Claims
- 1. Gas sensing system having
- a plurality of gas sensing units (G.sub.1. . . G.sub.n), each sensing unit including
- a gas sensor (1) providing a sensing output signal (1', 1a, 1b) upon sensing presence of a gas to which the gas sensor is responsive;
- threshold level means (2,3) responsive to said sensing output signal having at least two threshold levels (low, high) and providing respective low level and high level output signals (2a, 3a) upon sensing gas concentration exceeding a lower level, or exceeding a higher level, respectively;
- a low level signal processing stage (6);
- and a high level signal processing stage (7),
- said signal processing stages being respectively connected to said threshold level means and responsive to the respective low level and high level output signals (2a, 3a);
- a central station (C);
- connecting cable means (U, S.sub.1, S.sub.2, O) interconnecting the central station (C) and the gas sensing units (G.sub.1. . . G.sub.n) for signal transfer between said central station and said units,
- said central station (C) including
- a warning stage (W);
- an alarm stage (A);
- a low level input signal analyzing stage comprising
- a warning signal timing stage (11) establishing a warning signal time interval;
- a warning signal input circuit (10) and warning signal transfer means responsive to the low level signal (2a) over said connecting cable means and activating said warning signal timing stage (11);
- a warning signal self-holding circuit operative if the low level signal (2a) persists for the timing duration of said warning signal timing state (11) for then activating said warning stage (W);
- and a high level signal analyzing stage comprising
- an alarm signal timing stage (31) establishing an alarm signal time interval which is shorter than the warning signal time interval;
- an alarm signal input circuit (30) and alarm signal transfer means responsive to the high level signal (3a) over said connection cable means and activating said alarm signal timing stage (31);
- and an alarm signal self-holding circuit operative if the high level signal (3a) persists for the timing duration of said alarm signal timing stage (31) for then activating said alarm stage (A).
- 2. System according to claim 1 wherein the alarm signal timing stage (31) has a time interval in the order of about not more than one-half minute.
- 3. System according to claim 1 wherein the warning signal timing stage (11) has a time interval in the order of about at least one-half minute.
- 4. System according to claim 3 wherein the alarm signal timing stage (31) has a time interval in the order of about not more than one-half minute.
- 5. System according to claim 1 including supply voltage circuits for said timing stages and for said gas sensing units,
- wherein said warning signal timing stage (11) and said alarm signal timing stage (31) and the respective supply voltage control circuits (12, 32) are included in networks located in the central station.
- 6. System according to claim 1 wherein said high level processing stage (7) is self-locking and said alarm signal timing stage (31) comprises counter and timer circuits, having an output (31a) when said high level signal (3a) is transferred thereto by said transfer means (7, 30),
- and an alarm signal supply voltage control circuit (32) is provided, connected to said output of said timing stage (31) and
- briefly interrupting the voltage on the corresponding signal line and thus releasing the self-locking feature of said high level processing stage (7) and then permitting renewed transfer of the high level signal (3a) thereto if it still persists, the alarm stage (A) being connected to the output of said counter circuit and activated upon sensing of a predetermined count number of said counter circuit corresponding to a predetermined number of interruptions for a predetermined time interval of said timer circuits.
- 7. System according to claim 6 wherein said alarm signal transfer means (30) and said alarm signal timing stage (31) transfers the high level signal to the alarm stage (A) for immediate generation of an alarm upon receipt of the high level signal (3a).
- 8. System according to claim 1 further including an indicator (8) and/or control unit (9), each connected with the respective gas sensing unit and providing a first type of indication and/or control output if the low level threshold circuit (2) provides a low level output signal, and a second type of indication and/or control output if the high level threshold circuit (3) provides a high level output signal.
- 9. System according to claim 8, including means for providing an output indication of presence of a low level output signal in form of a continuous indication, and means for providing an output indication of a high level output signal in form of an interrupted, or chopped indication.
- 10. System according to claim 8 wherein the low level output providing means representative of presence of a low level signal furnish an intermittent signal having a first repetition, or interruption frequency or characteristic, and the high level output providing means representative of the high level signal furnish an intermittant signal having a second repetition or interruption frequency or characteristic.
- 11. System according to claim 1 wherein the threshold level means (2, 3), are positioned in and form components of the respective gas sensing units (G.sub.1 . . . G.sub.n) and commonly connected to the gas sensor (1) of the respective sensing unit.
- 12. System according to claim 11 wherein the respective threshold level means includes threshold adjustment circuits (R.sub.1, R.sub.2, R.sub.3, ZD) permitting adjustment of the respective threshold levels of the individual sensing units.
- 13. System according to claim 12 wherein the adjustment elements comprise a voltage divider (R.sub.1, R.sub.2, R.sub.3, ZD) having at least three voltage division components, of which at least one (R.sub.1) is adjustable, and providing respectively different reference voltage levels;
- and comparator means (T.sub.1, T.sub.2) are provided, connected to said gas sensor (1) and comparing the output of said gas sensor with the respective reference levels as provided by said voltage divider.
- 14. System according to claim 13 wherein the voltage divider comprises a Zener diode (ZD) to introduce nonlinearity of adjustment response to the voltage divider.
