Toshiba Presents Image Sensor for Iris Recognition

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BusinessWire: Toshiba launches T4KE1, a near-infrared 2.1MP BSI sensor that supports iris recognition on mobile devices. Sample shipments start today.

T4KE1 is a 2.1 MP 1.12um BSI CMOS image sensor with a 1/7.3 inch optical format and 60fps at 1080p image output. The new sensor captures images for recognition with higher sensitivity than conventional CMOS image sensors, as it discards the usual color filter in the pixel structure, increasing sensitivity in the near infrared spectrum.


PRNewswire: "This is an exciting time for the image sensor business, as new applications and technologies are affording electronics manufacturers wider opportunities for improving their devices' capabilities," said Andrew Burt, VP of the Image Sensor Business Unit, System LSI Group at TAEC. "Toshiba is helping device makers meet these growing requirements by continually introducing innovative technology into our CMOS image sensor family, such as the NIR iris recognition in our new T4KE1."
11:54 PM

Sony Acquires Softkinetic

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Sony has completed the acquisition of Softkinetic Systems S.A., after reaching an agreement with the company and its major shareholders. With this acquisition, Softkinetic - which possesses ToF image sensor technology, as well as related systems and software - has become a wholly-owned subsidiary of Sony.

Sony will focus on combining Softkinetic's ToF range image sensor technology expertise with its own technologies with the aim of developing the next generation of range image sensors and solutions, not only in the field of imaging, but for broader sensing-related applications as well.

Overview of Softkinetic Systems S.A.

Headquarters: Brussels, Belgium
Employees: 77
Business offices: Brussels, Belgium; Sunnyvale, CA, USA
Primary areas of business:
  • Development and licensing of ToF range image sensors
  • Development and licensing of range imaging software, such as for range image signal processing and gesture recognition
  • Development of ToF range image sensor modules and reference designs
11:16 PM

Light Co. Announces its First Product

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Light Co. introduces its first multi-aperture camera product. The L16 camera will retail for $1,699 and ship in late summer 2016. A limited quantity will be available for pre-order through November 6, 2015 at a special price of $1,299. The camera offers:
  • Adjust focus and depth of field even after a photo is taken, all the way to f/1.2
  • Built-in 35-150mm true optical zoom
  • Exceptional low light performance
  • Low image noise
  • 3 fast prime lenses
  • DSLR quality images up to 52MP
The company's Vimeo video talks about the camera design:




Update: Imaging Resource adds few more details about the L16 camera:

"L16 packs in sixteen 13-megapixel camera modules at three different focal lengths – 35mm (5), 70mm (5) and 150mm (6) – for a total of 52-megapixels. Each of these modules captures an individual image, which is then stitched together via software to yield a photo that Light claims is equal to the quality of a DSLR with a large lens attached."
9:49 PM

Cadence Announces Tensilica Vision P5 IP Core

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PRNewswire: Cadence Tensilica Vision P5 processor core offers up to 13X performance boost, with an average of 5X less energy usage on vision tasks compared to the previous generation IVP-EP imaging and video DSP. The Vision P5 DSP is built from the ground up for applications requiring ultra-high memory and operation parallelism to support complex vision processing at high resolution and high frame rates. It is aimed to off-loading vision and imaging functions from the main CPU to increase throughput and reduce power. End-user applications that can benefit from the DSP's capabilities include image and video enhancement, stereo and 3D imaging, depth map processing, robotic vision, face detection and authentication, augmented reality, object tracking, object avoidance and advanced noise reduction.

The Vision P5 core includes an expanded and optimized Instruction Set Architecture (ISA) targeting mobile, ADAS (which includes pedestrian detection, traffic sign recognition, lane tracking, adaptive cruise control, and accident avoidance) and IoT systems.

