EP0428131A2

Pressure monitoring device for self-contained breathing apparatus.

Abstract

There is disclosed a pressure monitoring device for self-contained breathing apparatus including visual indicators disposed in the field of view from the headpiece (18) to monitor when predetermined pressure levels are reached in the tank (12) which supplies gas to that headpiece (18). The predetermined pressure levels are referenced to the residual tank pressure at which the required breathing gas flow is not sustained and visual alarm provisions (24) anticipate those predetermined pressure levels which are critical, in some embodiments of the invention. A transducer (20) of reduced pressure range senses the tank pressure and noise is eliminated from the transducer signal by common mode rejection in still other embodiments.

EP0428131A2, drawing sheet 1
Sheet 1 of 5

Term

Term ended

Projected expiry passed 13 November 2010, 15.9 years ago.

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  2. Filed
  3. Published
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  5. Today

34 claims: 2 independent, 32 dependent

  1. 1
    An apparatus for monitoring at least one predetermined pressure within a tank which supplies the gas in self-contained breathing equipment having a headpiece from which exterior vision is possible through a lens, comprising:an electrical transducer means for sensing pressure in said tank;a circuit means for detecting when the pressure sensed by said transducer means reaches each predetermined pressure level;and an illumination means on said headpiece in the field of view through said lens for indicating when each predetermined pressure level is reached.
  2. 2
    The apparatus as defined in Claim 1 wherein pressure within said tank is applied to said transducer means through a liquid interface by a pressure reducer.
  3. 3
    The apparatus as defined in Claim 2 wherein said liquid interface is cylindrically configured and said reducer includes a cylindrical rod and a cylindrical piston, said rod being positionable in said tank with the pressure therein applied across a circular end thereof and being arranged to translate longitudinal force therein to longitudinal force in said piston, said liquid interface having pressure applied across one circular end thereof by one circular end of said piston and translating that pressure to said transducer means through the other circular end thereof, with the pressure step down ratio accomplished by said reducer being equal to the circular end area of said rod divided by the circular end area of said piston.
  4. 4
    The apparatus as defined in Claim 1 wherein said circuit means includes an individual signal comparator for detecting each predetermined pressure level.
  5. 5
    The apparatus as defined in Claim 4 wherein each said comparator is arranged to change from a high level signal to a low level signal at an output terminal thereof when the voltage level at an input terminal thereof exceeds the voltage level at a threshold set terminal thereof.
  6. 6
    The apparatus as defined in Claim 4 wherein said circuit means further includes a voltage divider having the respective nodes thereof individually connected to said threshold set terminals of said comparators.
  7. 7
    The apparatus as defined in Claim 6 wherein the voltage drops between adjacent nodes on said voltage divider are of equal magnitude.
  8. 8
    The apparatus as defined in Claim 6 wherein a supplemental bias voltage is applied at the lowest level node on said voltage divider to offset the predetermined pressure level established thereby in accordance with the residual tank pressure at which the minimum required gas flow therefrom becomes unavailable.
  9. 9
    The apparatus as defined in Claim 1 wherein said illumination means includes an individual light emitting diode for indicating each predetermined pressure level.
  10. 10
    The apparatus as defined in Claim 9 wherein all of said light emitting diodes are illuminated at maximum tank pressure, with each light emitting diode being shut off when the tank pressure drops to the predetermined pressure level indicated thereby.
  11. 11
    The apparatus as defined in Claim 9 wherein two different colors of illumination are used to distinguish between acceptable and unacceptable pressure levels.
  12. 12
    The apparatus as defined in Claim 9 wherein at least the lowest predetermined pressure level is indicated by a red light emitting diode.
  13. 13
    The apparatus as defined in Claim 10 wherein at least said light emitting diode for indicating the lowest predetermined pressure level is shut off intermittently through a relaxation oscillator when a capacity alarm signal is applied through a voltage divider to the non-inverting input of an operational amplifier therein, said operational amplifier having separate feedback resistors connected from its output to its inverting and non-inverting inputs, with its inverting input being grounded through a capacitor, while a bias voltage is applied to its output through a resistor.
  14. 14
    The apparatus of Claim 13 wherein said capacity alarm signal is derived from said circuit means when a predetermined pressure level is reached that is higher than the predetermined pressure level indicated by said light emitting diodes which are intermittently shut off.
  15. 15
    The apparatus as defined in Claim 1 wherein the signal from said transducer means passes to said circuit means through a differential amplifier means for rejecting common mode signals.
  16. 16
    The apparatus as defined in Claim 15 wherein said differential amplifier means includes an output voltage amplifier and a pair of input voltage amplifiers, each of said voltage amplifiers including an operational amplifier with a feedback resistor connected between its output and inverting input, said input voltage amplifiers having the signal from said transducer means applied across their non-inverting inputs and a resistor connected across their inverting inputs, said output voltage amplifier having its output applied to said circuit means while its inverting and non-inverting inputs have the output from said input voltage amplifiers separately applied thereto through individual resistors and its non-inverting input biased through a voltage divider.
  17. 17
