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SSET CE-C Series Quick Start Manual

3-phase power isolation transducer

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3-phase power isolation transducer
CE-C**-**DS5-0.5
Istructions
1Overview
This device is an electrical isolation transducer of 3-phase active,
reactive power, power factor, and true RMS measurement. Its
input is isolated from output signal, and output linear standard
analog signal. Through the internal switch can switch to active,
reactive power and power factor measurement of 3-phase 3-wire
and 3-phase 4-wire. The product can be widely used in electric
power, communications, railway, industrial control and other
fields.
Features:
Ø True RMS measurement, the accuracy is better than 0.5;
Ø The product has a 3-phase active or reactive power and
power factor measurement function;
Ø Can be free to set positive and negative power measurement
or the inductive and capacitive polarity measurement of
power factor;
Ø Wide DC power supply: 11V~28V, 85V~265VAC;
Ø A variety of output range and mode to choose from, built-in
function switch freely selected;
Ø can be
freely set three-phase four-wire or three-phase
three-wire measurement mode;
2
Case Style
Figure 1 Appearance of the product
3 Part Number
http://www.ce-transducer.com
sales@ce-transducer.com
3rd Floor, building 1, Zaimao industrial park, Baoji road, Bantian, Longgang district,
Shenzhen City, China
Post code: 518049
Figure 2, Selection table
4
Specifications
Power supply: DC +11V~+28V (power consumption<60mA),
AC/DC 85V-265V;
Input range: voltage AC: 0~500V; current AC: 0~200A;
Power factor transmitter need to subjoin:
Power factor 0~1(unipolarity), 0.01L~1~0.01C (bipolarity);
Output: output a one-way voltage and current at the mean time,
eight kinds of output of 0-5V/0-20mA or 1-5V /4-20mA or
2.5±2.5V/10±10mA or 3±2V /12±8mA can be set freely;
Output ripple: <10mV;
Accuracy class: 0.5 (with reference error);
Temperature drift: <300ppm/℃
Load capacity: voltage output≥500Ω, current output≤300Ω
(24V DC power supply can be up to 800Ω);
Response time: ≤300 mS;
Isolation voltage: DC 2500V;
Rated power consumption: <1.5W;
Frequency range: 40Hz~75Hz
Surge immunity:
Power port four 4KV (L-N / 2Ω / integrated wave),
Output port two 2KV (L-N / 40Ω / integrated wave);
Impulse immunity:
input/power port ± 2KV, analog I/O port ± 1KV;
Input overload capacity:
Continuous overload: 120%; short-term overload:
2 times the rated voltage input value, the application of 1 second, 20
times the rated current input, the application of 1S
Storage conditions: -40 ~ +70 ℃.
5 Connections Diagram
Isolation voltage: DC 2500V;

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Summary of Contents for SSET CE-C Series

  • Page 1 3-phase power isolation transducer CE-C**-**DS5-0.5 Istructions 1Overview This device is an electrical isolation transducer of 3-phase active, reactive power, power factor, and true RMS measurement. Its input is isolated from output signal, and output linear standard analog signal. Through the internal switch can switch to active, reactive power and power factor measurement of 3-phase 3-wire and 3-phase 4-wire.
  • Page 2 specific settings are as follows: Figure 6, Zero output setting Figure 3, wiring diagram of (window input) P31/Q31/C31 Figure 4, wiring diagram of (window input) P41/Q41/C41 Note: When the three-phase four-wire products are for the Figure 7, Polarity measurement settings three-phase three-wire measurement through the internal DIP switch settings, the product wiring is required to B-phase voltage connected to the terminals NO.4, terminals NO.2 are not...
  • Page 3 drive relays and other can produce spikes in the load, in order to avoid interference signal transmission to the transducer. he transducers output 0-20mA (or 4-20mA), the RL standard is ≤ 250Ω, and 0-5V voltage output RL standard is ≥ 1KΩ, can guarantee the output accuracy and linearity over the entire rated input range.
  • Page 4 which limit temperature is +75 ℃. The shell will be deformed with 2.5V, a lagging power factor and capacitive load, C = Vo÷2.5V; If the output is 0-4mA-20Ma, when output 12mA, a advance high-temperature baking, and will affect product performance. Do power factor and inductive load, C = (20 mA -Io)÷8 mA;...