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All RFID Product

CK-D8B
RFID EMBEDDED UHF TUNNEL READER
High-Density Batch Identification for Smart Retail & Warehouse
✔️ 30+ Items Single Scan Capacity
✔️ <20cm Adjacent Read Prevention
✔️ RS232 & Ethernet Multi-Interface

BATCH SCANNING, PRECISION CONTROL
The CK-D8B Embedded RFID UHF Tunnel Reader is engineered for high-efficiency batch identification in retail and warehouse environments. With optimized antenna design that limits adjacent read range to under 20cm and single-scan capability exceeding 30 items, this device delivers precise RFID tag reading while preventing misreads. The 840-960MHz adjustable frequency range and 0-33dbm power adjustment ensure reliable performance across various tag types and materials, making it ideal for integration into checkout counters, workstations, and automated systems.
Perfect for modern retail and logistics: From POS checkout systems and warehouse inbound/outbound management to medical supplies tracking and inventory control applications.
* Product performance is based on testing in a controlled environment. Depending on the environment, your results may vary.
Submit your requirements and valid contact details – Our engineers will deliver a custom solution within 24 hours.
The CK-D8B utilizes a sophisticated multi-antenna array system with precisely calibrated radiation patterns to create a controlled reading zone. Each antenna is engineered with specific polarization characteristics that confine the electromagnetic field within the physical tunnel dimensions. This design ensures that RFID tags outside the tunnel receive insufficient activation energy, effectively limiting adjacent reads to within 20cm.
The system employs dynamic power management technology that automatically adjusts transmission power (0-33dbm in 1db increments) based on real-time monitoring of tag responses. Advanced signal processing algorithms analyze phase differences and signal strength variations to distinguish between tags located inside versus outside the scanning area. For high-density scanning scenarios, the device implements time-division multiple access (TDMA) protocols that organize tag responses into sequential time slots, preventing signal collisions while maintaining scanning speeds of 30+ items per second.
The CK-D8B is designed with enterprise-grade connectivity options, featuring both RS232 serial communication for industrial equipment integration and Gigabit Ethernet for high-speed network connectivity. The device supports multiple industrial protocols including TCP/IP, UDP, and HTTP/HTTPS for seamless integration with existing infrastructure.Our comprehensive integration package includes:
The system can be configured for automatic inventory updates, real-time stock monitoring, and seamless integration with major WMS and ERP platforms including SAP, Oracle, and custom enterprise solutions.
The CK-D8B incorporates adaptive frequency agility technology that continuously scans the 840-960MHz spectrum to identify optimal operating frequencies for different material types. When encountering metal surfaces, the system automatically switches to frequencies that minimize signal absorption and reflection. For liquid-containing items, it employs phase cancellation techniques to overcome signal attenuation.The device features advanced material compensation algorithms that analyze signal propagation characteristics in real-time. These algorithms automatically adjust reading parameters including:
Additionally, the system includes environmental adaptation capabilities that maintain consistent performance across the operating temperature range of -20℃ to +60℃ and humidity levels from 10% to 90% RH. The robust construction using carbon steel, ABS, and PC materials ensures reliable operation in demanding industrial environments.
Cykeo RFID solutions empower cross-industry operations, delivering precision tracking for supply chain optimization, industrial IoT deployments, and mission-critical asset management across logistics, healthcare, aviation, smart manufacturing, energy infrastructure, and security systems.
