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Germany

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Due to their compact and flexible design, LS series laser machines guarantee an easy entry into the world of laser processing. We offer manual and automated solutions: - Palletising systems - Bar and coil feed systems - Pick-and-place systems - Robots You can realize the following laser material processing with the LS series: - laser machining for welding, clean welding, cutting, drilling, hardening, and structuring - micro processing - integration of CO2 , Nd: YAG, diode, fibre or disk-type lasers and ultra-short pulsed laser Please get furher information at Download.

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Germany

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Do you have individual requirements for your laser processing center that our standard laser system of the LS series cannot meet? We develop together with our customers from stand-alone systems to integration into existing lines. In doing so, system know-how meets automation and laser technology: - robot solutions - portal variants - rotary table machines - sliding table systems - scanner solutions - integrated solutions based on VARIOMODUL® or, - at your request, on standard laser machines of the LS series For further information please take a look at our homepage.

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Germany

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WiTEC Performance is the perfect solution for the most precise and fastest machining of your sheet material! The Performance is the flagship solution of the WiTEC machine family. A machine concept based on a FEM optimized design, built using premier precision components, and equipped with linear magnet motor technology, the Performance is able to achieve the highest levels of precision and speed, up to 80m/min! Thanks to the combination of Wissner’s innovative and patented hold&press Technology and sophisticated Vacuum System, you can mill even the smallest parts all the way through the finishing cut-out! No need for any adhesive paper or foil, no need for leaving connector tabs, and no deburring or cleaning is necessary! The ready-finished parts will go directly from the machine table to the end customer!

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Germany

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Das Laser Cutter- und Gravur-System L-1200 bietet einzigartige Präzision und Schnittqualität bei höchsten Schnittgeschwindigkeiten, die sich je nach zu bearbeitenden Material durch individuelle Laserleistungen anpassen lassen. Alle eurolaser Cutter-Systeme sind mit Laserleistungen von 60-650 Watt erhältlich. Für Sie bedeutet das anwendungsbezogene Effizienz. The modular design enables eurolaser systems to be specially configured to suit every requirement. We analyze your requirements and configure the laser system individually for you. The usage of eurolaser laser machines enables you to process a wide range of materials, such as cutting of plastics, foams, textiles, adhesive foils, wood, acrylic, composite materials and much more. We are pleased to run a cutting test in our Application Center by using your individual material. Subsequently, you will receive a detailed test report in order to identify how your material was cut and engraved with our laser machines.

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Germany

The laser welding systems of the AL series can be used universally. They might be integrated into existing machine structures or used with an application device for manual welding. In combination with our NC-controlled laser machining table AL-T you get a real professional solution. We offer the required performance class for every application. You can choose between 75 and 900 W. There is a wide range of processing lenses and equipment options for these laser systems. Regardless of whether you use a simple 90 ° deflection lens, the tilt-swivel lens or our circular welding lens - the laser beam always reaches the desired point on the workpiece with pinpoint accuracy. Additional equipment options are optionally available for the AL, such as: • Micro welding device for a welding spot diameter <100 µm • Rotary axis module for cylindrical welds • automatic wire feeder • Workpiece holder • camera system •…and much more

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Germany

The ALM laser system is particularly suitable for welding large molds and tools, housings and machine components - wherever mobility and maneuverability are required. With the ALM you have exactly the mobility you need for welding. No matter whether in your own workshop or on site at the customer. The laser is ready for use within a few minutes. The arm can be quickly adjusted to the area to be welded and fixed in the desired working position using electro-hydraulic brakes. The operator then has the option of welding manually using a joystick or semi-automatically. One or more axes are automatically moved at a preset speed and with the joystick curves can be driven or small corrections made.

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Germany

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The eurolaser laser cutting machine M-1200 is a compact model with a processing area of 1,330 x 1,230 mm (52.3" x 48.4"). Just like all eurolaser laser cutting machines the sealed-off laser technology in connection with exchangeable modular assembly groups reduces the lifecycle costs to a minimum. An investment which pays off! The modular design enables eurolaser systems to be specially configured to suit every requirement. We analyze your requirements and configure the laser system individually for you. The usage of eurolaser laser machines enables you to process a wide range of materials, such as cutting of plastics, foams, textiles, adhesive foils, wood, acrylic, composite materials and much more. We are pleased to run a cutting test in our Application Center by using your individual material. Subsequently, you will receive a detailed test report in order to identify how your material was cut and engraved with our laser machines.

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Germany

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With the laser cutting and engraving machine XL-1200 for acrylics eurolaser offers the possibility to process extremely broad materials on a comparatively small system. The processing area is 2,270 mm x 1,230 mm (89.3" x 48.4"). With the optional camera recognition system which is also available for other systems the production flow can be automated, leading to an increased economy of the laser processing. The requirement-focused modular design enables eurolaser laser systems to be specially configured to suit every requirement and at the same time provides the necessary flexibility. The system design is focused mainly on requirements that are generated from later use.

