H01F7/18

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

A system comprises an elastic mount configured to support a propulsion device with respect to a marine vessel. The elastic mount contains an electromagnetic fluid. An electromagnet is configured so that increasing an amount of electricity applied to the electromagnet increases the shear strength of the electromagnetic fluid in the elastic mount and thereby decreases elasticity of the elastic mount, and so that decreasing the amount of electricity applied to the electromagnet decreases the shear strength of the electromagnetic fluid in the elastic mount and thereby increases the elasticity of the elastic mount. A controller automatically adapts the amount of electricity applied to the electromagnet during translation of the marine vessel so as to reduce the likelihood that the propulsion device impacts an adjacent structure on the marine.

ELECTRIC CURRENT DETECTION APPARATUS

An electric current detection apparatus, the electric current detection apparatus is configured to detect an electric current flowing in a solenoid configured to be electrified by a PWM control, the apparatus includes a switch, an electric current value detection portion configured to detect a first electric current value at a first timing corresponding to a timing when the switch transitions from a closed state to an open state, the electric current value detection portion being configured to detect a third electric current value at a third timing, and a second electric current value calculation portion configured to calculate a second electric current value on the basis of the first electric current value and the third electric current value, the second electric current value being an electric current value of the electric current at the second timing.

ELECTRIC CURRENT DETECTION APPARATUS

An electric current detection apparatus, the electric current detection apparatus is configured to detect an electric current flowing in a solenoid configured to be electrified by a PWM control, the apparatus includes a switch, an electric current value detection portion configured to detect a first electric current value at a first timing corresponding to a timing when the switch transitions from a closed state to an open state, the electric current value detection portion being configured to detect a third electric current value at a third timing, and a second electric current value calculation portion configured to calculate a second electric current value on the basis of the first electric current value and the third electric current value, the second electric current value being an electric current value of the electric current at the second timing.

SOLENOID VALVE DRIVE CONTROL DEVICE AND SOLENOID VALVE COMPRISING SOLENOID VALVE DRIVE CONTROL DEVICE
20170299080 · 2017-10-19 ·

(problem) The invention is to provide to a solenoid valve drive control device and a solenoid valve comprising the solenoid valve drive control device, in which the generation of the noise that originates in inrush current can be controlled by reducing inrush current to the stray capacity of the coil, and accumulating energy in the coil, and in which the energy conservation can be attained.

(Resolution Approach) The invention is a solenoid valve drive control device of the invention, in which by controlling of the zero cross timing generation device 72, after energizing of zero cross timing to the solenoid 66 is started by the switching device 68, when the current value that flows to the solenoid 66 detected by the electric current sensing device 78 reaches predetermined setting current value Ia, an interception mode in which energizing to the solenoid 66 is intercepted by the switching device 68, after intercepting energizing to the solenoid 66 by the switching device 68, the holding current is applied to the solenoid 66 between the following zero cross timings through a snubber circuit 70, a hold mode in which the current value that flows to the solenoid is set to reach predetermined holding current value Ib or more.

SOLENOID VALVE DRIVE CONTROL DEVICE AND SOLENOID VALVE COMPRISING SOLENOID VALVE DRIVE CONTROL DEVICE
20170299080 · 2017-10-19 ·

(problem) The invention is to provide to a solenoid valve drive control device and a solenoid valve comprising the solenoid valve drive control device, in which the generation of the noise that originates in inrush current can be controlled by reducing inrush current to the stray capacity of the coil, and accumulating energy in the coil, and in which the energy conservation can be attained.

(Resolution Approach) The invention is a solenoid valve drive control device of the invention, in which by controlling of the zero cross timing generation device 72, after energizing of zero cross timing to the solenoid 66 is started by the switching device 68, when the current value that flows to the solenoid 66 detected by the electric current sensing device 78 reaches predetermined setting current value Ia, an interception mode in which energizing to the solenoid 66 is intercepted by the switching device 68, after intercepting energizing to the solenoid 66 by the switching device 68, the holding current is applied to the solenoid 66 between the following zero cross timings through a snubber circuit 70, a hold mode in which the current value that flows to the solenoid is set to reach predetermined holding current value Ib or more.

