.3. Hybrid motorcycles
7.3.1. YikeBike lithium New Zealand
7.4. The big winners in western markets
7.5. Listing of manufacturers
7.5.1. 70 examples of manufacturers
7.5.2. China
7.6. Two wheeled and allied traction battery market forecasts 2011 to 2021
8. GOLF EVS
8.1. Examples of battery suppliers to this sector
8.1.1. Change of leader? Ingersoll Rand and Textron USA
8.1.2. Suzhou Eagle and many others in China
8.2. Listing of manufacturers
8.3. Golf car and caddy traction battery market forecasts 2011 to 2021
9. CARS
9.1. Examples of battery suppliers to this sector
9.1.1. Automotive Energy Supply Japan
9.1.2. Panasonic EV Energy, Sanyo Japan
9.1.3. Blue Energy, Lithium Energy Japan – GS Yuasa Japan with Honda, Mitsubishi
9.1.4. Bollor France
9.1.5. Boston Power
9.1.6. BYD China
9.1.7. China BAK in China
9.1.8. Coda Battery Systems, Yardney USA, Tianjin Lishen China
9.1.9. Continental Germany and ENAX Japan
9.1.10. Ener 1/ Enerdel
9.1.11. Envia Systems USA
9.1.12. Hitachi Japan
9.1.13. IBM and National laboratories USA
9.1.14. Inci Holding Turkey
9.1.15. LG Chem Korea with Compact Power
9.1.16. LiFeBATT Taiwan
9.1.17. Li-Tec Evonik Industries Germany and Daimler
9.1.18. Mitsubishi Japan with Sumitomo Japan
9.1.19. Next Alternative Germany, Micro Bubble Technology Korea
9.1.20. Planar Energy Devices USA
9.1.21. Sakti3 USA and General Motors USA
9.1.22. SB LiMotive Co. Ltd – Samsung Korea with Bosch Germany
9.1.23. Sony Japan
9.1.24. Superlattice Power USA
9.2. Rapid increase in number of manufacturers
9.2.1. Examples of manufacturers
9.2.2. Recharging points
9.2.3. Battery changing points
9.2.4. Can the grid cope?
9.3. Car traction battery market forecasts 2011 to 2021
9.3.1. Total car traction battery market value 2011 to 2021
9.3.2. Battery pack market by car type 2010-2020
9.3.3. Hybrid battery prices
9.3.4. Replacement car traction battery pack market 2010-2020
10. PURE ELECTRIC CARS
10.1. Electricity solely for traction
10.2. Examples of pure EV cars
10.2.1. Nissan Leaf lithium Japan, UK, USA
10.2.2. Here come the Chinese – BYD, Brilliance, Geely, Chengfang
10.2.3. Jianghsu lead acid China
10.2.4. High performance pure lithium EVs – Tesla USA
10.2.5. Lightning lithium UK
10.2.6. Subaru Stella lithium Japan
10.2.7. REVA lead acid or lithium India
10.2.8. Club Car lead acid USA
10.2.9. Tara Tiny lead acid India
10.2.10. Mitsubishi iMiEV lithium Japan
10.2.11. Renault Nissan lithium France
11. HYBRID CARS
11.1. Construction and advantages of hybrids
11.1.1. Evolution
11.1.2. Frazer Nash Namir lithium UK
11.1.3. Chevrolet Volt lithium USA
11.1.4. Toyota Prius NiMH, lithium Japan
11.1.5. Fisker Karma lithium USA
12. MILITARY
12.1. Examples of battery suppliers to this sector
12.1.1. ABSL UK
12.1.2. Altair Nanotechnologies (Altairnano) USA
12.1.3. Electrovaya Canada
12.1.4. Hummer
12.1.5. Chrysler
12.1.6. Saft France, Johnson Controls USA
12.2. Examples of military EVs
12.2.1. Manned land vehicles.
12.2.2. Hummer lithium USA / China
12.2.3. Quantum Technologies lithium USA
12.2.4. US Army trucks etc – ZAP, Columbia ParCar USA
12.2.5. Oshkosh Truck Corp USA
12.2.6. Plug-in trucks – BAE Systems UK
12.2.7. Electric robot vehicles USA
12.3. In the air
12.3.1. Disposable surveillance aircraft
12.3.2. DARPA insects USA
12.3.3. COM-BAT lithium robot bat USA
12.3.4. Aerovironment electric aircraft USA
12.4. Examples of military EVs – in the water
12.4.1. Robot lithium jellyfish USA and Germany
12.5. Manufacturers of military EVs
12.6. Military traction battery market forecasts 2011 to 2021
13. MARINE
13.1. Examples of battery suppliers to this sector
13.1.1. Gavia Iceland
13.1.2. PolyPlus Battery USA
13.1.3. ThunderPower USA
13.2. Market segments
13.2.1. Total market
13.2.2. Underwater
13.2.3. On the water
13.3. Commonality with land EVs
13.4. Market drivers
13.4.1. Pollution laws back electric boats
13.5. Energy harvesting superyacht UK
13.5.1. Cleaner yachts – Valence, Bnteau
13.6. Autonomous Underwater Vehicles (AUVs)
13.6.1. Swimmers
13.7. Leisure and tourist submarines USA
13.8. Manufacturers by country and product
13.8.1. Examples of companies making electric water craft
13.9. Marine traction battery market forecasts 2011 to 2021
13.9.1. Surface and subsurface boat markets
13.9.2. AUV
14. OTHER EVS
14.1. Market drivers
14.2. Listing of manufacturers by country and product
14.3. Companies in the mobile robot and leisure sector
14.4. Electric aircraft for civil use
14.4.1. Sion Power USA – Aircraft batteries
14.4.2. Aircraft – Renault, Piccard
14.5. Other traction battery market forecasts 2011 to 2021
APPENDIX 1: GLOSSARY
APPENDIX 2: IDTECHEX PUBLICATIONS AND CONSULTANCY
TABLES
1.1. Numbers of vehicle traction batteries, in thousands, sold globally in new vehicles, 2011 to 2021, by applicational sector.
1.2. Ex factory unit price of traction battery packs, in thousands of US dollars, sold globally, 2011 to 2021, by applicational sector
1.3. Global market value of traction battery packs, in millions of US dollars, sold globally, 2011 to 2021, by applicational sector, rounded
1.4. Replacement market for traction battery packs in value $ million 2011 to 2021
1.5. Traction battery technologies in 2011, number percentage lead acid, NiMH and lithium
1.6. Traction battery technologies in 2021 number percentage lead acid, NiMH and lithium
1.7. Applicants to accelerate the manufacturing and deployment of the next generation of US batteries and electric vehicles
1.8. Main market drivers 2010-2020
1.9. Traction battery technology by applicational sector 2010 and 2020, examples of suppliers and trends
1.10. Breakdown of global market in 2010 for light industrial and commercial vehicles – global park, new vehicles, % electric, number of battery packs at one per vehicle, ex factory unit price and value for the subsections Buses, Other
1.11. Number of hybrid and pure electric cars plugged in and the total number in thousands 2010-2020
1.12. Components and subsystems fitted in new electric vehicles 2010-2020 in thousands
1.13. Highlights 2010-2020
1.14. What is on the way in or out with traction batteries
1.15. 70 vertically integrated lithium traction battery cell manufacturers, their chemistry, cell geometry and customer relationships (not necessarily orders)
2.1. Some ways to reduce the cost and increase the performance of lithium-ion car traction batteries
2.2. Improvement in cost and performance of hybrid and pure electric vehicle traction battery packs 2009-2020
2.3. Some reasons why ICE vehicles are replaced with EVs
3.1. Typical lithium iron phosphate traction battery
4.1. Twenty examples of manufacturers of heavy industrial EVs by country
4.2. Percentage split of global manufacture of heavy industrial trucks
4.3. Distribution of trade volume for heavy industrial EVs
4.4. Global league table of powered industrial truck manufacturers 2010 by value of sales
4.5. Global sales of heavy industrial battery sets at one per vehicle, by numbers, ex factory unit price and total value 2011 to 2021, rounded.
5.1. 150 manufacturers of light industrial and commercial EVs and drive trains by country and examples of their products
5.2. Global sales of light industrial and commercial vehicle traction battery sets at one per new vehicle by numbers thousands, ex factory unit price in thousands of dollars and total value in billions of dollars 2011 to 2021, rounded
5.3. Breakdown of global market in 2010 for light industrial and commercial vehicles – global park, new vehicles, % electric, number of battery sets at one per new vehicle, ex factory unit price and value for the subsections Full Size
6.1. The continental percentage split of markets for vehicles for the disabled by value in 2010
6.2. The percentage split of market for vehicles for the disabled by country within Europe
6.3. The numbers in thousands of scooters plus power chairs that were and will be sold in Europe 2005 to 2015
6.4. The percentage distribution of manufacture between Taiwan and Mainland China by value of vehicles for the disabled 2005, 2010 and 2015
6.5. Market for EVs for the disabled by geographical region, ex works pricing and percentage split in 2005, 2010 and 2020
6.6. 83 examples of manufacturers of EVs for the disabled by country
6.7. Global sales of traction battery sets used in mobility aids for the disabled at one set per new vehicle, by number, ex factory unit price in thousands of dollars and total value in billions of dollars, 2011 to 2021, rounded
7.1. Prices and performance of electric two wheelers
7.2. 70 examples of manufacturers of two wheel EVs and electric quad bikes
7.3. Largest suppliers of electric bicycles by number (not in order)
7.4. 34 sources of two wheelers in China by brand, region and battery chemistry
7.5. Listing of light electric scooter makers in China. Most use lead-acid battery chemistry but there is a move to lithium-ion batteries
7.6. Global sales of two wheel and allied battery sets at one per new vehicle, number, ex factory unit price in thousands of dollars and total value in billions of dollars 2011 to 2021, rounded
7.7. Global Replacement market for traction battery packs for two wheel vehicles in value $ million 2010-2020
8.1. 18 examples of golf EV manufacturers
8.2. Global sales of electric golf car battery sets in number at one per new vehicle, thousands, ex factory unit price in thousands of dollars and total value in billions of dollars 2011 to 2021, rounded.
8.3. Geographical split of golf EV sales by value 2010, 2015, 2020
9.1. BYD financials
9.2. 121 examples of manufacturers of electric cars including pictures of many Chinese electric cars
9.3. IDTechEx projection for total car traction battery pack sales in $ billion 2011 to 2021
9.4. T 2 Market forecasts for traction battery packs for new cars in units, ex factory price and value 2010-2020
9.5. Replacement market for car traction battery packs in value $ million 2010-2020
11.1. Prius NiMH traction battery evolution
12.1. 26 suppliers of military EVs
12.2. Global sales of military vehicle traction battery sets at one per new vehicle in number thousands, ex factory unit price in thousands of dollars and total value in billions of dollars 2011 to 2021, rounded.
13.1. 44 examples of manufacturers of EV electric water craft
13.2. AUV specifications, prices and market leaders
13.3. Global sales of marine craft traction battery sets at one per new vehicle, in number thousands, ex factory unit price in thousands of dollars and total value in billions of dollars 2011 to 2021, rounded.
14.1. 30 examples of manufacturers of mobile robots, toy, leisure, research or hobbyist EVs by country and product
14.2. Global sales of other electric vehicle traction battery sets at one per new vehicle, in number thousands, ex factory unit price in thousands of dollars and total value in billions of dollars 2011 to 2021, rounded.
FIGURES
1.1. Numbers of traction battery packs for two wheelers, cars and mobility for the disabled compared in thousands, sold globally in new vehicles, 2011 to 2021, by applicational sector
1.2. Numbers of traction battery packs consisting of heavy industrial, light industrial/commercial, golf car and caddy, military, marine and other compared in thousands, sold globally, 2011 to 2021, by applicational sector
1.3. Ex factory unit price of traction battery packs, in thousands of US dollars, sold globally, 2011 to 2021, by applicational sector
1.4. Global market value of traction battery packs, in millions of US dollars, sold globally, 2011 to 2021, by applicational sector, rounded
1.5. Here comes lithium
1.6. Market breakdown for light industrial and commercial electric vehicles in 2010 in $ billion – buses, other on road, airport GSE, other off road
1.7. Market breakdown for industrial and commercial electric vehicles in 2020 in billions of dollars – buses, other on road, off road
1.8. Possible evolution of affordable, mainstream electric cars and other electric vehicles that mainly employ conventional internal combustion engines today. This shows the convergence of hybrid and pure electric technologies
1.9. Evolution of lithium traction batteries 2010-2030
1.10. Geely IG solar car
1.11. Japanese ten meter long deep sea cruising AUV, the URASHIMA
1.12. Bionic dolphin
1.13. Deepflight Merlin
1.14. Cri-Cri pure electric stunt plane new in 2010
1.15. Oshkosh truck
1.16. Approximate percentage of manufacturers offering traction batteries with less cobalt vs those offering ones with no cobalt vs those offering both. We also show the number of suppliers that offer lithium iron phosphate versions
2.1. EV sectors with the largest gross sales value and profits over the years
2.2. Electric vehicle value chain
2.3. Comparison of cells, modules and battery packs.
2.4. Possible evolution of affordable, mainstream electric cars showing the convergence of hybrid and a pure electric technologies
2.5. Nikkei forecast of lithium battery cost reduction by year at 80 yen per dollar
2.6. Cost structure of lithium cobalt batteries according to Deutsche Bank Securities
2.7. Volumetric vs gravimetric energy density of batteries used in vehicles
2.8. Traction battery pack nominal energy storage vs battery pack voltage for mild hybrids in red, plug on hybrids in blue and pure electric cars in green
2.9. Battery specification based on end of life
2.10. Car traction battery operating requirements compared
3.1. Future improvement in power and energy density
3.2. Subaru lithium ion manganese battery
3.3. Mitsubishi lithium-ion batteries for cars
3.4. Lithium air batteries
3.5. Li-S Cell Configuration
3.6. Ragone plots for different rechargeable systems
3.7. Active Materials Transformation Diagram
3.8. Prototype lithium sulfur battery by Sion Power
4.1. East Penn lead acid battery for golf cars
4.2. Furukawa Cycle-service storage battery for Golf Cars
5.1. Chevrolet Volt lithium-ion battery
5.2. Chrysler electric minivan
5.3. Smith electric vehicle
5.4. Magna Steyr traction battery pack capability
5.5. Magna Steyr energy battery for pure electric and plug in hybrid cars
5.6. Magna Steyr power battery for hybrid cars
5.7. EVI truck powered by Valence lithium-ion batteries
5.8. Lishen Power battery products
5.9. Freightliner MT-45 step van uses 120kW Enova electric drive system
5.10. Electric pick up truck from China Vehicles Company
5.11. Ford Transit pure EV
6.1. The Electric Car (INEC-KARO) for the disabled from Interchina Industry Group
6.2. Zhejiang R&P Industry ES 413
7.1. Toshiba e-bike battery
7.2. Yamaha EC-f and EC-fs concept electric scooters
7.3. Yamaha EC03
7.4. Eko Vehicles ET-120 hybrid scooter
7.5. Honda EV Cub sports twin, front and rear electric drive motors
7.6. Peugeot E-Vivacity electric scooter planned for 2010
7.7. YikeBike in action
9.1. Nissan Leaf battery
9.2. Pininfarina Bollor B0 electric car powered by Bollor lithium polymer batteries
9.3. Pininfarina Bollor Bluecar cross section showing battery
9.4. LEV electric car by Qingyuan Motors
9.5. Continental lithium ion traction battery
9.6. Safety testing of Continental lithium ion traction batteries.
9.7. Enerdel traction battery
9.8. 25Ah lithium-ion battery cell for plug-in hybrid electric vehicles
9.9. LiFeBATT manufacture
9.10. IDTechEx projection for total car traction battery pack sales in $ billion 2011 to 2021
9.11. Market forecasts for traction battery packs for new cars in units 2010-2020
9.12. Market forecasts for traction battery packs for new cars ex factory price 2010-2020
9.13. Market forecasts for traction battery packs for new cars value in million dollars 2010-2020
9.14. Replacement market for car traction battery packs in value $ million 2010-2020
10.1. Gemcar
10.2. The planned Nissan Leaf pure electric car
10.3. Nissan leaf lithium traction batteries
10.4. The BYD E6 pure EV car
10.5. Jianghsu DHCLBC EF-1 car
10.6. Tesla Motors Roadster pure EV performance car
10.7. Tesla battery pack with coolant tubes at bottom.
10.8. The Lighting pure electric sports car
10.9. Subaru Stella pure electric vehicle
10.10. REVA pure EV car
10.11. The Club Car street legal car launched in 2009
10.12. Tara Tiny
10.13. Mitsubishi pure EV car
10.14. Mitsubishi i-MiEV
11.1. Evolution of EV design for on-road and many non-road vehicles
11.2. Frazer Nash Namir
11.3. Toyota Prius NiMH traction battery
11.4. Toyota Highlander Hybrid Battery
12.1. Altairnano view of some of the primary performance advantages of its lithium traction batteries
12.2. Hummer H3 ReEV Lithium Ion SuperPolymer battery pack made by Electrovaya.
12.3. Oshkosh truck
12.4. COM-BAT
13.1. Gavia defense AUV
13.2. Electric launch
13.3. The rigid-wing superyacht concept called ‘Soliloquy’
13.4. The British Scorpio remote controlled rescue vehicle that released the trapped Russian submarine in August 2005.
13.5. The Ocean Explorer AUV
13.6. A British Remote Controlled Mine Destruction Vehicle being lowered into the water
13.7. Deep Flight Aviator two-person leisure submarine
13.8. Seattle personal luxury submarine by US Submarines
14.1. The new Electrolux Automower