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Germany

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Acrylics can be cut and engraved on a processing area of 1,800 mm x 3,200 mm (70.8" x 126.0"). This CO2 laser machine is one of the largest among the eurolaser series and is available with many optional features. An ideal machine size for all applications requiring plenty of space. The requirement-focused modular design enables eurolaser laser systems to be specially configured to suit every requirement and at the same time provides the necessary flexibility. The system design is focused mainly on requirements that are generated from later use.

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Germany

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The eurolaser laser cutting machine M-1200 for acrylic glass is a compact model with a processing area of 1,330 mm x 1,230 mm (52.3" x 48.4"). Just like all eurolaser laser cutting machines the sealed-off laser technology in connection with exchangeable modular assembly groups reduces the lifecycle costs to a minimum. An investment which pays off! The requirement-focused modular design enables eurolaser laser systems to be specially configured to suit every requirement and at the same time provides the necessary flexibility. The system design is focused mainly on requirements that are generated from later use.

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Germany

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With the laser cutting and engraving machine XL-1200 eurolaser offers the possibility to process extremely broad materials on a comparatively small system. The processing area is 2,270 mm x 1,230 mm (89.3" x 48.4"). With the optional camera recognition system which is also available for other systems the production flow can be automated, leading to an increased economy of the laser processing. The modular design enables eurolaser systems to be specially configured to suit every requirement. We analyze your requirements and configure the laser system individually for you. The usage of eurolaser laser machines enables you to process a wide range of materials, such as cutting of plastics, foams, textiles, adhesive foils, wood, acrylic, composite materials and much more. We are pleased to run a cutting test in our Application Center by using your individual material. Subsequently, you will receive a detailed test report in order to identify how your material was cut and engraved with

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Germany

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Various materials can be cut and engraved on a processing area of 1,800 x 3,200 mm (70.8" x 126"). This CO2 laser machine is one of the largest among the eurolaser series and is available with many optional features. An ideal machine size for all applications requiring plenty of space. The modular design enables eurolaser systems to be specially configured to suit every requirement. We analyze your requirements and configure the laser system individually for you. The usage of eurolaser laser machines enables you to process a wide range of materials, such as cutting of plastics, foams, textiles, adhesive foils, wood, acrylic, composite materials and much more. We are pleased to run a cutting test in our Application Center by using your individual material. Subsequently, you will receive a detailed test report in order to identify how your material was cut and engraved with our laser machines.

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Germany

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Wood can be cut and engraved on a processing area of 1,800 x 3,200 mm (70.8" x 126"). This CO2 laser machine is one of the largest among the eurolaser series and is available with many optional features. An ideal machine size for all applications requiring plenty of space.

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Germany

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The CO2 laser machine XL-3200 with a processing area of 2,270 x 3,200 mm (89.3" x 126") is the largest model of the XL series. The huge dimensions allow the processing of big-size materials. The high acceleration of the optical head releasing the laser beam assures best efficiency even on this table size. The modular design enables eurolaser systems to be specially configured to suit every requirement. We analyze your requirements and configure the laser system individually for you. The usage of eurolaser laser machines enables you to process a wide range of materials, such as cutting of plastics, foams, textiles, adhesive foils, wood, acrylic, composite materials and much more. We are pleased to run a cutting test in our Application Center by using your individual material. Subsequently, you will receive a detailed test report in order to identify how your material was cut and engraved with our laser machines.

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Germany

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The CO2 laser machine XL-3200 with a processing area of 2,270 x 3,200 mm (89.3" x 126") is the largest model of the XL series. The huge dimensions allow the processing of big-size textiles. The high acceleration of the optical head releasing the laser beam assures best efficiency even on this table size.

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Germany

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Textilies can be cut and engraved on a processing area of 1,800 x 3,200 mm (70.9" x 126"). This CO2 laser machine is one of the largest among the eurolaser cutter series and is available with many optional features. An ideal machine size for all applications requiring plenty of space.

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Germany

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The CO2 laser machine XL-3200 with a processing area of 2,270 x 3,200 mm (89.3" x 126") is the largest model of the XL series. The huge dimensions allow the processing of big-size wooden plates. The high acceleration of the optical head releasing the laser beam assures best efficiency even on this table size.

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Germany

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This is the accessories used in valve.

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Germany

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We offer our customers laser cutting of fine and thin sheets, as well as laser fine cutting of materials with very low material thicknesses (0.02 mm – 4.00 mm) as contract manufacturing. Of course we manufacture from the first sample and also up to mass production. If you do not know whether your material is suitable for processing with the laser, we will be happy to find out for you and provide you with a first demonstration sample free of charge.

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Germany

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Use our online inquiry form to place your request through our website at any time without any additional effort. Simply upload your manufacturing data to our server and deposit the material you require.

