Abstract:
A voice activated adjustable bed system is disclosed which has a voice activated module capable of receiving a voice command, converting the voice command into a signal, and transmitting the signal, an adjustable bed having a motor for adjusting a portion of the adjustable bed, and a module capable of receiving the transmitted signal and for operating the motor for adjusting the portion of the adjustable bed.
Abstract:
A voice control type bath system and an operating method thereof are disclosed. The voice control type bath system is utilized for a massage bath equipment and includes at least one attached device for actuating the massage bath equipment, a voice receiving unit for receiving at least one voice signal, a voice analyzing module for analyzing the at least one voice signal to generate at least one controlling command; and a main control device for controlling the at least one attached device to actuate the massage bath equipment according to the at least one controlling command and/or for controlling an actuation of the at least one attached device according to the at least one controlling command. The voice control type bath system and the operating method thereof can directly control the at least one attached device via the at least one voice signal.
Abstract:
The method includes a car diagnostic method based on mobile phone voice mode which includes the following steps: step 1, providing a connector which will be mounted to a car, downloading a client to a mobile phone, opening a microphone of the mobile phone or opening the client by a user to input voice; step 2, interpreting voice content and executing commands by the client after the client had received the input voice; step 3, communicating the client software with the connector mounted on the car automatically; step 4, starting a diagnostic software, collecting data from the car, and analyzing the data from the car professionally to form a diagnostic result, by the client; step 5, transmitting the diagnostic result to the client, outputting the diagnostic result to the user via voice mode, and storing the diagnostic result.
Abstract:
A hybrid emergency stop system, the system includes: (a) a mechanically operated circuit, for stopping an operation of a machine when triggered by a user; and (b) a scream activated circuit, for stopping the operation of the machine when detecting a machine operator scream; wherein the mechanically operated circuit and the scream activated circuit are enclosed in a single compartment and are operable independently from each other.
Abstract:
A method and system for processing signals for a MEMS detector that enables control of a device using expulsion of air via human breath, a machine and/or a device are provided. A microprocessor may receive one or more signals from the MEMS detector that may comprise various component sensor(s), sensing member(s) or sensing segment(s) that may detect movement of air caused by the expulsion of human breath. The signals may be processed by the microprocessor and an interactive output comprising one or more control signals that may enable control of a user interface such as 107a-107e on the multimedia device 106a-106e may be generated. For each component sensor(s), sensing member(s) or sensing segment(s) in the MEMS detector, ranges or gradients may be measured and evaluated to determine which of the sensor(s), sensing member(s) or sensing segment(s) of the MEMS detector 212 may have been activated, moved or deflected.
Abstract:
The present invention pertains to control systems and provides a run time configurable control system for selecting and operating one of a plurality of operating room devices from a single input source, the system comprising a master controller having a voice control interface and means for routing control signals. The system additionally may include a plurality of slave controllers to provide expandability of the system. Also, the system includes output means for generating messages to the user relating to the status of the control system in general and to the status of devices connected thereto.
Abstract:
The present invention pertains to control systems and provides a run time configurable control system for selecting and operating one of a plurality of operating room devices from a single input source, the system comprising a master controller having a voice control interface and means for routing control signals. The system additionally may include a plurality of slave controllers to provide expandability of the system. Also, the system includes output means for generating messages to the user relating to the status of the control system in general and to the status of devices connected thereto.
Abstract:
A stage lighting system is comprised of a plurality of lamp units which may have diverse communication protocols, functions and data parameters. The stage lighting system is controlled by a modular control system comprised of a modular controller mainframe interconnected with a plurality of control devices which may have diverse communications protocols and data formats. The modular controller mainframe consists of a plurality of input and output modules, mass storage devices and a main processor kernel, all interconnected by a number of data buses. The input modules serve as an interface between the modular controller mainframe and the diverse protocols of the various control devices. Similarly, the output modules serve as an interface between the modular controller mainframe and the diverse protocols of the various types of lamp units. The modular controller mainframe serves as an interface system by providing one or more of said input or output modules with the capability of translating parameter commands, where necessary, to accommodate control devices having diverse communications protocols and output devices having diverse communications protocols, functions and data formats. The system may also include a distributed control system for a lighting system in which two or more fully-functional control devices are online simultaneously to control any function of any of a plurality of luminaries from the control devices. Various methods for arbitrating and resolving conflicts between or among plural control consoles are also used.
Abstract:
Each character string information obtained based on each information inputted by the CRT touch input device and the speech input device respectively is integrated by the input control unit and the memory. The input information analyzing unit analyses the integrated character string information. The output information generating unit generates presentation information corresponding to the demand information obtained by the analysis and outputs this presentation information to the display device. Since the input information from each input device is converted into character string information and it is integrated together and is then analyzed, input information is not restricted by each input device and each input device can be used in a free combination when information is inputted.
Abstract:
An automated electronic microsurgical control system is disclosed which is capable of performing the various aspiration functions customarily performed manually by a surgical assistant. The system is entirely subservient to the surgeon's foot control unit which is adapted to control seven different surgical functions. In addition, the electronic control system is designed to communicate audibly with the surgeon regarding actual fluid flow and the build-up of vacuum pressure in the aspiration lines connected to the microsurgical cutting instrument, thus permitting the surgeon to audibly ascertain complete information as to the actual activity within the aspiration line without requiring him to take his eyes from the operating microscope.