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US2554648A - Circuit arrangement for electric discharge lamps - Google Patents

Circuit arrangement for electric discharge lamps Download PDF

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Publication number
US2554648A
US2554648A US135635A US13563549A US2554648A US 2554648 A US2554648 A US 2554648A US 135635 A US135635 A US 135635A US 13563549 A US13563549 A US 13563549A US 2554648 A US2554648 A US 2554648A
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United States
Prior art keywords
lamp
transformer
circuit arrangement
electric discharge
discharge lamps
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Expired - Lifetime
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US135635A
Inventor
Stickley William Albert
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.)
EKCO ENSIGN ELECTRIC Ltd
EKCO-ENSIGN ELECTRIC Ltd
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EKCO ENSIGN ELECTRIC Ltd
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05BELECTRIC HEATING; ELECTRIC LIGHT SOURCES NOT OTHERWISE PROVIDED FOR; CIRCUIT ARRANGEMENTS FOR ELECTRIC LIGHT SOURCES, IN GENERAL
    • H05B41/00Circuit arrangements or apparatus for igniting or operating discharge lamps
    • H05B41/14Circuit arrangements
    • H05B41/16Circuit arrangements in which the lamp is fed by DC or by low-frequency AC, e.g. by 50 cycles/sec AC, or with network frequencies
    • H05B41/20Circuit arrangements in which the lamp is fed by DC or by low-frequency AC, e.g. by 50 cycles/sec AC, or with network frequencies having no starting switch
    • H05B41/23Circuit arrangements in which the lamp is fed by DC or by low-frequency AC, e.g. by 50 cycles/sec AC, or with network frequencies having no starting switch for lamps not having an auxiliary starting electrode
    • H05B41/232Circuit arrangements in which the lamp is fed by DC or by low-frequency AC, e.g. by 50 cycles/sec AC, or with network frequencies having no starting switch for lamps not having an auxiliary starting electrode for low-pressure lamps
    • H05B41/2325Circuit arrangements in which the lamp is fed by DC or by low-frequency AC, e.g. by 50 cycles/sec AC, or with network frequencies having no starting switch for lamps not having an auxiliary starting electrode for low-pressure lamps provided with pre-heating electrodes

Definitions

  • a circuit arrangement for an electric discharge lamp comprising an auto-transformer in the form of a plurality of serially connected windings, the outermost ends of the transformer being connected to mains supply terminals and the transformer comprising two large windings and two small windings, all the windingsb'eing serially connected and the auto-transformer being of elongate form, an elongated discharge lamp situated in close arallel relation with the autotransformer, a cathode heater at each end of the lamp, one cathode heater being serially connected with one small winding of the transformer and the other cathode heater being serially connected REFERENCES CITED
  • the following references are of record in the file of this patent:

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  • Circuit Arrangements For Discharge Lamps (AREA)