Publisher >> IDTechEx
Report Category: Battery Technology

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Electric Vehicles in East Asia 2011-2021

Electric Vehicles in East Asia 2011-2021

Single User License

$3995

The largest market and production location for electric vehicles
56% of the value of sales of electric vehicles is and will remain in East Asia and cars only account for about half of the value of the electric vehicle business worldwide. It is therefore important to look at the big picture and, in particular, the latest ten year forecasts for EV activity in East Asia. Uniquely this report provides that information. Entirely researched in 2010 and regularly updated, the report draws many valuable conclusions including some that are summarised below.

China buys over 90% of the e-bikes in the world and Japan buys the most hybrid cars. Indeed the best selling electric car in the world, the Toyota Prius, sells in Japan at twice the volume taken by the whole of the USA. All this will have changed by 2021 because China will have installed adequate charging infrastructure for pure electric and plug in hybrid cars by then and they will be more affordable. In 2021, sales of electric cars in China will have a much larger market value than the huge and growing sales of e-bikes in China. It is fortunate that the takeoff in sales of electric cars is delayed in China by lack of infrastructure and shortage of affordable electric cars with acceptable range. If Chinese people purchased a large number of plug in electric cars over the next five years it would significantly increase global warming because today, most of the power stations in China are inefficient and coal fired.

Forecasts of EV numbers, unit value and total market value 2011-2021 by vehicle type (Heavy Industrial, Light Industrial/ Commercial, Two Wheel, Mobility for Disabled, Golf Car, Car, Military, Marine, Other)
Forecasts of EV numbers and total market value 2011-2021 by country in East Asia
Detailed analysis of work in China, India, Japan, Singapore, South Korea, Taiwan, Thailand.

This report is for those anywhere in the EV value chain including component suppliers. It is essential reading for those in allied activity such as government regulation and support, investment and research. Even those not wishing to participate in the East Asian market will value this report because it assesses current best practice, strategy and future competition.

This essential report is full of analysis presented in tables and figures for easy assimilation. Which East Asian countries lead in which types of vehicle? Which East Asian countries file the most EV patents? How are the governments involved and what are the reasons for success and failure? Which are the most promising suppliers and what is their global strategy? Which technologies are winning? What is the scope to expand component supplies and vehicle manufacture into EVs for land, sea and air? It is all here, with a useful glossary for those unfamiliar with the jargon. This is the only up to date reference book on the largest market and production location for electric vehicles – East Asia. It comes with one hour of free consultancy to fill in any extra information you may require.

