IP Library › Granted Patent US 10,923,376
Granted Patent B2
US 10,923,376 · App. 16/232,508 · Granted Feb 16, 2021

Rotary stocker and transfer system provided with rotary stocker

Inventors: Yukio Iwasaki (Kobe, JP); Satoshi Ouchi (Kobe, JP); Eiji Mitsui (Kobe, JP); Junichi Matsuoka (Kobe, JP); Yukihiko Kitano (Kobe, JP)
Assignees: KAWASAKI JUKOGYO KABUSHIKI KAISHA; MEDICAROID CORPORATION
H01L21/67769B25J9/1694B25J15/0028B65G1/045B65G1/137B65G47/905G07F11/50G07F11/54H01L21/67778
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Quick Facts
Patent No.
US 10,923,376
App. No.
16/232,508
Granted
Feb 16, 2021
Kind
B2
Abstract

There is provided a rotary stocker which includes: a base; a rotary part provided on the base and rotatably connected to the base about a rotary axis extending in a vertical direction; a rotary drive device provided for rotating the rotary part; a plurality of shelves on which an object to be placed is placed, the plurality of shelves being fixed to the rotary part and being arranged in a circumferential direction about the rotary axis; and a sensor positioned outside the plurality of shelves in a radial direction of the rotary axis, the sensor capable of detecting whether the object to be placed is placed on each of the shelves positioned between the rotary axis and the sensor.

Claims (49)

1. A rotary stocker comprising:

a base;

a rotary part provided on the base and rotatably connected to the base about a rotary axis extending in a vertical direction;

a rotary drive device provided for rotating the rotary part;

a plurality of shelves on which an object to be placed is placed, the plurality of shelves being fixed to the rotary part and being arranged in a circumferential direction about the rotary axis; and

a sensor positioned outside the plurality of shelves in a radial direction of the rotary axis, the sensor capable of detecting whether the object to be placed is placed on each of the shelves positioned between the rotary axis and the sensor.

2. The rotary stocker according to claim 1 , wherein each of the shelves has: a horizontal support surface which supports the object to be placed from below; and an inclined surface which is connected to an end portion of the support surface on a remote side with respect to the rotary axis and is inclined upward from the end portion toward the outside in the radial direction.

3. The rotary stocker according to claim 1 further comprising:

an extension part being fixed to the base and extending in the vertical direction at a position outside the plurality of shelves in the radial direction of the rotary axis; and

a connection part extending from the extension part toward the rotary axis and rotatably connected to an upper end portion of the rotary part, wherein

the sensor is provided on the extension part.

4. The rotary stocker according to claim 3 , wherein each of the shelves has: a horizontal support surface which supports the object to be placed from below; and an inclined surface which is connected to an end portion of the support surface on a remote side with respect to the rotary axis and is inclined upward from the end portion toward the outside in the radial direction.

5. The rotary stocker according to claim 3 , wherein the plurality of shelves form a plurality of first shelves, the sensor forms a first sensor fixed to the extension part,

the rotary stocker further comprising: a plurality of second shelves which differ from the plurality of first shelves, the plurality of second shelves being fixed to the rotary part above the plurality of first shelves and being arranged in the circumferential direction about the rotary axis; and

a second sensor being fixed to the extension part above the first sensor, the second sensor capable of detecting whether the object to be placed is placed on each of the second shelves positioned between the rotary axis and the second sensor.

6. The rotary stocker according to claim 5 , wherein each of the shelves has: a horizontal support surface which supports the object to be placed from below; and an inclined surface which is connected to an end portion of the support surface on a remote side with respect to the rotary axis and is inclined upward from the end portion toward the outside in the radial direction.

7. The rotary stocker according to claim 3 , wherein the plurality of shelves form a plurality of first shelves,

the rotary stocker further comprising: a plurality of second shelves which differ from the plurality of first shelves, the plurality of second shelves being fixed to the rotary part above the plurality of first shelves and being arranged in the circumferential direction about the rotary axis;

a lifting part supported on the extension part, the lifting part capable of being lifted or lowered along the extension part; and

a lifting drive device capable of lifting or lowering the lifting part, wherein

the sensor is fixed to the lifting part, the sensor detects whether the object to be placed is placed on each of the first shelves when the sensor is at a position which opposedly faces each of the first shelves in the radial direction, and detects whether the object to be placed is placed on each of the second shelves when the sensor is at a position which opposedly faces each of the second shelves in the radial direction.

