B65G1/127

STORAGE APPARATUS, TRANSPORTING DEVICE AND TRANSPORTING METHOD FOR FRONT OPENING UNIFIED POD
20230045880 · 2023-02-16 ·

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.

STORAGE APPARATUS, TRANSPORTING DEVICE AND TRANSPORTING METHOD FOR FRONT OPENING UNIFIED POD
20230045880 · 2023-02-16 ·

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.

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.

SYSTEM AND METHOD OF SEQUENCING FOR AT LEAST ONE PREPARING STATION
20180009605 · 2018-01-11 ·

A system for sequencing a preparing station that sequences loads coming from an external unit via an entering outbound conveyor. The system includes a paternoster, a buffer location and a managing unit, which processes each load that comes to an entrance of the paternoster according to one of the following modes (selected as a function of a place desired for the load in a sequence): (a) after introduction into the paternoster, the load undergoes a bypass transfer between two nacelles positioned face to face and then presented to an exiting outbound conveyor; (b) after introduction into the paternoster, the load undergoes a buffer transfer towards a given buffer location and then subsequently re-positioned again in the paternoster and finally presented to the exiting outbound conveyor; (c) after introduction into the paternoster, the load is transported therein without bypass transfer or buffer transfer and then presented to the exiting outbound conveyor.

SYSTEM AND METHOD OF SEQUENCING FOR AT LEAST ONE PREPARING STATION
20180009605 · 2018-01-11 ·

A system for sequencing a preparing station that sequences loads coming from an external unit via an entering outbound conveyor. The system includes a paternoster, a buffer location and a managing unit, which processes each load that comes to an entrance of the paternoster according to one of the following modes (selected as a function of a place desired for the load in a sequence): (a) after introduction into the paternoster, the load undergoes a bypass transfer between two nacelles positioned face to face and then presented to an exiting outbound conveyor; (b) after introduction into the paternoster, the load undergoes a buffer transfer towards a given buffer location and then subsequently re-positioned again in the paternoster and finally presented to the exiting outbound conveyor; (c) after introduction into the paternoster, the load is transported therein without bypass transfer or buffer transfer and then presented to the exiting outbound conveyor.

CONTROL SYSTEM FOR STORAGE AND RETRIEVAL SYSTEMS

A warehouse storage and retrieval system including an array of multilevel storage racks having at least one transfer deck, picking isles and storage areas disposed along picking isles, the storage areas being configured to hold differing loads, and a controller including a management module configured to variably size the storage areas of the array of multilevel storage rack modules and assign each of the variably sized storage areas to a corresponding one of the differing loads, wherein the storage and retrieval system is arranged to transport the differing loads for placement in the variably sized storage areas assigned by the controller.

Multi-story structure package delivery system
11697553 · 2023-07-11 ·

A high rise structure multi-level delivery system comprises a vertical conveyor belt system having a plurality of trays configured to carry a specific delivery parcel to a specific floor of a high rise structure. The conveyor is mounted such that a bottom of the conveyor resides in a ground floor room of the high rise structure and a top resides in a roof room on a roof of the high rise structure. The conveyor is capable of being accessed via an interior room located at each level of the high rise structure.

PARCEL STATION, PARCEL SYSTEM AND METHOD FOR OPERATING A PARCEL STATION

A parcel station including a housing having a front cover which is slidable along at least one side of the housing which further includes a plurality of segments, and wherein the front cover is configured so that two neighboring segments among the plurality of segments are separable from each other to form an opening in the front; and a plurality of storage plates, which are arranged one above the other in the interior space of the housing with respect to planar extensions thereof and which is movable in a direction perpendicular to the planar extensions and in the upper direction and/or the lower direction, wherein the opening extends between at least two neighboring storage plates among the plurality of storage plates and at current positions thereof.

PARCEL STATION, PARCEL SYSTEM AND METHOD FOR OPERATING A PARCEL STATION

A parcel station including a housing having a front cover which is slidable along at least one side of the housing which further includes a plurality of segments, and wherein the front cover is configured so that two neighboring segments among the plurality of segments are separable from each other to form an opening in the front; and a plurality of storage plates, which are arranged one above the other in the interior space of the housing with respect to planar extensions thereof and which is movable in a direction perpendicular to the planar extensions and in the upper direction and/or the lower direction, wherein the opening extends between at least two neighboring storage plates among the plurality of storage plates and at current positions thereof.