IP Library › Granted Patent US 11,943,894
Granted Patent B2
US 11,943,894 · App. 17/617,167 · Granted Mar 26, 2024

Control device for robot with blower device at opening

Inventors: Noriaki Fujisawa (Kobe, JP); Yoshiaki Tonoue (Kobe, JP)
Assignee: KAWASAKI JUKOGYO KABUSHIKI KAISHA
H05K7/20163B25J13/06B25J19/0054H05K5/0213H05K5/0247H05K7/20136H05K7/2039H05K5/0217
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Quick Facts
Patent No.
US 11,943,894
App. No.
17/617,167
Granted
Mar 26, 2024
Kind
B2
Abstract

A robot control device includes a casing including a main body having a first opening and a second opening, and a door opening and closing the first opening, a first circuit including a heat generating element, and at least one blower device. The main body includes a first chamber accommodating the first circuit and open at the first opening, and a second chamber adjacent to the first chamber and open at the first opening and the second opening. When the door closes the first opening, the door closes the first chamber and communicates the second chamber with the outside via a door opening of the door. The blower device is disposed at least one of positions at the door opening, near the door opening, at the second opening, and near the second opening, and is configured to introduce and discharge air into/from the second chamber.

Claims (44)

1. A control device for a robot, configured to control the robot, comprising:

a casing including a main body having a first opening and a second opening disposed at a wall opposing to the first opening, and a door provided to the main body so as to open and close the first opening;

a first circuit including a heat generating element configured to generate heat by being supplied with power; and

at least one blower device,

wherein the main body includes:

a first chamber accommodating the first circuit and open at the first opening; and

a second chamber adjacent to the first chamber via a first partition wall and open at the first opening and the second opening,

wherein the door has a door opening penetrating the door and disposed so as to be communicable with the second chamber,

wherein, when the door closes the first opening, the door closes the first chamber and communicates the second chamber with the outside via the door opening, and

wherein the at least one blower device is disposed at least one of positions at the door opening, near the door opening, at the second opening, and near the second opening, and is configured to introduce and discharge air into/from the second chamber,

wherein the control device further includes a second circuit in a third chamber provided to the main body;

wherein the third chamber is adjacent to the second chamber via a second partition wall,

wherein the third chamber is open at the first opening, and when the door closes the first opening, the third chamber is closed by the door.

2. The control device of claim 1 , wherein the first opening and the second opening are disposed at positions opposing to each other.

3. The control device of claim 1 , further comprising a first heat sink disposed at the first partition wall,

wherein the first heat sink is disposed so that the first heat sink contacts air inside the second chamber and the heat of the heat generating element of the first circuit is transferable thereto.

4. The control device of claim 3 , wherein the first circuit includes a first heat generating element and a second heat generating element as the heat generating element,

wherein the first heat sink comprises at least two first heat sinks disposed so that the heat of the first heat generating element and the second heat generating element is transferable thereto, and

wherein the first heat sink to which the heat of the first heat generating element is transferable, and the first heat sink to which the heat of the second heat generating element is transferable are disposed in a direction intersecting with a direction of an air flow generated inside the second chamber by the blower device.

5. The control device of claim 1 , wherein an electric cable extending from the heat generating element of the first circuit is disposed through the second chamber.

6. The control device of claim 1 , wherein the door is provided with at least one of a breaker switch, a connecting device with a manipulator of the robot, a setting device of an operating mode of the robot, and an emergency stopping device of the robot.

7. The control device of claim 1 , further comprising a second heat sink disposed at the second partition wall,

wherein the second heat sink is disposed so that the second heat sink contacts air inside the second chamber and the heat of the second circuit is transferable thereto.

8. A control device for a robot, configured to control the robot, comprising:

a casing including a main body having a first opening and a second opening disposed at a wall opposing to the first opening, and a door provided to the main body so as to open and close the first opening;

a first circuit including a heat generating element configured to generate heat by being supplied with power; and

at least one blower device,

wherein the main body includes:

a first chamber accommodating the first circuit and open at the first opening; and

a second chamber adjacent to the first chamber via a first partition wall and open at the first opening and the second opening,

wherein the door has a door opening penetrating the door and disposed so as to be communicable with the second chamber,

wherein, when the door closes the first opening, the door closes the first chamber and communicates the second chamber with the outside via the door opening, and

wherein the at least one blower device is disposed at least one of positions at the door opening, near the door opening, at the second opening, and near the second opening, and is configured to introduce and discharge air into/from the second chamber,

wherein the control device further includes a first heat sink disposed at the first partition wall,

wherein the first heat sink is disposed so that the first heat sink contacts air inside the second chamber and the heat of the heat generating element of the first circuit is transferable thereto,

wherein the first circuit includes a first heat generating element and a second heat generating element as the heat generating element,

wherein the first heat sink comprises at least two first heat sinks disposed so that the heat of the first heat generating element and the second heat generating element is transferable thereto, and

wherein the first heat sink to which the heat of the first heat generating element is transferable, and the first heat sink to which the heat of the second heat generating element is transferable are disposed in a direction intersecting with a direction of an air flow generated inside the second chamber by the blower device.

9. The control device of claim 8 , further comprising a second circuit in a third chamber provided to the main body,

wherein the third chamber is adjacent to the second chamber via a second partition wall.

10. The control device of claim 9 , further comprising a second heat sink disposed at the second partition wall,

wherein the second heat sink is disposed so that the second heat sink contacts air inside the second chamber and the heat of the second circuit is transferable thereto.

11. The control device of claim 10 , wherein the third chamber is open at the first opening, and when the door closes the first opening, the third chamber is closed by the door.

12. The control device of claim 9 , wherein the third chamber is open at the first opening, and when the door closes the first opening, the third chamber is closed by the door.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2022
From: FUJISAWA, NORIAKI; TONOUE, YOSHIAKI
To: KAWASAKI JUKOGYO KABUSHIKI KAISHA
Reel/Frame 060237/0823 →
Priority Claims (1)
JP 2019-106793 · Jun 7, 2019 · national
Continuity (1)
Related Publication 20220258362A1 · Aug 18, 2022
Cited By (1)
US 12,447,635