Movatterモバイル変換


[0]ホーム

URL:


US3927345A - Fluorescent dimming circuit with D-C flicker elimination - Google Patents

Fluorescent dimming circuit with D-C flicker elimination
Download PDF

Info

Publication number
US3927345A
US3927345AUS388978AUS38897873AUS3927345AUS 3927345 AUS3927345 AUS 3927345AUS 388978 AUS388978 AUS 388978AUS 38897873 AUS38897873 AUS 38897873AUS 3927345 AUS3927345 AUS 3927345A
Authority
US
United States
Prior art keywords
circuit
bidirectional
controllably conductive
conductive device
lamp
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US388978A
Inventor
Joseph Licata
George S Bartley
John E Longenderfer
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Lutron Technology Co LLC
Original Assignee
Lutron Electronics Co Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Lutron Electronics Co IncfiledCriticalLutron Electronics Co Inc
Priority to US388978ApriorityCriticalpatent/US3927345A/en
Application grantedgrantedCritical
Publication of US3927345ApublicationCriticalpatent/US3927345A/en
Anticipated expirationlegal-statusCritical
Assigned to LUTRON TECHNOLOGY COMPANY LLCreassignmentLUTRON TECHNOLOGY COMPANY LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: LUTRON ELECTRONICS CO., INC.
Expired - Lifetimelegal-statusCriticalCurrent

Links

Images

Classifications

Definitions

Landscapes

Abstract

A fluorescent tube is connected in series with a triac device which is provided with a phase control firing circuit for firing the triac each half cycle. The triac firing circuit is provided with a variable resistance control circuit to compensate against the asymmetric firing of the main triac due to asymmetry in the components in the firing circuit.

