The Orion ONE Laser multi-frequency GNSS receiver is one of the most advanced surveying GNSS receivers, engineered by combining laser technology, a camera, and multi-constellation satellite tracking. Utilizing cutting-edge technologies such as non-contact laser measurement, visual stakeout with augmented reality, and a high-precision IMU module, this device delivers a thoroughly modern field-surveying experience.
Featuring a compact design, centimeter-level RTK accuracy, and the capability to operate in complex urban environments or hard-to-reach areas, the Orion ONE Laser multi-frequency GNSS receiver is a professional solution for surveyors and civil engineering, infrastructure, and cadastral projects.
One of the standout features of the Orion ONE Laser multi-frequency GNSS receiver is its advanced built-in laser module. This technology enables non-contact laser measurement, allowing surveyors to measure points that are difficult or hazardous to access directly with centimeter-level precision.
This laser system operates at a range of up to 10 meters and is exceptionally effective in complex environments such as building edges, wall structures, hazardous zones, or inaccessible points.
The Orion ONE Laser multi-frequency GNSS receiver is built with compact dimensions of 58.7 × 107 mm, which is roughly the size of a palm. This ergonomic design makes carrying and operating the device during long surveying sessions remarkably effortless.
Despite its small footprint, the Orion ONE Laser multi-frequency GNSS receiver incorporates powerful hardware and high-end features, turning it into a professional tool for precision surveying.
The Orion ONE Laser multi-frequency GNSS receiver supports all major GNSS satellite constellations. This significantly increases the number of trackable satellites, leading to superior positioning stability and enhanced accuracy.
Advanced anti-interference algorithms in the Orion ONE Laser multi-frequency GNSS receiver ensure that a rapid FIX solution can be achieved even in challenging environments like urban canyons, heavy tree canopies, or multipath-prone reflective sites.
Visual AR Stakeout technology in the Orion ONE Laser multi-frequency GNSS receiver brings a new level of efficiency to point stakeout operations. With this method, target points are projected directly onto the real-world view, allowing users to intuitively navigate to the exact point location.
This feature increases operational accuracy and improves efficiency by over 50% compared to traditional methods, making it very simple and quick for users to operate.
By leveraging non-contact laser measurement technology, the Orion ONE Laser multi-frequency GNSS receiver makes it possible to conduct surveys in situations where conventional methods fall short.
This device is highly effective for surveying points in rough terrain, dangerous environments, areas with signal obstructions, or places where direct physical placement of the pole is impractical.
The Orion ONE Laser multi-frequency GNSS receiver is equipped with a high-accuracy IMU module that enables point measurement at tilt angles of up to 60 degrees.
This feature is available both when surveying with a range pole and when using laser measurement. It speeds up field operations and reduces the need to level the pole precisely.
The Orion ONE Laser multi-frequency GNSS receiver delivers a comprehensive set of communication options to make data transfer and device management effortless.
These include:
These capabilities enable users to manage and transfer surveying data rapidly and securely.
The rugged housing of the Orion ONE Laser multi-frequency GNSS receiver is built to withstand harsh working conditions. Its IP67 rating ensures complete protection against dust ingress and water submersion.
This robust design guarantees that the Orion ONE Laser multi-frequency GNSS receiver maintains stable, dependable performance across demanding field projects and severe environmental conditions.
The Orion ONE Laser multi-frequency GNSS receiver supports versatile operating modes to adapt seamlessly to diverse surveying projects.
These features provide high flexibility for using the Orion ONE Laser multi-frequency GNSS receiver in various projects.
SingularPad is an Android-based field surveying software that supports various surveying modes including Static, RTK, and PPK. Paired with the Orion ONE Laser multi-frequency GNSS receiver, this application supports both Base and Rover workflows, provides rich data export/import formats, features an intuitive, responsive interface, and puts professional surveying methods directly into the hands of operators.
Satellite Tracking
Channels: 1408
BDS
GPS
GLONASS
Galileo
QZSS
SBAS
L-Band
Cold start
RTK Initialization Time
RTK Initialization reliability
Re-acquisition
B1I, B2I, B3I, B1C, B2a, B2b
L1C/A, L2P, L2C, L5, L1C
G1, G2, G3
E1, E5a, E5b
L1, L2, L5
WAAS, EGNOS, SDCM, BDSBAS, GAGAN
Upgradable
<30s
<5S(typical)
>99.9%
<1s
Accuracy
1.5 m Horizontal Single Positioning
2.5 m Vertical
0.4 m Horizontal
0.8 m Vertical
2.5 mm + 0.5 ppm Horizontal
<SBAS: 1.0 m 3D RMS
5 mm + 0.5 ppm Vertical
Static Processing
DGPS
8 mm + 1 ppm Horizontal RTK
15 mm + 1 ppm Vertical
Communication
UHF Modem Working Range: 5–15 km (under ideal conditions)
Frequency Range: 410–470 MHz
Protocols: TRIMTALK, TRANSEOT, SATEL, TRIMMARK3, …
Channel Frequency Spacing: 25 kHz
Selectable Transmit Power: 0.5 W / 2 W
Bluetooth 4.0 Dual Mode
NFC
WiFi
Interface
Supports NFC Connection
802.11, a/b/g/n/ac
USB Type-C Port for Data Transfer and Charging
Data Formats
NMEA-0183 Output Data Format
RINEX 3.02/3.04
Binary format .xyz
Selectable Data Update Rate: 1–50 Hz
Correction Data Format: RTCM v3.0 / v3.1 / v3.2 / v3.3
CMR
TCP, Ntrip Server, Ntrip Caster پروتکل هاي پشتیانی شده
Ntrip client
User Interaction
Display Indicators for Battery, Charging, and Satellite Tracking
3 LED Indicators
4G Correction Data Transmission and Static Recording Status
Wi-Fi Web UI Supported for Operation Access
Initialization, Status Check, Data Transfer, Data Storage
and System Update
Electrical Specifications
Power Consumption: 1.8 W
Input Voltage: DC 5 ~ 15 V
Battery: 4200 mAh, More Than 20 Hours of Operation
Fast Charging, Charging Time: 3 Hours
Environmental Specifications
Operating Temperature
Storage Temperature
Humidity
Waterproof and Dustproof
Shock Resistance
-40°C ~ +65°C
-55°C ~ +85°C
Withstands a 2-Meter Drop onto Asphalt
100% Condensing
Ip67
L5 IRNSS
PPP Horizontal: 5 cm
Vertical: 10 cm
Timing Accuracy: 20 ns
<IMU: ±2.5 cm up to 60°
AR Stakeout Horizontal: 8 mm + 1 ppm
15 mm + 1 ppm Vertical
<Laser Tilt Measurement up to 60°: 5.5 cm
SMA Connector for UHF Antenna
1 Button for Power On/Off and Functions
Laser Sensor
Working Range
Accuracy: (3–5) mm + 1 ppm
Measurement Frequency
10 Meters
Laser Power
2HZ
2mW~3mW
<Laser Tilt Measurement up to 60°: 5.5 cm