US20020011790A1 - Straight fluorescent lamp with surface-mounted electrical conduit - Google Patents

Straight fluorescent lamp with surface-mounted electrical conduit Download PDF

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Publication number
US20020011790A1
US20020011790A1 US09/289,512 US28951299A US2002011790A1 US 20020011790 A1 US20020011790 A1 US 20020011790A1 US 28951299 A US28951299 A US 28951299A US 2002011790 A1 US2002011790 A1 US 2002011790A1
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fluorescent lamp
fact
glass tube
straight fluorescent
ballast
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US09/289,512
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US6429590B2 (en
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Walter Holzer
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J61/00Gas-discharge or vapour-discharge lamps
    • H01J61/02Details
    • H01J61/56One or more circuit elements structurally associated with the lamp
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J61/00Gas-discharge or vapour-discharge lamps
    • H01J61/70Lamps with low-pressure unconstricted discharge having a cold pressure < 400 Torr
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01JELECTRIC DISCHARGE TUBES OR DISCHARGE LAMPS
    • H01J61/00Gas-discharge or vapour-discharge lamps
    • H01J61/70Lamps with low-pressure unconstricted discharge having a cold pressure < 400 Torr
    • H01J61/72Lamps with low-pressure unconstricted discharge having a cold pressure < 400 Torr having a main light-emitting filling of easily vaporisable metal vapour, e.g. mercury
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B20/00Energy efficient lighting technologies, e.g. halogen lamps or gas discharge lamps

Definitions

  • the task of the invention is to radically reduce this expense, and not only to save costs, but also to devise additional lamp designs and applications of these energy-saving fluorescent lamps.
  • connection lines connection lines
  • a protective layer it is technologically much simpler to apply conductive coatings to the glass tube as connection lines, which are additionally covered with a protective layer.
  • a significant additional improvement consists of providing the housing of the electronics with a base for insertion in a light socket.
  • the one-sided base is achieved in that the gas discharge vessel, i.e., the glass tube, is either bent in a U-shape or melted together from two individual glass tubes, a method that cannot be rationally used in long glass tubes.
  • FIG. 1 and FIG. 1 a show a fluorescent lamp mounted on one side with integrated ballast.
  • FIG. 2 and FIG. 2 a show a lamp with a longitudinal groove mounted on one side.
  • FIG. 3 and FIG. 3 a show a lamp with an unheated, cold electrode mounted on one side.
  • FIG. 4 shows a compact fluorescent lamp with an Edison screw base.
  • FIG. 5 shows a compact fluorescent lamp with a separable ballast.
  • the gas discharge lamp ( 1 ) depicted in FIGS. 1 and 2 is equipped with two heated electrodes ( 8 ), which require, in principle, two terminals.
  • Two outer connection lines ( 8 ) are therefore schematically shown in FIG. 1, which supply the second electrode ( 6 ) without indicating how these run along gas tube ( 1 ).
  • the connection lines ( 8 ) are shown as vapor-deposited or printed conductor paths, which are covered by an insulation layer ( 16 ).
  • the ballast ( 2 ) is accommodated in the housing ( 17 ), having a pin base ( 4 ), and can be plugged into a socket ( 3 ).
  • the spring contacts ( 12 ) are on line voltage ( 13 ) and supply the lamp with the required voltage.
  • a glass tube ( 1 ) is protected from damage with an end cap ( 15 ).
  • This end cap ( 15 ) can be designed in the usual shape as a combined metal-plastic part.
  • the arrangement of a mount ( 11 ) to support the free end of the lamp is important.
  • the mount ( 11 ) can be molded onto the plastic part of the end cap ( 15 ) or the otherwise common mass produced end caps with contact pins can also be used as mount.
  • FIG. 2 shows two additional details.
  • the second electrode is initially simply shorted, in order to save outer connection ( 8 ).
  • the remaining single outer connection ( 18 ) is shown as a wire embedded in a longitudinal groove of glass tube ( 1 ).
  • the enlarged schematic section of FIG. 2 shows this.
  • the depicted longitudinal groove is not a special feature of this lamp, but has been provided by individual companies for many years to improve the ignition and burning properties of the gas discharge. This technology requires no special development.
  • the outer connection ( 8 ) in this example is depicted as a vapor-deposited or printed conducting path, which requires no additional contact protection if the capacitor ( 10 ) arranged in ballast ( 2 ) meets the safety provisions of the corresponding regional authorities.
  • An additional effect of the applied conducting path consists of the fact that a reduction of ignition voltage is obtained, as has been used already for many years by such ignition strips. This is primarily highly desirable at the otherwise increased ignition voltage in cold electrodes.
  • FIG. 4 represents an expansion in principle.
  • the lamp becomes a compact fluorescent lamp with integrated ballast, a true market gap that can finally be filled.
  • the shown Edison screw socket was chosen because it is well known.
  • a protected-type socket system for example, according to German Examined Patent Application D 197 07 048 A1, is prescribed because of the present strict regulations.
  • FIG. 5 shows another example of how a lamp according to the invention can be used cost effectively.
  • the gas discharge vessel ( 1 ) is equipped with a 3-pole pin base ( 4 ), which permits mechanical and electrical separation of the electronic ballast ( 2 ). Should the lamp become unusable, the ballast ( 2 ), which normally has a much longer lifetime, can be reused and only the lamp part need be replaced.