Bistable solenoid valve device, and method for monitoring it

A bistable solenoid valve device for a fluid system is provided. The bistable solenoid valve device comprises a bistable solenoid valve. The bistable solenoid valve comprises a permanent magnet. The bistable solenoid valve further comprises an armature displaceable between a first armature position and a second armature position. The bistable solenoid valve further comprises a first switching coil for energization for a displacement of the armature into the first armature position. The bistable solenoid valve further comprises a second switching coil for energization for a displacement of the armature into the second armature position. The bistable solenoid valve further comprises an evaluation device adapted to measure an induced coil voltage, an induced coil current, or both the induced coil voltage and the induced coil current, at one or more of the non-energized switching coils. The evaluation device is further adapted to assess a switching behavior of the armature.

Pulse solenoid control circuit
09786458 · 2017-10-10 · ·

Disclosed herein is a device comprising a pulse trigger switch module configured to generate a first control signal in response to a first input signal value and generate the second control signal in response to a second input signal value. An on pulse generator module provides a first pulse signal having a first predetermined pulse duration in response to the first control signal and an off pulse generator module provides a second pulse signal having a second predetermined pulse duration in response to the second control signal. An on pulse switch module connects a power signal to an output in response to the first pulse signal and an off pulse switch module connects the power signal to the output in response to the second pulse signal.

Electromagnetic actuator assembly for a fluid injection valve and method for operating a fluid injection valve
09777685 · 2017-10-03 · ·

An electromagnetic actuator assembly for a fluid injection valve includes a first coil and a second coil, which are configured for moving an armature, and an electrical connection circuit for connecting the first and second coils to a power supply. The electrical connection circuit is configured to energize the first coil without energizing the second coil in a first operating mode of the actuator assembly and to energize both the first coil and the second coil in a second operating mode of the actuator assembly.

MAGNET DEVICE COMPRISING STATORS AND TRANSLATORS
20170278612 · 2017-09-28 ·

A magnetic device comprising at least one stator (1) and one actuator (2), wherein the stator (1) and the actuator (2) respectively comprise at least one magnet with pole ends and a line of action of the magnet, and the actuator (2) can be moved linearly along a movement axis (3) and/or rotatably about a movement axis in a movement direction (4), wherein a stator line of action (15) of the stator (1) or a stator extension line (16) of the stator line of action (15), which stator extension line (16) extends as a geometric ray away from the pole end of the stator (1) as geometric tangent to the stator line of action (5), and an actuator line of action (25) of the translator (2) or an actuator extension line (26) of the translator line of action (25), which translator extension line (26) extends as a geometric ray away from the pole end of the translator (2) as geometric tangent to the translator line of action (25), respectively have intersection points (10), and the stator line of action (15), possibly the stator extension line (16), the translator line of action (25), and possibly the translator extension line (26) form a closed geometric shape so that the magnetic flux between the stator (1) and the translator (2) is bundled, wherein lines of action (5) and extension lines (6) extend through the magnetic device in an intersecting plane (11) comprising the movement axis (3).

Actuator Assembly With An Integrated Sensor And A Biasing Member
20170276224 · 2017-09-28 ·

An actuator assembly with a sensor system that is less sensitive to run-out out of moving parts. The sensing system includes a magnet holding plate, a pressure plate, a sensor target and a sensor assembly. The magnet holding plate includes an aperture defining an inner surface, an outer surface, a raised portion along the inner surface, a biasing member positioned along the inner surface in the raised portion, and a flange positioned on the outer surface. The pressure plate includes an outer surface of the pressure plate is positioned underneath the raised portion of the magnet holding plate, axially between the raised portion and the biasing member. The sensor target is attached to the flange of the magnet holding plate. The sensor assembly includes a sensor and a sensor housing positioned radially outward from the pressure plate and magnet holding plate.