1. Field of the Invention
The present invention relates to a method for cutting a large-size wafer and an apparatus for the same, particularly to a method for cutting a wafer provided with a diameter larger than 12 inches and an apparatus for the same.
2. Description of the Related Art
After FEOL (Front End of Line) processes, the fabrication of wafers proceeds to the package process, and the dies on a wafer are singulated by cutting and then packaged. Generally, the water is transported to a grinding machine for backside grinding firstly, and the wafer will be ground to have, an appropriate thickness. Next, the wafer is mounted by an adhesive method and transported to a cutting machine for wafer cutting. In the package process, the semi-product is usually transported to the apparatuses in form of a wafer.
With the size persistently growing, the construction strength of a wafer decreases. Only a slight warpage may cause breakage in moving a wafer. Thus, how to transport a large-size wafer safely becomes a critical problem.
One objective of the present invention is to provide a method for cutting a large-size wafer and an apparatus for the same, which decreases the frequency of wafer transmission to reduce wafer damages.
One objective of the present invention is to provide a method for cutting a large-size wafer and an apparatus for the same, wherein a wafer is fixedly carried by an identical working susceptor when processed by various devices. In other words, a wafer is always carried by an identical working susceptor, and the working susceptor carrying the wafer is moved to fabrication devices to perform fabrication steps: alternatively, a wafer is always carried by an identical working susceptor, and fabrication devices are moved to the working susceptor carrying the wafer to undertake fabrication steps.
To achieve the abovementioned objectives, one embodiment of the present invention proposes a method for cutting a large-size wafer, which comprises steps: loading a wafer on a working susceptor, wherein the active surface of the wafer is faced upward, and the wafer provided with a diameter larger than 12 inches; attaching a backside grinding tape onto the active surface of the wafer; grinding the backside of the wafer carried by the working susceptor; attaching a protective film onto the backside of the wafer; removing the backside grinding tape from the active surface of the wafer; and cutting the active surface of the wafer carried by the working susceptor to obtain a plurality of dies.
Another embodiment of the present invention proposes an apparatus for cutting a large-size wafer, which comprises a working susceptor used for carrying a wafer provided with a diameter larger than 12 inches: a first taping device moved to the working susceptor to attach a backside grinding tape onto the active surface of the wafer; a grinding device moved to the working susceptor to grind the backside of the wafer; a second taping device moved to the working susceptor to attach a protective film onto the backside of the wafer; a film-stripping device moved to the working, susceptor to remove the backside grinding tape from the active surface of the wafer; and a cutting device moved to the working susceptor to cut the active surface of the wafer to obtain a plurality of chips.
A further embodiment of the present invention also proposes an apparatus for cutting a large-size wafer, which comprises a working susceptor used for carrying a wafer provided with a diameter larger than 12 inches; a transporting device used for moving the working susceptor; a first taping device attaching a backside grinding tape onto the active surface of the wafer after the working: susceptor carrying the wafer has been moved to the first taping device; a grinding device used for grinding the backside of the wafer after the working susceptor carrying the wafer has been moved to the grinding device; a second taping device used for attaching a protective film onto the backside of the wafer after the working susceptor carrying the wafer has been moved to the second taping device; a film-stripping device, used for removing the backside grinding tape from the active surface of the wafer after the working susceptor carrying the wafer has been moved to the film-stripping device; and a cutting device used for cutting the active surface of the wafer to obtain a plurality of dies after the working susceptor carrying the wafer has been moved to the cutting device.
Referring to
In one embodiment, at the grinding step, a grinding device is moved to the Working susceptor, or the working susceptor is moved to a grinding device. Similarly, at the taping step of attaching the backside grinding tape or the protective film, a taping device is moved to the working susceptor, or the working susceptor is moved to a taping device to attach the backside grinding tape or the protective film. Besides, at the cutting step, a cutting device is moved to the working susceptor, or the working susceptor is moved to a cutting device.
Referring to
In the embodiment, the working susceptor 10 is used for carrying a wafer provided with a diameter larger than 12 inches. The first taping device 20 is moved to the working susceptor 10 to attach a backside grinding tape onto the active surface of the wafer. In one embodiment, the apparatus of the present invention further comprises a wafer-flipping device 30 used for flipping over the wafer to let the active surface downward. The grinding device 40 is moved to the working susceptor 10 to grind the backside of the wafer. The second taping device 50 is moved to the working susceptor 10 to attach a protective film onto the backside of the wafer. Then, the wafer is flipped over again to let the active surface upward, and the film-stripping device 60 is moved to the working susceptor 10 to strip the backside grinding tape away from the active surface of the wafer. Then, the cutting device 70 is moved to the working, susceptor 10 to cut the active surface to obtain a plurality of dies.
As some devices can perform their works without flipping over the wafer, the present invention is not limited to having to use a wafer flipping device. In the present invention, a robot arm is used for moving the first taping device 20, the wafer-flipping device 30, the grinding device 40, the second taping device 50, the film-stripping device 60 and the cutting device 70 to the working susceptor 10 to perform their works. Besides, the robot arm may also move other devices 80 to the working susceptor 10 to perform related works, if necessary.
Referring to
In conclusion, the present invention decreases the frequency of wafer relocations to reduce wafer damages, wherein a wafer is always carried by an identical working susceptor, and the working susceptor is moved to the related devices performing corresponding works, or wherein a wafer is always carried by an identical working susceptor, and the related devices are moved to the working susceptor to perform corresponding works.
The embodiments described above are to demonstrate the technical contents and characteristics of the preset invention to enable the persons skilled in the art to understand, make, and use the present invention. However, it is not intended to limit the scope of the present invention. Therefore, any equivalent modification or variation according to the spirit of the present invention is to be also included within the scope of the present invention.
Number | Date | Country | Kind |
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97124953 | Jul 2008 | TW | national |