IP Library Granted Patent US 12,311,851
Granted Patent B1
US 12,311,851 · App. 18/113,146 · Granted May 27, 2025

Watercraft battery switch system with visual indicator

Inventors: John Logan Nelson (Fort Myers, FL); Chris Drahman (Huntsville, AL); Eric Griggs (Huntsville, AL); Kelvin Campbell (Huntsville, AL); Scott David Spetich (Fort Myers, FL); Corey Richard Williams (Madison, AL)
Assignee: T-H Marine Supplies, LLC
B60R16/005B60K35/00B60R16/033B63B69/00B60K35/10B60K35/28B60K2360/126B60K2360/169B60K2360/332B60K2360/46
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Quick Facts
Patent No.
US 12,311,851
App. No.
18/113,146
Granted
May 27, 2025
Kind
B1
Abstract

A watercraft battery switch system with visual indicator may have a multi-position, physical rotary switch with integrated LED lighting to visually indicate to a watercraft user information about the watercraft's batteries. In an embodiment, the battery switch system may indicate whether the watercraft's batteries are in use and what combination of batteries is currently powering one or more of the watercraft's systems.

Claims (37)

1. A switch system for a battery, comprising:

a switch comprising a visual indicator positioned thereon, wherein the visual indicator is configured to provide an indication of whether current from the battery is flowing through the switch;

a controller coupled to the switch and the visual indicator, wherein the controller is configured to execute instructions stored in memory to:

receive, at the controller, a switch position signal indicating a physical position of the switch;

generate, at the controller, an indicator signal based on the switch position signal, wherein the indicator signal comprises an indication that the visual indicator is to be turned on if current from the battery is flowing through the switch and the visual indicator is to be turned off if no current is flowing through the switch; and

communicate, from the controller, the indicator signal to the visual indicator.

2. The switch system of claim 1 , wherein the indicator signal further comprises an indication of a color of the visual indicator if the visual indicator is to be turned on.

3. The switch system of claim 1 , wherein the visual indicator is a LED light source.

4. The switch system of claim 1 , wherein the switch comprises an input stud, the input stud configured to be operatively connected to a battery.

5. The switch system of claim 1 , wherein the switch comprises an output stud, the output stud configured to be operatively connected to an output source.

6. The switch system of claim 5 , wherein the output source comprises a control panel, a starter, an alternator, or any combination of the foregoing.

7. A switch system for a multi-battery powered watercraft, comprising:

a switch comprising a selector knob configured for rotation to a plurality of positions, each position corresponding to one of a plurality of battery circuits;

a visual indicator positioned on the switch, wherein the visual indicator is configured to provide an indication of whether current from at least one of the battery circuits is flowing through the switch;

a controller coupled to the switch and the visual indicator, wherein the controller is configured to execute instructions stored in memory to:

receive, at the controller, a switch position signal indicating the position of the selector knob;

generate, at the controller, an indicator signal based on the switch position signal, wherein the indicator signal comprises an indication that the visual indicator is to be turned on if current from the selected battery circuit is flowing through the switch and an indication of a color of the visual indicator if the visual indicator is to be turned on; and

communicate, from the controller, the indicator signal to the visual indicator.

8. The switch system of claim 7 , wherein the visual indicator is a LED light source.

9. The switch system of claim 8 , wherein the visual indicator is configured to emit a different color for each selected battery circuit.

10. The switch system of claim 7 , wherein the plurality of battery circuits comprises a first circuit operatively connected to a first battery, a second circuit operatively connected to a second battery, a third circuit operatively connected to the first battery and the second battery, and an open circuit disconnected from both the first battery and the second battery.

11. The switch system of claim 7 , further comprising a battery charge indicator operatively connected to the switch.

12. The switch system of claim 7 , wherein the system has an Ingress Protection code of at least IP67.

13. The switch system of claim 7 , wherein the switch comprises a faceplate, the faceplate comprising labels affixed thereto for each of the plurality of positions.

14. The switch system of claim 13 , wherein the labels are raised off the faceplate by at least about one millimeter.

15. The switch system of claim 10 , wherein the switch further comprises a first input stud configured to be operatively connected to the first battery to form the first circuit and a second input stud configured to be operatively connected to the second battery to form the second circuit.

16. A switch system for a multi-battery powered watercraft, comprising:

a switch comprising a selector knob configured for rotation to a plurality of positions, each position corresponding to one of a plurality of battery circuits, the plurality of battery circuits comprising a first circuit operatively connected to a first battery, a second circuit operatively connected to a second battery, and a third circuit operatively connected to the first battery and the second battery;

a light source positioned on the switch, wherein the light source is configured to provide an indication of whether current from at least one of the battery circuits is flowing through the switch;

a controller coupled to the switch and the light source, wherein the controller is configured to execute instructions stored in memory to:

receive, at the controller, a switch position signal indicating the position of the selector knob;

generate, at the controller, an indicator signal based on the switch position signal, wherein the indicator signal comprises an indication that the light source is to be turned on if current from the selected battery circuit is flowing through the switch and an indication of a color of the light source if the light source is to be turned on; and

communicate, from the controller, the indicator signal to the light source.

17. The switch system of claim 16 , wherein the light source is a LED light source.

18. The switch system of claim 16 , wherein the system has an Ingress Protection code of at least IP67.

19. The switch system of claim 16 , wherein the light source is configured to emit a different color for each selected battery circuit.

20. The switch system of claim 16 , wherein the switch further comprises a first input stud configured to be operatively connected to the first battery to form the first circuit and a second input stud configured to be operatively connected to the second battery to form the second circuit.

Assignments (3)
SECURITY INTEREST Recorded Nov 20, 2024
From: T-H MARINE SUPPLIES, LLC; ODORSTAR TECHNOLOGY, LLC; CMC MARINE, LLC
To: TRUIST BANK, AS COLLATERAL AGENT
Reel/Frame 069335/0260 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2023
From: WILLIAMS, COREY RICHARD
To: T-H MARINE SUPPLIES, LLC
Reel/Frame 063757/0837 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2023
From: NELSON, JOHN LOGAN; DRAHMAN, CHRIS; GRIGGS, ERIC; CAMPBELL, KELVIN; SPETICH, SCOTT DAVID
To: T-H MARINE SUPPLIES, LLC
Reel/Frame 063724/0050 →
Continuity (1)
Provisional Application 63313142 · Feb 23, 2022
References Cited (3)
US 20210055806A1 · Shepelev · 2021 [cited by examiner]
US 20210284085A1 · Lee · 2021 [cited by examiner]
US 20220105832A1 · Lee · 2022 [cited by examiner]
Cited By (1)
US 12,558,991