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Thorlabs rotation motor

Thorlabs rotation motor

Thorlabs' PIAK10 Piezoelectric Inertia Actuator provides high-resolution linear motion control with a long piezo-controlled translation range in a compact package. An external feedback system will need to be used to overcome this variance. Powered by a 10 mm 0. The design of the piezo motor will rotate the tip of the lead screw during translation. For information on the design of our piezo inertia "slip-stick" motor actuators, please see the complete presentation here.

For more information, please see the full web presentation. Characters are Case-Sensitive. Our ZST series actuators provide smooth, precise linear motion control in a package measuring Powered by a small-diameter, two-phase, bi-polar stepper motor, this actuator operates at speeds of up to 2. The non-rotating drive tip reduces wear and friction and improves smoothness of motion by removing rotational contact at the tip.

Our ZST line of actuators all incorporate a stepper motor that provides sufficient torque for loads up to 40 N 8.

thorlabs rotation motor

This actuator comes with 0. Simply remove the existing manual adjuster from the mount and screw in the ZST actuator. Click to Enlarge. Hence, there are 49, microsteps per revolution of the motor. The output shaft of the motor goes into a This requires the motor to rotate The end result is the lead screw advances by 1. To calculate the linear displacement of the actuator per microstep, use the following:. Our ZFS06 Motorized Actuator provides smooth, precise linear motion control in a sleek, compact package measuring just This compact profile reduces the distance between the end of the actuator and optomechanical components, keeping the center of mass closer to the contact point than the ZST actuator featured above.

If power is not supplied to the actuator, manual adjustment is achievable using the rear-located thumbscrew.Stepper Motor Cables Thorlabs offers a variety of cables to support several stepper motor actuator and controller combinations.

Precision Rotary Stage (Multi-Axis Rotation Options)

In order to see which cable is compatible with a given combination of stepper motor and controller, please see the table below. The pin assignment for this cable is given in the Pin Diagrams tab. Although it uses a pin connector, this cable is not compatible with any of our stepper motors. Characters are Case-Sensitive.

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Close [X]. Related Items Motorized Actuators. Stepper Motor Controllers. Motorized Stages. Motorized Rotation Stages. Piezo Cables. BNC Cables. Nanopositioning Stages. Cable Management. Identification Supplies. Please Wait. Please Give Us Your Feedback. First Name. Contact Me:. Prefer to Request a Quote? Request Quote. Enter Comments Below:. Submit Feedback:. Click for a new code. What is the difference to the PAA?

Response from Radu at Thorlabs: While both cables have the same connectors, they are wired quite differently. One can see these differences in the pin diagram tab. PAA was designed to be used with our non-encoded stepper motor stages or actuators, while PAA was designed for encoded, brushed DC Servo stages or actuators.

Consequently, PAA has four pins who play an active role in powering up a two-phase stepper motor, while PAA only has two pins dedicated to powering up a motor. DA14 and DE15 are all regular connectors widely used. These connectors cost everywhere about 1 - 2 dollars. Frequencies of operations are not very high either, so no need for specially high frequency cables. Thus, wires are not that expensive either.

Response from Arunthathi Thorlabs: Thanks for your feedback. I will contact you directly to provide further information regarding the price. Thank you for contacting us. We can offer PAA as a special in lengths of 3 and 5 m.

However, we do not recommend going over 5 m as the increase in resistance can cause some signal errors. The cables can be very difficult to find. Please refine the search so searches like "stepper motor cables" will return results.The tilted worm screw arrangement allows for 4 symmetric mounting holes as compared to other designs that only feature 2 or 3 mounting holes.

This enables the URS-B stages to provide better support of higher or off-centered loads. Additionally, the flexible preloading system for the worm gear was improved to guarantee a backlash free operation. For the tightest position control, the rotary encoder is mounted directly on the worm screw.

This eliminates most of the possible error sources associated with indirect read feedback devices. Newport also offers a version of the DC motor, All URS-B rotation stages feature a proprietary ball bearing to provide a low-profile compact stage with exceptional stiffness, high reliability and low wobble and eccentricity.

thorlabs rotation motor

The typical performance values are two times better than the guaranteed specifications. Industrial Motion. Custom Motion Solutions. Vacuum Compatible Motorized Positioners. Optical Posts 0. Optical Post Assemblies 0. Optical Pedestal Assemblies 1. Optical Post Assemblies 1.

