IP Library Granted Patent US 11,440,523
Granted Patent B2
US 11,440,523 · App. 16/603,265 · Granted Sep 13, 2022

Detecting electric over hydraulic trailer connectivity

Inventor: Chandrakumar D. Kulkarni (Battle Creek, MI)
Assignee: HORIZON GLOBAL AMERICAS INC.
B60T17/221B60Q9/00G01R31/68B60T2270/406
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Quick Facts
Patent No.
US 11,440,523
App. No.
16/603,265
Granted
Sep 13, 2022
Kind
B2
Abstract

A brake controller system includes a brake controller that controls the brakes of a towed vehicle based on acceleration. The brake controller sends signals to the brakes of the towed vehicle. The brake controller sends signals to determine whether the trailer brakes are properly connected. The signals may include a pulse train. The pulse train charges hydraulic braking systems for resistive testing. The brake controller determines whether the brakes are connected.

Claims (38)

1. A brake controller for controlling brakes of a towed vehicle, the brake controller comprising:

a processor that operatively initiates transmission of a test signal for testing the connectivity of the brakes of the towed vehicle to the brake controller;

an output driver circuit operatively coupled to the processor to receive the test signal and initiate application of an electronic signal to the brakes, and to measure resistance of the brakes;

wherein, in response to determining that the resistance is within a first range corresponding to electromagnetic brakes, the processor identifies the brakes are connected and adjusts operation of the brake controller for the electromagnetic brakes, and

wherein, in response to the determining that the resistance is not within the first range, the processor generates a pulse train to be applied to the brakes, iterates transmission of the test signal, and in response to determining that the resistance is within a second range corresponding to electric over hydraulic (EOH) brakes, the processor identifies the brakes are connected and adjusts operation of the brake controller for the EOH brakes.

2. The brake controller of claim 1 , wherein the processor identifies the brakes as not connected when the resistance is not within the first range and not within the second range.

3. The brake controller of claim 1 , wherein the processor generates the pulse train with a pulse period of about 2 ms.

4. The brake controller of claim 3 , wherein the processor generates the pulse train with a pulse width of about 100 μs.

5. The brake controller of claim 3 , wherein the processor repeats the pulse train once every 250 ms.

6. The brake controller of claim 1 , wherein the processor generates pulses of the pulse train such that the time period between consecutive pulses is about 2 ms.

7. The brake controller of claim 1 , wherein the processor repeats the pulse train such that the time period between consecutive pulses is about 250 ms.

8. The brake controller of claim 1 , wherein the pulse train is about 50*(2 ms+100 μs)=105 ms.

9. The brake controller of claim 1 , wherein the processor measures inductance at the output driver circuit and determines whether the inductance indicates that the electromagnetic brakes are present.

10. The brake controller of claim 1 , further comprising a user interface coupled to the processor and operatively indicating a connectivity status to the trailer brakes.

11. The brake controller of claim 1 , further comprising a memory, wherein the processor stores a type associated with the trailer brakes in the memory.

12. A brake controller for determining connectivity of trailer brakes comprising:

a processor; and

an output driver circuit selectively coupled to the trailer brakes,

wherein the processor generates a pulse train to be applied to a trailer brake system, the pulse train comprising a plurality of pulses that operatively charge an input circuit of the trailer brake system if the trailer brake system is operatively connected, and

wherein the processor measures resistance a response at the output driver circuit after application of the pulse train to determine whether the trailer brake system is operatively connected;

wherein:

(A) (i) the response is a measurement of inductance, and (ii) determining that when the response corresponds to an inductance range corresponding to electromagnetic brakes, the processor identifies the brakes are connected and adjusts a transfer function of the brake controller for the electromagnetic brakes,

(B) when the response does not correspond to the inductance range, (i) the response is a measurement of resistance, and (ii) the resistance is within a first range corresponding to electromagnetic brakes, the processor identifies the brakes are connected and adjusts the operation of the brake controller for the electromagnetic brakes,

(C) in response to the determining that the resistance is not within the first range, (i) the response is a measurement of resistance, and (ii) when the resistance is within a second range corresponding to electric over hydraulic (EOH) brakes, the processor identifies the brakes are connected and adjusts operation of the brake controller for the EOH brakes.