1. EXECUTIVE SUMMARY AND CONCLUSIONS
1.1. Shrewd participants look beyond cars
1.2. Global reach and innovation
1.3. Forecasts
1.4. Regional market trends across the world
1.5. Regional differences within East Asia
1.6. Value of EV market by country in East Asia
1.7. East Asian market by country
1.8. Important market factors by country
1.9. Numbers of manufacturers
1.10. Profits
1.11. Intellectual property in East Asia
1.12. East Asia strengths in manufacture
2. CHINA
2.1. Introduction
2.1.1. Huge percentage of global manufacturers
2.1.2. Formidable advantages of EV manufacture in China
2.1.3. Very little charging infrastructure
2.1.4. Exhibitions giving the big picture
2.2. Heavy industrial
2.3. Light industrial, commercial
2.4. Two wheel
2.5. Mobility for disabled
2.6. Golf cars
2.7. Cars
2.7.1. Car market and grants for electric cars
2.7.2. Brilliance, Chengfeng and others
2.7.3. BYD Auto
2.7.4. Geely
2.7.5. Hafei Seibao
2.7.6. Lifan Group
2.8. Military, marine, other
2.8.1. Yuneec electric aircraft
2.8.2. Electric boats
2.8.3. Remotely operated underwater vehicles ROUVs and AUVs
3. INDIA
3.1. Introduction
3.2. Heavy industrial
3.3. Light industrial, commercial
3.3.1. Bengal Enamel
3.3.2. IC Bus, Tata, Volvo, Ashok Leyland
3.4. Two wheel and rickshaw
3.4.1. Bajaj Auto
3.4.2. Eco vehicles
3.4.3. Hero Electric
3.4.4. Ace Motors, Electrotherm, Elektrik Vehicles
3.4.5. Electric rickshaws – RUZU
3.5. Mobility vehicles for the disabled
3.6. Cars
3.6.1. Bavina Cars India
3.6.2. Mahindra Reva Electric Vehicles
3.6.3. Tata Motors
3.7. Military, marine, other
4. JAPAN
4.1. Heavy Industrial
4.1.1. Strong local demand
4.1.2. Komatsu
4.1.3. Nissan
4.1.4. Mitsubishi
4.1.5. Toyota
4.2. Light industrial, commercial
4.2.1. Hino Motors
4.2.2. Inutsuka
4.2.3. Isuzu
4.2.4. Nissan
4.2.5. Yamaha
4.3. Mobility for disabled
4.4. Two wheel
4.4.2. Honda
4.4.3. Suzuki
4.4.4. Yamaha
4.5. Golf cars
4.5.1. Yamaha
4.6. Cars
4.6.2. Toyota
4.6.3. Mitsubishi
4.6.4. Nissan
4.6.5. Bamboo car Megura
4.7. Military, marine, aircraft, other
4.7.1. Home robots
4.7.2. Long range AUV
4.7.3. Space probe IKAROS
5. SINGAPORE
5.1. Cars
5.1.1. Supporting infrastructure
5.1.2. CODA
5.2. Military
6. SOUTH KOREA
6.1. Introduction
6.1.1. Turmoil of ownership
6.1.2. Kia Motors and Daiwoo Motors change hands
6.1.3. Samsung Motors fails
6.1.4. Hyundai and Kia in the lead
6.1.5. US thrust
6.1.6. New direction in 2010-11
6.1.7. Initial focus on using NEVs in Korea
6.1.8. Mainstream pure EV cars in 2011
6.1.9. Many hybrids
6.1.10. World leader in second generation lithium traction batteries
6.1.11. Unconventional vehicle designs – Pneumatic HEV, OLEV
6.2. Heavy industrial
6.2.1. Daewoo Doosan
6.3. Light industrial and commercial
6.3.1. Hyundai
6.3.2. Ground Support Equipment
6.3.3. CT&T
6.4. Two wheelers
6.5. Mobility aids for the disabled
6.6. Golf cars
6.7. Cars
6.7.1. CT&T
6.7.2. GM Daewoo
6.7.3. Hyundai
6.7.4. Kia Motors
6.7.5. Leo Motors
6.7.6. Proto Motors
6.7.7. Samyang
6.8. Military, Marine, Aircraft and other EVs
7. TAIWAN
7.1. Two wheel
7.2. Mobility for disabled
7.3. Cars
7.3.1. Yulong Motor, Luxgen
7.4. Traction batteries and motors
7.5. Targeting USA
7.6. Targeting India
8. THAILAND
9. MARKET FORECASTS 2011-2021
APPENDIX 1: GLOSSARY
APPENDIX 2: IDTECHEX PUBLICATIONS AND CONSULTANCY
TABLES
1.1. Numbers of EVs, in thousands, sold in East Asia, 2011 to 2021, by applicational sector.
1.2. Chinese cities restricting electric bikes
1.3. Ex factory unit price, in thousands of US dollars, of EVs sold in East Asia, 2011 to 2021, by applicational sector, rounded
1.4. Ex factory value of EVs, in billions of US dollars, sold in East Asia, 2011 to 2021, by applicational sector, rounded
1.5. The main market drivers are as follows
1.6. The percentage value share by country of the East Asian electric vehicle market 2011-2021
1.7. The East Asia EV market value by country in billions of dollars 2011-2021
1.8. Percentage numbers share by country of the East Asian electric vehicle market 2011-2021
1.9. Market for electric vehicles by number thousands by country in East Asia 2011-2021 rounded
1.10. Important EV market factors in China, India, Japan, Singapore, South Korea and Taiwan in 2011 and 2021
1.11. Approximate number of manufacturers of electric vehicles worldwide in 2010 by application with numbers for China.
2.1. 34 sources of two wheelers in China by brand, region and battery chemistry
2.2. Specifications of some two wheel electric vehicles made in China
2.3. Six golf car manufacturers in China
4.1. Japanese heavy industrial vehicle manufacturers.
4.2. Six examples of Japanese manufacturers of mobility aids for the disabled
4.3. Ten examples of Japanese manufacturers of electric two wheel vehicles
9.1. Numbers of EVs, in thousands, sold in East Asia, 2011 to 2021, by applicational sector.
9.2. Ex factory unit price, in thousands of US dollars, of EVs sold in East Asia, 2011 to 2021, by applicational sector, rounded
9.3. Ex factory value of EVs, in billions of US dollars, sold in East Asia, 2011 to 2021, by applicational sector, rounded
9.4. Main market drivers
9.5. The percentage share by country of the East Asia market by value in billions of dollars
9.6. Approximate number of manufacturers of electric vehicles worldwide in 2010 by application with numbers for China.
9.7. Toyota Prius Sales by region 1997-2008 in thousands of units
9.8. Number sold by market leader Toyota of all hybrids globally, market share and market drivers
FIGURES
1.1. Numbers of EVs, in thousands, sold in East Asia, 2011 to 2021, by applicational sector.
1.2. Ex factory unit price, in thousands of US dollars, of EVs sold in East Asia, 2011 to 2021, by applicational sector, rounded
1.3. Ex factory value of EVs, in billions of US dollars, sold in East Asia, 2011 to 2021, by applicational sector, rounded
1.4. The percentage value share by country of the East Asian electric vehicle market 2011
1.5. The percentage value share by country of the East Asian electric vehicle market 2021
1.6. The East Asia EV market value by country in billions of dollars 2011-2021
1.7. Percentage numbers share by country of the East Asian electric vehicle market 2011
1.8. Percentage numbers share by country of the East Asian electric vehicle market 2021
1.9. Market for electric vehicles by number thousands by country in East Asia 2011-2021 rounded
2.1. Number electric vehicle manufacturers in China by sector
2.2. One of the few EV charging stations in China
2.3. Electric forklift from Zheijang Goodsense Forklift
2.4. Kent electric city bus from China
2.5. Hino Blue Ribbon hybrid diesel electric bus in China
2.6. Electric bus in China
2.7. Bus by Tongkun New Energy Technologies Co. and FAW Bus and Coach Co
2.8. Electric pick up truck from China Vehicles Company
2.9. Garbage collecting electric car by Shandong Shunxing Machinery
2.10. Interchina Industry Group EEC scooter
2.11. e-bikes parked in Yangzhou China
2.12. Interchina Industry Group electric car for the disabled
2.13. Zhejiang R&P Industry pure electric vehicle for the disabled.
2.14. Tonaro golf and general purpose vehicle from China
2.15. Suzhou Eagle two and four seat golf cars from China
2.16. Yongkang Fourstar golf vehicles from China
2.17. Shadong Wuzheng golf cars from China
2.18. Jinhua Ryder golf car from China
2.19. Chinese pure electric microcars from China Fast Vehicle, China Peace Group, China Vehicles Company, CME Suzhou, EMAX Motorcycle, Guangzhou EMotor Tech, Yangcheng Spring Trading, Zhangjiagang Alhadid Electric Vehicle, Zheijiang Pin
2.20. Brilliance electric car with sliding doors
2.21. Chengfeng electric car
2.22. The BYD E6 pure EV car
2.23. BYD e6 car in use as a taxi.
2.24. BYD Auto F3DM hybrid car
2.25. Geely IG Hybrid Car
2.26. Lifan SUV
2.27. Yuneec e430 electric aircraft
2.28. Sunwat China Industry Ltd electric boat powered by 500W motor driven by two 196Ah 12V lead acid batteries
3.1. Tara pure electric Shuttle
3.2. Tara Tiny
3.3. Tata hybrid bus in 2010
3.4. HYBUS hybrid bus by Ashok Leyland
3.5. MotoCzysz electric motorcycle
3.6. Shrike
3.7. Hero Ultra electric scooter
3.8. Hero Esprint electric scooter
3.9. Hero e-bike
3.10. Electrotherm electric YO Bike
3.11. E-bike by Elektrik Vehicles Mumbai
3.12. Solar powered electric rickshaw
3.13. MASS electric wheelchair
3.14. Mahindra Reva ceremony
3.15. REVA pure electric car
3.16. Mahindra hybrid Scorpio “Pik Up”
3.17. Mahindra MaXXimo
3.18. Electric Tata Nano
3.19. The Bladon Jets microturbine range extender is the size of two cans of beans
3.20. Indian AUV-150
4.1. Komatsu electric forklift
4.2. Nissan compact li-ion battery forklift
4.3. Mitsubishi hybrid outdoor forklift
4.4. Toyota Material Handling has launched the new Traigo 48 in 2010, a powerful electric forklift fitted into a compact and agile package.
4.5. Hino hybrid bus
4.6. Hino “no plug in” bus.
4.7. Isuzu hybrid bus
4.8. Tamaha Medicar
4.9. Mobility scooter in use in Tokyo
4.10. Honda has been a great innovator with two wheeled vehicles. The Honda EV Cub scooter has a lithium-ion battery for example. Honda EV Cub sports twin, front and rear electric drive motors.
4.11. Suzuki Burgman Fuel Cell Scooter powered by Intelligent Energy
4.12. Yamaha EC-f and EC-fs concept electric scooters
4.13. Yamaha EC03
4.14. Yamaha golf car
4.15. Tokyo Taxis battery swapping facility
4.16. Some of the Japanese hybrid and pure electric cars 2007-2012
4.17. Planned Toyota pure electric city car.
4.18. Mitsubishi i-MiEV
4.19. Mitsubishi MiEV pure EV car
4.20. In wheel system of Mitsubishi
4.21. Nissan Leaf
4.22. Nissan Leaf instruments
4.23. GE scientist Matt Nielsen in the Smart Grid
4.24. Megura electric car
4.25. Sanyo home robot
4.26. URASHIMA
4.27. URASHIMA mission profile
4.28. Specification for JAMSTEC long range AUV
4.29. IKAROS
5.1. Bronco
6.1. The e-Zone Low Speed Electric Vehicle
6.2. Charging station in Korea
6.3. Mitsubishi Fuso hybrid truck that uses the South Korean SK Energy lithium-ion battery
6.4. OLEV car
6.5. Daewoo Doosan electric forklifts
6.6. Electric Forklift Truck SBR-16
6.7. Hyundai hybrid bus
6.8. Scooter made in South Korea by Ecocar
6.9. Xero scooter
6.10. Mobility scooter for disabled made in Korea
6.11. CT&T pure electric car
6.12. Interior of CT&T pure electric car
6.13. T3 Motion car
6.14. CT&T Personal Stand Up Vehicle
6.15. 2011 Hyundai Sonata Hybrid
6.16. Hyundai Elantra Hybrid
6.17. Blue-Will Plug-in Hybrid Concept
6.18. Kia Forte LPI hybrid electric vehicle
6.19. Forte LPG hybrid
6.20. Kia Ray plug in hybrid concept car
6.21. E-Princesa electric taxis
6.22. Kongsberg HUGIN swimmer AUV on Republic of Korea Navy ship
6.23. Kongsberg’s Hugin 1000 portable AUV
6.24. Robot wedding in Korea
7.1. Mobility scooters made in Taiwan
7.2. Tobe M’car. (CNA)
7.3. Luxgen electric car
8.1. Clean Fuel Energy Enterprise Co., Ltd. cars and buses
8.2. Electric Boats Thailand advertisement
9.1. Numbers of EVs, in thousands, sold in East Asia, 2011 to 2021, by applicational sector.
9.2. Ex factory unit price, in thousands of US dollars, of EVs sold in East Asia, 2011 to 2021, by applicational sector, rounded
9.3. Ex factory value of EVs, in billions of US dollars, sold in East Asia, 2011 to 2021, by applicational sector, rounded
9.4. The percentage value share by country of the East Asian electric vehicle market 2011
9.5. The percentage value share by country of the East Asian electric vehicle market 2021
9.6. Geographical distribution of 120 companies making or intending to make electric cars
9.7. Number of manufacturers of electric vehicles in China by application in 2010
9.8. Rough count of new models of hybrid car from 2009-2013
9.9. The dominant countries launching hybrid models from 2009-2013
9.10. Toyota Prius Sales by region 1997-2008 in thousands of units
9.11. Number sold by market leader Toyota of all hybrids globally

