IP Library › Granted Patent US 11,241,800
Granted Patent B2
US 11,241,800 · App. 16/815,545 · Granted Feb 8, 2022

Asymmetric dual end effector robot arm

Inventors: Scott Wilkas (Lexington, MA); Martin Hosek (Lowell, MA)
Assignee: Persimmon Technologies Corporation
B25J11/0095B25J9/0087B25J9/02B25J9/105
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Quick Facts
Patent No.
US 11,241,800
App. No.
16/815,545
Granted
Feb 8, 2022
Kind
B2
Abstract

An apparatus includes a first arm comprising an unequal-link linkage having a first end effector; a second arm comprising an equal-link linkage having a second end effector; and a drive unit coupled to the first arm and the second arm, the drive unit being configured to move the first arm and the second arm. The first end effector is asymmetric to the second end effector. The first end effector is angled relative to the second end effector such that a first substrate support section on the first end effector is not positioned over or under a second substrate support section on the second end effector.

Claims (50)

1. An apparatus, comprising:

a first arm comprising an unequal-link linkage having a first end effector;

a second arm comprising an equal-link linkage having a second end effector; and

a drive unit coupled to the first arm and the second arm, the drive unit being configured to move the first arm and the second arm;

wherein the first end effector is asymmetric to the second end effector; and

wherein the first end effector is angled relative to the second end effector such that a first substrate support section on the first end effector is not positioned over or under a second substrate support section on the second end effector.

2. The apparatus of claim 1 , wherein upon a movement of the first arm or the second arm, one of the first substrate support section on the first end effector or the second substrate support section on the second end effector does not travel over or under the other of the first substrate support section on the first end effector or the second substrate support section on the second end effector.

3. The apparatus of claim 1 , wherein linkages of one or both of the equal-link linkage and the unequal-link linkage are moved with at least one non-circular pulley.

4. The apparatus of claim 1 , wherein the first arm and the second arm are configured such that upon an extension movement of the first arm, the first end effector moves away from the second end effector.

5. The apparatus of claim 1 , wherein the first arm and the second arm are configured such that upon an extension movement of the second arm, the second end effector moves away from the first end effector.

6. The apparatus of claim 1 , wherein in a link-over-link position of the equal-link linkage, an orientation of the first end effector and the second end effector changes as the second end effector moves along a straight line.

7. The apparatus of claim 6 , wherein when the second end effector is in an extended position, the orientation of the first end effector and the second end effector is constant and the second end effector continues to move along the straight line.

8. The apparatus of claim 1 , wherein in a link-over-link position of the unequal-link linkage, an orientation of the first end effector and the second end effector changes as the first end effector moves along a straight line.

9. The apparatus of claim 8 , wherein when the first end effector is in an extended position, the orientation of the first end effector and the second end effector is constant and the first end effector continues to move along the straight line.

10. A substrate transport apparatus for carrying at least two substrates, the substrate transport apparatus comprising:

a lower arm comprising two links of unequal length and a lower end effector;

an upper arm comprising two links of equal length and an upper end effector; and

a drive unit coupled to the lower arm and the upper arm, the drive unit being configured to rotate and extend the lower arm and the upper arm;

wherein the lower end effector is asymmetric to and angled relative to the upper end effector such that a distal end of the lower end effector is not positioned under a distal end of the upper end effector and wherein upon a movement of the lower arm or the upper arm, the distal end of the lower end effector does not travel under the distal end of the upper end effector.

11. The substrate transport apparatus of claim 10 , further comprising pulleys located at joints of the links of the lower arm and at joints of the links of the upper arm, the pulleys of each arm being operably coupled to the drive unit and to other pulleys of the same arm such that operation of the drive unit causes the movement of the lower arm and/or the movement of the upper arm.

12. The substrate transport apparatus of claim 11 , wherein at least one of the pulleys is a non-circular pulley.

13. The substrate transport apparatus of claim 10 , wherein the lower arm and the upper arm are each configured such that upon an extension movement of the lower arm, the lower end effector moves away from the upper end effector, and such that upon an extension movement of the upper arm, the upper end effector moves away from the lower end effector.

14. The substrate transport apparatus of claim 10 ,

wherein in a link-over-link position of the upper arm, an orientation of the upper end effector and the lower end effector changes as the lower end effector moves along a straight line, and

wherein in a link-over-link position of the lower arm, an orientation of the lower end effector and the upper end effector changes as the upper end effector moves along a straight line.

15. A method of transporting a first substrate and a second substrate, the method comprising:

rotating, about a shaft of a drive unit, a first arm comprising a first linkage having a first end effector, the first end effector being configured to transport the first substrate; and

extending the first linkage relative to a second arm comprising a second linkage having a second end effector, the second end effector being asymmetric to and angled relative to the first end effector, the second end effector being configured to transport the second substrate;

wherein at an at rest position, the first substrate is not positioned over or under the second substrate; and

wherein upon extending the first linkage, the first substrate does not travel over or under the second substrate.

16. The method of claim 15 , wherein the first linkage is extended using at least one non-circular pulley.

17. The method of claim 15 , wherein the first arm and the second arm are configured such that upon extending the first linkage, the first end effector moves away from the second end effector.

18. The method of claim 15 , wherein in a link-over-link position of the first linkage, an orientation of the first end effector and the second end effector changes as the first end effector moves along a straight line.

19. The method of claim 18 , wherein when the first end effector is moving to an extended position, the orientation of the first end effector and the second end effector is constant and the first end effector continues to move along the straight line.

20. A method of assembling a substrate transport apparatus, the method comprising:

connecting an upper link of a first linkage arm to a rotatable shaft of a drive unit;

connecting a lower link of the first linkage arm to the upper link of the first linkage arm at a first elbow joint;

connecting a first end effector to the lower link of the first linkage arm at a first wrist joint;

connecting an upper link of a second linkage arm to the rotatable shaft of the drive unit;

connecting a lower link of the second linkage arm to the upper link of the second linkage arm at a second elbow joint; and

connecting a second end effector to the lower link of the second linkage arm at a second wrist joint;

wherein at least the upper link of the first linkage arm and the lower link of the first linkage arm are of unequal lengths; and

wherein the first end effector is angled relative to the second end effector such that a first substrate support section at a distal end of the first end effector is not over or under a second substrate support section at a distal end of the second end effector.

21. An apparatus, comprising:

at least one processor; and

at least one non-transitory memory including computer program code, the at least one memory and the computer program code configured to, with the at least one processor, cause the apparatus at least to perform:

rotating, about a shaft of a drive unit, a first arm comprising a first linkage having a first end effector, the first end effector being configured to transport a first substrate; and

extending the first linkage relative to a second arm comprising a second linkage having a second end effector, the second end effector being asymmetric to and angled relative to the first end effector, the second end effector being configured to transport a second substrate;

wherein at an at rest position, the first substrate is not positioned over or under the second substrate; and

wherein upon extending the first linkage, the first substrate does not travel over or under the second substrate.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2021
From: WILKAS, SCOTT; HOSEK, MARTIN
To: PERSIMMON TECHNOLOGIES CORPORATION
Reel/Frame 058497/0915 →
Continuity (2)
Provisional Application 62816413 · Mar 11, 2019
Related Publication 20200290211A1 · Sep 17, 2020