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上海研川信息科技有限公司

Four-star full-frequency Gmouse YC-GM301

Four-star full-frequency Gmouse YC-GM301

Regular price ¥1,000.00 CNY
Regular price Sale price ¥1,000.00 CNY
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1. Product Introduction

YC-GM310 is an integrated helical antenna positioning module, consisting of a GNSS helical antenna, RF front-end, built-in miniature receiver module, and magnetic sensor. It features a simple structure and compact size. The GNSS four-arm helical antenna receives multi-band GNSS signals transmitted by satellites and processes them through a low-noise amplification circuit. The positioning module then decodes the received antenna signals to obtain current position information.

The product uses a small-sized, high-precision positioning module that supports multiple systems and frequencies. It tracks signals from satellite navigation systems such as GPS, BDS, GLONASS, and Galileo, making it suitable for applications in the Internet of Things, autonomous driving, drones, and intelligent robotics.

 

Signals

BDS: B1, B2, B3
GPS: L1, L2, L5
GLONASS: G1, G2
Galileo: E1, E5a, E5b
First Positioning Time
Cold Start Time:  20s       Hot Start Time:  10s
PPSS Timing Accuracy (RMS)
20ns
Single Point Positioning Accuracy (RMS)
Horizontal: 1.5m, Vertical: 3m
RTK Initialization Time
<5s (Typical Value)
RTK Accuracy

Horizontal: 8mm+1ppm*D, Vertical: 15mm+1ppm*D

D is the baseline length (unit: mm)
Supported Protocols
NMEA0183; RTCM2.X; RTCM3.X
Power Supply Voltage
5±0.5VDC
Power Consumption
≤1.5W
Communication Interface
UART
Operating Temperature
-40°C +70°C
Storage Temperature
-55°C +85°C
Dimensions
Φ39.8×32mm
Weight
≤15g
Hardware Interface
Connector: GH1.25 8P with lock

1. Precautions

1) The module contains temperature-sensitive components internally, so ensure temperature stability and keep it as far away from high-temperature airflow as possible.

2) Some components on the module are susceptible to damage from static electricity, which can affect IC circuits and other components. Therefore, static protection measures should be taken during use.

3) When handling the module, try to wear gloves or finger cots and an anti-static wrist strap that complies with static protection standards.

4) When the module is idle, it should be placed on a soft protective mat (such as an anti-static foam mat) and not stacked randomly; during transportation, soft protective mats should be used between modules for protection.

5) Handle the module gently during use to prevent damage from rough handling.

6) When powering on, pay attention to the positive and negative terminals of the power supply and the voltage to avoid reverse connection and excessive voltage burning out the module.

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