- Phone
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Address
No. 6 Beihuayuan Village, Gaobeidian Township, Chaoyang District, Beijing (near Korea Muse Photography)
Beijing Hongou Chengyun Instrument Equipment Co., Ltd
No. 6 Beihuayuan Village, Gaobeidian Township, Chaoyang District, Beijing (near Korea Muse Photography)
HO-RCSconcreteStructural radar
Outstanding advantages: Domestic step frequency modulation can achieve 800MHz-2.4GHz frequency modulation through software settings, and detection can be achieved within a depth of 10cm-80cm, while other imported or domestic radars can only achieve 1.5GHz single frequency antenna detection (at a depth of 30cm).

Product Usage
Concrete structure radarIt can detect the location of internal steel bars, metal pipelines, non-metal pipelines, cables, etc. on the surface of concrete, and provide concrete structural defects/Abnormal and protective layer thickness information, with a maximum detection depth of 1m.Can be applied to quality inspection of construction projects and house decoration/Engineering fields such as renovation.
Product Features:
This product adopts an excellent integrated design of host and antenna in the industry, with small size, light weight, and low power consumption;
The host is wirelessly connected to the computer, making it easy to operate;
Implement real-time data collection and display;
The software interface is simple, easy to operate, and quick to get started;
◆ Multi band antenna options, with a wide range of applications;
The analysis software is easy to operate and the results are accurately interpreted;
High detection accuracy and accurate positioning;
◆ Built in large capacity battery with long battery life;
◆ Ergonomic structural design, simple, durable, and easy to operate, very suitable for outdoor mobile work environments.
Compliant with specifications:
Code for Geophysical Exploration of Hydroelectric and Water Conservancy Engineering DL/T 5010-2005
◆ "Geophysical Exploration Code for Water Resources and Hydropower Engineering SL326-2005"
Technical Code for Geophysical Exploration of Electric Power Engineering DL/T 5159-2012
Code for Geophysical Exploration of Underwater Engineering DB34/T 2209-2014
Geological Radar JT/T 940-2014 for Highway Section Inspection and Structural Layer Thickness
◆《Urban Engineering Geophysical Exploration Standard CJJ/T 7-2017
◆《Technical Regulations for Detection of Urban Underground Pipelines CJJ 61-2017
◆《Technical Specification for Radar Detection of Construction Engineering Quality DGJ 32-TJ79-2009
◆《Technical Specification for Advanced Geological Prediction of Railway Tunnels Q/CR 9217-2015
◆《Technical Standard for Comprehensive Detection and Risk Assessment of Urban Underground Disease Bodies JGJT437-2018
◆《Code for Geophysical Exploration of Highway EngineeringJTGT 32222020》
Configuration List:
serial number |
Name |
quantity |
unit |
Explanation |
1 |
Integrated radar antenna |
1 |
platform |
Including packaging box, shipping and receiving components |
2 |
Real time collection and analysis software |
1 |
set |
unlocked |
3 |
Specialized rechargeable battery |
1 |
set |
Can work continuously for more than 8 hours |
4 |
dedicated charger |
1 |
set |
Fast charging, slow charging |
5 |
Product Manual |
1 |
share |
/ |
6 |
Professional data processing software |
1 |
set |
/ |
optional |
Laptop computer/PAD |
1 |
platform |
/ |
Performance parameters:
model |
HO-GPR series geological radar |
|
host |
Antenna frequency |
Step by step frequency modulation, capable of achieving800MHz-2.4GHZ frequency modulation |
sampling frequency |
0.2-100GHz adjustable |
|
Time window range |
1ns~20000ns, continuously adjustable |
|
number of sampling points |
3232767 sample points/scan, optional |
|
scan rate |
200Line/second |
|
A/D conversion |
18bit |
|
Continuous working hours |
≥6hour |
|
Total power consumption |
<16 W |
|
signal-to-noise ratio |
superior to120dB |
|
Collecting speed |
>60 km/h @ 5 cm horizontal sampling spacing (track spacing) |
|
Minimum sampling interval |
<10ps |
|
measurement method |
Three measurement methods: point by point measurement, distance triggered measurement, and continuous measurement |
|
display mode |
Pseudo color image, stacked waveform or grayscale image |
|
Operating Temperature |
-30℃~+70℃ |
|
working voltage |
10-15V DC |
|
Wireless data transmission distance |
Greater than 50 meters |
|
Wired communication |
