IP Library Granted Patent US 7,243,035
Granted Patent B2
US 7,243,035 · App. 10/444,249 · Granted Jul 10, 2007

System and method for mass flow detection device calibration

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Quick Facts
Patent No.
US 7,243,035
App. No.
10/444,249
Granted
Jul 10, 2007
Kind
B2
Abstract

Systems and methods for correcting measurements of fluid flow using device-specific information to compensate for differences between individual devices of the same design. In one embodiment, a method includes providing device-specific calibration data; sensing a fluid flow; computing a measured fluid flow based on the sensed fluid flow, and correcting the measured fluid flow based on the device-specific calibration data. More particularly, the fluid flow measurement is corrected using correction factors that compensate for the use of a gas that is different from the calibration gas (CF 0 (1+aF+bF 2 +cF 3 )), for device variations in sensor sensitivity (1+αΔR), and for variations in the split flow of fluid through the flow meter (1−βΔADC(Sp/100) 2 ). The sensor and split flow correction factors may be used independently of each other in some embodiments.

Claims (30)

1. A method comprising:

providing device-specific calibration data;

sensing a fluid flow;

computing a measured fluid flow based on the sensed fluid flow; and

correcting the measured fluid flow based on the device-specific calibration data, wherein correcting the measured fluid flow based on the device-specific calibration data comprises adjusting the measured fluid flow using a device-specific sensor correction factor, wherein the device-specific sensor correction factor is a function of a sensor resistance and has the form (1+αΔR), where ΔR is a difference between the device-specific sensor resistance and an average of a sensor resistance of several devices of a same design and α is a constant which is determined either empirically or theoretically.

2. A method comprising:

providing device-specific calibration data;

sensing a fluid flow

computing a measured fluid flow based on the sensed fluid flow; and correcting the measured fluid flow based on the device-specific calibration data, wherein correcting the measured fluid flow based on the device-specific calibration data comprises adjusting the measured fluid flow using a device-specific linearity correction factor wherein the device-specific linearity correction factor is a function of a sensor split flow ratio.

3. The method of claim 2 , wherein the device-specific linearity correction factor has the form (1−βΔADC(Sp/100) 2 ), where αADC is a difference between the device-specific split flow ratio non-linearity and an average of a split flow ratio non-linearity of several devices of a same design, Sp is the sensed fluid flow expressed as a percent of maximum allowable flow, and β is a constant which is determined either empirically or theoretically.

4. A method comprising:

providing device-specific calibration data;

sensing a fluid flow;

computing a measured fluid flow based on the sensed fluid flow; and

correcting the measured fluid flow based on the device-specific calibration data, wherein correcting the measured fluid flow based on the device-specific calibration data comprises adjusting the measured fluid flow using a device-specific sensor correction factor and a device-specific linearity correction factor, wherein the device-specific sensor correction factor is a function of a sensor resistance and the device-specific linearity correction factor is a function of a sensor split flow ratio.

5. The method of claim 4 , wherein the device-specific sensor correction factor has the form (1+αΔR), where ΔR is a difference between the device-specific sensor resistance and an average of a sensor resistance of several devices of a same design, and wherein the device-specific linearity correction factor has the form (1−βΔADC(Sp/100) 2 ), where ΔADC is a difference between the device-specific split flow ratio non-linearity and an average of a split flow ratio non-linearity of the several devices of the same design, Sp is the sensed fluid flow expressed as a percent of maximum allowable flow, and α and β are constants which are determined either empirically or theoretically.

6. A system comprising:

a fluid flow sensor;

a memory configured to store device-specific calibration data; and

control electronics coupled to the fluid flow sensor and the memory, wherein the control electronics are configured to compute a measured fluid flow based on a sensed fluid flow detected by the sensor and the device-specific calibration data and wherein the control electronics are configured to correct the measured fluid flow using a device-specific sensor correction factor, and wherein the device-specific sensor correction factor is a function of a sensor resistance and the device-specific sensor correction factor has the form (1+αΔR), where ΔR is a difference between the device-specific sensor resistance and an average of a sensor resistance of several devices of a same design, and α is a constant which is determined either empirically or theoretically.

7. A system comprising:

a fluid flow sensor;

a memory configured to store device-specific calibration data; and

control electronics coupled to the fluid flow sensor and the memory, wherein the control electronics are configured to compute a measured fluid flow based on a sensed fluid flow detected by the sensor and the device-specific calibration data and wherein the control electronics are configured to correct the measured fluid flow using a device-specific linearity correction factor wherein the device-specific linearity correction factor is a function of a sensor split flow ratio.

8. The system of claim 7 , wherein the device-specific linearity correction factor has the form (1−βΔADC(Sp/100) 2 ), where ΔADC is a difference between the device-specific split flow ratio non-linearity and an average of a split flow ratio non-linearity of several devices of a same design, Sp is the sensed fluid flow expressed as a percent of maximum allowable flow, and β is a constant which is determined either empirically or theoretically.

