| Brand | Danisense |
|---|---|
| Bandwidth | 1 MHz |
| Operating Temperature | -40°C to 85°C |
| Apperture | 39mm |
| Primary Current Rating | 500 A |
Current Transducer MK500ID
- High precision clamp-on current transducer
- Based on the ultra stable Danisense closed loop flux gate technology
- Ø39 mm aperture
- High Frequency bandwidth
- 4 meter cable
- Current output with D-sub-9
- Voltage output accessories available
- Operating temperature range -40°C to 85°C
Current Transducer MK500ID
The new Danisense MK500ID clamp-on delivers high-precision DC and AC measurements up to 500A — This allows debugging and diagnosis without disconnecting the primary circuit. The MK500ID transducer is well-suited to a broad spectrum of applications, including EV battery testing, power measurement, inverter efficiency evaluation, photovoltaic power generation, and renewable energy systems such as wind and solar. Its clamp-on design makes it ideal for temporary installations, retrofit projects, and maintenance tasks, while also enabling precise calibration and in-field analysis. Additionally, it supports critical measurement needs across transmission and distribution networks, where accuracy and stability are paramount.High Current Precision
Delivers accurate AC and DC measurements up to 500A for demanding power analysis.
Non-Intrusive Design
Clamp-on mechanism allows for diagnostics without disconnecting the primary circuit.
Extreme Temperature Stability
Engineered to operate reliably in harsh environments from -40°C to 85°C.
Flexible Connectivity
Features a 4-meter cable and D-sub-9 output with optional voltage conversion accessories.
Precision Flux Gate Technology
The MK500ID leverages ultra-stable closed loop flux gate technology to provide high-accuracy current sensing with minimal drift. This advanced measurement principle allows for precise analysis of both high-frequency components and steady-state DC currents in complex power electronics.
Versatile Field Applications
Designed for flexibility, the clamp-on form factor is ideal for retrofit projects and in-field analysis where circuit interruption is not an option. It supports critical measurement needs across transmission and distribution networks, as well as photovoltaic and renewable energy installations.
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