Abstract:
The present invention relates to a lamp holder for a lamp body (100), comprising a housing (1), characterized in that, the lamp holder further comprises a active cooling component (2) and the housing comprises a first cavity (R1) for accommodating the active cooling component (2) and a second cavity (R2) for accommodating the lamp body (100), and the first cavity (R1) is in air communication with the second cavity (R2). The lamp holder of the present invention has the advantages of strong universality, low cost, simple structure and easy installation, and enables uniform heat dissipation of the lamp body. In addition, the present invention further relates to an illuminating device having the lamp holder.
Abstract:
Die Erfindung betrifft eine Beleuchtung (1), insbesondere für ein Hausgerät, beispielsweise für die Trommel einer Waschmaschine, eines Wäschetrockners o. dgl., mit einer Leiterplatt (5), mit einem auf der Leiterplatte (5) angeordneten Leuchtmittel (6) und mit einem Sockel (3) für die Aufnahme der Leiterplatte (5). Die Leiterplatte (5) ist an einem metallischen Halteteil (8) angeordnet, derart dass ein guter Wärmeleitkontakt zwischen der Leiterplatte (5) und dem Halteteil (8) geschaffen ist. Desweiteren ist das Halteteil (8) derart am Sockel (3) befestigt, dass wiederum ein guter Wärmeübergang vom Halteteil (8) zum Sockel (3) geschaffen ist.
Abstract:
An assembly includes a light source holding component sized and arranged to securely receive a source of light. The light source holding component may include a displaceable protective device that functions to generally protect against an accidental touching of electrical terminals of the light source holding component. An accessory mounting feature may also be provided to the light source holding component, The accessory mounting feature is adapted to cooperate with an accessory to provide a seal against a surface to which the light source holding component is attached. The light source holding component may have wire ports that are formed within an overall general outer diameter of the light source holding component. By way of example, the wire ports may include wire contacts having wires pre-attached thereto or the wire ports may include electrical connectors of the push-in type for receiving and thereupon holding wires inserted therein.
Abstract:
The invention relates to a greenhouse lighting fixture for receiving an assimilation lamp for the illuminating of crops, which assimilation lamp is a high-pressure gas discharge lamp, which lamp has an elongate glass body having a first end and a second end, a first electrical conductor element which protrudes with respect to the first end and which is connected to a first electrode present in the lamp and a second electrical conductor element which protrudes with respect to the second end and which is connected to a second electrode present in the lamp. The greenhouse lighting fixture according to the invention is characterized in that the greenhouse lighting fixture comprises a safety device which is configured for disturbing an arc in the region between a contact element of one of the fittings and an electrode of a lamp attached in the fixture, which safety device is configured automatically to start up as a consequence of the arc.
Abstract:
The present invention provides a light fixture assembly. The assembly includes a light bulb socket with an opening at one end for accommodating C7/C9 light bulbs and at least one opening at the second end. The socket includes a conductor that places a light bulb into electrical contact with electrical wires inserted through the side of the socket. The assembly also includes a base attached to the second end of the socket. The base includes a wire clamp that fits through the opening in the second end of the socket and holds the electrical wires in contact with the conductor. Retaining clips on the base apply a retaining force against the socket to hold the base in place. A neodymium disc magnet is embedded in the base, thereby allowing the assembly to be mounted magnetically to metal surfaces.
Abstract:
Es wird eine Beleuchtungseinheit eines elektrischen Installationsgerätes vorgeschlagen, mit einem Gehäuse (1 ) mit mindestens einer Beleuchtungskörper-Aufnahme (5, 6) und mindestens zwei Spiralfeder-Aufnahmen (9, 12, 15, 18), wobei mindestens ein Beleuchtungskörper (24) in die Beleuchtungskörper-Aufnahme (5, 6) eingesteckt ist, mindestens zwei Spiralfedern (28, 29) in die Spiralfeder-Aufnahmen (9, 12, 15, 18) eingesteckt sind, die Leitungsanschlüsse (25, 26) des Beleuchtungskörpers (24) innerhalb der Spiralfeder-Aufnahmen (9, 12, 15, 18) in elektrischen Kontakt mit den Spiralfedern (28, 29) treten und die Leitungsanschlüsse (25, 26) geschützt in Nuten (3, 8, 11 , 14, 17) des Gehäuses (1 ) geführt sind.
Abstract:
A molded lamp socket. The molded lamp socket includes a lamp base body defining a socket cavity with an opening for receiving a lamp bulb. The molded lamp socket also includes a lead extending from a first contact portion disposed in the socket cavity to a second contact portion spaced from the socket cavity. The molded lamp socket also includes a mounting body defining a plug cavity encircling the second contact portion. The mounting body is overmolded with respect to the lamp base body and less than all of the lead, the second contact portion being exposed. The lamp base body is formed from a first plastic with a first level of resistance to out-gassing and the mounting body is formed from a second plastic with a second level of resistance to out-gassing less than the first level of out-gassing.
Abstract:
A burner assembly (20,200) includes a burner (40, 210), a header (45, 220) coupled to the burner (40, 210), a holder (50, 230) coupled to the header (45, 220), contacts (240-1, 240-2) coupled to the holder (50, 230), and electrical connections coupling the contacts (240-1, 240-2) to the burner (40, 210).
Abstract:
A lighting unit includes a housing, a lamp fixture configured to be coupled to the housing, an element extending from the lamp fixture and configured to be received in the housing, and a sealing member defining an aperture for receiving the element therethrough. A periphery of the aperture forms a fluid-tight seal around the element. In another aspect, a lighting unit includes a housing and an enclosure coupled to the housing and configured to define an interior space, wherein the interior space is sealed from an interior of the housing. In another aspect, a method for sealing a lighting unit includes providing a housing, an enclosure coupled to the housing, and an opening in the housing in communication with the enclosure, placing a seal between the housing and the enclosure, and applying a sealing member to the opening to seal the opening.