EP0812752A2

Electromagnetic energy transmission and detection system

Abstract

An electromagnetic transmission and detection system is disclosed, comprising a transmission coil (20) for producing a high intensity electromagnetic field, and first and second receiver coils (32, 34) for receiving a low-intensity electromagnetic field transmitted from an inductively powered transponder device (30). The receiver coils are positioned diametrically opposite each other and connected in a differential circuit relationship such that the magnitude of electrical signals induced in the coils by ambient electromagnetic energy are substantially equal and opposite each other. The coil assembly for use in the transponder includes a primary coil (156), the leads of which are left floating, and a secondary coil (158) which has its leads connected to an integrated identification circuit within the transponder. Both coils are wrapped around the same coil forming ferrite rod, and are configured to resonate at the same operating frequency, such that the quantity of energy which can be transferred between the transmitter and the transponder is maximized.

EP0812752A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 25 May 2010, 16.3 years ago.

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

14 claims: 8 independent, 6 dependent

  1. 1
    A transponder coil assembly (150) for inductively coupling with an electromagnetic field and transferring power derived from the electromagnetic field to an integrated circuit device (152) in electrical communication with the coil assembly (150), comprising:coil means (156) operative to receive said field and convert the energy within said field into an electrical power signal and to output said power signal to said integrated device (152), characterized by a core (160);a first coil means (156) being formed around said core (160) and operative to convert the energy within said field into an induction power field having a first impedance level;and a second coil means (158) being formed around said core (160) and operative to receive said power field, to convert the energy in said power field into an electrical power signal having a second impedance level, and to output said power signal to said integrated circuit device (152), whereby the power transferred to said circuit device (152) is at said second impedance level.
  2. 6
    The transponder coil assembly of any of claims 3 - 5, characterized in that said first coil means (156) is formed around said core (160) before said second coil means (158) is formed around said core (160).
  3. 7
    The transponder coil assembly of any of claims 3 - 5, characterized in that said first coil means (156) is formed around said core (160) after said second coil means (158) is formed around said core (160).
  4. 8
    The transponder coil assembly of any of claims 3 - 5, characterized in that said first and second coil means (156, 158) are substantially interwoven around said core (160).
  5. 9
    The transponder coil assembly of any of claims 1 - 8, characterized in that said field is transmitted to said coil assembly (150) at a first frequency level, and wherein said first coil means (156) is operative to self-resonate at said first frequency level so as to maximize the quantity of energy derived from said field and converted by said first coil means (156) into said power field.
  6. 10
    The transponder coil assembly of any of claims 1 - 9, characterized by the integrated circuit device (152) being an integrated identification circuit device (152), and means for supporting both the identification circuit (152) and the coil assembly (150);the first coil means being formed from a first length of conductive wire, the detached ends of which are repeatedly wrapped around said core;and    the second coil means being formed from a second length of conductive wire, the ends of which are repeatedly wrapped around said core and coupled to said identification circuit (152), said second coil being operative to output said power signal to said identification circuit (152), through its coupled ends.
  7. 11
    A method for matching the impedance coupling between a transponder (30) and an electromagnetic field generated proximate the transponder (30), the transponder (30) including an integrated identification circuit device (152) in electrical communication with a coil assembly (150) having first and second coils (156, 158) and being operative to transfer power derived from the field to the circuit device (152), comprising the steps of:receiving said field with said first coil (156), converting the field power into electrical power and transferring the electrical power to the circuit device (152), characterized by said first coil being formed from a first length of conductive wire having detached ends;converting the energy in said field into an induction power field having a first impedance level;receiving said power field with said second coil (158), said second coil (158) being formed from a second length of conductive wire having is ends coupled to said circuit device (152);converting said power field into an electrical power signal having a second impedance level which substantially matches the impedance level of said first field;and transferring said power signal to said circuit device (152), whereby the quantity of energy transferred from said field to said circuit device (152) is maximized by matching said second impedance level with the impedance level of said first field.
  8. 13
    An electronic identification system for transmitting a high intensity electromagnetic field within the proximity of a transponder coil assembly (150) inductively coupled to the high intensity field, the transponder coil assembly (156) being operative to transfer power derived from the high intensity field to an integrated circuit device (152) in electrical communication with the coil assembly (150) and to retransmit a low intensity electromagnetic field which is detected by the identification system, comprising:a transmission and detection apparatus (14) for transmitting said high intensity field and detecting the presence of said low intensity field emanating from said transponder coil assembly (150) despite the presence of said high intensity field;and a transponder coil assembly including coil means (156) operative to receive said field and convert the energy within said field into an electrical power signal and to output said power signal to said integrated device (152), characterized by a core (160);a first coil means (156) being formed around said core (160) and operative to convert the energy within said high intensity field into an induction power field having a first impedance level;and a second coil means (158) formed around said core (160) and operative to receive said power field, to convert the energy in said power field into an electrical power signal having a second impedance level, and to output said power signal to said integrated circuit device (152), whereby the power transferred to said circuit device (152) is at said second impedance level and is sufficient to induce said circuit device (152) to produce an identification signal for retransmission by said transponder coil assembly (150) to said transmission and detection apparatus.