Abstract:
A method for association based identification. The method includes providing at least one identifier and communicating identification information based on the at least one identifier. The method further includes receiving and processing identification information. Each of the at least one identifier can be associated with a color code. Identification information can be processed in a manner so as to produce association data. The association data can be associated with at least a characteristic data from a set of library data. The set of library data can correspond to a library of color codes and a characteristic data from the set of library data can correspond to a color code from the library of color codes. The association data is based upon to produce output signals. The output signals can be based on characteristic data associable with the association data.
Abstract:
There is provided apparatus comprising a user interface for displaying a plurality of items. The apparatus is arranged: a) to receive at least one instruction, by which instruction or instructions, one or more of a plurality of items initially displayed on the user interface is or are categorized as an item or items to be hidden and the remaining one or more of the plurality of items initially displayed on the user interface is or are categorized as an item or items to be displayed; b) to receive an instruction to hide, from the user interface, the one or more items to be hidden; and c) to hide from the user interface, the one or more items to be hidden, such that the item or items categorized as items to be displayed are displayed on the user interface, and the item or items categorized as items to be hidden are not displayed on the user interface, in one preferred arrangement, the apparatus is an electronic device. There is also provided a method for hiding one or more items of a plurality of items displayed on a user interface for a user apparatus. Again, the user apparatus may be an electronic device. There is further provided a method for selecting a new password or entering a predetermined password on a user apparatus. The user apparatus may be an electronic device for storing electronic files.
Abstract:
There is provided a method for generating a personalized Head Related Transfer Function (HRTF). The method can include capturing an image of an ear using a portable device, auto-scaling the captured image to determine physical geometries of the ear and obtaining a personalized HRTF based on the determined physical geometries of the ear.
Abstract:
A method of processing which can include receiving input signals from a plurality of sources, data mining the input signals, interpreting the mined data, optionally providing a set of settings and processing the input signals based on the interpretation of the mined data and, optionally, the set of settings to produce output signals. The input signals can be data mined to identify one or both of unique characteristics and attributes associable with the input signals. The mined data can be interpreted in a manner so as to form association based on one or both of the unique characteristics and attributes. The output signals can correspond to adaptably altered input signals which can be associated with adaptable alteration of one or both of visual perception and audio perception of the input signals.
Abstract:
A method for replicating a media stream generated by a transmitter device. The method can include communicating world context generated at the transmitter device and processing the received world context. The generated world context is associable with description generated based on an application being run at the transmitter device. The generated world context can be based upon to generate the media stream in a manner such that description of the generated media stream can be associated with the description generated based the application being run. Processing of the received world context can be in a manner so as to replicate the media stream generated at the transmitter device. Description of the replicated media stream can correspond to the description of the media stream at the transmitter device, The received world context can be further processed in a manner so as to change the description associable with the replicated media stream.
Abstract:
A system, a processor apparatus and a method for modification of control signals. The apparatus can include a processor and a control portion. The processor can be coupled to the control portion. The processor can be configured to receive and process input signals in a manner so as to produce output signals. The processor can be associated with response characteristics. The control portion can be configured to produce control signals. The control signals can be communicated to the processor. The control portion can be configured to receive data signals. The control signals can be modified based on the data signals. Response characteristics associated with the processor can be varied based on the modifiable control signals and the processor can be further configured to process received input signals based on the variable response characteristics so as to produce the output signals.
Abstract:
There is provided a dynamic digitized visual icon appearing on a sender's and recipient's display with the icon being used to represent at least one word in a language that is being used by the sender during text messaging. The icon may include a static base image; and at least one component image overlaid onto the base image. The at least one component image may vary in accordance with determining an aspect selected from the group consisting of, for example, the at least one word, a preferred characteristics of the sender/recipient or a combination of both the aforementioned aspects. It is advantageous that the icon alters appearance whenever the at least one word is used by the sender/received by the recipient during text messaging. Corresponding methods to generate the aforementioned icons are also disclosed.
Abstract:
There is provided a host implemented method for redefining at least one user interface element on a secondary device. The method may include connecting the secondary device to the host for communication between the host and the secondary device; redefining the at least one user interface element using an application running on the host; reviewing the at least one user interface element as redefined using the application (possibly including a visual preview of the at least one user interface element as redefined when viewed on the secondary device); determining whether the secondary device is able to support the at least one user interface element as redefined using the application; and incorporating the at least one user interface element redefined using the application onto the secondary device.
Abstract:
There is provided a data processing apparatus for segmental processing of input data. The apparatus includes a plurality of data processors connected in a series configuration, the plurality of data processors being able to transmit discrete data packets over a video bus to one another, with the plurality of data processors being divided into a plurality of data processing sets; and a central controller coupled to the plurality of data processors for controlling allocation of the input data to the plurality of data processing sets, the central controller being also for controlling transmission of output data from the apparatus. The apparatus incorporates several varying methods for data transmittal amongst data processors and has several applications which will be described.
Abstract:
System, device, and method for audio reproduction are provided. The system includes a media computing device and an electronic device connected such that their speakers can be used in combination in optimizing the audio reproduction of media being played or streamed. Each device can be portable and the audio reproduction can include virtual/spatial/surround audio reproduction. When connecting, the media computing device serves as a host and the electronic device serves as a slave for data communication. As such, the media computing device can process an audio signal into any portion for reproduction on any speaker. Further, when connecting and if needed, the electronic device serves as a host and the media computing device serves as a slave for power management. Depending on the system configuration, a suitable connection can be made via a wireless or single cable wired connection between the media computing device and the electronic device.