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Size 14 (35000)

Dual Motion Size 14
See a Dual Motion linear actuator in action to fully understand what dual motion means and see a few examples of applications.
The Haydon Kerk™ 35000 Series (Size 14) of dual motion actuators are available with a limitless number of operating parameters allowing each device to be custom manufactured according to customer specific application requirements. Linear motion can be optimized based on a variety of lead screw resolutions yielding linear travel ranging from 0.0025mm to 0.04mm per step. Rotary motion is achieved with either 1.8° or 0.9° step angle motors in both single and double stack.
  • Specifications - 1.8° Single Stack (Linear or Rotary) +


    Series
    35H4-V 35H6-V
    Stack Length
    Single Single
    Wiring Units Bipolar Unipolar
    Step Angle degree 1.8° 1.8°
    Winding voltage VDC 2.33  5 12  5  12
    Current/Phase A rms 1.25  0.57  0.24 0.57 0.24 
    Resistance/Phase ohms (Ω) 1.86  8.8  50.5 8.8  50.5
    Inductance/Phase mH 2.8  13  60 6.5  30
    Power Input Watts 5.7 5.7
    Standard motors are Class B rated for a maximum temperature of 130°C (155°C for Class F)

     Size 14 Dual Motion 1.8°
    Linear Travel / Step
    Load Limit
    Order Code I.D.
    inches mm lbs n
    0.00006 0.0015* 10 44.4 U
    0.000098* 0.0025 10 44.4 AA
    0.00012 0.0030* 15 67 N
    0.00019* 0.005 15 67 AB
    0.00024 0.0061* 15 67 K
    0.00039* 0.01 15 67 AC
    0.00048 0.0121* 15 67 J
    0.00078* 0.02 15 67 AD
    0.00157* 0.04 15 67 AE
    *Values truncated 
  • Specifications - 0.9° Single Stack (Linear or Rotary) +


    Series
    35K4-V 35K6-V
    Stack Length
    Single Single
    Wiring Units Bipolar Unipolar
    Step Angle degree 0.9° 0.9°
    Winding voltage VDC 2.33  5 12  5  12
    Current/Phase A rms 1.25  0.57  0.24 0.57 0.24 
    Resistance/Phase ohms (Ω) 1.86  8.8  50.5 8.8  50.5
    Inductance/Phase mH 2.8  13  60 6.5  30
    Power Input Watts 5.7 5.7
    Standard motors are Class B rated for a maximum temperature of 130°C (155°C for Class F)

    Size 14 Dual Motion 0.9°
    Linear Travel / Step
    Load Limit
    Order Code I.D.
    inches mm lbs n
    0.00003
    0.00076* 10 44.4 BP
    0.00005*
    0.00125 10 44.4 AY
    0.00006 0.0015* 15 67 U
    0.000098* 0.0025 15 67 AA
    0.00012 0.0030* 15 67 N
    0.00019I 0.005 15 67 AB
    0.00024 0.0061* 15 67 K
    0.00039* 0.01 15 67 AC
    0.00079* 0.02 15 67 AD
    *Values truncated 
  • Specifications - 1.8° Double Stack (Rotary) +


    Series
    35M4-V
    Stack Length
    Double
    Wiring Units Bipolar
    Step Angle degree 1.8°
    Winding voltage VDC 2.33  5 12 
    Current/Phase A rms 2  0.91 0.38
    Resistance/Phase ohms (Ω) 1.2  5.5 31.6
    Inductance/Phase mH 1.95  7.63 65.1
    Power Input Watts 9.1
    Standard motors are Class B rated for a maximum temperature of 130°C (155°C for Class F)
  • Specifications - 0.9° Double Stack (Rotary) +


    Series
    35P4-V
    Stack Length
    Double
    Wiring Units Bipolar
    Step Angle degree 0.9°
    Winding voltage VDC 2.33  5 12 
    Current/Phase A rms 2  0.91 0.38
    Resistance/Phase ohms (Ω) 1.2  5.5 31.6
    Inductance/Phase mH 1.95  7.63 65.1
    Power Input Watts 9.1
    Standard motors are Class B rated for a maximum temperature of 130°C (155°C for Class F)
  • Dimensional Drawings +


    Please note: Metric numbers are for reference only.



  • Performance Curves +


    TORQUE vs PULSE RATE: Rotary Function
    Bipolar, 100% Duty Cycle



    35000 Series Linear Actuator Curves
    35000 Series Single Stack 1.8° and 0.9° degree curves in Hybrid Linear Actuators  
    35000 Series Double Stack 1.8° degree curves in Hybrid Linear Actuators

    NOTE:  All chopper drive curves were created with a 5 volt motor and a 40 volt power supply.

    Ramping can increase the performance of a motor either by increasing the top speed or getting a heavier load accelerated up to speed faster.  Also, deceleration can be used to stop the motor without overshoot.

    With L/R drives peak force and speeds are reduced, using a unipolar drive will yield a further 30% force reduction.
  • Wiring Diagram and Stepping Sequence +


    Hybrid Wiring
    Stepping Sequence- Hybrid Linear Actuator

    Bipolar Q2-Q3 Q1-Q4 Q6-Q7 Q5-Q8
    Unipolar Q1 Q2 Q3 Q4
    Step . . . .
    1 ON OFF ON OFF
    2 OFF ON ON OFF
    3 OFF ON OFF ON
    4 ON OFF OFF ON
    1 ON OFF ON OFF
  • Part Number Guide +



    LR

    35

    H

    H

    4

    J

    -

    05

    -

    910

    Prefix

    Series Number
    Designation

    Rotary Step Angle

    Linear Step Angle

    Coils

    1.8° Step Angle Code ID
    Resolution Travel/Step

    0.9° Step Angle Code ID Resolution Travel/Step


    Voltage


    Suffix

    LR= Linear/ Rotary

    35=35000

    H=1.8°
    K
    =0.9°

    M=1.8° Double Stack
    P=0.9°
    Double Stack

    H=1.8°
    K
    =0.9°

     

    4=Bipolar
    (4 wire)

    6=Unipolar (6 wire)



    U=.00006-in (.0015)
    AA=.000098-in (.0025)
    N=.00012-in (.0030)
    AB=.00019-in (.005)
    K=.00024-in (.0061)
    AC=.00039-in (.01)
    J=.00048-in (.0121)
    AD=.00078-in (.02)
    AE=.00157-in (.04)

    BP=.00003-in (.00076)
    AY=.00005-in (.00125)
    U=.00006-in (.0015)
    AA=.000098-in (.0025)
    N=.00012-in (.0030)
    AB=.00019-in (.005)
    K=.00024-in (.0061)
    AC=.00039-in (.01)
    AD=.00078-in (.02)


    05=5 VDC
    12=12 VDC
    SP=Mixed Voltages Custom V available


    Example:
    910=1in (26mm)
    XXX=Proprietary suffix assigned to a specific customer application. The identifier can apply to either a standard or custom part.


    NOTE: Dashes must be included in Part Number (–) as shown above. For assistance call our Engineering Team at 203 756 7441.


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