IP Library Granted Patent US 11,137,369
Granted Patent B2
US 11,137,369 · App. 15/971,857 · Granted Oct 5, 2021

Integrated sensor arrays for biological and chemical analysis

Inventors: Jonathan M. Rothberg (Guilford, CT); Mark James Milgrew (Branford, CT); Jonathan Schultz (Guilford, CT); David Marran (Durham, CT); Todd Rearick (Cheshire, CT); Kim L. Johnson (Carlsbad, CA); James Bustillo (Castro Valley, CA)
Assignee: Life Technologies Corporation
G01N27/4145C12Q1/6869C12Q1/6874G01N27/4148H01L21/82
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Quick Facts
Patent No.
US 11,137,369
App. No.
15/971,857
Granted
Oct 5, 2021
Kind
B2
Abstract

An apparatus comprising a chemical field effect transistor array in a circuit-supporting substrate is disclosed. The transistor array has disposed on its surface an array of sample-retaining regions capable of retaining a chemical or biological sample from a sample fluid. The transistor array has a pitch of 10 μm or less and a sample-retaining region is positioned on at least one chemical field effect transistor which is configured to generate at least one output signal related to a characteristic of a chemical or biological sample in such sample-retaining region.

Claims (13)

1. A method for analyzing a sample on a sensor array, comprising:

generating a sensor signal from a chemically-sensitive field effect transistor (chemFET) sensor in response to a reaction occurring in a reaction well capacitively coupled to the chemFET sensor;

coupling a reference signal from a reference circuit directly to a column buffer input of a column buffer connected to a circuit node via a reference circuit switch coupled to the circuit node in response to a timing signal during a first time interval to provide a reference sample via the column buffer to a sampling circuit;

coupling the sensor signal to the column buffer via a row select switch between the chemFET sensor and the circuit node; the row select switch coupling a terminal of the chemFET sensor to the column buffer during a second time interval; and

producing an output signal of the chemFET sensor in the sampling circuit as a function of the reference sample obtained during the first interval and a sensed sample of the sensor signal obtained during the second interval, wherein the output signal of the chemFET sensor indicates a characteristic of the reaction.

2. The method of claim 1 , wherein the characteristic of the reaction is related to a concentration of a charged species in a sample fluid.

3. The method of claim 1 , wherein the reaction occurring within the reaction well is a nucleic acid sequencing reaction.

4. The method of claim 3 , wherein the characteristic of the reaction is related to a concentration of hydrogen ions.

5. The method of claim 1 , wherein the reference signal is a reference voltage.

6. The method of claim 1 , wherein producing an output signal further comprises:

storing the output signal of the chemFET sensor in a difference circuit of the sampling circuit; and

coupling the difference circuit to a column output circuit node.

7. The method of claim 1 , wherein producing an output signal comprises producing a noise-reduced output signal of the chemFET sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 16, 2019
From: ROTHBERG, JONATHAN; BUSTILLO, JAMES; MILGREW, MARK; SCHULTZ, JONATHAN; MARRAN, DAVID; REARICK, TODD; JOHNSON, KIM
To: LIFE TECHNOLOGIES CORPORATION
Reel/Frame 051290/0868 →
Continuity (9)
Continuation 14862930 · Sep 23, 2015
Continuation 14599948 · Jan 19, 2015
Continuation 13125133
Continuation 12474897 · May 29, 2009
Continuation 12475311 · May 29, 2009
Provisional Application 61205626 · Jan 22, 2009
Provisional Application 61198222 · Nov 4, 2008
Provisional Application 61196953 · Oct 22, 2008
Related Publication 20190011396A1 · Jan 10, 2019