EP0201149A2

Condition monitoring system (tyre pressure).

Abstract

The system includes first and second LC circuits (34, 36 and 38, 40) disposed within the tire and interconnected by a diode multiplier (42) in series with a pressure switch (22). An exciter (40) establishes an energetic electromagnetic field of a first frequency such that a first LC circuit (34, 36) is resonant at the same first frequency. This first frequency is converted into energy of a second frequency by a harmonic multiplier diode (42) and is impressed upon a second LC circuit (38, 40) which is resonant at the second frequency, the second frequency being either an even or odd harmonic of the first (exciting) frequency. A receiver (26) tuned to the second frequency interrogates the second LC circuit (38, 40) for presence of harmonic energy at the second frequency. A pressure switch (22) opens when the tire pressure falls below a predetermined pressure which prevents activation of the second LC circuit (38, 40) so that the receiver (26) will not sense the second frequency to which the second LC circuit (38, 40) is resonant, in which case there is provided an indication that the tire pressure is below the desired pressure. A scanner (48) scans the receiver successively from one tire to another of the vehicle.

EP0201149A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 19 May 2002, 24.4 years ago.

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

8 claims: 7 independent, 1 dependent

  1. 1
    A tire condition monitoring system for monitoring the condition of a wheel mounted tire comprising;exciter means (10) for establishing an electromagnetic energy field having a first frequency, passive converter means (20) responsive to said first frequency for creating energy having a second frequency, sensing means (22) for changing amplitude of said energy at said second frequency by said converter means in response to a predetermined change of the tire condition, receiver means (26) responsive to said energy at said second frequency for providing an indication regarding said energy at said second frequency, said converting means (20) including harmonic multiplier means (42) for making said second frequency a harmonic of said first frequency, characterised by said converter means (20) including a converter circuit and said sensing means comprising a pressure switch (22) in said converter circuit for disabling said circuit in response to the tire pressure falling below a predetermined pressure for terminating the creation of said energy at said second frequency in response to an undesired low pressure, indicator means responsive to said receiver means (26) for producing an alarm upon the discontinuance of said receiver means (26) sensing said energy at said second frequency and an alarm upon initiation of said interrogation means sensing said energy at said second frequency so that an alarm is provided when tire pressure falls below the predetermined pressure and an alarm is provided when the tire pressure rises to the predetermined pressure.
  2. 2
    A system as set forth in Claim 1, characterised by said exciter means (10) being inductively coupled to said converter means (20) through a magnetic field, and said receiver means (26) including an E-field antenna (46) for receiving an E-field from said converter means 20.
  3. 4
    A system as set forth in any of the preceding claims, characterised in that said exciter means (10) is shielded against E-field propagation.
  4. 5
    A system as set forth in Claim 3, characterised in that said sensing means comprises a pressure switch (22) which opens to disable the converter circuit in response to the tire pressure falling below a predetermined pressure and which closes to enable the converter circuit in response to pressure at and above said predetermined pressure.
  5. 6
    A system as set forth in Claim 2, characterised by a plurality of said converter means (20), each having the same respective first and second frequencies, and scanner means for serially detecting the E-field from the respective converter means through said E-field antenna.
  6. 7
    A system as set forth in Claim 2, characterised by a plurality of said converter means (20), and wherein said receiver means (26) includes scanner means for serially interrogating said respective converter means (20) one after the other.
  7. 8
    A system as set forth in Claim 7, characterised in that said first frequencies are the same for each of said conveter means (20) and said second frequencies are the same for each of said converter means (20).