Next Patent: Intraoral imaging camera system
Next Patent: Intraoral imaging camera system
[0001] 1. Field of the Invention
[0002] The present invention is directed to a lamp unit utilized in a photoirradiating-type heating device that carries out heating treatment utilizing light for growing, diffusing and annealing semiconductor wafers. More particularly, the invention is directed to lamp unit that is useful in a photoirradiating-type heating device that does not contaminate the processing chamber of the device, that permits the lamp to be reliably cooled, that permits the lamp to be reliably turned on, that inhibits the decline in the reflectance on the inner surface of an optical guide, and that permits attenuation of irradiation intensity to be inhibited. The lamp unit has a metal sleeve with an aperture at one end and a single ended lamp mounted so that sealed part of the lamp would be situated on the inside of the sleeve on the aperture side of sleeve, a coupling member having contact support unit that makes contact with the outer surface of a sealed part of the lamp by elastic force as well as a contact fastening unit that makes contact with the inner surface of the sleeve after the contact support unit and that also fastens a single ended lamp to the sleeve.
[0003] 2. Description of the Related Art
[0004] Photoirradiating type heating devices have been used over a broad range of procedures in semiconductor production including growth, diffusion and annealing. Semiconductor wafers are subjected to uniform heating processing at high temperatures to rapidly heat wafers through photoirradiation in all processing, and temperature elevation to levels exceeding 1000 degrees Celsius can take anywhere from a dozen seconds to several dozen seconds. After holding at a fixed temperature, the wafer is rapidly cooled by halting photoirradiation.
[0005]
[0006] As shown in
[0007] The conventional device, however, has several disadvantages. For example, adhesive S packed in sleeve
[0008] In addition, adhesive S is heated when lamp
[0009] Accordingly, an object of the invention is to overcome the disadvantages of the prior art in devising a lamp unit that is useful in a photoirradiating type heating device that does not contaminate the processing chamber of a photoirradiating type heating device, that permits the lamp to be reliably cooled, that permits the lamp to be reliably turned on, that inhibits the decline in the reflectance on the inner surface of an optical guide, and that permits attenuation of irradiation intensity to be inhibited.
[0010] The lamp unit includes a cylindrical metal sleeve having an aperture at one end and made of SUS steel and a single ended lamp mounted so that a sealed part of the lamp can be situated on the inside of the sleeve. The lamp is fastened to the sleeve by a coupling member attached to the sleeve and which supports the sealed part of the lamp. The coupling member is composed of a single piece of aluminum that is bent so as to form a contact support unit and a contact fastening unit. Due to the bending, elastic force is generated in the contact support units and the contact fastening units.
[0011] The contact support units contact the outer surface of the sealed part of the lamp to enable the coupling member to pinch and support the sealed part by elastic force. Accordingly, the contact fastening units that contacts the inner surface of the sleeve is formed after the contact support unit. The contact fastening unit makes contact with the inner surface of the sleeve utilizing the force that opens outwardly through the elastic stress of the coupling member itself. The contact fastening unit fits against a projection to thereby fasten the lamp to the sleeve.
[0012] In this way, the various problems associated with using an adhesive are obviated since the lamp is mechanically fastened without using an adhesive. For example, the interior of the processing chamber is not contaminated by peeling of adhesive itself and the shorting of lead lines that supply power to lamp do not occur due to the effects of moisture contained in the adhesive. Moreover, the decline in the reflectance due to the contamination by moisture on the inner surface of the optical guide or front optical guide and devitrification of the luminous tube do not occur. And, the irradiation intensity is not attenuated since adhesive is not used.
[0013] Furthermore, since the sleeve is mated to the optical guide on its outer circumferential surface, heat from the lamp is transmitted to the coupling member via the sealed part. The heat transmitted to coupling member is subsequently transmitted to the sleeve. The heat transmitted to sleeve is subsequently transmitted to the optical guide. The heat transmitted to the optical guide is subsequently transferred to the cooling liquid circulating on the outer surface. Consequently, a series of heat-conduction passages are formed that reliably cool the lamp.
[0014] The coupling member need not be composed exclusively from metal, and pre-molded plastic having a high heat resistance or a ceramic material coated on the surface with a heat-transmitting material may be used. In short, any unit that reliably fastens the lamp to the sleeve and which transmits heat from the lamp to the sleeve may be used. A heat-transfer sleeve that does not impair the support between the sealed part and the contact support unit of the coupling member and which raises the heat-transfer characteristics may be interposed to improve the contact between these units.
[0015] The section of the coupling member opposes a luminous unit of the lamp and forms a reflection surface. The reflectance on the surface of reflection surface can be raised by applying a metal coating. As a result, the light radiated from the lamp and reflected from the inner surface of the front optical guide and then returned toward the lamp can be efficiently reflected in the direction of the aperture of the front optical guide to permit efficient wafer heating.
[0016] In a second embodiment, the lamp unit includes a coupling member comprising a contact fastening unit composed of a block of aluminum and a flat contact support unit composed of copper. When the contact support unit contacts the sealed part, part of the contact support unit forms a projection which mates with a depression of the sealed part to reliably support the lamp. On the other hand, the external shape of the contact fastening unit is cylindrical, having an outer diameter which is roughly equal to the inner diameter of the sleeve. The contact fastening unit is pushed and press-fit to the forward aperture of the sleeve with the outer circumference of the contact fastening unit mated and fastened to the inner surface of the sleeve.
[0017] The contact support unit comprises a set of metal plates, one end of which is bent in advance to provide elasticity to the projection. An insertion aperture of the lamp sealed part contact fastening unit is fitted in this state. When one end of the contact support unit penetrates the contact fastening unit, the other edge that penetrates and jumps out is bent. The sealed part of the lamp is press-fit in the gap formed with the opposing contact support unit, and both sides of the sealed part are pinched and supported by the contact fastening unit. The surface of the contact support unit that faces the luminous unit of the lamp then forms the reflection surface.
[0018] In a third embodiment, the lamp unit includes a coupling member having a contact support unit and the contact fastening unit as separate units. The contact support unit comprises a set of metal plates that are bent in prescribed shape, to provide elasticity. The plates contact both sides of the sealed part to pinch and support it. While the lamp is supported by the contact support unit, it is fitted so as to contact the inner surface of the contact fastening unit. Accordingly, contact support unit is firmly fastened to the contact fastening unit by the outward expansive elastic force of the contact support unit and the sealed part is pinched and supported by the contact support unit.
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[0030] In
[0031] Contact support unit H
[0032] Concretely, the interior of the processing chamber is not contaminated by peeling of adhesive itself. The shorting of lead lines that supply power to lamp
[0033] Coupling member H need not be composed exclusively from metal. Pre-molded plastic having high heat resistance or ceramic material coated on the surface with heat-transmitting material may be used. In short, any unit that reliably fastens lamp
[0034]
[0035]
[0036] Contact support unit H
[0037]
[0038] The outer diameter of contact fastening unit H
[0039]
[0040] The lamp units in accordance to the invention can solve the various problems associated with adhesive of conventional lamp units just like the lamp unit of embodiment
[0041] Furthermore, sealed part
[0042] Furthermore, light radiated from lamp
[0043] while the present invention has been described in connection with what is considered to be the most practical embodiments, it is understood that this invention is not limited to the disclosed embodiments and may reasonable encompass various arrangements included with in the spirit and scope of the broadest interpretations and equivalent arrangements.