



Matrix X
The Industry’s First Automatic Laser GNSS Receiver
MATRIX X is an innovative laser GNSS receiver with an adjustable laser module offering a 75°tilt range, supporting AR stakeout, 1408-channel high-stability GNSS, 120° calibration-free IMU and 32GB cyclic storage. It simplifies fieldwork and delivers faster, more reliable measurement in complex environments.
Break Fixed Angles
Field targets are not fixed. Why should your laser be? Matrix X brings automatic laser adjustment to GNSS measurement. Adjust the laser up or down from the controller, keep the receiver in place, capture ground points, wall points, and high or low targets without breaking your workflow.
Collect Points Continuously
Move from ground points to wall points and roofline targets without physically approaching every point.
Balance Ease and Accuracy
Adjust the laser to a suitable angle, helping keep the pole stable, the sky view open, and the laser distance under control.
Control from the Controller
Set the angle or drag the control bar directly in the field software, with the 5MP camera assisting target aiming on screen.
AR Intelligent Stakeout Function
It overlays design points on real scenes for quick target positioning, eliminating repeated pole adjustments to deliver intuitive, efficient stakeout.
1.47" HD On-Board Display
1.47" HD built-in screen stays readable in bright sunlight without external controllers, showing satellite and device status in real time for easy on-site inspection.
Break free from fixed-angle laser constraints and reimagine your survey workflow
1408-Channel GNSS Positioning
Track all satellite constellations, improves resistance to interference in forests and high-rise areas, fast RTK fix.
32GB Cyclic Storage
32GB local cyclic storage saves 4-year survey data (5s sampling), no frequent export & maintenance.
Wide-Tilt Super IMU
120° tilt available, fast startup without calibration, high precision when tilted, simplify field operation.
Specifications
Gnss Performance①
| Signal tracking |
GPS: L1C/A, L2C, L2P, L5 GLONASS: G1, G2, G3 BDS: B1, B1C, B2, B2a, B2b, B3 GALILEO: E1, E5a, E5b, E5 AltBoC, E6 QZSS: L1, L2, L5, L6 NavIC (IRNSS): L5 SBAS: L1, L5 |
| Channels | 1408 |
| Cold start | <60s |
| Hot start | <15s |
| Positioning output rate | 1Hz~50Hz |
| Signal reacquisition | <1s |
| RTK initialization time | <5s |
| Initialization reliability | >99.99% |
| Time accuracy | 20ns |
Positioning accuracy①
| Code differential GNSS | H: 0.25m + 1ppm RMS |
| positioning | V: 0.50m + 1ppm RMS |
| SBAS differential positioning accuracy② | Typically < 5m 3D RMS |
| Static GNSS surveying | H: 2.5mm + 0.5ppm RMS V: 5mm + 0.5ppm RMS |
| RTK surveying (baseline<30km) | H: 8mm + 1ppm RMS V: 15mm + 1ppm RMS |
| Network RTK③ | H: 8mm + 0.5ppm RMS V: 15mm + 0.5ppm RMS |
| AR stakeout | 1cm+5mm/m |
| Laser measurement |
Side: 0.05m~120m (indoor) 0.05m~100m (outdoor overcast sky) 0.05m~40m (under strong light) Bottom: 0.05m~30m (indoor) 0.05m~30m (outdoor overcast sky) 0.05m~10m (under strong light) |
| Laser distance |
0.05m~120m (indoor), 0.05m~100m(outdoor overcast sky), 0.05m~40m(under strong light) |
| Laser tilt range |
+30°~-45° |
Sensor
| IMU | Supported, 4D IMU initialization in 3 seconds |
| Update rate | 400Hz |
| Accuracy | <2.5cm within 120° |
| Tilt compensation | 0~120° |
Camera
| Laser assisted | 5MP HD camera |
| FOV | 73° |
| AR stakeout | 5MP HD camera |
| FOV | 73° |
| Materials | Magnesium alloy |
| Dimensions | 128mm × 128mm × 90mm |
| Weight | 985g |
| Operating temperature | -40°C~+75°C |
| Storage temperature | -55°C~+85°C |
| Waterproof/Dustproof | IP67 standard, protected from 30min immersion to depth of 1m |
| Shock | Survive a 2m pole drop onto concrete |
| Vibration | MIL-STD-810G |
| Humidity | 100% non-condensing |
Electrical
| Power supply | 9~24V DC external power input to 5-pin LEMO port. Supports Type-C fast charging |
| Battery | Built-in 7000mAh-7.2V Li-ion battery |
| Battery life | Rover mode: 12 hours Base mode: 7 hours Static mode: 15 hours |
Data storage
| Memory | 32GB, supports cyclic storage, with ability to collect almost 4 years raw observation based on 5s interval |
| I/O interface | 1*5-pin LEMO port, power supply, RS232, external radio communication port. 1* USB Type-C port, charging, data download. 1* SlM card slot, Nano SlM. 1* UHF antenna interface. |
| Internal UHF Frequency band | 1.5W Tx & Rx 410MHz~470MHz, supports frequency modification |
| Protocols | Trimtalk450S, Alphatalk15, South, Satel, PCC-EOT |
| Cellular network | Full frequency multi-band 4G modem, supports TDD-LTE /FDD-LTE/WCDMA/CDMA2000 |
| WiFi | 802.11 b/g standard, access point & client mode, supports accessing to hotspot for correction transmission |
| Bluetooth | Bluetooth 5.2 classical/BLE proprietary dual-mode |
| Differential data format | RTCM2x, RTCM3x, CMR&CMR+, sCMRx |
| GPS output data format | RINEX, NMEA-0183 |
User interaction
| Operating system | Linux OS |
| Buttons | Power key, 2 select keys |
| Display | 1.47-inch LCD display, resolution: 320 × 172 |
| Voice | Intelligent voice prompts |
| Web UI | Supports Web Ul configuration |
①Precision and reliability may be subject to anomalies due to multipath, obstruction, satellite geometry and atmospheric conditions. The stated specifications recommend working in open-sky areas free of EMI and multipath interference with optimal GNSS constellation configurations. For baselines over 30 km, ephemeris data and up to 24 hours of observation duration are required to meet high-precision static survey standards.
②Performance subject to SBAS system conditions.
③Network RTK ppm accuracy figures are based on the nearest physical base station and rely on network stability.
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