The Vision P5 core includes these new features:
  • Wide 1024-bit memory interface with SuperGather technology for maximum performance on the complex data patterns of vision processing
  • Up to 4 vector ALU operations per cycle, each with up to 64-way data parallelism
  • Up to 5 instructions issued per cycle from 128-bit wide instruction delivering increased operation parallelism
  • Enhanced 8-,16- and 32-bit ISA tuned for vision/imaging applications
  • Optional 16-way IEEE single-precision vector floating-point processing unit delivering a massive 32GFLOPs at 1GHz


EETimes believes that such kind of a processor could increase the number of cameras in smartphone from 2 to 4.
11:33 AM

Sony Image Sensor Split "is both expected and surprising"

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CCTV News quotes IHS analyst Brian O'Rourke giving Sony image sensor market share numbers for Q2 2015:


Sony image sensor business spin-off is called "both expected and surprising at the same time. Over the past two years, Sony has spun out its audio and video business (February 2015), and its TV and PC businesses (February 2014). However, the semiconductor spin out is different. While the TV, PC and A/V businesses had been struggling to some extent with increased competition and a slow-growing world economy, the semiconductor business has generated a significant amount of Sony's recent revenues and profitability. The semiconductor business is highlighted by image sensors, a historically successful and profitable business for Sony.
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Today, it dominates the CMOS image sensor business, with Q2 2015 revenues of slightly over USD1 billion, good for over 42% of the worldwide market, nearly three times the revenue of its closest competitor, Samsung Electronics.
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Why interfere with a good thing? The current Sony corporate structure seemed to be working well enough to ensure image sensor success. How will the new Sony Semiconductor Solutions benefit the image sensor business? The answer may be in simplifying a corporate structure so that Sony can react more rapidly.
"
9:04 AM

Omnivision Acquisition Advances One More Step

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PRNewswire: OmniVision received a notice from the Committee on Foreign Investment in the United States ("CFIUS") that it has concluded its review of the proposed acquisition of OmniVision by a consortium composed of Hua Capital Management Co., Ltd., CITIC Capital Holdings Limited, and GoldStone Investment Co., Ltd., and determined that there are no unresolved national security concerns with respect to the proposed acquisition. OmniVision expects the proposed acquisition to close in the third or fourth fiscal quarter of fiscal year 2016.
8:20 AM

Sony to Split Image Sensor Business into Separate Company

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Reuters, Bloomberg: Sony announces that it will establish Sony Semiconductor Solutions Corporation ("Sony Semiconductor Solutions") to further reinforce this business, and concentrate on sustained growth in image sensors, its primary business focus. R&D, business control, sales and other operations related to the semiconductor business, which are currently overseen by business groups and R&D units within Sony Corporation, will be transferred to Sony Semiconductor Solutions. The new company will aim to commence operations on April 1, 2016. In February 2015, Sony outlined its intention to sequentially split out the business units currently within Sony Corporation and operate them alongside existing Sony Group companies. The aim of these measures is to ensure clearly attributable accountability and responsibility from the perspective of shareholders, management policies with an emphasis on sustainable profit generation, and the acceleration of decision-making processes and reinforcement of business competitiveness. The decision to establish Sony Semiconductor Solutions forms part of this strategy.

Terushi Shimizu, currently Deputy President, Device Solutions Business Group, Sony Corporation, is expected to be appointed President, Sony Semiconductor Solutions. Sony Semiconductor Corporation (President: Yasuhiro Ueda) and Sony LSI Design Inc. (President: Makoto Ishii), which cover Sony's semiconductor manufacturing and design operations respectively, will become subsidiaries of Sony Semiconductor Solutions.

The Devices segment, including Sony Semiconductor Solutions, battery and storage media businesses, will continue to be overseen by Tomoyuki Suzuki, Executive Deputy President and Corporate Executive Officer, Sony Corporation.
9:43 AM

LensVector Lens Has Reached the Market

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PRNewswire: LensVector announces that its liquid crystal autofocus lens, LV4522, has made its retail debut through a partnership with Sunny Opotech and Vital Mobile.

LV4522 uses proprietary technology to transform a liquid crystal cell into a variable focus lens, said to consume about 80% less power than the traditional mechanical lens currently used in mobile devices. Since the device does not use any moving parts, manufacturing LV4522 costs about half as much as it does to manufacture voice-coil motors and is inherently more reliable. Additionally, each module is seamlessly integrated into each smartphone, not requiring individual adjustment or tuning by the handset manufacturer.

LensVector has made initial shipments though its partnership with production partner Sunny Optical to Vital Mobile, which is currently selling LV4522-enabled phones in Taiwan, Bangladesh and India under the Karbonn brand.

As LV4522 ships, LensVector is preparing to ship its next-generation lens by year's end, which provides dramatically higher image resolution, twice the focusing speed of most mechanical lenses, and a minimum focus distance of just 5cm, half the distance of most existing lenses used in mobile devices.

