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    • 61. 发明授权
    • Push pull adaptive capture
    • 推拉自适应捕获
    • US09146884B2
    • 2015-09-29
    • US12635625
    • 2009-12-10
    • B. Anil KumarCharles OgdenAsael DrorHao ZhangPaul Johan HsiehRicardo A. Baratto
    • B. Anil KumarCharles OgdenAsael DrorHao ZhangPaul Johan HsiehRicardo A. Baratto
    • G06F13/14
    • G06F13/14G06F9/452G06F9/45533H04L67/38
    • In various embodiments, a screen image may be divided into rectangles, and a capture component may track changed rectangles and capture the screen upon receiving an indication. For small screen updates, the capture rate may be set to ˜30 captures per second to provide a lower latency. As the screen update size increases, the capture rate may be decreased to match an allocated bandwidth. The capture rate may be increased when available bandwidth increases and decreased as bandwidth decreases. For example, the capture rate may be decreased when downstream back pressure meets predefined criteria. The capture rate change may be effected gradually to avoid jerks and jumps. Varying the capture rate by also enable audio/video synchronization with varying bandwidth variations. Some embodiments may be extended to multiple monitor solutions.
    • 在各种实施例中,屏幕图像可以被划分为矩形,并且捕获组件可以跟踪改变的矩形并且在接收到指示时捕获屏幕。 对于小屏幕更新,捕获速率可能设置为每秒约30次,以提供更低的延迟。 随着屏幕更新大小的增加,可以减小捕获速率以匹配分配的带宽。 当可用带宽增加时,捕获速率可能会增加,并且随着带宽的减少而减少。 例如,当下游背压满足预定标准时,捕获率可能会降低。 捕获率变化可能会逐渐进行,以避免跳跃和跳跃。 通过改变带宽变化的音频/视频同步也可以改变捕获速率。 一些实施例可以扩展到多个监视器解决方案。
    • 63. 发明授权
    • Para-virtualized high-performance computing and GDI acceleration
    • Para虚拟化的高性能计算和GDI加速
    • US08941670B2
    • 2015-01-27
    • US13352121
    • 2012-01-17
    • Meher Prasad MalakapalliHao ZhangLin Tan
    • Meher Prasad MalakapalliHao ZhangLin Tan
    • G06F15/16G06T1/20
    • G06T15/005G06F9/4555G06F9/45558G06F2009/45579
    • The present invention extends to methods, systems, and computer program products for para-virtualized GPGPU computation and GDI acceleration. Some embodiments provide a compute shader to a guest application within a para-virtualized environment. A vGPU in a child partition presents compute shader DDIs for performing GPGPU computations to a guest application. A render component in a root partition receives compute shader commands from the vGPU and schedules the commands for execution at the physical GPU. Other embodiments provide GPU-accelerated GDI rendering capabilities to a guest application within a para-virtualized environment. A vGPU in a child partition provides an API for receiving GDI commands, and sends GDI commands and data to a render component in a root partition. The render component schedules the GDI commands on a 3D rendering device. The 3D rendering device executes the GDI commands at the physical GPU using a sharable GDI surface.
    • 本发明扩展到用于对虚拟GPGPU计算和GDI加速的方法,系统和计算机程序产品。 一些实施例在对虚拟化环境内为访客应用提供计算着色器。 子分区中的vGPU显示用于对客户机应用程序执行GPGPU计算的计算着色器DDI。 根分区中的渲染组件从vGPU接收计算着色器命令,并调度命令以在物理GPU上执行。 其他实施例在对虚拟化环境内为访客应用提供GPU加速的GDI呈现能力。 子分区中的vGPU提供用于接收GDI命令的API,并将GDI命令和数据发送到根分区中的渲染组件。 渲染组件在3D渲染设备上调度GDI命令。 3D渲染设备使用可共享的GDI表面在物理GPU上执行GDI命令。
    • 65. 发明授权
    • Vertically integrated module in a wafer level package
    • 晶圆级封装中的垂直集成模块
    • US08836449B2
    • 2014-09-16
    • US12869925
    • 2010-08-27
    • Wei PangHao Zhang
    • Wei PangHao Zhang
    • H03H9/54H03H9/05H03H9/205
    • H03H9/0547H03H9/0571
    • In one aspect of the present invention, an integrated wafer level package includes a first wafer and a second wafer spaced apart to define a first gap therebetween, a first bulk acoustic wave (BAW) filter disposed on the first wafer and a second BAW filter disposed on the second wafer, where the second BAW filter faces directly the first BAW filter to define a second gap therebetween, a seal ring disposed between the first wafer and the second wafer in the first gap such that a seal is formed surrounding the first BAW filter and the second BAW filter and defining a cavity between the seal ring and the first BAW filter and the second BAW filter, and at least one external contact accessible externally to the wafer level package and electrically coupled to at least one of the first BAW filter and the second BAW filter.
