TeoSys Laser Inscription on Glass Micromachining Channels in Stainless using 532nm 2 Micron Spot Size in UV Laser Ablation of Zinc Sulphide UV Laser Cutting of Wire Mesh into 295um Disc UV Laser Wire Stripping 2D Barcoding on Pinhead UV Laser Drilling of Glass Disc Aluminum Ablation from Glass Substrate using UV Excimer Laser Ablation

Laser Micromachining Systems & Contract Services

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 Custom Laser Systems, Laser Drilling, Laser Marking, Laser Cutting, Laser Etching, Laser Milling, Laser Stripping   Sales:sales@teosys.com

 

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Our Laser Based Applications and Systems  

TeoSys specializes in the customization of both off-the-shelf and proprietary components to meet the specific customer's requirements.  In addition to pure systems integration, TeoSys provides customized hardware and software that is not found anywhere else in order to effectively integrate the modules of a laser system together.

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LMS-5000 Laser Drilling Systems  

The LMS-5000 consists of a 532nm Nd YAG Laser, Control System, Motion System, Structure, Power Supply and Software.  The Laser consists of two major elements.  The first is the laser head which is integrated into the upper systems structure.  The second element of the laser is its power supply which resides in a cavity below the system.  The laser power supply is not attached to, or otherwise part of the main system structure.  The control system consists of two PC’s and an integrated PLC (Programmable Logic Controller), which in this case is an Ensemble from Aerotech motion.  The motion system consists of a ladder assembly, a track assembly, a separator plate system, a pickup arm, an indexing plate and an ejector system.  The structure consists of three enclosures supported by a single welded frame.  The upper enclosure houses the laser head, beam delivery and X-Y stages.  The middle enclosure houses the parts handling system and the optical flow tester.  The lower enclosure houses the PC’s, motion amps, power delivery, power supplies and transformers, UPS, DIN rail system, KVM and Laser Power Supply.  Custom software resides on both PC’s as well as the Ensemble controller.

LMS-5000 Laser Drilling System LMS-5000 Laser Drilling System LMS-5000 Laser Drilling System - Full Automation

The Laser system is fully integrated with a Spiricon (Ophir) beam profilometer as well as a 532nm laser energy meter.  These tools allow the customer to assess the status of the laser at any time. 

        

See below for an example of this system drilling in action!!!

532nm Laser in Action

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Medical Laser Marking Systems  

Below is an example of where we developed a custom laser solution for a standard off-the-shelf parts feeder.  We found that integrating 2 laser sources (CO2) provided a faster solution which then met the customer speed requirements. 

   

The triggering of the dual laser system was an issue.  TeoSys designed and developed a specialized sensor system and error detecting software that determined when the lasers were to fire and send the appropriate laser trigger to both systems.

    

The sensor system included the sensors and the controller box with custom electrical and firmware.  TeoSys has a full engineering consulting capability to allow for the integration of many different types of modules.

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Medical Laser Drilling Systems  

 

Medical Application Drilling Tubes    Medical Application Drilling Tubes - Automated Laser Drilling System

       Medical Application Drilling Tubes - Medical Tube Drilling

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Harvard University Laser Cutting Systems  

Below is an example of a standard TeoSys low cost Excimer laser micromachining system which was installed at Harvard University for the cutting of small micro-structures.  The system is small enough to fit on a desk in the microrobotics laboratory.

LMS-650 at Harvard University 

 

This picture below is a 40mg bimorph piezoelectric actuator for a micromechanical flying insect. Contains three constituent components: bulk piezoceramic, carbon fiber, and glass fiber composites. All materials cut with the Series 650.

Harvard University - Flying Insect     IEEE Spectrum - Flying Insect   

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Last modified: October 02, 2009