PROXIMITY-BASED CONTROL OF MEDIA DEVICES FOR MEDIA PRESENTATIONS
    52.
    发明申请
    PROXIMITY-BASED CONTROL OF MEDIA DEVICES FOR MEDIA PRESENTATIONS 审中-公开
    用于介质介质的媒体设备的基于接近的控制

    公开(公告)号:US20140270698A1

    公开(公告)日:2014-09-18

    申请号:US14070446

    申请日:2013-11-01

    Abstract: Embodiments relate generally to electrical/electronic hardware, computer software, wired and wireless network communications, portable, wearable, and stationary media devices. RF transceivers and/or audio system in each media device may be used to wirelessly communicate between media devices and allow configuration and other data to be wirelessly transmitted from one media device to another media device. The proximity detection system may be configured to detect a presence of a user or multiple users and upon detecting presence, access content on a user device, and record the content while also playing back the content on the media device. One or more user devices in proximity of the media device post detection may wirelessly communicate with the media device and the media device may orchestrate handling and/or queuing of content from those devices or from a wirelessly accessible location such as the Cloud, Internet, NAS, Flash memory, or other wireless sources.

    Abstract translation: 实施例一般涉及电气/电子硬件,计算机软件,有线和无线网络通信,便携式,可佩戴和固定的媒体设备。 每个媒体设备中的RF收发器和/或音频系统可用于在媒体设备之间进行无线通信,并允许配置和其他数据从一个媒体设备无线传输到另一个媒体设备。 接近检测系统可以被配置为检测用户或多个用户的存在,并且一旦检测到存在,访问用户设备上的内容,并且在还播放媒体设备上的内容的同时记录内容。 在媒体设备后检测附近的一个或多个用户设备可以与媒体设备进行无线通信,并且媒体设备可以协调处理和/或从这些设备或从诸如云,因特网,NAS的无线可访问位置排队内容 ,闪存或其他无线源。

    PROXIMITY SENSING DEVICE CONTROL ARCHITECTURE AND DATA COMMUNICATION PROTOCOL
    53.
    发明申请
    PROXIMITY SENSING DEVICE CONTROL ARCHITECTURE AND DATA COMMUNICATION PROTOCOL 有权
    接近感知设备控制架构和数据通信协议

    公开(公告)号:US20140270306A1

    公开(公告)日:2014-09-18

    申请号:US14210234

    申请日:2014-03-13

    Abstract: Mobile device speaker control may include: monitoring one or more devices wirelessly coupled with a data network, receiving one or more data packets from each of the one or more devices, filtering received data packets by evaluating a received signal strength (e.g., RSSI) of the received packets, comparing the received signal strength of each of the received packets to a threshold to determine whether the one or more devices are to perform an action, and performing the action only if one or more indicia other than the received signal strength indicate a near field proximity within the threshold or a direct physical contact between a wireless device receiving the data packets and one of the one or more devices that is wirelessly transmitting the data packets.

    Abstract translation: 移动设备扬声器控制可以包括:监视与数据网络无线耦合的一个或多个设备,从所述一个或多个设备中的每一个接收一个或多个数据分组,通过评估所接收的数据分组的接收信号强度(例如RSSI)来过滤所接收的数据分组 接收的分组,将接收的每个分组的接收信号强度与阈值进行比较,以确定一个或多个设备是否要执行动作,并且仅当除了接收到的信号强度之外的一个或多个标记指示a 阈值之间的近场接近度或接收数据分组的无线设备与正在无线传输数据分组的一个或多个设备之一之间的直接物理接触。

    MONO-SPATIAL AUDIO PROCESSING TO PROVIDE SPATIAL MESSAGING
    54.
    发明申请
    MONO-SPATIAL AUDIO PROCESSING TO PROVIDE SPATIAL MESSAGING 审中-公开
    单声道音频处理提供空间消息传递

    公开(公告)号:US20140270183A1

    公开(公告)日:2014-09-18

    申请号:US13830770

    申请日:2013-03-14

    Applicant: Michael Luna

    Inventor: Michael Luna

    Abstract: Embodiments of the invention relate generally to electrical and electronic hardware, computer software, wired and wireless network communications, and wearable computing and audio devices for communication audio. More specifically, disclosed are an apparatus and a method for processing audio signals to include spatially modulated message audio signals as a portion of a monaural signal. In some embodiments, a method includes receiving a message for a loudspeaker. The method can determine whether an audio signal is in communication with the loudspeaker and a type of a message of the message. Message audio for the message can be spatially modulated as a function of the type of message. A mono-spatial audio signal can be formed based the audio signal and the spatially-modulated message. Thus, a monaural audio signal can be modulated to generate mono-spatial effects for presenting the messages.

