Claims
- 1. An electronic flashing device comprising:
- a boosting circuit for boosting a power source voltage;
- a main condenser charged by said boosting circuit;
- a flashing discharge tube for discharging the charge with which said main condenser is charged;
- a trigger circuit for exciting said flashing discharge tube;
- a charge voltage sensing circuit connected to said boosting circuit and said main condenser, said charge voltage sensing circuit having at least two voltage dividing resistances connected in series, a pass condenser connected in parallel with one of said resistances, and a series circuit consisting of a voltage sensing device for sensing a charge voltage of said main condenser and a switching device connected in parallel with the other of said resistances; and
- a micro-processor for transmitting a boosting signal for a given period enabling said boosting circuit to carry out a boosting operation, said micro-processor including means for receiving a signal from said switching device of said charge voltage sensing circuit and judging a charge state of said main condenser, said micro-processor judging a charge voltage of said main condenser to be a voltage higher than a charge completion voltage when said switching device signal is at a first signal level during the period of said boosting operation, judging a charge voltage of said main condenser to be a voltage lower than a flash possible voltage when said switching device signal is at a second signal level different from said first signal level during the period of said boosting operation and judging a charge voltage of said main condenser to be a voltage higher than said flash possible voltage but lower than said charge completion voltage when said switching device signal is a pulse which makes a transition between the first signal level and the second signal level during the period of said boosting operation.
- 2. An electronic flashing device according to claim 1 wherein:
- in the series circuit of said charge voltage sensing circuit consisting of said voltage sensing device and switching device, said switching device having a controlling terminal and two main electrodes, the controlling terminal of said switching device and said voltage sensing device being connected in series and one of the main electrodes of said switching device being connected to said micro-processor means for receiving said switching device signal; and
- wherein said switching device generates a pulse which makes a transition between the first state and the second state signal only when a charge voltage of said main condenser is higher than the flash possible voltage but is lower than the charge completion voltage during a charging time of said pass condenser, and wherein said switching device thereafter generates said first signal state when said charge voltage is higher than the charge completion voltage.
- 3. An electronic flashing device according to claim 1 characterized in that:
- said charge voltage sensing circuit further includes a diode connected between a connecting point of said voltage dividing resistances and a connecting point of said pass condenser and said series circuit consisting of said voltage sensing device and said switching device.
- 4. An electronic flashing device according to claim 1 characterized in that:
- said voltage sensing device conducts when a voltage applied to the voltage sensing device exceeds said flash possible voltage and said one resistance and said other resistance are of a resistance ratio in which said flash possible voltage will be applied to said voltage sensing device when said main condenser reaches the charge completion voltage.
- 5. An electronic flashing device comprising:
- a power source boosting circuit for boosting a voltage of a power source battery;
- a main condenser charged by said power source boosting circuit;
- a charge voltage sensing circuit connected to said power source boosting circuit and said main condenser, said charge voltage sensing circuit having at least two voltage dividing resistances connected in series, a pass condenser connected in parallel with one of said resistances and a series circuit consisting of a voltage sensing device and a switching device connected to said pass condenser at one end and connected in parallel with another one of said resistances, said pass condenser being coupled between said main condenser and said voltage sensing device;
- a flash discharging tube connected in parallel with said main condenser;
- a trigger circuit for exciting said flashing discharge tube; and
- a micro-processor for outputting a boosting controlling signal for a given period enabling said power source boosting circuit to start a boosting operation, said micro-processor including means for detecting a state of said switching device at a single output thereof over said given period and thereby detecting one of three charge conditions of said main condenser determined by one of three different signal occurring during the given period of the boosting operation including a first state, a second state different from said first state and a pulse which makes a transition between said first state and said second state to permit operation of the trigger circuit when detecting two of the three signal states and to prevent operation of the trigger circuit when detecting a remaining one of said three possible signal states.