The current lens and the next-generation lens are based on patented technology that transforms a liquid crystal cell into a variable focus lens using small electrical charges to dynamically change the refractive index of the lens material:

2:11 PM

Why SMAC is the hot cake for businesses? The next big thing!

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SMAC aka Social, Mobile, Analytics and Cloud is a perfect nexus of four innovative technologies that are helming business innovation. So is SMAC turning out to be a perfect Pick-me-up for growing businesses? Let’s find out.
SMAC creates a perfect ecosystem facilitating businesses to boost its operations and reach/understand customers without heavy investing, which is undoubtedly a boon to SMEs. The explosion of unstructured and structured data created through cellular devices, social media and website browising is proving to be of great use these days.    
SMEs are anticipated to play  a significant role in adopting SMAC technology. Moreover, with SMAC opening up new avenues for SMEs at warp speed, it would be interesting to see how these businesses fare in this game. Besides helping boost operational efficiency, SMAC also helps enhance customer experience to a great extent.

 What makes SMAC a perfect pick-me-up?

Customers posting queries on social medial handles of organizations and receiving real-time responses/resolutions to their questions is one of the excellent examples of how SMAC can work wonders for a business in effective marketing and customer retention, satisfaction and service.
Since social networks utilize cloud platform for data storage and users these days prefer mobiles for connecting to these networks thus, a sound analytics here helps businesses in understanding as what, when and how users are steered towards a particular service or product.      
Netflix is another great example of SMAC analytics done the right way. For instance, when a Netflix user streams a TV serial from Netflix’s cloud on his iPad, he gets the option to sign into Netflix via Facebook login. After watching the serial, the user is now asked to provide his feedback. He can post reviews, rate the serial or can simply opt to share an update about the recently viewed TV serial on his Facebook.
Here comes the punch! All the data is stored on cloud thereby, allowing Netflix to breakdown and analyse the data to such a granular level in order to give out preference-based or personalized recommendations to each user of the site.
For businesses operating in the BFSI and retail sectors, SMAC can help foster a perfect ecosystem allowing them to conduct business in a much better manner and collect relevant insights for streamlining critical business operations and eventually helping to sow seeds for a stronger relationship with their customers.
In addition, adopting SMAC technology would greatly help businesses operating in the BFSI sector to garner qualified leads by using cost-efficient mediums and mapping lifecycles of customers in a better way as well as will help in identifying areas that require timely attention.    
Today, technological advancement in SMAC has reached its peak and thus, there is a downpour of cutting-edge, customizable, and affordable SMAC solutions for business of any size operating in any industry. Therefore, SMEs too can leverage the power of SMAC without bombing their budgets to stay ahead of their competitors.     

It is the need of hour for SMEs to take the centre-seat in adopting SMAC technology and making it the crux of their business planning. A business that understands the potent of SMAC and harnesses it across critical business operations is sure to lead this new tide of growth.

Engineering Exemplar: Smarter Every Day's Destin Sandlin

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An exemplar is an excellent model of something.  Engineering has its exemplars—people who excel at their work so well that it's worthwhile to point them out as good examples.  The aerospace engineer Destin Sandlin is an exemplar in a corner of engineering we don't think much about:  explaining engineering and science concepts to the general public.  Believe it or not, some of the ethics codes of engineering societies call for their members to do this.  Members of the IEEE (which used to stand for Institute of Electrical and Electronics Engineers before they changed it to just the initials) are committed "to improve the understanding of technology; its appropriate application, and potential consequences." One engineer who is doing a lot in that direction right now is Destin Sandlin.

Mr. Sandlin has a graduate degree in aerospace engineering from the University of Alabama at Huntsville and works as a missile flight test engineer at the Redstone Arsenal.  Some time in the late 2000s, he posted a video on YouTube showing his friends how to light a bonfire with rockets.  They liked it so much that he started making more videos.  It's now a collection of videos he calls Smarter Every Day.  He's now up to No. 142, at least, and now has over two million subscribers and 24 videos that have received more than a million views each. 