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Baratron Capacitance Manometers. Granville Phillips Vacuum Gauges. Mass Flow Controllers.

thorlabs rotation motor

Process Automation. Mass Spectrometers. MKS Instruments. Compare All. Economical, general purpose Flexible preloading system guarantees backlash-free operation Tilted worm screw arrangement and 4 symmetric mounting holes provide better support for cantilevered loads with a smaller footprint Plug and Play — ESP compatible Ultra-high-resolution encoder feedback provides high accuracy and bi-directional repeatability See All Features. Products Show Filters:.

Compatibility: All Metric Imperial. Reset all filters. Contact Us. Show All.The ELL14 can also be purchased separately. The assembled components of the ELL14K are shown in the image to the right, with key features labeled.

The motors are highly dynamic and have no gearing. The tips of both motor housings are in firm contact with the plastic track at the base of mount, as can be seen in the image at the right. The motors are installed with opposite orientations and translation in both directions occurs when one motor pushes the track forward while the other pulls it backward. When power is not applied to the motors, the stage is held in place by an approximately 0. The open frame format, versatility, and simplicity of this rotation mount makes it attractive for OEM applications, as it can be customized according to customer requirements and produced in high-volume quantities.

Please contact us to discuss your specific requirements so that we may tailor a solution to meet the needs of your application. Thorlabs offers software for our Elliptec products capable of providing full and independent control of the mount. When the interface board is used as an accessory to change the position of the mount, its status in the software is automatically updated.

A single bus distributor can connect up to four Elliptec devices; up to 16 devices can be connected if the buses are daisy chained. Alternatively, up to 16 devices can be spliced onto a single ribbon cord.

The rotation mount and interface board included in the ELL14K bundle are robust to general handling. To ensure reliable operation, keep the surface of the plastic track contacted by the motors free of oils, dirt, and dust. It is not necessary to wear gloves while handling the rotation mount, but avoid touching the track to keep it free of oils from fingerprints.

XY Translation Stages with Rotating Platform

If it is necessary to clean the track, it may be wiped with isopropyl alcohol or mineral spirits white spirit. Do not use acetone, as this solvent will damage the plastic track. The open frame format of the ELL14 can tolerate up to 8 kV of static discharge.

ESD precautions should be taken, as an electrostatic discharge can produce an electrical signal that may cause an unintended movement of the mount. A bending load in excess of g applied to the board may cause the PCB to deform, which will degrade the performance of the rotation mount. As readings from a magnetic sensor are used during the homing and positioning of the mount, avoid subjecting the structural PCB to excessive loads or magnetic fields.

The rotation mount may be mounted either vertically or horizontally.The KDC DC Servo Controllersold separately below, is the ideal companion for achieving smooth, continuous motion that can be automated via the software interface.

The Kinesis Software features. NET compatible languages to create custom applications. Low-level DLL libraries are included for applications not expected to use the. NET framework. A Central Sequence Manager supports integration and synchronization of all Thorlabs motion control hardware.

By providing these common software platforms, Thorlabs has ensured that users can easily mix and match any of the Kinesis and APT controllers in a single application, while only having to learn a single set of software tools. In this way, it is perfectly feasible to combine any of the controllers from single-axis to multi-axis systems and control all from a single, PC-based unified software interface.

Stepper Motor Rotation Mount

The software packages allow two methods of usage: graphical user interface GUI utilities for direct interaction with and control of the controllers 'out of the box', and a set of programming interfaces that allow custom-integrated positioning and alignment solutions to be easily programmed in the development language of choice.

A range of video tutorials is available to help explain our APT system software. These tutorials provide an overview of the software and the APT Config utility. Additionally, a tutorial video is available to explain how to select simulator mode within the software, which allows the user to experiment with the software without a controller connected.

Please select the APT Tutorials tab above to view these videos. Vernier scales are typically used to add precision to standard, evenly divided scales such as the scale on Thorlabs' rotation mounts.

A vernier scale has found common use in many precision measurement tools, the most common being calipers and micrometers. The direct vernier scale uses two scales side-by-side: the main scale and the vernier scale. Hence, the lines on the main scale will not line up with all the lines on the vernier scale.

Only one line from the vernier scale will match well with one line of the main scale, and that is the trick to reading a vernier scale. Figures 1 through 3 show a vernier scale system for three different situations. In each case, the scale on the left is the main scale, while the small scale on the right is the vernier scale. When reading a vernier scale, the main scale is used for the gross number, and the vernier scale gives the precision value.

In this manner, a standard ruler or micrometer can become a precision tool. The 0 on the vernier scale is the "pointer" marked by a red arrow in Figs. In Figure 1 we see the pointer is lined up directly with the Notice that the only other vernier scale tick mark that lines up well with the main scale is That is essentially all there is to reading a vernier scale.

It's a very straightforward way of increasing the precision of a measurement tool. Here we see that the pointer is no longer aligned with a scale line, instead it is slightly above The first vernier line that coincides with a main scale line is the 5, shown with a blue arrow.