Publisher >> IDTechEx
Report Category: Utilities

Market Research Reports

Electric Vehicles Market

Russia Market Research

 

Wireless Power Transmission for Consumer Electronics and Electric Vehicles 2012-2022

Wireless Power Transmission for Consumer Electronics and Electric Vehicles 2012-2022

Wireless Power Transmission for Consumer Electronics and Electric Vehicles

Over the next decade, the most vibrant Wireless Power Transmission (WPT) markets will involve the contactless charging of portable and mobile equipment, in particular consumer electronics and electric vehicles and this is the focus of this report. These two aspects go together because the technology is similar, some proposed standards overlap and some suppliers seek to serve both markets.

Later, this will lead to contactless power for a high proportion of static consumer, industrial and military electronics. For now, it primarily concerns wireless charging of lithium-ion batteries in portable consumer electronics and in land, water and airborne electric vehicles, particularly cars, both hybrid and pure electric. These travel considerable distances and ready availability of standard, convenient ie contactless, charging capability is key to their widespread adoption. To the user of consumer electronics, this is particularly driven by the ever greater functionality and longer hours of use of mobile phones calling for frequent charging, given that the batteries are not improving fast enough.

Consumer electronics has a very powerful driver towards contactless charging in the form of the extreme inconvenience of the proliferation of electrically charged products each with an incompatible charging power supply, three to four billion units being made every year – a potential market for wireless charging pairs of up to ten billion dollars yearly, given market growth and an allied market of wireless power to electronic and electric consumer products that do not need charging. Similarly, there is a large unmet demand for wireless charging of vehicles, so the driver avoids the inconvenience, dirtiness and danger of having to get out of the vehicle to plug in something during bad weather or dangerous neighbourhoods. Many prefer not to handle heavy electrical equipment.

IDTechEx forecasts the number, unit value and market value of this charging equipment for 2012-2022, including separately the Levels 1-3 of charging speed for vehicles. The forecasts reflect a full consideration of the many market drivers. Unusually, the report evaluates the many negatives delaying market growth not just the positives that are the focus of previous reports on this subject that tend to substitute enthusiasm for reality. The technology options, suppliers and their successes and challenges, standards activities and the influence of related technologies such as metamaterials, printed electronics and printed electrics are considered. The relevant needs of the consumer packaged goods industry are considered as it becomes electronic. 24 tables and 45 figures pull this together, with 42 suppliers and their partnerships profiled in this 145 page report containing glossary and appendices.

Publisher >> IDTechEx
Report Category: Utilities

Table of Contents

1.EXECUTIVE SUMMARY AND CONCLUSIONS

2.INTRODUCTION2.1.What is Wireless Power Transmission (WPT)?

3.TECHNOLOGIES3.1.Device power consumption

3.2.WPT past present and future

3.3.What WPT encompasses

3.4.Charging levels

3.5.Options for short range inductive coupling

3.6.Radio Frequency RF

3.7.Radio frequency UHF

3.8.Ambient energy harvesting

3.9.Duke University

3.10.Microwave and laser beams

3.10.1.The laser and microwave alternatives

4.STANDARDS

4.1.Wireless Power Consortium

4.1.2.The purpose of the Wireless Power Consortium

4.1.3.Progress in adopting the standards

4.1.4.Consumer Electronics Association

4.1.5.Contacted power supply standard in the European Union

4.1.6.Contacted power supply standard in the People’s Republic of China

4.1.7.Contacted power supply standard in South Korea

5.ORGANISATIONS WIRELESSLY POWERING TRADITIONAL ELECTRONICS

5.1.1.AMIMON

5.1.2.Dell USA

5.1.3.Energizer USA

5.1.4.Fulton Innovation USA

5.1.5.Haier Group USA

5.1.6.Hewlett Packard

5.1.7.Intel USA

5.1.8.KI USA

5.1.9.Leggett & Pratt USA

5.1.10.Marconi Circuit Technology Corporation USA

5.1.11.Mojo Mobility USA

5.1.12.Philips Netherlands

5.1.13.Powermat USA

5.1.14.PureEnergy Solutions USA

5.1.15.Qualcomm USA

5.1.16.Research in Motion USA

5.1.17.Rohm USA

5.1.18.RTX Consumer Products Hong Kong

5.1.19.Sanyo Japan

5.1.20.Seiko Epson Corporation Japan

5.1.21.Texas Instruments USA

5.1.22.Wipower USA

6.POWERING CONSUMER PACKAGED GOODS CPG

6.1.The need for WPT with CPG

6.1.1.Bundesdruckerei Germany

6.1.2.Fulton Innovation USA

6.1.3.Poly IC Germany

6.1.4.Schreiner PrinTronics Germany

6.1.5.Toppan Forms Japan

7.CHARGING ELECTRIC VEHICLES

7.1.History of vehicle charging

7.2.Company profiles

7.2.1.Conductix-Wampfler Italy

7.2.2.Energy Dynamics Laboratory USA

7.2.3.Evatran USA

7.2.4.HaloIPT New Zealand

7.2.5.Korea Advanced Institute of Technology

7.2.6.Magna-Charge USA

7.2.7.Nissan Japan

7.2.8.Presidio Graduate School USA

7.2.9.RRC Germany

7.2.10.Siemens-BMW

7.2.11.Singapore A*STAR

7.2.12.Utah State University USA

7.2.13.Volvo and Flanders Drive Sweden, Belgium

7.2.14.WiTricity and Partners USA

8.GLOBAL MARKET FOR ELECTRIC VEHICLE CHARGING INFRASTRUCTURE8.1.Ten year forecasts

8.2.Pricing information

8.3.Forecasts of Level 1, 2 & 3

8.4.Examples of expenditure in China

8.5.Market beyond cars

8.6.Vehicle projections by type

8.7.Market drivers for charging stations

9.MARKET FORECASTS

9.1.WPT Forecasts 2012-2022

9.2.Market by region

9.2.1.Technology road map

APPENDIX 1: GLOSSARY

APPENDIX 2: IDTECHEX PUBLICATIONS AND CONSULTANCY

APPENDIX 3: INTRODUCTION TO METAMATERIALS

APPENDIX 4: INTRODUCTION PRINTED ELECTRONICS

TABLES

1.1. Number, unit value ex-factory and total market value rounded of WPT hardware sold for consumer electronics worldwide 2012-2022

1.2. Number, hardware unit value ex-factory excluding any power storage and total market value rounded of contactless on-road vehicle charging stations sold worldwide in thousands 2012-2022

1.3. Number of on-road vehicle charging stations sold worldwide in thousands 2011-2021, residential, other and total, rounded, including plug-in and contactless

1.4. Global market value of the three levels of car charging station 2011-2021 in $ millions

3.1. 2000 year history of WPT, wireless power charging and batteries

7.1. The good and the bad of inductive contactless charging of electric vehicles

8.1. Global market for electric vehicle chargers US$ billion ex factory 2011 and 2021 rounded

8.2. Approximate global car charging station market in 2011 and 2021 in $ billion rounded

8.3. Value of the global traction battery charging station hardware market 2011-2021 giving percent of total for East Asia, Europe and North America for 2011 and 2021

8.4. Number of car charging stations sold worldwide in thousands 2011-2021, residential, other and total, rounded

8.5. Numbers thousands of the three levels of car charging station hardware worldwide 2011-2021

8.6. Examples of orders and commitments for non-residential car charging stations for on-road vehicles

8.7. Average unit price ex factory of the three levels of car charging station hardware 2011-2021 in $ thousands, excluding energy storage

8.8. Typical hardware price of charging stations indoor and outdoor in $ thousands

8.9. Global market value of the three levels of car charging station 2011-2021 in $ millions

8.10. Market for electric vehicles, both hybrid and pure electric, sold in the world 2012-2022 in thousands of units rounded

8.11. The charging infrastructure situation by category

8.12. Sales of Light Electric Vehicles (LEVs) (two wheelers and allied eg electric quad bikes and on road three wheel micro cars) by region by percentage of units