9. A system comprising:

a fluid flow sensor;

a memory configured to store device-specific calibration data; and

control electronics coupled to the fluid flow sensor and the memory, wherein the control electronics are configured to compute a measured fluid flow based on a sensed fluid flow detected by the sensor and the device-specific calibration data and wherein the control electronics are configured to correct the measured fluid flow using a device-specific sensor correction factor and a device-specific linearity correction factor, wherein the device-specific sensor correction factor is a function of a sensor resistance and the device-specific linearity correction factor is a function of a sensor split flow ratio.

10. The system of claim 9 , wherein the device-specific sensor correction factor has the form (1+αΔR), where ΔR is a difference between the device-specific sensor resistance and an average of a sensor resistance of several devices of a same design, and wherein the device-specific linearity correction factor has the form (1−βΔADC(Sp/100) 2 ), where ΔADC is a difference between the device-specific split flow ratio non-linearity and an average of a split flow ratio non-linearity of the several devices of the same design, Sp is the sensed fluid flow expressed as a percent of maximum allowable flow, and α and β are constants which are determined either empirically or theoretically.

Assignments (13)
RELEASE OF SECURITY INTEREST Recorded Jan 11, 2012
From: ALLY COMMERCIAL FINANCE LLC (F/K/A GMAC COMMERCIAL FINANCE LLC)
To: BROOKS INSTRUMENT, LLC
Reel/Frame 027514/0691 →
RELEASE OF SECURITY INTEREST Recorded Jun 19, 2009
From: OBSIDIAN, LLC; SPECIAL VALUE ABSOLUTE RETURN FUND, LLC; SPECIAL VALUE CONTINUATION PARTNERS, LP; SPCP GROUP, LLC; NEW YORK LIFE INVESTMENT MANAGEMENT MEZZANINE PARTNERS, LP; NYLIM MEZZANINE PARTNERS PARALLEL FUND, LP; UNITED INSURANCE COMPANY OF AMERICA; TRINITY UNIVERSAL INSURANCE COMPANY
To: CELERITY, INC.; CELERITY HOLDING COMPANY, INC.
Reel/Frame 022846/0605 →
RELEASE OF SECURITY INTEREST Recorded Jun 19, 2009
From: TENNENBAUM CAPITAL PARTNERS, LLC
To: CELERITY, INC.; CELERITY HOLDING COMPANY, INC.
Reel/Frame 022846/0624 →
RELEASE OF SECURITY INTEREST Recorded Jun 19, 2009
From: OBSIDIAN, LLC; SPECIAL VALUE ABSOLUTE RETURN FUND, LLC; SPECIAL VALUE CONTINUATION PARTNERS, LP; SPCP GROUP, L.L.C.; NEW YORK LIFE INVESTMENT MANAGEMENT MEZZANINE PARTNERS, LP; NYLIM MEZZANINE PARTNERS PARALLEL FUND LP; UNITED INSURANCE COMPANY OF AMERICA; TRINITY UNIVERSAL INSURANCE COMPANY
To: CELERITY, INC.; CELERITY HOLDING COMPANY, INC.; CELERITY SYSTEMS, INC.
Reel/Frame 022846/0642 →
RELEASE OF SECURITY INTEREST Recorded Jun 19, 2009
From: THE BANK OF NEW YORK MELLON; TPG PARTNERS III, L.P.; TPG INVESTORS III, L.P.; TPG DUTCH PARALELL III, C.V.; FOF PARTNERS III, L.P.; FOF PARTNERS III-B, L.P.; T3 GENPAR II, L.P.; T3 PARALLEL II, L.P.; TPG PARTNERS IV, L.P.; SPECIAL VALUE ABSOLUTE RETURN FUND, LLC; SPECIAL VALUE CONTINUATION PARTNERS, LP
To: CELERITY, INC.; CELERITY HOLDING COMPANY, INC.; CELERITY SYSTEMS, INC.
Reel/Frame 022846/0663 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 18, 2009
From: CELERITY, INC.
To: BROOKS INSTRUMENT, LLC
Reel/Frame 022835/0730 →
SECURITY INTEREST Recorded Jun 17, 2009
From: BROOKS INSTRUMENTS LLC
To: GMAC COMMERCIAL FINANCE LLC
Reel/Frame 022878/0786 →
SECURITY AGREEMENT Recorded Jun 5, 2008
From: CELERITY, INC.
To: OBSIDIAN, LLC
Reel/Frame 021050/0279 →
SECURITY AGREEMENT Recorded May 27, 2008
From: CELERITY, INC.
To: OBSIDIAN, LLC
Reel/Frame 020995/0403 →
SECURITY AGREEMENT Recorded Apr 16, 2008
From: CELERITY, INC.; CELERITY HOLDING COMPANY, INC.; CELERITY SYSTEMS, INC.
To: THE BANK OF NEW YORK
Reel/Frame 020808/0538 →
MERGER Recorded Jun 9, 2006
From: MYKROLIS CORPORATION
To: ENTEGRIS, INC.
Reel/Frame 017762/0286 →
ASSET PURCHASE AGREEMENT (REDACTED) Recorded Jun 6, 2006
From: ENTEGRIS, INC.
To: CELERITY, INC.
Reel/Frame 017802/0399 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 24, 2004
From: TISON, STUART A.; LU, SHILIANG
To: MYKROLIS CORPORATION
Reel/Frame 015364/0518 →