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    • 4. 发明授权
    • Ion solution concentration-detecting device
    • 离子溶液浓度检测装置
    • US07736478B2
    • 2010-06-15
    • US11515727
    • 2006-09-06
    • Shen-Kan HsiungJung-Chuan ChouTai-Ping SunChung-We PanChin-Shuen Hung
    • Shen-Kan HsiungJung-Chuan ChouTai-Ping SunChung-We PanChin-Shuen Hung
    • G01N27/333
    • G01N27/4035
    • An ion solution concentration-detecting device includes a working electrode, a reference electrode, and a link element. The working electrode and the reference electrode are inserted into the link element. The working electrode, inserted into the link element, is replaceable, for the better sensitivity to the different ion solution. The working electrode being a contact-detecting electrode can be replaced by another contact-detecting electrode with different sensing membrane. The reference electrode includes a polymeric membrane with ion material covering silver/silver chloride (Ag/AgCl) electrode to provide a fixed and stable electrical potential. The working electrode may be a contact-detecting electrode having a sensing membrane. The sensing membrane may be a metal oxide or a polymer with ion material for measuring different ion solution effectively.
    • 离子溶液浓度检测装置包括工作电极,参考电极和连接元件。 工作电极和参考电极插入到连接元件中。 插入连接元件的工作电极是可更换的,以便更好地对不同离子溶液的敏感性。 作为接触检测电极的工作电极可以由具有不同传感膜的另一接触检测电极代替。 参考电极包括具有覆盖银/氯化银(Ag / AgCl)电极的离子材料的聚合物膜,以提供固定和稳定的电势。 工作电极可以是具有感测膜的接触检测电极。 感测膜可以是金属氧化物或具有用于有效测量不同离子溶液的离子材料的聚合物。
    • 6. 发明申请
    • Fabrication of ceramic interface electrochemical reference electrode
    • 陶瓷界面电化学参考电极的制造
    • US20060021874A1
    • 2006-02-02
    • US11137551
    • 2005-05-26
    • Shen-Kan HsiungJung-Chuan ChouTai-Ping SunChung-We PanZheng-Cheng Chen
    • Shen-Kan HsiungJung-Chuan ChouTai-Ping SunChung-We PanZheng-Cheng Chen
    • G01N27/327H01R43/16
    • G01N27/401Y10T29/49206
    • In this present invention it was fabricated to be relates to manufacturing a ceramic interface electrochemical reference electrode for use together with biomedical sensors. Most potentiometric biomedical sensors must have the need to be connected to a reference electrode to offer the readout circuit a stable voltage in the different solutions when measuring for providing that can provide a standard comparing voltage to avoid measuring errors caused by an unstable environment. Usually, However, the presently available commercial reference electrode we used is too big in size and inconvenient to store. For this reason we develop the ceramic interface electrochemical reference electrode which can minimize volume and need not to be preserved in the saturated solution for biosensor. Therefore, the ceramic interface electrochemical reference electrode of the present invention does not need to be stored in solution and can be minimized for use in future sensors. In addition, the present invention also relates to a ceramic interface electrochemical reference electrode.
    • 在本发明中,其制造涉及制造与生物医学传感器一起使用的陶瓷界面电化学参考电极。 大多数电位生物医学传感器必须需要连接到参考电极,以便在测量时提供不同解决方案中的稳定电压,以提供可提供标准比较电压以避免由不稳定环境引起的测量误差。 通常,然而,我们使用的目前可用的商业参考电极的尺寸太大并且不方便存储。 为此,我们开发了陶瓷界面电化学参比电极,可以使体积最小化,不需要保留在生物传感器的饱和溶液中。 因此,本发明的陶瓷界面电化学参考电极不需要存储在溶液中,并且可以最小化以用于将来的传感器。 此外,本发明还涉及陶瓷界面电化学参考电极。
    • 7. 发明申请
    • Ion solution concentration-detecting device
    • 离子溶液浓度检测装置
    • US20080053826A1
    • 2008-03-06
    • US11515727
    • 2006-09-06
    • Shen-Kan HsiungJung-Chuan ChouTai-Ping SunChung-We PanChin-Shuen Hung
    • Shen-Kan HsiungJung-Chuan ChouTai-Ping SunChung-We PanChin-Shuen Hung
    • G01N27/26
    • G01N27/4035
    • An ion solution concentration-detecting device includes a working electrode, a reference electrode and a replaceable link element. The reference electrode includes a polymeric membrane with ion material covering silver/silver chloride (Ag/AgCl) electrode to provide a fixed and stable electrical potential. The working electrode usually is a contact-detecting electrode having a sensing membrane. The sensing membrane may be a metal oxide or a polymer with ion material for measuring different ion solution effectively. For the better sensitivity to the different ion solution, the working electrode bond with the replaceable link element is replaceable. The working electrode being a contact-detecting electrode can be replaced by another contact-detecting electrode with different sensing membrane.
    • 离子溶液浓度检测装置包括工作电极,参考电极和可更换的连接元件。 参考电极包括具有覆盖银/氯化银(Ag / AgCl)电极的离子材料的聚合物膜,以提供固定和稳定的电势。 工作电极通常是具有传感膜的接触检测电极。 感测膜可以是金属氧化物或具有用于有效测量不同离子溶液的离子材料的聚合物。 为了更好地对不同离子溶液的敏感性,可更换的连接元件的工作电极可以更换。 作为接触检测电极的工作电极可以由具有不同传感膜的另一接触检测电极代替。
    • 10. 发明申请
    • SOLID-STATE UREA BIOSENSOR AND ITS DATA ACQUISITION SYSTEM
    • 固态尿素生物传感器及其数据采集系统
    • US20080099331A1
    • 2008-05-01
    • US11306809
    • 2006-01-12
    • Shen-Kan HsiungJung-Chuan ChouTai-Ping SunChung-We Pan
    • Shen-Kan HsiungJung-Chuan ChouTai-Ping SunChung-We Pan
    • G01N33/487G01N27/26
    • C12Q1/58
    • The invention provides a method of fabrication of a solid-state urea biosensor and its data acquisition system. The biosensor includes a substrate, and three individual sensing areas separated by an insulating layer on the substrate. Each individual sensing area contains a conductive layer on the substrate, and a pH sensitive membrane is deposited thereon. An enzyme layer is deposited on one of the pH sensitive membranes to form a working electrode. The other two sensing areas are a quasi-reference electrode and a contrast electrode, respectively. The sensing signals are transferred to an instrumentation amplifier by conductive wires. The sensing signals are then transferred to a low-pass filter to reduce the high frequency noise. A data acquisition card is employed to transfer the sensing signals to a computer. The sensing signals are analyzed by the program of the data acquisition system. The data are then displayed on the display panel.
    • 本发明提供一种固态尿素生物传感器及其数据采集系统的制造方法。 生物传感器包括基板和由基板上的绝缘层分隔开的三个单独的感测区域。 每个单独的感测区域在衬底上包含导电层,并且在其上沉积pH敏感膜。 酶层沉积在一个pH敏感膜上以形成工作电极。 其他两个感测区域分别是准参考电极和对比电极。 传感信号通过导线传输到仪表放大器。 然后将感测信号传送到低通滤波器以降低高频噪声。 使用数据采集卡将感测信号传送到计算机。 感测信号由数据采集系统的程序进行分析。 然后将数据显示在显示面板上。