IP Library Granted Patent US 12,385,457
Granted Patent B2
US 12,385,457 · App. 18/660,341 · Granted Aug 12, 2025

Method of controlling a fuel injector

Inventors: Jeffrey C. Hoppe (Cass City, MI); Duried F. Rabban (Henderson, NV); Bradley J. Roche (Millington, MI); David L. Speirs (Cass City, MI)
Assignee: WALBRO LLC
F02M69/044F02D9/105F02D9/1065F02D2200/0404F02M35/10216
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Quick Facts
Patent No.
US 12,385,457
App. No.
18/660,341
Granted
Aug 12, 2025
Kind
B2
Abstract

In at least some implementations, a charge forming device includes a body that has a throttle bore, a throttle valve associated with the throttle bore, a coupler and an actuator. The throttle has a valve head received within and movable relative to the throttle bore, and a valve shaft to which the valve head is coupled. The coupler is connected to the valve shaft and carries or includes a sensor element. And the actuator has a drive shaft coupled to the coupler so that rotation of the drive shaft is transmitted to the coupler and the valve shaft.

Claims (31)

1. A method of controlling fuel injection events in an internal combustion engine, the method comprising the steps of:

sensing pressure at or near an outlet of a fuel injector with a negative pressure sensor to generate a negative pressure signal; and

processing the negative pressure signal, by a controller, during each engine revolution so that when an intake valve of the internal combustion engine is open and a piston is travelling downward to create a negative relative pressure as sensed by the negative pressure sensor at or near the outlet of the fuel injector, the controller opens a fuel metering valve of the fuel injector so that the negative relative pressure aids fuel flow from the fuel metering valve.

2. The method of claim 1 , wherein the controller opens the fuel metering valve for a duration within each engine revolution and the duration is within and smaller than a portion of the engine revolution in which the negative pressure signal is at or below a threshold relative pressure.

3. The method of claim 2 , wherein the duration does not include a maximum relative pressure in the respective engine revolution.

4. The method of claim 1 , wherein the duration occurs after a maximum relative pressure in the respective engine revolution.

5. The method of claim 1 , which also comprises comparing the sensed pressure to a threshold and opening the fuel metering valve when the pressure exceeds the threshold.

6. The method of claim 1 , wherein the pressure is sampled at fixed rate.

7. The method of claim 1 , further comprising the step of processing the negative pressure signal, by the controller, during each engine revolution so that when the intake valve of the internal combustion engine is closed and, in turn, there is no negative relative pressure as sensed by the negative pressure sensor at or near the outlet of the fuel injector, the controller closes the fuel metering valve of the fuel injector.

8. The method of claim 1 , further comprising the step of receiving a signal, upon energization of the controller and before the internal combustion engine starts, from the pressure sensor to utilize as a reference value for barometric pressure in a calculation for a desired fuel/air mixture calibration.

9. The method of claim 1 , further comprising the step of receiving a signal, upon energization of the controller and before the engine starts, from the pressure sensor to utilize as a reference value for barometric pressure in a calculation for initial engine timing.

10. The method of claim 1 , wherein the fuel injector is located outside of the throttle body.

11. The method of claim 1 , further comprising controlling venting of gasses from by providing a venting system, the venting system having a vent valve including a valve element that is moved relative to a valve seat to selectively permit fluid flow through the vent valve to facilitate fuel flow to the fuel metering valve when a throttle valve is at least 50% from an idle position to a wide open position.

12. A method of controlling fuel injection of a throttle body assembly, comprising:

providing a fuel metering valve with an inlet to which fuel is delivered, a valve element that controls fuel flow rate, and an outlet downstream of the valve element;

providing an actuator with an armature slidably configured for reciprocation between extended and retracted positions, the valve element moved by the armature relative to a valve seat;

providing a sensor configured to sense a fuel pressure at the outlet;

sensing the fuel pressure at the outlet with the sensor; and

only actuating the valve element when the fuel pressure at the outlet is a negative relative pressure by retracting the armature such that the valve element is spaced from the valve seat and fuel may flow through the valve seat.

13. The method of claim 12 , further comprising actuating the valve element when the fuel pressure at the outlet is not a negative relative pressure by extending the armature such that the valve element bears on the valve seat to inhibit or prevent fuel flow through the valve seat.

14. The method of claim 12 , further comprising comparing the sensed fuel pressure at the outlet to a predetermined threshold to enable a known flow rate of fuel through the fuel metering valve.

15. The method of claim 12 , wherein actuating the valve element when the fuel pressure at the outlet is a negative relative pressure is further dependent on a duration of negative relative pressure at the outlet.

