Dynamometer Test System

There are 4 various dynamometer systems
  • Take the servo motor as a load - AC/DC Motor Testing
  • Take hysteresis, eddy current, or powder as a load
  • Use the unique application of Prony braking to measure stepper motors and micromotors
  • Cogging Torque Test System
  • Choose the appropriate configuration according to your needs, and get the highest C/P value
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    Servomotor
    as a load
    Brake as a load
    Hub Motor
    Stepper Motor
    Cogging Torque
    ISG Motor
    BEMF Test
    Motor Durability Test

    Dynamometer Test System (With Servomotor as a load)

    Dynamometer Test System Process

    Applicable Motor Type:

    Hardwares:

    Test items:

    Software functions:

    Dynamometer System (With hysteresis or eddy-current or powder as a load)

    Dynamometer System

    Applicable Motor Type:

    Hardware:

    Test items:

    Software functions:

    Hub Motor Test System

    AC/DC Dynamometer Test System

    Hardware:

    Test items:

    Software functions:

    Stepper Motor Test System

    Stepper Motor Test System

    Load-Sensor & Pulley Specifications:

    Model Load Sensor Pulley Radius (mm)
    Directly wound
    on the shaft*1
    2.5mm 5mm 10mm 20mm
    JP-R5N 0.5N - 1.25mNm 2.5mNm 5mNm 10mNm
    JP-1N 1N - 2.5mNm 5mNm 10mNm 20mNm
    JP-2N 2N - 5mNm 10mNm 20mNm 40mNm
    JP-5N 5N - 12.5mNm 25mNm 50mNm 100mNm
    JP-10N 10N - 25mNm 50mNm 100mNm 200mNm
    JP-20N 20N - 50mNm 100mNm 200mNm 400mNm
    Torque = Load-Sensor Rating(N) × Pulley Radius(mm)
    *1: Torque will be related to motor shaft Radius.

    Profile:

    With the unique application of Prony (winding) braking.
    It automatically obtains the full pull-in and pull-out torque curves with high accuracy.

    Advantages:

    Measured Example:

    Measured Example of Stepper Motor Test System

    Specifications:

    Brake Prony braking
    Load-Sensor Six types: 0.5N, 1N, 2N, 5N, 10N, 20N
    Sensor sensitivity DC 2 V/ rating
    Torque precision Within ± 1% of torque range
    Maximum allowable load 200% of Sensor rating
    Torque meas. range T=Sensor Rating X Pulley Diameter/ 2
    Drive frequency range 16-50,000 Hz
    Drive signals Square wave (duty 1:1),
    TTL-level voltage signal or open-collector signal
    Operating System Microsoft Windows
    Power supply Single-phase AC100-120V ± 10%,50/ 60 Hz
    Single-phase AC200-240V ± 10%,50/ 60 Hz

    Tiny Motor Dynamometer Test System

    Motor Dynamometer Test System - Join-Precision

    Load-Sensor & Pulley Specifications:

    Model Load Sensor Pulley Radius (mm)
    Directly wound
    on the shaft *1
    2.5mm 5mm 10mm 20mm
    JP-R5N 0.5N - 1.25mNm 2.5mNm 5mNm 10mNm
    JP-1N 1N - 2.5mNm 5mNm 10mNm 20mNm
    JP-2N 2N - 5mNm 10mNm 20mNm 40mNm
    JP-5N 5N - 12.5mNm 25mNm 50mNm 100mNm
    JP-10N 10N - 25mNm 50mNm 100mNm 200mNm
    JP-20N 20N - 50mNm 100mNm 200mNm 400mNm
    Torque = Load-Sensor Rating(N) × Pulley Radius(mm)
    *1: Torque will be related to motor shaft Radius.

    Profile:

    Adopting the unique Prony (winding) braking technology,
    It is available to measure high-precision T-N curve

    Advantages:

    Measured Example:

    (X-axis:Speed /  Y-axis:Torque)

    Tiny Motor Dynamometer Measured Example

    Specifications:

    Brake Prony braking
    Load-Sensor Six types:0.5N, 1N, 2N, 5N, 10N, 20N
    Sensor sensitivity DC 2 V/ rating
    Torque precision Within ± 1% of torque range
    Maximum allowable load 200% of Sensor rating
    Torque meas. range T=Sensor Rating X Pulley Diameter/ 2
    Operating System Microsoft Windows
    Power supply Single-phase AC100-120V ± 10%,50/ 60 Hz
    Single-phase AC200-240V ± 10%,50/ 60 Hz


    Cogging Torque Test System

    The pictures are for reference only

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