Abstract:
In response to a detected presence of an intended target appliance within a logical topography of controllable appliances identity information associated with the intended target appliance is used to automatically add to a graphical user interface of a controlling device an icon representative of the intended target appliance and to create at a Universal Control Engine a listing of communication methods for use in controlling corresponding functional operations of the intended target appliance. When the icon is later activated, the controlling device is placed into an operating state appropriate for controlling functional operations of the intended target appliance while the Universal Control Engine uses at least one of the communication methods to transmit at least one command to place the intended target appliance into a predetermined operating state.
Abstract:
A mobile terminal is configured to be worn on a user's wrist region. The mobile terminal includes a muscle sensor that is configured to sense movement of muscle in the user's wrist region, and a proximity sensor that is configured to sense a proximity of the mobile terminal to the user's wrist region. The mobile terminal also includes a wireless communication unit configured to perform communication with a vehicle control device provided in a vehicle. The mobile terminal further includes a controller configured to transmit a control command to the vehicle control device based on at least one of a value measured by the muscle sensor or a value measured by the proximity sensor.
Abstract:
A battery interrupter that allows a user to assert control over a device that was not designed to be operated different from its original function is provided for. It permits an external device to take control of the power train of a device, primarily battery-operated, by regulating the flow of energy through the device, and acting thusly as an external management system. This external system can be as simple as a wired remote control switch to turn it on and off, or as complex as a wireless communication system that provides access to programming languages, internet data, and other types of rule-based and real-time management and interaction.
Abstract:
An electronic device is provided. The electronic device includes a memory for storing device objects corresponding to external devices and a processor operatively connected to the memory. The processor outputs some of the device objects based on information related to control of the external devices, receives an input for selecting a device object from among some of the device objects, and generates action group information by grouping pieces of action information for instructing external devices corresponding to the selected at least one device object to perform a specified operation.
Abstract:
There is provided a remote commander including an acquisition section which acquires layout information having one or a plurality of pieces of object information from a control target device via a communication section, the object information being formed by associating command identification information for identifying a command with respect to the control target device, object identification information for identifying an object, and coordinate information indicating a position of the object on a screen with each other, and a display control section which causes the object to be displayed at the position on the screen indicated by the coordinate information, the object being identified by the object identification information with respect to each of the pieces of object information that the layout information acquired by the acquisition section has.
Abstract:
A method for delegating control of a vehicle feature to a wearable electronic device. The method includes the following: wireless pairing the wearable electronic device to at least one of a smart device or a vehicle controller onboard a vehicle; delegating control of the vehicle feature to the wearable electronic device using at least one of the smart device or the vehicle controller such that a wearer of the wearable electronic device can control the vehicle feature using the wearable electronic device; and operating the vehicle feature based on commands generated by the user using the wearable electronic device.
Abstract:
According to the invention, a system for applying therapeutic stimulation to a human body is disclosed. The system may include a garment and a therapeutic insert. The garment may include a flexible material configured to apply compressive forces to a portion of a person wearing the garment, a communication interface, and an attachment point. The therapeutic insert may include a vibration unit configured to vibrate against the person, and to activate upon an instruction being received from the communication interface. The therapeutic insert may also include a thermal unit configured to apply heating or cooling to the person, and to activate upon an instruction being received from the communication interface. The therapeutic insert may further include a sensor configured to determine a physiological characteristic of the person, and to communicate the physiological characteristic to the communication interface. The therapeutic insert may be configured to couple with the attachment point.
Abstract:
A system for use in controlling operating functions of a controllable device includes a hand-held device and an intermediate device in communication with the hand-held device and the controllable device. The hand-held device is adapted to receive a gesture based input and to transmit a signal having data representative of the gesture based input. The intermediate device has programming for translating the data representative of the gesture based input in a signal received from the hand-held device into a command signal to be communicated to the controllable device wherein the command signal has a format appropriate for controlling an operating function of the controllable device that is associated with the gesture based input.
Abstract:
The material contained in this disclosure pertains to robotics related to convertible robots incorporating telecommunication elements. Embodiments of the system and apparatuses described can facilitate instant communication with family and friends, health status monitoring and support from caregivers; and promote optimal health, longevity, and independent living by providing high-tech economical solutions at each stage of the aging process. Embodiments of the system and apparatuses may be converted from an independent telecommunications robot, to a robotic walker, to a robotic wheelchair.
Abstract:
An industrial-enabled mobile electronic device, such as a personal mobile phone or tablet computer, allows a user to wirelessly interact with industrial devices for a variety of purposes. The mobile electronic device can communicate with an industrial device to read and write configuration settings, read and view log data, send commands to the industrial device, and other such functions. The mobile electronic device can perform various types of analysis on images and video of the industrial device captured by the mobile electronic device, including identifying and translating a model or device number printed on the device, or translating error codes displayed by the industrial device. The mobile electronic device can also retrieve additional information about the industrial device or the device's stored data via interaction with a remote technical support service, and can be used to facilitate dialog with a remote technical support person.