Claims
- 1. Multi-tube compact low-pressure discharge fluorescent lamp having
- a tubular glass discharge vessel (1) defining a continuous electrical discharge path,
- said tubular glass discharge vessel having
- a fluorescent coating applied to the inside of at least a major portion of the discharge vessel, a fill of mercury and at least one noble gas within the discharge vessel, and two filament-carrying electrodes (10, 11; E1, E2) sealed into end portions of the tubular discharge vessel, wherein
- the discharge vessel comprises
- a multi-unit sealed structure which includes
- at least two discharge units (2, 3; 14, 15 16; 21, 22, 23; 27, 28, 29), each of which includes a unitary U-shaped glass tube having two longitudinal leg portions (2a, 2b; 3a, 3b) extending parallel to each other, an integral cross-connecting portion (4, 5), and corner bend portions connecting the leg portions at the base of the U to the cross connecting portions,
- wherein said corner bend portions define cold spots controlling the operating pressure of the fill of the discharge vessel, and
- the leg portions of the U-shaped tube remote from said connections form free ends;
- a pinch or press seal (6, 7, 8, 9) sealing each of said free end portions;
- wherein said at least two discharge units are positioned relative to each other with the longitudinal leg portions extending parallel to each other;
- one filament-carrying electrode is sealed into one of the pinch or press seals at one free end of one leg portion of one U-shaped tube of one discharge unit, and another filament-carrying electrode is sealed into another one of the pinch or press seals of a free end of one leg portion of another U-shaped tube of another discharge unit; and
- wherein communicating means (12, 13) are provided forming an air-tight communicating connection between adjacent discharge units, and shaped differently from said cross connecting portions (4, 5) to form said continuous discharge path, located closely adjacent the pinch or press seals of adjacent leg portions of the U-shaped tubes of the respective units which do not have filament-carrying electrodes sealed therein, and extending laterally between said adjacent legs,
- said communicating connection interconnecting the adjacent discharge units into a single unitary sealed structure forming the discharge vessel and defining the continuous discharge path entirely within said discharge units of said tubular glass discharge vessel.
- 2. The lamp of claim 1, wherein two discharge units (2, 3) are provided, and positioned relative to each other such that the longitudinal leg portions (2a, 2b; 3a, 3b) of the U-shaped tubes of the units are located in parallel planes, and a theoretical envelope surrounding the longitudinal leg portions defines a prism of essentially square cross section;
- and said communicating means (12, 13) for forming a communicating connection is a single cross connection between the two adjacent leg portions of said U-shaped tubes of the discharge units which do not have filament-carrying electrodes sealed therein.
- 3. The lamp of claim 1, wherein at least three discharge units (21, 22, 23) are provided, and the respective discharge units are positioned relative to each other such that the longitudinal leg portions of the respective units are all located in a common plane.
- 4. The lamp of claim 1, wherein the discharge units (2, 3; 14, 15, 16) are positioned relative to each other such that the longitudinal leg portions (2a, 2b; 3a, 3b) of the respective U-shaped tubes are located in parallel planes.
- 5. The lamp of claim 1, wherein more than two discharge units (27, 28, 29) are provided, located in ring form adjacent each other, and positioned relative to each other such that a theoretical envelope surrounding the longitudinal leg portions of the respective U-shaped tubes of the discharge units is of substantially prismatic shape with polygonal cross section.
- 6. The lamp of claim 1, wherein three discharge units (27, 28, 29) are provided, located adjacent each other such that a theoretical envelope surrounding the longitudinal leg portions of the respective units is of substantially prismatic shape with approximately triangular cross section.
- 7. The lamp of claim 1, wherein said cross connection comprises a glass melt connection formed by glass material of the respectively adjacent leg portions of the U-shaped glass tubes being joined together.
- 8. The lamp of claim 2, wherein said cross connection comprises a glass melt connection formed by glass material of the respectively adjacent leg portions of the U-shaped glass tubes being joined together.
