Claims
- 1. A fluorescent lamp lighting system powered from an A.C. supply, said system comprising:
- a first plurality of fluorescent lamps;
- a first reactive ballast for said first plurality of lamps;
- a second plurality of fluorescent lamps;
- a second reactive ballast for said second plurality of lamps;
- rectifying means connected to said A.C. supply;
- a control transistor connected to said rectifying means for controlling the arc current supplied to said first plurality of lamps;
- a single control unit for controlling the arc current through said first and second plurality of lamps including feedback means responsive to the output of said lamps for producing an arc current control signal related to the output of said lamps;
- means for supplying said arc current control signal to said first control transistor; and
- follower circuit means, connected between control unit and said second ballast and including a second control transistor connected to the output of said control unit, for controlling the arc current supplied to said second plurality of lamps and including means for relating the arc current control signals applied to said first and second control transistors so that currents flowing in said first and second ballasts are in a desired relationship.
- 2. A fluorescent lamp lighting system as claimed in claim 1 wherein said means for relating the arc current signals provides scaling of the currents flowing in said first and second ballasts.
- 3. A fluorescent lamp lighting system as claimed in claim 1 wherein said means for relating said arc current signals provides matching of the currents flowing in said first and second ballasts.
- 4. A fluorescent lamp lighting system as claimed in claim 1 wherein said means for relating the arc current signals comprises a resistance connected in the emitter circuit of each of said first and second control circuits.
- 5. A fluorescent lamp lighting system as claimed in claim 4 wherein said follower circuit means includes an operational amplifier connected to said second control transistors.
- 6. A fluorescent lamp lighting system as claimed in claim 5 wherein one input to said operational amplifier is connected to the emitter of the first control transistor and the second input of said operational amplifier is connected to the emitter of said second control transistor.
- 7. A fluorescent lamp lighting system as claimed in claim 6 wherein said single control unit includes a further operational amplifier and a first biasing signal transistor connected to the output of said operational amplifier and to the base of the first control transistor, and said follower circuit means includes a second biasing signal transistor connected between the output of the first-mentioned operational amplifier and the base of said second control transistor.
- 8. A fluorescent lamp lighting system as claimed in claim 1 wherein said first and second control transistors act to limit and control the arc currents supplied respectively to said first and second plurality of lamps during at least a part of the portion of a half wave of said A.C. supply when said lamps are ignited and provide substantially no current limiting for values of arc current above a predetermined level.
- 9. A fluorescent lamp lighting system comprising:
- means for providing an A.C. supply voltage;
- a first set of fluorescent lamps;
- a first ballast connected to said first set of lamps;
- at least one further set of fluorescent lamps;
- a further ballast connected to said at least one further set of lamps;
- first control means connected to said first ballast for controlling the arc current through said first set of fluorescent lamps, said first control means including a first control transistor which is fully saturated on (i) for arc currents below a predetermined level and (ii) subsequent to extinguishment of said first set of lamps and prior to ignition of said first set of lamps, and which is biased such as to operate in the active region of the operating characteristics thereof subsequent to the ignition of the first set of lamps and up to said predetermined arc current level;
- second control means connected to said second ballast for controlling the arc current through said second set of fluorescent lamps, said second control means comprising a second control transistor which is fully saturated on (i) for arc currents below a predetermined level and (ii) subsequent to extinguishment of said second set of lamps and prior to ignition of said second set of lamps, and which is biased to operate in the active region of the operating characteristics thereof subsequent to the ignition of the second set of lamps and up to said predetermined arc current level;
- a single feedback control unit for sensing the light output of said lamps for generating a control signal for controlling said first and second transistors; and
- means, including first and second resistors connected to the respective emitter circuits of said first and second control transistors, for providing a desired relationship between the arc currents flowing in said first and second ballasts.
- 10. A system as claimed in claim 9 wherein said feedback control unit includes a first operational amplifier connected therein, said system further comprising a second operational amplifier connected to the base of said second control transistor.