Description

United States Patent [1 1 Licata et al.
[ Dec. 16, 1975 l l FLUORESCENT DIMMING CIRCUIT WITH D-C ER ELIMINATION {75] Inventors: Joseph Licata, Schnecksvillc;
George S. Bartley, Allentown; John E. Longenderfer, Orefield, all of Pa.
[73} Assignee: Lutron Electronics Co., Inc.,
Coopersburg, Pa.
[22] Filed: Aug. 16, I973 [21 Appl. No.: 388.978
OTHER PUBLICATIONS Using Triac for Control of A.C 5/64 iowcr. GE. Appht Nte. 200.35 by Howell.
Primary ExaminerMichael .l. Lynch Assistant ExaminerB. Pi Davis Attorney, Agent, or Firm-()strolenk, Faber, Gerb 6L Soffen l 5 7 ABSTRACT A fluorescent tube is connected in series with a triac device which is provided with a phase control firing circuit for firing the triac each half cycle. The triac tiring circuit is provided with a variable resistance control circuit to compensate against the asymmetric firing of the main triac due to asymmetry in the compo- [56] References Cited nents in the firing circuit.
UNTFED STATES PATENTS 5 Claims, 5 Drawing Figures 3,422,309 1/1969 SpIra et al 3l5/DlG. 4
D/MMf/V CONWJZ Z I C/if'V/T I O I '/J U.S. Patent D6016, 1975 ca/vm'az 2/ cMra/r FLUORESCENT DIMMING CIRCUIT WITH D-C FLICKER ELIMINATION BACKGROUND OF THE INVENTION This invention relates to a novel fluorescent lamp dimming circuit, and more particularly relates to a novel phase control circuit for controllably conductive devices, such as triacs and thyristors, which insures the symmetrical firing of the controllably conductive devices on alternate half cycles.
Fluorescent tube dimming circuits are well known and generally comprise the use of a triac or, if desired, oppositely poled thyristors which are connected in the ballast. circuit of the fluorescent lamp.- The devices control the point within each half cycle at which line a-c voltage is applied to the lamp. In this manner the a-c current applied to the lamp can be varied in order to provide dirmning of the lamp.
A common problem with fluorescent lamp dimmers is that the phase control circuits do not fire symmetrically for alternate half cycles of the input power. When the output of the dimmer to the fluorescent lamps is asymmetrical, due to asymmetries in various components of the dimmer, a d-c component is produced in the lamp voltage and the fluorescent lamps will flicker. The use of the dimer becomes undesirable.
In the past, firing symmetry has been obtained only by very carefully selecting and balancing the components used in the assembly of the dimmer. Even when this was done, however, after the dimmer was completely assembled asymmetries were found due to diverse factors such as soldering, and the like, during the assembly of the dimmer which are extremely hard to control.
BRIEF SUMMARY OF THE INVENTION The present invention provides a novel control circuit arrangement for eliminating asymmetry in an a-c phase control circuit by a single and easy adjustment which can be made after complete assembly of the dimmer. More particularly, in accordance with the invention, the reference voltage in the adjustable timing circuit is derived from an adjustable resistor which produces a reference voltage for each half cycle of operation of the firing circuit. After assembly of the complete dimmer, the device can be forced to fire symmetrically on positive and negative half cycles simply by an adjustment of the single adjustment resistor which increases the reference voltage for one half cycle while decreasing the reference voltage for the other half cycle. Thus, asymmetries due to any particular component can be easily and quickly adjusted after assembly of the dimmer.
BRIEF DESCRIPTION OF THE DRAWINGS FIG. 1 schematically illustrates a conventional fluorescent lamp and ballast with a triac device for producing dimming of the lamp.
FIG. 2 is a detailed circuit diagram of a dimmer control circuit constructed in accordance with the invention and applied to the fluorescent lamp and ballast circuit of FIG. 1.
FIG. 3 shows the input voltage applied to the ballast terminals in FIGS. 1 and 2.
FIG. 4 shows the asymmetric firing of the triac in FIG. 1 which would produce a flicker in the fluorescent lamp light output.
FIG. 5 illustrates the symmetrically balanced firing for both positive and half cycles which can be easily obtained by a simple adjustment after assembly of the dimmer in FIG. 2.
DETAILED DESCRIPTION OF THE DRAWINGS Referring first to FIG. I, there is schematically illustrated a typical conventional circuit for operating and dimming afluorescent lamp 10 which can be any commercially available lamp. It should be noted that thelamp 10 can generally be any type of gas discharge lamp or other load. The input voltage tolamp 10 is obtained from terminals 11 and 12 which may be connected to a conventional volt 60 hertz outlet, although it will be apparent that other a-c sources of any desired industrial or residential type could be employed.
A conventional ballast consisting oftransformer windings 13 and 14, which are coupled in the usual fashion, are connected as shown withsmall tap sections 15 and 16, respectively, serving as heater windings for the filaments at either end oftube 10. In order to control the application of voltage to thetube 10, and to obtain dimming of the tube light, aconventional triac device 20 is connected in series with winding 14 andtube 10. It will be obvious to those skilled in the art that thetriac 20 could be replaced by equivalent controllably conductive devices, such as oppositely poled thyristors or the like.
Adimmer control circuit 21 is then connected to the gate electrode oftriac 20, where thedimmer control circuit 21 is normally a conventional phase control circuit which derives its operating power from the main line connected to terminals 11 and 12.
The normal operation of the circuit of FIG. 1 is illustrated, for example, in FIGS. 3 and 4, where FIG. 3 shows the traditionalsinusoidal wave shape 30 of the voltage applied to terminals 11 and 12.
FIG. 4, which is on the same time base as FIG. 3, illustrates the wave shape 31 of the voltage which is applied totube 10 and coils 14 and 16. More or less dimming is obtained by causing more or less phase control over the point at which lamp conduction (shown by the cross-hatched area in FIG. 4) starts in each half cycle. In FIG. 4, and on positive half cycles,
the lamp voltage has been delayed by the delay in firing oftriac 20 for a longer time t than the delay for negative half cycles which are shorter than t The differences in the delay at whichtriac 20 is fired on positive half cycles, as compared to negative half cycles, is due to asymmetries in the firing circuit which, in the past, have not been correctable after the assembly of the conventional phase control firing circuit. These asymmetries produce a d-c component shown indotted line 32 in FIG. 4 and cause a flicker in the fluorescent tube.
