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    • 5. 发明公开
    • Optical transmission module
    • OptischesÜbertragungsmodul
    • EP2402800A1
    • 2012-01-04
    • EP11167353.9
    • 2011-05-24
    • National Central University
    • Wu, Mao-JenLan, Hsiao-ChinLee, Yun-ChihChang, Chia-ChiHsiao, Hsu-LiangChen, Chin-TaShen, Bo-KuanLu, Guan-FuChang, Yan-ChongChang, Jen-Yu
    • G02B6/12G02B6/42
    • G02B6/4214G02B6/43
    • An optical transmission module (3; 3a) includes a semiconductor substrate (30), a first film layer (31), an electronic component layer (33; 330) and a waveguide structure (36). The electronic component layer (33; 330) is used for converting a first electrical signal (E1) into an optical signal (O1). The waveguide structure (36) is formed on the first film layer (31), and includes a first reflective surface (363), a waveguide body (360) and a second reflective surface (364). After the optical signal (O1) is transmitted through the semiconductor substrate (30) and the first film layer (31) and enters the waveguide structure (36), the optical signal (O1) is reflected by the first reflective surface (361), transmitted within the waveguide body (360) and reflected by the second reflective surface (364). After the optical signal (O1) reflected by the second reflective surface (364) is transmitted through the first film layer (31) and the semiconductor substrate (30) and received by the electronic component layer (33; 330), the optical signal (O1) is converted into a second electrical signal (E2) by the electronic component layer (33; 330).
    • 光传输模块(3; 3a)包括半导体衬底(30),第一膜层(31),电子部件层(33; 330)和波导结构(36)。 电子部件层(33; 330)用于将第一电信号(E1)转换为光信号(O1)。 波导结构(36)形成在第一膜层(31)上,并且包括第一反射表面(363),波导体(360)和第二反射表面(364)。 在光信号(O1)透过半导体基板(30)和第一薄膜层(31)并进入波导结构(36)之后,光信号(O1)被第一反射面(361)反射, 在波导体(360)内透射并被第二反射表面(364)反射。 在由第二反射表面(364)反射的光信号(O1)透过第一膜层(31)和半导体衬底(30)并由电子部件层(33; 330)接收之后,光信号 O1)被电子部件层(33; 330)转换成第二电信号(E2)。
    • 7. 发明公开
    • METHOD FOR DETERMINING GLUCOSE CONCENTRATION IN HUMAN BLOOD
    • 曼彻斯丁BLUT VERFAHREN ZUR BESTIMMUNG DER GLUCOSEKONTRATION
    • EP2818108A1
    • 2014-12-31
    • EP13751962.5
    • 2013-02-22
    • Healbe Corporation
    • SOKOLOV, Evgeniy L'vovichCHECHIK, Andrey Anatol'evichELOKHOVSKIY, Vladimir Yur'evich
    • A61B5/145A61B5/053G06F19/00
    • A61B5/14532A61B5/053G01N27/02
    • The method involves measurement of impedance for human body region at high frequency (Z HF ) and low frequency (Z LF ) by means of electrodes fastened to a human body. An estimate for the volume of fluid contained in the tissues of a human body region is derived based on Z HF value. An estimate for the volume of extracellular fluid contained in the tissues of a human body region is derived based on Z LF value. The increment of metabolic component of the volume of extracellular fluid (with the said metabolic component being connected with synthesis and utilization of energy carriers in the human body) is determined by calculating the increment of the volume of all fluid as compared to the value obtained from the previous measurement, calculating the increment of the volume of extracellular fluid as compared to the value obtained from the previous measurement, and subsequent calculation of difference between the said increment of the volume of all fluid and increment of the volume of extracellular fluid. A value of increment of glucose concentration is derived via normalization of the said increment of metabolic component of extracellular fluid volume. Glucose concentration in human blood G(t k ) is determined by summing up the said value of glucose concentration increment and value of glucose concentration in blood derived at the previous stage of measurements. The method allows determining glucose concentration in human blood non-invasively and with high accuracy.
    • 该方法包括通过固定在人体上的电极测量高频(Z HF)和低频(Z LF)的人体区域的阻抗。 基于Z HF值推导人体区域组织中含有的流体体积的估计值。 基于Z LF值推导人体区域组织中所含的细胞外液体积的估计值。 通过计算所有流体体积的增加量与从...获得的值相比,确定细胞外液体积(代谢组分与人体能量载体的合成和利用相关联)的代谢成分的增加 先前的测量,计算细胞外液体积的增量与从先前测量获得的值相比较,随后计算所有流体的所述体积的增加和细胞外液体积的增加之间的差异。 葡萄糖浓度增量的值通过细胞外液体体积的代谢组分的增加的归一化而得到。 通过将上述测量血液中葡萄糖浓度增加值和葡萄糖浓度值汇总在血液中得到,确定人血液G(t k)中的葡萄糖浓度。 该方法允许以非侵入性和高准确度测定人血液中的葡萄糖浓度。
    • 9. 发明授权
    • Small antenna for vehicle
    • 小天线的用于车辆
    • EP2487753B1
    • 2013-11-20
    • EP12154048.8
    • 2012-02-06
    • Infac Elecs Co., Ltd.
    • Kim, Woo JinYang, Tae Hoon
    • H01Q1/32H01Q1/36H01Q9/36
    • H01Q1/362H01Q1/32H01Q9/36
    • The present invention relates to a small antenna for vehicle, comprising a coil member of helical antenna structure with a plurality of coils formed; a connector disposed at one end of the coil member; a signal pin contacting with the connector; a cylindrical member coupled to the other end of the coil member and made of metal material; a dielectric body inserted inside the coil member and cylindrical member and disposed adjacent to the connector and signal pin; a conductor inserted inside the coil member and cylindrical member and disposed at one end of the dielectric body; and a cover member enclosing the coil member and cylindrical member inside which the dielectric body and conductor are inserted, wherein the cover member has a length of 110 ~ 130 mm, a frequency of radio band is received through the dielectric body, coil member and cylindrical member, a frequency of TDMB (Terrestrial Digital Multimedia Broadcasting) or DABIII (Digital Audio Broadcasting Band III ) band is received by means of resonance due to coupling phenomenon of the dielectric body and conductor, and the signal pin receives frequency of band for mobile communication.