会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明公开
    • 사용자의 근전도 신호 측정용 휴대용 장치, 시스템 및 방법
    • 用于测量用户的EMG信号的便携式设备,系统和方法
    • KR20180032637A
    • 2018-03-30
    • KR20187005499
    • 2016-07-22
    • UNIV CATALUNYA POLITECNICA
    • ROJAS MARTINEZ MONICAMANANAS VILLANUEVA MIGUEL ANGEL
    • A61B5/0488A61B5/00A61B5/0492A61B5/1455
    • A61B5/0488A61B5/0492A61B5/14552A61B5/486A61B5/6804A61B2560/0443A61B2562/046
    • 사용자의근전도신호측정용휴대용장치, 시스템및 방법본 발명의장치는사용시에적어도하나의근육또는그 일부상의사용자피부와접촉하여배치된수 개의전극(11)을포함하는검출수단을갖는제 1 지지층(C1)을포함하고, 상기제 1 지지층(C1)은복수의근전도신호를획득하도록구성되며, 상기제 1 지지층(C1)은제 2 지지층(C2)에분리가능하게기계적및 전기적으로부착되고, 상기제 2 지지층(C2)은상기획득된근전도신호의컨디셔닝, 디지털포맷으로의변환, 및통신채널(26)을통한마스터전자유닛(27)으로의송신을수행하도록구성된전자수단(BE)을포함하며, 상기마스터전자유닛(27)은상기전자수단(BE)을제어하고상기수신된컨디셔닝및 디지털화된근전도신호를모니터링을위해제어유닛(30)으로더 전송하도록구성된다.
    • 具有检测一个第一支撑层用于将EMG信号来测量便携式装置的用户,本发明的系统和方法的装置包括至少一个肌肉或放置在与用户的上电极11的任何部分的皮肤接触,在使用中, 包括(C1),所述第一支撑层(C1)适合于获得的EMG信号的eunbok数目,可移除地机械地和电连接到所述第一支撑层(C1)银第二支撑层(C2),其特征在于 如图2所示,支撑层包括电子单元(BE),其被配置为经由所述(C2)转换以执行传输到主电子单元27和通信信道26的状态下,肌电图获得的信号eunsanggi和的数字格式 主电子单元27被配置为控制电子装置BE并进一步将接收到的经调节和数字化的EMG信号发送到控制单元30以进行监控。
    • 7. 发明申请
    • METHOD FOR OBTAINING HEART RATE AND RESPIRATORY RATE FROM ELECTRONIC SCALES
    • 从电子尺度获取心率和呼吸率的方法
    • WO2009027556A3
    • 2009-04-16
    • PCT/ES2008000533
    • 2008-07-30
    • UNIV CATALUNYA POLITECNICAPALLAS ARENY RAMONCASAS PIEDRAFITA JAIME OSCARGONZALEZ LANDAETA RAFAEL
    • PALLAS ARENY RAMONCASAS PIEDRAFITA JAIME OSCARGONZALEZ LANDAETA RAFAEL
    • G01G19/44A61B5/024G01G19/50
    • G01G19/50A61B5/0205A61B5/024A61B5/1102G01G19/4146
    • The invention relates to a method for obtaining heart rate and respiratory rate from a traditional electronic scale, using only the weight sensors provided in the scale and without any action being exerted on the user, whereby the user simply has to stand on the scale. Moreover, it is not necessary for the user to remove his/her shoes, to grip any element or to position him/herself on the scale platform in a pre-determined manner. The information is obtained through the electronic processing of the signal from the weight sensors (1) built into the electronic scale. The high-frequency components of the signal are separated using a high-pass filter (2), amplified with a very high gain (3) and processed (5) in order to detect heart rate and respiratory rate, while a weight amplifier (4) having a much lower gain than that of the above-mentioned amplifier (3) obtains a signal proportional to weight, which the processor (5) can store (6), display (7) or communicate (8) together with or independently of the heart rate and the respiratory rate.
    • 本发明涉及一种从传统电子秤获得心率和呼吸频率的方法,该方法仅使用秤中提供的重量传感器,而不对使用者施加任何作用,由此使用者只需要站在秤上。 此外,用户不必去除他/她的鞋子,抓住任何元素或者以预定的方式将他/她自己定位在秤台上。 通过电子处理来自内置于电子秤中的重量传感器(1)的信号获得信息。 使用高通滤波器(2)分离信号的高频分量,以非常高的增益(3)放大和处理(5),以便检测心率和呼吸频率,而重量放大器(4) )具有比上述放大器(3)低得多的增益获得与权重成比例的信号,处理器(5)可以与处理器(5)可以存储(6),显示器(7)或通信(8)一起或独立于 心率和呼吸频率。
    • 9. 发明申请
    • HOMODYNE RECEIVER FOR OPTICAL COMMUNICATIONS WITH A POSTERIORI PROCESSING
    • 用于具有POSTERIORI处理的光通信的HOMODYNE接收器
    • WO2008081065A2
    • 2008-07-10
    • PCT/ES2007000778
    • 2007-12-28
    • UNIV CATALUNYA POLITECNICAPRAT GOMA JOSEPFABREGA SANCHEZ JOSEP MARIA
    • PRAT GOMA JOSEPFABREGA SANCHEZ JOSEP MARIA
    • H04B10/61H04B10/63
    • H04B10/63H04B10/61H04B10/613
    • The receiver comprises a first optical fibre input element (2) through which an information carrying element (S1) circulates, a local laser unit (3), an optical detection unit (4) and a differential demodulation unit (5). Characterised in that the information carrying signal (S1) of the input optical fibre (2) and the light beam (h1) generated by the local laser unit (3) are connected and detect in an optical detection block (4), which converts the information carrying signal (S1) into an electrical information carrying signal (S2) to be processed electrically in a demodulation unit (5) which performs a differential demodulation of the phase and quadrature components thereof, and subsequently combines same. The result in an optical receiver (1) with homodyne optical detection, the wavelengths of the input signal S1 and the synthonised light beam h1 coinciding, with high tolerance to the phase noise generated by optical communications lasers and not requiring use of an optical phase monitor (OPLL).
    • 接收机包括信息传送元件(S1)通过其循环的第一光纤输入元件(2),本地激光单元(3),光学检测单元(4)和差分解调单元(5)。 其特征在于,输入光纤(2)的信息携带信号(S1)和由本地激光单元(3)产生的光束(h1)被连接并在光学检测块(4)中检测,光学检测块 信息携带信号(S1)转换为在其执行其相位和正交分量的差分解调的解调单元(5)中进行电处理的电信息携带信号(S2),并且随后将其组合。 在具有零差光检测的光接收器(1)中,输入信号S1和合成光束h1的波长与由光通信激光器产生的相位噪声具有高容限度而不需要使用光相位监视器 (OPLL)。