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Coding, marking, pre-treatment in rough industrial environments. Print heads without compromises. The next generation is ready to take over. Speed potential pushed to another level, wear and tear significantly reduced. Print head brain work which pays off for our customers For improving our most legendary sturdy REA JET DOD large character print heads further on, we have been driven by two decisive customer needs: — Duplication of speed potential to up to 600 m/min — Multiplication of their durability by lowering wear and tear 7 nozzles = 5-27 mm 16 nozzles = 5-67 mm 32 nozzles = 5-140 mm
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Valued for its image extreme durability, print speed and ability to print on a wide variety of substrate material, Thermal Transfer technology has been and continues to be a printing industry standard. Thermal transfer printers excel at creating dense print output with crisp edges that hold up well to abrasion; attributes required in most barcoding applications. Being so versatile, there are many types of Thermal transfer ribbon formulations along with multitudes of different substrates that can be printed on. It is very important that you have the correct ribbon and material combination to ensure proper transfer and durability. With 25 years’ experience in manufacturing and testing Thermal transfer ribbon and material, we at GetLabels can guide you through the decision-making process so that you have the proper combination suitable to your application. All of our Thermal ribbon and material are compatible with all thermal transfer printers from the leading manufacturers.
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The T2-C is the first-ever high capacity, high volume tabletop label press capable of delivering precision over long runs. Producing consistent, high-volumes in 24/7 production, the T2-C opens new doors in the label printing industry. A one-of-a-kind tabletop label printing press that incorporates the features and functionality of a traditional large production press into a footprint small enough to fit into any size print department. The T2-C bridges the gap between compact, inexpensive desktop label printers and expensive, large commercial label press to provide a highly flexible and productive solution for printing medium to large runs labels. Equipped with economic 2-liter ink tanks, the T2-C provides a perfect combination of increased print accuracy and reduced price of ink, offering significant cost savings over the life of the printer.
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Where to use deva.bm/9P deva.bm ®/9P is a self-lubricating bi-metal sliding material. The sliding layer is applied to the stainless steel back in a combined rolling/sintering process. The lubricant in deva.bm ®/9P is microscopically distributed PTFE which leads to significantly reduced friction and wear figures. deva.bm ®/9P is the optimum material for p>25 N/mm² and has its best performance at slow speeds and intermittent service. Applications Water turbines, injection molding machines, packing machinery, food and beverage industry, printing machines, shut-off values, hydromechanical engineering, tire molds, construction equipment and many more. Structure 1. Low-friction surface film 2. Bearing layer (bronze) 3. Solid lubricant (PTFE) 4. Stainless steel backing
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Where to use deva.bm/9P deva.bm ®/9P is a self-lubricating bi-metal sliding material. The sliding layer is applied to the stainless steel back in a combined rolling/sintering process. The lubricant in deva.bm ®/9P is microscopically distributed PTFE which leads to significantly reduced friction and wear figures. deva.bm ®/9P is the optimum material for p>25 N/mm² and has its best performance at slow speeds and intermittent service. Applications Water turbines, injection molding machines, packing machinery, food and beverage industry, printing machines, shut-off values, hydromechanical engineering, tire molds, construction equipment and many more. Structure 1. Low-friction surface film 2. Bearing layer (bronze) 3. Solid lubricant (PTFE) 4. Stainless steel backing
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Germany
Where to use deva.bm/9P deva.bm ®/9P is a self-lubricating bi-metal sliding material. The sliding layer is applied to the stainless steel back in a combined rolling/sintering process. The lubricant in deva.bm ®/9P is microscopically distributed PTFE which leads to significantly reduced friction and wear figures. deva.bm ®/9P is the optimum material for p>25 N/mm² and has its best performance at slow speeds and intermittent service. Applications Water turbines, injection molding machines, packing machinery, food and beverage industry, printing machines, shut-off values, hydromechanical engineering, tire molds, construction equipment and many more. Structure 1. Low-friction surface film 2. Bearing layer (bronze) 3. Solid lubricant (PTFE) 4. Stainless steel backing
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Where to use deva.bm/9P deva.bm ®/9P is a self-lubricating bi-metal sliding material. The sliding layer is applied to the stainless steel back in a combined rolling/sintering process. The lubricant in deva.bm ®/9P is microscopically distributed PTFE which leads to significantly reduced friction and wear figures. deva.bm ®/9P is the optimum material for p>25 N/mm² and has its best performance at slow speeds and intermittent service. Applications Water turbines, injection molding machines, packing machinery, food and beverage industry, printing machines, shut-off values, hydromechanical engineering, tire molds, construction equipment and many more. Structure 1. Low-friction surface film 2. Bearing layer (bronze) 3. Solid lubricant (PTFE) 4. Stainless steel backing
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Where to use deva.bm/9P deva.bm ®/9P is a self-lubricating bi-metal sliding material. The sliding layer is applied to the stainless steel back in a combined rolling/sintering process. The lubricant in deva.bm ®/9P is microscopically distributed PTFE which leads to significantly reduced friction and wear figures. deva.bm ®/9P is the optimum material for p>25 N/mm² and has its best performance at slow speeds and intermittent service. Applications Water turbines, injection molding machines, packing machinery, food and beverage industry, printing machines, shut-off values, hydromechanical engineering, tire molds, construction equipment and many more. Structure 1. Low-friction surface film 2. Bearing layer (bronze) 3. Solid lubricant (PTFE) 4. Stainless steel backing
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