
A range of industrial balances available for CMT Lab Testing Requirements.
Overview | GX1 vs GX2 | SUE & Utilities | Structures & Pavements | Software & Outputs | Case Studies | Specifications | Support
Collect high-density, georeferenced GPR data across wide areas and view the subsurface in 3D as you scan. Choose the GX2 array for SUE and utility mapping, or the GX1 array for structural, bridge and pavement investigations.
Best suited to:
Best suited to:
Recommended array: GX2
Recommended array: GX1
Cover more ground
Collect multiple parallel profiles in one pass instead of uilding a grid line by line.
See results during acquisition
View georeferenced radargrams and time-slice information in the field rather than waiting until the data is returned to the office.
Produce repeatable mapped data
Combine wheel-positioned GPR data with GNSS, project coordinates and survey linework.
Use one platform for two very different applications
Exchange GX1 and GX2 arrays without purchasing two complete cart platforms.
The GX2 transforms the GS9000 into a high-density subsurface utility mapping system. Its 11-channel, low-frequency GPR array captures an 83 cm-wide swath in each pass, helping operators detect and map buried pipes, ducts, cables, voids and other subsurface features. Live georeferenced data lets SUE teams review coverage on site and produce accurate CAD, GIS and project-coordinate deliverables.
1. Plan the survey
Load satellite imagery, CAD information, project coordinates or survey control.
2. Collect dense multichannel data
Survey an approximately 0.82 m-wide swath with 11 channels in each pass.
3. Review data live
Examine radargrams, georeferenced time slices and marked features while still on site.
4. Interpret and digitise
Add points, linework, tags, photographs and field observations.
5. Process and deliver
Merge survey areas, apply processing and export mapped information for the customer’s CAD, GIS or reporting workflow.
The GX-32001LD Balance is the successor the GP 32k, Australia´s #1 Geo-test Balance. Easy calibration with internal calibration mass.
Comes with a large Reverse back lit LCD display, Impact Shock Detection Logging, and most importantly a dual range 6.2/32 kg sensitivity configuration.
The GX Balances comes with a FRD (Flow Rate Display) that makes Recording flow rates easier and more accurate.
Protected against vertical and transverse static overloading with a flow rate comparator that indicates whether the flow rate is within the designed limits.
A Gx Balance is fast stabilising in approx. 1 second. Clearly visible with reverse backlight LCD Display. Contains clock and Calendar function.
FG Series platform scales are suitable for heavy samples.
The FG31KAM is supplied with a Display column and Tilt Display pod. Includes comparator function, Filtering Function, and full digital calibration. Trade approved Models supplied as standard.
FZ Balance range comes with a free data capture software. It is designed for IP65 Water/Dust Proof with built in internal calibration at the touch of a button.
Auto power On/Off Function for easy accessibility and VFD Display for easy to read weighing results. Our range of Precision Balance are designed with fast compact SHS Sensor which results in 1 second respond time. Quick USB or LAN Interface (Optional)
EK balance range is designed with stainless steel SUS430 weighing pan cover. Come with a percentage counting and comparator function.
Consists of a Easy to read LCD Display with clear, white backlight. RS-232C interface as standard. GLP,GMP and ISO Compliance.
Book a SUE Workflow Demonstration
The GX1 transforms the GS9000 into a high-resolution structural assessment system for concrete slabs, bridge decks and pavements. Its dense, dual-polarisation array captures detailed 3D data across wide areas, supporting reinforcement and cover mapping, moisture and deterioration assessment, and analysis of asphalt and pavement layers. Live visualisation helps confirm survey coverage on site, while post-processing tools produce clear, report-ready condition maps.
1. Define the inspection area
Import the structure, bridge, pavement or survey background.
2. Collect closely spaced profiles
Capture 35 longitudinal and 15 cross-polarised channels with dense spacing.
3. Review coverage in the field
Use live radargrams and time slices to confirm that the required area has been captured.
4. Process the dataset
Apply velocity, gain, background removal, migration, filtering and topographic correction as appropriate.
5. Generate diagnostic maps
Create depth slices, reinforcement maps, layer information or application-specific condition maps.
6. Integrate with the engineering assessment
Export figures, mapped anomalies and raw data for inclusion in the engineer’s final interpretation and report.
Field information
Processed Diagnostic Information
Engineering deliverables
Book a Structural Assessment Demonstration
GS9000 cart with:

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