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Piezo Stack Actuator 3x3x10mm 10um Displacement 1 KHz

SMPAK153310D10K1 - 1 Pc/Set
Manufacturer part number: SMPAK153310D10K1
Availability: 9 in stock
$85.00
$11.99
$0.00
/1 Pc Set
Condition: New

Part Number: SMPAK153310D10K1

Stack piezo actuators are used as linear electromechanical drivers or motors. They act mainly like an expanding element generating a compressive force. The complete motion cycle is nearly proportional to a voltage signal input from DC up to high frequencies. Compact size, accurate positioning in nm, high-speed response and large blocking force. High energy conversion efficiency, low power consumption and no electromagnetic noise. Easy to be controlled by voltage.

This stack actuator can vibrate at frequencies up to 1 KHz, continuously, PROVIDED that Current is not higher than 0.09A and the unit needs to be pre-loaded @ 130N.
If these parameters are not observed, the actuator will generate heat due to dielectric loss and may damage the unit. Heat can also be caused by incorrect mounting.
Temperatures above 85C for periods longer than 30 minutes will damage/destroy its piezoelectric properties.

Dimensions(LxWxH): 5×5x10mm
Capacitance: 0.30uF±20%
Maximum Displacement: 10 µm@150V±10%     
Max Input Voltage: 150 V DC
Blocking Force: 330 N@150V
Stiffness: 33 N/um
Test Condition: 25±3 °C 40~70% R.H.

Applications: Precision mechanics and mechanical engineering. Life sciences, Medicine and Biology. Pneumatic & Hydraulic valves. Nano positioning/ High-speed switching. Active and Adaptive optics. and others.
Notes: This stack actuator can vibrate at frequencies up to 1 KHz, continuously, PROVIDED that Current is not higher than 0.09A and the unit needs to be pre-loaded @ 130N.
If these parameters are not observed, the actuator will generate heat due to dielectric loss and may damage the unit. Heat can also be caused by incorrect mounting.
Temperatures above 85C for periods longer than 30 minutes will damage/destroy its piezoelectric properties.

Specification of products can change without notice.

 

Additional Notes:
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