- 9. The lamp of claim 1, further including an auxiliary electrode (116; ZH; ZH1, ZH2) pinch or press-sealed in one (8) of said pinch or press seals (6, 8) which do not have filament-carrying electrodes (10, 11, E1, E2) sealed therein;
- and impedance means (117, Z, Z1, Z2) connecting said auxiliary electrode (116; ZH; ZH1, ZH2) with one of said filament-carrying electrodes (10, 11, E1, E2).
- 10. The lamp of claim 9, wherein the auxiliary electrode comprises a wire element (116).
- 11. The lamp of claim 9, wherein the auxiliary electrode comprises a two-conductor (116a, 116b) filament-less lamp mount identical to said filament-carrying electrodes without a filament.
- 12. The lamp of claim 9, wherein said impedance means (117, Z, Z1, Z2) comprises a resistor.
- 13. The lamp of claim 9, wherein said impedance means (117, Z, Z1, Z2) comprises a capacitor.
- 14. The lamp of claim 9, wherein said impedance means has an impedance value dimensioned to negligibly affect the operating characteristics of the lamp, when connected to a source of electrical energy, while transferring an initial firing voltage to a position within the discharge path intermediate of said filament-carrying electrodes.
- 15. The lamp of claim 9, in combination with a lamp starting and operating characteristics controlling auxiliary circuit element (EVG, EVG'), said auxiliary circuit element being adapted to be connected to a source of network alternating voltage, and being connected to the filament-carrying electrodes, and defining supply to a "hot" filament-carrying electrode and a "ground or neutral or reference" electrode supply;
- and wherein said auxiliary electrode (116; ZH) is connected through said impedance means (117, Z) to the "hot" electrode supply.
- 16. the lamp of claim 2, further including an auxiliary electrode (116; ZH) pinch or press-sealed in one (8) of said pinch or press seals (6, 8) which do not have filament-carrying electrodes (10, 11, E1, E2) sealed therein;
- impedance means (117, Z) connecting said auxiliary electrode with one of said filament-carrying electrodes (10, 11, E1, E2);
- wherein said impedance means has an impedance value dimensioned to negligibly affect the operating characteristics of the lamp, when connected to a source of electrical energy, while transferring an initial firing voltage to a position within the discharge path intermediate of said filament-carrying electrodes;
- in combination with a lamp and starting and operating characteristics controlling auxiliary circuit element (EVG, EVG'), said auxiliary circuit element being adapted to be connected to a source of network alternating voltage, and being connected to the filament-carrying electrodes, and defining supply to a "hot" filament-carrying electrode and a "ground or neutral or reference" electrode supply;
- and wherein said auxiliary electrode (116; ZH) is connected through said impedance means (117, Z) to the "hot" electrode supply.
- 17. Multi-tube compact low-pressure discharge fluorescent lamp having
- a closed tubular glass discharge vessel (1) defining a continuous closed electrical discharge path,
- said tubular glass discharge vessel having a fluorescent coating applied to the inside of at least a major portion of the discharge vessel and a fill of mercury and at least one noble gas within the closed discharge vessel,
- wherein the discharge vessel comprises a two-unit closed and sealed structure which includes two discharge units (2, 3), each of which comprises a pair of elongated essentially parallel leg portions (2a, 2b, 3a, 3b), cross-connecting means (4, 5) located adjacent one end portion of the leg portions of the pairs to connect said leg portions together and closing seals (6, 8) sealing the other end portions of said leg portions;
- a filament-carrying electrode (10, 11; E1, E2) located in one leg portion (2a, 3a) of each one of said units, and sealed therein through a respective closing seal (6);
- communicating means (12, 13) located adjacent the other end portions of the other ones of the leg portions (2b, 3b) of said units, and forming an air-tight communicating connection between adjacent discharge units to form said continuous closed discharge path; and
- an auxiliary electrode (116; ZH) sealed into said other end portion of one of said other leg portions (2b, 3b) to place said auxiliary electrode (116; ZH) within said continuous closed discharge path intermediate of said filament-carrying electrodes (10, 11; E1, E2).
