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Sandvik offers a service to remove the polymer coating from the ends of coated wire with precise tolerances so that the leads can be used directly in downstream manufacturing operations.
Sandvik offers prototype and custom coiling services to support your development and/or product needs.
One example of cored EXERA ® medical wire components consists of joining Sandvik F562 CoCrNiMo alloy shell (MP35N) and a secondary alloy as the core material. The core material in Sandvik cored wire is typically pure silver (Ag) to promote increased conductivity relative to solid
Our wire facility in Palm Coast, Florida where precision medical wire and EXERA ® wire-based components are manufactured, holds the following certifications:
We provide insulation coatings for temperatures up to 240°C (464°F). In addition to standard NEMA or JIS builds, we are capable of applying 'thin' and 'ultra-thin' builds of insulations. These builds are thinner than NEMA Type 1, but still meet the dielectric property and
Bondable coatings can be applied to bare wire or as a second coat over the top of any of the insulations that are offered. The amount of coating applied can be standard NEMA or JIS build or thinner amounts as required. If a special coating or insulation is required Sandvik will work with you to
Sandvik offers many types of base polymer insulation and PTFE coatings under the trademark Exera®. Exera® insulation coatings Exera® bondable coatings
Sandvik provides additional processing services such as anodizing, polymer coating, coiling, cutting to length, electroplating and lead finishing to help with design challenges that may be present with medical device design or fabrication.
Single strand and multi-filar micro-cables can be manipulated into different cable configurations. The strands are formed by twisting and wrapping together multiple single ended wires or previously joined multifilar wires or cables to form a single entity. The individual single strands that
Single strand configurations can be joined into multi-filar or micro-ribbon cable arrangements. Strands are designed with high engineered precision and are used for applications which require multichannel signal, sensing or power generation. The multi-filar approach allows for easier assembly
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