TRANSPORT DEVICE AND METHOD OF MOVING VACUUM SYSTEM COMPONENTS IN A CONFINED SPACE
20230211991 · 2023-07-06
Inventors
- Willie Ashe (Hillsboro, OR, US)
- Lindsay Michelle Hardison (Hillsboro, OR, US)
- Brian Matthew Layng (Hillsboro, OR, US)
- Joshua Nathaniel Eric Mak (Hillsboro, OR, US)
- Gregory Ryan Le Mon (Hillsboro, OR, US)
Cpc classification
B66F9/12
PERFORMING OPERATIONS; TRANSPORTING
B66F9/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
B66F9/12
PERFORMING OPERATIONS; TRANSPORTING
B66F9/075
PERFORMING OPERATIONS; TRANSPORTING
B66F9/20
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A transport device includes rollable elements configured to both support and move the transport device on a surface; and a drive mechanism for driving the rollable elements. A load bearing mechanism is movable between a lowered position adjacent to the surface and at least one raised position, and is supported by a support frame having a front wall, two side walls and an open back. The load bearing mechanism is mounted such that the side walls and front wall of the support frame extend around the load bearing mechanism. An actuator is mounted on one of the walls of the support frame for controllably raising and lowering the load bearing mechanism and the rollable elements are mounted adjacent to the side walls of the support frame and support the two side walls at four locations, such that a center of gravity is between the four locations.
Claims
1. A method of moving vacuum system components within a sub fab, said method comprising: moving said transport device adjacent to a vacuum system component; lowering a load bearing mechanism of said transport device; using the loading mechanism of said transport device to pull said vacuum system component though an open back face of a support frame of said transport device such that it is supported by said load bearing mechanism; raising said load bearing mechanism; driving said transport device to a different location within said sub fab; performing one of lowering or raising said load bearing mechanism; and unloading said vacuum system component.
2. A transport device for transporting loads in a confined space, said transport device comprising: rollable elements configured to both support and move said transport device on a surface; a drive mechanism for driving said rollable elements; a load bearing mechanism mounted to be movable between a lowered position adjacent to said surface and at least one raised position; a support frame configured to support said load bearing mechanism and comprising a front wall, two side walls and an open back, said load bearing mechanism being mounted such that said side walls and front wall of said support frame extend around said load bearing mechanism in at least one of said raised and lowered positions; at least one actuator mounted on one of said walls of said support frame for controllably raising and lowering said load bearing mechanism; wherein said rollable elements are mounted adjacent to said side walls of said support frame and support said two side walls at four locations, such that a centre of gravity of said transport device is between said four locations.
3. The transport device according to claim 2, wherein said load bearing mechanism comprises a base plate, said base plate being mounted such that said side walls and front wall of said support frame extend beyond a perimeter of said base plate.
4. The transport device according to claim 2, wherein said rollable elements comprise four wheels.
5. The transport device according to claim 4, wherein each of said four wheels are independently drivable allowing for translational and rotational movement of said transport device.
6. The transport device according to claim 2, wherein said transport device comprises a loading mechanism configured to pull a load through said open back of said support frame when said load bearing mechanism is in said lowered position.
7. The transport device according to claim 6, wherein said side walls each comprise horizontally extending guides configured to support and guide said loading mechanism from a position towards said front wall to a position towards said back face of said support frame and an actuator configured to drive said loading mechanism along said guides.
8. The transport device according to claim 6, wherein said loading mechanism comprises a magnet for pulling said load through said open back of said support frame.
9. The transport device according to claim 8, wherein said magnet comprises a permanent magnet such as a rare earth magnet.
10. The transport device according to claim 2, wherein said transport device comprises: sensors configured to sense a volume around said transport device; and control circuitry configured to control said drive mechanism, said control circuitry being configured to receive signals from said sensors and to control said drive mechanism in response to said signals to inhibit said transport device from colliding with objects sensed by said sensors.
11. The transport device according to claim 2, wherein said transport device comprises an autonomous transport device.
12. The transport device according to any of claim 2, wherein said transport device comprises at least three guides, one mounted in each of said planes comprising said side walls and front wall, and each extending vertically and being configured to guide said load bearing mechanism between said raised and lowered positions.
13. The transport device according to claim 2, wherein said at least one actuator is configured to controllable move said load bearing mechanism between a lowered and a plurality of different raised positions.
