2r1y Presents Dynamically Illuminated 3D Camera

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2r1y came out of stealth mode to present a structured light 3D camera with dynamically controlled illumination. Here is a quote from JPR Tech Watch on the 2r1y's approach:


The company's flyer says: "2r1y’s new technology starts with a resolution of 1MP at 33ms. Both the resolution and performance are scalable, allowing for 2, 5 and 10+MP depth maps... The technology has also been demonstrated generating high density 3D point clouds. A point cloud with approximately 2mm accuracy can be generated in under 50ms and with sub millimeter relative accuracy in under 400ms. Key processes of this new methodology are being demonstrated in the lab. The software which controls and ties the functions together is currently in development."

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NIT Announces InGaAs WDR Sensors

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New Imaging Technology introduces the WDR InGaAs products family, including sensors and camera modules. NIT SWIR products are based on a Wide Dynamic Range ROIC and offer DR of more than 140dB in a single image. The internal Fixed Pattern Noise correction gives a high uniformity pictures in all light conditions with no need of Look-up table.

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Almalence Announces SuperSensor

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Today at the Embedded Vision Alliance meeting, Almalence announces SuperSensor, a technology for mobile camera quality improvement without hardware modifications. “Mobile handset makers always come to a point where camera quality improvement is impossible due to size restrictions or the cost, usually both”, says Eugene Panich, CEO of Almalence. “Using a computational component such as SuperSensor is a way to improve mobile camera features without adding a micron to its size and at just a small fraction of the cost of typical hardware improvement. While hardware improvements can take years to utilize, the time to market for a computational component could be as short as days, and you can even put it into the devices that are already sold via a system upgrade.

Unlike other imaging solutions, each of which improves some specific property such as dynamic range or noise level only, SuperSensor is said to provide a complex improvement. Its effect is said to be similar to replacing a 1/4” sensor with a 1/3” sensor containing more pixels, which results in higher resolution, lower noise, higher speed, and wider dynamic range altogether:

Top: the font is too small, the illumination is too low and dynamic range is too high to capture the pictures.
Bottom: same scenes, same conditions, same camera, but with SuperSensor technology.

The full resolution comparison images, pdf presentation, and Android demo application can be downloaded here. The first devices which utilize the Almalence SuperSensor technology are expected to be available on the market in 2015.

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Omnivision Reports Quarterly Results

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PRNewswire: OmniVision's revenues for the quarter that ended on October 31, 2014 were $394.0M, as compared to $406.5M in the previous quarter, and $397.2M a year ago. Based on current trends, the company expects revenues for the next quarter will be in the range of $275M to $305M.

Non-GAAP net income was $36.9M. GAAP gross margin was 22.0%, as compared to 21.7% for the previous quarter, and 18.8% a year ago. The sequential increase gross margin reflected an increase in revenues recorded on the sale of previously written-down inventory and a continued mix shift towards the newer generation products. The Company ended the period with cash, cash equivalents and short-term investments totaling $525.2 million, a slight increase of $1.0 million from the previous quarter.

"Our mobile phone and automotive products continue to be the drivers behind our strong results this quarter," said Shaw Hong, CEO of OmniVision. "We are pleased with our execution in China, and with the emergence of India as a key geography for us. We are also excited about the launch of our high-performance stacked-die PureCel-S products, which demonstrates our technology leadership."

SeekingAlpha publishes Omnivision conference call transcript with more details of the past quarter business.

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Teledyne DALSA on CMOS Sensor Design Challenges

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Teledyne DALSA Possibility blog publishes "Keeping up with CMOS Sensor Design" video featuring Matthias Sonder, one of the company's lead designers, talking about the interface speed challenges in his design:

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Rambus Lensless Camera Demo

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Rambus publishes a Youtube video with Patrick Gill showing the company's lensless camera operation:



Meanwhile, it appears that Rambus somewhat downplays its image sensor activities in its recent investor presentations. For example, in the Nov. 2014 presentation, imaging appears in only one slide #29:

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Another Two Video Promotions from Intel

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Intel keeps posting promotional videos for its 3D camera-based RealSense technology. The first one shows refocusing capability similar to Pelican Imaging and some Nokia products:



The second video demos 3D scanning:

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Lattice Offers sLVDS to CSI-2 Bridge

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Business Wire: Lattice Semiconductor announces its MachXO3 FPGA-based bridge between Sony sub-LVDS CMOS image sensors to the MIPI CSI-2 interface to cost-effectively create camera-based products for mobile, surveillance, machine vision and medical applications. “The sub-LVDS to CSI-2 bridge solution gives designers the freedom to architect their camera based sub-system without compromise,” said Ted Marena, Director of Strategic Marketing, Lattice Semiconductor. “This solution provides flexibility to match the best Sony image sensor with any AP or ISP with minimal additional space, power and cost.