13. The brake controller of claim 12 , wherein the processor periodically iterates generation of the pulse train and measuring the response at the output driver circuit.

14. The brake controller of claim 12 , the output driver circuit operatively receives the pulse train from the processor and applies the pulse train to a terminal connection that is operatively connected to the trailer brake system.

15. A method for determining connectivity of trailer brakes to a brake controller, the method comprising:

generating a resistive test signal to apply to a connection terminal of an output circuit of the brake controller;

measuring resistance at the output circuit;

in response to determining that the resistance is within a first range corresponding to electric brakes, identifying the trailer brakes as operatively connected to electronic brakes;

in response to determining that the resistance is not within the first range, generating a pulse train to be applied to the connection terminal of the output circuit;

measuring resistance at the output circuit after application of the pulse train; and

in response to determining that the resistance is within a second range corresponding to electric over hydraulic (EOH) brakes, identifying the trailer brakes as operatively connected to EOH brakes.

16. The method of claim 15 , further comprising generating an inductive test signal to be applied to the connection terminal of the output circuit.

17. The method of claim 16 , further comprising measuring inductance at the output circuit in response to the inductive test signal and determining whether the trailer brakes are properly connected.

18. The method of claim 15 , further comprising indicating a connectivity status of the trailer brakes through a user interface.

19. The method of claim 15 , further comprising storing a type associated with the trailer brakes in response to determining that the trailer brakes are operatively connected.

20. The method of claim 15 , wherein in response to identifying the trailer brakes as operatively connected to electronic brakes, adjusting a transfer function of the brake controller for the electromagnetic brakes, and wherein in response to identifying the trailer brakes as operatively connected to EOH brakes, adjusting a transfer function of the brake controller for the EOH brakes.

Assignments (8)
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 →
RELEASE OF SECURITY INTEREST Recorded Feb 9, 2021
From: CORTLAND CAPITAL MARKET SERVICES LLC, SOLELY IN ITS CAPACITY AS COLLATERAL AGENT (AS SUCCESSOR TO JPMORGAN CHASE BANK, N.A.)
To: HORIZON GLOBAL CORPORATION; WESTFALIA-AUTOMOTIVE GMBH; HORIZON GLOBAL AMERICAS INC.; CEQUENT CONSUMER PRODUCTS, INC.
Reel/Frame 055262/0842 →
SECURITY INTEREST Recorded Feb 9, 2021
From: HORIZON GLOBAL AMERICAS INC.; C.P. WITTER LIMITED; WESTFALIA-AUTOMOTIVE GMBH
To: ATLANTIC PARK STRATEGIC CAPITAL FUND, L.P., AS COLLATERAL AGENT
Reel/Frame 055262/0949 →
SECURITY INTEREST Recorded May 21, 2020
From: HORIZON GLOBAL AMERICAS INC.; HORIZON GLOBAL CORPORATION
To: ENCINA BUSINESS CREDIT, LLC
Reel/Frame 052721/0614 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2020
From: KULKARNI, CHANDRAKUMAR D.
To: HORIZON GLOBAL AMERICAS INC.
Reel/Frame 052601/0291 →
ASSIGNMENT OF SECURITY INTEREST IN PATENTS Recorded Apr 22, 2020
From: JPMORGAN CHASE BANK, N.A.
To: CORTLAND CAPITAL MARKET SERVICES LLC
Reel/Frame 052463/0091 →
SECURITY INTEREST Recorded Mar 31, 2020
From: HORIZON GLOBAL AMERICAS INC.
To: CORTLAND CAPITAL MARKET SERVICES LLC, AS COLLATERAL AGENT
Reel/Frame 052272/0939 →
SECURITY INTEREST Recorded Mar 31, 2020
From: HORIZON GLOBAL AMERICAS INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 052272/0918 →