Parallel wireless and wired interfaces couple a processor to an RFID tag, enabling data storage and sensor integration without increasing device complexity.
Periodic RF transmission with removal timers prevents false alarms during normal play.
A strong typing module defines explicit event types for RFID components to ensure accurate data verification.
Embedded information modules transmit mobile element data via discreet sensors and processors.
A wireless tag determination unit evaluates sensor data against criteria to transmit only results.
A transformation unit applies a local rule to rewrite IC tag information, resolving the contradiction between data access convenience and theft risk.
A system using RFID tags and evolutionary computation analyzes historical data to anticipate operational problems without increasing computational complexity.
Dynamic admittance control maintains NFC resonance at low voltages, resolving the trade-off between power consumption and sensitivity.
Intelligent MPO patch panels use infrared sensors and RFID antennas to detect plug presence and identify connections on both sides of the unit.
Reader writer transmits measurement signals to multiple RFID tags arrayed on a collective base member via a dielectric member.
Modified RFID tags use a controller to execute actions based on select command memory locations, enabling feature control without increasing system complexity.
Inductive coupling structure extends the operational range of an RF reader to communicate with tags located outside its near-field area.