    • 在本发明的一个方面,集成晶片级封装包括第一晶片和间隔开以限定其间的第一间隙的第二晶片,布置在第一晶片上的第一体声波(BAW)滤波器和布置在第二晶体级BAW滤波器上的第二BAW滤波器 在所述第二晶片上,其中所述第二BAW过滤器直接面对所述第一BAW过滤器以在其间限定第二间隙,所述密封环设置在所述第一间隙中的所述第一晶片和所述第二晶片之间,使得围绕所述第一BAW过滤器形成密封件 和所述第二BAW过滤器,并且在所述密封环和所述第一BAW过滤器和所述第二BAW过滤器之间限定空腔,以及至少一个在所述晶片级封装外部可访问的外部接触件,并电耦合到所述第一BAW过滤器和 第二个BAW过滤器。
    • 67. 发明申请
    • RANKING OF ADVERTISEMENTS FOR DISPLAY ON A MOBILE DEVICE
    • 广告显示在移动设备上的排名
    • US20140214545A1
    • 2014-07-31
    • US13756439
    • 2013-01-31
    • Hao ZhangHong Yan
    • Hao ZhangHong Yan
    • G06Q30/02
    • G06Q30/0267G06Q30/0277
    • An online system ranks an advertisement for display on a user's mobile device based on a mobile friendliness score for the advertisement. The mobile friendliness score is calculated using information about the advertisement's landing page, such as feedback received for the landing page. The mobile friendliness score may also reflect additional information, such as information about the user to be presented with the advertisement, parameters of the mobile device on which the advertisement is to be presented, or user feedback associated with the advertisement. Based on the mobile friendliness score, the advertisement is ranked for presentation to the user via the mobile device. A higher ranking may increase the likelihood and/or frequency of presenting the advertisement via the user's mobile device.
    • 在线系统根据广告的移动友好性得分,对用户的移动设备上的广告进行排序。 使用关于广告着陆页的信息来计算移动友好度得分,例如收到的登陆页面的反馈。 移动友好性得分还可以反映附加信息,例如关于要呈现广告的用户的信息,要呈现广告的移动设备的参数,或与广告相关联的用户反馈。 基于移动友好度分数,该广告被排序以通过移动设备呈现给用户。 较高的排名可以增加通过用户的移动设备呈现广告的可能性和/或频率。
    • 68. 发明授权
    • Peptide based peroxidase inhibitors and methods of using same
    • 基于肽的过氧化物酶抑制剂及其使用方法
    • US08673847B2
    • 2014-03-18
    • US13500040
    • 2010-10-05
    • Hao ZhangYang ShiHao XuKirkwood A. Pritchard, Jr.
    • Hao ZhangYang ShiHao XuKirkwood A. Pritchard, Jr.
    • A61P9/12A61P19/02A61K38/06
    • A61K38/06A61K38/02
    • The present invention provides peptide-based peroxidase inhibitors having the formula AA1-AA2-AA3, wherein AA1 is a positively charged, negatively charged or neutral amino acid, AA2 is a redox active amino acid, and AA3 is an amino acid possessing a reducing potential such that AA3 is capable of undergoing a redox reaction with a radical of amino acid AA2 or a retro or retro-inverso analog thereof. The result of such a combination is a highly effective inhibitor of peroxidase activity that has potent anti-inflammatory properties in widely diverse models of vascular disease and injury. Exemplary tripeptides effectively inhibit peroxidase mediated LDL oxidation, increase vasodilation in SCD mice, inhibit eosinophil infiltration and collagen deposition in asthma mice, inhibit acute lung injury, and decrease ischemic injury of the heart.
    • 本发明提供具有式AA1-AA2-AA3的肽类过氧化物酶抑制剂,其中AA1为带正电荷的带负电荷或中性氨基酸,AA2为氧化还原活性氨基酸,AA3为具有还原电位的氨基酸 使得AA3能够与氨基酸AA2的基团或其逆反相或类似物进行氧化还原反应。 这种组合的结果是高度有效的过氧化物酶活性抑制剂,其在广泛多样化的血管疾病和损伤模型中具有有效的抗炎特性。 示例性三肽有效抑制过氧化物酶介导的LDL氧化,增加SCD小鼠的血管舒张,抑制哮喘小鼠嗜酸性粒细胞浸润和胶原蛋白沉积,抑制急性肺损伤,减少心脏缺血性损伤。
    • 70. 发明授权
    • Methods for fabricating integrated circuits with narrow, metal filled openings
    • 用于制造具有窄的金属填充开口的集成电路的方法
    • US08652890B2
    • 2014-02-18
    • US13408291
    • 2012-02-29
    • Sven SchmidbauerDina H. TriyosoElke ErbenHao ZhangRobert Binder
    • Sven SchmidbauerDina H. TriyosoElke ErbenHao ZhangRobert Binder
    • H01L21/338
    • H01L29/66545H01L21/28088H01L29/4966H01L29/51H01L29/7833
    • Methods are provided for fabricating an integrated circuit that includes metal filled narrow openings. In accordance with one embodiment a method includes forming a dummy gate overlying a semiconductor substrate and subsequently removing the dummy gate to form a narrow opening. A layer of high dielectric constant insulator and a layer of work function-determining material are deposited overlying the semiconductor substrate. The layer of work function-determining material is exposed to a nitrogen ambient in a first chamber. A layer of titanium is deposited into the narrow opening in the first chamber in the presence of the nitrogen ambient to cause the first portion of the layer of titanium to be nitrided. The deposition of titanium continues, and the remaining portion of the layer of titanium is deposited as substantially pure titanium. Aluminum is deposited overlying the layer of titanium to fill the narrow opening and to form a gate electrode.
    • 提供了用于制造包括金属填充的窄开口的集成电路的方法。 根据一个实施例,一种方法包括形成覆盖半导体衬底的虚拟栅极,随后去除虚拟栅极以形成窄的开口。 在半导体衬底上沉积一层高介电常数绝缘体和一层功函数确定材料。 工作层功能确定材料暴露于第一室中的氮气环境。 在氮气环境的存在下,将钛层沉积在第一室中的窄开口中,以使钛层的第一部分被氮化。 钛的沉积继续,并且钛层的剩余部分沉积为基本上纯的钛。 沉积铝覆盖在钛层上以填充窄开口并形成栅电极。