6752 Panasonic Corporation

Panasonic: World's First*1 Organic CMOS Image Sensor with Electrically Controllable Near-Infrared Light Sensitivity

Panasonic Corporation today announced that it has developed a new technology, electrical control of the near infrared (NIR) light sensitivity of the same pixel in an organic CMOS image sensor. The sensitivity of all the pixels in the image sensor, which has directly stacked organic films, is simultaneously controlled by changing the applied voltage to the organic films.

This Smart News Release features multimedia. View the full release here: http://www.businesswire.com/news/home/20170209005586/en/

Application 1: Surveillance camera (Graphic: Business Wire)

Application 1: Surveillance camera (Graphic: Business Wire)

This technology enables to switch between modes of color imaging*2 and NIR imaging frame by frame without a mechanical IR cut filter required for conventional image sensors. This contributes to miniaturizing a camera system and improving the robustness. This technology also enables global shutter operation*3 . Therefore, it can be suitable for applications in various fields of industry such as machine vision or intelligent transportation system, in which fast and accurate inspection or recognition are necessary.

The new technology has the following advantage.

Frame by frame switching between color imaging mode and NIR imaging mode without the loss of resolution.

The development is based on the following technologies.

  1. The design technology of organic CMOS image sensors which enables to design the photoelectric conversion part and the readout circuit part independently.
  2. The sensitivity control technology which enables frame by frame switching between color imaging mode and NIR imaging mode by changing the applied voltage to the photoelectric conversion part.

Panasonic holds 94 Japanese patents and 68 overseas patents (including pending) related to these technologies.

Panasonic will present some part of these technologies at the international academic conference: ISSCC (International Solid-State Circuit Conference) 2017 which is to be held in San Francisco on February 5 - February 9, 2017.

Notes:.

*1: As of February 9, 2017, according to Panasonic data.

*2: The extinction ratio of NIR sensitivity at 800 nm was -28 dB.

*3: Previous report in ISSCC2016, http://news.panasonic.com/global/press/data/2016/02/en160203-6/en160203-6.html

More on the Technologies

  1. The organic CMOS Image Sensor Design Technology, in that, photoelectric conversion part and the readout circuit part can be designed independently.



    In the organic CMOS image sensor, photoelectric conversion is executed by an organic film while signal charge accumulation and the signal readout are executed by Si based circuits beneath the organic film. The film and the circuits can be designed independently, so the organic CMOS image sensor can achieve the following features: high sensitivity, wide-dynamic range, and global shutter function. The newly developed technology has been realized to extend the spectral sensitivity of the image sensor from visible light spectrum to near infrared (NIR) light spectrum. And also, it makes possible to control the NIR light sensitivity electrically without losing the unique features of organic CMOS image sensors as described above.
  2. The Sensitivity Control Technology, in that, frame by frame switching between color imaging and NIR imaging can be realized by changing the applied voltage to the organic layer.



    The spectral sensitivity of an organic CMOS image sensor can be extended from visible light spectrum to NIR light spectrum by stacking two organic layers, one of which can absorb visible light and the other of which can absorb NIR light. However, just simply stacking or mixing those two layers does not allow to distinguish the NIR light signal from visible light signal. In order to distinguish those signals, conventional methods need extra components such as electrodes and thin-film transistors, that results in increasing the pixel size.

    To solve this problem, we adopted the direct stacked structure of two organic layers with the high resistance ratio of those. In this structure, the applied voltage is distributed to those two layers unequally. In other words, relatively low voltage is applied to one organic layer while relatively high voltage is applied to the other layer using the same voltage source. Organic CMOS image sensors need to be applied the voltage at least higher than a threshold in order to get signal information from incident light. Due to the characteristic, it is realized by the structure that both of those layers have no sensitivity at the low voltage, only one layer has sensitivity at the middle voltage, and both of those layers have sensitivity at the high voltage. Namely, this structure enables electrical switching of color imaging mode, in which the sensor is sensitive only to visible light and NIR imaging mode, in which the sensor is sensitive to visible light and NIR light without increasing any component.

About Panasonic

Panasonic Corporation is a worldwide leader in the development of diverse electronics technologies and solutions for customers in the consumer electronics, housing, automotive, enterprise solutions and device industries. Since its founding in 1918, the company has expanded globally and now operates 474 subsidiaries and 94 associated companies worldwide, recording consolidated net sales of 7.553 trillion yen for the year ended March 31, 2016. Committed to pursuing new value through innovation across divisional lines, the company uses its technologies to create a better life and a better world for its customers. To learn more about Panasonic: http://www.panasonic.com/global.

EN
09/02/2017

Underlying

To request access to management, click here to engage with our
partner Phoenix-IR's CorporateAccessNetwork.com

Reports on Panasonic Corporation

Pelham Smithers
  • Pelham Smithers

PSA Consumer Electronics: Panasonic (6752 JT) – to what extent is it a...

With shares in Tesla (TSLA US) surging, on broker reports suggesting that the EV maker’s full self-drive [FSD] / autonomous drive [AD] opportunity set increases enormously under a new Trump administration (eg removal of automated-vehicle crash data), an interesting question for the Japanese stock market arises. Analyst Pelham Smithers wonders whether Panasonic (6752 JT) might also be a beneficiary.

Pelham Smithers
  • Pelham Smithers

PSA Consumer Electronics: Snapshot of Camera Market for 2024 Q1

Pelham Smithers reviews the 2024 Q1 camera market and notes that it is off to a good start.

Pelham Smithers
  • Pelham Smithers

PSA Market Strategy: How Japan Transformed from a Bear Market to a Bul...

In our 2010 Japan Perspective, written close to the nadir of the bear market, we discussed what was wrong with Japan, but also what it was starting to do right. Fourteen years on, the Nikkei 225 - though not yet Topix - has hit a new all-time high. This report looks at how Japan built on those things that were going right, while also starting to address what else needed to be done, and looks at whether more is needed to be done if the market rally is to continue from here.

PANASONIC sees an upgrade to Slightly Positive due to a better fundame...

The general evaluation of PANASONIC (JP), a company active in the Consumer Electronics industry, has been upgraded by the independent financial analyst theScreener with the addition of a star. Its fundamental valuation now shows 3 out of 4 possible stars while its market behaviour can be considered as moderately risky. theScreener believes that the additional star(s) merits the upgrade of its general evaluation to Slightly Positive. As of the analysis date January 4, 2022, the closing price was ...

Julie Boote
  • Julie Boote

PSA Autos Technology: The Global Electric Vehicle Market 2022

Over the last two years, global EV sales have accelerated, moving from niche market to mass market. Concerned about rising CO2 levels, national governments are supporting the electrification of private transport, and consumers are increasingly willing to ‘go electric’. Established automakers have drawn up EV and battery strategies, trying to remain key players in this new EV world. In this report, analyst Julie Boote outlines the different paths dedicated EV players and traditional OEMS are tak...

ResearchPool Subscriptions

Get the most out of your insights

Get in touch