8. The rotary stocker according to claim 7 , wherein each of the shelves has: a horizontal support surface which supports the object to be placed from below; and an inclined surface which is connected to an end portion of the support surface on a remote side with respect to the rotary axis and is inclined upward from the end portion toward the outside in the radial direction.

9. A transfer system which transfers an object to be placed to shelves, the transfer system comprising:

a rotary stocker;

a robot arm;

an end effector provided on a distal end of the robot arm and capable of holding the object to be placed; and

a controller for controlling the robot arm and the end effector, wherein

the rotary stocker comprises:

a base;

a rotary part provided on the base and rotatably connected to the base about a rotary axis extending in a vertical direction;

a rotary drive device provided for rotating the rotary part;

a plurality of shelves on which an object to be placed is placed, the plurality of shelves being fixed to the rotary part and being arranged in a circumferential direction about the rotary axis; and

a sensor positioned outside the plurality of shelves in a radial direction of the rotary axis, the sensor capable of detecting whether the object to be placed is placed on each of the shelves positioned between the rotary axis and the sensor,

each of the shelves has:

a horizontal support surface which supports the object to be placed from below; and

an inclined surface which is connected to an end portion of the support surface on a remote side with respect to the rotary axis and is inclined upward from the end portion toward the outside in the radial direction, and

the controller controls the robot arm so as to bring the object to be placed which is held by the end effector into contact with the inclined surface, and controls the end effector so as to make the end effector release holding of the object to be placed when the object to be placed is brought into contact with the inclined surface.

10. The transfer system according to claim 9 further comprising:

an extension part being fixed to the base and extending in the vertical direction at a position outside the plurality of shelves in the radial direction of the rotary axis; and

a connection part extending from the extension part toward the rotary axis and rotatably connected to an upper end portion of the rotary part, wherein

the sensor is provided on the extension part.

11. The transfer system according to claim 10 , wherein the plurality of shelves form a plurality of first shelves, the sensor forms a first sensor fixed to the extension part,

the rotary stocker further comprising: a plurality of second shelves which differ from the plurality of first shelves, the plurality of second shelves being fixed to the rotary part above the plurality of first shelves and being arranged in the circumferential direction about the rotary axis; and

a second sensor being fixed to the extension part above the first sensor, the second sensor capable of detecting whether the object to be placed is placed on each of the second shelves positioned between the rotary axis and the second sensor.

12. The transfer system according to claim 10 , wherein the plurality of shelves form a plurality of first shelves,

the rotary stocker further comprising: a plurality of second shelves which differ from the plurality of first shelves, the plurality of second shelves being fixed to the rotary part above the plurality of first shelves and being arranged in the circumferential direction about the rotary axis;

a lifting part supported on the extension part, the lifting part capable of being lifted or lowered along the extension part; and

a lifting drive device capable of lifting or lowering the lifting part, wherein

the sensor is fixed to the lifting part, the sensor detects whether the object to be placed is placed on each of the first shelves when the sensor is at a position which opposedly faces each of the first shelves in the radial direction, and detects whether the object to be placed is placed on each of the second shelves when the sensor is at a position which opposedly faces each of the second shelves in the radial direction.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2022
From: MEDICAROID CORPORATION
To: KAWASAKI JUKOGYO KABUSHIKI KAISHA
Reel/Frame 058834/0480 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 25, 2019
From: IWASAKI, YUKIO; OUCHI, SATOSHI; MITSUI, EIJI; MATSUOKA, JUNICHI; KITANO, YUKIHIKO
To: KAWASAKI JUKOGYO KABUSHIKI KAISHA; MEDICAROID CORPORATION
Reel/Frame 048425/0891 →
Priority Claims (1)
JP 2017-250215 · Dec 26, 2017 · national
Continuity (1)
Related Publication 20190193951A1 · Jun 27, 2019