Abstract:
A wireless device 101 is a wireless device having identification information, and includes: an operation unit 11; a power generating unit 12 that generates electric power by operation on the operation unit 11; a signal generating unit 13 that operates by using the electric power generated by the power generating unit 12 and is capable of outputting a signal of a kind corresponding to the content of each operation on the operation unit 11; a storage unit 15 that operates by using the electric power generated by the power generating unit 12 and nonvolatilely stores the content of an output signal of the signal generating unit 13, the identification information, and reference information; and a transmission control unit 14 that compares the content of the output signal with the reference information when the operation on the operation unit 11 satisfies a predetermined condition, the content of the output signal and the reference information being stored in the storage unit 15, and transits to a transmission permission state in which transmitting a wireless signal including the identification information stored in the storage unit 15 to a different device is permitted when a result of the comparison satisfies a predetermined condition.
Abstract:
A method for detecting motion status of moving object structure is disclosed. The Coach controls the remote control receiving module with the remote control transmitting module to actuate the control circuit module. After the sportsman attacks the body, the Coach and/or the sportsman may see the light emitted by the light emitting module to know the motion status of the body, and detect it by the sensor and then be transmitted to control circuit module to data processing. After data processing, the message (including path, placement, height, speed, pressure, hitting point, angle, track, distance, and etc.) may be transmitted to the wireless transmission receiving module via the wireless transmission transmitting module with RF or Bluetooth and displayed on the wireless transmission receiving module to provide training. Furthermore, it may be charged by wireless charging to prevent from powering exhaustion.
Abstract:
The invention relates to an identification device (5) for a remote control arrangement of a vehicle (9), comprising a first communication module (6a) configured for wirelessly transmitting a remote control signal (15) to the vehicle (9), a second communication module (6b) configured for wireless communication with a control device (3), and having an energy supply unit (8) configured for generating electrical energy out of the wireless communication with the control device (3) for supplying the first communication module (6a) with that generated electrical energy, wherein the first communication module (6a) and the second communication module (6b) operate at different frequencies and to a remote control arrangement (1) for a vehicle (9) comprising such an identification device (5).
Abstract:
In a wireless control terminal configured to control a control target connected to a control apparatus by working in cooperation with a wireless assistant terminal capable of transmitting a predetermined control instruction for controlling the control target to the control apparatus by using a predetermined control wireless scheme with supply of power from a battery included in the wireless assistant terminal, a wireless control terminal-side battery is provided within the wireless control terminal so as to supply driving power required for control regarding emergency stop of the control target performed with a predetermined wireless scheme of the wireless control terminal. At least remaining storage power information regarding a remaining amount of storage power in the wireless control terminal-side battery is output to a notification apparatus provided in the wireless control terminal or the wireless assistant terminal. With this configuration, it is possible to prevent an influence caused by insufficient driving power in a wireless control apparatus for controlling the control target such as an industrial robot that uses the wireless assistant terminal.
Abstract:
Provided is a portable controller and associated method that provides a patient or caregiver the ability to recharge and alter the parameters of an implanted medical device, while allowing the patient substantially unobstructed mobility. To enable mobility, the controller may be worn on a belt or clothing. The controller also allows the patient to turn device stimulation on and off, check battery status, and to vary stimulation parameters within ranges that may be predefined and programmed by a clinician. The controller communicates with the medical device to retrieve information and make parameter adjustments using wireless telemetry, and it can send and receive information from several feet away from the implanted medical device. Charging of a battery contained in the implanted medical device is achieved via an inductive radio frequency link using a charge coil placed in close proximity to the medical device.
Abstract:
A method is provided that integrates a unique set of structural features for concealing self-powered sensor and communication devices in aesthetically neutral, or camouflaged, packages that include energy harvesting systems that provide autonomous electrical power to sensors, data processing and wireless communication components in the portable, self-contained packages. Color-matched, image-matched and/or texture-matched optical layers are formed over energy harvesting components, including photovoltaic energy collecting components. Optical layers are tuned to scatter selectable wavelengths of electromagnetic energy back in an incident direction while allowing remaining wavelengths of electromagnetic energy to pass through the layers to the energy collecting components below. The layers uniquely implement optical light scattering techniques to make the layers appear opaque when observed from a light incident side, while allowing at least 50%, and as much as 80+%, of the energy impinging on the energy or incident side to pass through the layer.
Abstract:
Provided is a portable controller and associated method that provides a patient or caregiver the ability to recharge and alter the parameters of an implanted medical device, while allowing the patient substantially unobstructed mobility. To enable mobility, the controller may be worn on a belt or clothing. The controller also allows the patient to turn device stimulation on and off, check battery status, and to vary stimulation parameters within ranges that may be predefined and programmed by a clinician. The controller communicates with the medical device to retrieve information and make parameter adjustments using wireless telemetry, and it can send and receive information from several feet away from the implanted medical device. Charging of a battery contained in the implanted medical device is achieved via an inductive radio frequency link using a charge coil placed in close proximity to the medical device.
Abstract:
A wearable device is disclosed that, while being worn by a user, may allow a user to authenticate to a second device such as a smartphone without having to enter an unlock code such as a personal identification number. The wearable device may detect when the user removes it. Removal of the wearable device may cause it to be disabled and prevent it from being used to authenticate a subsequent user to the second device until it is re-enabled.