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    • 1. 发明授权
    • A.C. Solid state relay circuit and structure
    • 固态继电器电路及结构
    • US4535251A
    • 1985-08-13
    • US451792
    • 1982-12-21
    • Thomas HermanOliver Williams
    • Thomas HermanOliver Williams
    • H03K17/78H01L27/144H01L29/74H01L29/749H03K17/082H03K17/13H03K17/79G02B27/00
    • H03K17/79H01L27/1443H03K17/0824H03K17/136H01L2224/05553H01L2224/45124H01L2224/45144H01L2224/48091H01L2224/48137H01L2224/48139H01L2224/48227H01L2224/49175H01L2924/13033H01L2924/13091H01L2924/19107
    • A solid state a.c. relay has two separate and indentical power thyristors connected in anti-parallel arrangement. The power thyristors are optically switched, lateral conduction devices with anode and cathode electrodes on the same surface. Both are switched by illuminating their surface by reflected illumination from an LED. Each thyristor is provided with a respective control circuit which includes a MOSFET transistor for clamping its respective thyristor gate wherever the voltage across the thryistor exceeds a given absolute value or whenever there is a high dV/dt transient across the thyristor. The control circuit for the control transistor includes a capacitance divider, one element of which is the distributed capacitance of the control transistor. The control circuit components can be integrated into the same semiconductor chip which contains the respective power thyristor. Each of the two identical power chips and the LED chip are spaced from one another and mounted on an alumina substrate. Two lead wires are stitch-bonded to the electrode pads of the two chips to connect them in anti-parallel relation, and are then stitch-bonded to two respective conductive sections on the alumina substrate. The chips and the LED are covered with a cap having a reflective interior so that illumination from the LED is reflected toward the chip surfaces. The interior of the cap is filled with a transparent plastic. The assembly is housed in either a single in-line pin housing or dual in-line pin housing and the entire housing is suitably encapsulated.
    • 固态a.c. 继电器具有两个独立和独立的功率可控硅,以反并联方式连接。 功率晶闸管是光交换的,具有在相同表面上的阳极和阴极电极的侧向传导器件。 通过从LED的反射照明照亮其表面来切换两者。 每个晶闸管设置有相应的控制电路,该控制电路包括用于钳位其各自的晶闸管栅极的MOSFET晶体管,其中跨越晶闸管的电压超过给定绝对值,或者每当晶闸管上存在高dV / dt瞬态时。 用于控制晶体管的控制电路包括一个电容分压器,其一个元件是控制晶体管的分布电容。 控制电路组件可以集成到包含相应功率晶闸管的相同的半导体芯片中。 两个相同的功率芯片和LED芯片中的每一个彼此间隔开并且安装在氧化铝基板上。 两根引线与两芯片的电极焊盘进行针脚接合,将其以平行的方式连接起来,然后与氧化铝基板上的两个导电部分进行针脚接合。 芯片和LED被具有反射内部的盖子覆盖,使得来自LED的照明被反射到芯片表面。 盖的内部填充有透明塑料。 该组件被容纳在单个直列销外壳或双列直插销外壳中,并且整个壳体被适当地封装。
    • 4. 发明申请
    • SYSTEM FOR FAST, PROBABILISTIC SKELETAL TRACKING
    • 快速,可靠的跟踪跟踪系统
    • US20120056800A1
    • 2012-03-08
    • US12876418
    • 2010-09-07
    • Oliver WilliamsRyan Geiss
    • Oliver WilliamsRyan Geiss
    • G09G5/00
    • G06F3/011A63F13/10A63F13/213A63F13/428A63F2300/1093A63F2300/6027A63F2300/6045A63F2300/6607G06F3/0304G06K9/00369G06T7/251G06T2207/10021G06T2207/10028G06T2207/20076G06T2207/30196
    • A system and method are disclosed for recognizing and tracking a user's skeletal joints with a NUI system. The system includes one or more experts for proposing one or more skeletal hypotheses each representing a user pose within a given frame. Each expert is generally computationally inexpensive. The system further includes an arbiter for resolving the skeletal hypotheses from the experts into a best state estimate for a given frame. The arbiter may score the various skeletal hypotheses based on different methodologies. The one or more skeletal hypotheses resulting in the highest score may be returned as the state estimate for a given frame. It may happen that the experts and arbiter are unable to resolve a single state estimate with a high degree of confidence for a given frame. It is a further goal of the present system to capture any such uncertainty as a factor in how a state estimate is to be used.
    • 公开了一种用于识别和跟踪用户与NUI系统的骨骼关节的系统和方法。 该系统包括一个或多个专家,用于提出一个或多个骨骼假设,每个骨骼假设表示给定帧内的用户姿态。 每个专家通常在计算上是廉价的。 该系统还包括仲裁器,用于将来自专家的骨骼假设解析成给定帧的最佳状态估计。 仲裁者可以根据不同的方法对各种骨骼假设进行评分。 导致最高分数的一个或多个骨骼假设可以作为给定帧的状态估计返回。 可能发生专家和仲裁者无法以特定框架的高度置信度来解决单一状态估计。 本系统的另一个目标是捕获任何这样的不确定性,因为如何使用状态估计。