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Integrated motorized magnification and illumination shift to check the active surface of optical fiber glas connectors for defects.

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The Centring Microscope ZM1 is a sturdy, optical precision instrument to be attached on machines, control devices, measuring devices and equipment. The high quality, coated optics and the complete metalic design ensures a high durability. Eyepiece with diopter compensation and crosshair with concentric circles Straight tube, 45° or 90° image redirection available Versions with prism for image erection Special designs are available upon request.

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E2 micro E-Chains® are very small, one-piece and two-piece (B07/B09) E-Chains® with a low weight and therefore ideal for highly dynamic applications. E2 micro E-Chains® are stable and available in many versions. igus® also offers numerous accessories and mounting options. "UPGrades" of the snap-open versions are available for many types; they are interchangeable among themselves and can thus be used as, among others, spare parts pack for new installation options. Other information Series 03 Inner height hi: 5 mm Inner widths Bi: 5 - 10 mm bending radii R: 10 - 28 mm Pitch: 10 mm E-Chain®, not-to-be-opened Series 04 Inner height hi: 7 mm Inner widths Bi: 7 - 30 mm bending radii R: 15 - 48 mm Pitch: 16,7 mm E-Chain®, not-to-be-opened Series 045 Inner height hi: 10,3 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 38 mm Pitch: 13 mm E-Chain®, not-to-be-opened Series 05 Inner height hi: 10 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 38 mm Pitch: 20 mm E-Chain®, not-to-be-opened Series 06 Inner height hi: 10,5 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 38 mm Pitch: 20 mm E-Chain®, not-to-be-opened Series 08 Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 25 - 48 mm Pitch: 20 mm E-Chain®, not-to-be-opened Series B07 Inner height hi: 10,3 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 38 mm Pitch: 20 mm E-Chain®, snap-open along the outer radius Series B09 Inner height hi: 14,3 mm Inner widths Bi: 16 - 40 mm bending radii R: 28 - 48 mm Pitch: 20 mm E-Chain®, snap-open along the outer radius Series 074 Inner height hi: 10.9 mm Inner widths Bi: 10 - 40 mm bending radii R: 18 - 38 mm Pitch: 20 mm E-Chain®, snap-open along the inner radius Series 094 Inner height hi: 14,3 mm Inner widths Bi: 10 - 40 mm bending radii R: 28 - 48 mm Pitch: 20 mm E-Chain®, snap-open along the inner radius Series E2.10, openable along the outside Inner height hi: 10 mm Inner widths Bi: 6 - 50 mm bending radii R: 10 - 38 mm Pitch: 20 mm e-chain®, snap-open outside Series E2i. 10, openable on the inside Inner height hi: 10 mm Inner widths Bi: 6 - 50 mm bending radii R: 10 - 38 mm Pitch: 20 mm e-chain®, snap-open inside Serie E2C. 10, closed Inner height hi: 10 mm Inner widths Bi: 6 - 50 mm bending radii R: 10 - 38 mm Pitch: 20 mm e-chain®, closed Series E2.15, openable along the outside Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 28 - 48 mm Pitch: 20 mm e-chain®, snap-open outside Series E2i. 15, openable on the inside Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 28 - 48 mm Pitch: 20 mm e-chain®, snap-open inside Serie E2C. 15, closed Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 28 - 75 mm Pitch: 20 mm e-chain®, closed iF-Design-Award for E2 micro Series 05 Clean room test on request Special design: Electrically conductive ESD/Atex versions on request UL94-V0 classification for Series 03 and Series 14 (more on request) 42 dB(A) determined at the igus® laboratory, v = 1.0 m/s unsupported, Series 06.10.038.0 E2 micro E-Chains® are very small, one-piece and two-piece (B07/B09) E-Chains® with