FIG. 5 illustrates awave shape 34 for voltage to be applied totube 10 and coils 14 and 16 in which the time delays and for positive and negative half cycles are equal. Thus, there is no d-c component in the lamp voltage and no d-c flicker of the light of the tube. This characteristic has been difficult to obtain in prior art dimmers and has been obtained only through the exercise of great care in the selection and assembly of the phase control circuit components.
FIG. 2 shows the novel circuit of the invention which provides a novel and simple means for adjusting the firing circuit, so that it fires symmetrically on positive and negative half cycles, where the adjustment can be easily made after assembly of the dimmer. In FIG. 2 components similar to those of FIG. 1 have been given similar identifying numerals. Thus, FIG. 2 simply shows the details of a dimmer control circuit 40 within dotted lines in FIG. 2 which replaces the prior artdimmer control circuit 21 of FIG. 1. Note that any desired type controllably conductive device can be used in place of tn'ac and that any desired type of gas discharge tube can be used in place offluorescent lamp 10.
The control circuit 40 includes a voltage dividercircuit containing resistor 41 which is connected in series with thereference resistor 43.Reference resistor 43 is, in turn, connected to thewiper arm 44 ofadjustable resistor 45. The opposite ends ofadjustable resistor 45 are then connected to oppositely poleddiodes 46 and 47 which are connected to the input power terminal 12.
An adjustable resistor 52' is then connected to the top ofreference resistor 43 and is connected to a timing capacitor53, and is also connected to an a-ctrigger device 54 which is, in turn, connected to the gate oftriac 20 through the current limitingresistor 55.
In the circuit of FIG. 2, the adjustable resistor 52 is the ultimate dimming adjustment device and the degree of phase control applied during positive and negative half cycles is controlled by the adjustment of this resistor. The symmetry between the phase control applied to positive and negative half cycles is, however, easily controlled through the adjustment of thewiper arm 44 of theadjustable resistor 45. This may be a factory adjustment which is made after assembly but before enclosing the circuit in a housing. Alternatively, the adjustment can always be accessible externally of the housing so that adjustment can be made to compensate for component aging and the like.
In operation, and assuming that the main dimmer resistor 52 has been set to a given value and that wiper arm-44 is also positioned at a given value, the circuit including resistor 52 andcapacitor 53 will serve as a timing circuit which will chargecapacitor 53 to a given value sufficient to fire the a-ctrigger 54 after a time dependent upon the voltage appearing at the junction between thereference resistor 43 andresistor 41. The firing oftrigger 54 will, in turn, inject a firing current into the gate oftriac 20.
The reference voltage at the top ofresistor 43 can be set to one value for positive half cycles and to another value for negative half cycles through the adjustment ofwiper arm 44 ofadjustable resistor 45,'since this will produce an unbalance in the resistance to the right ofarm 44 for negative half cycles as compared to the left ofarm 44 for positive half cycles. Thus, a simple adjustment atresistor 45 will increase the firing time, for example, for positive half cycles and decrease the firing time for negative half cycles and vice versa. Thus, the simple adjustment of this one component can adjust for asymmetries in any part of circuit 40 which would cause a difference in the time of firing for positive half cycles as compared to the time of firing for negative half cycles.
Although this invention has been described with respect to preferred embodiments, it should be understood that many variations and modifications will now be obvious to those skilled in the art, and it is preferred, therefore, that the scope of this invention be limited, not by the specific disclosure herein, but only by the appended claims.
The embodiments of the invention in which an exclusive privilege or property is claimed are defined as follows.
1. A controlled energizing circuit for a gas discharge lamp; said energizing circuit including an a-c power source, an inductive ballast, a bidirectional controllably conductive device, and a phase control circuit for controlling the points in the positive and negative half waves of said a-c power source at which said bidirectional controllably conductive device begins to conduct; said ballast coupling said a-c power source to said gas discharge lamp; said bidirectional controllably conductive device being connected in series with said lamp and permitting current flow to said lamp only after said bidirectional controllably conductive device is fired; said phase control circuit including trigger circuit means for applying a firing signal to said bidirectional controllably conductive device; a charging circuit coupled to said trigger circuit means for operating said trigger circuit means when said charging circuit is charged to a given voltage, and an input reference voltage circuit for driving said charging circuit; said input reference voltage circuit including an adjustable resistor means having a wiper arm and first and second oppositely poled diodes having first terminals connected to the opposite ends of said adjustable resistor means; second terminals of said oppositely poled diodes and said wiper arm, respectively, being connected to said a-c power source; said input reference voltage circuit defining separate reference voltages to said charging circuit for positive and negative half waves, respectively, of said a-c power source, whereby adjustment of said wiper arm of said adjustable resistor means is adjustable to compensate against the asymmetric firing of said bidirectional controllably conductive device.
2. The circuit of claim 1 wherein said bidirectional controllably conductive device consists of a triac.
3. The circuit of claim 1 wherein said gas discharge lamp is a fluorescent lamp.
4. The circuit of claim 1 which further includes dimmer control circuit means for controlling the amount of phase control in both positive and negative half cycles which is produced by said phase control circuit.
5. The circuit of claim 1 wherein said charging circuit includes a resistance-capacitance circuit having a given charging characteristic for a given input voltage.

