简体中文

ComNav Technologies introduces Mars Pro Laser RTK

938
2023-09-13 15:11:13
查看翻译

ComNav Technology Ltd. has introduced the Mars Pro Laser RTK, the latest addition to its Universe series GNSS receiver product line, which includes the Venus Laser RTK and Mars Laser RTK. The GNSS receiver is suitable for the land surveying, GIS and construction industries with its innovative features.

Mars Pro's laser mode facilitates the use of conventional GNSS receivers in areas where signals are blocked, hard to reach, or dangerous. By switching to laser mode, users can effortlessly determine the distance between the receiver and that point using the laser rangefinder on the back of the Mars Pro. With an effective range of up to 10 m, the laser ensures signal friendly accuracy even where GNSS is challenging, such as in garages, under Bridges, over water or in traffic.

In addition, the integrated IMU sensor provides tilt compensation of up to 60°, ensuring efficiency and accuracy in both conventional and laser modes.

Mars Pro has full constellation capabilities, including 1,668 channels for GPS, GLONASS, Galileo, BDS, QZSS and IRNSS. Support accurate single point positioning service to ensure fast positioning. Its OLED color screen also provides real-time data visualization and enhanced operational control.

Mars Pro supports Wi-Fi, 4G and Bluetooth communication for easy data exchange and interaction. Its compatibility with mainstream brands and multiple protocols makes it versatile. It can switch between the roles of the mobile station and the base and work seamlessly with the user.

Source: Laser Network

相关推荐
  • Photonic hydrogel of high solid cellulose with reconfigurability

    Recently, Qing Guangyan, a researcher team from the Research Group on Bioseparation and Interface Molecular Mechanism (1824 Group) of Biotechnology Research Department of Dalian Institute of Chemical Physics, Chinese Academy of Sciences, designed and prepared a highly solid cellulose photonic hydrogel with reconfigurability and mechanical discoloration. This preparation method opens up a new way t...

    02-17
    查看翻译
  • Dark Solitons Discovered in Ring Semiconductor Lasers

    Dark solitons - the extinction region in a bright background - spontaneously form in a ring semiconductor laser. Observations conducted by an international research group may lead to improvements in molecular spectroscopy and integrated optoelectronics.Frequency comb - a pulse laser that outputs light at equidistant frequencies - is one of the most important achievements in the history of laser ph...

    2024-02-01
    查看翻译
  • A new type of all-optical intelligent spectrometer

    Recently, Professor Xu Tingfa's research team from the School of Optoelectronics at Beijing Institute of Technology and Assistant Professor Lin Xing's team from Tsinghua University jointly developed a new type of Opto Intelligence Spectrometer (OIS). The device is based on diffractive neural network technology and achieves precise spectral reconstruction under spatially coherent or spatially incoh...

    2024-07-22
    查看翻译
  • Innovating Photonics: Lithium Tantalate Provides Power for the Next Generation of Optoelectronic Circuits

    The new photonic integrated circuit technology based on lithium tantalate has improved cost efficiency and scalability, making significant progress in the fields of optical communication and computing.The rapid development of photonic integrated circuits (PICs) has revolutionized optical communication and computing systems, combining multiple optical devices and functions on a single chip.For deca...

    2024-05-14
    查看翻译
  • Researchers prepare a new type of optical material with highly tunable refractive index

    It is reported that researchers from Beijing University of Chemical Technology and BOE Technology Group Co., Ltd. have collaborated to develop a transparent organic-inorganic composite optical adhesive material with highly tunable refractive index. The related research paper was recently published in Engineering.In the early days, glass was the main raw material for optical components. In recent y...

    2024-06-25
    查看翻译