Claims
- 1. A control circuit for a laser diode with provision for disablement of the diode in the event of a fault in an operating condition of the diode, comprising:
- means for supplying a switching input signal setting an ON/OFF condition of the laser diode in which the laser diode operates at an integrated power level which is at or below a predetermined integrated operating power level but which may have peak power levels exceeding said predetermined integrated operating power level;
- a laser diode current source including a current switch, said laser diode being coupled to said switch;
- a laser diode drive circuit coupling said input signal to said switch for controlling opening and closing of said switch to effect flow of drive current to said laser diode determined by said switching input signal when said switch is closed in response to an ON condition of the input signal;
- fault sensing feedback control circuit means for sensing operating power level of the laser diode and generating a feedback signal to maintain operation of said laser diode at or below said predetermined integrated operating power level; and
- feedback signal sensing circuit means, separate from said input signal supply means, coupled to said feedback control circuit means and responsive to absence of said feedback signal to open said current switch thereby terminating flow of said drive current from said current source and terminating operation of said laser diode.
- 2. The control circuit of claim 1 wherein said feedback signal sensing signal means includes a first input terminal coupled to said input signal supply means and a summing network for summing said feedback signal with said input signal to synchronize said feedback signal sensing with an ON condition of the laser diode.
- 3. The control circuit of claim 2 wherein said summing circuit includes a time constant circuit coupled to said first input terminal and operative during initiation of a laser diode ON condition to provide a short period for stabilization of said feedback signal before allowing said feedback sensing means to effect any control of said current source switch.
- 4. The control circuit of claim 1 wherein said fault sensing feedback control circuit mans includes a photodiode sensor optically coupled to said laser diode and said feedback sensing circuit means is responsive to output of said photodiode sensor.
- 5. A photographic camera including an autofocus module including a laser diode for emitting a modulated beam of laser energy during autoranging operation, the camera comprising:
- a camera controller including means for supplying a switching input signal setting an ON/OFF condition of the laser diode;
- said autofocus module including a laser diode and a laser diode current source, the current source including a current switch, said laser diode being coupled to said switch;
- a laser drive circuit responsive to the input signal for determining the ON/OFF condition of the laser diode by controlling the open/closed condition of the current switch, said laser diode driven into an ON condition when said switch is closed;
- fault sensing feedback control circuit means for sensing operating power level of the laser diode and generating a feedback signal to maintain operation of said laser diode at or below said predetermined integrated operating power level; and
- feedback signal sensing circuit means, separate from said input signal supply means, coupled to said feedback control circuit means and responsive to absence of said feedback signal to open said current switch thereby terminating flow of said drive current from said current source and terminating operation of sad laser diode.
Parent Case Info
This is a Continuation of application Ser. No. 08/592,170, filed 26 Jan. 1996, now abandoned.
US Referenced Citations (16)
Continuations (1)
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Number |
Date |
Country |
Parent |
592170 |
Jan 1996 |
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