a low weight and therefore ideal for highly dynamic applications. E2 micro E-Chains® are stable and available in many versions. igus® also offers numerous accessories and mounting options. "UPGrades" of the snap-open versions are available for many types; they are interchangeable among themselves and can thus be used as, among others, spare parts pack for new installation options. Series 03 Inner height hi: 5 mm Inner widths Bi: 5 - 10 mm bending radii R: 10 - 28 mm Pitch: 10 mm E-Chain®, not-to-be-opened Series 04 Inner height hi: 7 mm Inner widths Bi: 7 - 30 mm bending radii R: 15 - 48 mm Pitch: 16,7 mm E-Chain®, not-to-be-opened Series 045 Inner height hi: 10,3 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 38 mm Pitch: 13 mm E-Chain®, not-to-be-opened Series 05 Inner height hi: 10 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 38 mm Pitch: 20 mm E-Chain®, not-to-be-opened Series 06 Inner height hi: 10,5 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 38 mm Pitch: 20 mm E-Chain®, not-to-be-opened Series 08 Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 25 - 48 mm Pitch: 20 mm E-Chain®, not-to-be-opened Series B07 Inner height hi: 10,3 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 38 mm Pitch: 20 mm E-Chain®, snap-open along the outer radius Series B09 Inner height hi: 14,3 mm Inner widths Bi: 16 - 40 mm bending radii R: 28 - 48 mm Pitch: 20 mm E-Chain®, snap-open along the outer radius Series 074 Inner height hi: 10.9 mm Inner widths Bi: 10 - 40 mm bending radii R: 18 - 38 mm Pitch: 20 mm E-Chain®, snap-open along the inner radius Series 094 Inner height hi: 14,3 mm Inner widths Bi: 10 - 40 mm bending radii R: 28 - 48 mm Pitch: 20 mm E-Chain®, snap-open along the inner radius Series E2.10, openable along the outside Inner height hi: 10 mm Inner widths Bi: 6 - 50 mm bending radii R: 10 - 38 mm Pitch: 20 mm e-chain®, snap-open outside Series E2i. 10, openable on the inside Inner height hi: 10 mm Inner widths Bi: 6 - 50 mm bending radii R: 10 - 38 mm Pitch: 20 mm e-chain®, snap-open inside Serie E2C. 10, closed Inner height hi: 10 mm Inner widths Bi: 6 - 50 mm bending radii R: 10 - 38 mm Pitch: 20 mm e-chain®, closed Series E2.15, openable along the outside Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 28 - 48 mm Pitch: 20 mm e-chain®, snap-open outside Series E2i. 15, openable on the inside Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 28 - 48 mm Pitch: 20 mm e-chain®, snap-open inside Serie E2C. 15, closed Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 28 - 75 mm Pitch: 20 mm e-chain®, closed E-Chain® selection aids You can find the right E-Chain® quickly by entering concrete parameters and with the aid of a comparison table. Selection aids Installation instructions Joining and separating of the E2 micro E-Chain®. Assembly Instructions Application examples Applications in various industrial sectors. E2 micro For restricted spaces One and two-piece E-Chains®, from 5 mm inner height High torsion resistance Smallest inner heights and bending radii Mounting brackets with strain relief optional Small pitch for silent operation Cable-friendly interior Low weight Large pins for a long service life Favorable internal/external dimensions ratio B07/B09 in two parts - Can be folded out in outer radius due to integral hinges Typical industrial sectors and applications General construction machinery Models (micro E-Chain®), Automatic doors Vehicles Measuring machines Electronics Handling systems Pick and place robot iF-Design-Award for E2 micro Series 05 Clean room test on request Special design: Electrically conductive ESD/Atex versions on request UL94-V0 classification for Series 03 and Series 14 (more on request) 42 dB(A) determined at the igus® laboratory, v = 1.0 m/s unsupported, Series 06.10.038.0