Description

w. A. STICKLEY 2,554,648
CIRCUIT ARRANGEMENT FOR ELECTRIC DISCHARGE LAMPS Filed Dec; 29, 1949 May 29, 1951 A llormyg i atented May 29, 1951 CIRCUIT ARRANGEMENT FOR ELECTRIC v DISCHARGE LAMPS William Albert Stickley, Eastwood, England, as-
I signer to Elmo-Ensign Electric Limited, Essex,
England Application December 29, 1949, Serial No. 135,635
In Great Britain January 1, 1949 When an electric discharge lamp is provided with cathodes which require to be heated before the lamp strikes it is usual to employ a cathode heater through which current is passed prior to the lamp striking, such current causing the heaters to operate and warm the cathodes. When the lamp has struck, the heat generated by the discharge is sufficient to maintain the cathodes at operating temperature and if no precautions are taken this heat together with that generated by the preheating current would cause overheating of the cathodes and cause them to deteriorate rapidly so that their useful life would be short since the impedance in the circuit is different after the lamp has struck from what it was before, means must be provided to control the current in the circuit. This was usually effected by means of a choke coil serially connected in the discharge path. Many expedients have been suggested and used for reducing the flow of the pre-heating current when the lamp has struck and the present invention is a circuit arrangement of novel and simple design to provide this facility.
According to a feature of the present invention a circuit arrangement for an electric discharge lamp comprises an auto-transformer provided with winding sections for supplying heating current to the electrodes of the lamp and wherein the steady voltage applied across the discharge path is only a predetermined portion of the potential difference across the auto-transformer, the arrangement being such that when the lamp has struck, part of the winding of the auto-transformer is substantially by-passed by the lamp discharge path and the remainder of the winding acts as a normal stabilising choke.
According to another feature of the invention the auto-transformer is placed in longitudinal proximity to the lamp so as to facilitate starting.
The above and other features of the invention will be more readily understood by a perusal of the following description having reference to the accompanying drawings of which Figure 1 is a circuit diagram for a discharge lamp according to the invention; Figure 2 is a plan view of an auto-transformer which may be used in the circuit of Figure l; and Figure 3 is a side elevation and Figure 4 an end elevation of the parts shown in Figure 2.
Referring to Figure 1, an auto-transformer A is supplied with alternating current from mains M and in the example given this voltage is 230. The transformer has two main sections H and D and two small sections B and C which latter supply 1 Claim. (01. 315-257) heating current to the cathodes E of the lamp L. The lamp is an ordinary fluorescent discharge lamp and further description of it will be unnecessary. The sections B and C are arranged to supply a voltage of approximately 10-12 volts across the lamp electrodes E. The section D of the auto-transformer winding has induced in it a voltage of say 130 this being adequate for causing the lamp to strike.
When the lamp has struck, the section D of the winding as well as the small sections C and AB are placed in parallel with the discharge path of the lamp so that in this condition only a very small current flows through these windings. The winding H is in series with the lamp discharge path and therefore serves as an ordinary choke coil to limit the current flowing in the lamp circuit.
The auto-transformer may be constructed in accordance with Figures 2, 3 and 4. It comprises a plurality of insulated laminations of magnetic material of E shape assembled in known manner to provide a central core I and a yoke 2. The windings E, D, B and C are mounted on the core as indicated to constitute a leaky auto-transformer. The coils B, C and D form a single coil unit, the sections B, C and D being constituted by tappings which are connected to terminal tags T1, T2, T3 and T4. The tags T1 and T2 are adapted to connect to one cathode heater E (Figure 1), the tags T3 and T4 being connected to the other cathode heater E, whilst the winding D is connected to the tags T2 and T3. A tag T5 is connected to T1 and a tag T6 is connected to one end of the coil H the other end of which is connected to tag T4. Tags T5 and T6 are adapted to be connected to the terminals of the mains supply source M. The specification of the windings may be .as follows:
Coil H2500 turns of diameter 0.0092" Coil Dl600 turns of diameter 0.0076" Coils B and C each turns diameter 0.0124" In order to assist in causing the lamp to strike, which is sometimes dimcult especially when the surrounding temperature is very low, it has been the practice to provide what was known as a starting strip. This was a length of metal wire or foil extending from one end of the lamp to the other and being held close to the outside surface of the lamp envelope. We have found that the transformer designed as above having a length much greater than its width and depth may in efiect constitute a starting strip if the transformer is mounted in close proximity with the lamp and parallel therewith. Such an arrangement would be diagrammatically illustrated in Figure 1 by making the leads between the coils B and C and their respective lamp electrodes as short as possible.
WhatI claim as new and desire to secure by Letters Patent of the United States is:
A circuit arrangement for an electric discharge lamp comprising an auto-transformer in the form of a plurality of serially connected windings, the outermost ends of the transformer being connected to mains supply terminals and the transformer comprising two large windings and two small windings, all the windingsb'eing serially connected and the auto-transformer being of elongate form, an elongated discharge lamp situated in close arallel relation with the autotransformer, a cathode heater at each end of the lamp, one cathode heater being serially connected with one small winding of the transformer and the other cathode heater being serially connected REFERENCES CITED The following references are of record in the file of this patent:
UNITED STATES PATENTS Number Name Date 2,025,471 Osborne Dec. 24, 1935 2,253,185 Lord Aug. 19, 1941 2,302,213 Hall, Jr Nov. 17, 1942 2,337,992 Hall, Jr. et a1 Dec. 28, 1943 2,458,277 Lark Jan. 4, 1949 2,462,336 Ruff Feb. 22, 1949
US135635A 1949-01-01 1949-12-29 Circuit arrangement for electric discharge lamps Expired - Lifetime US2554648A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2823337A (en) * 1952-10-02 1958-02-11 Gen Electric Apparatus for starting and operating electric discharge lamp
US5684035A (en) * 1996-07-17 1997-11-04 Kapadia; Govind J. Antimalarial agents

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2025471A (en) * 1934-05-04 1935-12-24 Ferranti Electric Ltd Correction of power factor
US2253185A (en) * 1940-08-31 1941-08-19 Gen Electric Electric discharge apparatus
US2302213A (en) * 1939-08-07 1942-11-17 Lloyd O James Electric circuits for lamp regulation
US2337992A (en) * 1942-01-14 1943-12-28 Alfred P Daniels High power factor high intensity lamp circuit
US2458277A (en) * 1946-06-19 1949-01-04 Sturdy Electric Company Ltd Control of electric discharge lamps
US2462336A (en) * 1945-05-18 1949-02-22 Gen Electric Electric discharge device and method of operation

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2025471A (en) * 1934-05-04 1935-12-24 Ferranti Electric Ltd Correction of power factor
US2302213A (en) * 1939-08-07 1942-11-17 Lloyd O James Electric circuits for lamp regulation
US2253185A (en) * 1940-08-31 1941-08-19 Gen Electric Electric discharge apparatus
US2337992A (en) * 1942-01-14 1943-12-28 Alfred P Daniels High power factor high intensity lamp circuit
US2462336A (en) * 1945-05-18 1949-02-22 Gen Electric Electric discharge device and method of operation
US2458277A (en) * 1946-06-19 1949-01-04 Sturdy Electric Company Ltd Control of electric discharge lamps

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2823337A (en) * 1952-10-02 1958-02-11 Gen Electric Apparatus for starting and operating electric discharge lamp
US5684035A (en) * 1996-07-17 1997-11-04 Kapadia; Govind J. Antimalarial agents
US5807898A (en) * 1996-07-17 1998-09-15 Kapadia; Govind J. Antimalarial agents

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