Skip to main content

Toshiba upgrades solid-state Lidar

Toshiba's Lidar operates in a variety of lighting and weather conditions to 200m
By Ben Spencer July 6, 2021 Read time: 2 mins
Toshiba says its Lidar can monitor snow cover or objects in the road (© Oskari Porkka | Dreamstime.com)

Toshiba has upgraded its solid-state Lidar which it says maintains a maximum detection range of 200m and will advance progress in autonomous driving. 

The company is expanding the application to monitor transportation infrastructure, in such areas as early detection of road subsidence or landslides, snow cover or falls of objects onto roads.

Akihide Sai, senior research scientist at Toshiba’s corporate research & development centre, says: “We have secured technologies essential for a compact, high-resolution, long-range solid-state Lidar that is robust and simple to install."

"We anticipate demand for such a versatile technology in both the autonomous driving and transportation infrastructure monitoring markets.”

Current monitoring of transportation infrastructure relies on cameras, but Toshiba points out their performance is degraded by low light and bad weather.

The new Lidar is expected to realise clear, long-distance, robust 3D scanning and object detection in a variety of lighting and weather conditions. 

Toshiba achieved a compact Lidar through upgrades to its silicon photo-multiplier (SiPM), a light-receiving chip that consists of light-receiving cells controlled by transistors. 

The new chip has a smaller transistor module, and eliminates the buffer layer that protected the transistors with newly developed insulating trenches between the transistors and the light-receiving cells, the firm adds. 

The potential issue of low light-sensitivity from using smaller transistors was solved with the addition of a high-withstand voltage section to raise the voltage input to the light-receiving cell. 

According to Toshiba, these innovations have reduced the size of the SiPM by 75% while enhancing its light sensitivity by 50% against the July 2020 previous model.

More SiPM can now be arrayed in the same package, which the company insists boosts resolution to 1,200 x 80 pixels, a four-times improvement.

Toshiba is to continue to support safer transportation by promoting its LiDAR technologies for autonomous driving and transportation infrastructure monitoring. Continued R&D is expected to further advance the Lidar’s detection range and image resolution. 

For more information on companies in this article

Related Content

  • Huawei's ORT tech removes highway toll gates
    August 26, 2020
    Road tolling operations will be transformed by new revenue collection possibilities
  • Chicago Transit Authority upgrades rail communications
    October 18, 2012
    LightRiver Technologies, provider of fully-integrated, multi-technology communications networks, is to upgrade the communication structure of Chicago transit Authority’s (CTA) light rail Intelligent Transportation System (ITS). The upgrade provides the network bandwidth needed to support ITS systems aimed at increasing passenger comfort and satisfaction and improving system reliability and efficiency. The communications network is designed with next-generation packet and optical telecommunications equipment
  • Optic-fibre transport solution
    February 3, 2012
    MultiDyne has introduced the DVI-6000 Single & Dual Link, a long-haul optic-fibre transport solution for high-quality RGB-HV and DVI-D with a DVI-I interface.
  • Grasshopper3 from Point Grey
    July 25, 2013
    Digital camera developer Point Grey has announced a new addition to the Grasshopper3 camera family, which features high quality, high resolution CCD sensors with a USB 3.0 interface. The new Grasshopper3 GS3-U3-60S6 camera models are based on colour and monochrome versions of the Sony ICX694, a 1-inch CCD featuring 4.54 micron square pixels and capable of sending 2736 x 2192 images at 13 FPS and maximum bit depth, which uses Sony's EXview HAD CCD II technology to improve quantum efficiency, reduce smear and