Abstract:
Described herein are implementations for using a remote control device to control a target device on a network. An exemplary remote control device may generate a data packet comprising a command for controlling the target device and a network address associated with the target device. The remote control device may establish a connection to an infrastructure device on the network, and transmit the data packet to the infrastructure device. The infrastructure device may multicast the data packet to a plurality of IoT devices on the network. An IoT device, of the plurality of IoT devices, may execute the command based on determining, using the network address, that the IoT device is the target device.
Abstract:
A portable device, a display apparatus, a display system, and a method for controlling power of a display apparatus thereof are provided. The method includes sensing, while a portable device operates in a standby mode, a movement of the portable device using a motion sensor, converting, using the portable device, the standby mode of the portable device into a normal mode in response to the movement of the portable device being sensed, generating, using the portable device, a pre-power on signal in response to the standby mode being converted into the normal mode, transmitting the pre-power on signal to the display apparatus, and activating, by the display apparatus, some elements of the display apparatus in response to the pre-power on signal being received.
Abstract:
A network system (100) for and a method of caching information from a resource-constrained device are provided. A resource-constrained device (110) provides via a network (130) generated data (d) that relates to a status of the resource-constrained device (110) to a controllable device (150) for controlling the controllable device (150). The controllable device (150) controls an operation of an operational component (154) in response to receiving the data (d). The controllable device (150) also comprises a cache memory (156) in which the received data (d) is stored and the controllable device (150) is configured to receive from a requesting device (170) a request (r) for the stored data (d) and is configured to provide the stored data (d) to the requesting device (170). The network system (100) provides a caching solution for the data (d) which is more transparent for the resource-constrained device (110).
Abstract:
The disclosed subject matter provides a main device and at least one secondary device. The at least one secondary device and the main device may operate in cooperation with one another and other networked components to provide improved performance, such as improved speech and other signal recognition operations. Using the improved recognition results, a higher probability of generating the proper commands to a controllable device is provided.
Abstract:
Aspects of the present invention include a device comprising a memory storing instructions and a processing circuit executing the instructions to detect a first user action. The instructions may further include instructions to establish a first user action state based on the detected first user action, designate a first mode based on the first user action state, determine if a second user action, consistent with a first detection condition associated with the first mode, has taken place, when the second user action has taken place, establish a second user action state based on the second user action, and designate a second mode based on the second user action state, the second mode consuming more power than the first mode.
Abstract:
Le dispositif de communication est prévu pour des réseaux de communication sans fil à une ou plusieurs fréquences. Le dispositif comporte un module (23) de commande d'émission de messages (45, 55) répétitifs destinés à des dispositifs de réception ayant au moins deux fréquences (F1l, F2, F3) de réception et avec au moins une fréquence de réception commune avec une fréquence (F2) d'émission de messages répétitifs. A la réception des messages répétitifs, un module de scrutation (25) change la fréquence de réception selon au moins une période (TS) de scrutation. Au moins une période d'émission (TE) prédéterminée a une valeur différente des dites périodes (TS) de scrutation. Le système de communication comporte un dispositif pour émettre et un dispositif pour recevoir les messages répétitifs. Le procédé traite l'émission et la réception des messages répétitifs dans un réseau multifréquence.
Abstract:
An electronic apparatus, control method thereof, remote control apparatus that controls the electronic apparatus, and control method thereof. The remote control apparatus includes a communication unit which communicates with the electronic apparatus; a user input unit which receives a user button selection indicating an input button; a sensing unit which senses movement of the remote control apparatus; and a control unit which controls the communication unit to transmit information about the user button selection to perform a function corresponding to the input button if the remote control apparatus is in a button input mode, and to transmit information about the movement of the remote control apparatus to the electronic apparatus to control the electronic apparatus by the movement if the remote control apparatus is in a motion recognition mode. Accordingly, controlling a game or a multimedia content is easier, and the user is provided with a new and interesting experience.
Abstract:
An optic sight assembly for installation on a riffle is disclosed, comprising an electro-optical optic sight unit which comprises a controller unit, a remote control receiver, and an electro-optical unit to project a reticle image; and a corresponding remote control unit to control operational parameters of the electro-optical optic sight. The remote control unit comprises a remote control controller to produce control signals for transmitting to the remote control receiver, and a keypad unit to enable entering control commands to the remote control unit, wherein the electro-optical optic sight is adapted to receive control signals from the remote control unit to control operational parameters of the reticle.