Claims (5)

1. A controlled energizing circuit for a gas discharge lamp; said energizing circuit including an a-c power source, an inductive ballast, a bidirectional controllably conductive device, and a phase control circuit for controlling the points in the positive and negative half waves of said a-c power source at which said bidirectional controllably conductive device begins to conduct; said ballast coupling said a-c power source to said gas discharge lamp; said bidirectional controllably conductive device being connected in series with said lamp and permitting current flow to said lamp only after said bidirectional controllably conductive device is fired; said phase control circuit including trigger circuit means for applying a firing signal to said bidirecTional controllably conductive device; a charging circuit coupled to said trigger circuit means for operating said trigger circuit means when said charging circuit is charged to a given voltage, and an input reference voltage circuit for driving said charging circuit; said input reference voltage circuit including an adjustable resistor means having a wiper arm and first and second oppositely poled diodes having first terminals connected to the opposite ends of said adjustable resistor means; second terminals of said oppositely poled diodes and said wiper arm, respectively, being connected to said a-c power source; said input reference voltage circuit defining separate reference voltages to said charging circuit for positive and negative half waves, respectively, of said a-c power source, whereby adjustment of said wiper arm of said adjustable resistor means is adjustable to compensate against the asymmetric firing of said bidirectional controllably conductive device.
US388978A1973-08-161973-08-16Fluorescent dimming circuit with D-C flicker eliminationExpired - LifetimeUS3927345A (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US388978AUS3927345A (en)1973-08-161973-08-16Fluorescent dimming circuit with D-C flicker elimination

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US388978AUS3927345A (en)1973-08-161973-08-16Fluorescent dimming circuit with D-C flicker elimination

Publications (1)

Publication NumberPublication Date
US3927345Atrue US3927345A (en)1975-12-16

Family

ID=23536340

Family Applications (1)

Application NumberTitlePriority DateFiling Date
US388978AExpired - LifetimeUS3927345A (en)1973-08-161973-08-16Fluorescent dimming circuit with D-C flicker elimination

Country Status (1)

CountryLink
US (1)US3927345A (en)

Cited By (17)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4180745A (en)*1977-10-191979-12-25Frank BartlettPower regulating supply system for AC electrical loads
US4651060A (en)*1985-11-131987-03-17Electro Controls Inc.Method and apparatus for dimming fluorescent lights
US5173643A (en)*1990-06-251992-12-22Lutron Electronics Co., Inc.Circuit for dimming compact fluorescent lamps
GB2269948A (en)*1992-07-231994-02-23Axiomatic Design LtdGas discharge lamp dimmer circuit
US5504398A (en)*1994-06-101996-04-02Beacon Light Products, Inc.Dimming controller for a fluorescent lamp
US5537010A (en)*1994-06-101996-07-16Beacon Light Products, Inc.Voltage-comparator, solid-state, current-switch starter for fluorescent lamp
US5614790A (en)*1995-06-091997-03-25The United States Of America As Represented By The Secretary Of The NavyAutomatic alarm for fluorescent blinking
US5652481A (en)*1994-06-101997-07-29Beacon Light Products, Inc.Automatic state tranition controller for a fluorescent lamp
US5736817A (en)*1995-09-191998-04-07Beacon Light Products, Inc.Preheating and starting circuit and method for a fluorescent lamp
US5757145A (en)*1994-06-101998-05-26Beacon Light Products, Inc.Dimming control system and method for a fluorescent lamp
US5861720A (en)*1996-11-251999-01-19Beacon Light Products, Inc.Smooth switching power control circuit and method
US5861721A (en)*1996-11-251999-01-19Beacon Light Products, Inc.Smooth switching module
US5955847A (en)*1994-06-101999-09-21Beacon Light Products, Inc.Method for dimming a fluorescent lamp
US5977882A (en)*1995-08-221999-11-02Moore; Clayton K.Infrared remote controlled in-line power switch
US20050168896A1 (en)*2002-03-252005-08-04Vanderzon James R.Dimmer circuit with improved inductive load imbalance protection
US20050236389A1 (en)*2004-04-082005-10-27Maytag CorporationControl system for cooking appliance employing radiant cooking
US20050236388A1 (en)*2004-04-082005-10-27Maytag CorporationControl system for cooking appliance employing convection and radiant cooking

Citations (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3422309A (en)*1966-09-211969-01-14Lutron Electronics CoFluorescent light dimming system

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3422309A (en)*1966-09-211969-01-14Lutron Electronics CoFluorescent light dimming system

