Where Precision Meets Value.
$9,945.00
CHC Navigation’s RS7 is a high-performance, tool-grade, handheld LiDAR SLAM Scanner. It provides a low-cost scanning solution for indoor and short to medium-range outdoor 3D mapping.
In stock
Walk the site. Leave with a georeferenced point cloud.
The CHCNAV RS7 is a handheld LiDAR SLAM scanner with RTK GNSS built in, and it’s the tool for the jobs where a rover can’t hold a fix and a tripod scanner would take all day: topo under canopy, stockpiles, building as-builts, and anything underground. You walk the site at a normal pace. The RS7 tracks its own position, builds a colorized point cloud as you go, and shows it live on your phone so you can see gaps before you leave.
Put it on your coordinates three ways: RTK corrections through your phone, control points checked and adjusted in CoPre, or a local system when the job doesn’t need more. Under the hood: up to 1.15 million points per second, a 360° × 189° field of view, a 0.5°/h IMU that holds the trajectory where SLAM usually drifts, dual HD cameras, and 3D Gaussian Splatting output. 1.2 kg in the hand.
· CoPre processing software included · Authorized CHCNAV dealer · On-site demos throughout Northern California
Request a quote · Book a demo · 1-800-866-8576
SLAM (Simultaneous Localization and Mapping) means the scanner solves its own position continuously from the geometry around it. No setups, no targets required, no GNSS required. Instead of occupying stations and registering scans afterward, you walk one continuous path and the registration happens as you go. Add the RS7’s onboard RTK and the cloud lands on your project coordinates without a separate tie-in.
That makes it the instrument for the work that falls between a GNSS rover and a terrestrial scanner:
It is not a replacement for your rover or total station on boundary and control work. It’s the tool for everything else.
RTK. The RS7 has a multi-constellation GNSS receiver onboard (GPS L1/L2/L5, GLONASS, BeiDou, Galileo). Corrections come in over NTRIP through your phone’s data connection, using your existing network subscription. Absolute accuracy is under 3 cm RMS, horizontal and vertical, in open sky. Initialize outside and walk in; the SLAM trajectory carries your coordinates through the door.
Control points. Shoot or occupy control anywhere, inside or out, and check and adjust the cloud to it in CoPre. This is the workflow for tight tolerances, for sites with poor sky, and for anyone who wants check shots on the record.
Local coordinates. For interior-only work, skip georeferencing and work in a local system. Tie it in later if the job changes.
The datasheet gives three figures, and they answer different questions.
In practice: right for topo, as-builts, volumes, interiors, and underground mapping. Not for boundary or control-level precision; that stays with your rover and total station.
SLAM on its own struggles where there’s little distinctive geometry: a long blank corridor, a stairwell, a tunnel, a warehouse aisle, repetitive floor plates. The RS7 fuses its SLAM engine with a high-grade inertial system, gyro bias instability better than 0.5°/h at a 500 Hz update rate, so the trajectory holds through those stretches instead of wandering. Fewer failed loops, fewer re-walks, cleaner data on exactly the jobs that break lighter units.
A 64-channel LiDAR at up to 1.15 million points per second in dual-return mode (576,000 single return), 40 m range at 10% reflectivity, and a 360° horizontal by 189° vertical field of view. Floors, walls, ceilings, the pile and the ground around it, all in the cloud from one walk. No tilting the unit for ceilings or re-walking corners.
Dual 12 MP cameras (48 MP sensors, pixel-binned for low light) colorize the cloud and hold up in dim interiors and vaults. CHCNAV’s HPGS 2.0 engine turns the same capture into a 3D Gaussian Splatting model: a photorealistic, navigable scene a client can read at a glance, alongside the measurable cloud.
Here’s what the surveyors we know with an RS7 are actually using it for.
Topo under canopy and on obstructed sites. Walk the site with RTK, let SLAM hold position where the sky closes in, and hit control on the way out. Surfaces and contours from the cloud instead of a rover fight.
Stockpiles and volumes. Walk around and, where safe, over the pile. Build the surface and run volumes in CoProcess or the package you already use. Repeat next month and compare.
As-builts and building interiors. Every floor, wall, ceiling, and stair in one pass, colorized. Floor plans, sections, elevations, and scan-to-BIM from the cloud.
Underground, tunnels, and utility vaults. No sky, no problem. Tie in at the portal or to control inside, and the IMU carries you through the featureless stretches.
Does the RS7 have RTK? Yes, on every unit. The GNSS receiver is built in, and corrections come in over NTRIP through your phone’s data connection. Open-sky absolute accuracy is under 3 cm RMS.
Can I tie it to survey control? Yes. Shoot or occupy control points or targets, indoors or out, and check and adjust the cloud to them in CoPre. Most interior-only jobs run in local coordinates and skip this step.
How accurate is it? Under 1 cm relative, under 2 cm repeatability, under 3 cm RMS absolute with RTK. Field results depend on loop closure, walking speed, sky, and environment. Right for topo, as-builts, volumes, interiors, and underground; not for boundary or control.