- 6. An electronic flashing device according to claim 5 wherein:
- in the series circuit of said charge voltage sensing circuit, said switching device has a controlling terminal and a pair of main electrodes, the controlling terminal of said switching device and said voltage sensing device being connected in series and one of the main electrodes of said switching device being connected to said micro-processor means for detecting so that, when a voltage at the connection of said voltage sensing device and pass condenser exceeds a predetermined potential, said switching device is turned on.
- 7. An electronic flashing device according to claim 5 wherein:
- said voltage sensing device includes a neon tube.
- 8. An electronic flashing device according to claim 5 wherein:
- said voltage sensing device includes a Zener diode.
- 9. An electronic flashing device according to claim 5 characterized in that:
- said charge voltage sensing circuit further includes a diode coupled between the connecting point of said voltage dividing resistances and the connecting point of said pass condenser and series circuit.
- 10. An electronic flashing device according to claim 5 characterized in that:
- said voltage sensing device conducts when a voltage applied to said voltage sensing device exceeds a flash possible voltage of a charge voltage of said main condenser and said voltage dividing resistances provide a resistance ratio to apply said flash possible voltage to said voltage sensing device when said main condenser reaches the charge completion voltage.
- 11. An electronic flashing device comprising:
- a boosting circuit for boosting a power source voltage;
- a main condenser charged by said boosting circuit;
- a flashing discharge tube for discharging a charge with which said main condenser is charged;
- means for operating said boosting circuit for a given period;
- a charge voltage sensing circuit connected in parallel with said main condenser, said charge voltage sensing circuit having an output at a first state when a charge voltage of said main condenser is a voltage higher than a charge completion voltage during a period when said boosting circuit is operated, having a second state different from said first state when a charge voltage of said main condenser is a voltage lower than a flash possible voltage, and generating a pulse which makes a transition between the first state and second state when a charge voltage of said main condenser is a voltage higher than said flash possible voltage and lower than said charge completion voltage, said first, second and third states being conveyed over a single signal line; and
- a controlling means coupled to said single signal line for receiving said signals from said charge voltage sensing circuit for use in judging a charge condition of said main condenser.
- 12. An electronic flashing device according to claim 11 wherein:
- said charge voltage sensing circuit has at least two voltage dividing resistances connected in series, a pass condenser connected in parallel with one of said resistances and a series circuit comprising a voltage sensing device and switching device and connected to one end of said pass condenser and connected in parallel with another one of said resistances and said first and second states and said transition are output from said switching device.
- 13. An electronic flashing device comprising:
- a boosting circuit for boosting a voltage of a power source battery in response to a boosting controlling signal and outputting an output of the boosting circuit through a first diode;
- a main condenser series circuit comprising a second diode and main condenser, said first and second diodes connecting the main condenser to said boosting circuit;
- a discharge tube connected to said main condenser;
- a trigger circuit for exciting said discharge tube in response to a trigger signal;
- a controlling means for selectively outputting a booster controlling signal to said boosting circuit and a trigger signal to said trigger circuit;
- a main condenser charge voltage detecting circuit connected to said main condenser series circuit for outputting a detecting signal in response to a charge voltage of the main condenser, said detecting circuit being formed of a second series circuit comprised of a pass condenser, a voltage detecting device and a switching device, a voltage dividing circuit comprising two resistances and connected in parallel with said second series circuit, a connecting point between the pass condenser and voltage detecting device of said series circuit and a connecting point between the two resistances of said voltage dividing circuit being connected with each other, said pass condenser having a first terminal connected between said second diode and said main condenser and a second terminal connected to said voltage detecting device.
- 14. An electronic flashing device according to claim 13 wherein:
- said voltage detecting device is set to output a detecting signal when a flash possible voltage corresponding to a lowest voltage required for said trigger circuit to excite the discharge tube is applied to said voltage detecting device and a voltage dividing ratio of said voltage dividing circuit is set so that a divided voltage applied to said voltage detecting device will be said flash possible voltage when a charge voltage of said main condenser reaches a charge completion voltage.
