Patent classifications
B65G2201/0297
STORAGE APPARATUS, TRANSPORTING DEVICE AND TRANSPORTING METHOD FOR FRONT OPENING UNIFIED POD
A storage apparatus, and a transporting device and a transporting method for a Front Opening Unified Pod (FOUP) are provided. The storage apparatus includes: at least two carrying bins configured to carry the FOUP; and a rotating component. The at least two carrying bins are connected to the rotating component at different positions of the rotating component. The rotating component is configured to change positions of the at least two carrying bins through rotation of the rotating component.
TRANSFER APPARATUS HAVING LINK ARMS AND STOCKERS HAVING THE SAME
A transfer apparatus includes a lower plate including a lower link arm and a lower support, the lower support being fixed to an upper surface of the lower plate, an upper plate on the lower plate and configured to support a wafer stacking box on an upper surface of the upper plate, the upper plate including an upper link arm, and an upper support that is fixed to the upper surface of the upper plate, and a fixing member that is connected to the upper link arm, the fixing member configured to selectively contact the wafer stacking box. The upper plate is aligned with the lower plate in a first horizontal direction, and is configured to perform linear movement on the lower plate in the first horizontal direction.
SUBSTRATE TRANSPORT APPARATUS
A transfer apparatus including a frame, multiple arms connected to the frame, each arm having an end effector and an independent drive axis for extension and retraction of the respective arm with respect to other ones of the multiple arms, a linear rail defining a degree of freedom for the independent drive axis for extension and retraction of at least one arm, and a common drive axis shared by each arm and configured to pivot the multiple arms about a common pivot axis, wherein at least one of the multiple arms having another drive axis defining an independent degree of freedom with respect to other ones of the multiple arms.
Movable buffer, automated material handling system and corresponding overhead hoist transfer
The present application relates to a movable buffer, an automated material handling system and a corresponding overhead hoist transfer. The movable buffer includes: an inclined track including a first end and a second end opposite to each other, wherein the second end of the inclined track is higher than the first end of the inclined track; a storage tray connected to the inclined track, wherein the storage tray is provided with a space for accommodating a front opening unified pod, the storage tray is provided with at least one opening; and a transmission mechanism, wherein the upper surface of the transmission mechanism is connected to the lower surface of the overhead buffer, the lower surface of the transmission mechanism is connected to the inclined track, and the transmission mechanism is used for driving the storage tray to slide from the first end of the inclined track to the second end.
Dynamic routing method and apparatus for overhead hoist transport system
A dynamic routing method and apparatus for an Overhead Hoist Transport (OHT) system are disclosed. The present disclosure in some embodiments provides a dynamic routing method for an OHT system, including generating a Q table of records of at least one Q value which is a time for a vehicle to move through an edge between two adjacent nodes to a node other than the two adjacent nodes, measuring a transit time of the vehicle when assigned a destination node and passing a transit edge between a current node and next node, extracting target edges to be updated according to the transit time from a plurality of edges, and differentially updating Q values for the target edges according to distances to the transit edge partially based on the transit time, the Q values for the target edges being time values for the vehicle to move through the target edges to the destination node.
SUBSTRATE TRANSFER DEVICE AND SUBSTRATE TRANSFER METHOD
A substrate transfer device includes a substrate holder and a base to which the substrate holder is movably attached. The substrate holder includes first and second suction holes provided to be open in a placing surface, first and second protrusions disposed respectively in the first and second suction holes, and first and second supports provided respectively in the vicinity of the first and second suction holes so as to protrude upward from the placing surface. The first protrusion is pressed by a first elastic member toward an upward direction to protrude from the first suction hole such that the first protrusion blocks the first suction hole, and the second protrusion is pressed by a second elastic member toward an upward direction to protrude from the second suction hole such that the second protrusion blocks the second suction hole.
SUBSTRATE HOLDER AND SUBSTRATE PROCESSING APPARATUS
A substrate holder includes a first boat configured to hold a substrate in a shelf-like manner, and a second boat coaxial with the first boat and provided to move up and down relative to the first boat. The second boat holds a substrate in a shelf-like manner. The first boat includes a first bottom plate and a first ceiling plate provided to face each other, a first support column connecting the first bottom plate and the first ceiling plate to each other, and a first placement surface on which the substrate is placed. The second boat includes a second bottom plate and a second ceiling plate provided to vertically face each other, a second support column connecting the second bottom plate and the second ceiling plate, and a second placement surface on which the substrate is placed. The second ceiling plate overlaps the first ceiling plate in a plan view.
Substrate transfer apparatus and method for calculating positional relationship between substrate transfer robot and substrate placement portion
The method includes the steps of: detecting a part, of a surface of a target, that is located on an inner circumferential side of a predetermined circle centered on a rotation axis and passing the target, by an object detection sensor, at plural rotation positions when at least one of a rotation position of the target about the rotation axis on a substrate placement portion and a rotation position of a detection area about a robot reference axis is changed; calculating a quantity correlated with an index length representing a distance from the robot reference axis to the target when the target is detected by the object detection sensor, for each rotation position; and calculating the positional relationship between the robot reference axis and the rotation axis on the basis of, among the rotation positions, the one at which the quantity correlated with the index length is maximized or minimized.
APPARATUS AND METHOD FOR TRANSPORTING ARTICLES
Provided is an apparatus for transporting articles that can effectively treat numerous articles. The apparatus for transporting articles comprises: a frame; a first transport mounting portion connected to the frame and configured to support a first-class article from below; a second transport mounting portion connected to the frame, disposed over the first transport mounting portion and configured to support the first-class article from below; a third transport mounting portion connected to the frame, disposed over the second transport mounting portion and configured to support a second-class article different from the first-class article from below. The first transport mounting portion operates independently of the second and third transport mounting portions, and the second transport mounting portion and the third transport mounting portion operate simultaneously.
ARTICLE TRANSFERRING APPARATUS
Disclosed is an article transferring apparatus, including: a travel rail provided along a ceiling of a manufacturing line in which processing devices are continuously disposed; and a transferring unit device traveling on the travel rail and sending and receiving an article to and from a mounting place of the processing device, in which the transferring unit includes: a vehicle traveling along the travel rail; a vehicle main body connected to the vehicle and providing loading parts on which articles are loaded; a hoist module installed in the vehicle main body and capable of exchanging the article with the mounting place and each of the loading parts; and a horizontal moving member for horizontally moving the hoist module in the vehicle main body so that the hoist module is located on any one of the loading parts, and the loading parts have a straight arrangement in which articles are loaded in a line along a traveling direction of the vehicle or a rhombic arrangement in which articles are loaded in all directions around a central opening through which articles enter and exist.