- 15. System according to claim 1 wherein the warning signal transfer means (6, 10) and the alarm signal transfer means (7, 30) comprise supply voltage control circuits (12, 32) connected to respective connection lines (S.sub.1, S.sub.2) forming part of said connecting cable means and further connected to respective low level and high level signal processing stages (6, 7) positioned in the sensing units (G.sub.1 . . . G.sub.n);
- said supply voltage control circuits being operative to reduce the operating voltage at the respective connecting line upon response by a respective threshold level means (2, 3).
- 16. System according to claim 15 wherein the voltage control circuits are operative to control reduction of the supply voltage control circuit (12, 32) by a predetermined amount, to a level of which transfer of an output signal from the respective low level signal processing stage of a sensing unit, after another sensing unit has already responded, is inhibited.
- 17. System according to claim 1 wherein the connection cable comprises a power supply connection line (U);
- the respective gas sensing units (G.sub.1 . . . G.sub.n) include a current sensing element (4) connected in circuit with the supply line of the gas sensor (1) and providing an output if the current flow through said supply line deviates from a predetermined level, said output being connected to a signal line on the cable for transfer to the central station (C);
- and wherein the central station comprises means (20, 21) responsive to a signal on the respective connecting line indicative of malfunction upon detection of the current sensing element (4) of deviation of the current from the predetermined value, whereby malfunction within the sensing unit, or the connecting power supply line may be indicated.
- 18. System according to claim 17 wherein the malfunction detection means within the central station includes a supply voltage control circuit (22) dropping the supply voltage on the respective signal line to a level detectably different from the change in supply voltage upon response of the gas sensor (1) and generation of a threshold output signal (2a, 3a), thus providing a self-holding signal on the sensing unit malfunction indicating stage F'.
- 19. System according to claim 1 wherein the plurality of gas sensing units are spacially distributed and connected to the cable along the length thereof;
- and further including a termination element (E) connected to the cable beyond the connection point of the last gas sensing unit (G.sub.n) of the system.
- 20. System according to claim 19 wherein the connection cable comprises a power supply bus (U,O) and at least two threshold level sensing signal lines (S.sub.1, S.sub.2);
- and wherein the termination element is connected to at least two of the lines of the cable, and is capable of generating a response signal on one of the signal lines (S.sub.1, S.sub.2) indicative of proper operation of the cable.
- 21. System according to claim 19 wherein the termination element includes a controlled switch (SW) having its control connection connected to one of the signal lines (S.sub.1, S.sub.2), the switch being connected to maintain current flow through another one of the signal lines if the voltage level of said one signal line is above a predetermined minimum value, and to provide an open circuit, indicative of malfunction if the voltage level of said one signal line should fail, to permit response of the malfunction detection circuit (40) in the central station (C) upon departure of current flow within another one of the signal lines from a predetermined value to thereby indicate either an open circuit, or short circuit condition within the cable.
- 22. System according to claim 21 further including a malfunction indicating stage (F) associated with the central station (C) and providing an output indication upon response of the malfunction detection circuit (40) within the central station (C).
- 23. System according to claim 22 including means for suppressing a malfunction indication in the central station by a warning or an alarm indication.
- 24. System according to claim 22, including means for suppressing a warning indication in the central station by an alarm indication.
- 25. System according to claim 1, wherein the gas sensor (1) comprises a semiconductor sensing element having an electrical resistance which changes upon sensing gases to which the semiconductor is responsive.
- 26. System according to claim 1 wherein the gas sensor (1) operates on the catalytic oxidation principle using a balanced bridge circuit.
- 27. System according to claim 1 further including test circuit means (T) connected to override the timing stages (11, 21, 31) to permit testing of functional operability of a system without generation of self-holding warning indication, self-holding alarm indication or self-holding malfunction indication by the warning stage (W), the alarm stage (A), or the malfunction indicating stage (F).
- 28. System according to claim 1, wherein the warning signal input circuit and the alarm signal input circuit, respectively, include
- threshold sensing means providing an output signal if
- (a) the voltage of the respective level output signal is at a predetermined level, indicative of normal operation;
- (b) the voltage of the respective level output signal is below said predetermined level by a predetermined value, indicative of response of a sensing unit;
- (c) the voltage of the respective output level signal is above a predetermined level, indicative of interruption of the connecting cable means;
- (d) the voltage of the respective level output signal is below said predetermined value indicative of short circuit of said connecting cable means.
- 29. System according to claim 28, wherein the threshold circuits are physically part of the central station and comprise comparator circuits.
- 30. System according to claim 28, wherein the central station includes voltage supply means providing a reference voltage at the predetermined level (-22 V);
- and the threshold sensing means are connected to said reference voltage to provide said output signals as a function of the voltage of the respective level output signal applied thereto by said connecting cable means, with respect to said reference voltage.
- 31. System according to claim 28, wherein the threshold circuits include a current comparator comparing current flow from the central station through said connecting cable means.
