Abstract:
Systems and methods for facilitating caching of programming data are provided herein, including receiving two or more programming data portions, storing the respective programming data portions, managing access to the storage component or the communication component based on programming data portions stored within the storage component, and generating a sleep signal based on a period of inactivity which exceeds an inactivity threshold. In one or more embodiments, caching of programming data may include determining a programming data set based on user profile data, parsing the programming data set into two or more programming data portions, converting respective programming data portions into a format based on a remote configuration, transmitting a first programming data portion of the respective programming data portions, and transmitting additional programming data portions of the respective programming data portions based on a sleep signal.
Abstract:
A universal remote controller includes a card and a housing. The card includes an information tag. The housing includes a touch panel, a slot, a reader, a memory, a processor, and a signal transmitter. The memory is used for storing a plurality of databases. When the card is inserted to the slot, the reader in the housing induces the driving signal corresponding to the information tag of the card. The processor enables a corresponding database from the memory according to the driving signal and further provides a plurality of remote control functions on the transparent touch panel corresponding to positions of a plurality of key images according to the enabled database.
Abstract:
A system and method used to configure a smart device to command functional operations of a target appliance. The smart device retrieves from a controllable appliance, such as a settop box, data indicative of a codeset identity of the target appliance wherein the codeset identity was determined during a process used to configure a conventional universal remote control to command functional operations of the target appliance and wherein the process used to configure the conventional universal remote control is performed in cooperation with the controllable appliance. A remote control application resident on the smart device then uses the data indicative of the codeset identity retrieved from the controllable appliance to also configure the smart device to command functional operations of the target appliance.
Abstract:
In one embodiment, a wireless lighting application (app) is executed on a mobile device to configure a wireless lighting control system including a plurality of wireless lighting control devices. A connection is established between the mobile device and a wireless lighting control device. In response to user input in a graphical user interface (GUI) of the wireless lighting app, the wireless lighting app configures at least one of a lighting controller, keypads or lamp modules by at least associating an attached lighting load with a load name. Further, the wireless lighting app defines a lighting scene that uses the lighting load having the load name. Still further, the wireless lighting app assigns the lighting scene to a programmable button of one of the wireless lighting control devices such that, in response to a press of the programmable button, the wireless lighting control system produces the predefined lighting effect.
Abstract:
A method of controlling an external terminal from a terminal including receiving screen information from the external terminal; displaying the screen information as is displayed in the external terminal; selecting content information from the screen information, wherein the content information exists at recognized location; transmitting the location information of the selected content information to the external terminal; and receiving the selected content information corresponding to the transmitted location information from the external terminal. The location information includes coordinates information, which is relative coordinates of the selected content information.
Abstract:
A method for calibrating an automated window covering includes electromechanically actuating a window covering and measuring electrical current required to actuate the window covering. The method further measures movement of the window covering, where such movement includes one or more of a change in position and velocity of the window covering. The method estimates a size (e.g., height, width, area, etc.) of the window covering and/or an amount of force required to actuate the window covering based on the measured electrical current and movement. A corresponding apparatus is also disclosed herein.
Abstract:
A smart mobile terminal remote control system includes a smart mobile terminal, a displaying device, a remote controller and a controller, the displaying device is configured to display an operation interface of the smart mobile terminal in real time, the controller is connected to the smart mobile terminal and the remote controller respectively and configured to emit an infrared light and receive the infrared light reflected by the remote controller, obtain information of the remote controller according to the infrared light received, generate a control command according to the information, and send the control command to the smart mobile terminal which responds to the control command. The smart mobile terminal remote control system makes the smart mobile terminal transfer data to other displaying devices smoothly and get a better displaying effect.
Abstract:
A system and method for enabling set up of a controlling device capable of controlling a plurality of appliances, via an interactive instruction set and associated programming. The programming is accessible by a STB or other controllable appliance and is configured to appropriately display interactive instructions and prompts to a user during a user initiated set up procedure for configuration of another controllable device (e.g., DVD, VCR, DVR, etc) available to the user. Appropriate set up data, generally in the form of command library codes, is displayed to the user by the interactive instruction set and associated programming for entry and trial by the user in set up of the desired appliance(s).
Abstract:
While an example terminal device is being held with its long sides extending horizontally, when a left-right direction is inputted by using a right analog stick, a first virtual camera is directed to a left-right direction in a virtual space. On the other hand, while the terminal device is being held with its long side extending vertically, when an apparent left-right direction, that is, an up-down direction in the state where the terminal device is held with its long sides extending horizontally, is inputted by using a right analog stick, the first virtual camera is directed to the left-right direction in the virtual space.