8.13. Split between Level 2 and Level 3 chargers with rounded percentage

8.14. Number of hybrid and pure electric cars plugged in and the total number in thousands 2011-2021

9.1. Number, unit value ex-factory and total market value rounded of WPT hardware sold for consumer electronics worldwide 2012-2022

9.2. Number, hardware unit value ex-factory excluding any power storage and total market value rounded of contactless on-road vehicle charging stations sold worldwide in thousands 2012-2022

9.3. Number of on-road vehicle charging stations sold worldwide in thousands 2011-2021, residential, other and total, rounded, including plug-in and contactless

9.4. Global market value of the three levels of car charging station 2011-2021 in $ millions

FIGURES

2.1. Concept of a wireless power mat

3.1. Power requirements and sources for lowest power devices compared with contactless personal electrics and contactless vehicle charging

3.2. The place of energy harvesting in wirelessly powering electronic and electrical devices and vehicles

3.3. Solar bag and solar panel on phone, both for charging phones

3.4. Power in use vs duty cycle for portable and mobile devices showing zones of use of single use vs rechargeable batteries

3.5. Laptop fire caused by lithium-ion battery

3.6. Electric taxi in China on fire due to lithium-ion battery

3.7. Fatal UPS plane crash caused by the lithium battery cargo

3.8. The inadequate improvement in batteries compared to other technologies in the last 20 years

3.9. Powercast wireless sensor node without a battery, utilising transmitted UHF power

3.10. LaserMotive objectives illustrated

4.1. WPC interoperability logo

5.1. Photographs of the experimental set-up for RF-powered e-Skin in the dark (top) and transparent state (bottom)

5.2. Example of a segmented e-Skin panel (in two different states), illustrating the design freedom

5.3. A functional sample of an e-Skin window from Philips Research and Holst Centre that doesn’t require external power or batteries

5.4. WilkCharge mat

5.5. eneloop

6.1. Fulton wireless power integration in packaging

6.2. Wireless power circuit is printed directly

6.3. Poly IC application

6.4. PolyLogo®-RAD radio activated displays

6.5. Card with no battery, the image being illuminated by RF from RFID reader

7.1. Hino “no plug in” bus

7.2. In-road charging of small buses in Turin Italy

7.3. Evatran EV charging

7.4. Evatran Plugless Power EV charging station

7.5. HaloIPT 2010 launch of the first wireless charging in the UK

7.6. Operating principle of HaloIPT

7.7. Drayson racing car

7.8. KAIST OLEVs in 2010

7.9. Proximity charged tram

7.10. Inductive paddle

7.11. Wireless e-bike charger

7.12. Principle of the WiTricity Delphi wireless charging system

8.1. Value of the global traction battery charging station hardware market 2011-2021 percent of total for East Asia, Europe and North America for 2011 and 2021

8.2. Nissan backed charging stations being installed in the USA by region

8.3. Number of car charging stations sold worldwide in thousands 2011-2021, residential, outdoor and destination, rounded

8.4. Numbers thousands of the three levels of charging station worldwide 2011-2021

8.5. Average unit price of the three levels of charging station hardware vehicle 2011-2021 in $ thousands

8.6. BYD Auto charging station for pure electric taxis in China

8.7. Slow charging station in China

8.8. Fast charger for lead acid traction batteries in electric bicycles in China

8.9. Global market value of the three levels of car charging station 2011-2021 in $ millions

8.10. Market for electric vehicles, both hybrid and pure electric, sold in the world 2012-2022 in thousands of units

8.11. Total number of plug-in cars in thousands 2011-2021

Market Research Reports

Electric Vehicles Market

RFID Market

 

Thursday, February 2, 2012

Smart Grid Market in Europe to 2020 - Advanced Grid Concepts and Intelligent Technology Pivotal to Achieving EU 20-20-20 Targets

Smart Grid Market in Europe to 2020 - Advanced Grid Concepts and Intelligent Technology Pivotal to Achieving EU 20-20-20 Targets

Smart Grid Market

Smart Grid Market in Europe

GBI Research, a leading business intelligence provider, has released its latest research, “Smart Grid Market in Europe to 2020 - Advanced Grid Concepts and Intelligent Technology Pivotal to Achieving EU 20-20-20 Targets”. The report gives an in-depth analysis of the European smart grid market covering the three major technologies: smart meters, synchrophasors and in-home displays. The report gives the cumulative installed units and revenue from 2010-2020 for the three technologies for France, Spain, Denmark, Finland, Sweden, Norway and the UK. It also details smart grid policies and regulations in the European Union. It gives global smart grid market analysis, technology analysis, technology deployments by four major technologies and European major countries and the drivers and restraints.

The report covers European market trends, gives market analysis for smart meters, synchrophasors and in-home displays and provides active and upcoming projects as well as recently completed deals. This report is built using data and information sourced through primary and secondary research and in-house analysis by GBI Research’s team of industry experts.

According to GBI Research, The cumulative number of smart meter units installed in Europe is expected to grow from 7.6 million units in 2010 to 105.99 million units in 2020 at a CAGR of 30.2%.

The cumulative number of synchrophasor units installed in Europe is expected to grow from 20 units in 2010 to 208 units in 2020 at a CAGR of 26.4%. The cumulative number of in-home display units in Europe is expected to grow from 608,000 units in 2010 to 40,523,240 units in 2020 at a CAGR of 38.8%.

Scope

The report provides detailed analysis and forecasts on the European smart grid market. Its scope includes -

  • European smart grid market analysis covering the three major technologies: smart meters in France, Spain and the UK; synchrophasors in Denmark, Finland and Sweden; and in-home displays in Denmark, Finland, Norway, Sweden and the UK.
  • Historical and forecast figures for units installed and revenues for smart meters, synchrophasors and in-home displays from 2008-2020.
  • Smart grid policies and incentives for the European Union.
  • Global smart grid market analysis, technology analysis, technology deployments and drivers and restraints.
  • European smart grid market trends and market analysis.
  • European smart grid market technology deployments in France, Spain, the UK, Sweden, Denmark and Finland.
  • European smart grid market deals analysis of mergers and acquisitions, partnerships, venture capitals, debt finances and equity offerings.
  • European smart grid market major contracts and major projects.

Reasons to buy

The report will enhance your decision-making capabilities in a rapid and time-sensitive manner. It will allow you to -

  • Develop business strategies by understanding the trends and developments that are driving the Europe smart grid market.
  • Design and develop your product development, marketing and sales strategies.
  • Position yourself to take maximum advantage of the market’s growth potential.
  • Develop business strategies and future plans with the help of the country-wise understanding of the Europe smart grid market.
  • Make more informed business decisions from the insightful and in-depth analysis of the European smart grid market and the factors shaping it.

Table of Content

1 Table of Contents
1 Table of Contents 3
1.1 List of Tables 6
1.2 List of Figures 7

2 Introduction 8
2.1 GBI Research Report Guidance 8

3 Smart Grids Introduction 9
3.1 Smart Grids Overview 9
3.2 Smart Grids Characteristics 12
3.2.1 Ability to Supply High Quality Power 12
3.2.2 Ability to Incorporate Advanced Generation and Storage Options 12
3.2.3 Self-Healing Nature 12
3.2.4 Resistance to Attack 12
3.2.5 Optimized Asset and Efficient Operation 13
3.2.6 Active Involvement of Customers 13
3.3 Benefits of Smart Grids 13
3.3.1 Benefits to Utilities 13
3.3.2 Benefits to Consumers 14

4 Global Smart Grids Market Analysis 15
4.1 Global Smart Grids Market Overview 15
4.2 Global Smart Meter Market Analysis 15
4.2.1 Global Smart Meter Market Overview 15
4.2.2 Global Smart Meter Market Forecasts to 2020 17
4.2.3 Global Smart Meter Market, Competitive Landscape, 2010 19
4.3 Global Synchrophasors Market Analysis 20
4.3.1 Global Synchrophasors Market Overview 20
4.3.2 Global Synchrophasors Market Forecasts to 2020 21
4.3.3 Global Synchrophasors Market Competitive Landscape 23
4.4 Global In-Home Displays Market Analysis 24
4.4.1 Global In-Home Displays Market Overview 24
4.4.2 Global In-Home Displays Market Forecasts to 2020 25

5 Global Smart Grids Market, Technology Analysis 27
5.1 Global Smart Grids Market Technology Overview 27
5.1.1 Distributed Resource Systems 27
5.1.2 Power Grid Management 27
5.1.3 Demand Response 27
5.1.4 Demand-side Power Management 28
5.2 Global Smart Grids Market Technology Classification 29
5.2.1 Integrated Communication Technologies 29
5.2.2 Sensing and Measurement Technologies 31
5.2.3 Cabling Technologies 31
5.2.4 Utility-Customer Interface Technologies 31

6 Global Smart Grids Technology Deployment 33
6.1 Integrated Communication Technologies 33
6.2 Sensing and Measurement Technologies 34
6.3 Cabling Technologies 35
6.4 Consumer Interface Technologies 36

7 Technology Deployment in European Countries 38
7.1 Technology Deployment in France 38
7.2 Technology Deployment in Spain 38
7.3 Technology Deployment in the UK 39
7.4 Technology Deployment in Sweden 39
7.5 Technology Deployment in Denmark 40
7.6 Technology Deployment in Finland 40

8 Europe Smart Grids Market, Drivers and Restraints 41
8.1 Europe Smart Grids Market, Drivers 41
8.1.1 Reduction of Dependency on Foreign Oil 41
8.1.2 Enhancement in Security Features 41
8.1.3 European Targets for Renewable Energy and GHG emission 41
8.1.4 Environmental Concerns over Pollution and Global Warming 41
8.1.5 Customer Behavior and Safety Requirements 41
8.2 Europe Smart Grids Market, Restraints 42
8.2.1 Standardization and Interoperability Issues 42
8.2.2 IT Security, an Area of Concern 42
8.2.3 Limitation of Utilities to Upgrade to Smart Grid Technologies 42
8.2.4 Difficulty in Convincing Consumers for Data Sharing 42

9 Europe Smart Grids Market Trends 43
9.1 Economic and Environmental Drivers Supporting Smart Grids Development 43
9.2 Growing Consumer Concern over Smart Grids Security Issues 43
9.3 Growing Focus on Smart Meter Implementations 43

10 Europe Smart Grids Market Analysis 44
10.1 Europe Smart Grids Market Overview 44
10.2 Europe Smart Grids Market Major Policies and Incentives 44
10.2.1 The Smart Grids European Strategic Energy Technology Platform 44
10.2.2 The European Renewables Grid Initiative 44
10.2.3 European Union’s Directive on Meeting 2020 Targets 44
10.2.4 The European Electricity Grid Initiative 45
10.2.5 Energy Services Directive - 2006 45

