Abstract:
A responding device has operating modes including a first mode and a second mode. The responding device includes a first responding unit and a second responding unit. The first responding unit operates during the first mode and outputs, when receiving a request, a response including information in accordance with the type of the request. The second responding unit outputs the response in place of the first responding unit during the second mode. The second responding unit includes a storage section, an information accumulation section, and a mode transition control section. The information accumulation section stores in the storage section the information included in the response output from the first responding unit during the first mode. The mode transition control section causes the responding device to transition to the second mode when a first condition and a second condition in terms of the information stored in the storage section are satisfied.
Abstract:
An electronic device includes a wireless-connection-establishment unit and a function execution unit. The wireless-connection-establishment unit establishes a directly communicable wireless connection with another device. The function execution unit executes a function. The function execution unit executes the function requested from the other device via the wireless connection when a radio field intensity of the wireless connection established with the other device by the wireless-connection-establishment unit is equal to or more than a specified radio field intensity, and rejects execution of the function requested from the other device via the wireless connection when the radio field intensity of the wireless connection established with the other device by the wireless-connection-establishment unit is less than the specified radio field intensity.
Abstract:
Provided is an image forming apparatus that is coping with the response and the energy-saving effect. The image forming apparatus has a host system and a proxy response system. The host system transmits response data for information request data in a normal mode. The proxy response system transmits the response data for the information request data in a sleep mode. The memory part of the proxy response system memorizes information of the response data from the host system, and sleep mode transit time. The sleep control part makes the host system shift from the normal mode to the sleep mode based on the sleep mode transit time. The sleep control part changes the sleep mode transit time according to quantity of the information of the response data memorized in the memory part.
Abstract:
Provided is a network equipment that improves security via a P2P connection. The network equipment includes a network control part and a system control part. The network control part controls a first communication mode performing communication with a user terminal via a wired LAN network, a second communication mode performing communication with a portable terminal via a wireless LAN network and a third communication mode performing communication not via the wired LAN network and the wireless LAN network. When connection is established via the third communication mode, if the wired LAN network and/or the wireless LAN network are/is not in connection, the system control part causes the network control part to perform direct communication after the communication via the wired LAN network and the wireless LAN network are sopped, and to further restrict a request via the direct communication.
Abstract:
An information processing apparatus includes a processor and a memory. The memory stores therein an information processing program. When the processor executes the information processing program, the processor operates to: detect an operation performed by a user; determine the posture of the information processing apparatus observed when the operation is performed; and determine one of a plurality of image forming apparatuses to be selected as a destination to which an image forming instruction is transmitted, the image forming apparatus to be selected varying depending on the posture of the information processing apparatus observed when the operation is performed.
Abstract:
A wireless communication section wirelessly communicates with a communication terminal present in a target space. An information acquiring section acquires a value representing congestion of a target space. A learned model is a model that has been trained using training data including a value representing the congestion of a target space used for learning, a bandwidth, a channel, and throughput. An AI processing section inputs the value representing the congestion of the target space acquired by the information acquiring section to the learned model and acquires a bandwidth and a channel output by the learned model. A bandwidth controller causes the wireless communication section to perform wireless communication using the bandwidth acquired by the AI processing section. The channel controller causes the wireless communication section to perform wireless communication using the channel acquired by the AI processing section.
Abstract:
An electronic device includes: a wireless communication section that executes P2P wireless communication; an FW update mode switching section that switches a mode of the electronic device to an FW update mode in which a firmware of the electronic device is updated; and a connection information management section that manages connection information required for a connection setup for the P2P wireless communication executed by the wireless communication section. The connection information management section keeps the connection information when a power source of the electronic device is turned on after turned off in a specific situation, and changes the connection information when the power source of the electronic device is turned on after turned off in a situation other than the specific situation, and the specific situation includes an FW update situation in which the mode of the electronic device is the FW update mode.
Abstract:
Provided is a network equipment that improves convenience of access from a portable terminal and security via a P2P connection. The network equipment includes a network control part, a user authentication part and a system control part. The network control part controls direct communication with the portable terminal. The user authentication part manages user identification information and user information by associating with each other. The system control part manages the administrator user with an automatic connection turned on and the guest user with the automatic connection turned off. IF an automatic connection is turned on, the system control part allows the direct communication. The system control part receives the user information from the portable terminal and causes the user authentication part to perform user authentication if the automatic connection is turned off, and allows the direct communication if the user authentication succeeded.