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High Voltage DC Power Supply Transformer Tester 200W 400W

High Voltage DC Power Supply Transformer Tester 200W 400W

Product Details:
Place of Origin: China
Brand Name: XZH TEST
Certification: CE/ISO
Model Number: XHHV Series
Detail Information
Place of Origin:
China
Brand Name:
XZH TEST
Certification:
CE/ISO
Model Number:
XHHV Series
Highlight:

High Light

Highlight:

35kV 400W Ultra-Lightweight Design

,

Replaces 70kg Traditional Transformers

,

Short-Circuit Immune Operation

Trading Information
Minimum Order Quantity:
1 Unit
Price:
Negotiable
Packaging Details:
wooden packaging
Delivery Time:
5-8 work days
Payment Terms:
T/T
Supply Ability:
3000 units per year
Product Description
Target Application: Field cable fault pre-location teams seeking a portable, lightweight replacement for traditional 70+ kg test transformers — deployable from standard service vehicles for rapid fault finding on distribution and industrial cable networks.
XHHV508 Series DC High Voltage Power Supply — 200W / 400W

The XHHV508 series DC high voltage power supply fully complies with DL/T846 and DL/T474 standards for high voltage test equipment and on-site insulation testing. Designed for 35kV and below voltage-class cable fault testing — including DC withstand voltage, impulse discharge, and fault point burn-through — this instrument completely replaces traditional test transformer and control box systems that weigh over 70 kg combined.

Built with high-precision, high-stability specialized HV electronic components and high-frequency high-voltage technology, the XHHV508 features a simple, lightweight construction. Its unique short-circuit immune design allows the HV output to operate safely even when directly shorted to ground. As China's lightest portable DC impulse high-voltage equipment with flexible power configuration, it is the ideal instrument for power cable fault detection.

XHHV508-4

Key Features
  • DC Withstand Voltage and Burn-Through: Dual-mode operation supporting DC withstand testing for cable insulation verification and DC burn-through for converting high-resistance faults to locatable faults at up to 320mA.
  • External Capacitor Interface: Supports 1-16 F external capacitor banks for impulse discharge testing, with the voltmeter continuously monitoring capacitor voltage even in standby mode.
  • Short-Circuit Immune: High-frequency topology inherently survives direct HV-to-ground shorts — eliminates external ballast protection and survives accidental discharge faults without damage.
  • Zero-Start Protection: HV output cannot be initiated unless voltage adjustment is at zero; yellow zero-start indicator confirms safe state before each test cycle.
  • Automatic Self-Discharge: Internal bleed circuit dissipates residual voltage upon HV output stop — voltmeter returns to zero confirming safe state without requiring immediate manual discharge.
  • Dual 1.5-Grade Pointer Meters: Analog HV voltmeter and LV ammeter provide real-time visual indication of discharge dynamics, arc establishment, and residual voltage.
  • Comprehensive Protection: Over-current (12A, >8S), over-voltage, and over-temperature (65 C) automatic protection with manual reset — built for continuous field operation from -25 C to +65 C.
Technical Specifications
Output Voltage 0–35kVDC (Default 0–32kVDC)
Voltage Accuracy 1.5 Grade
Output Polarity Negative
External Capacitor 1–2/4/8/16 μF
Burn-Through Voltage 0–32kVDC
Burn-Through Current 320mA
Over-Temperature Protection 65℃
Over-Current Protection 12A (>8S, Low-Voltage Side)
Dimensions 455 × 360 × 360 mm
Weight ≤ 20 kg
Power Supply AC 220V±10%, 50Hz±1Hz
Operating Temperature -25℃ ~ +65℃
Frequently Asked Questions
Q1: How does this power supply compare to traditional cable fault test transformers?
Traditional cable fault test systems use a combination of a test transformer (50+ kg for 5kVA) and a separate control box (20+ kg), totaling over 70 kg. The XHHV508 integrates both functions into a single 20 kg unit using high-frequency DC conversion technology. It provides the same 0-35kVDC output with superior short-circuit immunity — the HV output can operate safely even when directly shorted to ground. This weight reduction enables single-person deployment from standard service vehicles without lifting equipment.
Q2: What cable fault testing methods does this instrument support?
The XHHV508 supports three primary methods: (1) DC withstand voltage testing — verifying cable insulation integrity before and after repairs; (2) Impulse discharge testing — charging external capacitors (1-16 F) to generate high-voltage pulses for arc reflection and impulse current fault pre-location; (3) DC burn-through — converting high-resistance faults to low-resistance faults by applying sustained DC current, enabling subsequent pin-pointing with acoustic or magnetic methods.
Q3: What safety features protect field operators during testing?
Multiple safety layers: (1) Zero-start protection — HV output cannot initiate unless voltage knob is at zero, confirmed by yellow indicator; (2) Emergency stop — red button immediately cuts all HV output; (3) Automatic self-discharge — internal circuitry discharges residual voltage to zero upon stop; (4) Over-current protection — triggers at 12A, requiring manual reset; (5) Dedicated safety ground — must connect to ground with <5 Ohm resistance before operation.
Q4: How is voltage and current status monitored during testing?
Dual 1.5-grade analog pointer meters — a high-voltage side voltmeter and low-voltage side ammeter. Unlike digital displays, analog meters provide immediate visual feedback on the discharge process: the pointer movement clearly shows whether the fault point has fully discharged, remaining residual voltage, and dynamic arc behavior during burn-through. The voltmeter continuously indicates external capacitor voltage even in stopped state.
Q5: What maintenance and operating precautions are essential?
Key precautions: (1) Verify ground resistance <5 Ohm before operation; (2) After testing, fully discharge HV terminal using the discharge rod — internal self-discharge handles internal voltage but external capacitors must be manually discharged; (3) Over-current protection switch must be pressed before voltage ramp-up; (4) If over-current protection triggers, power-cycle before resetting; (5) Maintain adequate safety clearance around HV connections — the HV indicator lamp confirms active state.

Ratings & Review

Overall Rating

5.0
Based on 50 reviews for this supplier

Rating Snapshot

The following is the distribution of all ratings
5 stars
100%
4 stars
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All Reviews

J
John Miller
United States Mar 26.2026
We tested the XHHV535-4Z on several underground cable repair jobs in Houston. It helped our team locate faults faster and reduced unnecessary excavation. The equipment is powerful, stable, and easy to operate in the field. A great solution for utility and industrial cable maintenance.
L
Lee
Malaysia Jan 10.2024
Our customized service is incredibly thoughtful: our R&D team can accurately address specific needs, providing tailored solutions for everything from voltage and frequency to environmental adaptation. They quickly provided a perfect solution for the non-standard requirements of our project, truly delivering a bespoke service.