Ethernet, 100Mbps |
|
Weight |
2.8Kg |
|
Rulerinch |
30*23*13cm |
|
Performance parameters:
model |
HO-GPR series geological radar |
|
software |
system parameters |
Acquisition parameters: sampling point count, sampling rate, transmission repetition rate, number of channels per acquisition, average frequency, starting point, scanning starting point, time zero, center frequency |
Wheel measurement parameters: measurement diameter, distance correction, wheel measurement spacing | ||
Detection parameters: stacking times, refresh channels, detection mode (continuous time measurement, wheel measurement, point measurement), display scale, movement step size | ||
Display parameters |
Filtering: Dewow filtering (True, False), bandpass filtering (True, False), low-pass frequency (adjustable), high pass frequency (adjustable) |
|
Display: Multi channel display mode (horizontal, vertical), time zero point (adjustable), whether to display markers (True, False), whether to display titles (True, False), whether to display horizontal grids (True, False), whether to display vertical grids (True, False), display channel starting point (adjustable), display channel ending point (adjustable), display point count (adjustable), display starting point (adjustable), display color (4 types), relative dielectric constant (adjustable), vertical pixel points (adjustable), horizontal pixel points (adjustable) | ||
|
Gain: SEC gain: SEC gain (True, False), starting value (adjustable), attenuation (adjustable), maximum value (adjustable) Constant gain: SEC gain (True, False), display gain (adjustable), whether to display gain (True, False) Coordinates: Horizontal coordinates (number of tracks, distance), vertical coordinates (time, depth, sampling point) | ||
toolbar |
File: Open file, save file Collection: Device IP, Connected Device, Disconnected Device, Collection, Stop View: Image+waveform display, image display, waveform stack chart, waveform chart, 3D display, amplitude enhancement, amplitude reduction, horizontal stretching, horizontal compression, vertical stretching, vertical compression, full screen Processing: Channel deletion, automatic gain, segment gain, exponential gain, IIR low-pass filtering, IIR band-pass filtering, FIR band-pass filtering, FIR low-pass filtering Report: Generate Document |
|
Partial application recommendations:
Antenna type |
Antenna main frequency |
Reachable depth |
applicationrecommendation |
Single shielded antenna |
1.5GHz |
0.2~0.8m |
Defect detection of concrete, steel bars, and bridges |
900MHz |
0.5~1.5m |
Lining inspection, highway pavement inspection Steel bar scanning, bridge defect detection |
|
600MHz |
1.0~3.0m |
||
400MHz |
1~5 m |
Engineering and tunnel lining inspectionDefect detection of retaining walls |
|
200MHz |
1~10m |
Shallow geological hazard detection, pipeline detection, leakage detection |
|
Unshielded antenna |
100MHz |
0~20m |
Shallow engineering survey, advanced geological prediction Geological hazard detection (karst, cavities, fractured zones) |
50MHz |
0~30m |



Test site instructions:
The tested road surface is an urban arterial road located near Junyun Village in Wuhan. It has been completed and is in the stage of opening to traffic, with low traffic flow and basically no signal interference; Select a measuring line near the curb, with a length of 10About meters; Option 800MHz+1600MHzDual frequency testing, adjusting frequency selection, testing depth, sampling points, measuring multiple sets of data, after repeated debugging, selecting 800+1600Select 2 sampling points01The data is clear and the layers are distinct.
Test the original data graph

Test layering diagram

Result DescriptionThe first layer is an asphalt surface layer, with a uniform thickness of 10About cm; The second layer is a cement stabilized layer with a thickness of20About cm, the third layer has relatively weak reflection, which is related to the condition of the medium. Repeated testing can show more obvious reflection signals, and the layer thickness is uneven. It is speculated that it is caused by the compaction of the substrate, with a layer thickness of 15About cm; The test results are consistent with the design of urban asphalt pavement structure, and the data is reliable.
Keywords: concrete radar/concrete imaging radar/reinforced concrete radar/reinforced concrete ground penetrating radar/concrete radar imaging system/radar