Nova Patents
EP2015231A2

Reader interfacing device

Abstract

The invention provides a reader interfacing device for providing a communication path between: (a) a tag or smart label reader configured to emit and receive interrogating radiation suitable for interrogating tags or smart labels at a first radiation frequency; and (b) a remote tag or smart label configured to be interrogated using radiation of a second frequency, the first frequency (13.56 MHz) and the second frequency (2.45 GHz) being mutually different by at least an order of magnitude, and the reader being operable to communicate through the device to the remote tag or smart label. The device includes a power supply for converting interrogating radiation received at the device from the reader to generate power supply potentials for powering the device. Moreover, the device is mutually magnetically coupled to the reader for receiving the interrogating radiation therefrom and for providing a modulated load thereto for communicating back to the reader. In order to achieve such magnetic coupling, the device includes a loop antenna for magnetically coupling to a corresponding loop antenna of the reader. The device provides, for example, the advantage that the reader can conform to a standard ISO 15693 and the device enables remote tags and smart labels not conforming to the standard to communicate with the reader.

EP2015231A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 2 July 2023, 3.2 years ago.

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

17 claims: 2 independent, 15 dependent

  1. 1
    A system comprising a reader (20) and a remote tag (110) used in portable items which can be personnel wearable or comprised by a personal identity card for gaining authorized access to restricted premises or a smart a label (110) designed to be permanently attachable to items to mark them, characterized by a reader interfacing device (120) for providing a communication path between:(a) the reader (20) configured to emit to and receive from the reader interfacing device (120) interrogating radiation (70) at a first radiation frequency;and (b) the remote tag or smart label (110) configured to be interrogated by receiving from and emitting to the reader interfacing device (120) radiation (192, 194) of a second frequency, wherein the first and second frequencies are mutually different by at least an order of magnitude, and the reader (20) is operable to communicate through the device (120) to the remote tag or smart label (110).
  2. 2
    A system according to Claim 1, wherein the device includes power conversion means (140) for converting interrogating radiation (70) received at the device (120) from the reader (20) to generate power supply potentials for powering the device (120).
  3. 3
    A system according to Claim 1 or 2, wherein the device (120) is mutually magnetically coupled to the reader (20) for receiving the interrogating radiation (70) therefrom and for providing a modulated load thereto for communicating back to the reader (20).
  4. 4
    A system according to Claim 3, wherein the device (120) includes a first loop antenna (310) for magnetically coupling to a corresponding second loop antenna (60) of the reader (20).
  5. 5
    A system according to Claim 4, wherein the device (120) incorporates a modulated field effect transistor (420) connected to the first loop antenna (310) for providing a variable load detectable at the reader (20).
  6. 6
    A system according to any one of Claims 1 to 5, wherein the second frequency is in a range of 300 MHz to 90 GHz.
  7. 7
    A system according to Claim 6, wherein the device (120) is configured to emit radiation to the remote tag or smart label (110) and receive radiation (192, 194) therefrom using patch antennae (320, 330).
  8. 8
    A system according to Claim 6 or 7, wherein the second frequency is substantially in a range of 2 GHz to 3 GHz.
  9. 9
    A system according to any one of Claims 1 to 8, including translating means (160, 190) for converting between a modulation format used by the reader (20) for modulating information onto the interrogating radiation (70) to be received by the device (120) and a modulation format used by the remote tag or smart label (110) for communicating therefrom to and from the device (120).
  10. 10
    A system according to Claim 9, wherein the translating means (160) includes an amplitude demodulator for demodulating a first received signal generated in the device (120) in response to receiving thereat the interrogating radiation (70) from the reader (20) and thereby generating a first demodulated signal, the translating means (160) further including a modulator (170) supplied with a carrier signal at the second frequency and operable to modulate the carrier signal with the first demodulated signal to generate radiation (192) for interrogating the remote tag or smart label (110).
  11. 11
    A system according to Claim 9 or 10, wherein the translating means (190) includes a demodulator (410) for heterodyne mixing a second received signal generated in response to receiving radiation (194) from the remote tag or smart label (110) with the carrier signal to generate a second demodulated signal for use in providing load modulation detectable at the reader (20).
  12. 12
    A system according to Claim 11, wherein the carrier signal is generated by a microwave oscillator frequency locked to the first frequency.
  13. 13
    A system according to Claim 1, wherein the reader (20) includes optical interfacing means for providing the communication path between the reader (20) and the device (120).
  14. 14
    A system according to Claim 13, wherein the interfacing means includes a laser scanner and a liquid crystal display, the scanner operable to scan information presented on the display to provide information exchange between the reader (20) and the device (120).
  15. 15
    A system according to Claim 1, including optical interfacing means for providing the communication path between the device (20) and the remote tag or smart label (110).
  16. 16
    A method for providing a communication path between a reader (20) and a remote tag (110) used in portable items which can be personnel wearable or comprised by a personal identity card for gaining authorized access to restricted premises or a smart label (110) designed to be permanently attachable to items to mark them, wherein the reader emits to and receives from a reader interfacing device (120) interrogating radiation (70) at a first radiation frequency, and the remote tag or smart label (110) is interrogated by receiving from and emitting to the reader interfacing device (120) radiation (192, 194) of a second frequency, wherein the first and second frequencies are mutually different by at least an order of magnitude, and the reader (20) is operated to communicate through the reader interfacing device (120) to the remote tag or smart label (110).
  17. 17
    A method according to Claim 16, wherein the reader interfacing device (120) is configured according to one of the claims 1 to 15.