Best News Network

Researchers introduce transparent optical imager with near-infrared sensitivity and touchless interface

A transparent optical imager with near-infrared sensitivity and a touchless interface
a, Schematic of a large-area, 16 × 16 visually transparent NIR-sensitive OPD array (imager) that is placed in front of a laptop display. b, Schematic of the touchless user interface demo using NIR-emitting penlight. c, Photograph of the touchless user interface demo using NIR-emitting penlight. d, Schematic of a large-area, 16 × 16 visually transparent NIR-sensitive OPD array (imager) with integrated NIR LEDs that is placed in front of a laptop display. e, Schematic of the touchless user interface demo using gesture recognition of reflected NIR light. f, Photograph of the touchless user interface demo using gesture recognition of reflected NIR light. Credit: Nature Electronics (2023). DOI: 10.1038/s41928-023-00970-8

Most existing devices are operated via the sense of touch, either via touchscreens or mouse, remote controls, keyboards, and other equipment. Some engineers, however, have been trying to introduce alternative interfaces that do not require users to touch anything, as these could be more hygienic.

Past studies showed that smartphones, for instance, are often dirtier and more loaded with bacteria than the average toilet, as they are touched often but rarely cleaned. Touchless interfaces would allow users to operate their devices without touching them, thus most likely limiting the bacteria accumulating on them.

Researchers at the Dutch Organization for Applied Scientific Research, Asahi Kasei Corporation, Eindhoven University of Technology and imec recently introduced a new optical imager with near-infrared sensitivity that could support touchless operation. This imager, introduced in a paper in Nature Electronics, could be applied on top of various device displays, ultimately allowing users to operate them using gestures or a penlight (i.e., a pen that acts as a flashlight).

Many of the touchless user interfaces proposed in recent years allow users to control devices using hand gestures. These interfaces typically rely on the use of near-infrared cameras, cameras that can precisely sense environments in low lighting conditions.

While some of these systems can effectively pick up gestures, they often have a limited field of view and demanding calibration requirements. The researchers at the Dutch Organization for Applied Scientific Researchers and their colleagues set out to develop an optical imager that could overcome these limitations, and that could be easily integrated with commercially available displays.

“We report a touchless user interface that is based on a visually transparent near-infrared-sensitive organic photodetector array and can be used on top of a display,” Takeshi Kamijo, Albert J.J.M. van Breemen and their colleagues wrote in their paper. “Optical transparency is achieved by using a printed copper grid as a bottom transparent conductive electrode and an array of patterned organic photodetector subpixels.”

The optical imager introduced by Kamijo, Breemen and their colleagues appears transparent to the human eye. It can also be easily placed in front of conventional and widely available displays, which greatly improves its field of view and positional accuracy.

In initial tests, the imager performed remarkably well, as it could detect movements and changes in the environment with good precision. The researchers also integrated it on a common laptop display and showed that it could enable both gesture-based and penlight-based interactions with the laptop.

“Electro-optical modeling is used to optimize the design of the image sensor, leading to a photodetectivity of approximately 1012 Jones at 850 nm and a high visible-light transmittance of 70%,” Kamijo, Breemen and their colleagues wrote in their paper. “We show that the imager can be used as a penlight-controlled and gesture-controlled touchless user interface when combined with a commercial display.”

In the future, the new optical imager created by this team of researchers could be further developed and fabricated on a large-scale to enable touchless interactions with various devices. In addition, it could inspire the creation of other promising devices supporting gesture-based and penlight-based interfaces.

More information:
Takeshi Kamijo et al, A touchless user interface based on a near-infrared-sensitive transparent optical imager, Nature Electronics (2023). DOI: 10.1038/s41928-023-00970-8

© 2023 Science X Network

Citation:
Researchers introduce transparent optical imager with near-infrared sensitivity and touchless interface (2023, July 15)
retrieved 15 July 2023
from https://techxplore.com/news/2023-07-transparent-optical-imager-near-infrared-sensitivity.html

This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no
part may be reproduced without the written permission. The content is provided for information purposes only.

Stay connected with us on social media platform for instant update click here to join our  Twitter, & Facebook

We are now on Telegram. Click here to join our channel (@TechiUpdate) and stay updated with the latest Technology headlines.

For all the latest Technology News Click Here 

 For the latest news and updates, follow us on Google News

Read original article here

Denial of responsibility! NewsAzi is an automatic aggregator around the global media. All the content are available free on Internet. We have just arranged it in one platform for educational purpose only. In each content, the hyperlink to the primary source is specified. All trademarks belong to their rightful owners, all materials to their authors. If you are the owner of the content and do not want us to publish your materials on our website, please contact us by email – [email protected]. The content will be deleted within 24 hours.