The vernier scale gives the final digit of precision; since the 5 is aligned to the main scale, the precision measurement for Figure 2 is Figure 3 shows just this. Again, the pointer line is in between If we look closely, we see that the vernier 7 marked with a blue arrow is very closely aligned to the main scale, giving a precision measurement of However, the vernier 7 is very slightly above the main scale mark, and we can see that the vernier 8 directly above 7 is slightly below its corresponding main scale mark.

Hence, the scale on Figure 3 could be read as A reading error of about 0. As we've seen here, vernier scales add precision to a standard scale measurement. While it takes a bit of getting used to, with a little practice, reading these scales is fairly straightforward.It incorporates a micro-stepping motor, worm gear assembly, precision bearings, and a low-profile design with a height of The central aperture features an SM2 thread on the rotating and the non-rotating parts, making the stage compatible with our SM2 lens tubes.

The holes are spaced apart such that an imperial stage may also be mounted to a metric breadboard and vice versa.

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We also offer two mounting adapters: the NRSP2 bracket is designed for secure vertical mounting of the stage and the NRSP5 adapter enables the HDR50 rotation stage to be mounted to select translation stages. Software This stage can be operated with the user friendly Kinesis software package, which allows the user to quickly set up complex move sequences. It also features. NET compatible languages to create custom applications. All relevant operating parameters are set automatically by the software for Thorlabs stage and actuator products.

For more details, please see the Kinesis Software and Kinesis Tutorials tabs. The Kinesis Software features new. Low level DLL libraries are included for applications not expected to use the. NET framework. A Central Sequence Manager supports integration and synchronization of all Thorlabs motion control hardware.

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By providing these common software platforms, Thorlabs has ensured that users can easily mix and match any of the APT and Kinesis controllers in a single application, while only having to learn a single set of software tools. In this way, it is perfectly feasible to combine any of the controllers from the low-powered, single-axis to the high-powered, multi-axis systems and control all from a single, PC-based unified software interface.

The software packages allow two methods of usage: graphical user interface GUI utilities for direct interaction with and control of the controllers 'out of the box', and a set of programming interfaces that allow custom-integrated positioning and alignment solutions to be easily programmed in the development language of choice. C This programming language is designed to allow multiple programming paradigms, or languages, to be used, thus allowing for complex problems to be solved in an easy or efficient manner.

It encompasses typing, imperative, declarative, functional, generic, object-oriented, and component-oriented programming. By providing functionality with this common software platform, Thorlabs has ensured that users can easily mix and match any of the Kinesis controllers in a single application, while only having to learn a single set of software tools.

The Kinesis System Software allows two methods of usage: graphical user interface GUI utilities for direct interaction and control of the controllers 'out of the box', and a set of programming interfaces that allow custom-integrated positioning and alignment solutions to be easily programmed in the development language of choice. For a collection of example projects that can be compiled and run to demonstrate the different ways in which developers can build on the Kinesis motion control libraries, click on the links below.

Please note that a separate integrated development environment IDE e.Thorlabs' Motorized Translation Stages provide electronically controlled linear motion along a well-defined axis.

Each stage is equipped with a 1. The moving platform contains holes for alignment pins that ensure orthogonality when the stage is stacked with other stages or connected to our accessories. Horizontal loads of 20 lbs 9 kg and vertical loads of 10 lbs 4.

The stages feature hardened steel linear bearings for precision motion and long life. Mounting Adapters and Stage Combinations Thorlabs' adapter plates and brackets provide a convenient way to mount the MT1-Z8 on an optical table or breadboard; to allow several stages to be combined in XY, XZ, or XYZ configurations; and to reduce the overall length of the stage by repositioning the stage's actuator. Photos of these adapters in use are shown below.

If desired, the ZB actuator can be replaced by any manual or motorized 12 mm 0. Power supplies are sold separately; options are listed below. For the ZB, there are encoder counts per revolution of the motor. The output shaft of the motor goes into a planetary gear head. This requires the motor to rotate 67 times to rotate the 1. The end result is the lead screw advances by 1. The Kinesis Software features. NET compatible languages to create custom applications.

Low-level DLL libraries are included for applications not expected to use the.

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NET framework. A Central Sequence Manager supports integration and synchronization of all Thorlabs motion control hardware. By providing these common software platforms, Thorlabs has ensured that users can easily mix and match any of the Kinesis and APT controllers in a single application, while only having to learn a single set of software tools.

In this way, it is perfectly feasible to combine any of the controllers from single-axis to multi-axis systems and control all from a single, PC-based unified software interface.