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    • 3. 发明授权
    • Method for diamond coating substrates
    • 基板金刚石涂层方法
    • US07192483B2
    • 2007-03-20
    • US10491858
    • 2002-10-07
    • David FranzJohann Karner
    • David FranzJohann Karner
    • C30B29/24
    • C23C16/276C23C16/279
    • The present invention relates to a method for diamond coating of substrates in which the substrate is exposed in a vacuum atmosphere to a reactive gas mixture excited by means of a plasma discharge, the plasma discharge comprising a plasma beam (14) in an evacuated receiver (16) that is formed between a cathode chamber (1) and an anode (2), and the reactive gas mixture comprising a reactive gas and a working gas, the reactive gas in (9) and the working gas in (8) and/or (9) introduced into the receiver, and the receiver (16) is evacuated by a pump arrangement (15), and the hydrogen concentration of the reactive gas mixture being 0–45 vol. %.
    • 本发明涉及一种用于金刚石涂覆基板的方法,其中基板在真空气氛中暴露于通过等离子体放电激发的反应气体混合物中,等离子体放电包括在抽真空接收器中的等离子体束(14) 16),其形成在阴极室(1)和阳极(2)之间,反应气体混合物包含反应气体和工作气体,(9)中的反应气体和(8)中的工作气体和/ 或(9)引入接收器,并且接收器(16)由泵装置(15)抽空,并且反应气体混合物的氢浓度为0-45vol。 %。
    • 4. 发明申请
    • Compositions and methods for detecting, preventing and treating seizures and seizure related disorders
    • 用于检测,预防和治疗癫痫发作和癫痫发作相关疾病的组合物和方法
    • US20080188461A1
    • 2008-08-07
    • US11823971
    • 2007-06-29
    • Kun-Liang GuanDavid Franz
    • Kun-Liang GuanDavid Franz
    • A61K31/55A61K31/335A61P25/08
    • A61K45/06A61K31/436A61K2300/00
    • The present invention relates to compositions and methods for the detecting, preventing, treating, and empirically investigating seizures and seizure related disorders (e.g., West syndrome, TSC, childhood absence epilepsy, benign focal epilepsies of childhood, juvenile myoclonic epilepsy (JME), temperol lobe epilepsy, frontal lobe epilepsy, Lennox-Gastaut syndrome, occipital lobe epilepsy). In particular, the present invention provides compositions and methods for detecting, treating, preventing and empirical investigating seizures and seizure related disorders through inhibition of mTOR function. In addition, the present invention provides methods and compositions that utilize mTOR inhibiting agents (e.g., rapamycin) in the detecting, preventing, treating, and empirical investigating of seizures and seizure related disorders.
    • 本发明涉及用于检测,预防,治疗和经验调查癫痫发作和癫痫发作相关疾病的组合物和方法(例如,西综合征,TSC,儿童期不存在癫痫,儿童良性发作性癫痫,青少年肌阵挛性癫痫(JME) 叶片性癫痫,额叶癫痫,Lennox-Gastaut综合征,枕叶性癫痫)。 特别地,本发明提供了通过抑制mTOR功能来检测,治疗,预防和经验性研究癫痫发作和发作相关疾病的组合物和方法。 此外,本发明提供了利用mTOR抑制剂(例如雷帕霉素)检测,预防,治疗和经验性研究癫痫发作和发作相关疾病的方法和组合物。
    • 6. 发明授权
    • Schottky barrier diode and method thereof
    • 肖特基势垒二极管及其方法
    • US07341932B2
    • 2008-03-11
    • US11251531
    • 2005-09-30
    • Shahid AslamDavid Franz
    • Shahid AslamDavid Franz
    • H01L21/28
    • H01L27/0814H01L31/108H01L31/1085H01L31/184Y02E10/544
    • Pt/n−GaN Schottky barrier diodes are disclosed that are particularly suited to serve as ultra-violet sensors operating at wavelengths below 200 nm. The Pt/n−GaN Schottky barrier diodes have very large active areas, up to 1 cm2, which exhibit extremely low leakage current at low reverse biases. Very large area Pt/n−GaN Schottky diodes of sizes 0.25 cm2 and 1 cm2 have been fabricated from n−/n+ GaN epitaxial layers grown by vapor phase epitaxy on single crystal c-plane sapphire, which showed leakage currents of 14 pA and 2.7 nA, respectively for the 0.25 cm2 and 1 cm2 diodes both configured at a 0.5V reverse bias.
    • 公开了特别适用于在低于200nm的波长下工作的紫外线传感器的Pt / n GaN肖特基势垒二极管。 Pt / n + GaN肖特基势垒二极管具有非常大的有效面积,高达1cm 2,在低反向偏压下表现出极低的漏电流。 尺寸为0.25cm 2和1cm 2的非常大面积的Pt / n-GaN - 肖特基二极管已经由n + 在单晶C平面蓝宝石上通过气相外延生长的GaN外延层,分别显示出0.25cm 2的漏电流为14pA和2.7nA, / SUP和2cm 2二极管,均以0.5V反向偏压配置。
    • 9. 发明申请
    • Method for diamond coating substrates
    • 基板金刚石涂层方法
    • US20050016444A1
    • 2005-01-27
    • US10491858
    • 2002-10-07
    • David FranzJohann Karner
    • David FranzJohann Karner
    • C23C16/27C30B7/00C30B21/02C30B28/06
    • C23C16/276C23C16/279
    • The present invention relates to a method for diamond coating of substrates in which the substrate is exposed in a vacuum atmosphere to a reactive gas mixture excited by means of a plasma discharge, the plasma discharge comprising a plasma beam (14) in an evacuated receiver (16) that is formed between a cathode chamber (1) and an anode (2), and the reactive gas mixture comprising a reactive gas and a working gas, the reactive gas in (9) and the working gas in (8) and/or (9) introduced into the receiver, and the receiver (16) is evacuated by a pump arrangement (15), and the hydrogen concentration of the reactive gas mixture being 0-45 vol. %.
    • 本发明涉及一种用于金刚石涂覆基板的方法,其中基板在真空气氛中暴露于通过等离子体放电激发的反应气体混合物中,等离子体放电包括在抽真空接收器中的等离子体束(14) 16),其形成在阴极室(1)和阳极(2)之间,反应气体混合物包含反应气体和工作气体,(9)中的反应气体和(8)中的工作气体和/ 或(9)引入接收器,并且接收器(16)由泵装置(15)抽空,并且反应气体混合物的氢浓度为0-45vol。 %