Abstract:
조명들, 차양들, 커튼들 등과 같은 단수 또는 복수의 장치들을 처리하는 소형 적외선 원격 제어 장치는 자체 설명하고 사용이 용이한 인간공학적으로 선택되고 배치된 제어 버튼들을 포함한다. 이 소형 적외선 원격 제어 장치는, 각각의 기능이 어떤 물리적 특징의 "전부 또는 전무(all or nothing)" 제어를 제공하는 수직으로 배치된 개별 버튼들과, 유사한, 수직으로 배치되고 수평으로 배치되는, 상기 개별 버튼 기능들의 극도 또는 한계 사이에서 물리량의 미세한 또는 연속적인 제어를 가능하게 해주는 "조정" 버튼들을 제어하도록 함으로써 서로 다른 기능들의 명백하고, 사용이 용이한 제어를 가능하게 해준다. 일련의 그룹의 버튼들은 서로 다른 어플라이언스들 또는 장치들의 제어를 제공하고, 각 그룹의 버튼들은 아이콘 또는 알파벳 표시를 해석하기 쉽게 식별된다.
Abstract:
PURPOSE: An integrated remote controller device and a method thereof are provided to allow the control of a plurality of apparatuses connected with each other on the whole or separately on the network, only with one remote controller, and to select a specific apparatus on a screen upon control. CONSTITUTION: A user interface unit(10) is for a user to input an apparatus control command from an external. A wired transmitter/receiver(20) and a wireless transmitter/receiver(30) deliver control command signals inputted through the user interface unit(10) to a corresponding apparatus, and receive operation state signals of the corresponding apparatus. A CPU(Central Processing Unit)(40) controls the user interface unit(10), the wired transmitter/receiver(20) and the wireless transmitter/receiver(30). A storage unit(50) stores data necessary for the control of the CPU(40). A display unit(60) displays operation keys under control of the CPU(40), operation states and results. And the user interface unit(10) is constructed with a touch screen or keys.
Abstract:
Various implementations include approaches for controlling content via a playback device. In a particular implementation, a remote control device includes: a keypad having a set of actuatable buttons for controlling a playback device; and a control module, where the remote control device is operable in a plurality of different operating states, and where the control module is configured to highlight one or more distinct subsets of the set of actuatable buttons at the keypad based upon a current operating state of the remote control device.
Abstract:
An image display device includes: a display; and a controller configured to classify a plurality of remote control code sets which are stored in a storage into at least one group based on a control signal included in the plurality of remote control code sets, to select one of the at least one group, to transmit a control signal included in the selected group to a peripheral device connected to the image display device through a communicator, to control the display to display an image received from the peripheral device in response to the control signal, to extract peripheral device information included in the image, and to determine a remote control code set corresponding to the peripheral device based on the peripheral device information.
Abstract:
Systems, methods, and instrumentalities for providing a user interface (UI) are disclosed. A device may receive a first low energy signal from an appliance while the device is in proximity (e.g., a distance within which the device may receive and/or decode a transmission) to the appliance. For example, the device may include a mobile device, smartphone, etc., such as a wireless transmitter/receiver unit (WTRU) disclosed herein. The appliance may include a user controllable device such as a light fixture, appliance, entertainment system, etc. (e.g., an Internet of Things (IoT) device). The first low energy signal may be sent using a first protocol (e.g., generic access profile) to convey UI description information associated with the appliance.
Abstract:
A modular sensing device can include an inertial measurement unit to generate sensor data corresponding to user gestures performed by a user, a mode selector enabling the user to select a mode of the modular sensing device out of a plurality of modes, and one or more output devices to generate output based on the user gestures and the selected mode. The modular sensing device can further include a controller to implement a plurality of state machines. Each state machine can be associated with a corresponding user gesture by a sensor data signature. The state machine can execute a state transition when the sensor data matches the sensor data signature. The executed state transition can cause the controller to generate a corresponding output via the one or more output devices specific to the selected mode and based on the corresponding user gesture.
Abstract:
A system can include a wearable device and a self-propelled device. The wearable device can include a controller that, in response to a user input on the mode selector, initiates a selected mode from a plurality of modes on the wearable device. The selected mode can cause the controller to establish a communication link with the self-propelled device, and generate an output using a feedback mechanism instructing the user to perform a series of actions with the wearable device. In accordance with the selected mode, the controller can interpret sensor data from one or more sensors to determine whether the user has performed the series of actions while utilizing the wearable device. Based on determining whether the user has performed the series of actions, the controller can generate one of a positive or a negative feedback using the feedback mechanism.
Abstract:
A wearable device can be worn by a user, and can include a mode selector, one or more sensors, a signal detector to detect wireless signals, a feedback mechanism comprising at least one of a haptic system, an audio system, or a visual system and providing feedback outputs. The wearable device can also include a controller that can initiate a selected mode from a plurality of modes on the wearable device, where the selected mode causing the controller to execute a real-world game. In accordance with the selected mode, the controller can interpret sensor data from the one or more sensors and inputs from the signal detector, where the sensor data corresponds to a series of actions performed by the user utilizing the wearable device. Based the interpretations, the controller can generate feedback responses via a feedback mechanism.
Abstract:
An image display apparatus includes a communication interface configured to transmit a control signal for controlling a peripheral device connected to the image display apparatus and receive an image corresponding to the control signal from the peripheral device; a display configured to display the received image; and a controller configured to extract peripheral device information by analyzing the received image and determine remote control code information corresponding to the peripheral device based on the extracted peripheral device information, wherein the communication interface is further configured to transmit the extracted remote control code information to a control device such as a universal remote controller.