14. The transport device according to claim 12, said transport device further comprising a frame comprising corner members extending vertically upwards from said support frame of said transport device, wherein said transport device comprises four of said guides, said four of said guides being attached to or forming part of said corner members of said frame and being configured to guide said load bearing mechanism from said lowered position to said plurality of raised positions.
15. The transport device according to claim 14, wherein said load bearing mechanism comprises a base plate, said base plate being mounted such that said side walls and front wall of said support frame extend beyond a perimeter of said base plate and wherein said base plate comprises barrier members extending vertically upwards from a front and sides of said base plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0058] Embodiments of the present invention will now be described further, with reference to the accompanying drawings, in which:
[0059]
[0060]
[0061]
[0062]
[0063]
[0064]
[0065]
[0066]
[0067]
[0068]
[0069]
[0070]
[0071]
DETAILED DESCRIPTION
[0072] Before discussing the embodiments in any more detail, first an overview will be provided.
[0073] Moving heavy objects within a confined space, such as vacuum pumps within a sub fab is a very challenging task and can cause injury to personnel due to the weight of the pump (may typically be 1200 Kg) and their size. Pumps often need to be pushed to the location where they will be installed. The floor can have various topographical variations and these can damage the pump wheels, or the wheels can get caught and stop the pump from moving. If a cart is used to move the pump it then becomes challenging to fit in the corridors/paths that need to be followed to access the installation location/Frame. Furthermore, other devices will need to be used to lift the pump on the cart in the first place.
[0074] Embodiments provide an autonomous ground vehicle (AGV) with a C-shaped frame that allows the pump to be pulled into the centre of the frame onto a plate. This in turn allows the AGV to lift the pump and then ultimately move it via motorized wheels and controls. This removes the need for human force to be used. In some embodiments the transport device can be moved fully autonomously with the help of sensors configured to sense objects and inhibit any collisions with machinery, humans and/or debris in the paths. In other embodiments the transport device can be moved in a semi autonomous mode with a remote controller. Collisions are still inhibited with the use of the sensors.
[0075]
[0076] Transport device 10 comprises four wheels 12 which are located substantially towards the corners of support frame 20 of the transport device. This provides a stable transport device where the centre of gravity lies between the four wheels 12 and substantially towards the centre of the transport device in the horizontal plane.
[0077] Load bearing mechanism is in this embodiment base plate 50 and this can be raised and lowered using actuators 40 attached to either side walls of support frame 20. Movement of base plate 50 is guided by four guides 30 two of each being arranged on either side wall. Thus, actuator 40 provides the raising and lowering force while the guides restrain movement to the vertical plane inhibiting any tilting of base plate 50.
[0078]
[0079] Once the load 60 is within the support frame 20 actuator 40 is actuated and raises base plate 50 to a raised position with any horizontal movement being restrained by guides 30 (see
[0080] Each of wheels 12 are individually drivable making for a device which is very manoeuvrable and can access and move between confined spaces.
[0081]
[0082]
[0083]
[0084]
[0085] Once within the transport device the base plate 50 is lifted as is shown in
[0086]
[0087] In all of these embodiments, the wheels 12 are independently driven by a drive mechanism which is not shown. Furthermore, there is control circuitry associated with this drive mechanism and sensors which sense the area around the transport device 10 and which in conjunction with the control circuitry which controls the driving of the wheels 12 inhibit the transport device 10 from colliding with objects.
[0088] In some embodiments, the control circuitry and drive mechanism are such that the movement of transport device 10 is entirely autonomous, while in other embodiments there is a receiver for receiving signals from a remote control and the movement of the transport device can be controlled by the remote control and is thus, semi-autonomous.
[0089]
[0090]
[0091] In summary embodiments provide a transport device configured for:
[0092] Lifting a pump from the ground into the C frame of the device, raising it off the ground and securely holding it in the C frame.
[0093] In embodiments a work flow manager will task the transport device to do the necessary work planning and work load priority using control circuitry 92.
[0094] Similarly for the return for repair the transport device will return it to the store’s location for service under control of the control circuitry 92.
[0095] Although illustrative embodiments of the invention have been disclosed in detail herein, with reference to the accompanying drawings, it is understood that the invention is not limited to the precise embodiment and that various changes and modifications can be effected therein by one skilled in the art without departing from the scope of the invention as defined by the appended claims and their equivalents.
[0096] Although elements have been shown or described as separate embodiments above, portions of each embodiment may be combined with all or part of other embodiments described above.
[0097] Although the subject matter has been described in language specific to structural features and/or methodological acts, it is to be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or acts described above. Rather, the specific features and acts described above are described as example forms of implementing the claims.