OVERHEAD TRAVELING VEHICLE, TRANSPORTATION SYSTEM WITH THE SAME, AND METHOD OF OPERATING THE SAME
An overhead traveling vehicle configured to transport wafers includes a mobile drive unit configured to move along a predetermined route on one side of a ceiling and a hoist unit configured to move along the predetermined route according to a position of the mobile drive unit. The mobile drive unit and the hoist unit respectively include a first magnet and a second magnet so that the hoist unit may be hung on the ceiling by the magnetic force generated between the magnets.
1 . An overhead traveling vehicle configured to transport wafers, comprising:
a mobile drive unit configured to move along a predetermined route on a first side of a platform hung on a ceiling, wherein the mobile drive unit comprises a first magnet; and
a hoist unit configured to move along the predetermined route according to a position of the mobile drive unit, wherein the hoist unit comprises a second magnet and is configured to be hung on a second side of the platform by a magnetic force between the first magnet and the second magnet.
2 . The overhead traveling vehicle of claim 1 , wherein the mobile drive unit further comprises:
a body, wherein the first magnet is attached to the body; and
at least a pair of motorized wheels connected to the body.
3 . The overhead traveling vehicle of claim 1 , wherein the hoist unit further comprises:
a body, wherein the second magnet is attached to the body; and
at least a pair of motorized wheels connected to the body.
4 . The overhead traveling vehicle of claim 1 , wherein the first magnet and the second magnet are permanent magnets or temporary magnets.
5 . The overhead traveling vehicle of claim 4 , wherein the temporary magnets are electromagnets.
6 . The overhead traveling vehicle of claim 1 , wherein each of the magnets comprises:
a magnetic core; and
a plurality of turns of wire wound around a peripheral of magnetic core, wherein two ends of the wire are electrically connected to at least a battery.
7 . The overhead traveling vehicle of claim 1 , wherein the mobile drive unit and the hoist unit are separated by the platform, and the mobile drive unit is not in direct contact with the hoist unit.
8 . The overhead traveling vehicle of claim 1 , wherein the hoist unit comprises an elevation platform configured to lift or lower an article.
9 . The overhead traveling vehicle of claim 1 , wherein the mobile drive unit further comprises at least an obstacle sensor configured to detect an obstacle in the proximity of the mobile drive unit.
10 . The overhead traveling vehicle of claim 1 , wherein the mobile drive unit further comprises at least a location sensor configured to determine the location of the mobile drive unit.
11 . A method for operating an overhead traveling vehicle, comprising:
generating a predetermined route by a route planning module;
transmitting an information of the predetermined route to a mobile drive unit;
moving the mobile drive unit along the predetermined route on a first side of a ceiling, wherein the mobile drive unit comprises a first magnet; and
concurrently moving a hoist unit along the predetermined route according to a position of the mobile drive unit during the step of moving the mobile drive unit, wherein the hoist unit comprises a second magnet and is configured to be hung on a second side of the ceiling by a magnetic force between the first magnet and the second magnet.
12 . The method of claim 11 , wherein the mobile drive unit further comprises:
a body, wherein the first magnet is attached to the body; and
at least a pair of motorized wheels connected to the body.
13 . The method of claim 11 , wherein the hoist unit further comprises:
a body, wherein the second magnet is attached to the body; and
at least a pair of motorized wheels connected to the body.
14 . The method of claim 11 , wherein the first magnet and the second magnet are permanent magnets or temporary magnets.
15 . The method of claim 14 , wherein the temporary magnets are electromagnets.
16 . The method of claim 15 , wherein each of the electromagnets comprises:
a magnetic core; and
a plurality of turns of wire wound around a peripheral of magnetic core, wherein two ends of the wire are electrically connected to at least a battery configured to supply electric current through the wire.
17 . The method of claim 11 , wherein the mobile drive unit and the hoist unit are separated by the ceiling.
18 . The method of claim 11 , further comprising detecting an obstacle in the proximity of the mobile drive unit by at least an obstacle sensor of the mobile drive unit.
19 . The method of claim 11 , further comprising determining a location of the mobile drive unit by at least a location sensor of the mobile drive unit.
20 . The method of claim 11 , wherein the platform is configured to comprise a plurality of cells, and the method further comprises moving the mobile drive unit over centers of portions of the cells.
21 . The method of claim 11 , wherein the predetermined route is generated based on a current position of the mobile drive unit and a destination of the mobile drive unit.
22 . The method of claim 11 , wherein the hoist unit is configured to transport a plurality of wafers among a plurality of processing apparatuses.
23 . A system for operating an overhead traveling vehicle, comprising:
means for generating a predetermined route;
means for transmitting an information of the predetermined route; and
at least an overhead traveling vehicle operable to receive the information of the predetermined route, wherein the overhead traveling vehicle comprises:
a mobile drive unit configured to move along the predetermined route on one side of a ceiling, wherein the mobile drive unit comprises a magnetic field generation unit; and
a hoist unit configured to move along the predetermined route according to a position of the mobile drive unit, wherein the hoist unit comprises a further magnetic field generation unit and is configured to be hung on another side of the ceiling by a magnetic force between the magnetic field generation unit and the further magnetic field generation unit.