The present application claims priority of European patent application Serial No. 07104360.8, filed Mar. 16, 2007, the content of which is hereby incorporated by reference in its entirety.
The invention relates to a reflector lamp; in particular, a metal halogen vapor reflector lamp comprising a reflector, which is rotationally symmetric about a central axis and which encloses, together with a cover, a lamp interior and which tapers toward a neck region opposite the cover, wherein a burner comprising a burner space as well as pinched seals, which lie diametrically opposite each other on opposing sides of the burner space and through which supply lines are run, is arranged on the central axis in the lamp interior, wherein a tubular shielding enclosure is provided at least partially surrounding the burner.
Such a reflector lamp is already known, for example, from DE 102 33 073. In this publication, the problem of attaching the tubular shielding enclosure on one side as well as the burner on the other side has also already been addressed. In practice, it has been proposed in the state of the art to fix the burner and tubular shielding enclosure by means of the supply line facing the cover. Furthermore, it is also proposed there to fix the tubular shielding enclosure through cement relative to the reflector.
The measures proposed there for fixing the tubular shielding enclosure on one side and the burner on the other respective side, however, have proven to be relatively complicated in production.
The present invention includes an alternative arrangement, which achieves at least the fixing of the tubular shielding enclosure and burner relative to each other in a reliable way that can be easily realized in production. Advantageous refinements are specified in the subordinate claims.
Shown herein are:
The basic concept of the present invention is to connect the burner to the tubular shielding enclosure by means of a spring clip. In one specific, preferred construction, the spring clip directly engages both the burner, particularly, on one of its pinched seals, on one side, and on the tubular shielding enclosure, preferably on one of its edges, on the other side. The spring clip is here preferably a separate component and connected neither mechanically nor electrically to one of the supply lines.
Furthermore, the spring clip can be used as a cooling element and the temperatures in the region of the distal ends of the pinched seals can be significantly reduced. On only the side on which the spring clip is attached, it acts as a screen, so that the region of the pinched seal screened by the spring clip is kept significantly cooler relative to the temperatures close to the burner space.
In one specific, preferred implementation, the spring clip fixes the tubular shielding enclosure against a stop in the neck region of the reflector.
In another preferred implementation, the dimensions are set so that the spring clip presses the tubular shielding enclosure against the stop under a biasing force. In this implementation, an especially reliable, insensitive fixing of the tubular shielding enclosure, but also of the burner, is effected within the tubular shielding enclosure.
In a first preferred implementation, the spring clip engages an end of the tubular shielding enclosure facing the cover. Only the mutual fixing of the tubular shielding enclosure and burner in a region of the lamp interior opposite the neck region appears to be meaningful, because the tubular shielding enclosure and also the burner can be fixed in the neck region directly opposite the reflector or components connected to the reflector in a stable way and thus, an also independent anchoring or fixing of the tubular shielding enclosure and burner is possible in a relatively simple way.
In one alternative implementation, however, it is also conceivable that the spring clip engages an end of the tubular shielding enclosure facing away from the cover, thus, on the end facing the neck region of the reflector.
In one specific, preferred construction, the spring clip can include catch means, particularly catch tabs, which are constructed for engaging in one or more recesses on the burner, especially on the pinched seal facing the cover or pinched seal facing away from the cover.
According to one especially preferred aspect of the present invention, the burner is held exclusively by means of supply lines guided through a base, which lies opposite the cover and which is connected to the reflector or is formed integrally with the reflector, as well as by the tubular shielding enclosure, which is connected to the burner by means of the spring clip, in particular, held aligned with the central axis.
The spring clip can be formed from metal; in particular, spring steel, or from a suitable alternative metal.
On the outside the spring clip can include several fastening elements, particularly, fastening tabs. These fastening tabs can be constructed, as illustrated below with reference to embodiments, to be supported on the tubular shielding enclosure from the inside. They can also completely or partially surround the edge of the tubular shielding enclosure or can also be supported from the outside relative to the tubular shielding enclosure.
Furthermore, the spring clip can feature a central ground structure, in particular, a central, circular ground plate.
A central opening can be formed in the circular ground plate of the spring clip through which the associated pinched seal of the burner can be guided. In this respect, the spring clip encloses a section of the burner, particularly a section of an associated pinched seal of the burner.
On the edge of the central opening one or more, in particular, two catch tabs can be formed for engaging in the recesses on the associated pinched seal.
The invention will be explained in more detail below with respect to additional features and advantages with reference to the description of embodiments and with reference to the enclosed drawings.
In
In the lamp interior 15, a burner 16 is arranged on the central axis. The burner 16 has two pinched seals 19, 20 on the ends and a burner space 17 there-between. Around the burner 16 is a tubular shielding enclosure 23, which encloses the burner 16 in such a way that it projects from the tubular shielding enclosure 23 at the end only past its pinched seals 19, 20. The tubular shielding enclosure 23 contacts stops 25 (cf.
The tubular shielding enclosure 23 can be formed, for example, from quartz or glass.
The burner 16 and tubular shielding enclosure 23 are fixed relative to each other at their end facing the cover 14 by means of a spring clip 24. For this purpose, on the outside, the spring clip 24 has several, here actually four (cf.
In order to prevent or reduce sodium loss, the tubular shielding enclosure 23 can be bent slightly inwardly on the opposite side.
The stops 25 are used simultaneously to orient the tubular shielding enclosure 23 also laterally, so that it is positioned exactly along the optical axis.
A central opening 29 is provided, through which the pinched seal 20 facing the cover 14 emerges, within a circular base plate 28 of the spring clip 24. At the edge of the central opening 29 there are one or more catch tabs 30, here, actually two catch tabs, which engage in recesses 31 in the pinched seal 20 and thus lock the spring clip 24 in its elongated position relative to the longitudinal extent of the burner 16. Simultaneously, the dimensions are set so that the tubular shielding enclosure 23 is pressed under slight biasing onto the stops 25 on the reflector 11 and thus fixed. Instead of recesses 31 in the pinched seal 20, thicker sections could also be formed, so that the catch tabs 30 can be pushed over the thicker sections and can engage behind the thicker sections.
The embodiment of a spring clip 24 already explained with reference to
In the embodiment according to
In addition to the tubular shielding enclosure 23, the supply line 22 fed from the cover 14 also contributes to fixing the burner 16 exactly on the optical axis. For this purpose, the supply line 22 is run in a shielding tube 34, which can in turn be held on the optical axis in a cylindrical groove for increasing the stability and for improving the fixing of the burner 16.
In
Although the present invention has been described with reference to preferred embodiments, workers skilled in the art will recognize that changes may be made in form and detail without departing from the spirit and scope of the invention.
Number | Date | Country | Kind |
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07104360 | Mar 2007 | EP | regional |
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5043623 | Scholz et al. | Aug 1991 | A |
5252885 | Muzeroll et al. | Oct 1993 | A |
5493167 | Mikol et al. | Feb 1996 | A |
5594295 | Van Gennip et al. | Jan 1997 | A |
6741013 | Dakin et al. | May 2004 | B2 |
6930443 | Williamson et al. | Aug 2005 | B2 |
Number | Date | Country |
---|---|---|
102 33 073 | Feb 2004 | DE |
1 391 914 | Jul 2003 | EP |
1 708 229 | Mar 2006 | EP |
07065790 | Mar 1995 | JP |
2005135665 | May 2005 | JP |
Number | Date | Country | |
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20080225529 A1 | Sep 2008 | US |