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AT Series Current Transducers

ATP Powered Current Transducers Series

ATQ Series Frequency Output Current Transducers

DT Series DC Current Transducers

Multitek M100-A Current Transducers

LP-IP Auxillary Powered AC Current Transducer

LP-IS Self Powered AC Current Transducer

T-IL Loop Powered AC Current Transducer

T-ILC Loop Powered with integral CT

T-ILE Loop Powered AC Current Transducer

LP-IL Loop Powered AC Current Transducer

LP-ISX3 Three Phase Self Powered AC Current transducer

T-IS Self Powered AC Current Transducer

T-IP AC Current Transducer

M100-DM3 DC Current or Voltage Transducer

LP-IRMS SEPARATELY POWERED RMS RESPONDING CURRENT TRANSDUCER

LP-ID AC Current Transducers

ATR Series Current Transducers

AT-ATR 3 and 4 Series Current Transducers

M560 PowerSig

 

 
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Products: Transducers > AC and DC Current Transducers > M100-DS DC Current Summation Transducer
 
LP-2.5W4H Three Phase Watt Transducer
ACTIVE ENERGY THREE PHASE WATT TRANSDUCER PLUS kW-hour PULSE OUTPUT
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Multitek M100-W Active Power Transducers
Multitek M100-W Series Active Power Transducers
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M100-DA & DV Isolation Transducers
M100-DA & DV DC Current or Voltage Isolation Transducers
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M100-PA Phase Angle Transducers
Multitek Phase Angle Transducers M100-P Series
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ATP Powered Current Transducers Series
Current Transducer 0-200A provides proportional analog VDC/mA output
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M100-DS DC Current Summation Transducer
 

The M100-DS Series of summation transducers take up to four inputs and provide an outpir signal directly proportional to the sum of the inputs. A typical appliaction is the summation of total kW of four separate generating sets e.g. the four individual kW readings are provided by M100-WA4 transducers with 0-1mA output signals. The M100-DS4 summates the four 0-1mA signals and provides a single output signal that is direclty proportional the sum of the total kW of all four generators. It is important to note the following when using summation transducers, to ensure the correct reading is obtained.

   
 
Features & Benefits
 
  • Special Notes
    The current and voltage ratios must be identical otherwise the subsequent summation will be meaningless


 
 

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