What does he talk about?  All kinds of cool stuff involving technology, explained in a visually appealing way with well-produced graphics and a narration by Mr. Sandlin himself.  He is the opposite of the stereotypical inarticulate nerdy engineer, as you might expect from someone who won the University of Alabama's Outstanding Senior Award.  (Notice that's not Outstanding Engineering Major, but Outstanding Senior—period.)  I discovered his videos while searching for high-speed photography videos, and came upon one that dealt with a thing called a Prince Rupert's drop.  Go look at it to find out what it is—it has to do with dropping very hot glass into cold water.  I was impressed by his combination of clarity, technical correctness, and enthusiasm.  Plus which, he shows some really neat high-speed videos of how the thing works.

His videos aren't just all about technology—he gets into engineering ethics in a way too.  For example, one of his recent videos covers the three-in-a-row explosions of cargo-rocket launches that were intended to resupply the International Space Station.  Ever the optimist, his take on them is that if we were going to have some rockets blow up, this was the perfect time for it to happen, when the Space Station happens to have rather a surplus of food and before we start putting people on those rockets. 

Cameras that can take 100,000 frames per second aren't cheap, and I wondered how Mr. Sandlin pays for all the production expenses of his videos—green screens, high-quality graphics, and so on.  Well, several ways, it appears.  One is contributions—you can donate to his effort through a website called Patreon.  Another is advertising—some of the later videos have little ads at the end for various products (the one I saw boosted a book sold by Amazon).  And there's the revenue from the YouTube viewings.  He is up front about his hopes that Smarter Every Day will provide funds for his children's college education, and there's nothing wrong with that.  So he's an entrepreneur of a sort as well as an engineer, which is a good combination.

One thing that's fairly certain is that Mr. Sandlin hasn't gotten any money from the National Science Foundation.  If he had, they would have insisted that he have some kind of acknowledgment of the fact.  Over the years, I have been peripherally involved with NSF-sponsored efforts in the area of engineering education.  It turns out the kind of skills that enable one to raise or spend NSF education money are not always the kind of skills needed to appeal to a wide popular audience.  NSF would like both, of course, and every now and then, an NSF-sponsored project designed to explain or promote engineering to the general public actually gets a fair number of the general public to pay attention to it.  But successes like that are generally few and far between.

I would point out that Mr. Sandlin has no degree in education—or mass communication, for that matter.  All he had to start with is enthusiasm and a motivation to pay for his kids' college expenses.  And he's come up with something that presents engineering in a positive light to millions of people.  I'm not saying that government support for engineering education efforts directed at the general public is wasted, but Mr. Sandlin's work proves that it's not necessary, and the number of failed projects in that area proves that it's not sufficient, either.

One personal example of how not to do it will suffice here.  Years ago I made a misguided attempt to develop a kind of computer-based learning module for non-engineers.  I took a lot of NSF money and spent a whole summer at Cornell University with a grad student, learning how to use a very early version of development software for that kind of thing.  The project was used in an experimental course once, and that was that.  Clearly, it was not my forte.

Mr. Sandlin makes it look easy, but he says on his website that each video takes upwards of 100 hours to produce, and I believe him.  What he's doing deserves the support and encouragement of the engineering community, and so I encourage my readers to take a look at www.smartereveryday.com.  If you like what you see, let Mr. Sandlin know.  He's doing a good thing for engineering and the world.

Sources:  I encountered Mr. Sandlin's work in the form of his video on Prince Rupert's drops at https://www.youtube.com/watch?v=xe-f4gokRBs.  His video on the cargo-rocket explosions is at https://www.youtube.com/watch?v=PbabP9ttrZc.  His main website is www.smartereveryday.com, and I also referred to the Wikipedia article "Destin Sandlin."

PCO Announces Luminescence Lifetime Imaging Camera

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The pco.flim camera system is said to be the first standard product for luminescence lifetime imaging using a two tap CMOS sensor. The camera can internally generate a wide range of frequencies and also accepts external modulation signals.

2:21 PM

University of Edinburgh Spins Off Image Sensor Startup

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The Edinburgh Reporter: Photon Force Ltd. formed at the University of Edinburgh has won 2015 Converge Challenge Award – Scotland’s premier company creation competition jointly funded by the Scottish Funding Council and Scotland’s eight research-intensive universities. Photon Force Ltd. was founded by Richard Walker, a Post Doctorate Research Fellow at the University of Edinburgh’s School of Engineering. Richard received £35,000 to start his business plus a further £25,000 in business support from a number of commercial and professional services organisations.