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Germany

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Baking varnish is a special joining technology for sheet metal packages. After the individual lamellas have been cut, electrical steel with a baking varnish coating is baked into a sheet metal package in a two-stage temperature step. The result is a full-surface, solid connection between the individual sheets with complete insulation. Sheet metal packages manufactured in this way have high precision and perfect magnetic properties. Advantages of the Backlack process: The Backlack process offers several advantages over alternative packaging processes, which we will discuss in detail below. Precision – Sheets coated with baking varnish are baked over the entire surface. This means that even delicate slats can be assembled precisely.

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Germany

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We are specialist in strain gage strain measurements on printed circuit boards and all other components. We carry out the application of strain gages and determine for you the actual stresses that occur, or the strain (also strain-rate) on a specific or several components in the manufacturing or assembly process. We perform our DMS measurements with certified measurement technology and according to the specifications of IPC/JEDEC-9704A. Expert advice from TEPROSA When measuring strain, in addition to many factors such as the appropriate measurement technology, it is also important to rperform the strain measurement correctly and to ensure that the sensors record the forces correctly. To ensure that the deformation of an object is correctly determined, it is therefore crucial to select the right strain gauges (also known as measuring strips) and to place them in the correct position on the measured object.

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Germany

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We are specialized in performing thermal shock testing of electronic and mechanical assemblies and have a lot of experience with the requirements of the automotive industry and medical technology. On behalf of our customers, we perform environmental and climatic tests according to customer specifications and applicable standards, thus uncovering optimization potential. We will be happy to advise you with regard to your testing tasks and, together with you, transfer the entire testing process into a specification sheet. OUR OPPORTUNITIES 2-chamber system air-air Test chamber volume up to 130 liters Temperature range hot chamber 50°C to 200°C Temperature range cold chamber -80°C to -100°C Change between chambers <15 seconds Maximum test material weight 25 kg State monitoring of the test specimens during the test

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Germany

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In an environmental simulation, assemblies are subjected to defined environmental conditions to validate their behavior under those conditions. The variables of an environmental simulation test include climatic aspects such as temperature (cold, heat), the air conditions (humidity, wetness), mechanical influences such as dust, vibration, vibration or impacts, and corrosive environmental effects such as salty lift (salt fog). As an environmental simulation laboratory, we simulate these environmental conditions in our climatic chambers and climatic chambers, creating real conditions to investigate the long-term behavior of the test specimens in reality. Environmental simulation and thermal shock testing laboratory for electronic assemblies and printed circuit boards We specialize in performing environmental simulation and temperature shock testing of electronic and mechanical assemblies. With over ten years of experience with the requirements of the automotive industry and medical

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Germany

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Testing services from a specialist: we are specialized as a testing laboratory for the simulation of specific environmental conditions and the monitoring of the influences of these conditions on electronic assemblies. We offer the following services in our test lab and at your site as contract testing.

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Germany

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Mechatronic integrated devices or molded interconnect devices (injection-molded circuit carriers) are spatial electronic assemblies – so-called 3D-MID. A special process is used to apply metallic conductor tracks to a specific substrate material (often plastic), thus creating three-dimensional assemblies that also serve as circuit carriers. These spatial electronic assemblies are manufactured using 3D-MID technology and, compared to conventional assemblies, enable the integration of electronic, mechanical, fluidic, optical and thermal functions. The resulting additional benefits represent advantages that cannot be realized with two-dimensional circuit carriers (printed circuit boards).

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Germany

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With the help of the 3D-MID process, plastic parts can be metallized not only over the entire surface, but also selectively. To do this, the plastic part is activated with a special laser at the points that are to be coated (this is referred to as laser activation or laser direct structuring). The additives contained in the plastic directly under the plastic surface are “exposed” by the laser treatment. In a chemical bath, copper particles can then be deposited specifically only on the activated surfaces. Other metals, e.g. nickel, tin or gold, can then be deposited onto the starting layer of copper. In this way, a selectively coated plastic part is obtained. MID technology thereby makes it possible to selectively coat two-dimensional and also three-dimensional plastic parts and use them, for example, as circuit carriers for electronic or mechatronic assemblies. With the LPKF-LDS process

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Germany

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We offer laser direct structuring (LPKF-LDS process) for the production of 3D-MID (so-called three-dimensional circuit carriers) as a service in Magdeburg. 3D-MID stands for Mechatronic Integrated Device (or Molded Interconnected Devices). The MID technology makes it possible to use three-dimensional plastic parts as circuit carriers for electronic or mechatronic assemblies. The LPKF-LDS process is one of the technologically leading and at the same time most economically interesting process for the production of 3D-MID. The LPKF LDS process represents the central process step. The process was developed and patented by the company LPKF Laser & Electronics AG in Hanover.

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Germany

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3D-MID are three-dimensional, spatial circuit carriers. The abbreviation MID stands for Molded Interconnect Device, or also for Mechatronic Integrated Devices. The term extension Mechatronic Integrated Devices as opposed to Molded Interconnect Devices (origin Molded = injection molded) is increasingly being used, since the three-dimensional basic bodies are no longer manufactured exclusively through the use of injection molding technology and no longer exclusively from plastic.

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