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  • Vessels And Coating Films For Discharge Lamps (AREA)

Abstract

The invention concerns the configuration of a fluorescent lamp, which consists only of a single, straight glass tube as gas discharge vessel, which is modified to a “compact fluorescent lamp” with integrated ballast by one-sided mounting by means of electrical connections applied to the glass tube.
Additional application examples are presented.

Description

  • Although long, straight fluorescent lamps have the largest market share in lighting technology and have gained acceptance worldwide for many years, only a few significant improvements have been made in the further development of these lamps. These include the switch to electronic ballasts, a certain improvement in fluorescent material and a reduction in the diameter of the glass tube. [0001]
  • The high cost in the manufacture of lamps and light strips was perceived as a necessary evil and attempts were made to reduce the manufacturing costs by using terribly expensive robots. This primarily concerns the laying of millions of kilometers of connection lines in the lamps, whose electrodes must each be connected with two wires over the entire length of the lamps. [0002]
  • The task of the invention is to radically reduce this expense, and not only to save costs, but also to devise additional lamp designs and applications of these energy-saving fluorescent lamps. [0003]
  • This objective is achieved by equipping these long, straight glass tubes, that serve as gas discharge vessels, on one end in the region of the first electrode with all required connections for connection to the electronic ballast and running the required connections to the second electrode outside of the glass tube. For example, this would also be possible with wires that are inserted in a longitudinal groove, in order to protect them from damage. [0004]
  • It is technologically much simpler to apply conductive coatings to the glass tube as connection lines, which are additionally covered with a protective layer. [0005]
  • The solution is simplified in that the number of required connection lines is reduced. This can be achieved according to the invention in that the second electrode is not heated, both ends of the coiled electrode then being simply connected to each other. This method is feasible, but, among other things, leads to a shortening of the lifetime of the lamp. It is better to use so-called “unheated, cold electrodes”, which are equipped with a large amount of emitter paste and were deliberately developed with other measures for an unheated, cold start. [0006]
  • In order to make possible contact with the metal coatings nonhazardous, it is recommended according to the invention that these be made potential-free by a protective capacitor. Since transmission of the lamp current occurs with a high frequency to 100 kHz, only small capacitance values are required, which entail no contact hazard for a low line frequency of 50 or 60 Hz, especially if additional insulation protects against contact. [0007]
  • It is expedient to equip the lamps in the region of the second electrode, i.e., on the “free” end, with means to mount or support the lamp. [0008]
  • A significant additional improvement consists of providing the housing of the electronics with a base for insertion in a light socket. This produces a “compact” fluorescent lamp with integrated electronics, as are present in large numbers on the market in the small lamps for household use with a base on one side. In these lamps, the one-sided base is achieved in that the gas discharge vessel, i.e., the glass tube, is either bent in a U-shape or melted together from two individual glass tubes, a method that cannot be rationally used in long glass tubes.[0009]
  • The subsequent figures serve for understanding of the inventive concept and its progressiveness. They cannot describe all the details of the invention, since there are numerous manufacturing variants and design possibilities that permit application of the invention. In the figures: [0010]
  • FIG. 1 and FIG. 1[0011] a show a fluorescent lamp mounted on one side with integrated ballast.
  • FIG. 2 and FIG. 2[0012] a show a lamp with a longitudinal groove mounted on one side.
  • FIG. 3 and FIG. 3[0013] a show a lamp with an unheated, cold electrode mounted on one side.
  • FIG. 4 shows a compact fluorescent lamp with an Edison screw base. [0014]
  • FIG. 5 shows a compact fluorescent lamp with a separable ballast. [0015]