Photon Force Ltd designs, builds and supplies scientific sensors that can very precisely detect and measure single photons. While this technology is in high demand for many applications, such as biomedical imaging, Richard identified that current systems are bulky, slow and restrictive. Photon Force has developed an integrated image sensor solution which will deliver significant competitive advantage with respect to incumbent systems.
4:00 PM

Socionext ISP Supports HDR, PDAF

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PRNewswire: Socionext, the company created by merging of Fujitsu and Panasonic semiconductor businesses, announces a volume production of MB86S29, a 'camera front engine' specialized for Bayer data processing with new functions supporting the latest image sensors.

The MB86S29 is the newest Milbeaut Image Processor for smartphones. By accommodating new functionalities of the latest image sensors, the MB86S29 lets module makers implement these functions without replacing their application processors.

Recently, it is common to find cameras in smartphones or other mobile devices that are configured with application processors (AP) equipped with built-in ISP functionalities. These APs can directly process output from image sensors, and help reduce the footprint and cost of camera modules. The MB86S29 supports this trend as a "Camera Front Engine" that replaces conventional ISPs. Connected in between an image sensor and an AP, it is specialized for Bayer data processing, so users can configure their APs with the same interface directory connected to image sensors, and to make full use of PDAF and HDR.

The MB86S29 has 4 lanes each of 2.1Gbps MIPI Rx / Tx. It can process 16MP images at 30 fps. It is also applicable for noise reduction, shading correction, and 3A (AE / AF / AWB) detection. It is available in the smallest package of any member of the Milbeaut series, at 4mm x 4mm.

The MB86S29 has been designed to utilize "Hybrid AF", which combines the accuracy of contrast AF and the speed of phase detect AF, enabling maximum 4x faster AF, in comparison with the previous Milbeaut products. Low power consumption is just 310mW when processing phase detect AF.


The MB86S29 also supports Sensor HDR. Conventional HDR imaging, which generates a picture from multiple frames taken with different exposures, has disadvantages, such as image blurs caused by the difference between the frames, and time needed to take those multiple frames. The MB86S29 can process data with different exposure settings within one image so it can process the HDR images with higher visibility in 16MP, at the speed of 30 fps.


MB86S29 Specifications

  • 16MP at 30fps, Bayer Output
  • Compatible with PDAF Sensors
  • Compatible with Sensor HDR
  • Defective Pixel Correction (including pixels for PDAF)
  • Shading Correction
  • Package: 4mm x 4mm
  • MIPI-Rx: 4 lanes (2.1Gbps) + 2 lanes (1.5Gbps)
  • MIPI-Tx: 4 lans (2.1Gbps)
  • Dual ARM processor Core

The new MB86S29 is available for $3.00 each when purchased in volume quantities of 5 Million pieces or more.

1:05 AM

Toshiba's 2MP Sensor for Vehicles Mitigates LED Flicker

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BusinessWire, PRNewswire: Toshiba announces that it has developed a new 2MP CMOS sensor for automotive cameras, CSA02M00PB, equipped with the industry’s first LED flicker mitigation function (first for 2MP sensors). Sample shipments start in March, 2016.

The new 2MP sensor is equipped with Toshiba’s original LED flicker (pulsed LED) mitigation circuit to minimize image flicker caused by LED light sources. When recording LED traffic lights and signs with conventional CMOS sensors, the output images often flickers, preventing an accurate sensing function. Toshiba’s new sensor mitigates the flicker and delivers clear images for faster, more accurate image sensing.

The sensor also adopts Toshiba’s original next-generation HDR system and BSI process. Toshiba’s next-generation HDR system uses the company’s single frame method for clear images free of the degraded resolution and blown-out highlights typical of high contrast-light conditions. Later in the PR, Toshiba talks about different exposure times in a frame: "The maximum frame rate may change per operating conditions specified. Exposure condition 1 assumes 2 different exposure times in a frame; exposure condition 2 assumes 3."

The BSI process is said to be first brought to automotive image sensors by Toshiba. In July 2015, ON Semi too announced its automotive BSI sensor.