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Paul Lee Elevated to IEEE Fellow

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Paul Lee, ex-Kodak engineer, now with Exelis Geospatial Systems, Amityville, NY, has been elevated to IEEE Fellow Members "for contributions to the development of CMOS image sensor technology and the pinned photo-diode active pixel sensor." US5625210 patent "Active pixel sensor integrated with a pinned photodiode" by Paul Lee, Robert Guidash, Teh-Hsuang Lee, and Eric Stevens is one of Kodak's classics, and, quite possibly, the most often referred image sensor patent.

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Silicon Nanowires in Image Sensors

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Harward University published PhD Thesis "Vertical Silicon Nanowires for Image Sensor Applications" by Hyunsung Park. The thesis proposes to use Si nanowires of different diameter to create color filters. Oval wires can be used as polarization filters.

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ESPROS Announces BSI ToF Imager

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ESPROS announces epc660, a BSI 3D-TOF imager with a resolution of 320 x 240 pixels. epc660 is an integrated SoC combining high-QE BSI CCD pixel array and complete control logic to operate the device, an integrated LED driver, capable of driving more than 200mA peak current, and a high-speed 12-bit parallel video interface. The sensor speed is 66 TOF frames per second at QVGA resolution or up to 1000fps in "advanced operation modes." The advanced CCD pixel architecture is said to be the enabler for camera systems that can tolerate ambient light levels of up to 130Klux. Depending on the system design, a resolution in the millimeter range for distances up to 100 meters is said to be possible.

The epc660 features various modulation schemes on-chip, such as frequency hopping, random modulation, and CSMA/CD. There is also a dedicated modulation input that can be externally fed with any desired modulation signal.


Source: ESPROS Nov. 2014 newsletter.

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World’s Smallest Thermal Camera

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Norvegian-language TU Industry reports that Prox Dynamics' PD-100 world's smallest military grade UAV is equipped by the smallest to-date FLIR thermal camera weighting just 0.5 gram. A few months ago their smallest camera was 25 grams. The unit which is mounted in the PD 100 T weighs half a gram, says CTO and Prox Dynamics Entrepreneur Petter Muren. The whole drone with visible and thermal cameras weighs just 17.5g:


Thanks to SO for the link!

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Sony Achievements and Plans

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Sony has held an 2014 investor day today in Tokyo. Sony devices business presentation, shows impressive achievements and ambitious plans for a 3-year future:

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Samsung Samples 1.0um Pixel Products

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Samsung has held Investors Forum 2014 on Nov. 17 in NYC. Image sensor business update includes sampling of 1.0um pixel sensor:

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Gestigon Completes Series A Round

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Lübeck, Germany-based gesture recognition company Gestigon announces it has closed a Series A funding round with a 7-digit-USD financing 10 days ago. The company has been founded in 2011 as a University of Lübeck spin-off, and now employs 21 people in offices in Lübeck, Germany and Sunnyvale, CA.

Gartner's 2014 Hype Cycle for Emerging Technologies maps gesture control as a maturing up technology with its plateau of productivity to be reached in the next 2-5 years:

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Intel Promotes 3D Camera Technologies

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Intel publishes Youtube videos promoting its Realsense 3D camera and associated technology (video 1, video 2):




Update: WSJ quotes Kirk Skaugen, SVP in charge of Intel's PC chip business, saying "We are planning to be the number-one 3-D camera manufacturer."

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iPhone 6 Plus Camera Issues

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Apple support forums quote few users apparently having issues with iPhone 6 Plus OIS or AF actuator. The image appears blurry and wobbly and phone is audibly vibrating. It's not known how widespread is this defect, but many web sites talk about that: Phonearena, Daily Mail, BGR, and more. Only iOS 8.1 devices reported to be affected so far. A Youtube video shows the defect:



Other video demos are here, here, and here.

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Sony Promotes 4K Resolution for Security Applications

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Sony publishes Youtube video showing 4K technology for security cameras:



Another Sony video demos 5-axis optical image stabilization operation in Alpha 7-II DSLR, said to be the first in a full-frame camera.

