Ελληνικά

Breakthrough 8-channel 915nm SMT pulse laser, ushering in a new era of laser radar applications

775
2024-08-09 14:10:35
Δείτε τη μετάφραση

The 8-channel 915nm SMT pulse laser can enhance the long-range laser radar system of autonomous vehicle;
An 8-channel QFN package certified by AEC-Q102, featuring high performance and efficiency, utilizing proprietary wavelength stabilization technology from AMS Osram;

Based on over 20 years of experience in pulse laser technology.

Shanghai, China, August 8, 2024- AMS, a leading global optical solutions provider, announced today that it will launch an innovative high-performance 8-channel 915nm SMT pulse laser - SPL S8L91A_3 A01- to empower autonomous driving, simplify system design, and enhance performance, making long-range detection lidar more efficient and reliable. The SPL S8L91A_3 encapsulated by QFN has been applied to the laser radar systems of autonomous vehicle such as passenger cars, trucks and driverless taxis, greatly improving the operation, navigation and data processing capabilities of the auto drive system.

SPL S8L91A_3 A01 application image (Image: AMS Osram)

In autonomous driving applications, SPL S8L91A_3 A01 is used to significantly enhance long-range high-resolution LiDAR systems. With AEC-Q102 certification and an 8-channel EEL (edge emitting laser) packaged in QFN, AMS Osram now offers a more diverse range of infrared components for system developers to choose from. The peak optical power of this new product is 1000W, with an efficiency of up to 30% and outstanding performance.

Autonomous driving is one of the most discussed topics about the future, and most system suppliers firmly believe that LiDAR is essential for advanced autonomous driving. For over 20 years, in the field of development and production of automotive LiDAR pulse infrared lasers, AMS Osram has been an important participant in the autonomous driving market - delivering over 20 million units, with experience and quality fully recognized by the market. SPL S8L91A_3 A01 is the latest product lineup launched based on the company's rich experience in automotive LiDAR technology.

SPL S8L91A_3 A01 is an advanced infrared high-power SMT laser tailored for laser radar applications. It adopts a single-chip integrated 8-channel design, with each laser channel providing 125W of power, resulting in a total peak optical power of 1000W, greatly enhancing the performance of long-distance laser radar systems that are crucial for highway autonomous driving. This laser has 4 individually addressable anodes, each connected to two parallel operating laser channels. Thanks to the addressing function, customers are able to flexibly design the final product.

SPL S8L91A_3 A01 product image (Image: AMS Osram)

The use of integrated laser packaging can achieve more compact and efficient settings, without the need for alignment between multiple components, thus simplifying the design and manufacturing process. This integration not only shortens development time, but also significantly improves the reliability and performance of the final product. The design of this laser adopts the proprietary wavelength stabilization technology of AMS Osram, which can significantly reduce wavelength drift caused by temperature changes, thereby improving the signal-to-noise ratio (SNR) of the laser radar system and expanding the detection range.

SPL S8L91A_3 A01 is designed to meet the strict requirements of the automotive industry, with performance specifications that meet and exceed AEC-Q certification standards. The QFN packaging of this laser is key to ensuring reliable design and providing a durable solution to meet the challenges of automotive environments. In addition to the laser radar system that can be widely used in autonomous vehicle, the new laser can be used in industrial laser radar, which can improve the performance of applications such as robots, security monitoring, smart cities and the last mile delivery.

Our new 8-channel laser module will revolutionize the autonomous driving industry. It simplifies system design and improves performance, making long-range LiDAR systems more effective and reliable. By integrating our advanced wavelength stabilization technology, we can ensure excellent performance under different working conditions, "said Clemens Hofmann, Senior Chief Engineer of AMS Osram Lidar
SPL S8L91A_3 A01 will be launched this autumn.

Source: AMS Osram

Σχετικές προτάσεις
  • Oxford University develops technology for capturing strong laser pulses in one go

    Physicists at the University of Oxford have unveiled a “pioneering” method for capturing the full structure of ultra-intense laser pulses in a single measurement. The breakthrough, a collaboration with Ludwig-Maximilian University of Munich and the Max Planck Institute for Quantum Optics, could revolutionize the ability to control light-matter interactions, say the team.The Oxford announcement sta...

    07-07
    Δείτε τη μετάφραση
  • The breakthrough of coherent two-photon lidar overcomes distance limitations

    Schematic diagram of experimental setupNew research has revealed advances in light detection and ranging technology, providing unparalleled sensitivity and accuracy in measuring the distance of distant objects.This study was published in the Physical Review Letters and was the result of a collaboration between Professor Yoon Ho Kim's team at POSTECH in South Korea and the Center for Quantum Scienc...

    2023-12-08
    Δείτε τη μετάφραση
  • Enhanced dielectric, electrical, and electro-optic properties: investigation of the interaction of dispersed CdSe/ZnS quantum dots in 8OCB liquid crystals in the intermediate phase

    authorElsa Lani, Aloka SinhaabstractAt present, the progress in developing new liquid crystal materials for next-generation applications mainly focuses on improving the physical properties of liquid crystal systems.Recent research progress has shown that functionalized nanoparticles embedded in LC matrix can significantly alter the properties of LC materials based on the interaction between host m...

    2024-03-04
    Δείτε τη μετάφραση
  • New photonic nanocavities open up new fields of optical confinement

    In a significant leap in quantum nanophotonics, a team of European and Israeli physicists introduced a new type of polarized cavity and redefined the limits of light confinement. This groundbreaking work was detailed in a study published yesterday in Natural Materials, showcasing an unconventional photon confinement method that overcomes the traditional limitations of nanophotonics.For a long time...

    2024-02-12
    Δείτε τη μετάφραση
  • Researchers use spectroscopic methods to characterize ancient Egyptian mining gemstones

    In a recent study published in the journal AIP Advances, researchers used molecular and elemental spectroscopy techniques such as laser induced breakdown spectroscopy (LIBS), Raman spectroscopy, and Fourier transform infrared (FT-IR) spectroscopy to characterize mines in ancient Egypt.In this study, researchers examined various gemstones that can be traced back to the era of the pharaohs. The team...

    2023-08-31
    Δείτε τη μετάφραση