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Germany

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Lightning fast opening and closing with Zipper E-Chain® und E-Tubes - Zipper E-Chain® satisfy by their practicability and performance. The "zip fastening" function shortens the installation time. The small pitch, the rugged elastic zipper band and the heavy duty links amaze in high accelerations. The Zipper series is one of the most popular igus® E-Chain® series in the sophisticated industrial sectors. Other information Series 047 Inner height hi: 9 mm Inner widths Bi: 10 - 16 mm bending radii R: 18 - 38 mm Pitch: 13 mm E-Chain®, rip-open along the outer radius Series 07 Inner height hi: 10,3 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 48 mm Pitch: 20 mm E-Chain®, rip-open along the outer radius Series 09 Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 28 - 48 mm Pitch: 20 mm E-Chain®, rip-open along the outer radius Series 15 Inner height hi: 17 mm Inner widths Bi: 15 - 100 mm bending radii R: 38 - 180 mm Pitch: 30,5 mm E-Chain®, rip-open along the outer radius Series 17 Inner height hi: 32 mm Inner widths Bi: 15 - 100 mm bending radii R: 63 - 125 mm Pitch: 30,5 mm E-Chain®, rip-open along the outer radius Series R07 Inner height hi: 10,3 mm Inner widths Bi: 10 - 50 mm bending radii R: 38 - 48 mm Pitch: 20 mm E-Tube, rip-open along the outer radius Series R09 Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 48 - 100 mm Pitch: 20 mm E-Tube, rip-open along the outer radius Series R15 Inner height hi: 17 mm Inner widths Bi: 25 - 80 mm bending radii R: 63 - 180 mm Pitch: 30,5 mm E-Tube, rip-open along the outer radius Series R17 Inner height hi: 32 mm Inner widths Bi: 15 - 63 mm bending radii R: 63 - 125 mm Pitch: 30,5 mm E-Tube, rip-open along the outer radius Clean room Class 1 (ISO class 3) for Series 15, tested by the Dryden Engineering Company, California. iF-Design-Award for Zipper-Design UL94-V0 classification on request 58 dB(A) determined at the igus® laboratory, v = 1.0 m/s unsupported, Series 09.50.028.0 Lightning fast opening and closing with Zipper E-Chain® und E-Tubes - Zipper E-Chain® satisfy by their practicability and performance. The "zip fastening" function shortens the installation time. The small pitch, the rugged elastic zipper band and the heavy duty links amaze in high accelerations. The Zipper series is one of the most popular igus® E-Chain® series in the sophisticated industrial sectors. Series 047 Inner height hi: 9 mm Inner widths Bi: 10 - 16 mm bending radii R: 18 - 38 mm Pitch: 13 mm E-Chain®, rip-open along the outer radius Series 07 Inner height hi: 10,3 mm Inner widths Bi: 6 - 64 mm bending radii R: 18 - 48 mm Pitch: 20 mm E-Chain®, rip-open along the outer radius Series 09 Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 28 - 48 mm Pitch: 20 mm E-Chain®, rip-open along the outer radius Series 15 Inner height hi: 17 mm Inner widths Bi: 15 - 100 mm bending radii R: 38 - 180 mm Pitch: 30,5 mm E-Chain®, rip-open along the outer radius Series 17 Inner height hi: 32 mm Inner widths Bi: 15 - 100 mm bending radii R: 63 - 125 mm Pitch: 30,5 mm E-Chain®, rip-open along the outer radius Series R07 Inner height hi: 10,3 mm Inner widths Bi: 10 - 50 mm bending radii R: 38 - 48 mm Pitch: 20 mm E-Tube, rip-open along the outer radius Series R09 Inner height hi: 15 mm Inner widths Bi: 10 - 50 mm bending radii R: 48 - 100 mm Pitch: 20 mm E-Tube, rip-open along the outer radius Series R15 Inner height hi: 17 mm Inner widths Bi: 25 - 80 mm bending radii R: 63 - 180 mm Pitch: 30,5 mm E-Tube, rip-open along the outer radius Series R17 Inner height hi: 32 mm Inner widths Bi: 15 - 63 mm bending radii R: 63 - 125 mm Pitch: 30,5 mm E-Tube, rip-open along the outer radius E-Chain® selection aids You can find the right E-Chain® quickly by entering concrete parameters and with the aid of a comparison table. Selection aids Installation instructions Joining and separating of the Zipper E-Chain®. Assembly Instructions Application examples Applications in various industrial sectors and in the igus® test laboratory. Zipper Zipper E-Chain® Short installation time: Lightning fast opening and closing of lids with zipper Zipper lid can be separated and joined in any chain link Small pitch for low-noise, silent operation High accelerations: 100 m/s² and more Interior separation possible Zipper E-Tube resistant against chips and dirt Closed E-Tube with zip-open system Protection against dirt and chips Lightning fast opening of the lid in a band Modular design - simple lengthening and shortening Small division for low-noise, silent operation, high accelerations Typical industrial sectors and applications Automatic insertion machines Semiconductor devices Linear motors, handling systems Any kind of technical equipment Measuring instruments Machine tools (Zipper E-tube) Clean room Class 1 (ISO class 3) for Series 15, tested by the Dryden Engineering Company, California. iF-Design-Award for Zipper-Design UL94-V0 classification on request 58 dB(A) determined at the igus® laboratory, v = 1.0 m/s unsupported, Series 09.50.028.0