    Abstract translation: 本发明的实施例一般涉及电气和电子硬件,计算机软件,有线和无线网络通信以及用于通信音频的可穿戴计算和音频设备。 更具体地,公开了一种用于处理音频信号以将空间调制的消息音频信号包括为单声道信号的一部分的装置和方法。 在一些实施例中,一种方法包括接收用于扬声器的消息。 该方法可以确定音频信号是否与扬声器通信以及消息的消息的类型。 消息的消息音频可以作为消息类型的函数进行空间调制。 可以基于音频信号和空间调制消息形成单声道空间音频信号。 因此,可以调制单声道音频信号以产生用于呈现消息的单空间效果。

    PROXIMITY AND INTERFACE CONTROLS OF MEDIA DEVICES FOR MEDIA PRESENTATIONS
    55.
    发明申请
    PROXIMITY AND INTERFACE CONTROLS OF MEDIA DEVICES FOR MEDIA PRESENTATIONS 审中-公开
    媒体介绍媒介设备的接近和接口控制

    公开(公告)号:US20140267148A1

    公开(公告)日:2014-09-18

    申请号:US14070452

    申请日:2013-11-01

    CPC classification number: G06F1/3287 G06F1/3231 Y02D10/171 Y02D10/173

    Abstract: Embodiments relate generally to electrical/electronic hardware, computer software, wired and wireless network communications, portable, wearable, and stationary media devices. RF transceivers and/or audio system in each media device may be used to wirelessly communicate between media devices and allow configuration and other data to be wirelessly transmitted from one media device to another media device. The proximity detection system may be configured to detect a presence of a user or multiple users and upon detecting presence, access content on a user device, and record the content while also playing back the content on the media device. One or more user devices in proximity of the media device post detection may wirelessly communicate with the media device and the media device may orchestrate handling and/or queuing of content from those devices or from a wirelessly accessible location such as the Cloud, Internet, NAS, Flash memory, or other wireless sources.

    Abstract translation: 实施例一般涉及电气/电子硬件,计算机软件,有线和无线网络通信,便携式,可佩戴和固定的媒体设备。 每个媒体设备中的RF收发器和/或音频系统可用于在媒体设备之间进行无线通信,并允许配置和其他数据从一个媒体设备无线传输到另一个媒体设备。 接近检测系统可以被配置为检测用户或多个用户的存在,并且一旦检测到存在,访问用户设备上的内容,并且在还播放媒体设备上的内容的同时记录内容。 在媒体设备后检测附近的一个或多个用户设备可以与媒体设备进行无线通信,并且媒体设备可以协调处理和/或从这些设备或从诸如云,因特网,NAS的无线可访问位置排队内容 ,闪存或其他无线源。

    Acoustic transducer including airfoil for generating sound
    57.
    发明授权
    Acoustic transducer including airfoil for generating sound 有权
    声换能器包括用于产生声音的翼型

    公开(公告)号:US08804986B2

    公开(公告)日:2014-08-12

    申请号:US13270976

    申请日:2011-10-11

    CPC classification number: H04R1/2803 G10K11/18 H04R9/06 H04R11/02 H04R23/00

    Abstract: Systems, apparatus, devices, and methods for converting electrical signals into sound using an acoustic transducer. The inventive acoustic transducer utilizes the motion of an airfoil shaped element to generate a sound wave, with the airfoil element being driven in response to an electrical signal input to a suitable driving element. In some embodiments, the airfoil element or elements act to mechanically couple the motion of an armature attached to the driver to the surrounding air, producing sound waves in a more efficient manner than typical acoustic transducer devices. Embodiments of the invention may be used in the design of loudspeakers, earpieces, headphones, and other devices for which a high efficiency transducer is desired.

