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    • 1. 发明申请
    • AIRFOIL WITH FLOW DEFLECTOR
    • 具有流量偏移器的空气流
    • WO2009138773A1
    • 2009-11-19
    • PCT/GB2009/050471
    • 2009-05-06
    • AIRBUS UK LIMITEDMING, Xiao
    • MING, Xiao
    • B64C3/28B64C3/58B64C21/02F15D1/00
    • B64C3/28B64C3/58B64C21/02B64C2230/20F01D5/145Y02T50/166Y02T50/673
    • An airfoil (3) comprising a high pressure surface (4); a low pressure surface (5); a leading edge (6) where the high and low pressure surfaces meet at the front of the airfoil; and a trailing edge (7) where the high and low pressure surfaces meet at the back of the airfoil. A porous flow deflector (8) extends from the low pressure surface. The porous flow deflector is attached to the low pressure surface at a position which is closer in a chord-wise sense to the leading edge than to the trailing edge. That is, the percentage chord distance between the leading edge and the position where the flow deflector is attached is less than 50%. The porous flow deflector comprises a plurality of flow deflection members (8) each spaced progressively further from the low pressure surface in a direction away from the low pressure surface, and each flow deflection member is angled down to the rear relative to a local tangent of the low pressure surface. The porous flow deflector deflects air towards the low pressure surface as it passes through the porous flow deflector.
    • 包括高压表面(4)的翼型件(3); 低压表面(5); 前缘(6),其中高低压表面在翼型的前部相交; 和后缘(7),其中高低压表面在翼型的后部相交。 多孔流向偏转器(8)从低压表面延伸。 多孔流动偏转器在与前缘相比更靠近前缘的位置附接到低压表面。 也就是说,前缘与导流板相连的位置之间的弦弦距离小于50%。 多孔流动偏转器包括多个流动偏转构件(8),每个流动偏转构件(8)在远离低压表面的方向上从低压表面进一步间隔开,并且每个流动偏转构件相对于局部切线 低压表面。 当多孔导流板通过多孔导流板时,空气朝向低压表面偏转。
    • 3. 发明申请
    • INTRINSIC COMPARATOR DELAY FOR OUTPUT CLAMPING CIRCUIT
    • 用于输出钳位电路的内部比较器延迟
    • WO2015032079A1
    • 2015-03-12
    • PCT/CN2013/083109
    • 2013-09-09
    • TEXAS INSTRUMENTS INCORPORATEDMING, XiaoJIAN, Wang
    • MING, XiaoJIAN, Wang
    • H02M3/137G05F1/40G05F1/56
    • H03K5/08H02H9/041H03K3/02337H03K5/2481
    • A circuit includes a comparator to generate a clamp output signal by monitoring an output voltage and a reference voltage that sets a clamp voltage threshold for the output voltage. The clamp output signal is employed to limit an input voltage from exceeding the clamp voltage threshold. A first switch supplies the reference voltage to the comparator. The first switch forms a portion of an intrinsic delay circuit with a first feedback path in the comparator to mitigate ripple in the output voltage. A second switch is coupled to the input voltage and a second feedback path in the comparator. The second switch forms another portion of the intrinsic delay circuit with the first switch, the first feedback path, and the second feedback path in the comparator to further mitigate ripple in the output voltage.
    • 电路包括比较器,用于通过监视输出电压和为输出电压设定钳位电压阈值的参考电压来产生钳位输出信号。 采用钳位输出信号来限制输入电压超过钳位电压阈值。 第一个开关将参考电压提供给比较器。 第一开关在比较器中形成具有第一反馈路径的固有延迟电路的一部分,以减轻输出电压中的纹波。 第二开关耦合到比较器中的输入电压和第二反馈路径。 第二开关通过比较器中的第一开关,第一反馈路径和第二反馈路径形成本征延迟电路的另一部分,以进一步减轻输出电压中的纹波。
    • 5. 发明申请
    • Whole Genome Mapping by DNA Sequencing With Linked-Paired-End Library
    • 通过DNA测序的全基因组映射与链接配对文库
    • US20150344873A1
    • 2015-12-03
    • US14728223
    • 2015-06-02
    • Ming XiaoJustin Sibert
    • Ming XiaoJustin Sibert
    • C12N15/10G06F19/18C12Q1/68
    • C12N15/1068C12Q1/6806G06F19/18
    • The present invention relates to innovative means of generating sequence-linked DNA fragments and subsequent uses of such linked DNA fragments for de novo haplotype-resolved whole genome mapping and massively parallel sequencing. In various embodiments described herein, the methods of the invention relate to methods of generating paired-end nucleic acid fragment sharing common linker nucleic acid sequences using a nicking endonuclease, a T7 endonuclease, a restriction enzyme, or a transposase, methods of analyzing the nucleotides sequences from the linked-paired-end sequenced fragments, and methods of de novo whole genome mapping. Thus, the methods of this invention allow establishing sequence contiguity across the whole genome, and achieving high-quality, low-cost de novo assembly of complex genomes.