- 11. A system as claimed in claim 9 wherein a point on the junction between the first resistor and the emitter of the first control transistor is connected to one input of said second operational amplifier.
- 12. A system as claimed in claim 11 further comprising fiber optic means for guiding light from at least one of the lamps to said light responsive means.
- 13. A system as claimed in claim 12 wherein the rectifying means, control transistor means and light responsive means are disposed in control unit located within a light fixture containing said at least one lamp from which light is guided by said fiber optic means.
- 14. An energy conserving lighting system comprising:
- a plurality of gas discharge lamps operating in the arc discharge region thereof;
- a solid state electronic control device connected in the said arc current path of said lamps;
- light sensing means for sensing the total ambient light in the area of said lamps including the light produced by said lamps and the ambient light produced by all other light sources in said area and for producing an output in accordance therewith; and
- feedback means connected between said electronic device and said light sensing means for proportionally controlling the conduction of said electronic control device and thus the amplitude of the current in said arc current path in accordance with the output of said light sensing means so as to maintain the said total ambient light substantially constant; and
- a poorly regulated voltage source power supply means connected in the arc current path of said lamps for providing a decreasing supply voltage with increasing arc current.
- 15. A system as claimed in claim 14 wherein said poorly regulated voltage source power supply means comprises, in combination, a half wave rectifier circuit, a full wave AC line voltage multiplying rectifier circuit and one-half of a further AC line voltage multiplying rectifier circuit.
- 16. A system as claimed in claim 14 wherein said poorly regulated voltage source power supply means includes a plurality of diodes, and a plurality of capacitors connected across said diodes.
- 17. A system as claimed in claim 14 further comprising ionizing means for providing an ionizing voltage for starting said lamps so that an arc current flow therethrough, said ionizing means providing a low voltage after said arc current begins to flow through said lamps.
- 18. A system as claimed in claim 17 wherein ionizing means comprises a plurality of diodes and a plurality of capacitors connected across said diodes.
- 19. A system as claimed in claim 18 wherein said diodes are connected in series and said capacitors are connected across pairs of said diodes.
- 20. A system as claimed in claim 18 wherein said ionizing means is connected in a current path in parallel with that in which said electronic device is connected.
- 21. A system as claimed in claim 20 wherein a zener diode is connected between ionizing means and one side of the lamps in said current path in which said ionizing means is connected.
- 22. A system as claimed in claim 14 wherein solid state electronic device comprises a plurality of transistors connected in a high grain configuration.
- 23. A system as claimed in claim 22 wherein said feedback means includes a potentiometer for adjusting the input voltage level of said plurality of transistors.
- 24. A system as claimed in claim 22 wherein one of said transistors is connected in series with said lamps, said system further comprising a diode connected in series between said one transistor and said lamps for protecting said transistor during starting of said lamps.
- 25. An energy conserving light output control system for firing and maintaining arc current flow through a plurality of fluorescent lamps, said system comprising:
- arc current supply means comprising a first voltage multiplying means, including a plurality of capacitors and diodes in accordance with the number of lamps, for supplying arc current to said fluorescent lamps after said fluorescent lamps have been fired;
- ionizing power supply means comprising a second voltage multiplying means, including a plurality of capacitors and diodes in accordance with the number of lamps, for providing, in cooperation with said arc current supply means, an ionizing voltage for firing the lamps and for providing a low voltage after said lamps are fired;
- said arc current supply means constituting means for providing a non-dissipative decline in the voltage supplied to the lamps with an increase in the lamp load current;
- light sensing means for sensing the total ambient light including the light output of the lamps as well as the ambient light produced by other light sources; and
- feedback menas, including a solid state current control device connected in the arc current path of said lamps, for controlling the amplitude of the current in said arc current path in accordance with the output of said light sensing means so as to maintain the total ambient light at a substantially constant level.
