| Payment Terms | T/T |
| Supply Ability | 3000unit/year |
| Delivery Time | 5-8 work days |
| Packaging Details | wooden packaging |
| Brand Name | XZH TEST |
| Model Number | XHGG501E |
| Certification | ISO/CE |
| Place of Origin | Xi'an, Shaanxi, China |
View Detail Information
Explore similar products
ARC Multi-Pulse Cable Fault Pre-Locator 10.1-inch Touch 120km Range 400MHz
TDR Cable Fault Pre-Locator Portable with Printer 30km Range 5.7-inch LCD
ARC Multi-Pulse Cable Fault Pre-Locator 400MHz 120km Range 0.07m Resolution with
ARC Cable Fault Pre-Locator with Report Generator | 12.1-inch 400MHz 68km |
Product Specification
| Payment Terms | T/T | Supply Ability | 3000unit/year |
| Delivery Time | 5-8 work days | Packaging Details | wooden packaging |
| Brand Name | XZH TEST | Model Number | XHGG501E |
| Certification | ISO/CE | Place of Origin | Xi'an, Shaanxi, China |
| High Light | Smart Communication Cable Fault Detector ,Signal Cable Fault Locator ,Smart Signal Cable Fault Detector | ||
The XHGG501E Cable Fault Tester is a dedicated instrument for measuring and analysing the condition and fault distance of power cables. It adopts an industrial-grade 10.1-inch touch all-in-one computer with a simple operation software interface for human-machine interaction testing, and uses industrial-grade integrated circuits and components together with a built-in large-capacity lithium-ion battery for stable, reliable and convenient use.
Combining modern electronic technology with computer technology, the instrument performs signal filtering, acquisition, data processing, graphic display and graphic analysis to complete cable velocity measurement, cable length testing and cable fault distance testing. It is suitable for low-resistance, short-circuit, open-circuit (broken-wire) faults, as well as high-resistance leakage and high-resistance flashover faults, on power cables of different cross-sections, dielectrics and materials, high-frequency coaxial cables, streetlight cables and buried wires.
Key Features| Classification basis | Types |
|---|---|
| By voltage level | Low-voltage cable: 6 kV and below; medium / high-voltage cable: 6 kV and above up to 35 kV; high-voltage cable: 66 kV and above |
| By insulation medium | Oil-impregnated paper cable; non-dripping paper cable; XLPE (cross-linked polyethylene) cable; other rubber / plastic cable; oil-filled cable |
| By structural type | Cable without outer metallic shield; cable with outer metallic shield; cable with metallic inner sheath |
When an electric wave travels in a transmission line and the line is not uniform, the characteristic impedance at a point changes; after the wave reaches that point it not only continues forward but also produces a wave travelling in the opposite direction back to the test end. This reverse-travelling wave is called the reflected wave, and the phenomenon is called reflection. The incident wave and the reflected wave together are called travelling waves. At a short-circuit point the polarity of the echo is opposite to that of the transmitted pulse, whereas at an open-circuit point (including the cable terminal) the echo has the same polarity as the transmitted pulse. Low-resistance and open-circuit faults can therefore be located very easily with the low-voltage pulse method according to the echo polarity. For high-resistance faults, the high-voltage flashover method is used: a high-voltage pulse signal source (for leakage high-resistance faults) or a DC high-voltage source (for flashover high-resistance faults) causes the fault point to flash over and discharge, producing a reflected signal that is detected at the test end. The signal then passes through a high-speed A/D converter and the computer control system, where the analogue signal is converted to a digital signal, stored, digitally processed, displayed as a test waveform and analysed — completing the rough measurement of the fault distance.
Low-voltage pulse methodA low-voltage pulse signal is applied to the cable under test; the pulse is reflected at the fault point, the reflected signal is processed and presented as a waveform, and the rough fault distance is judged by analysing the reflected waveform.
High-voltage flashover methodAs a cable fault test system using the multiple-pulse method, the instrument set includes an integrated high-voltage generator that produces a single impulse high voltage, a multiple-pulse generator, a multiple-pulse automatic trigger device and test waveform analysis software. The multiple-pulse generator guides the instantaneous impulse high-voltage pulse produced by the high-voltage unit onto the faulty phase of the cable, ensuring the fault point is fully broken down and extending the arc duration after breakdown. The automatic trigger device then immediately sends several low-voltage test pulses to the faulty cable. The first eight test pulses make use of the short-circuit characteristic at the instant the cable arc breaks down to form eight fault reflection pulses; after the fault point arc is extinguished, a further eight test pulses are sent to measure the open-circuit reflection waveform, forming eight groups of secondary pulse waveforms. The multiple-pulse method lets the low-voltage test pulses effectively avoid the large cosine oscillation interference that occurs at the instant of impulse high voltage, so that clear standard waveforms similar to a short-circuit fault echo can be obtained during the relatively stable period of the fault-point short-circuit arc — greatly simplifying the test procedure.
