Tanning module with a housing

Radiant energy – Photocells; circuits and apparatus – Optical or pre-photocell system

Reexamination Certificate

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Details

C607S080000, C607S088000, C607S090000, C607S091000, C250S493100

Reexamination Certificate

active

06717164

ABSTRACT:

DESCRIPTION OF THE INVENTION
The invention relates to a tanning module having a housing, a tridimensional reflector disposed in the housing, and at least one discoid like radiation filter, the at least one radiation filter covering the radiation-emitting area of the reflector and being disposed on a first side of the housing, at least one opening being provided in the reflector for the installation and electrical connection of a tanning radiator, and the reflector having its maximum cross section in the plane of the radiation-emitting area.
Such tanning modules are disclosed, for example, in DE 29 41 467 A1, wherein a rectangular housing including fan and flow-directing baffles are used. The rectangular housing is divided into an air intake side and a delivery side, the tanning radiator being disposed on the delivery side and being indirectly cooled. The intake of cooling air, which flows along a heat filter in the housing wall, takes place on the air intake side of the housing through a lateral wall. On the delivery side of the housing the cooling air leaves the housing through the same lateral wall as it previously entered the housing on the air intake side.
DE 195 16 603 A1 discloses a low-pressure viewing field for tanning apparatus, wherein a rectangular housing including reflector and filter pane is used. The housing is suitable for the installation of several UVC tubes. The entry of cooling air into the housing takes place through an opening between housing and filter pane, the cooling air flowing along the tubes and leaving the housing again at the back of the housing.
DE 36 31 427 C2 describes a radiation apparatus with a rectangular housing, a reflector and a filter pane. To secure the filter pane against breakage, a push switch is provided which is held in its depressed position by the filter pane, but if the filter plate breaks it comes out of this position and shuts off the radiation source.
DE 39 27 695 C2 discloses a tanning apparatus with a swivelling interference filter. An infrared filter follows the interference filter in the direction of radiation emission. Depending on the inclination of the interference filter in the radiation-emitting area the limit of the transmission spectrum is shifted toward the shorter-wavelength UV-B portion or toward the long-wavelength UV-A portion. Thus, the radiation spectrum can be adjusted to the skin type of the person being irradiated by swivelling of the filter.
DE 40 37 483 C2 describes an ultraviolet radiation apparatus with safety against breakage of a filter glass pane, wherein an electrical conductor carrying current is disposed on its perimeter. If the filter glass plate breaks the conductor is broken, and the current is thereby interrupted and the tanning radiator is shut off.
The problem is to make available a tanning module which has a housing with an optimized management of the cooling air.
The problem is solved in that the housing is configured on the second side opposite the radiation filter in the form of a quadrilateral pyramid with a rectangular base and flattened apex, and that the rectangular base faces the at least one radiation filter.
Such a housing form has the advantage that the free cross section between the outside of the reflector and the inside of the housing can be kept largely symmetrical, so that when air is drawn from the area behind the reflector a uniform flow distribution is established. The temperature of the reflector is thereby equalized. In the tanning module of the invention, additional flow guiding baffles can be dispensed with, since by means of the pyramidal shape the formation of fluidic “dead corners” is avoided. In the area of the opening in the reflector which serves for the installation and connection of a tanning radiator, air can also be drawn out of the reflector space and thus the tanning radiator can be directly cooled.
The tanning module according to the invention is appropriate for tanning radiators with an electrical power output in the range of 250 W to 1000 W. It is outstandingly useful in a great variety of tanning apparatus or medical apparatus for the irradiation of the face, the upper chest, the body area, and the leg or foot area. It is also possible to install it in ceilings, for the irradiation of floor areas from greater distances. The tanning module of the invention can basically be held in any kind of mounting so that it can radiate in all directions in a virtual sphere. Several tanning modules can be mounted side by side or one after another in order to produce a larger radiation field. Also, it is possible to operate with a separate fan for each tanning module or else to operate a plurality of tanning modules with one central fan.
It is preferred with the tanning module according to the invention that the radiation filter be aligned parallel to the radiation emitting area of the reflector. Thus the dimensions of the housing can be kept small. Advantageous in this connection is also the alignment of the base of the pyramid parallel to the at least one radiation filter.
The flattened apex of the pyramid can be formed on the one hand by a planar portion of the housing wall, which can also be aligned parallel to the base of the pyramid. On the other hand the flattened apex of the pyramid can be formed by a vaulted portion of the housing wall, and it can be given a concave or convex shape in view of the base surface of the pyramid. The choice of the geometry of the flattened apex depends mainly on the conditions at the point of use of the tanning module.
The base of the pyramid can adjoin a rectangular housing wall area, which can serve, for example, to accommodate different radiation filters.
It has proven to be worth while to make the reflector in a cupular or tub-shape, the bottom of the cupular or tub-shaped reflector can be either vaulted or plane-parallel to the at least one radiation filter.
The perimeter of the reflector parallel to the radiation emitting area can then be a circle, an ellipse, a rectangle or a polygon. Especially preferred is a reflector formed of facets, in which case the perimeter of the reflector describes a polygon with twelve sides parallel to the radiation emitting area.
In particular the use of a reflector has proven useful whose height ranges from 90 mm to 95 mm and which is especially 93.6 mm high. The dodecagon in the plane of the radiation emitting area has for this reflector a preferred maximum diameter (corner to corner) ranging from 210 mm to 230 mm, and amounts especially to 210 mm. Moreover a reflector has proven useful whose height ranges from 110 mm to 125 mm and especially 118.7 mm. In this case the dodecagon has a maximum diameter (corner to corner) ranging from 170 mm to 200 mm in the plane of the radiation emitting area and amounts especially to 184 mm.
Moreover a reflector has proven useful having a height ranging from 75 mm to 90 mm and especially a height of 83.3 mm. The dodecagon in this case has a maximum diameter (corner to corner) in the plane of the radiation emitting area ranging from 205 mm to 235 mm and amounts especially to 220 mm.
The guidance of the cooling air in the housing is optimal when the housing has at least one air exhaust opening in the area of the pyramid. In that case a flange can be mounted on the air exhaust opening. Such a flange is suitable for the attachment of an air exhaust hose through which a central or off-center exhausting of air from the housing can be performed. To establish the necessary suction power at the air exhaust opening, a reducer plate may be present to reduce the size of the air exhaust opening. This is practical, for example, whenever a plurality of tanning modules are used and they are at different distances from a central fan, i.e., one used simultaneously by all tanning modules or the air exhaust is performed in a kind of serial switching of the fan from one tanning module through at least one additional one.
The tanning module of the invention can be used very flexibly if one air exhaust opening is associated with each of three sides of the pyramid. Depending

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