The new sensor integrates functions to meet the requirements of ASIL, the Automotive Safety Integrity Level intended to protect life, and supports failure detection, report flagging and control of vehicles. It is also compliant with AEC-Q100 (Grade 2) and is suited both for front end sensing cameras for the ADAS and the latest viewing applications, such as e-Mirror and CMS (Camera Monitor System).

Toshiba foresees three-fold growth in the automotive CMOS image sensor market in the period to 2020. Toshiba will continue to develop its automotive CMOS sensor business to fully meet expanding market requirements.

2:49 PM

Edoardo Charbon is Promoted at EPFL

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Edoardo Charbon is promoted to a Full Professor of Microtechnology in the School of Engineering (STI) at EPFL:

"Edoardo Charbon is an internationally recognised leader in the field of photosensors, especially single-photon avalanche diodes. By combining applied physics with electrical engineering he has achieved groundbreaking successes in the production of photon counters for large-format sensors. His findings have resulted in important advances in areas such as medical imaging, particularly positron emission tomography. In addition to his academic excellence, Edoardo Charbon will contribute his experience in teaching and technology transfer to EPFL."
2:27 PM

Orbbec Presents 3D Cameras

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Orbbec presents Astra Pro, a 3D camera with 720p high-definition color, and Persee, said to be the world’s first 3D camera with a fully functioning computer. The devices are first available to supporters of the Orbbec Indiegogo campaign. The Indiegogo campaign will raise funds to mass produce and ship Astra Pro by the end of the year and Persee in early 2016. The cameras have been pre-announced in May 2015.

“We believe that the future of computing is 3D and all consumer devices will include 3D cameras in the near future,” said Yuanhao (Howard) Huang, founder and CEO of Orbbec. “Achieving this vision requires superb 3D cameras that are affordably priced and universally available. It also requires a world-class hardware and development platform, which we are delivering with Orbbec Persee.”

Orbbec camera features:
  • Highest Resolution – With smoother gradients, precise contours, and the ability to filter out low-quality depth pixels in a way other cameras cannot, Orbbec 3D cameras are suitable for 3D scanning and point cloud development.
  • Longest Range – With a range of 0.4m - 8m, Orbbec 3D cameras are intended for a wide range of scenarios, including gesture control, robotics, 3D scanning, and many new areas.
  • Exceptional Accuracy – Orbbec 3D cameras offer depth measurement accurate to within 0.5 centimeters at a distance of 2 meters.
  • Lowest Latency –Astra Pro is said to be the most responsive 3D camera on the market today.
So far, Orbbec published two patent applications on its 3D camera design: WO2014135127 and WO2014135128. The English abstract of the later application "DYNAMIC PHASE ACQUIRING DEVICE" by HUANG Yuanhao says:


"Provided is a dynamic phase acquiring device, comprising: a light-acquisition port (1), a semi-reflective semi-transmitting lens (2), a phase shifter (3), a polarizer (4), a planar mirror (5), a photo-sensitive element (6), and a phase processor (7); the acquired light passes through the light-acquisition port and reaches the semi-reflective semi-transmitting lens, and then follows two paths: one path sequentially passes through the phase shifter, the polarizer, and the photo-sensitive element, forming a first image; the other path is reflected by the planar mirror and then directly passes through the polarizer and reaches the photo-sensitive element, forming a second image; the pixels of the first image are in one-to-one correspondence with the pixels of the second image; the photo-sensitive element is connected to the phase processor; the photo-sensitive element transmits the first and second images to the phase processor, and the phase processor generates phase data; the phase shifter provides phase lead or phase lag ranging from 1 degree to 20 degrees. By using the phase shifter to provide a lead or a lag by a small angle, such as from 1 to 20 degrees, or even from 5 to 10 degrees, phase data can be obtained via two-path image detection, thus eliminating the need for optical elements for at least one path detection, and thereby simplifying the structure and reducing costs."

9:20 AM

Cyclones continue to hit Northern Hemisphere

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As the 2015 El Niño gets stronger, the Northern Hemisphere continues to get hit by strong winds and cyclones. The image below shows strong winds over the Arctic Ocean, as hurricane Joaquin approaches the coast of North America.



On above image, hurricane Joaquin is clocked at a speed of 79 mph (127 km/h) on October 1, 2015. NOAA warned that on that day the maximum sustained wind speed had increased to near 120 mph (195 km/h) with higher gusts.