- 15. An electronic flashing device according to claim 13 wherein:
- in the voltage detecting device of the charge voltage detecting circuit of said main condenser, in an initial period of starting a boosting operation of said boosting circuit, a charge voltage of said main condenser is applied to said voltage detecting device and thereafter a divided voltage of the main condenser will be applied to said charge voltage detecting circuit by said voltage dividing circuit.
- 16. An electronic flashing device according to claim 13 wherein:
- after a boosting operation of said boosting circuit is started and within a predetermined time, when a charge voltage of said main condenser is higher than a charge completion voltage, the output of the charge voltage detecting circuit will be at a first output level, when a charge voltage is lower than a flash possible voltage, the output will be at a second output level different from said first output level and further, when a charge voltage is lower than the charge completion voltage but is higher than the flash possible voltage, the output will be a pulse which makes a transition between said first and second output levels.
- 17. An electronic flashing device according to claim 13 wherein:
- said connecting point of said voltage dividing circuit and said connecting point of said series circuit are connected with each other through a diode.
- 18. An electronic flashing device comprising:
- a boosting circuit for boosting a voltage of a power source battery in response to a boosting controlling signal;
- a main condenser series circuit comprising a diode and main condenser being connected to said boosting circuit;
- a discharge tube connected to said main condenser;
- a trigger circuit for exciting said discharge tube in response to a trigger signal;
- release means for generating a release signal to initiate a photographing operation;
- a detection initiation signal outputting means outputting a detection initiation signal responsive to a release signal for initiating a detection of a charge voltage of said main condenser;
- a main condenser charge voltage detecting circuit connected to said main condenser series circuit, said detecting circuit being formed of a second series circuit consisting of a pass condenser and voltage detecting device, a voltage dividing circuit comprising two resistances, said voltage dividing circuit being connected in parallel with said second series circuit, a connecting point between the pass condenser and voltage detecting device of said second series circuit and a connecting point between the two resistances of said voltage dividing circuit being connected with each other, said detecting circuit further including means for outputting a given detecting signal state when a voltage higher than a predetermined voltage is applied to said voltage detecting device;
- a controlling means outputting a boosting controlling signal to said boosting circuit and a trigger signal to said trigger circuit, said controlling means outputting a boosting controlling signal for a predetermined time when a detection initiation signal is output from said detection initiation signal outputting means; and
- a judging means for judging a state of a charge voltage of the main condenser in response to an output from the charge voltage detecting circuit of said main condenser.
- 19. An electronic flashing device according to claim 18 wherein:
- said predetermined voltage of said voltage detecting device is set at a flash possible voltage corresponding to a lowest voltage required for the trigger circuit to excite the discharge tube and a voltage dividing ratio of said voltage dividing circuit is set so that, when a charge voltage of said main condenser reaches a charge completion voltage, a divided voltage applied to said voltage detecting device will be at least as great as said flash possible voltage.
- 20. An electronic flashing device according to claim 18 wherein:
- the voltage detecting device of the charge voltage detecting circuit of said main condenser operates so that, in an initial period of starting a boosting operation of said boosting circuit, a charge voltage of said main condenser is applied to said voltage detecting device and thereafter a divided voltage of the main condenser will be applied to the voltage detecting device so that, after a boosting operation of said boosting circuit is started, and within a predetermined time, the charge voltage detecting circuit of the main condenser:
- continuously outputs a first level when a charge voltage of said main condenser is higher than a charge completion voltage; outputs a second level when a charge voltage is lower than a flash possible voltage; and further outputs a pulse which makes a transition between said first and second levels when said charge voltage is lower than the charge completion voltage and higher than the flash possible voltage.
- 21. An electronic flashing device according to claim 18 wherein:
- after the boosting operation of said boosting circuit is started, on the basis of said detecting signal from the charge voltage detecting circuit of the main condenser and within a predetermined time, said judging means judges a charge voltage to be higher than a charge completion voltage when the detecting signal is at a first constant output state within said predetermined time, judges a charge voltage to be lower than a flash possible voltage when the detecting signal is at a second constant output state different from said first constant output state and further judges a charge voltage to be higher than the flash possible voltage but lower than the charge completion voltage when the detecting signal is a pulse which makes a transition between the first and second output states.
