STORAGE APPARATUS FOR STORING SEMICONDUCTOR ELEMENT OR RETICLE
The present invention provides a storage apparatus for storing a semiconductor element or a reticle. The storage apparatus comprises a first cover, a second cover and a flange. The first cover has a top and a plurality of laterals around the top. The second cover is for being assembled with the first cover to form an inner space for accommodating the reticle. As to the flange, it is provided on the first cover for being mechanically held and placed. The characteristic of the disclosed storage apparatus is that the flange and the first cover are integrally formed.
1. Technical Field
The present invention relates to storage apparatuses for storing semiconductor elements or reticles and, more particularly, to a storage apparatus having a flange integrally formed with a first cover thereof for storing a semiconductor element or a reticle.
2. Description of Related Art
In the rapidly developing semiconductor technology, optical lithography plays an important role and wherever pattern definition is conducted, optical lithography is requisite. As to the application of optical lithography relating to semiconductors, a designed circuit pattern is used to produce a light-transparent reticle. Basing on the principle of exposure, after a light passes through the reticle to be projected on a silicon wafer, the circuit pattern formed on the reticle can be exposed onto the silicon wafer. Since any dust (such as particles, powders or an organic matter) can adversely affect the quality of such projected pattern, the reticle used to produce the pattern on the silicon wafers is required with absolute cleanness. Thus, clean rooms are typically employed in general wafer processes for preventing particles in the air from defiling reticles and wafers. However, absolute dustless environment is inaccessible even in known clean rooms.
Hence, reticle storage apparatuses that facilitate preventing defilement are implemented in current semiconductor processes for the purpose of storage and transportation of reticles so as to ensure cleanness of the reticles. When such reticle storage apparatuses accommodate reticles for semiconductor processes, the reticles can be isolated from the atmosphere when being transferred and conveyed between stations, so as to be defended from defilement caused by impurities that induces deterioration. Similarly, when semiconductor element storage apparatuses accommodate semiconductor elements in semiconductor processes, the semiconductor elements can be isolated from the atmosphere when being transferred and conveyed between stations, so as to be secured from defilement caused by impurities that induces deterioration. Therefore, it is preferable to store reticles or semiconductor elements in storage apparatuses so as to ensure the cleanness and prevent contamination.
However, conventional storage apparatuses for storing semiconductor elements or reticles typically have complex structures. For example, a conventional storage apparatus is always composed of two covers and, for safe mechanical transportation, a flange alone or in company with a flange support has to be provided at a top of one of the covers for being help by a robot for transportation purpose. Further, a handle is also required for manual displacement. Besides, a board is needed for receiving a label tagged thereon while other structures may be necessary to accommodate other components.
Such flange, flange support, handle, board and other components on the storage apparatus for storing semiconductor elements or reticles can significantly increase the weight of the storage apparatus and consume increased assembling time. Besides, connectors are indispensable in the conventional storage apparatus for connecting the aforementioned components. Even with the most exquisite assembly, it is difficult to perpetually maintain tightness of the connectors. Consequently, when the connectors loosen, the connected components risk departing from each other. At a minimum then, the boards may fall off or lose identifying functions thereof; in a worst case situation, the flange, flange support or the handle may come off during the transportation of the storage apparatus for storing semiconductor elements or reticles, resulting in enhanced possibility of damage to the semiconductor elements or reticles.
Therefore, the present invention provides a storage apparatus having a flange integrally formed with a first cover thereof for storing a semiconductor element or a reticle to improve the current technology.
SUMMARY OF THE INVENTIONTo remedy the problem of the prior arts, the present invention provides a storage apparatus for storing a semiconductor element or a reticle that is constructed from a first cover, a second cover and a flange. The first cover has a top and a plurality of laterals around the top. The second cover is to be assembled with the first cover to form an inner space for accommodating the reticle. The flange is on the first cover for being mechanically held and placed. The disclosed subject matter is characterized by that the flange is integrally formed with the first cover as a whole.
Thereupon, it is one objective of the present invention to provide a storage apparatus having a flange integrally formed with a first cover thereof for storing a semiconductor element or a reticle that is easy to be assembled so as to reduce consumption of assembling time.
It is another objective of the present invention to provide a storage apparatus having a flange integrally formed with a first cover thereof for storing a semiconductor element or a reticle that requires no connectors so as to reduce risks of damaged to components due to wear of the connectors.
It is another objective of the present invention to provide a storage apparatus having a flange integrally formed with a first cover thereof for storing a semiconductor element or a reticle that requires no connectors so as to reduce assembling time thereof.
It is another objective of the present invention to provide a storage apparatus having a flange integrally formed with a first cover thereof for storing a semiconductor element or a reticle that requires no connectors so as to reduce overall weight f the storage apparatus.
The invention as well as a preferred mode of use, further objectives and advantages thereof, will best be understood by reference to the following detailed description of an illustrative embodiment when read in conjunction with the accompanying drawings, wherein:
While the present invention discloses a storage apparatus having a flange integrally formed with a first cover thereof for storing a semiconductor element or a reticle, it is to be stated first of all that the detailed manufacturing or processing procedures of the disclosed reticle storage apparatuses or semiconductor element storage apparatus relay on known technology and need not be discussed at length herein. Meantime, while the accompanying drawings are provided for purpose of illustration, it is to be understood that the components and structures therein need not to be made in scale.
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Although the particular embodiments of the invention has been described in detail for purposes of illustration, it will be understood by one of ordinary skill in the art that numerous variations will be possible to the disclosed embodiments without going outside the scope of the invention as disclosed in the claims.
Claims
1. A storage apparatus for storing a semiconductor element or a reticle, comprising:
- a first cover, having a top and a plurality of laterals around the top;
- a second cover for being assembled with the first cover to form an inner space for accommodating the semiconductor element or the reticle; and
- at least one flange, provided on the first cover for being held and placed by a machine;
- wherein the flange and the first cover are integrally formed as a whole.
2. The storage apparatus of claim 1, wherein the flange projects from the lateral of the first cover.
3. The storage apparatus of claim 1, wherein the flange projects from the top of the first cover.
4. The storage apparatus of claim 1, wherein the flange further comprises a flange support that is connected to the first cover.
5. The storage apparatus of claim 4, wherein the flange support is perpendicular to the top of the first cover.
6. The storage apparatus of claim 4, wherein an included angle between the flange support and the top of the first cover is greater or less than 90 degrees.
7. The storage apparatus of claim 4, wherein the flange support is perpendicular to the lateral of the first cover.
8. The storage apparatus of claim 4, wherein an included angle between the flange support and the lateral of the first cover is greater or less than 90 degrees.
9. The storage apparatus of claim 1, wherein a handle is provided on the first cover.
10. The storage apparatus of claim 9, wherein the handle is integrally formed with the first cover.
11. The storage apparatus of claim 1, wherein a board is provided on the first cover.
12. The storage apparatus of claim 11, wherein the board is integrally formed with the first cover.
13. The storage apparatus of claim 11, wherein the board is for being tagged with a label.
14. The storage apparatus of claim 1, further comprising an alarm.
15. The storage apparatus of claim 1, further comprising a sensor.
16. The storage apparatus of claim 1, further comprising an identifying device.
17. The storage apparatus of claim 16, wherein the identifying device is a Radio Frequency Identification (RFID) device.
Type: Application
Filed: Apr 19, 2008
Publication Date: May 21, 2009
Inventor: Chin-Ming Lin (Shulin City)
Application Number: 12/106,274
International Classification: B65D 85/00 (20060101);