Abstract:
Certain aspects of a method and system for processing signals that control a device using human breath may include receiving at the device, one or more signals from a detection device operable to function as a human interface device (HID). The signals may be generated in response to detection of movement of air caused by expulsion of human breath. Human interfacing with a graphical user interface (GUI) of the device may be enabled via the received signals. The detection device may comprise a micro-electro-mechanical system (MEMS) detector. The received signals may be formatted into a HID profile. The HID profile may comprise one or more drivers and/or libraries that enables the interfacing with the GUI of the device. The drivers may enable one or more of initiation, establishment and/or termination of communication by the device.
Abstract:
A device to facilitate a user interface of a computer system utilizing breath includes a body, a user side inlet defined by the body to receive a fluid flow generated by a user, an exhaust opening defined by the body, a conduit positioned between the user side inlet and the one exhaust opening, at least one segment positioned inside the body and one or more contactors positioned to be intermittently in contact with the at least one segment. The contact may occur responsive to the fluid flow generated by the user. The device may include a sensor to react to a movement of the at least one segment.
Abstract:
A device to facilitate a user interface of a computer system utilizing breath includes a body, a user side inlet defined by the body to receive a fluid flow generated by a user, an exhaust opening defined by the body, a conduit positioned between the user side inlet and the one exhaust opening, at least one segment positioned inside the body and one or more contactors positioned to be intermittently in contact with the at least one segment. The contact may occur responsive to the fluid flow generated by the user. The device may include a sensor to react to a movement of the at least one segment.
Abstract:
Aspects of a system and method for seamlessly integrated navigation of applications are provided. A communication device comprising a display enabled to display media content may be operable to receive a first stimulus in a pre-defined section of the display. The communication device may be operable to display a semi-transparent interaction grid that is superimposed onto the content based on the received first stimulus. The communication device may enable one or more applications in the displayed semi-transparent interaction grid based on one or more received stimuli.
Abstract:
Certain aspects of a method and system for controlling a user interface of a device using human breath may include detecting movement caused by expulsion of human breath by a user. In response to the detection of movement caused by expulsion of human breath, one or more control signals may be generated. The generated control signals may control the user interface of a device and may enable navigation and/or selection of components in the user interface. The generated one or more control signals may be communicated to the device being controlled via a wired and/or a wireless signal. The expulsion of the human breath may occur in open space and the detection of the movement caused by the expulsion may occur without the use of a channel. The detection of the movement and/or the generation of the control signals may be performed by a MEMS detector or sensor.
Abstract:
Monitoring system electronic or computer. Device for monitoring an electronic or computer system with the aid of a fluid current, characterized in that it includes: means to apply the fluid current to at least one free segment and make said segment vibrate, at least one conversion device for converting the vibrations of the segment into an electric signal, means for processing the electric signal emitted by the conversion device, and interface means between the processing means and the electronic or computer system.
Abstract:
An accessory device for handheld electronic devices such as, for example, a cellular telephone, a smart phone, a media player, and a tablet computer includes circuitry for sensing flow of human breath and for communicating with the handheld electronic device, to enable user control of the handheld electronic device employing the flow of human breath.
Abstract:
Certain aspects of a method and system for controlling a user interface of a device using human breath may include a device having an embedded micro-electro-mechanical system (MEMS) sensing and processing module. The MEMS sensing and processing module may detect movement caused by expulsion of human breath by a user. In response to the detection of movement caused by expulsion of human breath, one or more control signals may be generated. The generated control signals may control the user interface of the device and may enable navigation and/or selection of components in the user interface.
Abstract:
A device, to facilitate a user control of a computer system, includes a movable portion movable by a fluid flow of a generated by a user of the device, and a converter to convert movement of the movable portion into an electrical signal to facilitate control of the computer system.
Abstract:
A method and system are provided for a user interface that enables control of a device via respiratory and/or tactual input. A mobile device comprising a graphical user interface may receive data from a second device and/or locally from within the mobile device. The data may be associated with and/or mapped to multimedia content that may be retrievable from a content source. The content source may be external to the mobile device and the second device. The associating and/or mapping may occur at either the mobile device or the second device and the associated or mapped data may be operable to function as at least a portion of the graphical user interface of the mobile device. The graphical user interface may be customized utilizing the data that is associated and/or mapped to the media content. The second device may map the received data to the media content.