- 22. An electronic flashing device according to claim 18 wherein:
- said connecting point of said voltage dividing circuit and said connecting point of said series circuit are connected with each other through a diode.
- 23. An electronic flashing device for cameras comprising:
- a boosting circuit for boosting a voltage of a power source battery in response to a boosting control signal;
- a main condenser series circuit comprising a diode and main condenser connected to said boosting circuit;
- a discharge tube connected to said main condenser;
- a trigger circuit for exciting said discharge tube in response to a trigger signal;
- a release signal outputting means for outputting a release signal;
- a main condenser charge voltage detecting circuit connected to said main condenser series circuit and outputting a detecting signal in response to a charge voltage of the main condenser, said detecting circuit being formed of a series circuit comprising a pass condenser and voltage detecting device, a voltage dividing circuit comprising two resistances, said voltage dividing circuit being connected in parallel with said series circuit comprised of said pass condenser and voltage detecting device, a connecting point between the pass condenser and voltage detecting device of said series circuit and a connecting point between the two resistances of said voltage dividing circuit being connected with each other, said detecting circuit further including means for outputting a first detecting level when a voltage higher than a predetermined voltage is applied to said voltage detecting device;
- a controlling means for outputting said boosting controlling signal to said boosting circuit and a trigger signal to said trigger circuit, said controlling means outputting a boosting controlling signal for a predetermined time when said release signal is output;
- after a boosting operation of said boosting circuit is started, on the basis of a detecting signal from the charge voltage detecting circuit of the main condenser occurring within a predetermined time, a judging means coupled to an output of said voltage detecting circuit: judges a charge voltage to be higher than a charge completion voltage when the output is at said first output level within said predetermined time, judges a charge voltage to be lower than a flash possible voltage which is lower than said flash completion voltage when the output is at a second output level and further judges a charge voltage to be higher than the flash possible voltage and lower than the charge completion voltage when the output is a pulse which makes a transition between said first and second output levels; and
- an exposing operation inhibiting means for inhibiting an exposing operation when a charge voltage is judged by said judging means to be lower than the flash possible voltage.
- 24. An electronic flashing device for cameras according to claim 23 wherein:
- when a release signal is output during a boosting operation of said boosting circuit, said controlling means includes means responsive to a release signal for stopping the boosting operation for a predetermined time, and thereafter outputting a boosting controlling signal to make said boosting circuit carry out another boosting operation for a given interval.
- 25. An electronic flashing device for cameras according to claim 23 wherein:
- said connecting point of said voltage dividing circuit and said connecting point of said series circuit are connected with each other through a diode.
- 26. An electronic flashing device comprising:
- a boosting circuit for boosting a voltage of a power source battery in response to a boosting controlling signal;
- a main condenser series circuit comprising a diode and main condenser, said diode connecting said main condenser to said boosting circuit;
- a discharge tube connected to said main condenser;
- a release means outputting a release signal for initiating a photographing operation;
- a detection initiation signal outputting means outputting a detection initiation signal responsive to said release signal for initiating a charge voltage of said main condenser;
- a controlling means for outputting a boosting controlling signal to said boosting circuit, when a detection initiation signal is output from said detection initiation signal outputting means, for a predetermined time, said controlling means outputting said boosting controlling signal to enable said boosting circuit carry out a boosting operation;
- a main condenser charge voltage detecting circuit connected to said main condenser series circuit and outputting a detecting signal in response to a charge voltage of the main condenser, said detecting circuit comprising a voltage detecting device having an output at a first level when a voltage higher than a predetermined voltage is applied to said voltage detecting device and a voltage applying circuit for applying to said voltage detecting circuit a voltage in response to a charge voltage of said main condenser, said voltage applying circuit, including a pass condenser coupled between said voltage detection circuit and a common terminal between said diode and said main condenser, applying a charge voltage of the main condenser to the voltage detection device in an initial period of starting a boosting operation of said boosting circuit and thereafter applying a divided voltage of a charge voltage of the main condenser to the voltage detecting device by a voltage divider circuit; and
- a judging means coupled to the voltage detecting circuit for judging a charge voltage state of the main condenser in response to one of three output states from said main condenser charge voltage detecting circuit, including said first state.
