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Germany

Build volume of 26.9 liters (7 gallons) 345.6 x 194.4 x 400 mm (13.61" x 7.65" x 15.75") ultra fast build speed up to 2.363cm³/ hour (144 in³/hour) Supported layer height: 30 / 60 / 100 microns Minimal feature size xy: 0.090 x 0.090 mm High throughput using resin 3D printing The mask stereolithography 3D printing process used achieves the highest throughput, because each layer is cured at once via a mask exposure - a time-consuming point-by-point processing of the construction space as with a SLA industrial 3D printer, a FDM industrial 3D printer and SLS 3D printer is not necessary. The large construction area makes this advantage particularly large. The Solidator is the largest resin industrial 3D printer that does without the disadvantageous perforated printing plate.

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Germany

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The VX2000 is a 3D printer for industrial applications. It is a particularly good choice for cost-effectively producing large-format models from sand cores for prototyping. The VX2000 can also be used to economically manufacture small-series components. The machine is fast and easy to operate. The build space measures up to 2,000 x 1,000 x 1,000 mm. The VX2000's print head system can achieve a resolution of up to 300 dpi. A layer applied in one cycle is 300 µm thick.

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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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Germany

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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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Germany

The EP-M260 is an industrial grade metal 3D printer that uses advanced metal powder bed fusion (MPBF) technology. It is capable of easily and quickly converting CAD data into high-performance, complex structure metal parts. The 3D printer is an ideal choice for medium sized parts and small batch production.

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Germany

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• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

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• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

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• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

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• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

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• Mold measurements up to 4 x 2 x 1 m • Does away with elaborate and expensive mold set-ups • Short throughput time (a few days) • Sand molds correspond 1:1 with CAD model • Structures can be designed in accordance with requirements, without having to watch for draft angles or undercuts • Special sands prevent casting problems • Surface quality can be adjusted through use of different sands • Coarse-grained sands for high gas permeability • Considerable flexibility with changes in geometry, without additional expenses • No storage or maintenance of patterns • Cost savings particularly for complex molds and batch sizes of 1 to several hundred pieces

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Germany

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• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

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• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

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• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

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• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

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The VX4000 is the world's biggest industrial 3D printing system for sand molds. It has a cohesive build space measuring 4,000 x 2,000 x 1,000 mm (LxWxH). This machine can be used to economically produce very large individual molds, a great many small series components or a combination of the two. With its uniquely large volume, the VX4000 maximizes productivity and flexibility. The unique and patented layering process was specially adapted for this printer. Instead of lowering the building platform during the printing process, the print head and coater are raised with each layer. As a result, the machine can bear the enormous weight of the building platform, which can be quickly exchanged via a rail—making it possible to print nearly continuously. Sand can be used as the particulate material. The VX4000's print head system can achieve a resolution of up to 300 dpi. A layer applied in one cycle is 300 µm thick.

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Germany

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• Model measurements up to 1.000 x 600 x 500 mm • Same handling as for conventional wax parts • Tool-less and hence more cost-effective process • Single items and small series can be produced within a few days • High degree of accuracy: ±0.4% (min. +/- 100 µm) • Wax infiltration creates closed smooth surface • Suitable for autoclaves, even for thin-walled shells • Can be burnt out in normal kiln with low emission formation • Does not expand during burn-out process, hence no shell cracking (whether gypsum or ceramics) • Residual ash contents <0.02% for polypor binder type C • All alloys can be used with lost-wax casting process

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Germany

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The VX200 is the most compact 3D printer in the voxeljet portfolio. It weighs a mere 450 kilograms and, thanks to its dimensions of only 1,700 x 900 x 1,500 mm (LxWxH), the VX200 can be installed without problems in places where space is tight, such as research laboratories. The machine is very fast, easy to operate and permits the economical production of small prototypes and design pieces. Plastic and sand can be used as the particulate materials. The build space measures 300 x 200 x 150 mm. The VX200's print head system can achieve a resolution of up to 300 dpi. The thickness of a layer applied in one cycle is 150 µm for plastic and 300 µm for sand.

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Germany

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Industrial inkjet printers enable flexible, contactless and cost-effective marking of packaging, goods and pallets. They are suitable for various substrates and applications without disrupting the production process. Inkjet printers create the printed image by selectively releasing ink droplets and offer easy maintenance, a large distance between the print head and substrate, variable print content and flexible integration. Important selection criteria include production environment, size of print image, resolution, surface texture of the substrate, space and line speed. Matthews Marking Systems uses various inkjet printing processes and offers inks for porous and non-porous surfaces. The printers are suitable for many materials, including wood, plastic, metal, pallets, tires and corrugated cardboard. They can be adapted to individual space requirements and offer solutions for both dusty and clean production environments.