11 Europe Smart Meter Market to 2020 46
11.1 Europe Smart Meter Market Forecasts to 2020 46
11.2 France Smart Meter Market to 2020 49
11.2.1 France Smart Meter Market Overview 49
11.2.2 France Smart Meter Market Forecasts to 2020 49
11.3 Spain Smart Meter Market to 2020 52
11.3.1 Spain Smart Meter Market Overview 52
11.3.2 Spain Smart Meter Market Forecasts to 2020 52
11.4 The UK Smart Meter Market to 2020 54
11.4.1 The UK Smart Meter Market Overview 54
11.4.2 The UK Smart Meter Market Forecasts to 2020 54

12 Europe Synchrophasors Market to 2020 57
12.1 Europe Synchrophasors Market Forecasts to 2020 57
12.2 Denmark Synchrophasors Market to 2020 59
12.2.1 Denmark Synchrophasors Market Overview 59
12.2.2 Denmark Synchrophasors Market Forecasts to 2020 59
12.3 Finland Synchrophasors Market to 2020 62
12.3.1 Finland Synchrophasors Market Overview 62
12.3.2 Finland Synchrophasors Forecasts to 2020 62
12.4 Sweden Synchrophasors Market to 2020 64
12.4.1 Sweden Synchrophasors Market Overview 64
12.4.2 Sweden Synchrophasors Market Forecasts to 2020 64

13 Europe In-Home Displays Market to 2020 67
13.1 Europe In-Home Displays Market Forecasts to 2020 67
13.2 Denmark In-Home Displays Market to 2020 70
13.2.1 Denmark In-Home Displays Market Overview 70
13.2.2 Denmark In-Home Displays Forecasts to 2020 70
13.3 Finland In-Home Displays Market to 2020 72
13.3.1 Finland In-Home Displays Market Overview 72
13.3.2 Finland In-Home Displays Forecasts to 2020 72
13.4 Norway In-Home Displays Market to 2020 75
13.4.1 Norway In-Home Displays Market Overview 75
13.4.2 Norway In-Home Displays Forecasts to 2020 75
13.5 Sweden In-Home Displays Market to 2020 78
13.5.1 Sweden In-Home Displays Market Overview 78
13.5.2 Sweden In-Home Displays Forecasts to 2020 78
13.6 The UK In-Home Displays Market to 2020 81
13.6.1 The UK In-Home Displays Market Overview 81
13.6.2 The UK In-Home Displays Forecasts to 2020 81

14 Europe Smart Grids Market, Deals Analysis 84

15 Europe Smart Grids Market Major Contracts 87

16 Europe Smart Grids Market Major Projects 92

17 Appendix 103
17.1 Market Definition 103
17.2 About GBI Research 103
17.3 Abbreviations 103
17.4 Methodology 105
17.4.1 Coverage 105
17.4.2 Secondary Research 105
17.4.3 Primary Research 105
17.4.4 Expert Panel Validation 106
17.5 Contact Us 106
17.6 Disclaimer 106

List of Table:
Table 1: Smart Grids Elements and their Functions, 2011 9
Table 2: Global Smart Meter Market, Units, Millions, 2008-2020 17
Table 3: Global Smart Meter Market, Revenue, $m, 2008-2020 18
Table 4: Global Smart Meter Market, Market Share of Key Players, (%), 2010 19
Table 5: Global Synchrophasors Market, Units, 2008-2020 21
Table 6: Global Synchrophasors Market, Revenue, $’000, 2008-2020 22
Table 7: Global Synchrophasors Market, Market Share of Key Players, (%), 2010 23
Table 8: Global In-Home Displays Market, Units, 2009-2020 25
Table 9: Global In-Home Displays Market, Revenue, $’000, 2009-2020 26
Table 10: Europe Smart Meter Market, Units, Millions, 2010-2020 47
Table 11: Europe Smart Meter Market, Revenue, $m, 2009-2020 48
Table 12: France Smart Meter Market, Units, Millions, 2010-2020 50
Table 13: France Smart Meter Market, Revenue, $m, 2010-2020 51
Table 14: Spain Smart Meter Market, Units, Millions, 2010-2020 53
Table 15: Spain Smart Meter Market, Revenue, $m, 2010-2020 54
Table 16: The UK Smart Meter Market, Units, Millions, 2010-2020 55
Table 17: The UK Smart Meter Market, Revenue, $m, 2010-2020 56
Table 18: Europe Synchrophasors Market, Units, 2008-2020 58
Table 19: Europe Synchrophasors Market, Revenue, $’000, 2008-2020 59
Table 20: Denmark Synchrophasors Market, Units, 2010-2020 60
Table 21: Denmark Synchrophasors Market, Revenue, $’000, 2010-2020 61
Table 22: Finland Synchrophasors Market, Units, 2008-2020 63
Table 23: Finland Synchrophasors Market, Revenue, $’000, 2008-2020 64
Table 24: Sweden Synchrophasors Market, Units, 2009-2020 65
Table 25: Sweden Synchrophasors Market, Revenue, $’000, 2009-2020 66
Table 26: Europe In-Home Displays Market, Units, 2009-2020 68
Table 27: Europe In-Home Displays Market, Revenue, $’000, 2009-2020 69
Table 28: Denmark In-Home Displays Market, Units, 2011-2020 71
Table 29: Denmark In-Home Displays Market, Revenue, $’000, 2011-2020 72
Table 30: Finland In-Home Displays Market, Units, 2010-2020 73
Table 31: Finland In-Home Displays Market, Revenue, $’000, 2010-2020 74
Table 32: Norway In-Home Displays Market, Units, 2011-2020 76
Table 33: Norway In-Home Displays Market, Revenue, $’000, 2011-2020 77
Table 34: Sweden In-Home Displays Market, Units, 2010-2020 79
Table 35: Sweden In-Home Displays Market, Revenue, $’000, 2010-2020 80
Table 36: The UK In-Home Displays Market, Units, 2009-2020 82
Table 37: The UK In-Home Displays Market, Revenue, $’000, 2009-2020 83
Table 38: Europe Smart Grids Market, Mergers and Acquisitions,  August 2010-November 2011 85
Table 39: Europe Smart Grids Market, Debt Offerings, August 2010-November 2011 86
Table 40: Europe Smart Grids Market, Major Contracts, August 2010-November 2011 87
Table 41: Europe Smart Grids Market, Major Projects, August 2010-November 2011 92"

List of Charts:
Figure 1: Smart Grids Model, 2011 10
Figure 2: Global Smart Meter Market, Units Installed, Market Share by Region, 2010 16
Figure 3: Global Smart Meter Market, Units, Millions, 2008-2020 17
Figure 4: Global Smart Meter Market, Revenue, $m, 2008-2020 18
Figure 5: Global Smart Meter Market, Market Share of Key Players, (%), 2010 19
Figure 6: Global Synchrophasors Market, Units Installed, Market Share by Region, 2010 20
Figure 7: Global Synchrophasors Market, Units, 2008-2020 21
Figure 8: Global Synchrophasors Market, Revenue, $’000, 2008-2020 22
Figure 9: Global Synchrophasors Market, Market Share of Key Players, (%), 2010 23
Figure 10: Global In-Home Displays Market, Units Installed, Market Share by Region, 2010 24
Figure 11: Global In-Home Displays Market, Units, 2009-2020 25
Figure 12: Global In-Home Displays Market, Revenue, $’000, 2009-2020 26
Figure 13: Global Smart Grids Market, Integrated Communication Technology Trends,  2010 - 2020 34
Figure 14: Global Smart Grids Market, Sensing and Measurement Technology Trends,  2010 - 2020 35
Figure 15: Global Smart Grids Market, Cabling Technology Trends, 2010 - 2020 36
Figure 16: Global Smart Grids Market, Customer Interface Technology Trends, 2010 - 2020 37
Figure 17: Europe Smart Meter Market, Units, Millions, 2010-2020 46
Figure 18: Europe Smart Meter Market, Revenue, $m, 2009-2020 47
Figure 19: France Smart Meter Market, Units, Millions, 2010-2020 49
Figure 20: France Smart Meter Market, Revenue, $m, 2010-2020 50
Figure 21: Spain Smart Meter Market, Units, Millions, 2010-2020 52
Figure 22: Spain Smart Meter Market, Revenue, $m, 2010-2020 53
Figure 23: The UK Smart Meter Market, Units, Millions, 2010-2020 55
Figure 24: The UK Smart Meter Market, Revenue, $m, 2010-2020 56
Figure 25: Europe Synchrophasors Market, Units, 2008-2020 57
Figure 26: Europe Synchrophasors Market, Revenue, $’000, 2008-2020 58
Figure 27: Denmark Synchrophasors Market, Units, 2010-2020 60
Figure 28: Denmark Synchrophasors Market, Revenue, $’000, 2010-2020 61
Figure 29: Finland Synchrophasors Market, Units, 2008-2020 62
Figure 30: Finland Synchrophasors Market, Revenue, $’000, 2008-2020 63
Figure 31: Sweden Synchrophasors Market, Units, 2009-2020 65
Figure 32: Sweden Synchrophasors Market, Revenue, $’000, 2009-2020 66
Figure 33: Europe In-Home Displays Market, Units, 2009-2020 67
Figure 34: Europe In-Home Displays Market, Revenue, $’000, 2009-2020 68
Figure 35: Denmark In-Home Displays Market, Units, 2011-2020 70
Figure 36: Denmark In-Home Displays Market, Revenue, $’000, 2011-2020 71
Figure 37: Finland In-Home Displays Market, Units, 2010-2020 73
Figure 38: Finland In-Home Displays Market, Revenue, $’000, 2010-2020 74
Figure 39: Norway In-Home Displays Market, Units, 2011-2020 75
Figure 40: Norway In-Home Displays Market, Revenue, $’000, 2011-2020 76
Figure 41: Sweden In-Home Displays Market, Units, 2010-2020 78
Figure 42: Sweden In-Home Displays Market, Revenue, $’000, 2010-2020 79
Figure 43: The UK In-Home Displays Market, Units, 2009-2020 81
Figure 44: The UK In-Home Displays Market, Revenue, $’000, 2009-2020 82
Figure 45: Europe Smart Grids Market, Recent Deals By Share, (%),  August 2010-November 2011 84"

Publisher >> GBI Research
Report Category: Clean Technology

 

Thursday, January 19, 2012

Europe In Vitro Diagnostics Market Outlook to 2017- Clinical Chemistry Genetic Testing, Haematology, Histology and Cytology, Immuno Chemistry, Infectious Immunology and Microbiology Culture

Europe In Vitro Diagnostics Market Outlook to 2017- Clinical Chemistry Genetic Testing, Haematology, Histology and Cytology, Immuno Chemistry, Infectious Immunology and Microbiology Culture

 

Europe In Vitro Diagnostics Market

 

Description

Europe In Vitro Diagnostics Market Outlook to 2017- Clinical Chemistry Genetic Testing, Haematology, Histology and Cytology, Immuno Chemistry, Infectious Immunology and Microbiology Culture

Summary

GlobalDatas new report, Europe In Vitro Diagnostics Market Outlook to 2017- Clinical Chemistry Genetic Testing, Haematology, Histology and Cytology, Immuno Chemistry, Infectious Immunology and Microbiology Culture provides key market data on the Europe In Vitro Diagnostics market France, Germany, Italy, Spain and United Kingdom. The report provides value (USD million) data for all the market categories Clinical Chemistry, Genetic Testing, Haematology, Histology And Cytology, Immuno Chemistry, Infectious Immunology and Microbiology Culture. The report also provides company shares and distribution shares data for each of the aforementioned market categories. The report is supplemented with global corporate-level profiles of the key market participants.

