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KDZD8870 Low Voltage Leakage Locator
KDZD8870 Low Voltage Leakage Locator

KDZD8870 Low Voltage Leakage Locator

Applications:

  • Graphic Design & Creative Studios: Ensures absolute color accuracy from digital design on monitors to final client proofs.

  • Prepress & Professional Printing: Minimizes color discrepancies between CMYK and RGB color spaces, reducing proofing cycles and printing waste.

  • Commercial Photography & Digital Imaging: Perfect for high-end Exif data preservation and precise ICC profile embedded workflows (Photoshop integrated).

  • Industrial Color Quality Control: Suitable for textile, packaging, and advertising industries where consistent brand color replication is critical.

  • Response within
    24 hours

  • Free warranty
    12 month

  • On-line training
    Support

Profile:

  • Graphic Design & Creative Studios: Ensures absolute color accuracy from digital design on monitors to final client proofs.

  • Prepress & Professional Printing: Minimizes color discrepancies between CMYK and RGB color spaces, reducing proofing cycles and printing waste.

  • Commercial Photography & Digital Imaging: Perfect for high-end Exif data preservation and precise ICC profile embedded workflows (Photoshop integrated).

  • Industrial Color Quality Control: Suitable for textile, packaging, and advertising industries where consistent brand color replication is critical.

Features:

  • Cross-Platform ICC Profile Engine: Full compatibility with advanced XICC_PROFILE guidelines to manage specific monitor, printer, and scanner color spaces smoothly.

  • Intelligent CMYK / RGB Conversion: Dual-mode algorithmic mapping that precisely translates standard sRGB IEC61966-2.1 palettes into production-ready CMYK arrays without losing vibrancy.

  • Comprehensive Metadata Retention: Fully supports embedded Exif tags, Adobe raw properties, and Photoshop slice parameters, ensuring no structural data or text tags are stripped during file optimization.

  • Advanced Color Curve Calibration: Granular controls for customized gamma correction, luminance measurements, and light/dark point adjustments across various CRT and digital display architectures.

  • Prepress Vector & Layout Precision: Enhanced processing for crop boundaries, vector bounding boxes, and printing setups (printOutputOptions), preventing unexpected shifts in final print production.

Parameter:

1. General System Specifications

  • Signal Injection Mode: Constant Mode / Interval Mode (2 seconds ON, 2 seconds OFF for noise discrimination)

  • Default Signal Frequency Channel: F2 (Optimized for field anti-interference)

  • Operating Environment: Designed for low-voltage distribution grids, overhead lines, and transformer branch boxes.

2. Signal Transmitter (Host) Specifications

  • Coupling Connection: High-permeability Coupling Clamp Meter

  • Application Target: Transformer grounding lines or main low-voltage leakage branches.

  • Acoustic Indicator: Built-in acoustic feedback (emits a distinct buzzing sound when the grounding line carries large residual or leakage currents).

3. Receiver 1 (Overhead Line Multi-相 Sensor)

  • Measurement Principle: Inductive Electromagnetic Field Detection (Non-contact)

  • Optimal Detection Distance: $1.5\text{m} \sim 2.0\text{m}$ directly underneath overhead distribution lines.

  • Spatial Alignment Requirement: Sensor ring plane must remain perfectly parallel to the phase conductors ($A/B/C/N$).

  • Fault Identification Criterion: Differential amplitude comparison (the branch yielding significantly higher values isolates the fault zone).

4. Flexible Rogowski Coil Current Meter (Flexible Clamp Meter)

  • Measurement Target: Full vector sum of $A-B-C-N$ bundled cables or live/neutral loops.

  • Core Sensor Type: Flexible Rogowski Coil (Optimized for narrow distribution boxes and large cable bundles).

  • Resolution Enhancement Feature: Supports multi-turn wrapping for micro-current detection.

    • Scaling Formula:

      $$\text{Actual Leakage Current} = \frac{\text{Meter Displayed Value}}{\text{Number of Coil Turns}}$$
    • Example: If a $1\text{A}$ actual current is wrapped 3 times, the display reads $3\text{A}$; if wrapped 5 times, it reads $5\text{A}$.