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    • 21. 发明申请
    • KRAMERS-KRONIG RECEIVER
    • KRAMERS-KRONIG接收器
    • WO2017212492A1
    • 2017-12-14
    • PCT/IL2017/050641
    • 2017-06-08
    • RAMOT AT TEL-AVIV UNIVERSITY LTD.
    • SHTAIF, MarkMECOZZI, AntonioANTONELLI, Cristian
    • H04L27/20H04B10/40
    • H04B10/614H04B10/616H04B10/69H04J14/06H04L27/38
    • A Kramers-Kronig receiver that may include a reception path; wherein the reception path may include a photodiode that is configured to receive a received signal and output a photocurrent that represents the received signal; wherein the received signal comprises a continuous wave (CW) signal and a modulated signal; wherein a frequency gap between the CW signal and the modulated signal is smaller than a bandwidth of the modulated signal; an analog to digital converter that is configured to generate a digital representation of the photocurrent; and a digital processor that is configured to process the digital representation of the photocurrent to provide a reconstructed modulated signal, wherein the processing is based on a Kramers-Kronig relationship related to the received signal.
    • 可包括接收路径的Kramers-Kronig接收器; 其中所述接收路径可以包括光电二极管,所述光电二极管被配置为接收接收到的信号并且输出表示所述接收到的信号的光电流; 其中所接收的信号包括连续波(CW)信号和调制信号; 其中所述CW信号与所述调制信号之间的频率间隙小于所述调制信号的带宽; 模数转换器,其被配置为生成光电流的数字表示; 以及配置成处理光电流的数字表示以提供重建的调制信号的数字处理器,其中该处理基于与接收信号有关的Kramers-Kronig关系。
    • 25. 发明申请
    • POSITIONING A MEDICAL DEVICE BASED ON OXYGEN SATURATION MEASUREMENTS
    • 定位基于氧气饱和度测量的医疗设备
    • WO2016178119A1
    • 2016-11-10
    • PCT/IB2016/052379
    • 2016-04-27
    • LIFEWATCH TECHNOLOGIES, LTD.
    • LEVANT, AnnaBRACHIA HALEVI, ZoharAMIRIM, Mordehay
    • A61B5/1455A61B5/00A61B5/0245
    • A61B5/14552A61B5/0245A61B5/6823A61B5/7221A61B5/7246A61B5/7278
    • A method that includes receiving first and second detection signals and electrocardiograph signals; wherein the first detection signals result from an illumination, by an oxygen saturation sensor included in a device that may be removably attached to a user, of a sternal angle of a user by infrared pulses; wherein the second detection signals result from an illumination, by the oxygen saturation sensor, of the sternal angle of a user by visible light pulses; wherein the electrocardiograph signals may be detected by an electrocardiography sensor that may be included in the device; generating a first waveform template that may be responsive to the first detection signals; generating a second waveform template that may be responsive to the second detection signals; calculating an indication of the oxygen saturation characteristic of the user in response to the first and second detection signals; detecting cardiac cycle durations that may be based upon the first and second detection signals; detecting electrocardiography based cardiac cycle durations; and evaluating a quality of the indication of the oxygen saturation characteristic of the user in response to the first waveform template, the second waveform template, the cardiac cycle's durations and the electrocardiography based cardiac cycle durations.