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Germany

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Measuring machine for determining discs axial gearing DL501

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Measuring machine for determining discs double clutch DQ381

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Potentiometric displacement sensors are used for direct, precise measurement of mechanical displacements. The mechanical parts of the measuring equipment must be set-up in such a way that the sliding shaft can move without play or lateral forces. A special multi-finger slider ensures good contact even when the adjustment speed is high or in the presence of vibration. With its housing diameter of only 12.7 mm, the model 8709 is also suitable for highly compact structures. The movable fastening clamps allow the user variable options for attaching the sensor without complication. Optionally available adaptations, such as flange and ball joint versions, extend and complement the range of possible applications. Typical fields of application include: Measuring the stroke on riveting machines Measuring insertion distances Offset measurements on bearings Spring travel measurements on axes Measurements of the movement of hoisting platforms Length measurements on pipe bending machines

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Micro-Epsilon tire uniformity and geometry machines measure force variation, runout, and sidewall appearance. Monitoring tire geometry i.e. the measurement of radial or lateral runout as well as side wall detection for bulges, constrictions, dents, week stamp etc., is the most important inspection at the end of the tire production process.

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Finest quality surface polishing is vital in plane optic production. At Befort, this has top priority from production all the way to final inspection. Thanks to sophisticated CNC technology, we are able to produce single planeoptic components as well as multifunctional systems. We process optical glass, filter glass, quartz glass and float glass up to a size of 600 mm diameter. We make filters, groundglass screens, plane mirrors, windows with a plane parallel surface contour and realize customized solutions for specific applications. In our test laboratory we measure machined surfaces with an interferometer to be able to guarantee top optical quality! No lens element leaves our factory before it meets the exact specifications and requirements of the customer

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In the basic version the MMC 5000 consists of a main X-axis featuring a linear air bearing (feed axis), a linear roller bearing Z-axis (infeed axis) and the milling spindle (air bearing) mounted on top of the Z-axis. The main application is face milling of optical and mechanical precision components. A Y-axis is available as an option. Another useful accessory is a second milling spindle, used perpendicular to the first one, thus allowing for the machining of two sides of a workpiece to perpendicularity in one setup. Accessories, like vacuum chucks, different milling spindles, touch probes for part thickness measurement, machine interferometers and other sensors for insitu measurement of workpiece shape and roughness, make the MMC 5000 machines an effective tool. In addition, various sensors are available for measuring of the workpiece geometry and surface quality during the manufacturing process.

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The BS78 is a high accuracy exposed linera encoder with an interferometric signal generation in transmitted light design. The scale has a graduation period of 0.55µm. The LASERSCALE operating principle generates a sinusoidal measuring signal with a signal period of 138nm. This has an extremely high signal quality with a very low noise component. This allows resolutions of up to 2.1 pm to be generated. Due to the extremely low interpolation error, the BS78 is perfectly suited for ultra precision machining, measurement and calibration applications.

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The force to be measured must be introduced axially and perpendicularly to the entire surface of the inner and outer bands of the sensor in the opposite direction. Conversion of the acting force into an electrical output signal is performed by strain gages connected together in a full bridge circuit. To achieve optimal accuracy, the base of the sensor should rest on a smooth level surface, hardened to at least ≥ 58 HRC with sufficient dimensions. The base cover welded to the surface has a stabilizing effect on the sensor element. Lateral forces must be avoided anyway as they distort the measured results. Tension and bending relief for the sensor cable is to be carried out on the machine side. FEATURES: — Measuring ranges from 0 ... 100 N to 0 ... 200 kN — Centric throughout hole — Flat disc design — Made of stainless steel — Completely welded sensor body — Nominal characteristic value standardization possible — burster TEDS optionally available

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Incremental magnetic measuring heads offer maximum precision over the full range of measurements. As a result of the magnetic operating principle and the robust mechanical construction, they are insensitive to soiling and are therefore ideally suited to use in production facilities. Thanks to the high quality of their measurements, their high protection and long service life, these sensors are used in many technologies (industry, research, development etc.). Typical applications include: —Monitoring both slow and fast movements between machine parts —Measurements of position and positional changes in components and structural foundations, of servo regulators, valve and robot controllers —Measurement of growth, and so on The incremental displacement sensors are based on a magnetic principle: consisting of a magnetic scale and a multi-slot reading head that responds to changes in magnetic flux, they detect linear movements with high precision and resolution.

