Abstract:
A vehicle entertainment system includes a tablet unit and a cradle. The tablet unit includes a display and a touch screen input device disposed on a front surface, a first electrical connection, a first mounting mechanism, and a wireless receiver. The wireless receiver is configured to receive media data from a wireless network and the touch screen input device is configured to receive input from a user. The cradle is disposed in a headrest in a vehicle and includes a second electrical connection and a second mounting mechanism. The tablet unit is electrically connected to the cradle via the first and second electrical connections, and is physically coupled to the cradle via the first and second mounting mechanisms upon mounting the tablet unit to the cradle.
Abstract:
A wireless communication device may establish a first type of connection by using a first wireless channel and establish a second type of connection by using a second wireless channel. In a specific situation where one connection of the first type of connection with the first device and the second type of connection with the second device is to be established, while the other connection has been established, the wireless communication device may form a multiple connection state where both the first and second types of connections are established in a first case where values of the first and second wireless channels are identical, and form a single connection state where one of the first and second types of connections is established in a second case where the values of the first and second wireless channels are not identical.
Abstract:
A data processor and a host device are bi-directionally communicably connected to each other. The data processor includes a process-executing unit and a progress-status-saving unit. The process-executing unit executes a prescribed process when a process-requested file is written in a prescribed folder. The progress-status-saving unit saves progress status data indicating a progress status of the prescribed process so that the progress status data is retrievable by the host device.
Abstract:
When an initial communication program is started, a handheld device searches for image forming apparatuses within its communicable range. Then, upon receiving a response of that inquiry from an image forming apparatus, the handheld device requests the image forming apparatus for an image-forming-apparatus control program for handheld devices according to a predetermined determination condition. The image forming apparatus then responds to the inquiry from the handheld device and sends to the handheld device the image-forming-apparatus control program for handheld devices that has been stored in a memory device. Upon receiving the image-forming-apparatus control program for handheld devices, the handheld device stores it in a memory unit, terminates the execution of the initial communication program, and executes the image-forming-apparatus control program for handheld devices.
Abstract:
An image processing device configured to establish bidirectional communication with a portable terminal using short-range wireless communication includes: a processor; and a memory that stores computer-readable instructions therein. The computer-readable instructions may cause the image processing device to transmit first selection information to the terminal during a first communication session, the first selection information including information representing a plurality of first setting options for image processing carried out by the device; receive first item data from the terminal during a second communication session established after the first communication session is disconnected, the first item data representing a particular first setting option designated by a user of the terminal from among the plurality of first setting options; and carry out particular image processing in accordance with the particular first setting option represented by the first item data.
Abstract:
An image processing device may comprising a USB I/F and a control device. The USB I/F may be configured to receive USB data packets transmitted by a data processing device. The USB I/F may be configured to cause a specific buffer corresponding to one USB endpoint for reception to store content data included in the received USB data packets. The control device may be configured to: execute one or more processing on the basis of an HTTP command; execute image processing on the basis of a particular command other than the HTTP command; and execute content data allocation processing. The content data allocation processing may include: causing content data including the HTTP command to be processed in the execution of the one or more processing; and causing content data including the particular command to be processed in the execution of the image processing.
Abstract translation:图像处理装置可以包括USB I / F和控制装置。 USB I / F可以被配置为接收由数据处理设备发送的USB数据分组。 USB I / F可以被配置为使得对应于一个USB端点的特定缓冲器用于接收以存储包括在接收的USB数据分组中的内容数据。 控制装置可以被配置为:基于HTTP命令执行一个或多个处理; 基于HTTP命令以外的特定命令执行图像处理; 并执行内容数据分配处理。 内容数据分配处理可以包括:在执行一个或多个处理时使包括HTTP命令的内容数据被处理; 并且在执行图像处理时使包含特定命令的内容数据被处理。
Abstract:
In a case where a first information including an execution request of a specific function via a first type of interface is received, a function executing device may execute a change process for changing an interface for communicating with a terminal device from the first type of interface to a second type of interface in a case where a state of the function executing device is determined as a non-error state. The function executing device may not execute the change process in a case where the state of the function executing device is determined as an error state. The specific function may include a communication process for communicating object data with the terminal device. The function executing device may execute the specific function including the communication process via the second type of interface in a case where the change process is being executed.
Abstract:
In certain aspects, receiving at least one motivating event at least partially at a processing shared image device. At least one designated attribute is transmitted at least partially from the processing shared image device, wherein the at least one designated attribute can be effected at least partially in response to the receiving the at least one motivating event at least partially at the processing shared image device. An obtained shared image is obtained at the processing shared image device that is obtained in accordance with the at least one motivating event, and is obtained at least partially in response to the transmitting the at least one designated attribute. The obtained shared image is processed to derive an at least one processed shared image at least partially at the processing shared image device.
Abstract:
In a communication system, an image forming apparatus sends an address of a receiving section to a mobile terminal. The mobile terminal receives a selection of an image data among plural thumbnails displayed on a display section, and wirelessly sends the selected image data to the image forming apparatus with the address. The image forming apparatus receives the selected image data sent with the address by the mobile terminal, and prints an image based on the selected image data. A communication between the mobile terminal and the image forming apparatus is performed wirelessly with an IEEE 802.11 standard. The image forming apparatus rejects a connection establishment request from another mobile terminal except for the mobile terminal, when the wireless communication with the mobile terminal is established.
Abstract:
A method of supporting wireless connection of an electronic apparatus includes searching an image forming apparatus that is not connected to a wireless network, when the image forming apparatus is searched, releasing a link with an Access Point (AP) and forming a link with the searched image forming apparatus, and transmitting pre-stored AP information to the image forming apparatus such that the image forming apparatus forms a link with the AP.