摘要:
A processor-based personal electronic device (such as a smartphone) is programmed to automatically respond to data sent by various sensors from which the user's activity may be inferred. One or more alarms on the device may be temporarily disabled when sensor data indicates that the user is asleep. One or more of the sensors may be worn by the user and remote from the device. A wireless communication link may be used by the device to obtain remote sensor data. Data from on-board sensors in the device—such as motion sensors, location sensors, ambient light sensors, and the like—may also be used to deduce the user's current activity. User data (such as calendar entries) may also be used to determine likely user activity and set alarms accordingly. Biometric data from a second, nearby person may also be used to automatically select certain alarm modes on a first person's device.
摘要:
An organic light-emitting diode comprising an organic layer sequence, a radiation exit area and an encapsulation. The organic layer sequence comprises at least one radiation-emitting region which generates electromagnetic radiation in the spectral range from infrared radiation to UV radiation during operation. The radiation exit area is structured, so that the electromagnetic radiation has a directional emission profile. The encapsulation forms a seal of the organic layer sequence against environmental influences.
摘要:
Organic light-emitting diodes as well as luminaires with such organic light-emitting diodes are specified. The luminaires may in particular be the following apparatuses, or the luminaires are part of existing apparatuses: alarm, shower cubicle, shower head, solar protection, rain protection, lamp, bed, signalling light, changing cubicle, vision protection, housing, emergency lighting, mirror, slabs, ceiling lights, radiator cladding, blinds, noise protection, umbrella, warning light.
摘要:
The present invention describes a system, method and computer product program for computation of alarm time. The system includes an alarm device for generating an alarm. The system also includes an alarm application hosted on the alarm device for providing at least one user defined alarm condition. The system further includes an alarm engine for receiving the user defined alarm condition, initiating a probe to receive data from data sources, processing the received alarm conditions and the received data to compute the alarm time and next probe time repeating iteratively until the next probe time is greater than the computed alarm time. The system generates alarm at the computed alarm time when the next probe time becomes greater than the alarm time.
摘要:
The present invention is an alarm clock which emits cause and effect related sounds. The alarm clock provides for a user selectable “alarm sound” such as a “duck quacking” alarm sound, and a corresponding “terminating sound” such as a “boom and splash” terminating sound so as to simulate the sound of a shotgun blast and a duck falling into water in response to terminating a “duck quacking” alarm sound. In practice, using the alarm clock a user selects an alarm sound and an alarm time and then goes to sleep or performs another function. Upon arrival of the predetermined time, the alarm sound emits from the alarm clock waking or altering the user. The user then turns the alarm off causing a terminating sound, which corresponds to the alarm sound, and more especially to a sound associated with the termination of the alarm sound, to emit from the alarm clock.
摘要:
An alarm system is provided that includes an alarm and a snooze system. The snooze system is operable to suspend the alarm for at least one snooze duration, wherein the length of the snooze duration is random. In some embodiments, the random snooze durations may be selected by shuffling a set of predetermined snooze durations, and in others the random snooze duration may have a minimum or maximum duration.
摘要:
Disclosed are a smart alarm providing terminal and an alarm proving method thereof. The smart alarm providing terminal includes an alarm unit to drive an alarm of the terminal, a voice conversation unit to perform a voice conversation function between a user and the terminal, a user information provision unit to provide different personalized information according to respective users, a memory unit to store data to perform the voice conversation function and to provide the personalized information, and a controller to control the voice conversation unit and the user information provision unit so as to enable the voice conversation function and provision of the personalized information when the alarm of the terminal is driven.
摘要:
An alarm clock comprises at least one sensor for detecting a body activity level of a human being and is provided to produce a sequence of alarm signals. Each alarm signal within said sequence is suppressible on the detection of a predetermined body activity level. The body activity level required to suppress an alarm signal increases with each subsequent alarm signal within said sequence. A corresponding method for controlling a wake-up alarm comprises the production of a sequence of alarm signals, each alarm signal within said sequence being suppressible on the detection of a predetermined body activity level of a human being, wherein the predetermined body activity level required to suppress an alarm signal increases with each subsequent alarm signal within said sequence. The body activity level of a human being is detected during said sequence, and a present alarm signal is suppressed when the body activity level presently detected is greater than the predetermined body activity level required to suppress the present alarm signal.
摘要:
An interactive alarm clock and method are provided. Specifically, the alarm clock of the present invention is programmable by a user so that distinct alarm signals can be designated. In a typical embodiment, distinct alarm signals are designated based upon volume level, alarm type and/or alarm signal harmonics. For example, a first alarm signal could be produced at a first designated volume level. If the first alarm signal is snoozed, a second alarm signal would later be produced at a second (e.g., higher) designated volume level.
摘要:
An alarm clock with an alarm system which can be deactivated by means of either a local or remote manually operated push button switch which must be held in a depressed condition for a predetermined period of time in order to effectively deactivate the clock alarm. Means is provided to adjust the length of required switch hold-down time. An indicator is provided for showing the completion of the required hold-down period. In the case of remote deactivation, wherein the user must walk to the location of the push button switch, a radio link is employed to couple the remotely located switch with the locally positioned clock alarm system and to provide the desired alarm deactivation. The completion of the hold down period is signalled either by visual indicating means or by audible sounding means. Failure to complete the required hold-down period causes the normal audible alarm signal to be turned back on, and a new switch hold-down cycle for the required preset time period must be commenced for deactivation of the alarm. Local/remote switching circuitry is provided to allow the user to select a preferred control location for terminating an alarm cycle. The system may comprise separable modules and may include a separable standard broadcast radio receiver module.