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Type B Residual Current Transformer (RCT) Series – High-Precision AC/DC Leakage Current Sensors

Type B Residual Current Transformer (RCT) Series – High-Precision AC/DC Leakage Current Sensors

Industrial-grade Type B Residual Current Transformers (RCT) designed for EV charging stations, solar inverters, and industrial power supplies. Delivers high-precision detection of smooth DC, pulsating DC, and AC residual currents.

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Обзор продукции

Сайт Type B Residual Current Transformer (RCT) Series is an advanced leakage current detection solution engineered for modern EV charging infrastructure, solar PV systems, and industrial power electronics. By passing multiple primary power lines through a single ultra-high-permeability magnetic core, the RCT continuously measures the vector sum of currents to identify hazardous residual/leakage currents.

Built with a high-density primary winding structure capable of carrying heavy continuous AC loads, Trafopsu RCTs provide exceptional linearity, ultra-low phase error, and rapid tripping signal generation. They offer comprehensive protection against sinusoidal AC, high-frequency AC, pulsating DC, and smooth continuous DC residual currents—meeting stringent global safety standards such as IEC 62955, IEC 62752, и IEC 62020.

Основные характеристики

  • Type B Residual Current Detection: Optimized for sensing smooth DC leakage currents alongside AC and pulsating DC faults.

  • Integrated Dual Heavy-Current Primary Winding: Embedded multi-terminal primary connections designed to handle continuous operating currents reliably.

  • High-Precision Magnetic Core: Features ultra-low phase offset (down to 1.5°) and precise current transformation for accurate threshold tripping.

  • Robust Insulation & Isolation: Standardized 2500V / 3000V Dielectric Strength (Hi-Pot) between primary and secondary windings for enhanced user safety.

  • Industrial Thermal Endurance: Operating temperature rated from -40°C up to +105°C, ensuring long-term reliability in outdoor EVSE wallboxes and harsh environments.

  • UL 94-V0 Flame Retardant: Encapsulated in high-grade potting resin and flame-retardant bobbin materials.

Standard Model Comparison & Specifications

Параметр O-26094-1 O-26094-2 O-26094-3
Коэффициент трансформации

1:90 15:45

1:42 15:45

1:1:42

Primary Pin Terminals

P1-P2 / P3-P4

P1-P2 / P3-P4

P1-P2 / P3-P4

Secondary Pins

Pin 1 – Pin 2

Pin 1 – Pin 2

Pin 1 – Pin 2

Primary DCR (R_p)

0.85 mΩ Max.

0.85 mΩ Max.

0.85 mΩ Max.

Secondary DCR (R_s)

25.0 Ω Max.

22.0 Ω Max.

25.0 Ω Max.

Secondary Inductance

2.8 H Min. (@1kHz, 0.3V)

2.5 H Min. (@1kHz, 0.3V)

2.8 H Min. (@1kHz, 0.3V)

Hi-Pot Isolation

3000Vac / 50Hz / 3mA / 60s

2500Vac / 50Hz / 3mA / 60s

3000Vac / 50Hz / 3mA / 60s

Phase Error

1.5° Max.

N/A N/A
Operating Temp.

-40°C to +105°C

-40°C to +105°C

-40°C to +105°C

Mounting Style

Through-Hole PCB Mount

Through-Hole PCB Mount

Through-Hole PCB Mount

Приложения

  • EV Charging Infrastructure (EVSE): Mode 3 AC Wallboxes and Mode 4 Fast DC Chargers requiring 6mA DC / 30mA AC residual current monitoring.

  • Solar Photovoltaic Inverters: Transformerless grid-tied PV inverters for DC isolation and ground-fault protection.

  • Industrial Inverters & Variable Frequency Drives (VFDs): Earth leakage monitoring in industrial motor drives.

  • Uninterruptible Power Supplies (UPS): Sensitive leakage current sensing in high-availability data center power systems.

Pinout & Schematics Diagram

Plaintext
 
       Primary Lines (High Current)
       P1  o------- ( N1 ) -------o P2
       P3  o------- ( N2 ) -------o P4
                     ||
                     ||  Magnetic Core
                     ||
       Secondary   o------- ( N3 ) -------o  Secondary
        Pin 1                                 Pin 2
  • Primary Winding (N1 & N2): Integrated low-resistance heavy-copper conductors (DCR ≤ 0.85 mΩ).

  • Secondary Winding (N3): High-turn precise sensing coil (1000 Turns) for standard trip signal processing.

Customization & Engineering Support

Trafopsu offers customizable turns ratios (e.g., 1:1:1000, 1:1:1500, 1:1:2000), custom primary pin configurations, embedded DC sensing circuitry, and tailored enclosure footprints for OEM projects.