Micro rfid tags, custom small size, round ring shape
NFC ISO15693 protocol, other chips options
FPC material, high temperature resistant
Suitable for consumables management in RFID solutions
Applied on non-metal small components/parts, endure high heat forming production process
Adhesive or embeded in small objects for inventory management, industrial production automation
Tag Dimension: 6*0*0.2mm (Copper Antenna Size: 5.5*0mm)
Chip: ICODE SLIX (Protocol: ISO15693)
Memory: TID/UID 64 bit+ EPC/Block + User 896 bit+ Reserve
Operating Frequency: 13.0-14.5Mhz
FaceStock/Housing: Transparent PET
Reading Range: 0.8cm on Air-Free (Depends on Reader)
Installation: Embeded Style
Characteristic: General
Feature Option: Free consulting and free samples with solution proposal & evaluation, Fast sampling within 2-3days is provided to support ODM/OEM/SKD in order to meet the customized printing including mono/color barcode and text Embossing, laser-engraving, personalization and encoding service
High-temperature label, also known as a heat-resistant label, is a type of label designed to withstand exposure to elevated temperatures without degrading or losing its adhesive properties. These labels are commonly used in industries and applications where extreme heat is present, such as automotive, aerospace, electronics, industrial manufacturing, and laboratory environments.Here are some key features and considerations related to high-temperature labels:
1. Temperature Resistance: High-temperature labels are specifically engineered to withstand a wide range of temperatures. The exact temperature range can vary depending on the label material and adhesive used. Some high-temperature labels can withstand temperatures as high as 500°F (260°C) or even higher.
2. Materials: Various materials can be used to create high-temperature labels, including heat-resistant films, metals, ceramics, and specialty coatings. Common label materials for high-temperature applications include polyester (PET), polyimide (PI), aluminum, and ceramic-filled materials.
3. Adhesive Properties: The adhesive used on high-temperature labels is designed to maintain its bonding strength even when exposed to high temperatures. These adhesives are often made of silicone or acrylic, which have excellent heat resistance properties. They can withstand prolonged exposure to heat without degrading or losing their adhesive properties.
4. Durability: High-temperature labels are typically designed to be durable and resistant to environmental factors such as chemicals, solvents, moisture, and abrasion. This ensures that the labels remain intact and legible even under challenging conditions.
5. Application Methods: High-temperature labels can be applied using standard label application techniques, including manual application or automatic label applicators. It is important to follow the manufacturer's instructions for proper application, including surface preparation and recommended temperature ranges during label application.
6. Label Printing: High-temperature labels can be pre-printed with required information or printed on-demand using thermal transfer or laser printing methods. It is crucial to use compatible printing technologies and ribbons that are suitable for high-temperature applications to ensure the longevity and readability of the printed information.
When selecting a high-temperature label, it is important to consider the specific temperature range, duration of exposure, and the nature of the application to ensure the label's suitability. Consulting with label manufacturers or suppliers with expertise in high-temperature labeling can provide valuable guidance in choosing the right label material and adhesive for your specific needs.