    • 一种包括接收第一和第二检测信号和心电图仪信号的方法; 其中所述第一检测信号由包括在可拆卸地附接到使用者的装置中的氧饱和度传感器由用户的胸部角度的红外脉冲产生; 其中所述第二检测信号由所述氧饱和度传感器通过可见光脉冲照射所述用户的胸骨角; 其中所述心电图仪信号可以由可包含在所述装置中的心电图传感器检测; 生成可响应于第一检测信号的第一波形模板; 产生可响应于第二检测信号的第二波形模板; 响应于第一和第二检测信号计算用户的氧饱和度特征的指示; 检测可能基于第一和第二检测信号的心脏周期持续时间; 检测基于心电图的心脏周期持续时间; 以及响应于第一波形模板,第二波形模板,心动周期的持续时间和基于心电图的心脏周期持续时间来评估用户的氧饱和度特性的指示的质量。
    • 26. 发明申请
    • MULTISTATE REGISTER HAVING A FLIP FLOP AND MULTIPLE MEMRISTIVE DEVICES
    • 具有FLIP FLOP和多个仪器的多功能寄存器
    • WO2015121868A1
    • 2015-08-20
    • PCT/IL2015/050175
    • 2015-02-17
    • TECHNION RESEARCH AND DEVELOPMENT FOUNDATION LTD.UNIVERSITY OF ROCHESTER
    • KVATINSKY, ShaharPATEL, RaviFRIEDMAN, Eby G.KOLODNY, Avinoam
    • G11C11/00G11C13/00G06F9/38
    • G11C13/0069G06F9/30101G06F9/30123G06F9/30141G06F9/3851G11C13/0004G11C13/0007G11C13/004G11C14/009H01L27/24
    • A multistate register, comprising: a flip-flop that comprises a first latch, a second latch and an intermediate gate coupled between the first and second latches; multiple memristive devices; and an interface coupled between the multiple memristive devices and the flip-flop; wherein the multistate register is arranged to operate in a memristive device write mode, in a memristive device read mode and in a flip-flop mode; wherein when operating in the memristive device read mode, the interface is arranged to write to a first selected memristive device of the multiple memristive devices a first logic value stored in the first latch; wherein when operating in the memristive device write mode, the interface is arranged to write to the second latch a second logic value stored in a second selected memristive device of the multiple memristive devices; and wherein when operating on a flip-flop mode logic the interface is prevented from transferring values between the flip flop and the memristive devices.
    • 一种多态寄存器,包括:触发器,包括第一锁存器,第二锁存器和耦合在所述第一和第二锁存器之间的中间栅极; 多个忆阻器 以及耦合在所述多个忆阻器件和所述触发器之间的接口; 其中所述多态寄存器被布置成以忆阻器件读取模式和触发器模式在忆阻器件写入模式下工作; 其中当在所述忆阻器件读取模式下操作时,所述接口被布置为向所述多个忆阻器件的第一选择的忆阻器件写入存储在所述第一锁存器中的第一逻辑值; 其中当在所述忆阻器件写入模式下操作时,所述接口被布置为向所述第二锁存器写入存储在所述多个忆阻器件的第二选择的忆阻器中的第二逻辑值; 并且其中当在触发器模式逻辑上操作时,防止接口在触发器和忆阻器之间传送值。
    • 27. 发明申请
    • SENSING DEVICE HAVING A BICMOS TRANSISTOR AND A METHOD FOR SENSING ELECTROMAGNETIC RADIATION
    • 具有BICMOS晶体管的感测装置和用于感测电磁辐射的方法
    • WO2015121861A1
    • 2015-08-20
    • PCT/IL2015/050161
    • 2015-02-12
    • TECHNION RESEARCH AND DEVELOPMENT FOUNDATION LTD.
    • NEMIROVSKY, Yael
    • H01L31/08G01J5/10
    • G01J5/24G01J5/0215G01J5/20H01L27/14681H01L31/028H01L31/1105
    • A method and a sensing device are provided. The sensing device may include a readout circuit, a bulk, a holding element and a heterojunction bipolar transistor; wherein heterojunction bipolar transistor is configured to generate detection signals responsive to a temperature of at least a portion of the heterojunction bipolar transistor; wherein the holding element is configured to support the heterojunction bipolar transistor; wherein the heterojunction bipolar transistor is thermally isolated from the bulk; wherein the readout circuit is electrically coupled to the heterojunction bipolar transistor; and wherein the readout circuit is configured to receive the detection signals and to process the detection signals to provide information about electromagnetic radiation that affected the temperature of the at least portion of the heterojunction bipolar transistor.