- 26. A light control system comprising at least one standard rapid start-type fluorescent lamp including at least two cathode heater elements therein, at least one standard rapid-start ballast with transformer winding taps to provide voltage to said cathode heater elements to form a ballast-lamp combination, an electronic current control circuit for controlling the electrical energy supplied to said ballast-lamp combination, and an A.C. voltage source connected to said ballast and said control circuit, said electronic current control circuit including means, including at least one active electronic device, for providing that substantially full open circuit voltage for the said cathode heater elements of the lamp is supplied from the ballast during the beginning and end portions of each half-cycle of the A.C. voltage source during which the least one lamp is not conducting arc current.
- 27. A light control system as claimed in claim 26 wherein said means including the at least one active electronic device provides that, prior to the initial ignition of said lamp, substantially full open circuit voltage for the said cathode heater elements of the lamp is supplied from the ballast.
- 28. A light control system as claimed in claim 26 wherein said active electronic device comprises a control transistor which is saturated on during said beginning and end portions, said system further comprising control means for controlling amount of current conduction of said control transistor.
- 29. A light control system as claimed in claim 28 wherein said control means includes means for sensing the light output of said at least one lamp.
- 30. A light control system as claimed in claim 29 wherein said output sensing means includes a photosensor and wherein said system further comprises a fiber optic wave guide means for conducting light from said lamp to said photosensor.
- 31. A light control system as claimed in claim 26 wherein said active electronic device comprises a plurality of transistors connected in a high gain configuration.
- 32. A light control system comprising at least one standard rapid start-type fluorescent lamp including at least two cathode heater elements therein, at least one standard rapid-start ballast connected to said lamp to form a ballast-lamp combination, an A.C. supply for supplying A.C. voltage to said lamp-ballast combination, an electronic control circuit for limiting the current supplied from said A.C. supply to said lamp-ballast combination during a portion of a halfwave of said A.C. voltage, said electronic current control circuit including means, including at least one control transistor connected in a rectifying bridge connected to said A.C. supply, for providing that subsequent to initial ignition of said lamp, substantially full open circuit voltage for the said cathode heater elements of the lamp is supplied from the ballast during any time interval within the each half wave of the A.C. voltage that the electronic control circuit is not providing current limiting.
- 33. A light control system as claimed in claim 32 further comprising control means for controlling the operation of said control transistor, said control means including means for sensing the light output of said at least one lamp.
- 34. A light control system as claimed in claim 33 wherein said light output sensing means includes a photodetector and said system further comprises fiber optic waveguide means for conducting light from said lamp to said photodetector.
- 35. A light control system as claimed in claim 32 wherein said control transistor comprises a plurality of transistors connected in a high gain configuration.
- 36. A light control system as claimed in claim 32 wherein said at least one lamp comprises a plurality of said rapid start lamps each including associated cathode heater elements, said inductive ballast comprising a primary winding connected to said rectifying bridge and a plurality of secondary windings respectively connected to the cathode heater elements of said lamps.
- 37. A light control system comprising at least one standard rapid start-type fluorescent lamp including at least two cathode heater elements, at least one standard rapid-start ballast connected to said lamp to form a ballast-lamp combination, an A.C. supply for supplying electrical energy to said ballast-lamp combination and an electronic current control circuit for controlling the electrical energy supplied to said ballast-lamp combination from A.C. supply, said electronic current control circuit providing current limiting during a portion of a half wave of the A.C. supply and including means, including at least one active electronic device, for providing that a portion of the available A.C. supply voltage for the cathode heater elements of the lamp is supplied from the ballast during the time said electronic current control circuit is providing current limiting, the portion of the instantaneous supply voltage supplied by said ballast being equal to the instantaneous supply voltage minus the voltage in excess of that required by the lamp for the limited level of current with the said excess voltage appearing across said at least one active electronic device during the times of current limiting.