  • The following description provides practical examples of the invention. The same functional parts are given the same reference numbers in all figures. [0016]
  • The gas discharge lamp ([0017] 1) depicted in FIGS. 1 and 2 is equipped with two heated electrodes (8), which require, in principle, two terminals. Two outer connection lines (8) are therefore schematically shown in FIG. 1, which supply the second electrode (6) without indicating how these run along gas tube (1). In the enlarged, also schematically depicted section of FIG. 1a, the connection lines (8) are shown as vapor-deposited or printed conductor paths, which are covered by an insulation layer (16).
  • The ballast ([0018] 2) is accommodated in the housing (17), having a pin base (4), and can be plugged into a socket (3). The spring contacts (12) are on line voltage (13) and supply the lamp with the required voltage. On the other end, a glass tube (1) is protected from damage with an end cap (15). This end cap (15) can be designed in the usual shape as a combined metal-plastic part. The arrangement of a mount (11) to support the free end of the lamp is important. The mount (11) can be molded onto the plastic part of the end cap (15) or the otherwise common mass produced end caps with contact pins can also be used as mount.
  • FIG. 2 shows two additional details. The second electrode is initially simply shorted, in order to save outer connection ([0019] 8). The remaining single outer connection (18) is shown as a wire embedded in a longitudinal groove of glass tube (1). The enlarged schematic section of FIG. 2 shows this.
  • The depicted longitudinal groove is not a special feature of this lamp, but has been provided by individual companies for many years to improve the ignition and burning properties of the gas discharge. This technology requires no special development. [0020]
  • The problem of the 2[0021] nd electrode is solved in the example of FIG. 3, essentially in that two unheated electrodes (7) are provided, which withstand the more severe starting conditions without difficult when properly dimensioned.
  • The outer connection ([0022] 8) in this example, as shown in FIG. 3a, is depicted as a vapor-deposited or printed conducting path, which requires no additional contact protection if the capacitor (10) arranged in ballast (2) meets the safety provisions of the corresponding regional authorities.
  • An additional effect of the applied conducting path consists of the fact that a reduction of ignition voltage is obtained, as has been used already for many years by such ignition strips. This is primarily highly desirable at the otherwise increased ignition voltage in cold electrodes. [0023]
  • The example of FIG. 4 represents an expansion in principle. By arranging a base that can be inserted into the lamp sockets, the lamp becomes a compact fluorescent lamp with integrated ballast, a true market gap that can finally be filled. The shown Edison screw socket was chosen because it is well known. However, a protected-type socket system, for example, according to German Examined Patent Application D 197 07 048 A1, is prescribed because of the present strict regulations. [0024]
  • FIG. 5 shows another example of how a lamp according to the invention can be used cost effectively. The gas discharge vessel ([0025] 1) is equipped with a 3-pole pin base (4), which permits mechanical and electrical separation of the electronic ballast (2). Should the lamp become unusable, the ballast (2), which normally has a much longer lifetime, can be reused and only the lamp part need be replaced.
  • The basic idea of further developing a fluorescent lamp, consisting merely of a single, straight gas discharge to a lamp mounted on one side, offers a wide variety of application possibilities, as shown in the cited examples. As an additional example, the possibility can merely be mentioned of using the gas discharge lamp according to FIG. 5 in a base ([0026] 3), in which an electronic ballast (2) is incorporated, a solution that appears to be both cost-effective and unbeatable, in terms of space requirements and service. A lamp that is equipped with such a combination requires almost no internal wiring.
  • The cited examples offer many additional hints that build on the invention and its indirect scope of protection. Any combination of properties shown in the examples is naturally possible. The examples in this respect are not to be interpreted as restrictive. [0027]

Claims (8)