Technical Specifications| Item | Specification |
|---|---|
| Sampling frequency | 80 MHz |
| Low-voltage pulse amplitude | 100 V ±15% |
| Ranging range | ≥ 65 km |
| Test ranges | 300 m / 1 km / 5 km / 25 km / 65 km |
| Pulse width | 0.1 µs / 0.50 µs / 2.50 µs / 7.25 µs / 10.0 µs |
| Test frequency | 80 MHz / 40 MHz / 10 MHz / 2 MHz / 1 MHz |
| Minimum resolution | 0.10 m |
| Test blind zone | ≤ 20 m |
| Measurement error | ≤ ±(0.5% × L + 1 m), where L is the cable length |
| Power supply | Charging AC 110 V ~ 240 V, 50 Hz / 60 Hz; built-in 11.1 V lithium battery pack; charging time about 2 hours, working time more than 5 hours |
| Pulse coupler withstand voltage | DC 35 kV |
| Working conditions | Temperature -20 ℃ ~ +65 ℃; relative humidity 90%; atmospheric pressure 750 ±30 mmHg |
The instrument set consists of the cable fault tester (which uses the low-voltage pulse method, high-voltage flashover method and multiple-pulse method to test and analyse cables), a coupler (used in the multiple-pulse method, optional), a 1.5 m single-Q output line (connects the tester to the cable under test in the low-voltage pulse method), a 2 m double-Q input line (connects the tester to the sampler in the high-voltage flashover method), a sampler (receives the high-voltage signal reflected at the sampling ground in the high-voltage flashover method), a 1.8 m power line (charging cable), coupler high-voltage line A (connects the coupler to the cable under test in the multiple-pulse method; insert / pull only, do not twist), coupler high-voltage line B (connects the coupler to the high-voltage pulse signal source in the multiple-pulse method; insert / pull only, do not twist), a 2.5 m ground line (coupler grounding line) and a USB line (for importing waveform files to a PC).
Operation Guide Low-voltage pulse methodAfter testing, previously saved records can be viewed by clicking "File Processing" in the upper-right of the screen, selecting the file name and clicking "Open". To archive or print waveform files on a PC, use the "Export" function: install the waveform file management software on the PC, connect the instrument to the PC with a USB line, install the provided driver, restart the instrument, open the cable fault browsing software, click "Scan" under "Test Type", select the serial port assigned by the PC and click "Open" to complete the communication setup. Then select the waveform file to be exported in the instrument's "File Processing" interface and click "Export"; the corresponding waveform will be displayed on the PC, and the "Save" button can be used to save it, while "Waveform Print" saves the waveform file as an image for printing.
PrecautionsThe instrument comes with a one-year free warranty for quality problems from the date of purchase, and lifetime repair and technical service are provided. If you find that the instrument is not operating normally or a fault occurs, please contact us so that we can arrange the most convenient and effective solution for you.
FAQQ1. What cable faults can the XHGG501E test?
It tests low-resistance, short-circuit and open-circuit (broken-wire) faults as well as high-resistance leakage and high-resistance flashover faults. It is applicable to power cables of different cross-sections, dielectrics and materials, high-frequency coaxial cables, streetlight cables and buried wires. Low-resistance and open-circuit faults can be judged directly with the low-voltage pulse method, while high-resistance faults are tested with the high-voltage flashover method.
Q2. Which test methods and ranges does it support?
The instrument supports the low-voltage pulse method, the high-voltage flashover method (direct flashover and impulse flashover) and the multiple-pulse method (8 pulses). Test ranges are 300 m / 1 km / 5 km / 25 km / 65 km, the ranging range is ≥ 65 km, the test blind zone is ≤ 20 m, the minimum resolution is 0.10 m and the measurement error is ≤ ±(0.5% × L + 1 m).
Q3. How is it powered, and what about battery care?
It charges from AC 110 V–240 V, 50 Hz / 60 Hz and works from a built-in 11.1 V lithium battery pack; charging takes about 2 hours and working time is more than 5 hours. Do not carry out high-voltage flashover or multiple-pulse sampling while charging, and if the instrument is not used for a long time charge it about once every 2 months.
Q4. Can the multiple-pulse method be used with the standard package?
The multiple-pulse method requires the coupler, which is an optional item. Used together with the pulse coupler, the multiple-pulse method displays 8 groups of high / low-voltage waveforms for comparison, which makes automatic distance testing, manual analysis and distance measurement easier.
Q5. What is included in the package, and what about after-sales service?
The packing list includes the cable fault tester (1 unit), power line (1 pc), single-Q line (1 pc), double-Q line (1 pc), sampler box (1 pc) and USB communication line (1 pc). The instrument comes with a one-year free warranty for quality problems from the date of purchase, plus lifetime repair and technical service
Company Details
Business Type:
Manufacturer
Year Established:
2013
Total Annual:
1000000-5000000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
Xi'an Xu&Hui Electromechanical Technology Co., Ltd. /Xian XZH Electric Power Technology Co., Ltd. Has found in 2013, located in Xi'an, China. which is a highly experienced team dedicated to developing electrical... Xi'an Xu&Hui Electromechanical Technology Co., Ltd. /Xian XZH Electric Power Technology Co., Ltd. Has found in 2013, located in Xi'an, China. which is a highly experienced team dedicated to developing electrical...
Get in touch with us
Leave a Message, we will call you back quickly!