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Germany

EP-M150Pro adopts patented MPBF™(Metal Powder Bed Fusion)to produce high performance, high accuracy and high details parts at large scale. The machine is capable of optional single/dual laser system, and 200/500W laser source for different production requirements. The available materials are Aluminum alloy, Titanium alloy, Inconel alloy, Maraging steel, Stainless steel, CoCr, Copper alloy and so on.

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Germany

With Eplus3D MPBF™(Metal Powder Bed Fusion) technology, EP-M150 can professionally print complex 3D geometry data into high-performance metal 3D parts which are suitable for batch manufacturing of dental parts medical implants and material research centers to develop various metal powders with its open parameter platform.

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Germany

Using MPBF (Metal Powder Bed Fusion) technology, the EP-M650 is using a 655x655x800mm3 build envelope and quad laser systems to ensure a high efficiency production. The precise positioning and innovative area splicing control technology offers uniformity and stability throughout the whole printing phase. The system can operate with various metal powders such as Titanium, Aluminum and Nickel-based alloys, Maraging Steel, Stainless Steel, Chrome Cobalt Alloys and other materials. It is suitable for the direct manufacturing of large-size, high-precision and high-performance parts in the aerospace, aviation, automotive and defense industry.

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Germany

With a building chamber size of 456*456*1080 mm³, Eplus3D Introduces EP-M450H to the successful line of MPBF 3D printers. The new EP-M450H is a marvelous metal printer that makes the production of reliable and high quality large metallic parts viable on industrial scale without requiring any tools.

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Germany

With a building chamber size of 455*455*500mm Eplus3D Introduces EP-M450 to the successfulline of MPBF™ 3D printers. The complete open systemmakes EP-M450 a very powerful tool for large scaleproduction for our customer to access different metal powders like titanium, aluminum, nickel alloys and stainless steel, etc. EP-M450 is aiming to output the large parts with its high performance and high accuracy.

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Germany

Eplus3D Metal Dental 3D Printer EP-M150 can professionally print metal dental crowns, bridges, brackets with improved powder feeding and sieving system enables a high material utilization rate, which is more than 550 crowns printed only by 1kg powder Optimized chamber structure and excellent sealing properties minimize gas consumption <0.2L/min(printing period is 0.3±0.1MPa).

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Germany

Using MPBF (Metal Powder Bed Fusion) technology, the EP-M1250 is using a 1258 x 1258 x 1350 mm3 build envelope and nine laser systems to ensure a high efficiency production. The precise positioning and innovative area splicing control technology offers uniformity and stability throughout the whole printing phase. The system can operate with various metal powders such as Titanium, Aluminum and Nickel-based alloys, Maraging Steel, Stainless Steel, Chrome Cobalt Alloys and other materials. It is suitable for the direct manufacturing of largesize, high-precision and high-performance parts in the aerospace, aviation, automotive and machinery industry.

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Germany

EP-M300 is a marvelous metal printer that makes the production of reliable and high quality large metallic parts viable on industrial scale, with 500W/1000W single or dual laser optional, an ideal choice for big sized parts and batch production efficiently.

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Germany

Whenever a lot of information must be printed on a small area or if the product code should be as discreet as possible, the JET3up MI is the right choice. The small character inkjet printer with an extra fine nozzle is suitable for micro prints with a height up to 0.7 mm. With the automatic nozzle seal "Sealtronic" in the JET3up MI, LEIBINGER can guarantee that the ink does not dry, even after long-term shut-downs. When production stops, the gutter and the nozzle form an airtight circuit: No ink may leak from the circulation and no air can come in. Thus, the ink remains liquid as in a closed can of lacquer and the inkjet printer is always ready for use. Even after long downtimes LEIBINGER inkjet printers are ready to print within a minute – without cleaning cycles.

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Germany

LEIBINGER achieves up to 40% higher printing and production speeds with the JET3up RAPID. Products such as cables can be marked with clearly legible characters, even at speeds of 1,000 m/min (60 km/h)! To achieve this high speed, the new inkjet printer has a much higher drop frequency, among other features. The JET3up RAPID also has printheads that are specially designed for high speeds. Three different variants are available that vary by the intended industry and application. The "RAPID Wire" printhead meets the high standards of the wire and cable industry. Thanks to the innovative design in the printhead, cables and wires as well as other long, narrow products can be optimally positioned and marked. The result is cable printing that is even faster and more precise. In addition, the "RAPID Universal" and "RAPID Highspeed" printheads are available for applications in other industries.

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