Technology & Equipment
The detection methods, survey instruments, and laboratory equipment behind every GPR Survey project.
Ground Penetrating Radar
GPR systems transmit high-frequency electromagnetic pulses into the ground and record reflections from buried utilities, voids, reinforcement, and material boundaries. We deploy multiple antenna frequencies depending on target depth and resolution requirements, from deep geotechnical profiling to shallow concrete scanning.
Electromagnetic Locator
EM locators detect metallic utilities by reading the electromagnetic field generated by an electrical current โ either naturally present on live cables or actively induced onto target conductors. This makes EM locating highly effective for tracing metallic pipes and cables with known access points.
Radio Detection
Radio detection equipment traces cables and metallic pipes using either passive signal reception or active signal induction, providing accurate horizontal and vertical positioning along the entire traced route, not just at a single point.
GNSS / GPS Survey
Centimeter-accurate GNSS positioning is used to geo-reference every detected feature during a survey, ensuring utility maps and CAD deliverables align precisely with real-world site coordinates.
GIS Mapping
All survey data can be compiled into GIS-compatible layers, allowing direct integration into client asset management systems and supporting long-term utility record maintenance.
Concrete Scanner
High-frequency GPR-based concrete scanners detect rebar, post-tension cables, conduits, and voids within concrete structural elements prior to coring, cutting, or drilling.
Leak Detection Equipment
Acoustic ground microphones, correlators, and thermal imaging cameras are used to pinpoint pipeline and structure leaks without speculative excavation.
Borehole Rig
Rotary and auger drilling rigs are used for geotechnical, environmental, and monitoring well boreholes, selected based on ground conditions and investigation depth requirements.
Laboratory Equipment
Soil and rock samples recovered from boreholes are tested in laboratory conditions for moisture content, compaction characteristics, shear strength, consolidation behavior, and grain size distribution.
Want to know which method fits your project?
Our engineers will recommend the right combination of technology for your site.