- 32. System according to claim 31, wherein said alarm signal transfer means includes current generating circuit means connected to said connecting cable means and controlling current flow to the circuit units in sequential pulses to energize indicators located at the respective sensing units in flashing or blinking mode, said current generating circuit means being connected to and controlling said current comparator circuit.
- 33. System according to claim 1, wherein said alarm signal transfer means includes current generating circuit means connected to said connecting cable means and controlling current flow to the circuit units in sequential pulses to energize indicators located at the respective sensing units in flashing or blinking mode.
- 34. System according to claim 33, wherein the interrupted pulse current generating means is connected to and controlled by the alarm signal processing stage to provide said interrupted current pulses as a function of response said alarm signal processing stage.
- 35. System according to claim 1, wherein the gas sensing unit comprises a sensing element (1002) and an electronic circuit network forming, at least in part, said threshold level means and said signal processing stages;
- and wherein a self-monitoring circuit is provided sensing a condition of an operating parameter arising within said network which, upon malfunction, changes its condition from a first, or normal, level to another, or abnormal, level, and providing, respectively, a monitoring signal having characteristics representative of normal and abnormal conditions;
- and circuit means responsive to said monitoring signal and providing a "malfunction" signal to said connecting cable means when the monitoring output signal has the characteristic representative of abnormal conditions.
- 36. System according to claim 35, including means for generating the malfunction signal, applied to the connecting cable means, in form of a signal which has a characteristic level different from the level of the output signal applied by one of the signal processing stages.
- 37. System according to claim 35, wherein the low level signal processing stage provides a signal of a first characteristic upon non-response of the sensor;
- a signal of a second characteristic upon response of the gas sensor and the low level threshold sensing means;
- and a signal of a third characteristic when the "malfunction" signal is provided.
- 38. System according to claim 1, wherein the gas sensing unit includes an electronic circuit network forming, at least in part, said threshold level means and said signal processing stages;
- and an integrating circuit is provided, connected to said connection cable means and providing an output representative of supply power at least to a portion of the electronic circuit network, integrated over a period of time which is long with respect to expected periodic variations or superposed modulation of supply power, to prevent spurious conditions occurring within said network.
- 39. System according to claim 38, wherein, in the central station, the alarm signal transfer means includes current generating circuit means connected to said connecting cable means and controlling current flow to the sensing units in sequential pulses to energize indicators located at the respective sensing units in flashing or blinking mode upon response of one of the sensing units at the alarm signal level;
- and wherein the time constant of integration of said integrating circuit in the gas sensing units is long with respect to the repetition rate of the sequential pulses to prevent spurious conditions from arising in the networks of sensing units which have not responded at the alarm level.
- 40. System according to claim 1, wherein each gas sensing unit includes an electronic circuit network forming, at least in part, said threshold level means and said signal processing stages;
- response indicator means (1023) are provided positioned at said gas sensing units, and indicating response of the respective unit;
- and an OR-gate (1033, 1034) connected to the outputs of the signal processing stages, and having its output connected to the indicator to provide an output indication therefrom upon response to either one of said stages (6, 7).
- 41. System according to claim 40, further including a sensing unit monitoring circuit sensing a condition of an operating parameter arising within the network which, upon malfunction, changes its condition from a first, or normal, level to another, abnormal, level, and providing, respectively, a monitoring signal having characteristics representative, respectively, of normal and abnormal condition;
- and coupling means connecting the output from the monitoring circuit to said OR-gate (1033, 1034).
- 42. System according to claim 41, further including controlled circuit bypass means (1011) connected to bypass an energization signal applied to said OR-gate and suppress indication of said indicator upon enabling of said bypass means;
- said network including means (1009, 1090) periodically enabling said control bypass means to provide a flashing output indication of said indicator means upon periodic enabling and not-enabling of said bypass means.
- 43. System as claimed in claim 1, further comprising
- a self-monitoring circuit connected to said central station and sensing a condition of an operating parameter occurring in a circuit network of said central station, the cable means, and the sensing units independently of gas-dependent output signals from the sensing units, which upon malfunction of said network or said cable means or gas sensing units, changes its condition to another, or abnormal condition, and providing, respectively, a monitoring signal having characteristics representative, respectively, of normal or abnormal condition;
- and circuit means responsive to said monitoring signal and providing a "malfunction" signal to a means for producing a malfunction signal (1023; U,S.sub.1) when the monitoring output signal has a characteristic representative of the abnormal condition to signal a malfunction which occurred within the sensing unit.
- 44. System according to claim 43, further including an integrating circuit connected to and forming part of said network and providing an output representative of supply power normally supplied to said network and integrated over a period of time which is long with respect to possible and expected variations or superimposed modulations occurring within the supply power to prevent spurious abnormal conditions from arising within said network.
Priority Claims (1)
Number |
Date |
Country |
Kind |
7721/78 |
Jul 1978 |
CHX |
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Parent Case Info
This application is a continuation-in-part of application Ser. No. 54,786 of July 5, 1979, now abandoned, claiming priority of Swiss application No. 7,721/78-9, July 17, 1978 now abandoned.
US Referenced Citations (7)
Continuation in Parts (1)
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Number |
Date |
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Parent |
54786 |
Jul 1979 |
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