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MTF vs F-number vs Wavelength

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Albert Theuwissen publishes another part in MTF measurement series. This part discusses how the optimal lens F-number depends on wavelength and on the pixel crosstalk.

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Eric Fossum Life Story

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Trinidad Guardian publishes an article based on Eric Fossum's lecture on image sensors at the local university. After going through many interesting facts from the image sensor history, the article quotes Eric:

"Looking back at his work with the CMOS sensor, he boiled his learnings down into five brief sentences:

•Create the invention.
•Successfully commercialise it.
•Deliver on the promise compellingly.
•Sell the company.
•Defend the patents.
"

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Best on the Market

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Jeff Bier, BDTI president, publishes an interesting view on the computer vision IP cores market: "[Vision] processor core suppliers can choose to keep the details of their products confidential, disclosing them only to prospective customers under non-disclosure agreements. And core suppliers often prefer this approach, since it allows them to keep competitors in the dark about their products.

Over time, of course, information tends to diffuse, and competitors learn about each other's products. But this takes time, and in new markets competitors may remain ignorant about each other's products for quite some time.

...Given the lack of available information about competitors' products, I was surprised to find that nearly all of the suppliers are very confident that their product is the leader—and that it has a significant lead over competitors' offerings.
"

Reading many image sensor announcements, this is not that much different from the computer vision IP market.

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NEC Develops High Sensitivity Half-THz Image Sensor

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NEC announces a new pixel structure for Thz array sensors and improved the Minimum Detectable Power per pixel (MDP) at 0.5 - 0.6 THz frequency by 10x over NEC's existing product. NEC currently produces and markets a THz camera IRV-T0831 equipped with a 320X240-pixel array sensor. However, NEC's latest pixel enables it to develop and produce a 640X480-pixel array sensor which has four times the number of pixels than the current model. NEC has also developed a camera equipped with the array sensor, making it one of the world's largest number of pixels at a THz frequency band.

"NEC has been addressing the development of a highly sensitive real-time uncooled terahertz camera and the improvement in the sensitivity of terahertz array sensors since the development of a highly sensitive bolometer-type uncooled two-dimensional terahertz array sensor in April 2008," said Dr. Naoki Oda, Executive Engineer, Radio Application, Guidance and Electro-Optics Division, NEC. "Going forward, NEC will pursue the development and production of terahertz imaging equipment using the present results and contribute to a variety of fields such as non-destructive inspection, medicine/drug development, and illegal object detection."

To improve the sensitivity, NEC expands the length of the optical cavity structure from 3 - 4 μm of the conventional value to 15 μm, which is formed between a thick metallic layer (perfect reflector) on a readout integrated circuit and thin metallic layer (THz absorber) on a pixel:

Conventional pixel used in the existing THz camera IR/V-T0831
New pixel structure with a thick SiN layer to extend optical cavity length

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Sony Announces Stacked Sensor with Phase AF Pixels

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Sony announces the 21MP 1/2.4-inch Exmor RS IMX230 for smartphone cameras. It is said to be the industry's first CMOS sensor for smartphones to be equipped with an onboard image plane phase detection AF signal processing function supporting focus tracking of fast-moving subjects. Its HDR function now supports high-resolution still images and 4K video recording. The new CMOS image sensor will ship in April 2015.

Dedicated image plane phase detection AF pixels are used to calculate lens position and subject distance. Up to 192 AF points can be used. All calculations are instantaneously carried out by the stacked CMOS image sensor's internal image processing circuits:

Locations of 192 AF pixels

HDR function works by setting two different exposures and applying the appropriate signal processing. Through improved pixel placement and signal processing, this new HDR imaging function is now compatible with both video recording and, by popular demand, still image capture, the latter a feature that was not available previously. (video HDR was first announced in 2012. When using the HDR movie function, the effective pixel count is reduced to 1/4 of its original number.) HDR function is also compatible with 4K video recording.

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Novatek Milestones

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Novatek site confirms the internal image sensor design efforts and mentions a number of image sensor accomplishments over 2011-13 years:
  • Oct 2013:
    Introduce Novatek's 1/4" VGA CMOS Sensor with CVBS output
    Introduce Novatek's first 1/7" HD CMOS Sensor with MIPI Interface
  • Sep 2011:
    Introduce Novatek's first HD CMOS sensor
  • Feb 2011:
    Introduce Novatek's first CMOS sensor in 1.75um cell size technology

All these sensors are not mentioned among the current products, and their status is unknown.

