RISH CON-M+ transducer is used to measure and convert parameters of a single-phase or three-phase AC system with unbalanced or balanced load into a proportional load independent DC current or DC voltage output signal.
RISH CON-M+ transducer is used to measure and convert parameters of a single-phase or three-phase AC system with unbalanced or balanced load into a proportional load independent DC current or DC voltage output signal.
RISH CON-M+ transducer is used to measure
and convert parameters of a single-phase or
three-phase AC system with unbalanced or
balanced load into a proportional load
independent DC current or DC voltage
output signal.
4-in-1 programmable transducer
Fully onsite programmable Input:
PT&CT ratio,Output: DC Current/Voltage
Upto 4 Isolated Analog & 2 Relay Output
True RMS and THD measurement upto 31st Harmonics
For more details please refer datasheet.
RISH CON-M+ transducer is used to measure
and convert parameters of a single-phase or
three-phase AC system with unbalanced or
balanced load into a proportional load
independent DC current or DC voltage
output signal.
4-in-1 programmable transducer
Fully onsite programmable Input:
PT&CT ratio,Output: DC Current/Voltage
Upto 4 Isolated Analog & 2 Relay Output
True RMS and THD measurement upto 31st Harmonics
For more details please refer datasheet.
The universal transmitter RISH Ducer V 604 converts the input variable – a DC current or voltage, or a signal from a thermocouple, resistance thermometer, remote sensor or potentiometer – to a proportional analogue output signal.
The RISH Ducer MXX series of multi-transducers simultaneously measure several variables of an electric power system and process them to produce 2 or 3 or 4 analogue output signals. 2 or 4 digital outputs are available for signaling limits or power meterin
The Transmitter RISH Ducer PT 602 Converts the input variable-a signal from a resistance thermometer Pt 100- to a temperature linear output signal.
The RISH CON - M transducer is used to measure and convert parameter of Three-phase 3W/4W AC power network with balanced or unbalanced system.