IP Library Granted Patent US 12,097,624
Granted Patent B2
US 12,097,624 · App. 16/779,204 · Granted Sep 24, 2024

Systems and methods for pipette robot time-of-flight functionality

Inventors: Chiu Chau (Edison, NJ); Jane Shmushkis (Manalapan, NJ)
Assignee: Opentrons Labworks Inc.
B25J9/1694B25J9/161B25J9/163B25J9/1679B25J13/08G01N2035/0474
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Quick Facts
Patent No.
US 12,097,624
App. No.
16/779,204
Granted
Sep 24, 2024
Kind
B2
Abstract

Systems and methods applicable, for instance, to pipette robots. A pipette robot can perform one or more tip presence check operations, one or more tip seal check operations, and/or one or more distance sensing operations, including distance sensing operations which regard determining the height of the surface of a liquid.

Claims (51)

1. A pipette robot, comprising:

at least one processor;

a memory;

a pipette; and

at least one time-of-flight sensor integrated module, wherein said at least one integrated module comprises a detector and an emitter on a single device,

wherein the memory stores instructions that, when executed by the at least one processor, cause the pipette robot to perform:

aligning at least one tip of the pipette with at least one vessel;

descending the at least one tip to a first Z-axis height, wherein said descending to the first Z-axis height causes a surface of a liquid held by the at least one vessel to be within a field of view of the at least one sensor;

instructing the at least one sensor to emit light having a first wavelength;

instructing the at least one sensor to emit light having a second wavelength, wherein the light having the second wavelength passes through a liquid portion held by the at least one vessel and reflects off a solid portion held by the at least one vessel;

querying the at least one time-of-flight sensor for at least one sensor value;

selecting, utilizing the at least one sensor value, a second Z-axis height; and

descending the at least one tip to the second Z-axis height.

2. The pipette robot of claim 1 , wherein said selected second Z-axis height allows for pipetting of said liquid held by the at least one vessel while preventing contamination of the at least one tip by said liquid.

3. The pipette robot of claim 1 , wherein the pipette is a multichannel pipette, the at least one sensor is a single sensor, and wherein the instructions, when executed by the at least one processor, further cause the pipette robot to perform:

moving the single sensor to each of multiple positions corresponding to channels of the multichannel pipette.

4. A pipette robot, comprising:

at least one processor;

a memory;

a pipette; and

at least one time-of-flight sensor integrated module, wherein said at least one integrated module comprises a detector and an emitter on a single device,

wherein the memory stores instructions that, when executed by the at least one processor, cause the pipette robot to perform:

aligning at least one tip of the pipette with at least one vessel;

descending the at least one tip to a first Z-axis height, wherein said descending to the first Z-axis height causes a surface of a liquid held by the at least one vessel to be within a field of view of the at least one sensor;

querying the at least one time-of-flight sensor for at least one sensor value;

scanning, utilizing the at least one time-of-flight sensor, a surface of said liquid;

compiling, for each of multiple X/Y coordinate locations visited by the at least one time-of-flight sensor, a sensor value;

determining, utilizing said compiled sensor values, a center of a meniscus of said liquid,

selecting, utilizing the at least one sensor value, a second Z-axis height; and

descending the at least one tip to the second Z-axis height,

wherein the determined center of the meniscus is utilized in said selection of the second Z-axis height.

5. The pipette robot of claim 4 , wherein said selected second Z-axis height allows for pipetting of said liquid held by the at least one vessel while preventing contamination of the at least one tip by said liquid.

6. The pipette robot of claim 4 , wherein the pipette is a multichannel pipette, the at least one sensor is a single sensor, and wherein the instructions, when executed by the at least one processor, further cause the pipette robot to perform:

moving the single sensor to each of multiple positions corresponding to channels of the multichannel pipette.

7. A pipette robot, comprising:

at least one processor;

a memory;

a pipette; and

at least one time-of-flight sensor integrated module, wherein said at least one integrated module comprises a detector and an emitter on a single device,

wherein the memory stores instructions that, when executed by the at least one processor, cause the pipette robot to perform:

aligning at least one tip of the pipette with at least one vessel;

descending the at least one tip to a first Z-axis height, wherein said descending to the first Z-axis height causes a surface of a liquid held by the at least one vessel to be within a field of view of the at least one sensor;

querying the at least one time-of-flight sensor for at least one sensor value;

scanning, utilizing the at least one time-of-flight sensor, a surface of said liquid;

compiling, for each of multiple X/Y coordinate locations visited by the at least one time-of-flight sensor, a sensor value;

selecting, utilizing the at least one sensor value, a second Z-axis height; and

descending the at least one tip to the second Z-axis height,

wherein the compilation of said sensor values comprises generating a distance heatmap.

8. The pipette robot of claim 7 , wherein said selected second Z-axis height allows for pipetting of said liquid held by the at least one vessel while preventing contamination of the at least one tip by said liquid.

9. The pipette robot of claim 7 , wherein the pipette is a multichannel pipette, the at least one sensor is a single sensor, and wherein the instructions, when executed by the at least one processor, further cause the pipette robot to perform:

moving the single sensor to each of multiple positions corresponding to channels of the multichannel pipette.

Assignments (4)
SECURITY INTEREST Recorded Jul 7, 2025
From: OPENTRONS LABWORKS INC.; REOPEN DIAGNOSTICS, LLC; NEOCHROMOSOME, INC.
To: OXFORD FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 071615/0854 →
RELEASE OF SECURITY INTEREST Recorded Mar 31, 2023
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: OPENTRONS LABWORKS INC.
Reel/Frame 063185/0675 →
SECURITY INTEREST Recorded May 17, 2021
From: OPENTRONS LABWORKS INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 056263/0191 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2020
From: CHAU, CHIU; SHMUSHKIS, JANE
To: OPENTRONS LABWORKS INC.
Reel/Frame 052765/0430 →
Continuity (2)
Provisional Application 62800269 · Feb 1, 2019
Related Publication 20200246976A1 · Aug 6, 2020