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"Active Pixel Color Sampling" Story Goes On

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SonyAlpha Rumors publishes more details on the allegedly oncoming Sony IMX189AEG "Active Pixel Color Sampling" sensor. The new material explains how the technology works. The RGB colored microlens layer is not rigidly attached to the sensor surface but rather is able slide along it. Each pixel has one sensing PD and three storage one that store the color info as the microlens layer slides:


A lot of data still looks illogical, such as over 9V saturation level, while the supply voltage is only 4.2V:

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Recent Nikon Patent Applications

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Egami blog published a number of recent Nikon patent applications. One of them places small microlenses in corners between the big ones to reduce an optical crosstalk:


Another application, also quoted by New Camera site, proposes an HDR sensor with big and small pixels with big and small Bayer filter patterns:

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Himax Reports Q3 Results

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Himax reports that its CMOS sensor sales improved significantly in Q3 2014: "Revenues from CMOS image sensors continued to show strength in the third quarter, increasing more than 20% from the previous quarter. Sales of the 2 and 5 megapixel products were particularly strong. However, the Company saw some delays in certain customers’ replacing older generation sensors with lower cost new designs which affected the Company’s gross margin. As expected, 8 megapixel CMOS image sensors began small volume sales in the third quarter and sales will accelerate in Q4 2014. The Company also launched its first 13 megapixel sensor during the fourth quarter. It anticipates 8 megapixel CMOS image sensors to continue to be the mainstream in 2015, and 13 megapixel the rising star in high end smartphones. This puts Himax firmly in the map as one of a handful of companies capable of offering a comprehensive product portfolio for main cameras of smartphones.

Additionally, the Company is also developing CMOS image sensors for non-consumer applications, for example, CMOS image sensor product line for automotive and surveillance applications, which typically enjoy higher margins and have less intensive competition. Collectively, the Company expects its CMOS image sensor business to more than double in 2014, making it a fast rising player in the market.
"

"...the Company continues to partner with various industry leading companies using its cutting edge and industry-dominant wafer level optics, or WLO, for the development of three technologies of the future, namely, array camera, special purpose sensors and microdisplay light guides for head-mounted devices. This product development often requires adoption of Himax’s internal CMOS image sensor, LCOS microdisplay and video processing algorithm teams. Himax sits in a leading and unique position as it is the only company in the industry which is able to offer such a one-stop total solution. To meet the anticipated demand growth for LCOS and WLO products, the Company is working on new plans to expand production capacity. The Company will report the progress in due course."

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Toshiba Enhances Nighttime Performance of its ADAS Processor

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Toshiba announces expansion of its line-up of image recognition processors for automotive applications with the launch of the TMPV760 series. Sample shipments of the first device, TMPV7608XBG will start in January 2015, with mass production scheduled for December 2016 onwards.

TMPV7608XBG features includes AEB (Autonomous Emergency Braking), TSR (Traffic Sign Recognition), LDW (Lane Departure Warning) and LKA (Lane Keeping Assist), HBA (High Beam Assistance), FCW (Forward Collision Warning), plus new applications that include TLR (Traffic Light Recognition) and AEB pedestrian (during both day and night), which will become part of the Euro NCAP testing program in 2018.

TMPV7608XBG integrates two Enhanced Co-occurrence Histograms of Oriented Gradients technology (CoHOG) accelerators for far higher accuracy image recognition at night. Connected to multiple, Full HD cameras, the processors analyzes color gradients in supplied images and achieves a night-time detection rate of pedestrians that matches the day-time recognition rate of the company’s current devices. TMPV7608XBG also supports a Structure from Motion (SfM) accelerator that realizes 3D reconstruction using the input stream of a monocular camera, and that can detect motionless obstacles on a road surface that are not detected by conventional pattern recognition.

TMPV760 applications

Update: Nikkei Tech publishes few photos from Toshiba's presentation:

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CMOSIS Video

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CMOSIS publishes a company introduction video:

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New Image Sensor Books

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Recently, two image sensor books have been published. "High Performance Silicon Imaging: Fundamentals and Applications of CMOS and CCD sensors" is edited by Daniel Durini with contribution from many universities and well known imaging companies:


"Essential Principles of Image Sensors" by Takao Kuroda talks about essentials, just like its cover says:

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