16. The method of claim 12 , further comprising delivering fuel to the inlet of the fuel metering valve by:

providing a fuel delivery system upstream of the fuel metering valve, the fuel delivery system having:

a chamber to which fuel is delivered in fluid communication with the inlet of the fuel metering valve,

a valve assembly controlling fluid flow into the chamber, the valve assembly including a valve element associated with a valve seat so that a portion of the valve element is selectively engageable with the valve seat to prevent fluid flow through the valve seat, and

a float disposed in the chamber that moves the valve element relative to the valve seat, the float being buoyant and coupled with the valve element, the float moving in response to changes in a fuel level in the chamber.

17. The method of claim 16 , wherein delivering fuel to the inlet of the inlet of the fuel metering valve includes:

at a maximum level of fuel in the chamber, buoying the float to a position in the chamber where the valve element is closed against the valve seat, preventing fluid flow through the valve seat, and

as fuel is discharged from the chamber, buoying the float in response to a lower fuel level in the chamber, thereby moving to a position in the chamber where the valve element is spaced away from the valve seat, enabling fluid flow through the valve seat.

18. The method of claim 16 , further comprising controlling the venting of gasses from the chamber by providing a venting system, the venting system having a vent valve including a valve element that is moved relative to a valve seat to selectively permit fluid flow through the vent valve to facilitate fuel flow from the chamber to the fuel metering valve.

