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    • 3. 发明授权
    • System for measuring body balance signals and a method for analyzing the same
    • 用于测量身体平衡信号的系统及其分析方法
    • US08405510B2
    • 2013-03-26
    • US12842747
    • 2010-07-23
    • Jiann-Shing ShiehChun-Yi LiuJia-Rong YehPei-De Su
    • Jiann-Shing ShiehChun-Yi LiuJia-Rong YehPei-De Su
    • G08B23/00
    • A61B5/4023A61B5/1114A61B5/1124A61B5/7275A61B2562/0252A61B2562/046G01G19/50
    • A human body balance signals measuring system and the method of analysis thereof that has a measuring device, a filter amplifier, an A/D convertor (analog to digital convertor), a signal receiving module, and a data analyze module. The measuring device is linked with the filter amplifier. The filter amplifier can detect and collect the voltage signals caused by pressure change and then filter and amplify the signals. The signals are send to the A/D convertor to convert the analog circuit signals into digital signals for the receiving module to use these voltage change values for human body center of gravity offset evaluation to obtain the COP (center of pressure) offset and COP offset velocity. The data analyze module uses the measured body center of gravity offset for MSE (multiscale entropy) to quantitative the dynamic of human body center of gravity and verify the accuracy of this measuring system.
    • 人体平衡信号测量系统及其分析方法,其具有测量装置,滤波放大器,A / D转换器(模数转换器),信号接收模块和数据分析模块。 测量装置与滤波放大器相连。 滤波放大器可以检测并收集由压力变化引起的电压信号,然后对信号进行滤波和放大。 信号发送到A / D转换器,将模拟电路信号转换为接收模块的数字信号,以使用这些电压变化值进行人体重心偏移评估,以获得COP(压力中心)偏移和COP偏移 速度。 数据分析模块使用测量的人体重心偏移MSE(多尺度熵)来定量人体重心的动态,并验证该测量系统的准确性。
    • 4. 发明申请
    • SYSTEM FOR MEASURING BODY BALANCE SIGNALS AND A METHOD FOR ANALYZING THE SAME
    • 用于测量身体平衡信号的系统及其分析方法
    • US20110175736A1
    • 2011-07-21
    • US12842747
    • 2010-07-23
    • Jiann-Shing SHIEHChun-Yi LiuJia-Rong YehPei-De Su
    • Jiann-Shing SHIEHChun-Yi LiuJia-Rong YehPei-De Su
    • G08B23/00
    • A61B5/4023A61B5/1114A61B5/1124A61B5/7275A61B2562/0252A61B2562/046G01G19/50
    • A human body balance signals measuring system and the method of analysis thereof that has a measuring device, a filter amplifier, an A/D convertor (analog to digital convertor), a signal receiving module, and a data analyze module. The measuring device is linked with the filter amplifier. The filter amplifier can detect and collect the voltage signals caused by pressure change and then filter and amplify the signals. The signals are send to the A/D convertor to convert the analog circuit signals into digital signals for the receiving module to use these voltage change values for human body center of gravity offset evaluation to obtain the COP (center of pressure) offset and COP offset velocity. The data analyze module uses the measured body center of gravity offset for MSE (multiscale entropy) to quantitative the dynamic of human body center of gravity and verify the accuracy of this measuring system.
    • 人体平衡信号测量系统及其分析方法,其具有测量装置,滤波放大器,A / D转换器(模数转换器),信号接收模块和数据分析模块。 测量装置与滤波放大器相连。 滤波放大器可以检测并收集由压力变化引起的电压信号,然后对信号进行滤波和放大。 信号发送到A / D转换器,将模拟电路信号转换为接收模块的数字信号,以使用这些电压变化值进行人体重心偏移评估,以获得COP(压力中心)偏移和COP偏移 速度。 数据分析模块使用测量的人体重心偏移MSE(多尺度熵)来定量人体重心的动态,并验证该测量系统的准确性。
    • 5. 发明授权
    • Wire-winding common mode choke
    • 绕线式共模扼流圈
    • US07358842B1
    • 2008-04-15
    • US11594412
    • 2006-11-08
    • Chun-Yi Liu
    • Chun-Yi Liu
    • H01F27/02H01F5/00
    • H01F17/045H01F27/292H01F38/10H01F41/10H01F2017/0093
    • A wire-winding common mode choke has a body, a first coil and a second coil. The body has two channels respectively defined in two lateral sides of the body and at least two steps. Each step has a first folding end and a second folding end. The first and second coils are wired around the channels of the body and respectively across the first or second folding ends of the corresponding steps. When the first and the second coils are respectively weld by heating, there is no short circuit between the first and the second coils because the steps separate the first and second coils.
    • 绕线式共模扼流圈具有主体,第一线圈和第二线圈。 身体有两个通道分别限定在身体的两个侧面和至少两个步骤。 每个步骤具有第一折叠端和第二折叠端。 第一和第二线圈围绕主体的通道并分别穿过相应步骤的第一或第二折叠端。 当第一和第二线圈分别通过加热焊接时,由于步骤分离第一和第二线圈,所以在第一和第二线圈之间不存在短路。
    • 6. 发明申请
    • WIRE-WINDING COMMON MODE CHOKE
    • 绕线通用模式选择
    • US20080106363A1
    • 2008-05-08
    • US11594412
    • 2006-11-08
    • Chun-Yi Liu
    • Chun-Yi Liu
    • H01F27/30
    • H01F17/045H01F27/292H01F38/10H01F41/10H01F2017/0093
    • A wire-winding common mode choke has a body, a first coil and a second coil. The body has two channels respectively defined in two lateral sides of the body and at least two steps. Each step has a first folding end and a second folding end. The first and second coils are wired around the channels of the body and respectively across the first or second folding ends of the corresponding steps. When the first and the second coils are respectively weld by heating, there is no short circuit between the first and the second coils because the steps separate the first and second coils.
    • 绕线式共模扼流圈具有主体,第一线圈和第二线圈。 身体有两个通道分别限定在身体的两个侧面和至少两个步骤。 每个步骤具有第一折叠端和第二折叠端。 第一和第二线圈围绕主体的通道并分别穿过相应步骤的第一或第二折叠端。 当第一和第二线圈分别通过加热焊接时,由于步骤分离第一和第二线圈,所以在第一和第二线圈之间不存在短路。