B63H21/30

DEVICES AND METHODS FOR COUPLING PROPULSION DEVICES TO MARINE VESSELS

A device for coupling a propulsor to a marine vessel. A rail is configured for attachment to the marine vessel. A carriage is moveable relative to the rail into first and second positions. A shaft has a first end pivotally coupled to the marine vessel and a second end for coupling to the propulsor. An actuator is configured to pivot the shaft relative to the marine vessel to thereby move the propulsor into and between stowed and deployed positions. A lock is manually operable to fix the carriage in the first position in which the actuator prevents manual pivoting of the shaft and alternatively in the second position in which the shaft is permitted to be manually pivoted.

MARINE PROPULSION UNIT AND MARINE VESSEL
20230036549 · 2023-02-02 · ·

A marine propulsion unit includes a stern drive mounted to a transom. The stern drive comprises an upper unit enclosed in a stern drive housing and a lower unit enclosed in a gearbox housing; wherein the gearbox housing contains a gearbox arranged to drive at least one propeller. The propulsion unit further comprises at least two electric motors arranged in the stern drive housing, which electric motors are mounted with vertical output shafts; a planetary gear set arranged between the at least two electric motors and the gearbox, and a vertical shaft that is attached to a ring gear of the planetary gear set at its upper end and is connected to the gearbox at its lower end; wherein the output shaft of each electric motor is connected to a planetary gear arranged in the planetary gear set to drive the ring gear and the vertical shaft connected to the gearbox.

MARINE PROPULSION UNIT AND MARINE VESSEL
20230036549 · 2023-02-02 · ·

A marine propulsion unit includes a stern drive mounted to a transom. The stern drive comprises an upper unit enclosed in a stern drive housing and a lower unit enclosed in a gearbox housing; wherein the gearbox housing contains a gearbox arranged to drive at least one propeller. The propulsion unit further comprises at least two electric motors arranged in the stern drive housing, which electric motors are mounted with vertical output shafts; a planetary gear set arranged between the at least two electric motors and the gearbox, and a vertical shaft that is attached to a ring gear of the planetary gear set at its upper end and is connected to the gearbox at its lower end; wherein the output shaft of each electric motor is connected to a planetary gear arranged in the planetary gear set to drive the ring gear and the vertical shaft connected to the gearbox.

MARINE PROPULSION DEVICES HAVING ELECTRIC MOTORS AND METHODS FOR MAKING MARINE PROPULSION DEVICES HAVING ELECTRIC MOTORS

A method for making a marine propulsion device. The method includes providing a drive housing that extends between a first end and a second end, whereby drive housing has a cavity that extends inwardly from the second end. The method further includes positioning a conductor within the drive housing, whereby the conductor is configured to conduct power for the marine propulsion device. The method further includes inserting a motor assembly into the cavity and electrically coupling the motor assembly and the conductor while the motor assembly is positioned in the cavity and without entering the cavity via the first end of the drive housing.

MARINE PROPULSION DEVICES HAVING ELECTRIC MOTORS AND METHODS FOR MAKING MARINE PROPULSION DEVICES HAVING ELECTRIC MOTORS

A method for making a marine propulsion device. The method includes providing a drive housing that extends between a first end and a second end, whereby drive housing has a cavity that extends inwardly from the second end. The method further includes positioning a conductor within the drive housing, whereby the conductor is configured to conduct power for the marine propulsion device. The method further includes inserting a motor assembly into the cavity and electrically coupling the motor assembly and the conductor while the motor assembly is positioned in the cavity and without entering the cavity via the first end of the drive housing.

Systems and methods for mounting a propulsion device with respect to a marine vessel

A method for controlling an elastic mount configured to support a propulsion device with respect to a marine vessel, wherein the elastic mount contains an electromagnetic fluid and an electromagnet and is configured such that adjusting an amount of electricity applied to the electromagnet changes the shear strength of the electromagnetic fluid and thereby controls elasticity of the elastic mount, including applying a first amount of electricity to the electromagnet to produce a first elasticity in the elastic mount, determining that a vessel speed indicator exceeds a high speed threshold, determining that a trim position for the propulsion device is greater than a threshold trim position, detecting at least a threshold decrease in throttle demand, and applying a second amount of electricity to the electromagnet wherein the second amount of electricity is greater than the first amount of electricity, so as to decrease the elasticity of the elastic mount.

SUPPORT ASSEMBLIES FOR WATERCRAFTS AND RELATED METHODS OF ASSEMBLY

A watercraft includes a hull, an opening extending vertically through the hull, and a support assembly configured to mount a propulsion mechanism to the watercraft. The hull at least partially defines the opening. The support assembly includes a rightward support device attached to the hull, positioned between a forward portion of the opening and a rearward portion of the opening, and at least partially defining a right lateral portion of the opening. The support assembly further includes a leftward support device attached to the hull, positioned between the forward portion of the opening and the rearward portion of the opening, and at least partially defining a left lateral portion of the opening.

SUPPORT ASSEMBLIES FOR WATERCRAFTS AND RELATED METHODS OF ASSEMBLY

A watercraft includes a hull, an opening extending vertically through the hull, and a support assembly configured to mount a propulsion mechanism to the watercraft. The hull at least partially defines the opening. The support assembly includes a rightward support device attached to the hull, positioned between a forward portion of the opening and a rearward portion of the opening, and at least partially defining a right lateral portion of the opening. The support assembly further includes a leftward support device attached to the hull, positioned between the forward portion of the opening and the rearward portion of the opening, and at least partially defining a left lateral portion of the opening.

DRIVE FOR A BOAT, DRIVE SYSTEM FOR A BOAT, BOAT
20230112935 · 2023-04-13 ·

The invention relates to a drive (10) for a boat as an additional drive or alternative drive to a main drive (20), which is provided with a cavitation plate (24). The drive (10) in this case comprises an electric motor (8) and is designed in such a manner that it can easily be fastened to the main drive. The drive (10) is configured to be fastened to the cavitation plate such that after assembly it does not project rearwards beyond the cavitation plate (24) of the main drive (20).

Motor Mount For Non-Powered Small Vessel
20220332402 · 2022-10-20 ·

A device for mounting one or more electric motors to a kayak or a small non-powered vessel, whereby a rotatable assembly is mounted on the gunnel of the vessel on either the port or starboard side, or both. The rotatable assembly includes an axle and an adjustable arm rotatably mounted thereon, with a motor on the end of the adjustable arm The rotatable assembly may be manipulated to move the motor(s) into or out of the water and lock in either position. The adjustable arm allows the motor to be adjusted in the pitch, yaw, and roll orientations. The motor(s) are powered by a battery and controlled by a hand-held unit that allows the motors to be independently operated.