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Medical Assemblies Requiring High Accuracy Components Manufactured By Minnesota Rubber And Plastics – Provides Design And Materials Engineering
Minneapolis, Minnesota: Minnesota Rubber and Plastics (MR&P) provides medical device manufacturing of complex medical assemblies made of molded rubber and plastics. Operating an ISO 13485:2003 certified quality management system, MR&P is experienced at manufacturing and assembling medical devices in Class 10,000 and Class 100,000 clean rooms and is equipped to provide assistance with design and materials engineering.
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| Completed assembly locks all components together without the use of fasteners or adhesives |
MR&P molds and assembles medical devices requiring high tolerance components that facilitate device function. Device designs include seals that isolate fluids, internal bosses for aligning actuating mechanisms containing washers and springs, and snap-fit designs that lock the assembly together without the use of adhesives.
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| Medical assemblies requiring high accuracy components manufactured by Minnesota Rubber and Plastics |
MR&P's precision molding capabilities comprise silicone molding and bonding, processing of high-performance rubber and plastics, rubber-to-plastic conversions, and metal-to-plastic conversions. The company molds a variety of materials, including compounds compliant with ISO 10993, USP Class VI, and FDA requirements. It produces needle-free injection devices, surgical instruments, diagnostic instruments, valves, pumps, connectors, diaphragms, plunger tips, seals, laboratory equipment and disposables, among other devices.
Since 1945, Minnesota Rubber and Plastics has built a world-wide reputation founded on a unique, science-based approach that has made the company the preferred manufacturing partner for industry leaders in North America, Europe and Asia.
MR&P's global, large-scale manufacturing facilities are based in five countries with capabilities to handle the largest volumes including multi-year partnership contracts. The company's experience and unique ability to offer both rubber and plastic combination medical device assemblies result in greater engineering design and production efficiencies. This results in reduced development time, reduced costs and decreased time-to-market.
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