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. 发明授权
    • Detector
    • 探测器
    • US07884623B2
    • 2011-02-08
    • US12181819
    • 2008-07-29
    • Seong Hyun KimYong Suk YangSang Chul LimZin Sig KimYoon Ho Song
    • Seong Hyun KimYong Suk YangSang Chul LimZin Sig KimYoon Ho Song
    • G01R27/26G01R27/08
    • G01N27/414
    • Provided is a detector having a transistor or resistor structure. When an electrode is exposed to a detected solution, such as blood, a variation in current flowing through the detected solution may be greater than a variation in the electrical characteristics of the detector caused by a variation in the physical properties of semiconductor so that it is difficult to detect whether a bio-particle is contained in the detected solution. In order to solve this problem, a detection portion and an electrical measurement portion are separately formed, and the detection portion is processed with the bio-particle and then post-processed. Subsequently, the detection portion and the electrical measurement portion are bonded to each other using, for example, a laminating process, and the detector measures a detection value.
    • 提供了具有晶体管或电阻器结构的检测器。 当电极暴露于检测到的溶液(例如血液)时,流经检测到的溶液的电流变化可能大于由半导体的物理性质的变化引起的检测器的电特性的变化, 难以检测检测到的溶液中是否含有生物粒子。 为了解决这个问题,分开形成检测部分和电测量部分,并且用生物粒子处理检测部分,然后进行后处理。 随后,使用例如层压处理将检测部分和电测量部分彼此接合,并且检测器测量检测值。
    • 2. 发明申请
    • DETECTOR
    • 探测器
    • US20090146639A1
    • 2009-06-11
    • US12181819
    • 2008-07-29
    • Seong Hyun KimYong Suk YangSang Chul LimZin Sig KimYoon Ho Song
    • Seong Hyun KimYong Suk YangSang Chul LimZin Sig KimYoon Ho Song
    • G01N27/00
    • G01N27/414
    • Provided is a detector having a transistor or resistor structure. When an electrode is exposed to a detected solution, such as blood, a variation in current flowing through the detected solution may be greater than a variation in the electrical characteristics of the detector caused by a variation in the physical properties of semiconductor so that it is difficult to detect whether a bio-particle is contained in the detected solution. In order to solve this problem, a detection portion and an electrical measurement portion are separately formed, and the detection portion is processed with the bio-particle and then post-processed. Subsequently, the detection portion and the electrical measurement portion are bonded to each other using, for example, a laminating process, and the detector measures a detection value.
    • 提供了具有晶体管或电阻器结构的检测器。 当电极暴露于检测到的溶液(例如血液)时,流经检测到的溶液的电流变化可能大于由半导体的物理性质的变化引起的检测器的电特性的变化, 难以检测检测到的溶液中是否含有生物粒子。 为了解决这个问题,分开形成检测部分和电测量部分,并且用生物粒子处理检测部分,然后进行后处理。 随后,使用例如层压处理将检测部分和电测量部分彼此接合,并且检测器测量检测值。
    • 6. 发明授权
    • Organic thin film transistor, method of manufacturing the same, and biosensor using the transistor
    • 有机薄膜晶体管,其制造方法和使用该晶体管的生物传感器
    • US07863085B2
    • 2011-01-04
    • US12244364
    • 2008-10-02
    • Sang Chul LimSeong Hyun KimYong Suk YangDoo Hyeb YounZin Sig Kim
    • Sang Chul LimSeong Hyun KimYong Suk YangDoo Hyeb YounZin Sig Kim
    • H01L51/40
    • H01L51/0533H01L51/0097H01L51/0541H01L51/0545H01L51/0562
    • An organic thin film transistor (OTFT), a method of manufacturing the same, and a biosensor using the OTFT are provided. The OTFT includes a gate electrode, a gate insulating layer, source and drain electrodes, and an organic semiconductor layer disposed on a substrate and further includes an interface layer formed between the gate insulating layer and the organic semiconductor layer by a sol-gel process. The gate insulating layer is formed of an organic polymer, and the interface layer is formed of an inorganic material. The OTFT employs the interface layer interposed between the gate insulating layer and the organic semiconductor layer so that the gate insulating layer can be protected from the exterior and adhesion of the gate insulating layer with the organic semiconductor layer can be improved, thereby increasing driving stability. Also, since the OTFT can use a plastic substrate, the manufacture of the OTFT is inexpensive so that the OTFT can be used as a disposable biosensor.