    Abstract translation: 使用声换能器将电信号转换为声音的系统,装置,装置和方法。 本发明的声换能器利用翼型元件的运动来产生声波,其中翼型元件响应于输入到合适的驱动元件的电信号被驱动。 在一些实施例中,翼型元件用于将附接到驱动器的电枢的运动机械地耦合到周围空气,以比典型的声换能器装置更有效的方式产生声波。 本发明的实施例可以用于设计需要高效换能器的扬声器,耳机,耳机和其他装置。

    REAL-TIME PHYSIOLOGICAL CHARACTERISTIC DETECTION BASED ON REFLECTED COMPONENTS OF LIGHT
    58.
    发明申请
    REAL-TIME PHYSIOLOGICAL CHARACTERISTIC DETECTION BASED ON REFLECTED COMPONENTS OF LIGHT 审中-公开
    基于反射光的组件的实时生理特征检测

    公开(公告)号:US20140200460A1

    公开(公告)日:2014-07-17

    申请号:US13967317

    申请日:2013-08-14

    Abstract: Embodiments relate generally to electrical and electronic hardware, computer software, wired and wireless network communications, and wearable/mobile computing devices configured to facilitate health and wellness monitoring and maintenance. More specifically, disclosed are systems, components and methods to detect physiological characteristics, such as heart rate, of an organism in real-time based on components of light. In various embodiments, a method can include receiving color channel signals including imagery data generated by, for example, an image capture device. A linear combination of the color channel signals can form a combined color channel signal. The method also can include transforming continuously the combined color channel signal to establish local maxima associated with multiple scales. Further, portions of time associated with the local maxima can be identified and data signal representing a physiological characteristic can be generated. A local maximum can indicate the presence of enhanced blood volume adjacent a tissue surface.

    Abstract translation: 实施例通常涉及电气和电子硬件,计算机软件,有线和无线网络通信以及被配置为促进健康和健康监测和维护的可穿戴/移动计算设备。 更具体地,公开了基于光的组分实时地检测生物体的生理特征,例如心率的系统,组件和方法。 在各种实施例中,一种方法可以包括接收彩色通道信号,包括由例如图像捕获装置产生的图像数据。 颜色通道信号的线性组合可以形成组合的颜色通道信号。 该方法还可以包括连续变换组合的彩色信道信号以建立与多个尺度相关联的局部最大值。 此外,可以识别与局部最大值相关联的时间部分,并且可以生成表示生理特征的数据信号。 局部最大值可以指示邻近组织表面存在增强的血液体积。

    MULTIMODAL PHYSIOLOGICAL SENSING FOR WEARABLE DEVICES OR MOBILE DEVICES
    60.
    发明申请
    MULTIMODAL PHYSIOLOGICAL SENSING FOR WEARABLE DEVICES OR MOBILE DEVICES 审中-公开
    用于可穿戴设备或移动设备的多模态生理感测

    公开(公告)号:US20140128754A1

    公开(公告)日:2014-05-08

    申请号:US13672671

    申请日:2012-11-08

    Abstract: Embodiments relate generally to electrical and electronic hardware, computer software, wired and wireless network communications, and wearable computing devices for sensing health and wellness-related physiological characteristics. More specifically, disclosed is a physiological sensor using, for example, acoustic signal energy to determine physiological characteristics in one mode, such as a heart rate, the physiological sensor being disposed in a wearable device (or carried device), and generating data communication signals using acoustic signal energy in another mode. The physiological sensor also can be configured to receive data communication signals. In at least one embodiment, an apparatus includes one or more multimodal physiological sensors configured to receive physiological signals in a first mode and at least generate data communication signals in a second mode. A wearable housing includes the multimodal physiological sensors, and a multimodal physiological sensing device is configured to receive a sensor signal and generate data representing a physiological characteristic.

    Abstract translation: 实施例一般涉及电气和电子硬件,计算机软件,有线和无线网络通信以及用于感测健康和健康相关生理特征的可穿戴计算设备。 更具体地,公开了一种生理传感器,其使用例如声信号能量来确定一个模式中的生理特征,例如心率,生理传感器设置在可穿戴设备(或被携带设备)中,并且生成数据通信信号 在另一种模式下使用声信号能量。 生理传感器也可配置为接收数据通信信号。 在至少一个实施例中,一种装置包括一个或多个多模态生理传感器,其被配置为以第一模式接收生理信号,并且至少在第二模式下生成数据通信信号。 一种可佩戴的外壳包括多峰生理传感器,并且多模态生理感测装置被配置为接收传感器信号并产生表示生理特性的数据。

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