BKWF FOUR WIRE KELVIN TESTER(BKWF-CXXX)

The BKWF-CXXX Four Wire Kelvin Tester is a high-precision wire harness and cable testing system designed for applications that require extremely accurate continuity and resistance measurements. By utilizing 4-wire Kelvin measurement technology, the tester eliminates resistance errors introduced by test leads, connectors, and fixtures, enabling measurements with milliohm (mΩ) accuracy. It can also operate in conventional 2-wire mode, providing flexibility for different testing requirements.

  • Model BKWF-C1024/C2048
  • Channel 1024/2048
  • Features Open/Short, Resistor, Capacitor(optional), Diode, Insulation Resistance, Dielectric Withstand, 4-wire Kelvin Testing
  • Test Voltage DC1KV/AC1KV
  • Weight(kg) 32/40
  • Size(mm) 445*536*395

The BKWF-CXXX is specifically developed for manufacturers and quality assurance teams working with wire harnesses, connectors, cables, and electrical assemblies. Its advanced testing capabilities help identify wiring defects such as open circuits, short circuits, incorrect connections, and excessive contact resistance before products are delivered to customers.

In addition to continuity and low-resistance testing, the BKWF series supports a range of electrical verification functions, including insulation resistance testing and high-voltage withstand (Hipot) testing, making it a comprehensive solution for cable and harness quality control. The system is widely used in industries such as automotive, electric vehicles (EV), aerospace, railway transportation, electronics, and industrial equipment manufacturing.

Key Features

  • High-precision 4-wire Kelvin resistance measurement technology.
  • Supports both 2-wire and 4-wire testing modes.
    Accurate continuity measurement down to milliohm (mΩ) levels.
  • Detects open circuits, short circuits, miswires, and contact resistance issues.
  • Supports insulation and high-voltage testing for enhanced product safety verification.
  • Suitable for high-quality cable, connector, and wiring harness production environments.