This report is built using data and information sourced from proprietary databases, primary and secondary research and in-house analysis by GlobalDatas team of industry experts.

Scope

- Countries covered include France, Germany, Italy, Spain and United Kingdom.
- Market size and company share data for In Vitro Diagnostics market categories Clinical Chemistry, Genetic Testing, Haematology, Histology And Cytology, Immuno Chemistry, Infectious Immunology and Microbiology Culture.
- Annualized market revenues (USD million) data for each of the market categories in each of the country. Data from 2003 to 2010, forecast forward for 7 years to 2017.
- 2010 company shares and distribution shares data for each of the market categories and countries.
- Global corporate-level profiles of key companies operating within the Europe In Vitro Diagnostics market.
- Key players covered include F. Hoffmann-La Roche Ltd., Siemens Healthcare, Abbott Laboratories, Beckman Coulter, Inc., bioMerieux S.A., Ortho-Clinical Diagnostics Inc. and others.

Reasons to buy

- Develop business strategies by identifying the key market categories and segments poised for strong growth.
- Develop market-entry and market expansion strategies.
- Design competition strategies by identifying who-stands-where in the Europe In Vitro Diagnostics competitive landscape.
- Develop capital investment strategies by identifying the key market segments expected to register strong growth in the near future.
- What are the key distribution channels and whats the most preferred mode of product distribution Identify, understand and capitalize.

1 Table of Contents
1 Table of Contents 2
1.1 List of Tables 6
1.2 List of Figures 12
2 Introduction 14
2.1 What is This Report About? 14
3 In Vitro Diagnostics in Europe 15
3.1 In Vitro Diagnostics Cross Country Comparison, USD Actual, 2003-2017 15
3.2 In Vitro Diagnostics, Europe, Overall Revenue ($m), USD Actual, 2003-2017 16
3.3 In Vitro Diagnostics, Europe, Company share (2009-2010) 24
4 In Vitro Diagnostics In Germany 26
4.1 In Vitro Diagnostics, Germany, Overall Revenue ($m), USD Actual, 2003-2017 26
4.2 In Vitro Diagnostics, Germany, Distribution Share (2009-2010) 32
4.3 In Vitro Diagnostics, Germany, Company share (2009-2010) 36
5 In Vitro Diagnostics In France 52
5.1 In Vitro Diagnostics, France, Overall Revenue ($m), USD Actual, 2003-2017 52
5.2 In Vitro Diagnostics, France, Distribution Share (2009-2010) 58
5.3 In Vitro Diagnostics, France, Company share (2009-2010) 62
6 In Vitro Diagnostics In Italy 78
6.1 In Vitro Diagnostics, Italy, Overall Revenue ($m), USD Actual, 2003-2017 78
6.2 In Vitro Diagnostics, Italy, Distribution Share (2009-2010) 84
6.3 In Vitro Diagnostics, Italy, Company share (2009-2010) 88
7 In Vitro Diagnostics In United Kingdom 104
7.1 In Vitro Diagnostics, United Kingdom, Overall Revenue ($m), USD Actual, 2003-2017 104
7.2 In Vitro Diagnostics, United Kingdom, Distribution Share (2009-2010) 110
7.3 In Vitro Diagnostics, United Kingdom, Company share (2009-2010) 114
8 In Vitro Diagnostics In Spain 130
8.1 In Vitro Diagnostics, Spain, Overall Revenue ($m), USD Actual, 2003-2017 130
8.2 In Vitro Diagnostics, Spain, Distribution Share (2009-2010) 136
8.3 In Vitro Diagnostics, Spain, Company Share (2009-2010) 140
9 Overview of Key Companies in Europe In Vitro Diagnostics Market 156
9.1 F. Hoffmann-La Roche Ltd. 156
9.2 Siemens Healthcare 157
9.3 Abbott Laboratories 158
9.4 Beckman Coulter, Inc. 159
9.5 bioMerieux S.A. 160
9.6 Ortho-Clinical Diagnostics Inc. 161
9.7 Sysmex Corporation 162
9.8 Bio-Rad Laboratories, Inc. 162
9.9 Becton, Dickinson and Company 162
9.10 DiaSorin S.p.A 163
9.11 Phadia AB 163
9.12 Alere Inc. 163
9.13 DIAGNOSTICA STAGO, Inc. 164
9.14 Qiagen N.V. 164
9.15 Gen-Probe Incorporated 164
9.16 HORIBA, Ltd. 165
9.17 Thermo Fisher Scientific Inc. 165
9.18 Grifols, S.A. 165
9.19 PerkinElmer, Inc. 166
9.20 Danaher Corporation 166
9.21 The Elitech Group 166
9.22 BioSystems International 167
9.23 Life Technologies Corporation 167
9.24 Immucor, Inc. 167
9.25 Hologic, Inc. 168
9.26 Cellestis Limited 168
9.27 Atlas Medical 168
10 In Vitro Diagnostics Market Pipeline Products 169
10.1 Clinical Chemisty Market Pipeline Products 169
10.2 Immuno Chemistry Market Pipeline Products 172
10.3 Haematology Market Pipeline Products 175
10.4 Infectious Immunology Market Pipeline Products 177
10.5 Microbiology Culture Market Pipeline Products 181
10.6 Histology and Cytology Market Pipeline Products 182
10.7 Genetic Testing Market Pipeline Products 183
11 Financial Deals Landscape 188
11.1 Merger 188
11.2 Acquisition 189
11.3 Partnerships 220
12 Recent Developments 291
12.1 Strategy And Business Planning 291
12.2 Legal and Regulatory 308
12.3 Government and Public Interest 313
12.4 Product News 329
13 Appendix 364
13.1 Definitions of Markets Covered in the Report 365
13.2 Research Methodology 367
13.3 Secondary Research 367
13.4 Primary Research 368
13.5 Models 368
13.6 Forecasts 369
13.7 Expert Panels 369
13.8 GlobalData Consulting 369
13.9 Currency Conversion 370
13.10 Contact Us 370
13.11 Disclaimer 370

List of Table:

