IP Library Granted Patent US 12,162,461
Granted Patent B2
US 12,162,461 · App. 17/411,435 · Granted Dec 10, 2024

Brake control unit

Inventors: Marcia Albright (Coldwater, MI); Chandrakumar Kulkarni (Battle Creek, MI); Jerald Prater (Tecumseh, MI); Jason Reichard (Scotts, MI); Dennis Morse (Jackson, MI); Mark Austin (Coldwater, MI); Pat Burgess (West Point, IN); Marvin Hoot (Woodburn, IN); Larry Eccleston (Battle Creek, MI); Steve Zavodny (Fort Wayne, IN)
Assignee: Horizon Global Americas Inc.
B60T8/323B60T7/085B60T7/20B60T8/172B60T8/885B60T17/22B60T2270/402B60T2270/413
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Quick Facts
Patent No.
US 12,162,461
App. No.
17/411,435
Granted
Dec 10, 2024
Kind
B2
Abstract

Towed vehicles can be extremely heavy. Accordingly, it is too much of a burden to the braking system of a towing vehicle to not have brakes on the towed vehicle. Controlling the brakes of the towed vehicle must be accurately applied otherwise undesirable conditions can be created. There is a need for a method for controlling braking of a towed vehicle. This method comprises receiving a first signal via a communication bus of a towing vehicle, the first signal relating to at least one operating condition of at least one the towing vehicle and a towed vehicle, sending a second signal to brakes of the towed vehicle, the second signal based on said first signal.

Claims (30)

1. A method for controlling braking of a towed vehicle, the method comprising:

receiving a first signal at a brake controller via a towing vehicle communication bus, the first signal relating to at least one operating condition of the towing vehicle; and

sending a second signal from the brake controller to brakes of the towed vehicle, the second signal based on the first signal; and

wherein the towing vehicle communication bus is configured to communicate electronic signals and the towing vehicle communication bus interconnects a plurality of components on the towing vehicle and is externally connected to the brake controller.

2. The method of claim 1 , further comprising sending a third signal to the towing vehicle via the towing vehicle communication bus, the third signal based on at least one of the first signal and the second signal.

3. The method of claim 1 , wherein the first signal is received by a processor from at least one of a brake pressure transducer of the towing vehicle, a brake-on-off line, towing vehicle interior lighting, memory of the towing vehicle, transmission of the towing vehicle, powertrain of the towing vehicle, an anti-lock brake system of the towing vehicle, a speed meter, an ignition of the towing vehicle, a speedometer of the towing vehicle, and a brake pedal of the towing vehicle.

4. The method of claim 1 , wherein the first signal is received by a processor from a plurality of a brake pressure transducer of the towing vehicle, a brake-on-off line, towing vehicle interior lighting, memory of the towing vehicle, transmission of the towing vehicle, powertrain of the towing vehicle, an anti-lock brake system of the towing vehicle, a speed meter, an ignition of the towing vehicle, a speedometer of the towing vehicle, and a brake pedal of the towing vehicle.

5. The method of claim 1 , further comprising receiving a signal through the towing vehicle communication bus from a brake pressure transducer of the towing vehicle.

6. The method of claim 5 , wherein the second signal is based on the first signal and the signal from the brake pressure transducer.

7. The method of claim 1 , wherein the at least one operating condition comprises at least one of speed of the towing vehicle, speed of the towed vehicle, the towing vehicle's anti-lock brakes, vehicle identification number of the towing vehicle, condition of an ignition of the towing vehicle, selected gear of a transmission of the towing vehicle, and powertrain load of the towing vehicle.

8. The method of claim 1 , further comprising collecting and storing information in a memory to allow for diagnostics, life cycle management, and variables for future use.

9. The method of claim 1 , further comprising receiving a signal from the towing vehicle relating to detection of the ignition of the towing vehicle being turned off and sending a signal to a brake control unit via the towing vehicle communication bus instructing the brake control unit to power down.

10. The method of claim 9 , further comprising receiving a signal relating to detection of ignition of the towing vehicle being turned on and sending a signal to the brake control unit to power up.

11. The method of claim 1 , further comprising receiving a signal relating to a lack of activity on the towing vehicle communication bus and sending a signal to a brake control unit via the communication bus instructing the brake control unit to power down.

12. The method of claim 9 , further comprising receiving a signal relating to detection of activity on the towing vehicle communication bus and sending a signal to the brake control unit to power up.

13. The method of claim 1 , further comprising performing at least one of a limited operating strategy, an automatic adjustment of output based on variable inputs from the towing vehicle, an inductive and resistive load testing, an internal short circuit protection procedure, and a gain button and scroll stuck routine.

14. The method of claim 13 , wherein performing the limited operating strategy comprises operating the brakes of the towed vehicle despite unavailability of a main input.

15. The method of claim 13 , wherein performing the automatic adjustment of output based on variable inputs from the towing vehicle comprises continuously sampling supply voltage and adjusting the second signal based on the sampling.

16. The method of claim 13 , further comprising performing inductive and resistive load testing comprising sensing load of the brakes of the towed vehicle to determine if the load is normal and sensing if the brakes are available on the towed vehicle.

17. The method of claim 13 , wherein performing the gain button and scroll stuck routine comprises continuously sampling inputs activated by an operator and determining if the inputs are real or an electrical failure.

18. A method for controlling braking of a towed vehicle, the method comprising:

receiving a first signal at a brake controller via a towing vehicle communication bus, the first signal relating to at least one operating condition of the towing vehicle; and

sending a second signal from the brake controller to brakes of the towed vehicle, the second signal based on the first signal;

wherein the towing vehicle communication bus is configured to communicate electronic signals and the towing vehicle communication bus interconnects a plurality of components on the towing vehicle and is externally connected to the brake controller; and

sending a third signal to the towing vehicle via the towing vehicle communication bus, the third signal based on at least one of the first signal and the second signal.

19. A method for controlling braking of a towed vehicle, the method comprising:

receiving a first signal at a brake controller via a towing vehicle communication bus, the first signal relating to at least one operating condition of the towing vehicle; and

sending a second signal from the brake controller to brakes of the towed vehicle, the second signal based on the first signal;

wherein the towing vehicle communication bus is configured to communicate electronic signals and the towing vehicle communication bus interconnects a plurality of components on the towing vehicle and is externally connected to the brake controller; and

wherein the at least one operating condition comprises a plurality of speed of the towing vehicle, speed of the towed vehicle, the towing vehicle's anti-lock brakes, vehicle identification number of the towing vehicle, condition of an ignition of the towing vehicle, selected gear of a transmission of the towing vehicle, and powertrain load of the towing vehicle.

Assignments (2)
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 Aug 25, 2021
From: ALBRIGHT, MARCIA; KULKARNI, CHANDRAKUMAR; MORSE, DENNIS; HOOT, MARVIN; ECCLESTON, LARRY
To: HORIZON GLOBAL AMERICAS INC.
Reel/Frame 057284/0679 →
Continuity (7)
Continuation 16055490 · Aug 6, 2018
Continuation 15486781 · Apr 13, 2017
Continuation 14299753 · Jun 9, 2014
Continuation 11247690 · Oct 11, 2005
Provisional Application 60616979 · Oct 8, 2004
Provisional Application 60617062 · Oct 8, 2004
Related Publication 20210380086A1 · Dec 9, 2021