Assignments (4)
SECURITY INTEREST Recorded Mar 25, 2026
From: OVERDRIVE ACQUISITION, LLC
To: POLARIS INDUSTRIES INC.
Reel/Frame 075242/0950 →
STATEMENT REGARDING RELEASE OF LIENS IN PATENTS, INCLUDING LIEN IN FAVOR OF GLAS USA LLC RECORDED AT R/F 071674/0688 Recorded Mar 25, 2026
From: FIRST BRANDS GROUP HOLDINGS, LLC
To: WALBRO LLC (FORMERLY KNOWN AS WALBRO ENGINE MANAGEMENT, L.L.C.)
Reel/Frame 075247/0779 →
FIRST LIEN INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jun 18, 2025
From: AIRTEX INDUSTRIES, LLC; AIRTEX PRODUCTS, LP; APC INTERMEDIATE HOLDINGS, LLC; APC PARENT, LLC; ASC INDUSTRIES, INC.; AUTOLITE OPERATIONS LLC; AVM EXPORT, INC.; BPI ACQUISITION COMPANY, LLC; BPI EC, LLC; BPI HOLDINGS INTERNATIONAL, LLC; BRAKE PARTS INC CHINA LLC; BRAKE PARTS INC INDIA LLC; BRAKE PARTS INC LLC; CARDONE INDUSTRIES, INC.; CARRAND COMPANIES, INC.; CARTER CARBURETOR HOLDINGS, LLC; CARTER CARBURETOR, LLC; CARTER FUEL EXPORT, INC.; CARTER FUEL SYSTEMS, LLC; CHAMPION LABORATORIES, INC.; CWD HOLDING, LLC; CWD INTERMEDIATE HOLDINGS I, LLC; CWD INTERMEDIATE HOLDINGS II, LLC; CWD, LLC; DALTON CORPORATION; DALTON CORPORATION, KENDALLVILLE; MANUFACTURING FACILITY DALTON CORPORATION, ASHLAND; MANUFACTURING FACILITY DALTON CORPORATION, STRYKER MACHINING FACILITY CO.; DALTON CORPORATION, WARSAW MANUFACTURING FACILITY; EAGLE CASTING, LLC; EAGLE MACHINING, LLC; FIRST BRANDS GROUP INTERMEDIATE, LLC; FIRST BRANDS GROUP, LLC; FRAM GROUP IP LLC; FRAM GROUP OPERATIONS LLC; FRAMAUTO HOLDINGS, LLC; FUEL FILTER TECHNOLOGIES, INC.; GLOBAL REMAN VENTURES, LLC; HEATHERTON HOLDINGS, LLC; HOPKINS ACQUISITION, INC.; HOPKINS MANUFACTURING CORPORATION; HORIZON EURO FINANCE LLC; HORIZON GLOBAL AMERICAS INC.; HORIZON GLOBAL COMPANY LLC; HORIZON GLOBAL CORPORATION; HORIZON INTERNATIONAL HOLDINGS LLC; IBI INTERNATIONAL HOLDING COMPANY, INC.; INTERNATIONAL BRAKE INDUSTRIES, INC.; JASPER ACQUISITION CORP.; JASPER RUBBER PRODUCTS, INC.; KTRI HOLDINGS, INC.; KTRI OFFSHORE HOLDINGS, LLC; LONGMAN ENTERPRISES, INC.; PHNX ACQUISITION CORP.; PREMIER MARKETING GROUP, LLC; PYLON MANUFACTURING CORP.; PYLON SOUTH BEND, INC.; QUALIS AUTOMOTIVE, L.L.C.; QUALIS ENTERPRISES, LLC; QUALITOR ACQUISITION INC.; QUALITOR AUTOMOTIVE, LLC; QUALITOR SUBSIDIARY H, INC.; QUALITOR SUBSIDIARY S, INC.; QUALITOR, INC.; REMAN MANAGEMENT INTERNATIONAL LLC; SDC TX, LLC; SMART CHOICE, LLC; SPECIALTY PUMPS GROUP, INC.; STRONGARM, LLC; TAE BRAKES, LLC; TAE CHINA HOLDINGS, INC.; TMD INTERNATIONAL HOLDINGS LLC; TMD MEXICO LLC; TOLEDO MOLDING & DIE, LLC; TRANSPORTATION AFTERMARKET ENTERPRISE, LLC; TRICO HOLDING CORPORATION; TRICO PRODUCTS CORPORATION; TRICO TECHNOLOGIES CORPORATION; TRIDONEX USA LLC; UCI ACQUISITION HOLDINGS (NO. 4) LLC; UCI INTERNATIONAL HOLDINGS PARENT, INC.; UCI INTERNATIONAL HOLDINGS, INC.; UCI INTERNATIONAL, LLC; UCI PENNSYLVANIA, INC.; UCI-AIRTEX HOLDINGS, INC.; UNITED COMPONENTS, LLC; UNIVERSAL AUTO FILTER LLC; VIPER ACQUISITION I, INC.; VIPER ACQUISITION, INC.; WALBRO LLC; WALBRO MIDCO LLC; WEM US CO.
To: GLAS USA LLC
Reel/Frame 071674/0688 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2024
From: HOPPE, JEFFREY C.; RABBAN, DURIED F.; ROCHE, BRADLEY J.; SPEIRS, DAVID L.
To: WALBRO LLC
Reel/Frame 067384/0447 →
Continuity (4)
Division 18132641 · Apr 10, 2023
Division 17606527
Provisional Application 62842795 · May 3, 2019
Related Publication 20240287955A1 · Aug 29, 2024
References Cited (33)
US 3887661A · Ojala · 1975 [cited by applicant]
US 4694797A · Hamai · 1987 [cited by applicant]
US 6116215A · Soleanicov et al. · 2000 [cited by applicant]
US 6453888B1 · Ueda · 2002 [cited by examiner]
US 8613271B2 · Deng et al. · 2013 [cited by applicant]
US 9394847B2 · Sukegawa et al. · 2016 [cited by applicant]
US 9562496B1 · Roberts et al. · 2017 [cited by applicant]
US 9631736B2 · Kus et al. · 2017 [cited by applicant]
US 9651455B2 · Bowling et al. · 2017 [cited by applicant]
US 10513995B2 · Sagayama · 2019 [cited by examiner]
US 10815908B2 · Radue et al. · 2020 [cited by applicant]
US 11073122B2 · Burns · 2021 [cited by examiner]
US 20020084436A1 · Rauch et al. · 2002 [cited by applicant]
US 20060157027A1 · Ichikawa et al. · 2006 [cited by applicant]
US 20070193534A1 · Ito · 2007 [cited by examiner]
US 20110296818A1 · Hashimoto · 2011 [cited by examiner]
US 20130054121A1 · Casoni et al. · 2013 [cited by applicant]
US 20140158092A1 · Sukegawa et al. · 2014 [cited by applicant]
US 20150337743A1 · Cowan et al. · 2015 [cited by applicant]
US 20160017820A1 · Arai · 2016 [cited by examiner]
US 20160131071A1 · Sugimoto · 2016 [cited by examiner]
US 20160169139A1 · Kato · 2016 [cited by examiner]
US 20160290245A1 · Okubo et al. · 2016 [cited by applicant]
US 20160305348A1 · Gangler et al. · 2016 [cited by applicant]
US 20170082067A1 · Maqbool · 2017 [cited by examiner]
US 20190120193A1 · Burns et al. · 2019 [cited by applicant]
US 20190277202A1 · Guiduzzi et al. · 2019 [cited by applicant]
CN 102913330A · 2013 [cited by applicant]
CN 103883412A · 2014 [cited by applicant]
JP S6296776A · 1987 [cited by applicant]
WO WO2019070656A1 · 2019 [cited by applicant]
Written Opinion & International Search Report for PCT/US2020/030368 dated Aug. 3, 2020, 13 pages. [cited by applicant]
CN Office Action for CN Application No. 202080033122.4 dated May 20, 2023, (15 pages). [cited by applicant]