The present invention relates in general to an apparatus for installing a spacer of a field-emission display, and more particularly, to an apparatus operative to provide suction force normal to the spacer, such that the spacer can be disposed between the anode and cathode boards and aligned therewith. Further, the apparatus uses a vacuum breaking device to prevent electrostatic charges from be generated, particularly during the removal of the spacer from the apparatus.
Currently, the bipolar, tripolar or tetrapolar field emission displays all contain a spacer 10 between the cathode and anode boards (as shown in
The conventional installation of the spacer 10 includes a side suction method as shown in
An apparatus for installing a spacer of a field-emission display is provided with a suction mechanism for sucking the spacer. The suction mechanism has a suction terminal, which an opening to apply suction force on top of the spacer and a positioning part located on top of the suction terminal for positioning the spacer sucked by the suction terminal. The suction terminal includes a pipe having a diameter smaller than that of the spacer. The positioning part is configured according to a configuration of the spacer. The opening has a uniform cross section from a bottom edge to a top surface thereof or a cross section gradually decreasing from a bottom edge to a top surface thereof.
An apparatus for installing a spacer of a field-emission display is further provided with a support member and a suction mechanism mounted to the support member. One end of the suction mechanism has an opening for applying a suction force to the spacer and a positioning part formed on the opening. The apparatus further has a gas transmission device.
An apparatus for installing a spacer of a field-emission display is also provided having a support member, a suction mechanism and a vacuum breaking device. One end of the suction mechanism is connected to the support member, and the other end of the suction mechanism has an opening for sucking the top portion of the spacer and a positioning part for aligning the spacer. The vacuum breaking device to provide an electrostatic removal gas to prevent electrostatic charges generated between the spacer and the suction mechanism.
The above objects and advantages of the present invention will be become more apparent by describing in detail exemplary embodiments thereof with reference to the attached drawings in which:
The suction structure includes support element 11 mounted to an installation device 1, a gas transmission device 12 connected to the suction structure 10 for venting the gas sucked by the suction structure 10, a suction mechanism, which includes a suction terminal and a suction opening 22 facing downwardly. A positioning part 23 for positioning or holding the spacer 10 sucked by the suction structure is formed on top of the suction terminal 22. The arrangement and configuration of positioning part 23 is variable according to the configuration of the spacer 10. The gauge of the suction mechanism 2 can be smaller than the spacer 10, such that the suction terminal 22 is operative to suck the spacer 10.
In the process of sucking the spacer 10 by the suction mechanism, a vacuum breaking apparatus is used. The vacuum breaking apparatus provides an electrostatic removing gas, such that no electrostatic charge is generated during the suction process between the suction mechanism 2 and the spacer 10. The spacer 10 being sucked can then be detached from the suction mechanism 2 easily, and the installing action of the next spacer 10 can be taken action.
Further, the internal diameter of the positioning part 23 of the suctioning mechanism 2 allows the opening 231 having a constant diameter from the opening edge to the top surface thereof as shown in
The embodiment as described above directly sucks the spacer and aligns the spacer 10 with the anode 20 via a CCD. Therefore, the labor and process for installing the spacer 10 are much reduced and simplify. Further, with the positioning part 23 formed on the suction mechanism 2, the suction mechanism is self-aligned with the spacer 10 while sucking the spacer. Therefore, repetitive alignment schedule is not required. Further, as the spacer 10 and the anode board 20 are pressed against, the attachment is more reliable, and the amount of glue can be reduced to prevent overflow of the glue which may very likely affect the vision area.
While the present invention has been particularly shown and described with reference to preferred embodiments thereof, it will be understood by those of ordinary skill in the art the various changes in form and details may be made therein without departing from the spirit and scope of the present invention as defined by the appended claims.