D.C. Motor Simplified SPICE Model All Rights Reserved Copyright (C) Bee Technologies Corporation 20121.

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Presentation transcript:

D.C. Motor Simplified SPICE Model All Rights Reserved Copyright (C) Bee Technologies Corporation 20121

Contents 1.Benefit of the Model 2.Model Feature 3.Parameter Settings 4.D.C. Motor Specification (Example) 5.Motor Start Up Simulation at Normal Load 6.Motor Start Up Simulation at Half of Normal Load 7.Lj of the Motor Model (1/2) 8.Application Example 9.Winding Characteristic Parameters: Lm 10.Winding Characteristic Parameters: Rm Simulation Index All Rights Reserved Copyright (C) Bee Technologies Corporation 20122

1. Benefit of the Model The model enables circuit designer to use D.C. Motor as load in their design which include: Back EMF, Torque(N  m) and Speed (rpm) characteristics. The model can be easily adjusted to your own D.C. Motor specifications by editing a few parameters that are provided in the spec-sheet. All Rights Reserved Copyright (C) Bee Technologies Corporation 20123

This D.C. Motor Simplified SPICE Model is for users who require the model of D.C. Motor as a part of their system. Perform electrical (voltage and current) and mechanical (speed and torque) characteristics at current load (Ampere) conditions. 2. Model Feature All Rights Reserved Copyright (C) Bee Technologies Corporation 20124

3. Parameter Settings If there is no measurement data, the default value will be used: Rm: motor winding resistance [  ] Lm: motor winding inductance [H] Data is given by D.C. motor spec-sheet: V_norm: normal voltage [V] mNm: normal load [mN  m] kRPM_norm: speed at normal load [kr/min] I_norm: current at normal load [A] Load Condition: IL: load current [A] All Rights Reserved Copyright (C) Bee Technologies Corporation Model Parameters: D.C. Motor model and Parameters with Default Value

4. D.C. Motor Specification (Example) All Rights Reserved Copyright (C) Bee Technologies Corporation D.C. Motor Specification Parameters are input

*Analysis directives:.TRAN 0 400m 0 0.1m.PROBE V(*) I(*) W(alias(*)) D(alias(*)) NOISE(alias(*)) All Rights Reserved Copyright (C) Bee Technologies Corporation Current Sensing Simplified D.C. Motor with RS-540SH Spec. Input the Supply No Load Voltage* and Series Resistance Simulation Circuit and Setting *No Load Voltage is adjusted until the D.C. motor voltage (VM) equals to the normal voltage (7.2V). Load Condition IL=I_norm 5. Motor Start Up Simulation at Normal Load (1/3)

5. Motor Start Up Simulation at Normal Load (2/3) All Rights Reserved Copyright (C) Bee Technologies Corporation Select “All” for the Voltages and Currents Data Collection Options.

5. Motor Start Up Simulation at Normal Load (3/3) All Rights Reserved Copyright (C) Bee Technologies Corporation D.C. Motor Current = 6.1A D.C. Motor Voltage = 7.2V D.C. Motor Speed = 14.4krpm Torque Load= 19.6mN  m

*Analysis directives:.TRAN 0 400m 0 0.1m.PROBE V(*) I(*) W(alias(*)) D(alias(*)) NOISE(alias(*)) All Rights Reserved Copyright (C) Bee Technologies Corporation Current Sensing Simplified D.C. Motor with RS-540SH Spec. Input the Supply No Load Voltage* and Series Resistance Simulation Circuit and Setting *No Load Voltage is adjusted until the D.C. motor voltage (VM) equals to the normal voltage (7.2V). Load Condition IL=I_norm 6. Motor Start Up Simulation at Half of Normal Load (1/2)

6. Motor Start Up Simulation at Half of Normal Load (2/2) All Rights Reserved Copyright (C) Bee Technologies Corporation D.C. Motor Current = 3.05A D.C. Motor Voltage = 8.725V D.C. Motor Speed = 18.4krpm Torque Load= 9.8mN  m

All Rights Reserved Copyright (C) Bee Technologies Corporation Double click to edit properties of the DC Motor model Input the Lj value or input “{Lj}” for parametric sweep Simulation Circuit and Setting 7. Lj of the Motor Model (1/2) Global parameter Lj is assigned *Analysis directives:.TRAN 0 400m 0 0.1m.STEP PARAM Lj LIST 100m, 200m

7. Lj of the Motor Model (2/2) All Rights Reserved Copyright (C) Bee Technologies Corporation D.C. Motor Current = 6.1A D.C. Motor Voltage = 7.2V D.C. Motor Speed = 14.4krpm Torque Load= 19.6mN  m The Motor Start-up Waveform is changed by the Lj values. Lj=200m Lj=100m Lj=200m Lj=100m Lj=200m Lj=100m

All Rights Reserved Copyright (C) Bee Technologies Corporation Simplified D.C. Motor with RS-380PH Spec at No load. Simulation Circuit and Setting No load IL= Application Example (1/3)

8. Application Example (2/3) All Rights Reserved Copyright (C) Bee Technologies Corporation MeasurementSimulation Motor Current (2A/Div) Motor Voltage (10V/Div)

8. Application Example (3/3) All Rights Reserved Copyright (C) Bee Technologies Corporation MeasurementSimulation IGBT: V GE IGBT: V CE IGBT: I C IGBT: V GE (10V/Div) IGBT: V CE (10V/Div) IGBT: I C (2A/Div)

9. Winding Characteristic Parameters: Lm All Rights Reserved Copyright (C) Bee Technologies Corporation Winding Characteristic: Lm Motor Spec. Load Condition Lm=165u Lm=100u The Motor Current Waveform is changed by the Lm values. Lm=165u Lm=100u

10. Winding Characteristic Parameters: Rm All Rights Reserved Copyright (C) Bee Technologies Corporation Winding Characteristic: Rm Motor Spec. Load Condition Rm=0.576 Rm=0.1 The Motor Start-up is Current changed by the Rm values.

Simulation Index All Rights Reserved Copyright (C) Bee Technologies Corporation SimulationsFolder name 1.Motor Start Up Simulation at Normal Load Motor Start Up Simulation at Haft of Normal Load Lj of the Motor Model Normal Half Lj