Device for steering a trolling motor and method of the same

US12459618B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12459618-B2
Application numberUS-202117558735-A
CountryUS
Kind codeB2
Filing dateDec 22, 2021
Priority dateDec 22, 2021
Publication dateNov 4, 2025
Grant dateNov 4, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A device for steering a trolling motor of a watercraft is provided. The device comprises a housing and a joystick attached to the housing, pivotably supported for movement from a neutral position in directions radial to an axis of the joystick. The movement from the neutral position generates a steering command for the trolling motor. The device has a transmitter within the housing and a processor communicatively coupled to the transmitter and the joystick. The device may further include a memory including a computer program code. The computer program code is configured when executed by the processor to receive movement data from the joystick, generate a steering command from the movement data, and transmit the steering command to the trolling motor. The steering command causes the trolling motor to rotate to aim in the steer direction to cause the watercraft to travel based on the joystick movement.

First claim

Opening claim text (preview).

That which is claimed: 1 . A handheld device for steering a trolling motor of a watercraft, the handheld device comprising: a housing; a joystick attached to the housing and pivotably supported for movement from a neutral position in directions radial to an axis of the joystick, wherein the movement from the neutral position generates a steering command for the trolling motor; a transmitter within the housing; a processor communicatively coupled to the transmitter and the joystick; and a memory including a computer program product stored thereon, wherein the computer program product is configured, when executed by the processor, to: receive movement data from the joystick including a direction of movement from the neutral position, wherein the direction of movement from the neutral position defines a joystick direction and occurs over 360 degrees; generate, based on the movement data, the steering command for instructing the trolling motor to aim in a steer direction that directly corresponds to the joystick direction, wherein the steer direction is a pointing direction of the trolling motor for directing propulsion of the trolling motor, wherein the steer direction occurs over 360 degrees; transmit the steering command to the trolling motor, wherein the steering command causes the trolling motor to rotate so as to aim in the steer direction to cause the watercraft to travel based on movement of the joystick; continuously generate steering commands based on adjustments in the direction of movement from the neutral position of the joystick; and correspondingly, transmit the steering commands to the trolling motor to cause the trolling motor to adjust the steer direction to match a corresponding joystick direction for each of the adjustments in the direction of movement from the neutral position of the joystick. 2 . The handheld device of claim 1 , further comprising a button having an engaged position and a disengaged position attached to the housing opposite the joystick so as to form a trigger, wherein the computer program code is further configured, when executed by the processor to: determine that the button is in the engaged position; and generate the steering command if the button is in the engaged position. 3 . The handheld device of claim 1 , further comprising a pressure sensor positioned relative to the joystick, wherein the pressure sensor generates a pressure indication from radial movement of the joystick from the neutral position, and wherein the computer program code is further configured, when executed by the processor, to: receive the pressure indication from the pressure sensor; generate, based on the pressure indication, a thrust command for instructing the trolling motor to operate according to a speed, wherein a degree of thrust varies with respect to a degree of pressure applied to the joystick; and transmit the thrust command to the trolling motor. 4 . The handheld device of claim 1 , wherein the joystick further comprises a joystick button, wherein the joystick button is moveable between a disengaged position and an engaged position, wherein the joystick button is moved to the engaged position by pressing a top face of the joystick into the housing. 5 . The handheld device of claim 4 , wherein the joystick button, when pressed into the engaged position, generates a virtual anchor signal, and wherein the computer program product is further configured, when executed by the processor, to: receive engagement data from the joystick button; generate, based on the engagement data, the virtual anchor signal for instructing the trolling motor to engage in a virtual anchor protocol; and transmit the virtual anchor signal to the trolling motor, instructing the trolling motor to engage the virtual anchor protocol to cause the watercraft to maintain a current position. 6 . The handheld device of claim 1 , further comprising at least one button positioned adjacent the joystick, wherein the at least one button is configured to generate a command when engaged, and wherein the when the computer program product, when executed by the processor to: receive engagement data from the at least one button; generate, based on the engagement data, the command for instructing the watercraft; and transmit the command to the watercraft. 7 . The handheld device of claim 6 , wherein the command is selected from the group consisting of: engage a propeller; turn on an autopilot; provide input to a user interface; disengage the propeller, and turn off the autopilot. 8 . The handheld device of claim 1 , further comprising a display, wherein the display is positioned adjacent the joystick on the housing. 9 . The handheld device of claim 8 , wherein the display is configured to present marine data. 10 . The handheld device of claim 1 , wherein the computer program product is further configured, when executed by the processor to: receive orientation data from a position sensor, wherein the orientation indicates an orientation of the trolling motor; and determine a path of least rotation between the orientation of the trolling motor and the steer direction. 11 . The handheld device of claim 10 , wherein the steering command indicates the trolling motor to rotate counterclockwise to the steer direction. 12 . The handheld device of claim 10 , wherein the steering command indicates the trolling motor to rotate clockwise to the steer direction. 13 . The handheld device of claim 1 , wherein the computer program product, is further configured, when executed by the processor to: assign a forward direction to movement of the joystick from the neutral position, wherein the forward direction corresponds to a forward direction of the watercraft; determine an angle of difference between the direction of movement of the joystick and the forward direction; and determine the steer direction based on the angle of difference. 14 . A system for use with a watercraft, the system comprising: a trolling motor assembly comprising: a shaft having a first end and a second end defining a shaft axis extending between the first end and the second end; a trolling motor at least partially contained within a trolling motor housing, wherein the trolling motor housing is attached to the second end of the shaft, wherein, when the trolling motor assembly is attached to the watercraft and the trolling motor housing is submerged in a body of water, the trolling motor, when operating, is configured to rotate about the shaft axis and propel the watercraft to travel along the body of water; and a main housing connected to the shaft proximate the first end of the shaft, wherein the main housing is configured to be positioned out of the body of water when the trolling motor assembly is attached to the watercraft and the trolling motor housing is submerged in the body of water; a user input assembly comprising: a housing; a joystick attached to the housing pivotably supported for movement from a neutral position in directions radial to an axis of the joystick, wherein a movement from the neutral position generates a steering command for the trolling motor; a transmitter within the housing communicatively coupled to a controller; a processor communicatively coupled to the transmitter and the joystick; and a memory including a computer program product stored thereon, wherein the computer program product is configured, when executed by the processor, to: receive movement data from the joystick including a direction of movement from the neutral position, wherein the direction of movement from the neutral position defines a

Assignees

Inventors

Classifications

  • Initiating means for steering {, for slowing down, otherwise than by use of propulsive elements, or for dynamic anchoring} · CPC title

  • using multi-axis control levers, or the like, e.g. joysticks, wherein at least one degree of freedom is employed for steering, slowing down, or dynamic anchoring · CPC title

  • using remote control means, e.g. wireless control; Equipment or accessories therefor · CPC title

  • Means enabling steering · CPC title

  • B63H20/007Primary

    Trolling propulsion units (trolling plates for slowing down B63H25/50; dynamo-electric machines of trolling units H02K) · CPC title

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What does patent US12459618B2 cover?
A device for steering a trolling motor of a watercraft is provided. The device comprises a housing and a joystick attached to the housing, pivotably supported for movement from a neutral position in directions radial to an axis of the joystick. The movement from the neutral position generates a steering command for the trolling motor. The device has a transmitter within the housing and a proces…
Who is the assignee on this patent?
Navico Inc
What technology area does this patent fall under?
Primary CPC classification B63H20/007. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Nov 04 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).