![]() Thorlabs uses this information to propose the most appropriate custom design and associated manufacturing solution.įinished designs, based on modelling results, describe the manufacturing process and specify the constituent materials. Discussions with you are held to establish detailed design specifications, define performance goals, and identify system requirements. ![]() Each project begins with a dedicated account manager establishing a strong collaborative relationship between your team and the technical resources at Thorlabs. Thorlabs takes pride in meeting the unique needs of your OEM application. In addition to performing custom design and manufacturing services, Thorlabs can complete final assembly and functionally test every OEM unit before shipping. Thorlabs’ team is experienced in implementing a range of design solutions, from the most basic mechanical sub-assembly to fully self-contained electromechanical assemblies with integrated drive electronics. In addition, Thorlabs’ automated manufacturing facility in Dortmund, Germany enables the high-volume production of motors capable of meeting your needs.īy working closely with you, each integration is tailored to meet the specific complexity, dimensional, and pricing requirements of the application. Our Multi-Position Sliders and Linear Stages showcase the smooth linear movement enabled by these piezo resonant motors and demonstrate that they are ideally suited for integration into a wide variety of end-applications, including those requiring the actuation of shutters and lids, the adjustment of beam-deflection mirror alignment, the toggling of locks, or the selective engagement of filters. The highly dynamic and high-precision Elliptec motors are favored for their simplicity of assembly and operation, as well as their compact dimensions, light weight, and low power consumption (see the Technical Data tab). Thorlabs’ multidisciplinary OEM applications engineering team is ready to design and build a custom Elliptec piezoelectric motor solution for your application. Modular, screw, and replaceable‐tip piezo actuators, including single axis, multi‐axis, closed‐loop and open‐loop actuators are also available.Elliptec Motor Manufacturing Capabilities Support OEM and Volume Applications Elliptec ® Piezoelectric Motor Technology for Your OEM Application ![]() “Thorlabs’ multilayer piezo actuators are based on modified PZT‐5H ceramics, which are sintered at low temperatures (<1000 ☌) to possess improved characteristics such as low electrical capacity, large displacement, and high stiffness.”īesides the newly released piezo chips/stacks, Thorlabs manufactures a wide range of high quality piezo actuators, including chips, stacks, tubes, shear piezo and bimorphs. “Reliability and durability of multilayer piezoelectric actuators are becoming increasingly important as the piezo application fields expand,” commented Cary Zhang, Piezo Product Line Manager. The high accuracy makes it significantly easier to design devices around our piezoelectric chips, as it allows the users to have a loose tolerance when choosing their other components, and helps guarantee a better parallelism when employing multiple chips between two substrates. Through a precision grinding process, the accuracy of the design height is ensured to better than ±5 μm. ![]() The piezoelectric chips are driven under a maximum voltage of 150 V, providing maximum free stroke displacements from 1.8 μm to 3.0 μm with sub‐millisecond response time. Their in‐house manufacturing facility can also be deployed to provide custom dimensions, voltage ranges, and coatings upon request. Stacks are available in lengths from 5 mm to 100 mm, providing free stroke displacements up to 100 μm. The chips can be manufactured with or without pre‐attached wires, with holes ranging from Ø2.0 mm to Ø6.0 mm, cross sections ranging from 5.0 mm × 5.0 mm to 10.0 mm × 10.0 mm, and thicknesses under 5.0 mm. These chips are ideal for laser tuning, micro‐ dispensing, and life‐science applications. Thorlabs has expanded its piezoelectric line to include new types of piezoelectric actuators, low‐voltage piezoelectric chips, and discrete stacks with through holes, enabling a higher level of flexibility when integrating the actuators into other devices.
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