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Germany

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Incremental magnetic measuring heads offer maximum precision over the full range of measurements. As a result of the magnetic operating principle and the robust mechanical construction, they are insensitive to soiling and are therefore ideally suited to use in production facilities. Thanks to the high quality of their measurements, their high protection and long service life, these sensors are used in many technologies (industry, research, development etc.). Typical applications include: —Monitoring both slow and fast movements between machine parts —Measurements of position and positional changes in components and structural foundations, of servo regulators, valve and robot controllers —Measurement of growth, and so on The incremental displacement sensors are based on a magnetic principle: consisting of a magnetic scale and a multi-slot reading head that responds to changes in magnetic flux, they detect linear movements with high precision and resolution.

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Germany

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Incremental magnetic measuring heads offer maximum precision over the full range of measurements. As a result of the magnetic operating principle and the robust mechanical construction, they are insensitive to soiling and are therefore ideally suited to use in production facilities. Thanks to the high quality of their measurements, their high protection and long service life, these sensors are used in many technologies (industry, research, development etc.). Typical applications include: —Monitoring both slow and fast movements between machine parts —Measurements of position and positional changes in components and structural foundations, of servo regulators, valve and robot controllers —Measurement of growth, and so on The incremental displacement sensors are based on a magnetic principle: consisting of a magnetic scale and a multi-slot reading head that responds to changes in magnetic flux, they detect linear movements with high precision and resolution.

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Inductive displacement sensors using the principle of the differential transformer (LVDT) can be used to measure displacement and, indirectly, magnitudes that can be converted into displacements such as force, pressure, strain, torque, vibration and so forth. Thanks to the high quality of their measurements, their high protection and long service life, these sensors are used in many technologies (industry, research, development, etc.). Applications include measuring, controlling, regulating and monitoring both slow and fast movements between machine parts, measurements of position and positional changes of components and structural foundations, servo regulators, valve and robot controllers, growth measurements and so on. Their design is robust - the internal coils and electronics are potted - as a result of which the sensors can easily withstand shock and vibration.

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Germany

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Lubrication, cleaning and protection of bright metal surfaces, e.g. of precision machine tools, measuring equipment, mechanisms in precision mechanics and optics, of precision instruments Can be used at machine elements of all types, for example sliding parts or slideways, at threads, locks, hinges, joints, drives Versatile use over the full range of care, conservation and maintenance applications Advantages and benefits Highly effective due to good wetting, dissolving and protective ability Good creep properties Behaves neutrally with respect to plastics, elastomers and paints Good protection against corrosion-causing moisture and wetness Resin and acid-free OKS 700 is also suitable for use with the refillable Airspray system Also available as spray version OKS 701

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Optical micrometers from Micro-Epsilon operate according to the transmitted light principle (ThruBeam micrometer). Here, the transmitter produces a parallel light curtain that is transmitted via a lens arrangement into the receiver unit. The beam is interrupted if an object is in the light path. The resulting shadowing is detected by the receiving optics and output as measurement value. Most optical micrometers are used for dimensional measurements in production, machine monitoring and quality assurance. Parameters such as diameter, gap, height and position are detected with high accuracy.

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The reflectCONTROL RCS110-245 with integrated controller is designed for stationary measurements or integration into machines. This compact sensor detects anomalies on shiny surfaces which are processed and displayed as reflectivity and curvature image by software. GigE Vision enables the transfer of surface images to a wide range of image processing software packages for further analyses.

