US-EMLP Self-Adhesive Plastic Label, 85.6mm x 54mm, White Polyester, Printable, for Equipment Identification

Plastic label – US-EMLP (85,6X54)

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SKU: 828806
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Additional Info

This product page details the S-EMLP mini self-adhesive label, a specialized identification solution designed for applications where space is limited. Measuring 27mm x 15mm and made from durable white polyester material, these labels provide a professional, permanent marking solution for small components, electronic parts, and precise identification tasks across various industries.

Overview of the Mini Self-Adhesive Label

The S-EMLP mini self-adhesive label offers a compact and reliable solution for organization and identification challenges. Because its small size and strong adhesive make it ideal for confined spaces, it has become an essential tool for technicians, engineers, and organizers who require precise labeling without obstructing components or equipment.

Key Features and Specifications

These labels are engineered for durability and ease of use. Therefore, here are their essential characteristics:

  • Dimensions: Compact 27mm x 15mm (1.06″ x 0.59″) size
  • Material: High-quality white polyester for durability
  • Adhesive: Permanent acrylic adhesive for secure attachment
  • Surface: Matte finish suitable for pen, pencil, or thermal printing
  • Weather Resistance: Water, chemical, and UV resistant
  • Temperature Range: Stable performance from -40°C to +150°C
  • Thickness: 60-micron polyester with 25-micron adhesive layer
  • Compatibility: Works with most standard label printers and writing instruments

S-EMLP mini self-adhesive label 27x15mm white polyester for small component identification
S-EMLP mini self-adhesive labels – perfect for precise identification tasks.

Typical Applications and Use Cases

The versatility of these mini self-adhesive labels makes them suitable for numerous industries. For example, they are commonly used for:

  • Electronic component identification on PCBs and circuit boards
  • Laboratory sample tracking and specimen labeling
  • Small cable and wire identification in control panels
  • Inventory management for small parts and tools
  • Medical device and equipment identification
  • Jewelry pricing and quality tags
  • Scale model and hobbyist part organization
  • Quality control and inspection tagging

For larger labeling needs, explore our complete range of industrial labeling solutions in various sizes and materials.

Why Choose S-EMLP Mini Self-Adhesive Labels?

Selecting the S-EMLP mini self-adhesive label provides significant advantages for precise identification tasks. Firstly, the polyester material offers exceptional durability compared to paper labels, resisting moisture, chemicals, and abrasion in demanding environments. Secondly, the compact 27x15mm size allows labeling in spaces where standard labels would be too large, while maintaining excellent readability. Consequently, you achieve reliable identification that withstands challenging conditions while maximizing available space.

Writing and Printing Compatibility

These mini self-adhesive labels accommodate various marking methods with excellent results. You can easily write on them with permanent markers, ballpoint pens, or mechanical pencils without smudging or bleeding. Furthermore, they are compatible with most thermal transfer printers and laser printing systems, making them ideal for both manual and automated labeling applications that require batch printing of small, precise labels.

For optimal printing settings and material specifications, consult the comprehensive Brady printing troubleshooting guide for technical reference.

Organize with Precision Today

In summary, the S-EMLP mini self-adhesive label represents the perfect solution for applications requiring small-scale, durable identification. Finally, by incorporating these high-quality labels into your organization system, you ensure clear, permanent identification that withstands environmental challenges while maintaining a professional appearance in even the most space-constrained applications.