Vybronics - one of largest suppliers of cylindrical & coin vibration motors
Through Hole Vibrator Motors - picture 1

Through-Hole Vibration Motors

Through Hole Vibrator Motors - picture 2

All of the through hole vibration motors listed here are supplied with mounting brackets designed for though-hole PCB mount.   Depending on the motor model, the motor will have only through hole pins or a combination of  through-hole pins & wire leads to power the motor.  Generally speaking, the through hole pins are available in two lengths (1.6mm or 3.2mm) to accommodate standard or thick multi-layer printed circuit boards. Vibration motors with wire leads can be supplied  with any one of our standard connectors on the leads (see figure below), or we can install a connector of your choosing at the factory.  We can also fabricate custom brackets to your specifications.

Soldering Guidelines:    We ONLY recommend that a “selective soldering” system or hand soldering be used to mount these to the PCB.   Recommended soldering temperature is 175 to 200 C  (350 to 400 F) , with the minimum time required to properly flow the solder through the eyelet and form a normal solder fillet.  Warranty will be VOIDED if any other method is used. These motors can be damaged if they are “Reflow soldered”  and we recommend against using this process.  These motors can be damaged by liquids.   PCB’s with vibration motors mounted can not be washed, sprayed with flux or any other chemicals.  Wave soldering can not be used for coreless vibration motors because wave soldering requires all internal motor components to be heat resistant, but this is not the case.  At the temperatures required for wave soldering the motor’s magnet can demagnetize, coil windings loosen / deform and the oil on the bearing and the glue evaporate, all of which can result in degraded performance or total motor failure.  