Cited By (22)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4180745A (en)*1977-10-191979-12-25Frank BartlettPower regulating supply system for AC electrical loads
US4651060A (en)*1985-11-131987-03-17Electro Controls Inc.Method and apparatus for dimming fluorescent lights
US5173643A (en)*1990-06-251992-12-22Lutron Electronics Co., Inc.Circuit for dimming compact fluorescent lamps
US5841239A (en)*1990-06-251998-11-24Lutron Electronics Co., Inc.Circuit for dimming compact fluorescent lamps
GB2269948A (en)*1992-07-231994-02-23Axiomatic Design LtdGas discharge lamp dimmer circuit
US5537010A (en)*1994-06-101996-07-16Beacon Light Products, Inc.Voltage-comparator, solid-state, current-switch starter for fluorescent lamp
US5955847A (en)*1994-06-101999-09-21Beacon Light Products, Inc.Method for dimming a fluorescent lamp
US5652481A (en)*1994-06-101997-07-29Beacon Light Products, Inc.Automatic state tranition controller for a fluorescent lamp
US5757145A (en)*1994-06-101998-05-26Beacon Light Products, Inc.Dimming control system and method for a fluorescent lamp
US5504398A (en)*1994-06-101996-04-02Beacon Light Products, Inc.Dimming controller for a fluorescent lamp
US5614790A (en)*1995-06-091997-03-25The United States Of America As Represented By The Secretary Of The NavyAutomatic alarm for fluorescent blinking
US5977882A (en)*1995-08-221999-11-02Moore; Clayton K.Infrared remote controlled in-line power switch
US5736817A (en)*1995-09-191998-04-07Beacon Light Products, Inc.Preheating and starting circuit and method for a fluorescent lamp
US5861721A (en)*1996-11-251999-01-19Beacon Light Products, Inc.Smooth switching module
US5861720A (en)*1996-11-251999-01-19Beacon Light Products, Inc.Smooth switching power control circuit and method
US20050168896A1 (en)*2002-03-252005-08-04Vanderzon James R.Dimmer circuit with improved inductive load imbalance protection
AU2009200970B2 (en)*2002-03-252011-11-10Clipsal Integrated Systems Pty LtdDimmer circuit with improved inductive load imbalance protection
US20130208382A1 (en)*2002-03-252013-08-15Clipsal Integrated Systems Pty LtdDimmer Circuit with Improved Inductive Load Imbalance Protection
US20050236389A1 (en)*2004-04-082005-10-27Maytag CorporationControl system for cooking appliance employing radiant cooking
US20050236388A1 (en)*2004-04-082005-10-27Maytag CorporationControl system for cooking appliance employing convection and radiant cooking
US7109448B2 (en)2004-04-082006-09-19Maytag CorporationControl system for cooking appliance employing radiant cooking
US7109447B2 (en)2004-04-082006-09-19Maytag CorporationControl system for cooking appliance employing convection and radiant cooking

Similar Documents

PublicationPublication DateTitle
US3927345A (en)Fluorescent dimming circuit with D-C flicker elimination
US4527099A (en)Control circuit for gas discharge lamps
US3831079A (en)Electronic photographic flash apparatus
US3344311A (en)Compensating control circuit
US3619716A (en)High-frequency fluorescent tube lighting circuit and ac driving circuit therefor
US4555741A (en)Device for eliminating inrush-current
US4680536A (en)Dimmer circuit with input voltage compensated soft start circuit
EP0090044A1 (en)Light dimmer for solid state ballast
US4015167A (en)Circuits for operating electric discharge lamps
US5854519A (en)Asymmetrical AC trigger simulation
US3170085A (en)Ballast circuit and system for dimming gaseous discharge lamps
US3691404A (en)Variable duty cycle control circuit
US4031458A (en)A.C. voltage regulator employing thyristor
US3335318A (en)Solid state dimming circuit
EP0048137B1 (en)Discharge tube firing circuit
US3482142A (en)Regulating system for arc discharge devices having means to compensate for supply voltage and load variations
US3614527A (en)Fluorescent-lamp-dimming circuit
GB2104319A (en)Fluorescent lamp starter apparatus
US3457458A (en)Gaseous discharge lamp circuit employing a pulser and a saturable reactor
US3249806A (en)Phase control circuits and systems for controlling power to electric discharge lamps
US3700962A (en)Control circuit for mercury arc lamps
US6573674B1 (en)Circuit for controlling a load to be supplied by an alternating current voltage
US3816797A (en)Solid state electronic dimmer
US4459515A (en)Phase-controlled ballast having shifting control
US4048543A (en)Discharge lamp operating circuit

[8]ページ先頭

©2009-2025 Movatter.jp