    • 提供了一种方法和感测装置。 感测装置可以包括读出电路,本体,保持元件和异质结双极晶体管; 其中异质结双极晶体管被配置为产生响应于所述异质结双极晶体管的至少一部分的温度的检测信号; 其中所述保持元件构造成支撑所述异质结双极晶体管; 其中所述异质结双极晶体管与所述本体热隔离; 其中所述读出电路电耦合到所述异质结双极晶体管; 并且其中所述读出电路被配置为接收所述检测信号并且处理所述检测信号以提供关于影响所述异质结双极晶体管的所述至少部分的温度的电磁辐射的信息。
    • 29. 发明申请
    • GENERATING AND USING A LOCATION FINGERPRINTING MAP
    • 生成和使用位置指纹图
    • WO2013065042A1
    • 2013-05-10
    • PCT/IL2012/050426
    • 2012-10-30
    • RONEN, Shai
    • RONEN, Shai
    • G01S5/02G01S19/25
    • H04W64/00G01S5/0252H04W4/026
    • A computerized method for building a multisensory location map, the method may include: receiving, by an interface, multiple multisensory data vectors acquired by multiple mobile devices at multiple locations and location estimates indicative of the multiple locations; wherein at least a majority of the multiple locations are located within an area in which a granularity of global positioning system (GPS) based navigation is below an allowable threshold; wherein the location estimates are at least partially generated by internal navigation systems of the multiple mobile devices; and calculating, by a map calculator, in response to the multiple multisensory data vectors and the location estimates, a location fingerprinting map that comprises multiple grid points, wherein each grid point comprises a multisensory grid point fingerprint and grid point location information.
    • 一种用于构建多感觉位置图的计算机化方法,所述方法可以包括:由接口接收由多个位置处的多个移动设备获取的多个多感觉数据矢量,以及指示所述多个位置的位置估计; 其中所述多个位置中的至少大部分位于其中基于全球定位系统(GPS)导航的粒度低于允许阈值的区域内; 其中所述位置估计至少部分地由所述多个移动设备的内部导航系统产生; 以及通过地图计算器响应于多个多感觉数据向量和位置估计来计算包括多个网格点的位置指纹图,其中每个网格点包括多感觉网格点指纹和网格点位置信息。
    • 30. 发明申请
    • A VIDEO PROCESSING SYSTEM AND A METHOD FOR EDITING A VIDEO ASSET
    • 视频处理系统和编辑视频资产的方法
    • WO2011104668A2
    • 2011-09-01
    • PCT/IB2011/050738
    • 2011-02-23
    • GIVOLY, Tal
    • GIVOLY, Tal
    • G11B27/00H04N5/93
    • G11B27/034H04N5/77H04N9/8042
    • A video processing system and a method for editing a video asset, the method includes: obtaining a video asset of a first resolution; compressing, by compressing module, a video asset to provide a compressed video asset of a second resolution that is lower than the first resolution; transmitting, by a transmitter that is a hardware component, the compressed video asset to a remote video editor; requesting the remote video editor to edit the compressed video asset; receiving editing instructions from the remote video editor, the editing instructions are generated by the remote editor when editing the compressed video asset; processing, by a video processor, the video asset based on the editing instructions to provide an edited video asset; and performing at least one of storing, displaying or publishing the edited video asset.
    • 一种用于编辑视频资产的视频处理系统和方法,所述方法包括:获得第一分辨率的视频资产; 通过压缩模块压缩视频资产以提供第二分辨率的低于第一分辨率的压缩视频资产; 由作为硬件组件的发送器将压缩的视频资产发送到远程视频编辑器; 请求远程视频编辑器编辑压缩视频资产; 接收来自远程视频编辑器的编辑指令,编辑指令在编辑压缩视频资产时由远程编辑器生成; 由视频处理器基于编辑指令处理视频资产以提供编辑的视频资产; 并执行存储,显示或发布编辑的视频资产中的至少一个。