Abstract:
PROBLEM TO BE SOLVED: To provide a lead element capable of being formed by reducing the number of components and capable of assuring an improved functional style in consideration of isolation of Hg and absorption of excessive Hg by amalgam for lighting at the time of lamp lighting, and to provide an electrode support having at least one lead element. SOLUTION: In the lead element for an electrode (4) formed long and narrow, long and narrow components of the lead elements (2, 3) have first areas (8, 10), wherein these areas (8, 10) have an amalgam formation material on the outside. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
The invention relates to a flat light (1) having a translucent front surface (2) and a rear surface (4) that are opposite each other and that form a cavity between them. A discharge gas mixture can be accommodated in said cavity (6). The rear surface (14) is also translucent enabling light to be diffused on the front surface (2) and also on the rear surface (4).
Abstract:
The invention relates to a lamp comprising at least one light source (2; 2a to 2e) and an electronic operating device (6), electronic components (6a to 6c) of the operating device (6) being arranged laterally with respect to the light source (2, 2a to 2e, 18, 19).
Abstract:
The invention relates to an electrode frame for a discharge lamp, comprising a first (2) and a second power supply (3), which are connected to an electrode (4), and a metal hydride material arranged at the electrode frame (1), characterized in that the metal hydride material is present in the form of a paste (10, 16, 17). The invention also relates to a discharge lamp comprising such an electrode frame and a method for producing an electrode frame.
Abstract:
The invention relates to a method for producing a discharge lamp, comprising the following steps: a) a panel-type upper part (2) and a panel-type lower part (3) are provided, at least one region of the upper part (2) and/or the lower part (3) being made of a light-transmitting material; b) a luminescent layer (21, 31) is applied to one surface (2a, 3a) of the upper part (2) and/or the lower part (3); c) a plurality of spacer elements (4a, 4b, 5a, 5b) are placed between the upper part (2) and the lower part (3), said parts (2, 3) being interspaced in such a way that the luminescent layer (21, 31) faces the other part (2, 3); d) any incorporated water in or water deposits on the luminescent layer (21, 31) are removed by the creation of a gaseous stream (6), which flows between the upper part (2) and the lower part (3); e) a gas-tight connection is created on the continuous edge (13, 14, 15, 16) of the upper part (2) and the lower part (3).
Abstract:
The invention relates to an arrangement comprising a lamp (2) and a lamp base (3) into which a lower part (21) of the lamp (2) can at least be partly introduced. The lower part (21) comprises a base (211) which has a lower height (h2) than the screw cap that would be required for the lamp (2) if the lamp (2) was configured with a screw cap.
Abstract:
The invention relates to a lamp vessel (1) comprising at least one helically wound vessel section (11, 12) made of glass. Said at least one helically wound vessel section (11, 12) is composed of rectilinear tube sections (110) which are interconnected by means of tube sections (111) forming an angle. The invention also relates to a method for producing such a lamp vessel.
Abstract:
The invention relates to a compact fluorescent lamp (10) comprising a tubular discharge vessel (12) for operating with electronic ballast. The compact fluorescent lamp (10) has an external electric conductor (13) lying completely outside the lamp and connected to the discharge vessel (11) for electromagnetically coupling a supply line to the discharge vessel (11).
Abstract:
The invention relates to a low-pressure discharge lamp, comprising a discharge vessel (2), wherein on the inside (24) of the discharge vessel (2) a layer (7) is disposed, which comprises a metal or a metal mixture on a pro-rated basis.
Abstract:
The invention relates to a low pressure discharge lamp comprising a discharge vessel (3) sealed on two ends (31, 32) and a reflector (12) which at least partially surrounds said discharge vessel (3). The low pressure discharge lamp is characterized by a heat-dissipation means (6) which is in contact with the discharge vessel (3) outside the sealed ends (31, 32).