- 18. The lamp of claim 17, wherein said auxiliary electrode comprises wire means (116, 116a, 116b).
- 19. The lamp of claim 17 wherein the closing seals (6, 8) of all said leg portions (2a, 2b, 3a, 3b) remote from said cross connecting means (4, 5) are pinch or press seals (6, 7, 8, 9).
- 20. The lamp of claim 17, wherein the auxiliary electrode comprises a two-conductor (116a, 116b) filament-less lamp mount identical to said filament-carrying electrodes but without a filament.
- 21. The lamp of claim 17, further including impedance means (117, Z) connecting said auxiliary electrode (116, ZH) to one of said filament-carrying electrodes (10, 11; E1, E2).
- 22. The lamp of claim 21 wherein said impedance means comprises a resistor.
- 23. The lamp of claim 21, wherein said impedance means has an impedance value dimensioned to negligibly affect the operating characteristics of the lamp, when connected to a source of electrical energy, while transferring an initial firing voltage to a position within the discharge path intermediate of said filament-carrying electrodes.
- 24. The lamp of claim 21, in combination with a lamp starting and operating characteristics controlling auxiliary circuit element (EVG, EVG'), said auxiliary circuit element being adapted to be connected to a source of network alternating voltage, and being connected to the filament-carrying electrodes, and defining supply to a "hot" filament-carrying electrode and a "ground or neutral or reference " electrode supply;
- and wherein said auxiliary electrode (116; ZH) is connected through said impedance means (117, Z) to the "hot" electrode supply.
- 25. Multi-tube compact low-pressure discharge fluorescent lamp having
- a closed tubular glass discharge vessel (1) defining a continuous closed electrical discharge path,
- said tubular glass discharge vessel having a fluorescent coating applied to the inside of at least a major portion of the discharge vessel and a fill of mercury and at least one noble gas within the closed discharge vessel,
- wherein the discharge vessel comprises a multi-unit closed and sealed structure which includes two discharge units (2, 3), each of which comprises a pair of elongated essentially parallel leg portions (2a, 2b, 3a, 3b), cross-connecting means (4, 5) located adjacent end portions of the leg portions of the pairs to connect said leg portions together and closing seals (6, 8) sealing the other end portions of said leg portions;
- a filament-carrying electrode (10, 11; E1, E2) located in one leg portion (a, 3a) of two of said units, and sealed therein through a respective closing seal (6);
- communicating means (12, 13) located adjacent the other end portions of the other ones of the leg portions (2b, 3b) of said units, and forming an air-tight communicating connection between adjacent discharge units to form a continuous discharge path;
- at least one auxiliary electrode (116; ZH; ZH1; ZH2) sealed into said other end portion of at least one leg portion (3a) which is free from a filament-carrying electrode in at least one of said units; and
- impedance means (117; Z, Z1, Z2) connecting said at least one auxiliary electrode to one of said filament-carrying electrodes (10, 11; E1, E2).
- 26. The lamp of claim 25 wherein all the closing seals (6, 8) sealing the ends of all said leg portions (2a, 2b, 3a, 3b) remote from said cross connecting means (4, 5) are sealed by a pinch or press seal (6, 7, 8, 9).
Priority Claims (2)
Number |
Date |
Country |
Kind |
8333920 |
Nov 1983 |
DEX |
|
3741566 |
Dec 1987 |
DEX |
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Parent Case Info
This is a continuation-in-part of U.S. Ser. No. 669,804, filed Nov. 9, 1984, by co-inventors Klein and Panofsky and now abandoned.
US Referenced Citations (5)
Foreign Referenced Citations (1)
Number |
Date |
Country |
58-112237 |
Jul 1983 |
JPX |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
669804 |
Nov 1984 |
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