- 27. An electronic flashing device according to claim 26 wherein:
- after a boosting operation of said boosting circuit is started, based on said detecting signal from the charge voltage detecting circuit of the main condenser within a predetermined time, said judging means judges a charge voltage to be higher than a charge completion voltage when the detecting device output is at said first level which is substantially constant within said predetermined time, judges a charge voltage to be lower than a flash possible voltage when the detecting device output is at a second level which is substantially constant and is different from said first constant output level and further judges a charge voltage to be higher than the flash possible voltage and lower than the charge completion voltage when the detecting device output is a pulse which makes a transition between said first and second levels.
- 28. An electronic flashing device for cameras according to claim 26 wherein:
- when a release signal is output during a boosting operation of said boosting circuit, said controlling means includes means responsive to a release signal for stopping the boosting operation for a predetermined time, and thereafter outputting a boosting controlling signal to make said boosting circuit carry out another boosting operation during a given interval.
- 29. The electronic flashing device of claim 1 wherein said first state is a first predetermined level, said second state is a second predetermined level different from said first predetermined level and said third state is a pulse which makes a transition between said first and second levels.
- 30. A method for determining a charge state of a main condenser of an electronic flashing device comprising a boosting circuit for boosting a power source voltage; said main condenser being charged by said boosting circuit; a flash discharge tube for discharging a charge stored in said main condenser; a trigger circuit for exciting said flash discharge tube; a charge voltage sensing circuit connected to said boosting circuit and said main condenser, said charge voltage sensing circuit comprising a voltage dividing circuit of first and second resistances coupled across said main condenser; a pass condenser connected across one of said resistances and a series circuit comprising a voltage sensing device and a switching device connected in parallel across another one of said resistances, said method comprising the steps of:
- (a) applying a boosting signal to activate said boosting circuit for a given period;
- (b) monitoring said switching device during the given period of the boosting operation;
- (c) judging the main condenser to be charged to a voltage higher than a predetermined charge completion voltage when said switching device produces a signal at a first signal level during the period of said boosting operation;
- (d) judging a charge voltage across said main condenser to be at a voltage lower than a predetermined flash possible voltage when the switching device produces a signal at a second signal level different from said first level during the period of said boosting operation; and
- (e) judging a charge voltage of said main condenser to be at a voltage higher than said predetermined flash possible voltage and lower than said predetermined charge completion voltage when said switching device produces a pulse which makes a transition between said first and second levels during the period of said boosting operation.
- 31. The method of claim 30 further comprising the step of:
- (f) initiating a flashing operation in response to a flashing operation request when one of said first and third signal conditions are present.
- 32. The method of claim 30 further comprising the steps of:
- (f) deactivating the booster circuit for a predetermined time interval responsive to the occurrence of a flashing request signal developed by a release operation;
- (g) reinitiating the activation of the boosting circuit for a given period upon termination of said predetermined time interval; and
- (h) repeating steps (b) through (e) to ascertain the charge condition of said main condenser.
- 33. An electronic flashing device according to claim 5 wherein said switching device comprises a control electrode and two main electrodes, said control electrode being connected to said voltage sensing device and one of said main electrodes being coupled to said micro-processor means for detecting.
- 34. An electronic flashing device according to claim 5 wherein said switching device has base, emitter and collector electrodes, said base electrode being coupled to said voltage sensing device and one of said emitter and collector electrodes being coupled to said micro-processor means for detecting.
- 35. An electronic flashing device according to claim 1 wherein said boosting signal has a given time interval, said switching device output being produced during said time interval.
- 36. An electronic flashing device according to claim 1 wherein said micro-processor includes means for enabling a trigger signal for operating said trigger circuit when one of said first and third signal states is generated during the period of the boosting operation.
