HF-CH-213 Cable Impedance Spectrum Analyzer

The Cable Impedance Spectrum Analyzer collects cable impedance data across various frequencies to generate spectrum curves. It effectively inspects insulation aging, joint deterioration, wire breaks and other hidden cable faults, delivering precise defect location for routine maintenance of high-voltage power cables.

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Product Introduction

The broadband impedance spectrum (BIS) was developed to address the drawbacks of the conventional time domain reflectometry (TDR) method when locating faint localized defects in cables.

This rechargeable portable instrument serves as a non-destructive testing system. Combined with our self-developed BIS testing software and hardware, the system boasts high identification sensitivity and positioning accuracy for cable local defects and intermediate joints, with a positioning error less than 0.5%.

Adopting the frequency-domain measurement principle, the incident signal is reflected at impedance discontinuities. The reflected waves are analyzed at the transmitting end, and the positions of cable impedance discontinuities are calculated based on the signal propagation speed within the cable.

Functional Features

  1. Enables non-destructive testing with long effective detection range and superior positioning accuracy, greatly cutting labor and maintenance costs.
  2. Ultra-fast testing speed: single test takes less than 1 minute, drastically boosting cable maintenance efficiency.
  3. Supports cable length measurement and intermediate joint fault locating; works perfectly for cables without original ledger data.
  4. Detects millimeter-level tiny defects caused by dampness, overheating, external force damage, chemical erosion, radiation, water trees and other factors.
  5. User-friendly operation: parameters adjustable for various working conditions; one-click completion of testing and positioning.
  6. Professional after-sales team provides one-on-one remote technical support.
  7. Compact, sturdy and portable design with ultra-long battery endurance.

Technical Parameters

Parameter Item Specification
Effective detection length 50 m ~ 100 km
Positioning error <0.5%
Sweep frequency range 5 Hz ~ 20 MHz
Output signal-to-noise ratio >80 dB
Detectable defect scale / Total weight Millimeter level; <2 kg (including battery)
Output voltage / Battery capacity DC 12 V; 8000 mAh
Operating temperature & humidity -15℃ ~ +50℃; ≤80% RH
Dimensions 28.3 cm × 6.1 cm × 20.5 cm (smaller than A4 paper)
Continuous working time More than 6 hours, supports fast charging
Architecture & System ARM Cortex design with Linux kernel, stable performance for long-duration operation
Spectrum Display Frequency-domain & time-domain data analysis, frequency-domain spectrum defect compensation
Defect Auxiliary Identification Automatic defect position search and defect severity display via bar charts
Defect Annotation & Report Generation Annotate defects on time-domain, frequency-domain and compensated spectra; mark cable terminals, intact joints and faulty cables; classify defects by type and severity; automatically generate formal test reports

Packing List

No. Item Description Qty Unit Remarks
1 Main Test Unit 1 Set Built-in rechargeable lithium battery
2 High-frequency Test Connecting Cables 2 Pcs For cable wiring testing
3 Power Charger Adapter 1 Pcs DC12V fast charging
4 User Operation Manual (English Version) 1 Book Complete operation & parameter guide
5 Calibration Certificate 1 Copy Factory calibration report
6 Portable Shockproof Carrying Case 1 Pcs For storage & outdoor carrying
7 Accessories Pack 1 Set Including terminal clamps, spare connectors
8 Test Report Template CD 1 Disc Spectrum analysis software & report tool

FAQ: Cable Impedance Spectrum Analyzer

Q1: What core principle does this cable impedance spectrum analyzer adopt?

A1: It works on the frequency-domain measurement principle. The linearly swept sine incident signal reflects at cable impedance discontinuities. The system analyzes reflected waves or standing waves, then calculates the exact position of cable defects based on signal propagation speed inside cables.

Q2: What advantages does BIS technology have over the traditional TDR method?

A2: Conventional TDR fails to identify tiny, subtle localized cable defects. Our BIS system delivers much higher sensitivity, with positioning error less than 0.5%, and accurately locates millimeter-level hidden cable faults that TDR cannot detect.

Q3: What types of cable defects can this instrument detect?

A3: It can detect defects caused by dampness, overheating, external mechanical damage, chemical corrosion, radiation, water trees, aging and other factors, as well as abnormal intermediate cable joints.

Q4: What is the effective detection range of the device?

A4: The effective testing length covers cables from 50 meters up to 100 kilometers, applicable for most medium and high-voltage power cables.

Q5: Is this tester a non-destructive testing device? Will it damage the tested cables?

A5: Yes, it belongs to a complete non-destructive testing system. No high voltage is applied to cables during testing, so no damage will be caused to cable insulation and internal structures.

Q6: How long does a single cable test take?

A6: One full test is finished within 1 minute, greatly improving the working efficiency of cable maintenance teams.

Q7: Can it test cables without original cable ledger and length records?

A7: Absolutely. It can automatically measure cable total length and locate fault points without relying on original drawing or account information.

Q8: What is the battery life and charging condition?

A8: Equipped with an 8000mAh rechargeable battery, continuous working time exceeds 6 hours, and fast charging is supported for outdoor field operations.

Q9: What are the applicable working temperature and humidity ranges?

A9: Operating temperature: -15℃ ~ +50℃; Working relative humidity ≤80%, suitable for harsh outdoor construction environments.

Q10: Does the system support automatic test report generation?

A10: Yes. It can annotate defects on time-domain, frequency-domain and compensated spectra, classify faults by type and severity, and export standardized electronic test reports automatically.

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