    • 本发明涉及产生序列连接的DNA片段的创新方法以及随后使用这种连接的DNA片段进行从头单体型解析的全基因组测绘和大规模并行测序。 在本文描述的各种实施方案中,本发明的方法涉及使用切口内切核酸酶,T7内切核酸酶,限制酶或转座酶产生分支共同连接体核酸序列的配对末端核酸片段的方法,分析核苷酸的方法 来自连锁配对末端测序片段的序列,以及从头整体基因组测绘的方法。 因此,本发明的方法允许跨整个基因组建立序列连续性,并实现复杂基因组的高品质,低成本的从头装配。
    • 7. 发明授权
    • Mounting apparatus with rotating member for retaining and buffering data storage device
    • 具有用于保持和缓冲数据存储装置的旋转构件的安装装置
    • US08576558B2
    • 2013-11-05
    • US13222673
    • 2011-08-31
    • Yun-Lung ChenLiang-Chin WangJian HuYu-Ming Xiao
    • Yun-Lung ChenLiang-Chin WangJian HuYu-Ming Xiao
    • H05K7/00
    • G06F1/187F16B5/0635
    • A mounting apparatus for mounting a data storage device includes a sliding member, a drive bracket, and a rotating member. The drive bracket includes a first side plate. A sliding groove is defined in the first side plate. The sliding member is received in the sliding groove. The rotating member is pivotally mounted to the first side plate. A curled piece and an arm are located on opposite ends of the rotating member. The arm defines a restricting room. The rotating member is adapted to rotate on the first side plate between a first position and a second position. In the first position, the curled piece abuts the first side plate and is elastically deformed by the first side plate, and the sliding member is disengaged from the restricting room. In the second position, the curled piece is released, and the restricting room receives and restricts the sliding member therein.
    • 用于安装数据存储装置的安装装置包括滑动构件,驱动支架和旋转构件。 驱动支架包括第一侧板。 在第一侧板中限定滑动槽。 滑动构件容纳在滑动槽中。 旋转构件枢转地安装到第一侧板。 卷曲片和臂位于旋转构件的相对端。 手臂定义了限制室。 旋转构件适于在第一位置和第二位置之间在第一侧板上旋转。 在第一位置,卷曲件邻接第一侧板并且由第一侧板弹性变形,并且滑动构件从限制室脱离。 在第二位置,卷曲片被释放,限制室接收并限制滑动构件。
    • 8. 发明授权
    • Mounting apparatus for data storage device
    • 数据存储装置用安装装置
    • US08434726B2
    • 2013-05-07
    • US13272538
    • 2011-10-13
    • Yun-Lung ChenLiang-Chin WangJian HuYu-Ming XiaoHai-Qing Zhu
    • Yun-Lung ChenLiang-Chin WangJian HuYu-Ming XiaoHai-Qing Zhu
    • G06F1/16
    • G06F1/187
    • A mounting apparatus for mounting a data storage device on a bracket includes a locating member fixed on the bracket. The bracket includes a sidewall defining a first through hole and a second through hole at a sidewall back. The sidewall defines a first fixing slot and a second fixing slot at a sidewall front. The data storage device defines a fixing hole. A fixing portion is located on a first end of the locating member corresponds to the first through hole, the second through hole and the fixing hole. A locking portion is located on a second end of the locating member corresponds to the first fixing slot and the second fixing slot. The data storage device is fixed on a first position and a second position of the bracket.
    • 用于将数据存储装置安装在支架上的安装装置包括固定在支架上的定位构件。 支架包括限定第一通孔的侧壁和在侧壁背面的第二通孔。 侧壁在侧壁前侧限定第一固定槽和第二固定槽。 数据存储装置定义一个固定孔。 固定部分位于定位构件的第一端上,对应于第一通孔,第二通孔和固定孔。 锁定部分位于定位构件的第二端上,对应于第一固定槽和第二固定槽。 数据存储装置固定在支架的第一位置和第二位置。
    • 10. 发明申请
    • MOUNTING APPARATUS FOR DATA STORAGE DEVICE
    • 数据存储设备的安装设备
    • US20120305720A1
    • 2012-12-06
    • US13272538
    • 2011-10-13
    • YUN-LUNG CHENLIANG-CHIN WANGJIAN HUYU-MING XIAOHAI-QING ZHU
    • YUN-LUNG CHENLIANG-CHIN WANGJIAN HUYU-MING XIAOHAI-QING ZHU
    • H05K7/00
    • G06F1/187
    • A mounting apparatus for mounting a data storage device on a bracket includes a locating member fixed on the bracket. The bracket includes a sidewall defining a first through hole and a second through hole at a sidewall back. The sidewall defines a first fixing slot and a second fixing slot at a sidewall front. The data storage device defines a fixing hole. A fixing portion is located on a first end of the locating member corresponds to the first through hole, the second through hole and the fixing hole. A locking portion is located on a second end of the locating member corresponds to the first fixing slot and the second fixing slot. The data storage device is fixed on a first position and a second position of the bracket.
    • 用于将数据存储装置安装在支架上的安装装置包括固定在支架上的定位构件。 支架包括限定第一通孔的侧壁和在侧壁背面的第二通孔。 侧壁在侧壁前侧限定第一固定槽和第二固定槽。 数据存储装置定义一个固定孔。 固定部分位于定位构件的第一端上,对应于第一通孔,第二通孔和固定孔。 锁定部分位于定位构件的第二端上,对应于第一固定槽和第二固定槽。 数据存储装置固定在支架的第一位置和第二位置。