    • 提供有机薄膜晶体管(OTFT),其制造方法和使用OTFT的生物传感器。 OTFT包括栅极电极,栅极绝缘层,源极和漏极电极以及设置在基板上的有机半导体层,并且还包括通过溶胶 - 凝胶法在栅极绝缘层和有机半导体层之间形成的界面层。 栅绝缘层由有机聚合物形成,界面层由无机材料形成。 OTFT采用插入在栅极绝缘层和有机半导体层之间的界面层,从而可以保护栅极绝缘层免受外部的侵蚀,从而可以提高栅极绝缘层与有机半导体层的粘附性,从而提高驱动稳定性。 此外,由于OTFT可以使用塑料基板,OTFT的制造便宜,因此OTFT可以用作一次性生物传感器。
    • 8. 发明授权
    • Composition for organic polymer gate insulating layer and organic thin film transistor using the same
    • 有机高分子栅极绝缘层的组成和使用其的有机薄膜晶体管
    • US07741635B2
    • 2010-06-22
    • US12182577
    • 2008-07-30
    • Seong Hyun KimSang Chul LimGi Heon KimJi Ho YoukTae Gon Kim
    • Seong Hyun KimSang Chul LimGi Heon KimJi Ho YoukTae Gon Kim
    • H01L35/24H01L51/00
    • H01L51/052H01L51/0545
    • Provided are a composition for an organic polymer gate insulating layer and an Organic Thin Film Transistor (OTFT) using the same. The composition includes an insulating organic polymer including at least one selected from the group consisting of polymethylmethacrylate (PMMA), polyvinylalcohol (PVA), polyvinylpyrrolidone (PVP), poly(vinyl phenol) (PVPh) and a copolymer thereof, a crosslinking monomer having two or more double bonds, and a photoinitiator. The OTFT includes a gate insulating layer of a semi-interpenetrating polymer network formed of the composition. The composition for a photoreactive organic polymer gate insulating layer has a photochemical characteristic that enables micropatterning, and can be formed into a layer having excellent chemical resistance, thermal resistance, surface characteristics and electrical characteristics.
    • 提供一种有机高分子栅极绝缘层和使用其的有机薄膜晶体管(OTFT)的组合物。 该组合物包括绝缘有机聚合物,其包括选自聚甲基丙烯酸甲酯(PMMA),聚乙烯醇(PVA),聚乙烯吡咯烷酮(PVP),聚(乙烯基苯酚)(PVPh)及其共聚物中的至少一种,具有两个 或更多双键,以及光引发剂。 OTFT包括由该组合物形成的半互穿聚合物网络的栅极绝缘层。 光反应性有机聚合物栅极绝缘层的组合物具有能够进行微图案化的光化学特性,并且可以形成为具有优异的耐化学性,耐热性,表面特性和电特性的层。
    • 9. 发明授权
    • Inverter
    • 逆变器
    • US07687807B2
    • 2010-03-30
    • US11834044
    • 2007-08-06
    • Jae Bon KooSeong Hyun KimKyung Soo SuhChan Hoe KuSang Chul LimJung Hun Lee
    • Jae Bon KooSeong Hyun KimKyung Soo SuhChan Hoe KuSang Chul LimJung Hun Lee
    • H01L31/00
    • H01L27/281H01L27/283
    • Provided are a structure and fabricating method of a new inverter for controlling a threshold voltage of each location when an inverter circuit is manufactured using an organic semiconductor on a plastic substrate.In general, p-type organic semiconductor is stable. Accordingly, when the inverter is formed of only the p-type semiconductor, a D-inverter composed of a depletion load and an enhancement driver has large gains, wide swing width and low power consumption, which is more preferable than an E-inverter composed of an enhancement load and an enhancement driver. However, it is impossible to form a depletion transistor and an enhancement transistor on the same substrate while controlling them by locations.To overcome such a difficulty, the structure of the inverter in which a bottom gate organic semiconductor transistor showing enhancement type characteristics is used as a driver transistor, and a top gate organic semiconductor transistor showing depletion type characteristics is used as a load transistor, and a manufacturing method thereof are proposed. According to this structure, a passivation effect of an organic semiconductor may be additionally obtained by a second insulating layer and a second gate electrode material which are on top of the organic semiconductor, and a high degree of integration may also be improved.
    • 提供了当在塑料基板上使用有机半导体制造逆变器电路时,用于控制每个位置的阈值电压的新型逆变器的结构和制造方法。 通常,p型有机半导体是稳定的。 因此,当逆变器仅由p型半导体形成时,由耗尽负载和增强型驱动器构成的D逆变器具有大的增益,宽的摆幅宽度和低功耗,这比组成的E变换器更优选 的增强负载和增强驱动器。 然而,不可能在相同的衬底上形成耗尽晶体管和增强晶体管,同时通过位置来控制它们。 为了克服这样的困难,将使用显示增强型特性的底栅有机半导体晶体管作为驱动晶体管的逆变器的结构和显示耗尽型特性的顶栅有机半导体晶体管用作负载晶体管,并且 提出了其制造方法。 根据该结构,可以通过位于有机半导体顶部的第二绝缘层和第二栅极电极材料另外获得有机半导体的钝化效果,并且还可以提高高集成度。