H02K7/061

GAME CONTROLLER WITH VIBRATION ACCUATORS
20220331838 · 2022-10-20 · ·

A game controller including a housing with a first handgrip and a second handgrip is provided. The game controller includes a first vibration actuator integrated within the housing proximate to the first handgrip. Further included is a second vibration actuator integrated within the housing proximate to the second handgrip. A controller device is included and is configured to communicate one or more vibrational signals to one or both of the first vibration actuator and the second vibration actuator. The vibrational signals are configured to cause the housing of the game controller to vibrate in a vibrational pattern during use of the controller. The vibrational pattern is one of a plurality of vibrational patterns, and one or more of the plurality of vibration patterns are activated in correlation to one or more game actions occurring during gameplay of a video game using the game controller.

Vibration generating mechanism for a vibrating screen box
11638932 · 2023-05-02 · ·

A vibration generating mechanism for a screen box includes a drive shaft arranged to be rotatably driven by a drive motor, at least one first eccentric out-of-balance weight fixed with respect to the drive shaft for rotation therewith and at least one second eccentric out-of-balance weight coupled to the drive shaft via gearing. The first and second out-of-balance weights rotate in opposite directions when driven by the drive shaft.

Kinetic Powered Smartwatch
20170364038 · 2017-12-21 ·

A kinetically-powered wrist-worn electronic device is apparatus that includes a portable computing device, a wrist strap, a weight, and a generator. The portable computing device runs an operating system responsible for managing and distributes computing resources to various application software on the present invention. A wireless communication module accesses a wireless local area network (WLAN) or a wide area network (WAN) and enables the portable computing device to communicate with external computing devices. The wrist strap secures the portable computing device onto the wrist of the wearer. The weight uses a swinging mass which is designed to oscillate whenever the wearer moves his or her wrist. The generator harnesses and transforms the kinetic energy generated by the oscillating weight into usable electrical energy to power the portable computing device. The electrical energy is stored in a portable power which transfers the electrical energy to the portable computing device.

Signaling sole for shoes, shoe provided with said sole and kit comprising at least one of said sole
20170290390 · 2017-10-12 ·

The present invention regards a sole for shoes including an upper surface, in use facing the user, a lower surface, in use facing the ground or the resting surface, and a thickness, wherein the thickness corresponds to a distance between the upper surface and the lower surface, wherein the sole includes at least one signaling means. Such at least one signaling means includes at least one vibrating motor, capable of vibrating inside such sole and/or at least one light device and the sole includes means for receiving-processing a control signal (sc) intended, in use, to receive and process such control signal (sc) and to emit in reply an activation-deactivation signal (S) towards such at least one signaling means.

Vibrator Mechanism Usable with a Concrete Finishing Tool
20170292229 · 2017-10-12 ·

A remote controlled vibration imparting device for a concrete finishing tool uses a housing having a chamber surrounded by an inner surface of the housing. A vibrator with a support, a rotor with a shaft and weighted body, a motor, and a resilient link between the shaft and the motor is positioned within the housing chamber. The vibrator also includes a resilient band to separate the vibrator from the housing inner surface. First and second adaptors are employed for the housing to be placed between the handle and the terminus of a concrete finishing tool.

Geared haptic feedback element
09779592 · 2017-10-03 · ·

A thin haptic feedback element suitable to provide a perceivable single pulse haptic feedback including an electromagnetic coil, a permanent magnet or other magnetic field source rotatably coupled to an eccentric mass through a torque-increasing drive train. The haptic feedback element may rapidly accelerate and decelerate the eccentric mass to produce a perceivable haptic feedback.

Vibrating compact motor with attached flexible circuit board for a mobile device
09742240 · 2017-08-22 · ·

A compact motor which avoids peeling and cracking of the circuit board wiring pattern upon bending the printed circuit board. A projecting part (13), projecting toward the bottom side of the bracket (5), is provided on the back surface (5c) of the bracket (5) of a compact motor. A board insertion groove (S) is formed between the projecting part (13) and the back surface (5c). The flexible printed circuit board (10), inserted inside the board insertion groove (S), abuts the projecting part (13) and is bent facing the back. When the printed circuit board (10) is inserted into the board insertion groove (S) and bent, the printed circuit board (10) is in a state abutting the curved part (13a) of the projecting part (13), so the curved part (13a) of the projecting part (13) regulates bending and, by doing this, stabilizes bending of the flexible printed circuit board (10).

Steering wheel

A steering wheel provided with a vibration device. The vibration device includes a vibration motor with an eccentric weight attached to a rotational axis protruding out of a motor body and a mounting bracket which mounts the motor on a mounting section located at a region continuous with a ring section on a steering wheel core. The mounting section includes a vibration receiving section and a mounting base. The mounting bracket includes a pressing section which presses the motor body against the vibration receiving section and a mounting tongue which is secured to the mounting base. The mounting bracket is mounted on the mounting base with the motor body disposed on the pressing section in such a manner as to press a region of the motor body facing the vibration receiving section against the vibration receiving section and transmit a vibration of the motor body to the vibration receiving section.

Haptic game controller with dual linear vibration actuators

The disclosure relates to integrated modules for Synchronized Array of Vibration Actuators (FIG. 125A). The modules provide physical interface, power and communication interfaces. Each module may include vibration actuators (FIG. 123A) which can be precisely attached and aligned to the module housing, a microcontroller or other microprocessor, and one or more sensors for closed loop control of actuators (FIG. 126G). Interleaved pairs of ERMs having a center of mass in the same plane eliminate parasitic torque. A single module can produce a vibration force that rotates at a specific frequency and magnitude, which on its own could cancel out some types of periodic vibrations (FIG. 125B). Two modules paired together and counter-rotating with respect to each other can produce a directional vibration at a specific frequency and magnitude, which could prove even more useful for canceling out a vibration. Such modules are also employed to produce beating patterns (FIGS. 131-133). Both amplitude and frequency of the beating force are variable.

Oscillation Excitation Device for Producing Oscillations and/or Vibrations
20220200400 · 2022-06-23 ·

An oscillation excitation device for producing oscillations and/or vibrations includes an electric motor which has a stator unit and a rotor unit that can be rotated about an axis of rotation and has at least one rotor shaft. At least a first bearing unit and a second bearing unit are provided for rotatably mounting the rotor shaft and/or rotor unit. At least one electromagnetic drive system of the electric motor is arranged between the first bearing unit and the second bearing unit. At least one rotatable imbalance unit is provided for producing an imbalance. The imbalance unit is arranged, at least in part, between the first bearing unit and the second bearing unit.