What do I need to run it? An Android phone or tablet with SmartGo NEO, a network correction subscription if you want RTK, and a PC for CoPre. There is no iOS app.
Do I need CoCloud? No. CoPre is included and handles processing. CoCloud is optional for automated cloud processing and team project management.
How long does a battery last? About 150 minutes per handle under standard test conditions. The battery is built into the handle. [KIT: how many handles ship with it]
What does it cost? $9,945 for the standard kit. Financing available, trade-ins welcome, and we’ll quote CoProcess, CoCloud, extra batteries, and training as options.
Call 800-866-8576, On-site demos throughout Northern California.
SmartGo Neo is a free Android application designed by CHC Navigation to operate their handheld LiDAR SLAM scanners. You can download and install the app from the Google Play Store to control your equipment.
Features and Usage
This hand scanner package includes a perpetual license of the CoPre software. CoPre is a comprehensive LiDAR processing software developed by CHCNAV for efficient and accurate mobile geospatial data processing. It offers a range of functionalities, including trajectory processing, point cloud and image georeferencing, colorization, filtering, and Digital Ortho Model (DOM) generation. CoPre supports all CHCNAV LiDAR systems and enhances the quality and accuracy of post-processing tasks, making it an indispensable tool for geospatial professionals. Features include:
Additional software options for data extraction and CAD processing are available through CHCNAV, although some of these same functionalities can be provided by other programs, such as Carlson Point Cloud Advanced. The CHCNAV options are described below:
CoProcess is a professional point cloud processing software designed to convert large-scale LiDAR datasets into engineering-ready deliverables. It integrates scan-to-CAD drafting, classification, terrain modeling, and volume calculation within a streamline AI-based workflows. Supporting datasets of over 300 GB, CoProcess enables efficient data processing, reduces manual operations, and accelerates the delivery of accurate survey outputs.
Call us for current pricing and details.
CoCloud is a cloud-based 3D platform for processing, storing, and managing multi-source data. It delivers high-quality DOMs, point clouds, and OSGB models without requiring local hardware. With built-in tools and real-time collaboration features, CoCloud simplifies workflows and enhances teamwork across 3D tasks such as data rendering, volume calculations, point cloud editing, and more. Features include:
This kit includes:
SPECIFICATIONS
General System Performance
Absolute accuracy: H: < 3 cm RMS (1) | V: < 3 cm RMS (1) Relative accuracy: <1 cm (2) Repeatability: <2 cm (2) Power supply mode: Battery integrated in handle Battery capacity: 47.5 Wh Working time from a single battery: 150 mins (3) Power consumption: 16 W Data storage: 512 GB Weight(with Battery Handle): 1200 g Operating temperature: -20 °C to +50 °C Ingress protection: IP64 (4) (according to IEC 60529)
Laser Scanner
Laser product classification: Class 1 Eye Safe Range: 40 m @10% Reflectivity Channel: 64 Max. effective measurement rate: Single Return: 576,000 pts/sec | Dual Return: 1,152,000 pts/sec Field of view: 360° × 189° Wavelength: 905 nm
Positioning and orientation system
GNSS system: GPS: L1,L2,L5 | GLONASS: L1,L2 | BEIDOU: B1,B2,B3 | GALILEO: E1,E5a,E5b IMU update rate: 500 Hz Gyro zero bias instability: 0.5°/hr Gyro random walk: 0.01°/√hr Acc zero bias instability: 10 ug Acc random walk: 0.017 m/s/√hr
Camera
Number of cameras: 2 Resolution: 48 MP Sensor size: 1/2 inch FOV: 340°(H) × 360°(V)
Communication
Wi-Fi: 2.4GHz & 5GHz | IEEE 802.11n/ac (U-NII-1/3) Bluetooth: V5.3 (BR+EDR+BLE) Ports: 1 x USB V3.0 Type-C port (data download) | 1/4″ mounting thread
Optional Software
SmartGo software: Data acquisition control, Real-time point cloud display, etc. CoPre intelligent processing software: POS Processing, Adjustment & Refinement, Point Cloud Generation, 3D Modeling. Supports Colorized Point Clouds, 3D Mesh Models, and 3D Gaussian Splatting (3DGS) Outputs. CoProcess 2025: point cloud processing with built-in CAD tools
Footnotes
*All specifications are subject to change without notice.
(1) According to CHCNAV test condition.Accuracy and reliability are determined under open sky, free of multipaths, optimal GNSS geometry and atmospheric condition. Performances assume minimum of 5 satellites, follow up of recommended general GPS practices. (2) Measured under laboratory conditions; actual performance may vary. (3) Tested and obtained in a standard laboratory environment at 25°C. (4) Splash, water, and dust resistant and were tested under controlled laboratory conditions with a rating of IP64 under IEC standard 60529.
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