rfid jewelry tag
December 22, 2025
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<h1>RFID Jewelry Tag: Revolutionizing Inventory Management and Customer Experience</h1>
<p>In my years managing a mid-sized jewelry boutique, the annual inventory audit was a source of immense stress and operational downtime. We would close for a full day, and a team would painstakingly count every item, a process prone to human error. My personal view is that this traditional method is not just inefficient; it's a significant business risk in an industry dealing with high-value, small items. The turning point came when we integrated <strong>RFID jewelry tags</strong> into our operations. This wasn't just a technological upgrade; it felt like unlocking a latent skill for precision and efficiency I didn't know our team had. We could suddenly "see" our entire inventory in real-time.</p>
<h2>Technical Specifications and Parameters of Modern RFID Jewelry Tags</h2>
<p>For those considering implementation, understanding the technical backbone is crucial. Here are the detailed parameters for a typical high-frequency (HF) <strong>RFID jewelry tag</strong>, commonly used for their good read range and anti-collision capabilities with metal items.</p>
<h3>Detailed Product Specifications (Reference Data)</h3>
<h4>Physical & Performance Parameters:</h4>
<ul>
<li><strong>Dimensions:</strong> 10mm x 3mm x 0.5mm (Encapsulated in a hard epoxy or plastic coating for durability).</li>
<li><strong>Frequency:</strong> 13.56 MHz (HF Standard).</li>
<li><strong>Protocol/Standard:</strong> ISO 15693, ISO 18000-3.</li>
<li><strong>Chip Code/Model:</strong> NXP ICODE SLIX 2 or equivalent. Memory: 1024 bits. Unique TID (Tag Identifier).</li>
<li><strong>Read Range:</strong> Up to 1.5 meters with a suitable reader, though typically 10-30cm in practical jewelry case settings.</li>
<li><strong>Anti-Collision:</strong> Capable of reading 50+ tags per second.</li>
<li><strong>Data Retention:</strong> > 10 years.</li>
<li><strong>Operating Temperature:</strong> -25°C to +70°C.</li>
<li><strong>Application:</strong> Specifically designed for on-metal performance, with a special anti-metal layer to prevent signal interference.</li>
</ul>
<p><em>Note: These technical parameters are for reference. Specific product specifications, including exact dimensions, chip codes, and performance metrics, must be co
The Use of RFID for Human Identity Verification
<h2>Technical Specifications and Parameters of Modern RFID Jewelry Tags</h2>
<p>For those considering implementation, understanding the technical backbone is crucial. Here are the detailed parameters for a typical high-frequency (HF) <strong>RFID jewelry tag</strong>, commonly used for their good read range and anti-collision capabilities with metal items.</p>
<h3>Detailed Product Specifications (Reference Data)</h3>
<h4>Physical & Performance Parameters:</h4>
<ul>
<li><strong>Dimensions:</strong> 10mm x 3mm x 0.5mm (Encapsulated in a hard epoxy or plastic coating for durability).</li>
<li><strong>Frequency:</strong> 13.56 MHz (HF Standard).</li>
<li><strong>Protocol/Standard:</strong> ISO 15693, ISO 18000-3.</li>
<li><strong>Chip Code/Model:</strong> NXP ICODE SLIX 2 or equivalent. Memory: 1024 bits. Unique TID (Tag Identifier).</li>
<li><strong>Read Range:</strong> Up to 1.5 meters with a suitable reader, though typically 10-30cm in practical jewelry case settings.</li>
<li><strong>Anti-Collision:</strong> Capable of reading 50+ tags per second.</li>
<li><strong>Data Retention:</strong> > 10 years.</li>
<li><strong>Operating Temperature:</strong> -25°C to +70°C.</li>
<li><strong>Application:</strong> Specifically designed for on-metal performance, with a special anti-metal layer to prevent signal interference.</li>
</ul>
<p><em>Note: These technical parameters are for reference. Specific product specifications, including exact dimensions, chip codes, and performance metrics, must be coPhone: +86 19925232774
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