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For lubrication points of all kinds as slide ways, spindles, geared parts of the electronic, precision engineering and optical equipment, temporarily or permanently exposed to extreme low temperatures like in arctic climates or cold storages Roller bearing lubrication of high-speed bearings, e.g. spindle bearings, miniature or precision bearings in machine-tools or textile machines, measuring equipment, electric motors of control technology and precision mechanics Advantages and benefits Dynamic light noise proofed long-term lubrication grease Best use at arctic conditions and very high speed High efficiency through optimal formulation Multifunctional application beside the regular range of performance for greases Efficient through economical application No nameable change of consistency at low temperatures or high speeds and accordingly temperatures

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Incremental linear encoder for manual machine tools or measuring applications with counter display. Magetic detection principle makes it extremely insensitive against contamination such as oil, water and dust. Wide tolerances for easy installation For connection to LG20 and LH70 series position indicators

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Germany

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Our international bestseller: the VX1000 is a universal 3D printer for industrial applications. The machine is fast, easy to operate and enables you to cost-effectively produce medium-sized molds, cores and models for making prototypes. The VX1000 is also suitable for producing small series. Plastic and sand can be used as the particulate material. The piezo print head system of the VX1000 achieves a resolution of up to 600 dpi. The machine's build space measures 1,000 x 600 x 500 mm. The thickness of a layer applied in one cycle is 150 µm for plastic and 300 µm for sand. In addition, the VX1000 concept is environmentally friendly: In plastic processes, the unprinted particulate material is recyclable.

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The VX500 is a 3D printer for industrial applications that has been tried and tested many times over in practice. These machines can be found wherever there is a demand for the straightforward production of prototypes and models. Despite their compact dimensions, they captivate with the features of a high-performance printer, such as multi-jet print heads, integrated material handling and job boxes. The machine is very fast, easy to operate and permits cost-effective production of both individual parts and small series alike. Plastic can be used as the particulate material. The machine's build space measures 500 x 400 x 300 mm. The VX500's print head system can achieve a resolution of up to 600 dpi. The thickness of a layer applied in one cycle is 150 µm. In addition, the VX500 concept is resource-friendly: In plastic processes, the unprinted particulate material is recyclable.

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Inductive displacement sensors of this series measure linear displacements and indirectly all mechanical values convertible into displacements by additional equipment (i.e. tension and compression forces, extension, torque, vibration). The sensor body equipped with a connector has an outer diameter of only 8 mm and therefore is especially well suitable for the integration in dimensionally restricted structures. Typical application fields are displacement and extension measurements on: —Machines —Servo systems —Motor vehicles —Test benches —Production plants The cylindrical case made of stainless steel, houses a differential transformer (LVDT). It consists of a primary and two secondary coils with axially moveable core. A displacement of this core changes the magnetic induction of the coils. The INLINE carrier frequency amplifier converts the displacement into a direct proportional electrical DC voltage.

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Germany

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Incremental linear encoder for manual machine tools or measuring applications with counter display. Magetic detection principle makes it extremely insensitive against contamination such as oil, water and dust. Wide tolerances for easy installation For connection to LG20 and LH70 series position indicators

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Germany

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mainSENSOR is based on an innovative measuring principle, which has been developed by Micro-Epsilon in order to combine the advantages of both inductive and magnetic sensors. Magneto-inductive sensors are frequently used as alternative to inductive sensors and proximity sensors in process automation, the packaging industry and in machine monitoring. Measuring the distance to a magnet which is fixed at the measurement object, the sensor outputs a continuous, linear signal. As different strength magnets are applied, measuring ranges of between 20 mm and 55 mm can be achieved. However, in order to adapt the measuring range, it is only necessary to change the magnet.

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Special purpose machines are our specialty. We are able to adapt our standard machines to your needs within a short time or to develop and build completely new machines for your application. Our extensive know-how allows us to accompany you from process development through the design and detailed construction of a suitable machine to measurement, commissioning and the start of production in your plant. In addition, even maintenance or product adjustments if necessary.

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The MMC 600/900 is the basis for a series of machines that, via several accessories and options, can be fully customized to individual needs. In the basic version the machine consists of a main X-axis featuring a linear air bearing (feed axis), a linear roller bearing Z-axis (infeed axis) and the milling spindle (air bearing) mounted on top of the Z-axis. The main application is face milling of optical and mechanical precision components. Several accessories like a Y-axis, an A-axis and/or C-axis are available, thus expanding the range of machinable parts to
microstructures, lenticular structures, spheres, polygons and so on. Accessories, like vacuum chucks, different milling spindles, touch probes for part thickness measurement and even machine interferometers for insitu measurement of workpiece shape, make the MMC 600 and 900 machines an effective tool. Besides further accessories, there is the possibility to make customized solutions, to adapt the machine to your needs.

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