res 25% Stake In PET Net 215
Table 117: Qiagen Completes Acquisition Of Cellestis 216
Table 118: Techne Acquires Boston Biochem And Boston Biochem 218
Table 119: Merck Acquires heipha Dr. Muller And Related Assets From Biotest 219
Table 120: Agilent Technologies Acquires Lab901 221
Table 121: PerkinElmer Acquires Chemagen Biopolymer 223
Table 122: Imperial Innovations Acquires Minority Stake In Molecular Vision 225
Table 123: AlphaHelix Molecular Diagnostics Acquires Techtum Lab 226
Table 124: ERBA DIAGNOSTICS MANNHEIM Acquires Diasis Diagnostic Systems 227
Table 125: Addtech Life To Acquire Electra-Box Diagnostica 228
Table 126: Lab21 Acquires Microgen Bioproducts 229
Table 127: Global BioDiagnostics Extends Co-Development Agreement With Foundation for Innovative New Diagnostics 230
Table 128: Sony DADC Enters Into Co-Development Agreement With Axela 231
Table 129: Roche Enters Into Joint Venture Agreement With Swiss Federal Institute of Technology, University of Zurich And University Hospital Zurich 232
Table 130: Sony DADC BioSciences Enters Into Co-Development Agreement With Maven Biotechnologies 234
Table 131: Abbott Laboratories Expands Its Co-Development Agreement With GlaxoSmithKline Biologicals 235
Table 132: Dolomite Enters Into Co-Development Agreement With Clearbridge BioMedics 236
Table 133: SuperNova Diagnostics Enters Into Co-Development Agreement With Concile 237
Table 134: Dako Enters Into Co-Development Agreement With Bristol-Myers 238
Table 135: Transgenomic Enters Into Distribution Agreement With ScreenCell 239
Table 136: Oxford Gene Technology Enters Into Co-Development Agreement With Abcodia 240
Table 137: Horizon Discovery Enters Into Co-Development Agreement With Promega 241
Table 138: Sony DADC Enters Into Co-Development Agreement With Anagnostics Bioanalysis 242
Table 139: Life Technologies Enters Into Co-Development Agreement With GlaxoSmithKline Biologicals 243
Table 140: Axis-Shield Enters Into Co-Development Agreement With Siemens Healthcare Diagnostics 244
Table 141: TcLand Expression Enters Into Co-Development Agreement With Radboud University Nijmegen 245
Table 142: Generation Scotland Enters Into Co-Development Agreement With Arrayjet 246
Table 143: Accelr8 Technology Amends Licensing Agreement With SCHOTT 247
Table 144: Orion Genomics Enters Into Licensing Agreement With QIAGEN 248
Table 145: Almac Group Enters Into Research Agreement With Queens University Belfast 249
Table 146: QIAGEN Enters Into Co-Development Agreement With Eli Lilly 250
Table 147: Skyline Diagnostics Enters Into Research Agreement With Clavis Pharma 251
Table 148: Lumora Enters Into Licensing Agreement With 3M 252
Table 149: Quanterix Enters Into Co-Development Agreement With STRATEC Biomedical 253
Table 150: Sequenom Enters Into Licensing Agreement With LifeCodexx 254
Table 151: Enigma Diagnostics Enters Into Co-Development Agreement With GlaxoSmithKline 255
Table 152: BD Diagnostics Enters Into Co-Development Agreement With Lab21 256
Table 153: Hycor Biomedical Signs Licensing Agreement With Eurospital 257
Table 154: Hycor Biomedical Signs Licensing Agreement With Axis-Shield 258
Table 155: Quanterix Enters Into Co-Development Agreement With Sony DADC 259
Table 156: Mayo Medical Laboratories Enters Into Licensing Agreement With Qiagen 260
Table 157: Proteome Sciences Enters Into Collaboration With Buck Institute 261
Table 158: Proteome Sciences Enters Into Co-Development Agreement With H. Lee Moffitt Cancer Center 262
Table 159: Skyline Diagnostics Enters Into Research Collaboration With Johnson & Johnson Pharmaceutical 263
Table 160: Metamark Genetics Enters Into Co-Development Agreement With Definiens 264
Table 161: Bruker Daltonics Enters Into Distribution Agreement With Francisco Soria Melguizo 265
Table 162: Roche Enters Into Collaboration With Evotec 266
Table 163: Life Technologies, Oxford Biomedical Research Centre, AstraZeneca And ORD Enter Into Co-Development Agreement 267
Table 164: ResearchDx Enters Into Partnership With CompanDX 268
Table 165: Source BioScience Enters Into Co-Development Agreement With Barts Cancer Institute And Illumina 269
Table 166: University of Geneva, Hopitaux Universitaires de Geneve, SIB And Roche Form Partnership 270
Table 167: F. Hoffmann-La Roche Enters Into Co-Development Agreement With Merck 271
Table 168: Roche Enters Into Co-Development Agreement With Clovis Oncology 272
Table 169: Roche Applied Science Enters Into Partnership With TIB MOLBIOL 273
Table 170: Pacific Edge Biotechnology Enters Into Licensing Agreement With Oryzon Genomics 274
Table 171: EKF Diagnostics Enters Into Distribution Agreement With Alere 275
Table 172: AbD Serotec Enters Into Licensing Agreement With Proteomika 276
Table 173: BD Diagnostic Enters Into Co-Development Agreement With Diagenode 277
Table 174: Atonomics Enters Into An Agreement With Beckman Coulter 278
Table 175: Royal Philips Electronics Enters Into Co-Development Agreement With NEC 279
Table 176: Precision System Science Enters Into Co-Development Agreement With Biotrin International 280
Table 177: Genmab Enters Into Research Collaboration With Seattle Genetics 281
Table 178: Biofortuna Enters Into Distribution Agreement With Abbott 282
Table 179: Advanced Cell Diagnostics Enters Into Co-Development Agreement With Definiens 283
Table 180: DNA Genotek Enters Into Distribution Agreement With Abyntek Biopharma 284
Table 181: BioFocus Enters Into An Agreement With Almac Group 285
Table 182: Seegene Enters Into An Agreement With Molzym 286
Table 183: Dako Denmark Enters Into Co-Development Agreement With Epitomics 287
Table 184: Accelrys Enters Into Co-Development Agreement With Oxford Nanopore 288
Table 185: Ascent Scientific Enters Into Licensing Agreement With Children's Memorial Hospital And The University Of Newcastle 289
Table 186: Genomic Expression Enters Into An Agreement With Copenhagen University, Beijing Genome Institute And Bavarian Nordic 290
Table 187: BioPorto Enters Into Licensing Agreement With Instrumentation Laboratory 291
Table 188: Oxford Medical Diagnostics Enters Into Co-Marketing Agreement With V&F Analyse 292
Table 189: FIND Enters Into An Agreement With Global BioDiagnostics 293
Table 190: Epigenomics Enters Into Research Licensing Agreement With QIAGEN 294
Table 191: CompanDX Enters Into Agreement With Clinical Reference Laboratory 295
Table 192: Trinity Biotech Enters Into Distribution Agreement With A. Menarini Diagnostics 296
Table 193: PROGEN Biotechnik Enters Into Distribution Agreement With Mitsubishi Chemical 297
Table 194: NorDiag Enters Into Agreement With Precision System Science 298
Table 195: Consort Medical Enters Into Co-Development Agreement With Atlas Genetics 299
Table 196: Cepheid Enters Into Co-Development Agreement With FIND 300
Table 197: USD to Local Currency, Europe, Average Exchange Rate 2003-2010 380

List of Charts:

1.2 List of Figures
Figure 1: In Vitro Diagnostics, Cross Country Comparison, USD Actual, 2003-2017 25
Figure 2: In Vitro Diagnostics, Europe, Overall Revenue ($m), USD Actual, 2003-2017 26
Figure 3: In Vitro Diagnostics, Europe, Cross-Category Analysis, 2003-2017 28
Figure 4: In Vitro Diagnostics, Europe, Overall Revenue ($m), USD Actual, Historic, 2003-2010 30
Figure 5: In Vitro Diagnostics, Europe, Overall Revenue ($m), USD Actual, Forecast, 2010-2017 32
Figure 6: In Vitro Diagnostics, Europe, Company share (%), 2010 34
Figure 7: In Vitro Diagnostics, Germany, Overall Revenue ($m), USD Actual, 2003-2017 36
Figure 8: In Vitro Diagnostics, Germany, Overall Revenue ($m), USD Actual, Historic, 2003-2010 38
Figure 9: In Vitro Diagnostics, Germany, Overall Revenue ($m), USD Actual, Forecast, 2010-2017 40
Figure 10: In Vitro Diagnostics, Germany, Company Share (%), 2010 46
Figure 11: Clinical Chemistry, Germany, Company Share (%), 2010 48
Figure 12: Genetic Testing, Germany, Company Share (%), 2010 50
Figure 13: Haematology, Germany, Company Share (%), 2010 52
Figure 14: Histology And Cytology, Germany, Company Share (%), 2010 54
Figure 15: Immuno Chemistry, Germany, Company Share (%), 2010 56
Figure 16: Infectious Immunology, Germany, Company Share (%), 2010 58
Figure 17: Microbiology Culture, Germany, Company Share (%), 2010 60
Figure 18: In Vitro Diagnostics, France, Overall Revenue ($m), USD Actual, 2003-2017 62
Figure 19: In Vitro Diagnostics, France, Overall Revenue ($m), USD Actual, Historic, 2003-2010 64
Figure 20: In Vitro Diagnostics, France, Overall Revenue ($m), USD Actual, Forecast, 2010-2017 66
Figure 21: In Vitro Diagnostics, France, Company Share (%), 2010 72
Figure 22: Clinical Chemistry, France, Company share (%), 2010 74
Figure 23: Genetic Testing, France, Company share (%), 2010 76
Figure 24: Haematology, France, Company share (%), 2010 78
Figure 25: Histology And Cytology, France, Company share (%), 2010 80
Figure 26: Immuno Chemistry, France, Company share (%), 2010 82
Figure 27: Infectious Immunology, France, Company share (%), 2010 84
Figure 28: Microbiology Culture, France, Company share (%), 2010 86
Figure 29: In Vitro Diagnostics, Italy, Overall Revenue ($m), USD Actual, 2003-2017 88
Figure 30: In Vitro Diagnostics, Italy, Overall Revenue ($m), USD Actual, Historic, 2003-2010 90
Figure 31: In Vitro Diagnostics, Italy, Overall Revenue ($m), USD Actual, Forecast, 2010-2017 92
Figure 32: In Vitro Diagnostics, Italy, Company share (%), 2010 98
Figure 33: Clinical Chemistry, Italy, Company share (%), 2010 100
Figure 34: Genetic Testing, Italy, Company share (%), 2010 102
Figure 35: Haematology, Italy, Company share (%), 2010 104
Figure 36: Histology And Cytology, Italy, Company share (%), 2010 106
Figure 37: Immuno Chemistry, Italy, Company Share (%), 2010 108
Figure 38: Infectious Immunology, Italy, Company share (%), 2010 110
Figure 39: Microbiology Culture, Italy, Company share (%), 2010 112
Figure 40: In Vitro Diagnostics, United Kingdom, Overall Revenue ($m), USD Actual, 2003-2017 114
Figure 41: In Vitro Diagnostics, United Kingdom, Overall Revenue ($m), USD Actual, Historic, 2003-2010 116
Figure 42: In Vitro Diagnostics, United Kingdom, Overall Revenue ($m), USD Actual, Forecast, 2010-2017 118
Figure 43: In Vitro Diagnostics, United Kingdom, Company share (%), 2010 124
Figure 44: Clinical Chemistry, United Kingdom, Company share (%), 2010 126
Figure 45: Genetic Testing, United Kingdom, Company share (%), 2010 128
Figure 46: Haematology, United Kingdom, Company share (%), 2010 130
Figure 47: Histology And Cytology, United Kingdom, Company share (%), 2010 132
Figure 48: Immuno Chemistry, United Kingdom, Company share (%), 2010 134
Figure 49: Infectious Immunology, United Kingdom, Company share (%), 2010 136
Figure 50: Microbiology Culture, United Kingdom, Company share (%), 2010 138
Figure 51: In Vitro Diagnostics, Spain, Overall Revenue ($m), USD Actual, 2003-2017 140
Figure 52: In Vitro Diagnostics, Spain, Overall Revenue ($m), USD Actual, Historic, 2003-2010 142
Figure 53: In Vitro Diagnostics, Spain, Overall Revenue ($m), USD Actual, Forecast, 2010-2017 144
Figure 54: In Vitro Diagnostics, Spain, Company Share (%), 2010 150
Figure 55: Clinical Chemistry, Spain, Company Share (%), 2010 152
Figure 56: Genetic Testing, Spain, Company Share (%), 2010 154
Figure 57: Haematology, Spain, Company Share (%), 2010 156
Figure 58: Histology and Cytology, Spain, Company Share (%), 2010 158
Figure 59: Immuno Chemistry, Spain, Company Share (%), 2010 160
Figure 60: Infectious Immunology, Spain, Company Share (%), 2010 162
Figure 61: Microbiology Culture, Spain, Company Share (%), 2010 164
Figure 62: F. Hoffmann-La Roche Ltd., Company Share (%), Europe In Vitro Diagnostics Market, 2010 166
Figure 63: Siemens Healthcare, Company Share (%), Europe In Vitro Diagnostics Market, 2010 167
Figure 64: Abbott Laboratories, Company Share (%), Europe In Vitro Diagnostics Market, 2010 168
Figure 65: Beckman Coulter, Inc., Company Share (%), Europe In Vitro Diagnostics Market, 2010 169
Figure 66: bioMerieux S.A., Company Share (%), Europe In Vitro Diagnostics Market, 2010 170
Figure 67: Ortho-Clinical Diagnostics Inc., Company Share (%), Europe In Vitro Diagnostics Market, 2010 171

 
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