Abstract:
In one example, at least a portion of a payload for web application installed on a web server is stored by a networked imaging device on a networked resource server.
Abstract:
The present invention relates to a portable flash device (1) as accessory to a mobile communication equipment (2) for a wireless communication system comprising a camera function, with input means 4 for inputting flash and camera instructions by a user, light means (3) for outputting light and control means (10) for controlling the camera function of a connected mobile communication equipment on the basis of a camera instruction input via the input means (4) and for controlling a flash light function of the light means (3) supporting the camera function.
Abstract:
The present invention is applicable to a peripheral device which performs processing based on information from an information processing device. The peripheral device of present invention is characterized by a storage unit, which stores in it a program of controlling of designated processing, and stores in it data for controlling the peripheral device, and by a communication unit which sends the program stored in the storage unit to the information processing device, and by a control unit which controls operation of the peripheral device based on an instruction information written into the storage unit upon execution of the program on the information processing device.
Abstract:
A mobile computing device is provided having more than one imaging engine, and preferably, two imagining engines. Switching circuitry is provided for switching between the two imaging engines. Each imaging engine is optimized for use in specific applications and includes different specifications from the other imaging engine. Preferably, one imaging engine is optimized to provide higher resolution images than the other imaging engine, and one imaging engine is optimized to focus an object located 7.50 to 12.50 cm from the mobile computing device (near-to-mid range imaging), while the other imaging engine is optimized to focus an object located from 12.50 cm to infinity from the mobile computing device (mid-to-far range imaging). One imaging engine preferably includes a color image sensor, while the other imaging engine includes a black and white image sensor.
Abstract:
A method for sending data between multiple networks is disclosed. In one embodiment, a request for a service available in a second network is initiated by a member of a first network. The request is sent to the second network. The second network is coupled with the first network. The request comprises an identification and a password of the member defined in the second network, a request type and a network identification associated with the first network. The second network identifies the member in the second network using the identification and the password. The request is processed in the second network.
Abstract:
A digital camera capable of sharing digital images using a plurality of host computers, comprising: memory for storing captured digital images and for storing installation software that can be used to install digital image sharing software on the plurality of host computers; a user interface for designating captured digital images to be shared; and a communication interface for communicating with a host computer. The communication interface can be configured to use a first logical protocol where the digital camera appears to the host computer as a data storage device in order to install the digital image sharing software on the host computer. A second logical protocol, where the digital camera appears to the host computer as an image capture device, is used when the digital image sharing software is running on the host computer that enables the digital image sharing software to automatically share designated digital images.
Abstract:
A portable communications device comprises a body with a display, a speaker, a camera and lens, a keypad, and a display cover that is slidably connected to the body. The display cover is movable over the display between at least two positions. When the cover is in one of these positions, the camera is activated and the display operates as a viewfinder for the camera. The sliding cover permits the optimisation of the display size for use as a viewfinder. Moreover, the position of the sliding cover relative to the body of the device may be used as a selector to determine the operating mode. There is thus no need to navigate a menu using a keyboad prior to photographing. Rather the function of the device may be automatically selected by sliding the cover to obscure a greater or lesser area of the display.