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Electrical Training Equipment

Electrical Machine Trainer Teaching Equipment Didactic Equipment Electrical Workbench

Item No.: ZE3135
Electrical Machine Trainer Teaching Equipment Didactic Equipment Electrical Workbench
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Description
ZE3135 Electrical Machine Trainer Teaching Equipment Didactic Equipment Electrical Workbench

1.1 Profile
This trainer include various types of inductive motor and control elements, 
through experiments students can be familiar with AC motor features, master 
its control principles and control mode, it will cultivate students’ technical skills 
and knowledge. The trainer is suitable for vocational school students, technical 
schools students, colleges students who major in electrical technology, 
electronics technology, mechatronics technology etc.
1.2 Character
(1)Training workbench use aluminum column structure frame, it include 
meter box and power box to test and measure technical parameter, it is 
easy to use and it is not easy to be broken. 
(2) Equipped with motors, students can make combination, and finish many 
training contents. 
(3) Training workbench has high safety system. 
2 Technical parameter
(1)  Input power: single phase, three wires, 220V±10% 50Hz
(2)  Dimension: 1600mm×800mm×1300mm
(3)  Whole capacity:<2.0KVA
(4)  Weight: <100kg
(5)  Work environment:
Environment temperature: -10℃~+40℃
Relative humidity:  <85%(25℃)



3 Product consist of 
3.1   Power control panel
Power control panel use aluminum structure metal panel, all close type
boxes structure
3.2 Training workbench
Training workbench use aluminum structure. There are universal 4 wheels at the bottom of workbench, there are 2 breakers on wheel. The trainer can be moved or stop convenient . The workbench panel thick is 25mm high density substrate , there is high temperature high pressure anti-fire treatment process. It equip with three guide rail type drawer, 2 push and plug cabinet. The structure is sound and reliable, outlook is beautiful. 
3.3   Power control panel
(1) Three phases five wires power input, go through residual-current circuit 
breaker ( RCCB ) control, with emergency stop button, power will be cut off 
when at emergency condition.
(2) Equip with power indicator, European power plug, safety power output 
terminal.  
(3) Equip with AC motor protection switch, inner with short circuit protection 
function.  
3.4 Component included
(1) Single phase capacitor electrical machine
(2) Three phase squirrel-cage asynchronous electrical machine
(3) Three phases permanentmagnet synchronous motor
(4) DC motor
(5) Three phases transformer unit 
(6) Three phases self coupling voltage regulator unit
(7) Three phases capacitor load unit
(8) Three phases inductive load unit
(9) 4mm safety Electrical cables 20 eas
4  Training content
4.1 Single phase capacitor electrical machine experiment
(1) Single phase capacitor electrical machine static test
(2) Single phase capacitor electrical machine principle feature and run test
(3) Single phase capacitor electrical machine start run control
4.2 Three phase squirrel-cage asynchronous electrical machine experiment
(1) Three phase squirrel-cage asynchronous electrical machine principle and feature
(2) Three phase squirrel-cage asynchronous electrical machine static test
(3) Three phase squirrel-cage asynchronous electrical machine run test
4.3 Three phases permanentmagnet synchronous motor experiment
(1) Three phases permanentmagnet synchronous motor principle and features
(2) Three phases permanentmagnet synchronous motor static test
(3) Three phases permanentmagnet synchronous motor connection and run
(4) Three phases permanentmagnet synchronous motor start control 
experiment
4.4 DC motor/generator experiment
(1) DC motor principle feature
(2) DC motor static test feature 
(3) DC motor connection and run 
(4) DC generator run experiment 
(5) DC generator with load experiment
4.5 Electrical machine with load experiment
(1) Capacitive load electric feature
(2) Inductive load electric feature
(3) Different load feature run parameter compare 
(4) Different inductive load parameter compare
(5) Capacitive load and inductive load compare experiment