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Part Number

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Config. Type Motor Size (mm) Voltage (Vdc) Current (mA) Rated speed (rpm) Vibe Force (G)
Dia Body
Length
Overall
Length
Rated Operating Rated
MAX
Typical*
Avg.
VZ4KC1B1051202 Z4KC1B1051202 VZ4KC1B1051202 cylindrical vibration motor preview image 4 4.0 11.3 15.6 3.0 2.2~3.6 70 53 14000 1.30
VZ4SL2A0280131 Z4SL2A0280131 VZ4SL2A0280131 cylindrical vibration motor preview image 2 4.0 10.0 15.9 1.3 1.1~1.6 85 57 10000 1.30
VZ4SL2B0270131 Z4SL2B0270131 VZ4SL2B0270131 cylindrical vibration motor preview image 2 4.0 10.0 14.8 3.0 2.2~3.6 60 42 14000 1.10
VZ4SL2B0280131 Z4SL2B0280131 VZ4SL2B0280131 cylindrical vibration motor preview image 2 4.0 10.0 15.9 3.0 2.2~3.6 70 45 12000 0.95
VZ6CL2A0080491 Z6CL2A0080491 VZ6CL2A0080491 cylindrical vibration motor preview image 3 6.0 15.0 20.5 1.3 0.9~1.6 80 48 7500 1.40
VZ6DC1A0050091 Z6DC1A0050091 VZ6DC1A0050091 cylindrical vibration motor preview image 4 6.0 12.3 17.3 1.3 0.9~1.6 85 60 8500 1.05
VZ6DC1B0050091 Z6DC1B0050091 VZ6DC1B0050091 cylindrical vibration motor preview image 4 6.0 12.3 17.3 3.0 2.2~3.6 70 52 11000 2.60
VZ6DC1B0730091 Z6DC1B0730091 VZ6DC1B0730091 cylindrical vibration motor preview image 4 6.0 12.3 18.8 3.0 2.2~3.6 90 64 7000 1.15
VZ6DCBB0056091 Z6DCBB0056091 VZ6DCBB0056091 cylindrical vibration motor preview image 4 6.0 12.3 17.3 3.0 2.2~3.6 70 52 11000 2.60
VZ6DCBB0735091 Z6DCBB0735091 VZ6DCBB0735091 cylindrical vibration motor preview image 4 6.0 12.3 18.8 3.0 2.2~3.6 90 64 7000 1.15
VZ6DL2A0050441 Z6DL2A0050441 VZ6DL2A0050441 cylindrical vibration motor preview image 2 6.0 12.0 17.1 1.3 0.9~1.6 85 58 8500 1.05
VZ6DL2A0170441 Z6DL2A0170441 VZ6DL2A0170441 cylindrical vibration motor preview image 2 6.0 12.0 17.3 1.3 0.9~1.6 100 73 7000 1.00
VZ6DL2B0050441 Z6DL2B0050441 VZ6DL2B0050441 cylindrical vibration motor preview image 2 6.0 12.0 17.1 3.0 2.0~3.8 70 54 11000 2.60
VZ6GL2A0050461 Z6GL2A0050461 VZ6GL2A0050461 cylindrical vibration motor preview image 3 6.0 13.5 18.6 1.3 0.9~1.6 70 42 8000 0.95
VZ6SC0A0060081 Z6SC0A0060081 VZ6SC0A0060081 cylindrical vibration motor preview image 4 6.0 10.3 14.4 1.3 0.9~1.6 90 62 8500 0.90
VZ6SC0A0150081 Z6SC0A0150081 VZ6SC0A0150081 cylindrical vibration motor preview image 4 6.0 10.3 14.0 1.3 0.9~1.6 80 67 9000 1.00
VZ6SC0B0060081 Z6SC0B0060081 VZ6SC0B0060081 cylindrical vibration motor preview image 4 6.0 10.3 14.4 3.0 2.2~3.6 70 47 10000 1.25
VZ6SC0B0150081 Z6SC0B0150081 VZ6SC0B0150081 cylindrical vibration motor preview image 4 6.0 10.3 14.0 3.0 2.2~3.6 70 45 10000 1.30
VZ6SC0B0170081 Z6SC0B0170081 VZ6SC0B0170081 cylindrical vibration motor preview image 4 6.0 10.3 15.7 3.0 2.2~3.6 75 56 8000 1.25
VZ6SCAA0061141 Z6SCAA0061141 VZ6SCAA0061141 cylindrical vibration motor preview image 4 6.0 10.3 14.4 1.3 0.9~1.6 90 61 8500 0.90
VZ6SCAB0061141 Z6SCAB0061141 VZ6SCAB0061141 cylindrical vibration motor preview image 4 6.0 10.3 14.4 3.0 2.2~3.6 70 54 10000 1.25
VZ6SCAB0171141 VZ6SCAB0171141 cylindrical vibration motor preview image 4 6.0 10.3 15.6 3.0 2.2~3.6 75 56 8000 1.30
VZ6SL2A0060071 Z6SL2A0060071 VZ6SL2A0060071 cylindrical vibration motor preview image 2 6.0 10.0 14.1 1.3 0.9~1.6 90 66 8500 0.90
VZ6SL2B0060071 Z6SL2B0060071 VZ6SL2B0060071 cylindrical vibration motor preview image 2 6.0 10.0 14.1 3.0 2.2~3.6 70 50 10000 1.25
VZ7AL2B1692612 Z7AL2B1692612 VZ7AL2B1692612 cylindrical vibration motor preview image 2 7.0 16.5 23.0 3.0 2.2~3.6 250 156 12000 7.10

The “typical current” is the average current from 20 motors selected at random from a given production lot. Copies of the test report showing the data collected for all 20 motors are available upon request.

 

Mounting Configurations of Vibration Motors

Config 2 WIRE LEAD W. PCB  BRACKET Config 3 WIRE LEAD W. PCB BRACKET 

Through Hole Vibrator Motors - WIRE LEAD W. PCB BRACKET

Through Hole Vibrator Motors - WIRE LEAD W. PCB BRACKET

  Config 4 THOUGH-HOLE PCB MOUNTED Config 7 PCB MID-MOUNT  
Through Hole Vibrator Motors - THOUGH-HOLE PCB MOUNTED

Through Hole Vibrator Motors - PCB MID-MOUNT

WIRE LEAD w.CONNECTOR

 

Through Hole Vibrator Motors - WIRE LEAD w. CONNECTOR

We can supply this motor with a variety of
different connectors

 

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