The XJ-MC201C motor protector is designed to meet the needs of our company's intelligent manufacturing development in industries where electric motors are most commonly used, such as petroleum, chemical, smelting, steel, desulfurization and denitrification, power plants, and sewage treatment,
Analyze and study advanced technologies and design ideas for high-voltage protection and low-voltage protection, and provide a motor protector that integrates protection, control, measurement, metering, power quality analysis, fault recording analysis, and communication to a wide range of users.
The XJ-MC201C motor protector is suitable for motor circuits controlled by contactors.
Main features of the device
EAdopting 32-bit high-performance embedded ARM as the CPU and adopting real-time multitasking embedded operating system;
EAdopting high-performance software and hardware measurement technology to achieve both protection and measurement, with zero voltage and current.5Level, power and energy 0.5Grade, with a current of 10 times overload capacity.
EHigh speed fieldbus transmission technology, using standard RS485 communication port, supporting Modbus RTU protocol, coordinating communication between devices without the need for management machine to convert data.
EAdopting a large screen Chinese character LCD display with a user-friendly human-machine interface, it can display various measurement parameters, modify protection settings, 1000 operation reports, fault recording, etc;
EThe LCD interface can display the motor wiring mode diagram;
EProvide fault recording function and SOE events;
EA high-performance motor protector that integrates protection, control, measurement, metering, power quality analysis, and communication, which is the first of its kind in China;
EComplete software and hardware self-test function.

Product Model |
XJ-MC201C |
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protection function |
Startup timeout (startup input) |
■ |
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Activate overcurrent protection (activate) |
■ |
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Overload protection (overload protection)) |
■ |
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Negative sequence segment I protection |
■ |
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Negative sequence II protection (extreme inverse time protection) |
■ |
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Overcurrent blockage |
■ |
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Phase failure/current imbalance protection |
■ |
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Overload protection |
■ |
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Overcurrent protection in section I (operation and parking input) |
■ |
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Overcurrent Section II Protection (Operation and Shutdown Activation) |
■ |
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Overcurrent inverse time limit protection (start and exit) |
■ |
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Overvoltage protection |
■ |
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Undervoltage protection |
■ |
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Vector zero sequence voltage protection |
■ |
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Negative sequence voltage (unbalanced voltage) |
■ |
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Vector zero sequence current protection (operation and shutdown input) |
■ |
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Vector zero sequence current protection (starting input) |
■ |
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Vector zero sequence overcurrent inverse time protection |
■ |
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Reverse power protection (power<0, negative value) |
■ |
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Low frequency protection |
■ |
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overheat protection |
■ |
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phase sequence protection |
■ |
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Under power protection |
■ |
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TE protection (applicable to explosion-proof motors) |
■ |
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TV disconnection protection |
■ |
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Measurement function |
measurement parameters |
Three phase voltage, current, power, power factor, frequency |
■ |
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electric energy | ■ |
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2~31Sub harmonic measurementAnd power quality | ■ |
startup mode |
protected mode |
■ |
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direct start |
■ |
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relay output |
4Road DO |
■ |
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Discrete input |
4roadDI |
■ |
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Statistical Function |
Protection action event records, remote signaling displacement SOE events, motor start records, and operation event statistics information |
■ |
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fault recording |
Record a total of 50 cycles before and after the fault |
■ |
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communication |
1roadRS485Communication,MODBUS_RTUagreement |
■ |
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transmitter output |
1road4~20mAtransmitter output |
■ |
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Note:Vector zero sequence protection is self-produced zero sequence current.


Selection instructions for matching transformers
The transformer selection code is not displayed, and the corresponding design specifications are not provided for transformer codes that are not displayed.
Selection Description: Trinity400AAbove, split type transformers, busbar transformers, and zero sequence transformers are all optional, only400AThe following three in one transformers are standard transformers.
Ma Bao Design determines the specifications for motor shutdown when the current is less than10%When selecting the current specification for the motor, it is considered to be stopped. Therefore, please pay attention to the rated current of the motor when choosing the current specification.
category |
option |
Selection code |
Instructions |
aperture |
Remarks |
Cable threading method |
Device supporting three in one external transformer specifications and current |
A0 |
1A |
¢15mm |
CTtransformation ratio2A/1mA,5P10The second time is2AThe matching transformer. (1ASpecification debugging) |
A2 |
6.3A |
¢15mm |
CTtransformation ratio6.3A/3.15mA,5P10The second time is5AThe matching transformer. |
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A4 |
50A |
¢15mm |
CTtransformation ratio50A/25mA |
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A5 |
100A |
¢30mm |
CTtransformation ratio100A/40mA,5P10. |
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A6 |
200 A |
¢30mm |
CTtransformation ratio200A/40mA,5P10. |
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A9 |
250A |
¢30mm |
CTtransformation ratio250A/50mA,5P10. |
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A10 |
400A |
¢40mm |
400A/80mA,5P10. |
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Specification and current of split current transformer for device matching |
B1 |
100Asplit-body |
¢35mm |
CTtransformation ratio100A/40mA,5P10. |
|
B2 |
250Asplit-body |
¢35mm |
CTtransformation ratio250A/50mA,5P10. |
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B3 |
400Asplit-body |
¢45mm |
CTtransformation ratio400A/80mA,5P10. |
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B4 |
500Asplit-body |
¢55mm |
CTtransformation ratio500A/100mA,5P10. |
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B5 |
600Asplit-body |
¢55mm |
CTtransformation ratio600A/120mA,5P10. |
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B6 |
800Asplit-body |
¢55mm |
CTtransformation ratio800A/160mA,5P10. |
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B7 |
1000Asplit-body |
¢55mm |
CTtransformation ratio1000A/200mA,5P10. |
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Mother row perforation method |
Install transformers on the busbar |
F1 |
300A |
50solo queue |
300A/60mA,5P10. |
F2 |
400A |
50solo queue |
400A/80mA,5P10. |
||
F3 |
500A |
50solo queue |
500A/100mA,5P10. |
||
F4 |
600A |
50or60solo queue |
600A/120mA,5P10. |
||
F5 |
800A |
60Single row or double row |
800A/160mA ,5P10. |
||
F6 |
1000A |
60Single row or double row |
1000A/200mA ,5P10. |
Notes:
1The specification current should be selected comprehensively based on the rated current, power factor, starting mode, and load conditions during starting of the motor.
2The aperture of different current specifications is indicated in the table. If there are special requirements (such as aperture and transformer wiring length), please indicate them when ordering.
3For renovation projects, the selection of current specifications should be differentiated according to the actual situation.
4Transformer standard wiring length3Rice. If longer is required, please specify in advance for customization.
5Customers can choose external transformers separately, and it is recommended to choose protective grade current transformers and secondary transformers5ATime optional6.3AUsed in conjunction with standard current transformers. quadratic1ATime optional1AUsed in conjunction with standard current transformers.
If the customer does not choose protectionCTMotor protection selectionCTConsider the maximum starting current of the motorCTThe saturation level.
6Due toCTDifferent transformation ratios, The hardware sampling circuit design is different, so the current transformer needs to be used with devices of the same specifications.

EOn the panel where the instrument needs to be installed, open one91mm×91mmSquare hole with terminal block installation depth95mm);
ERemove the installation clips on both sides after removing the device, and then insert it into the device hole from the front;
EInstall the clips from the rear alongequipmentInstall the middle groove and push the clip forward to tighten itJust enough.