For reference, NOAA uses four categories:
D: Tropical Depression – wind speed less than 39 mph (63 km/h)
S: Tropical Storm – wind speed between 39 mph and 73 mph (63 km/h - 118 km/h)
H: Hurricane – wind speed between 74 mph and 110 mph (118 km/h - 177 km/h)
M: Major Hurricane – wind speed greater than 110 mph (over 177 km/h)

NOAA issued the image below on September 30, 2015, warning that Hurricane Joaquin is likely to cause wind damage across a large part of the eastern coast of North America.


The NOAA animation below gives an idea of the strength of hurricane Joaquin.

[ click on image to enlarge, note that this is a 1.4 MB file that may take some time to fully load ]

Meanwhile, sea surface temperatures off the North American coast, as well as in the Arctic Ocean, are very high, as illustrated with the image on the right.

In the Arctic Ocean, the sea ice in many places is now less thick than it was in 2012, as illustrated by the image further below, showing sea ice thickness on October 7, 2012 (panel left) and a forecast for October 7, 2015 (panel right).

The water in the Arctic Ocean was already very warm this year. The main factor causing both these strong winds and the dramatic decrease in thickness of the multi-year sea ice is ocean heat, as also illustrated by the image below, showing high sea surface temperature anomalies in the Arctic as at September 30, 2015.


As the image below shows, nearly all the thick (over 3 m) multi-year sea ice has now disappeared, setting up a dangerous situation for the future that is much more dangerous than the situation was back in 2012. The thicker sea ice used to act as a buffer, consuming ocean heat in the melting process. Without thicker sea ice, ocean heat threatens to melt the sea ice from below right up to the surface, causing the entire sea ice to collapse as more open water will go hand in hand with stronger winds and waves. In case of such a collapse, sunlight that was previously reflected back into space will instead be absorbed by the water, causing rapid rise of the temperature of the water. In places such as the East Siberian Arctic Shelf, the water is on a average only 50 m deep, so warmer water is able to reach the seafloor more easily there.


The water of the Arctic Ocean is very warm, not only at the surface, but even more so underneath the surface. The danger is that strong winds will mix warm water all the way down to the seafloor, where it could destabilize sediments that can contain huge amounts of methane in the form of hydrates and free gas.

[ click on image to enlarge ]
The image on the right illustrates the impact of winds over the East Siberian Arctic Shelf on September 26, 2015.

NSIDC specialist Julienne Stroeve recently warned: "In 2007 more than 3m of bottom melt was recorded by [an] ice mass balance buoy in the region, which was primarily attributed to earlier development of open water that allowed for warming of the ocean mixed layer. But perhaps some of this is also a result of ocean mixing."

As discussed in an earlier post, sea surface anomalies of over 5°C were recorded in August 2007 in the Arctic Ocean. Strong polynya activity caused more summertime open water in the Laptev Sea, in turn causing more vertical mixing of the water column during storms in late 2007 and bottom water temperatures on the mid-shelf increased by more than 3 degrees Celsius compared to the long-term mean.

The situation is dire and calls for comprehensive and effective action, as discussed at the Climate Plan.



As the 2015 El Niño gets stronger, the Northern Hemisphere continues to get hit by strong winds and cyclones. The image...
Posted by Sam Carana on Thursday, October 1, 2015

Cambridge Mechatronics Technology to Benefit from Mass OIS Adoption

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SeekingAlpha predicts that Cambridge Mechatronics smart alloy OIS actuators (SMA) is set to benefit from mass adoption of OIS in smartphones. The main sign is that its manufacturing Cambridge Mechatronics with Hutchinson Technology have partnered with New Shicoh, China's largest producer of auto-focus camera actuators.

"This is significant because SMA technology is much cheaper to manufacture than its counterpart, VCM technology, and more importantly, it's much thinner. The best point of reference is the iPhone 6, which uses a VCM OIS actuator in the camera and has a large bump on the back of the phone. As SMA technology goes mainstream, the camera bump goes away, and HTCH is the sole manufacturer of that product.

There's no question about the demand for the product. In addition to the issue of thickness on the back camera, there's the issue of the front camera. Currently, there are no smartphones on the market with an OIS camera on the front because of the thickness. The selfie craze has consumers demanding better cameras on the front of the phone, and with SMA technology, that is finally possible.
"

12:50 AM