Navigation and Positioning Receiver

Navigation and Positioning Receiver

ER-GNSS-R01 Features:
1. Can encapsulate a variety of OEM boards;
2. Has two serial ports which can communicate with external equipment, an antenna port, power input;
3. Suitable for low-cost, low-power field BDS/GPS positioning system, multi-application RTK, timing.

Navigation and Positioning Receiver

Navigation and Positioning Receiver

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    Introduction

    ER-GNSS-R01 Navigation and Positioning Receiver

    Introduction

    ER-GNSS-R01 Navigation and Positioning Receiver receiver is a very cost-effective receiver with Beidou function, which can encapsulate a variety of OEM boards. The product has two serial ports which can communicate with external equipment. Receiver has an antenna port, power input and so on. It is suitable for low-cost, low-power field BDS/GPS positioning system, multi- application RTK, timing etc.

    Features

    High precision positioning information can be output

    Support serial port or network port communication Optional

    Serial port format LEMO/DB9 optional

    Supports a wide range of voltage inputs

    Small size, light weight, easy to install and carry

    Specifications

    Performance index
    Dimension(excluding antenna sockets) 141×138.5×70mm
    Weight <500g
    Power consumption 7W(typical value)
    Horizontal positioning accuracy (RMS) <3m(according to internal package board)
    RTK accuracy (horizontal) Level:1cm+1ppm; Vertical: 2cm+1ppm (built-in high precision board)
    Data update rate >1HZ(according to internal package board)
    Power input 9V~32VDC(12V DC recommended)
    Operating temperature -40°C~65°C
    Storage temperature -45°C~85°C
    Humidity 5% to 95% Relative humidity, no condensation
    Interface type 2 antenna interfaces (TNC female head)
    1 Power interface (LEMO)
    2 communication interfaces (LEMO/DB9 optional)
    1 Network port (RJ45 optional)

    Application Techniques

    1.What is the Device Interface Definition of MEMS North Seeker

    2.What Performance is the FOG sensor in FOG North Finder

    3.Where are MEMS Gyroscopes Used?

    4.Research Background and Current Status of MEMS IMU

    5.How do parameters affect the performance of the quartz accelerometer?

    6.Background and Development Status of MEMS Inertial Sensors


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