    The apparatus as defined in Claim 16 wherein said resistor connected across the inverting inputs of said input voltage amplifiers is a variable resistor to provide for variable gain amplification of the signal from said transducer means.
  18. 18
    The apparatus as defined in Claim 16 wherein the non-inverting input of said output voltage amplifier is biased to ground through a variable resistor in a potentiometer arrangement to set the pressure signal from said differential amplifier means at the level desired to represent full tank pressure.
  19. 19
    A self-contained breathing apparatus of the type wherein gas is suppled from a tank to a headpiece having a lens through which the exterior is viewed and wherein the tank pressure is monitored, the improvement comprising apparatus for monitoring at least one predetermined pressure level within the tank which includes:a transducer to derive a signal in proportion with the pressure in said tank;an individual signal comparator to detect when said transducer signal reaches each predetermined pressure level;and and individual light emitting diode disposed on the headpiece in the field of view through the lens to indicate when each predetermined pressure level is detected by said comparators.
  20. 20
    The self-contained breathing apparatus as defined in Claim 19 wherein pressure within said tank is applied to said transducer through a liquid interface by a pressure reducer.
  21. 21
    The self-contained breathing apparatus as defined in Claim 20 wherein said liquid interface is cylindrically configured and said reducer includes a cylindrical rod and a cylindrical piston, said rod being positionable in the tank with the pressure therein applied across a circular end thereof and being arranged to translate longitudinal force therein to longitudinal force in said piston, said liquid interface having pressure applied across one circular end thereof by one circular end of said piston and translating that pressure to said transducer through the other circular end thereof, with the pressure stepdown ratio accomplished by said reducer being equal to the circular end area of said rod divided by the circular end area of said piston.
  22. 22
    The self-contained breathing apparatus as defined in Claim 19 wherein each said comparator is arranged to change from a high level signal to low level signal at an output terminal thereof when the voltage level at an input terminal thereof exceeds the voltage level at a threshold set terminal thereof.
  23. 23
    The self-contained breathing apparatus as defined in Claim 19 wherein the respective nodes of a voltage divider are individually connected to said threshold set terminals of said comparators.
  24. 24
    The self-contained breathing apparatus as defined in Claim 23 wherein the voltage drops between adjacent nodes on said voltage divider are of equal magnitudes.
  25. 25
    The self-contained breathing apparatus as defined in Claim 23 wherein a supplemental bias voltage is applied at the lowest level node on said voltage divider to offset the predetermined pressure level established thereby in accordance with the residual tank pressure at which the minimum required gas flow therefrom becomes unavailable.
  26. 26
    The self-contained breathing apparatus as defined in Claim 19 wherein all of said light emitting diodes are illuminated at maximum tank pressure, with each light emitting diode being shut off when the tank pressure drops to the predetermined pressure level indicated thereby.
  27. 27
    The self-contained breathing apparatus as defined in Claim 19 wherein two different colors of illumination are used to distinguish between acceptable and unacceptable pressure levels.
  28. 28
    The self-contained breathing apparatus as defined in Claim 19 wherein at least the lowest predetermined pressure level is indicated by a red light emitting diode.
  29. 29
    The self-contained breathing apparatus as defined in Claim 19 wherein at least the light emitting diode that indicates the lowest predetermined pressure level is shut off intermittently through a relaxation oscillator when a capacity alarm signal is applied through a voltage divider to the non-inverting inputof an operational amplifier therein, said operational amplifier having separate feedback resistors connected from its output to its inverting and non-inverting inputs, with its inverting input being grounded through a capacitor, while a bias voltage is applied to its output through a resistor.
  30. 30
    The self-contained breathing apparatus as defined in Claim 29 wherein said capacity alarm signal is derived from one of said comparators when it detects a predetermined pressure level higher than the predetermined pressure level indicated by the light emitting diodes which are alternately shut off.
  31. 31
    The self-contained breathing apparatus as defined in Claim 19 wherein said transducer signal passes to said comparators through a differential amplifier means for rejecting common mode signals.
  32. 32
    The self-contained breathing apparatus as defined in Claim 31 wherein said differential amplifier means includes an output voltage amplifier and a pair of input voltage amplifiers, each of said voltage amplifiers including an operational amplifier with a feedback resistor connected between its output and inverting input, said input voltage amplifiers having said transducer signal applied across their non-inverting inputs and a resistor connected across their inverting inputs, said output voltage amplifier having its output applied to said comparators while its inverting and non-inverting inputs have the outputs from said input voltage amplifiers separately applied thereto through individual resistors and its non-inverting input biased through a voltage divider.
  33. 33
    The self-contained breathing apparatus as defined in Claim 32 wherein said resistor connected across the inverting inputs of said input voltage amplifiers is a variable resistor to provide for variable gain amplification of said transducer signal.
  34. 34
    The self-contained breathing apparatus as defined in Claim 32 wherein the non-inverting input of said output voltage amplifier is biased to ground through a variable resistor in a potentiometer arrangement to set the pressure signal from said differential amplifier means at the level desired to represent full tank pressure.
Independent claims34