- 37. An electronic flashing device according to claim 1 wherein said micro-processor includes means for preventing operation of said trigger circuit when said second signal state is present during the period of the boosting operation.
- 38. The method of claim 30 further comprising the step of:
- (f) preventing a flashing operation when said second signal condition is present.
- 39. An electronic flashing device according to claim 4 wherein said voltage sensing device is a neon lamp having a predetermined conducting voltage which is less than said flash possible voltage.
- 40. An electronic flashing device comprising:
- a power source boosting circuit for receiving a boosting controlling signal from a first signal line and boosting a voltage of a power source;
- a main condenser charged with a boosted voltage of said power source boosting circuit;
- a series circuit comprising a pass condenser and voltage sensing means, said series circuit being connected in parallel with said main condenser;
- a voltage dividing means for applying a divided voltage of a charge voltage of said main condenser to a connecting point between said pass condenser and voltage sensing means;
- a trigger means for producing a flash signal on a second signal line for flashing a flash discharge tube;
- a switching means for detecting a current flowing from said voltage sensing means and outputting a charge voltage state of said main condenser through a third signal line, said switching means having an output for outputting: a first output level for enabling a flash of the flash discharge tube responsive to a divided voltage applied to said connecting point by said voltage dividing means when a voltage with which said main condenser is charged has reached a charge stopping voltage; a second output level different from said first output level when a charge voltage of said main condenser is lower than the flash permitting voltage; and a third output comprising a pulse which makes a transition between said first and second levels for enabling flashing of the flash discharge tube responsive to a voltage applied to said voltage sensing means through said pass condenser when a charge voltage of said main condenser is lower than the charge stopping voltage and higher than a flash permitting voltage.
- 41. An electronic flashing device according to claim 40 wherein:
- the first output level of said switching means comprises a first substantially constant voltage level, the second output level comprises a second substantially constant voltage level different from the first constant voltage level and the third output level comprises a pulse which makes a transition between said first and second levels.
- 42. An electronic flashing device comprising:
- a boosting circuit for receiving a boosting controlling signal and boosting a voltage of a power source during a given period;
- a main condenser charged with a boosted voltage of said power source boosting circuit;
- a series circuit comprising a pass condenser and voltage sensing device, said series circuit being connected in parallel with said main condenser;
- a voltage dividing circuit having an output for applying to said voltage sensing device a divided voltage of a charge voltage of said main condenser;
- a switching means for detecting a current flowing from said voltage sensing means and outputting a charge voltage state of said main condenser, said switching means outputting: a first output of a first state for enabling flashing of a flashing tube when a divided voltage of a given value at the output of said voltage dividing circuit and divided from the main condenser voltage is applied to said voltage sensing device during the boosting period, said given value of said divided voltage being a charge stopping voltage divided by said dividing circuit; outputting a second output of a level different from said first state when a voltage with which said main condenser is charged is lower than the flash permitting voltage; and outputting a third output comprising a pulse which makes a transition between said first and second states for enabling flashing of the flashing tube when a voltage is applied to said voltage sensing means through said pass condenser during the boosting period when a voltage with which said main condenser is charged is lower than the charge stopping voltage and higher than a flash permitting voltage.
- 43. An electronic flashing device according to claim 42 wherein:
- the first output of said switching means comprises a first substantially constant voltage, the second output comprises a second substantially constant voltage different from said first constant voltage and the third output comprises a pulse which makes a transition between said first and second constant voltages.
- 44. An electronic flashing device according to claim 1 wherein said pulse has a first pulse portion which makes a transition between said first state and said second state and a second pulse portion which makes a transition from said second state back to said first state.
Priority Claims (1)
Number |
Date |
Country |
Kind |
3-054872 |
Mar 1991 |
JPX |
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Parent Case Info
This is a continuation of application Ser. No. 07/851,824, filed Mar. 16, 1992, now abandoned.
US Referenced Citations (3)
Foreign Referenced Citations (1)
Number |
Date |
Country |
193131 |
Jul 1990 |
JPX |
Continuations (1)
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Number |
Date |
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Parent |
851824 |
Mar 1992 |
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