IP Library › Granted Patent US 10,821,602
Granted Patent B2
US 10,821,602 · App. 15/857,474 · Granted Nov 3, 2020

Carrier for robot and robot having the same

Inventors: Sheng-Chia Chen (Taipei, TW); Sheng-Chih Lin (Taipei, TW); Chia-Chun Li (Taipei, TW)
Assignee: AEOLUS ROBOTICS CORPORATION LIMITED
B25J9/162B25J5/007B25J9/0009B25J9/1684B25J9/1697B25J11/008B25J19/0029B25J19/021G05B2219/40298
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Quick Facts
Patent No.
US 10,821,602
App. No.
15/857,474
Granted
Nov 3, 2020
Kind
B2
Abstract

In some embodiments, a robot comprises a movable base and a torso arranged on the base. The torso comprises a first portion mounted to the base; a second portion installed to the first portion, wherein the second portion could be moved relative to the first portion; and a support substantially connected to the second portion.

Claims (29)

1. A robot, comprising:

a movable base; and

a torso arranged on the base, the torso comprising:

a first portion mounted to the base,

a second portion installed to the first portion, wherein the second portion could be moved relative to the first portion, and

a support substantially connected to the second portion, wherein the support is substantially arranged at the front of the torso, and the support has a joint such that the support is foldable.

2. The robot of claim 1 , further comprising a robotic arm connected to the second portion of the torso, wherein the robotic arm has at least one degree of freedom with respect to the second portion of the torso.

3. The robot of claim 2 , wherein the robotic arm comprises a first unit and a second unit, wherein one end of the first unit is connected to the second portion of the torso and the second unit is connected to the other end of the first unit, and wherein the first unit has at least one degree of freedom with respect to the second portion of the torso and the second unit has at least one degree of freedom with respect to the first unit.

4. The robot of claim 1 , wherein the support is disposed at one side of the torso.

5. The robot of claim 4 , further comprising a robotic arm connected to the other side of the torso, wherein the robotic arm has at least one degree of freedom with respect to the torso.

6. The robot of claim 5 , wherein the robotic arm comprises a first unit and a second unit, wherein one end of the first unit is connected to the torso and the second unit is connected to the other end of the first arm unit, and wherein the first unit has at least one degree of freedom with respect to the torso and the second unit has at least one degree of freedom with respect to the first unit.

7. The robot of claim 1 , wherein the torso further comprises a linear actuator which can cause the second portion to move relative to the first portion.

8. The robot of claim 1 , further comprising an inertial measurement unit (IMU) sensor.

9. The robot of claim 1 , further comprising a sensor for monitoring electrical characteristic of the support.

10. The robot of claim 1 , further comprising an optical sensor.

11. A robot, comprising:

a movable base;

a telescopic torso arranged on the base, wherein the torso has at least two portions arranged in a telescopic manner such that the torso is variable in length; and

a support mounted to the torso;

wherein the support moves upwardly and downwardly while a length of the torso is varied, the support is substantially arranged at the front of the torso, and the support has a joint such that the support is foldable.

12. The robot of claim 11 , further comprising a robotic arm connected to the torso, wherein the robotic arm has at least one degree of freedom with respect to the torso and moves upwardly and downwardly while the length of the torso is varied.

13. The robot of claim 12 , wherein the robotic arm comprises a first unit and a second unit, wherein the first unit is connected to the torso and the second unit is connected to the first unit, and wherein the first unit has at least one degree of freedom with respect to the torso and the second unit has at least one degree of freedom with respect to the first unit.

14. The robot of claim 11 , wherein the support is disposed at one side of the torso.

15. The robot of claim 14 , further comprising a robotic arm connected to the other side of the torso, wherein the robotic arm has at least one degree of freedom with respect to the torso and moves upwardly and downwardly while a length of the torso is varied.

16. The robot of claim 15 , wherein the robotic arm comprises a first unit and a second unit, wherein the first unit is connected to the torso and the second unit is connected to the first arm unit, and wherein the first unit has at least one degree of freedom with respect to the torso and the second unit has at least one degree of freedom with respect to the first unit.

17. The robot of claim 11 , wherein the torso further comprises a linear actuator which can cause the at least two portions of the torso to be displaced within one another in a telescopic manner.

18. The robot of claim 11 , further comprising an inertial measurement unit (IMU) sensor.

19. The robot of claim 11 , further comprising a sensor for monitoring electrical characteristic of the support.

20. The robot of claim 11 , further comprising an optical sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 14, 2018
From: CHEN, SHENG-CHIA; LIN, SHENG-CHIH; LI, CHIA-CHUN
To: AEOLUS ROBOTICS CORPORATION LIMITED
Reel/Frame 046828/0621 →
Continuity (1)
Related Publication 20190202052A1 · Jul 4, 2019