1. Straight fluorescent lamp with ballast, consisting of a single, straight glass tube as gas discharge vessel, which has electrodes on both ends and is connected to an electronic ballast to generate the required operating voltages, characterized by the fact that all terminals of the gas discharge vessel relative to the ballast are situated on one end of the gas discharge vessel in the region of the first electrode and at least one outer electrical connection to the second electrode on the other end of the glass tube is present on the glass tube.
2. Straight fluorescent lamp according to claim 1, characterized by the fact that at least the second electrode is designed as an unheated electrode.
3. Straight fluorescent lamp according to one of the preceding claims, characterized by the fact that at least one of the outer connections is applied as a metal coating on the glass tube.
4. Straight fluorescent lamp according to one of the preceding claims, characterized by the fact that at least one of the outer connections is embedded in a longitudinal groove of the glass tube.
5. Straight fluorescent lamp according to one of the preceding claims, characterized by the fact that at least one of the outer connections is separated from the potential of the ballast by a capacitor.
6. Straight fluorescent lamp according to one of the preceding claims, characterized by the fact that means to mount or support the glass tube are present in the region of the second electrode.
7. Straight fluorescent lamp according to one of the preceding claims, characterized by the fact that the housing of the electronic ballast is provided with a base for connection to a lamp socket.
8. Straight fluorescent lamp according to one of the preceding claims, characterized by the fact that the gas discharge vessel has a plug-in base and is connected separably to the ballast via this base.
US09/289,512 1999-01-12 1999-04-09 Straight fluorescent lamp with surface-mounted electrical conduit Expired - Fee Related US6429590B2 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE19900870 1999-01-12
DE19900870A DE19900870A1 (en) 1999-01-12 1999-01-12 Straight line fluorescent lamp as compact lamp with integral ballast using electrical connection to base on one side
DE19900870.1 1999-01-12

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050067977A1 (en) * 2002-08-23 2005-03-31 Chan Kam Kwan Fluorescent lamp
US20080160812A1 (en) * 2006-12-28 2008-07-03 Bagewadi Sandeep P Press fit connection for mounting electrical plug-in outlet insulator to a busway aluminum housing
US20090073699A1 (en) * 2007-09-19 2009-03-19 Zippy Technology Corp. Circuit structure for a lamp set
US20100072876A1 (en) * 2008-09-22 2010-03-25 Ushiodenki Kabushiki Kaisha Filament lamp
JP2019200930A (en) * 2018-05-17 2019-11-21 株式会社峰松電機 Electrode mounting structure and apparatus using the same

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102004047376A1 (en) * 2004-09-29 2006-04-06 Patent-Treuhand-Gesellschaft für elektrische Glühlampen mbH Dielectric barrier discharge lamp with pluggable electrodes
DE102004047375A1 (en) * 2004-09-29 2006-04-06 Patent-Treuhand-Gesellschaft für elektrische Glühlampen mbH Dielectric handicapped discharge lamp with cuff
DE102004047373A1 (en) * 2004-09-29 2006-04-06 Patent-Treuhand-Gesellschaft für elektrische Glühlampen mbH Lighting system with dielectrically impeded discharge lamp and associated ballast
RU2508500C2 (en) * 2010-02-15 2014-02-27 Абб Аг Lamp, namely wall lamp
US9311567B2 (en) 2010-05-10 2016-04-12 Kuang-chih Lee Manifold learning and matting

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US4092562A (en) * 1975-07-28 1978-05-30 General Electric Company Fluorescent lamp unit for multiple installation
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JPH0731498Y2 (en) * 1991-06-27 1995-07-19 スタンレー電気株式会社 Cold cathode tube
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DE19900889B4 (en) 1999-01-12 2004-04-15 Suresh Hiralal Shah Kit for converting luminaires with straight fluorescent lamps with a base on both sides, from inductive to electronic operation

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20050067977A1 (en) * 2002-08-23 2005-03-31 Chan Kam Kwan Fluorescent lamp
US7083309B2 (en) * 2002-08-23 2006-08-01 Kam Kwan Chan Fluorescent lamp tube having integrated electronic ballast
US20080160812A1 (en) * 2006-12-28 2008-07-03 Bagewadi Sandeep P Press fit connection for mounting electrical plug-in outlet insulator to a busway aluminum housing
US20090073699A1 (en) * 2007-09-19 2009-03-19 Zippy Technology Corp. Circuit structure for a lamp set
US7683552B2 (en) * 2007-09-19 2010-03-23 Zippy Technology Corp. Circuit structure for a lamp set
US20100072876A1 (en) * 2008-09-22 2010-03-25 Ushiodenki Kabushiki Kaisha Filament lamp
US8288932B2 (en) * 2008-09-22 2012-10-16 Ushiodenki Kabushiki Kaisha Filament lamp
JP2019200930A (en) * 2018-05-17 2019-11-21 株式会社峰松電機 Electrode mounting structure and apparatus using the same

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US6429590B2 (en) 2002-08-06

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