Nova Patents
EP0293255A2

Gas sensing instrument.

Abstract

A gas sensing instrument provides programmable control of the operating temperatures of an array of gas sensors for the detection of target gases in air. The control facilitates precise temperature setpoint resolution. The gas sensors in the array have an improved construction density with reduction in size and an extended operating life provided by reduced power consumption. A programmable circuit functions as a programmable-­resistor temperature controller in a Wheatstone bridge configuration. A multiplying digital to analog converter circuit controls the ratio of voltage to current that functions as a resistance equivalent. The programmable circuit is interfaced with a computer to provide selectable temperature control for at least 256 setpoints.

EP0293255A2, drawing sheet 1
Sheet 1 of 6

Term

Term ended

Projected expiry passed 27 May 2008, 18.3 years ago.

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

15 claims: 8 independent, 7 dependent

  1. 1
    An instrument for simultaneously determining the concentrations of a plurality of gases present in air comprising,       a microcomputer       a plurality of semiconductor gas sensing elements at least equal in number to the number of gases to be detected,       said gas sensing elements each having a predetermined response characteristic differing from the response characteristic of the other of said gas sensing elements in response to at least one of the gases to be detected,       temperature control means, responsive to said microcomputer, for maintaining each of said gas sensing elements at a selected one of a plurality of operating temperatures,       measurement means connected to each of said gas sensing elements for generating a plurality of electrical signals representing the response of each of said respective gas sensing elements to the gases to be detected,       said measurement means being electrically connected to said microcomputer, and       said microcomputer including means for converting the signals from said measurement means to a digital representation of the concentration of the gases detected in the air.
  2. 3
    An instrument according to either of claims 1 and 2 in which,       said temperature control means includes a Wheatstone bridge,       said Wheatstone including a plurality of resistors, and       one of said resistors having a resistance value which is selectable corresponding to a selected operating temperature of each of said gas sensing elements in a range from ambient temperature to 600°C.
  3. 4
    A method for controlling the temperature of a gas sensing element comprising the steps of,       supporting a gas sensing element on a substrate,       positioning a platinum film element on the substrate,       passing current through the platinum film element to heat the substrate and raise the gas sensing element to a preselected temperature for detecting the concentration of a selected gas in air,       setting the resistance of the platinum film element at a preselected set-point value, and       controlling the current through the platinum film element to adjust the rate of heat generation in the platinum film element to maintain the resistance of the platinum film element at a preselected setpoint value independent of ambient conditions.
  4. 6
    A method according to either of claims 4 and 5 which includes,       controlling the resistance of the platinum film element by a Wheatstone bridge circuit connected thereto, and       providing as one of a plurality of resistors in the Wheatstone bridge a digital to analog converter having a resistance value selectable to maintain the temperature of the platinum film heater and substrate at a selected one of a plurality of discrete temperatures in the range from ambient temperature to 600°C.       means for supplying a voltage to said electrodes to apply a voltage to said gas sensing material,       a resistance measuring device connected to said electrodes,       said resistance measuring device being operable to convert the values of the electrical resistances of said electrodes to a plurality of digital output signals,       signal processing means for receiving said digital output signals from said resistance measuring device,       means for transmitting the value of said electrical resistances in the form of said digital output signals to said signal processing means, and       said signal processing means converting said digital output signals to a quantitative measurement of the concentrations of the plurality of target gases in air.
  5. 7
    A method according to any one of claims 4 to 6 which includes,       measuring the concentration of a selected gas in air by heating the gas sensing element to a preselected temperature on the substrate,       varying the resistance of the platinum film element to change the temperature of the substrate and set the temperature of the gas sensing element at selected discrete magnitude in the range from ambient temperature to 600°c, and       individually measuring the concentration of a plurality of discrete gases in air by setting the temperature of the gas sensing element to a preselected temperature in said range corresponding to the desired gas to be detected.
  6. 8
    A system for simultaneous detection of a plurality of target gases in air comprising,       a plurality of gas sensors, each of said gas sensors including a layer of gas sensing material,       means for supporting each layer of gas sensing material,       a pair of metallic electrodes in contact with each layer of gas sensing material,
  7. 10
    A system according to either of claims 8 and 9 in which,       each layer of gas sensing material includes a semiconductor metal oxide material,       said means for supporting said layers of gas sensing material including a substrate in contact with said electrodes, and       a platinum film heater positioned on said substrate oppositely of each of said layers of gas sensing material.
  8. 11
    A gas detecting instrument comprising,       a plurality of electrically insulating substrates,       at least a single pair of electrodes positioned on each of said substrates,       a layer of gas sensing material in contact with said electrodes on each of said substrates,       a voltage source connected to said electrodes,       means for controlling the temperature of each of said gas sensing materials at preselected values,       means for measuring the electrical resistance of said gas sensing material in response to a plurality of gases to be detected in air,       an analog to digital converter connected to said means for measuring the electrical resistance for converting the value of the measured electrical resistance to a digital representation, and       a signal processor connected to said analog to digital converter for receiving the measurement of the electrical resistance in said digital representations and computing the value of the gas concentrations detected from the electrical resistance measurements.
  9. 13
    A gas detecting instrument according to either of claims 11 and 12 in which,       said means for controlling temperature includes a Wheatstone bridge circuit,       a platinum film heater electrically connected to each substrate and to said circuit,       said circuit including a resistor element being selectively adjustable to a preselected resistance to maintain said substrate at a preselected temperature, and       a digital to analog converter electrically connected to said signal processor for selecting the resistance of said resistor element corresponding to a preselected temperature at which each of said layers of gas sensing material are to be maintained.
  10. 14
    A gas detecting instrument according to any one of claims 11 to 13 which includes,       means for maintaining a selected voltage to said electrodes and applied to each of said layers of gas sensing material, and       said signal processing means being operable to measure the current flowing through each of said layers of gas sensing material.
  11. 15
    A gas detecting instrument according to any one of claims 11 to 14 in which said means for controlling the temperature includes,       a platinum film heater connected to each of said insulating substrates for heating said gas sensing material thereon, and       said means for selectively controlling the temperature of said respective platinum film heaters and accordingly said layers of gas sensing material by maintaining the electrical resistance of said platinum film heaters at preselected fixed values.