EP1767006A2

Multi-protocol or multi-command rfid system

Abstract

This record has no abstract on file.

EP1767006A2, drawing sheet 1
Sheet 1 of 1

Term

Term ended

Projected expiry passed 11 July 2025, 1.2 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

42 claims: 5 independent, 37 dependent

  1. 1
    Claims of equivalent WO 2006010076 A2 WE CLAIM:1. An interrogation system capable of communicating with transponders having different communication protocols, the interrogation system comprising;a plurality of interrogators, each interrogator having a transmitter for transmitting downlink signals in accordance with different communication protocols over a downlink communications link to the transponders, and a receiver for receiving an uplink signal over an uplink communications signal link from the transponders, and a synchronization signal for synchronizing the downlink signals for each of the plurality of interrogators.
  2. 14
    An interrogation system capable of communicating with backscatter transponders using a communication protocol having different commands, the interrogation system comprising;a plurality of interrogators, each interrogator having a transmitter for transmitting downlink signals in accordance with different commands over a downlink communications link to the transponders, and a receiver for receiving an uplink signal over an uplink communications signal link from the transponders, and a synchronization signal for synchronizing the downlink signals for each of the plurality of interrogators.
  3. 23
    An interrogator capable of communicating with a first set of transponders and a second set of transponders, the first and second set of transponders having different power, depth of modulation, or duty cycles, the interrogator comprising:a transmitter for transmitting a first downlink signal to the first set of transponders and a second downlink signal to the second set of transponders;a receiver for receiving a first uplink signal from the first set of transponders and a second uplink signal from the second set of transponders;and, a controller for controlling said transmitter to transmit the first and second downlink signals based on the power, depth of modulation, or duty cycle of the respective first and second sets of transponders, and for controlling said receiver to receive the first and second uplink signals based on the power, depth of modulation, or duty cycle of the respective first and second sets of transponders.
  4. 36
    An interrogator having transmitter components for processing a transmit signal along a transmitter path, and receiver components for processing a received signal along a receiver path, said interrogator comprising:an encoder generating a test signal having bits and transmitting the test signal through each of the transmitter components along the transmitter path and through each of the receiver components along the receiver path;a decoder for receiving the test signal from a last component in one of the transmitter path or receiver path;and, a processor comparing the test signal generated by said encoder with the test signal received by said decoder, and determining that the transmitter and receiver components are operating properly if the test signal generated by said encoder matches the test signal received by said decoder.
  5. 39
    An interrogator having receiver components for processing a received signal along a receiver path, said interrogator comprising:an encoder generating a test signal having bits;a test tag receiving the test signal from said encoder and transmitting a test signal to said interrogator for processing by the receiver components;a decoder for receiving the test signal from a last component in the receiver path;and, a processor comparing the test signal generated by said encoder with the test signal received by said decoder, and determining that the receiver components are operating properly if the test signal generated by said encoder matches the test signal received by said decoder.