Français

Single photon avalanche diode for millimeter level object recognition using KIST

809
2024-02-03 10:17:08
Voir la traduction

LiDAR sensors are crucial for implementing modern technologies such as autonomous driving, AR/VR, and advanced driving assistance systems. For example, more accurate shape detection in AR/VR devices and smartphones depends on the improved range resolution of medium and short range LiDAR. This requires a single photon detector with improved timing jitter performance.

LiDAR calculates the distance and generates a three-dimensional image by measuring the time it takes for photons released by the transmitter to impact an object, reflect and return to the receiver. The higher the accuracy of object recognition, the smaller the value of "timing jitter", which is a small change in detection time when a single photon detector on the receiver converts an optical signal into an electrical signal.

According to the Korean Academy of Science and Technology, under the guidance of Dr. Myung Jae Lee, a team from the Institute of Postsilicon Semiconductors has created a "single photon avalanche diode" that can recognize millimeter level objects using 40nm backlit CMOS image sensor technology.

The development of SPAD is extremely difficult, and currently only Sony in Japan has successfully commercialized LiDAR based on SPAD and supplied it to Apple products based on its 90nm backlit CMOS image sensor technology.

Although the timing jitter performance of Sony SPAD is about 137-222 ps, it is not yet sufficient to achieve the user recognition, gesture recognition, and precise shape recognition of objects required for medium and short distance LiDAR applications. Sony's SPAD is more effective than the backlit SPAD reported in the literature.

The single photon sensor element developed by KIST has more than twice the jitter performance at 56 ps, with a distance resolution of about 8 mm, and has great potential as a medium to short range LiDAR sensor element.

Specifically, SPAD was created based on 40nm backlit CMOS image sensor technology through collaborative research with SK Hynix, and is expected to be immediately localized and commercialized.

This study was funded by the Korea Institute of Science and Technology and the Korea National Research Foundation, and was highlighted at the 2023 International Conference on Electronic Devices held in San Francisco, USA on December 12, 2023, from December 9 to 13.

IEDM is one of the most important conferences for semiconductor industry and research professionals, attended by major global semiconductor companies such as SK Hynix, Samsung Electronics, and Intel.

Source: Laser Net

Recommandations associées
  • New and Strongest Laser Born in the United States

    The ZEUS laser at the University of Michigan recently achieved a breakthrough of doubling the peak power of the strongest laser in the United States through its first 2 quadrillion watt experiment. Although this instantaneous power only lasts for 25 attosecond (one billionth of a second), it exceeds the total power of the global power grid by more than a hundred times.Karl Krushelnick, director of...

    05-28
    Voir la traduction
  • A Large Angle Color Holographic 3D Display System Based on Color LCD Grating

    Holographic display technology provides the ultimate solution for true 3D display, with enormous potential in augmented reality and virtual reality. However, the color and viewing angle of holographic 3D displays mainly depend on the wavelength of the laser and the pixel size of the current spatial light modulator. The inevitable color difference and narrow viewing angle in conventional systems se...

    2024-01-24
    Voir la traduction
  • UCI Cinemas collaborates with The Marvels to launch its new 4K laser projector

    Cinemas are in a developmental stage. Their roles are changing and the rules are being rewritten. Many people have proposed a way to make cinemas a truly unique place by providing audiences with a higher quality experience. It is along this route that UCI Cinemas continues to move forward. In recent days, it has officially launched a 4K laser projector and had a special date with the new MCU movie...

    2023-11-14
    Voir la traduction
  • The First Operation of Two Color Mode in Infrared Free Electron Laser

    The Fritz Haber Institute of the Max Planck Institute in Berlin has achieved a technological milestone. The infrared free electron laser operates in dual color mode for the first time. This globally unique technology makes it possible to conduct experiments on synchronous dual color laser pulses, opening up new possibilities for research.There are over a dozen free electron lasers worldwide, with ...

    2024-02-18
    Voir la traduction
  • Lightmatter announces the first 16 wavelength bidirectional link on single-mode fiber

    Lightmatter, a Boston-based startup developing silicon photonics hardware aimed at AI and high-performance computing, has announced a 16-wavelength bidirectional Dense Wavelength Division Multiplexing optical link operating on one strand of standard single-mode (SM) fiber.Powered by Lightmatter’s Passage interconnect and Guide laser technologies, this development “shatters previous limitations in ...

    08-22
    Voir la traduction