Some examples include black-on-metallic background with CO 2 laser engraving, photo sensitive aluminum, and more. Each substrate and marking method provides its own set of pros and cons depending on the specific application needs and product specifications. IUID labels are often manufactured from a variety of durable substrates including anodized aluminum, TESA tape, etched polyester, metalized polyester, stainless steel and others. Other popular marking technologies for direct part marking and even label production make use of dot peen indenting. In many scenarios, it’s helpful to begin making such decisions by examining the substrate part, itself, prior to making a final conclusion.ĭirect part marking applications, for example, are those that accommodate a wide array of sizes and substrates with MIL-STD-130 marking technologies that include multiple lasers and chemical etching. A primary requirement of most IUID label applications is that all identification remains legible, durable, and easy to scan for the full lifetime of parts or products it will be used to identify. In addition, there are several options to consider when determining the type and method of labeling – from nameplates and labels to direct part marking. Today, there are many MIL-STD-130 marking technologies that suit the production of IUID labels for DoD compliance.
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