- 38. A light control system as claimed in claim 37 wherein said means including at least one active electronic device provides that substantially full open circuit voltage for the said cathode heater elements of the lamp is supplied from said ballast up to the time that the lamp is initially ignited.
- 39. A light control system as claimed in claim 37 wherein said means including at least one electronic device provides that, subsequent to the initial ignition of the lamp substantially full open circuit voltage for the said cathode heater elements of the lamp is supplied from the ballast during the time interval within the subsequent half waves of the A.C. voltage of the A.C. supply that the lamp arc is not being current limited by the said at least one active electronic device.
- 40. A fluorescent lamp light system powered from an A.C. supply and adapted for use with higher current ballasts employed with higher current arc discharge lamps, said system comprising:
- a plurality of said arc discharge lamps;
- a said reactive ballast for said plurality of lamps;
- rectifying means connected to said A.C. supply;
- a first control transistor connected to said rectifying means for controlling the arc current supplied to said lamps through said ballast;
- a control unit for controlling the conduction said control transistor including feedback means responsive to the output of said lamps for producing an arc current control signal related to the output of said lamps and for supplying said arc current control signal to said control transistor; and
- means for increasing the arc current supplied to said lamps including at least one further control transistor and means for substantially matching the current flow through the first control transistor and said at least one further control transistor comprising a first resistor connected in the emitter circuit of said first control transistor, a second resistor connected in the emitter circuit of said at least one further control transistor and having a resistance value substantially equal to the resistance value of said first resistor, and an operational amplifier having an output connected to the base of the at least one further control transistor, a first input connected to a junction between said first resistor and the emitter of said first control transistor, and a second input connected to a junction between said second resistor and the emitter of the said at least one further control transistor.
- 41. A system as claimed in claim 40, further comprising means for directly connecting the collector of the said at least one further control transistor to the collector of said first control transistor.
- 42. A light control system comprising at least one fluorescent lamp including at least two cathode elements, at least one transformer ballast, including a primary winding and at least one secondary winding, connected to said at least one lamp to form a ballast-lamp combination therewith, an electronic current control circuit for controlling the electrical energy supplied to said ballast-lamp combination, and an A.C. voltage supply line connected to said ballast and said control circuit, the primary winding of said transformer ballast being connected in series with said A.C. supply line and said control circuit and said secondary winding being connected to said lamp, said electronic current control circuit including means, including at least one electronic switching device having a low impedance state and a higher impedance state, for providing a control mode of operation wherein said switching device is in the low impedance state thereof during the beginning and end portions of each half-cycle of the A.C. voltage source such that substantially full open circuit voltage is supplied to the ballast for the cathode elements of the lamp and wherein said switching device provides arc current control during a period between said beginning and end portions of each said half-cycle, said system further comprising feedback means for sensing a parameter related to the light output of said at least one lamp and for producing an electrical output signal in accordance therewith, and said electronic current control circuit being responsive to said electrical output signal.
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation of my copending U.S. patent application Ser. No. 945,842, filed on Sept. 26, 1978, and entitled "Energy Conserving Automatic Light Output System", now abandoned, which is, in turn, a continuation-in-part of my copending U.S. patent application Ser. No. 849,427, filed on Nov. 7, 1977 and entitled "Energy Conserving Automatic Light Output System", now abandoned.
US Referenced Citations (21)
Foreign Referenced Citations (4)
Number |
Date |
Country |
973520 |
Oct 1964 |
GBX |
1147969 |
Apr 1969 |
GBX |
1180755 |
Feb 1970 |
GBX |
1308133 |
Feb 1973 |
GBX |
Non-Patent Literature Citations (1)
Entry |
Amick, Fluorescent Lighting Manual, Third Edition, McGraw-Hill, New York, 1960, pp. 80-85. |
Continuations (1)
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Number |
Date |
Country |
Parent |
945842 |
Sep 1978 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
849427 |
Nov 1977 |
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