Nova Patents
CA2245740C

Sensor for remote detection of objects

Abstract

A sensor for remote detection of objects in a surveillance zone (10) is preferably intended to be used in an article surveillance zone, which further has at least one transmitter means (11, 13) and at least one receiver means (12, 15) for transmitting and receiving, respectively, electromagnetic radio-frequent signals in the surveillance zone, and at least one modulating means (16) for generating a modulation field in the surveillance zone. The sensor is arranged to transmit an electromagnetic reply signal at the reception of electromagnetic energy from the transmitter means, said reply signal being dependent on the modulation field and being receivable by the receiver means. A magnetic element (23) is arranged in a sensor body (21; 101, 102), the magnetic properties of the element being controllable by a magnetic field acting as the modulation field, wherein the amplitude of the reply signal from the sensor is controllable through the magnetic modulation field.

CA2245740C, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Expired 11 February 2017, 9.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

22 claims: 11 independent, 11 dependent

  1. 1
    CA 02245740 2002-06-05 CLAIMS :1. A sensor for remote detection of objects in a surveillance zone, said sensor being arranged to transmit an electromagnetic reply signal at the reception of electromagnetic energy from at least one transmitter means for transmitting electromagnetic radio-frequency signals in the surveillance zone, said sensor having a sensor body containing a magnetic element having a magnetic property which is controllable by a magnetic field acting as a modulation field generated by at least one modulating means in the surveillance zone, said reply signal being dependent on said modulation field so that the amplitude of the reply signal from the sensor is modulated by said magnetic modulation field and being receivable by at least one receiver means for receiving electromagnetic radio-frequency signals in the surveillance zone.
  2. 2
    A sensor for use in an article surveillance system for remote detection of objects in a surveillance zone, said system comprising at least one transmitter means for transmitting electromagnetic radio-frequency signals in the surveillance zone, at least one receiver means for receiving electromagnetic radio-frequency signals in the surveillance zone and at least one modulating means for generating a modulation field in the surveillance zone, said sensor being adapted to transmit an electromagnetic reply signal at the reception of electromagnetic energy from said at least one transmitter means and said sensor having a sensor body containing a magnetic element having a magnetic property which is controllable by a magnetic field acting as said modulation field generated by said at least one modulating means, said reply signal being dependent on said modulation field so that the amplitude of the reply signal from the sensor is modulated by said magnetic modulation field and being receivable by said at least one receiver means. CA 02245740 2002-06-05
  3. 6
    A sensor according to any one of clams 1-5, wherein the magnetic element is wire-shaped.
  4. 7
    A sensor according to claim δ, wherein the wire-shaped magnetic element is manufactured by so-called flashannealing.
  5. 8
    A sensor according to any one of clams 1-7, wherein the magnetic element is contained in a dielectric environment consisting of at least one dielectric material, the relative dielectric constant or permittivity of which is larger than that of air.
  6. 16
    17. A sensor according to any one of claims 9-16, wherein the liquid-based environment of the magnetic element additionally comprises suspended or dissolved particles with magnetic properties.
  7. 18
    19. A sensor according to any of claims 1-8, wherein said sensor body is substantially homogeneous and is made from a solid dielectric material, a recess being provided in the center of the sensor body parallel to the longitudinal axis of the sensor, the magnetic element being located in the recess .
  8. 19
    20. A sensor according to any one of claims 1-8, wherein said sensor body comprises at least two essentially parallelepipedic plates, which are joined together to form the sensor body and which have the magnetic element located between them with said element extending in the longitudinal direction of the sensor.
  9. 20
    21. A sensor according to any one of claims 1-20, wherein the sensor is adapted to receive an electromagnetic first signal within a first frequency range Δ.ίΐ, to receive a magnetic second signal with a second frequency range Δ.Γ 2 , where Δ.ί 2 Δ.ί 2 , and to transmit an electromagnetic reply signal composed of the first signal, the amplitude of which is modulated by the second signal.
  10. 21
    22. A sensor according to any one of claims 1-21, wherein the sensor is adapted to receive an electromagnetic first signal within a first frequency range Δ.f } , to receive a magnetic second signal with a second frequency range Δ.Γ 2 , where is.fi l\.f 2 , and to transmit an electromagnetic reply signal composed of the first signal, the frequency of which is modulated by the second signal.
  11. 22
    23. A sensor according to any one of claims 1-22, wherein the magnetic element is made from a magnetic material such that the amplitude of the electromagnetic reply signal transmitted from the sensor is controllable through giantmagneto- impedance effects and/or giant-magnetoresistance CA 02245740 2002-06-05 effects in the material, when the sensor is exposed to said magnetic modulation field in the surveillance zone.