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    • 3. 发明授权
    • Soldering
    • 焊接
    • US06186388B1
    • 2001-02-13
    • US09296958
    • 1999-04-23
    • Steven P. SadlerPatrizio Vinciarelli
    • Steven P. SadlerPatrizio Vinciarelli
    • B23K3700
    • H05K3/34B23K1/0016B23K1/203B23K2101/42
    • The invention features soldering parts (e.g., printed circuit boards) by indexing the parts sequentially and continuously through a series of processing stations. Flux may be applied to precise areas of the parts at a flux station, and the flux station may include a rough part locator that roughly locates a part indexed into the flux station and a precise part locator that precisely locates the part. The flux station may further include a guide rail for supporting the part and a mechanism for raising and lowering the guide rail. The flux station may include a flux sprayer for applying flux to the part, where the flux sprayer includes an air valve, a flux valve, and a controller coupled to activate and deactivate separately the air valve and the flux valve. The controller may activate the air valve before activating the flux valve and deactivate the flux valve before deactivating the air valve.
    • 本发明的特征在于焊接部件(例如,印刷电路板)通过一系列处理站顺序地和连续地索引零件。 助焊剂可以在焊剂站处施加到零件的精确区域,并且焊剂站可以包括粗略部件定位器,其粗略地定位索引到焊剂站的部件和精确定位零件的精确零件定位器。 助焊站还可以包括用于支撑部件的导轨和用于升高和降低导轨的机构。 助焊剂站可以包括用于将助熔剂施加到部件的助焊剂喷雾器,其中助焊剂喷雾器包括空气阀,磁通阀和耦合以分开地使空气阀和磁通阀致动和去激活的控制器。 在激活通量阀之前,控制器可以激活空气阀,并且在停用空气阀之前停用通量阀。
    • 6. 再颁专利
    • System and apparatus for efficient heat removal from heat-generating electronic modules
    • 用于从发热电子模块有效散热的系统和装置
    • USRE44372E1
    • 2013-07-16
    • US13358062
    • 2012-01-25
    • Patrizio VinciarelliMichael B. Lafleur
    • Patrizio VinciarelliMichael B. Lafleur
    • H05K7/20F28F7/00
    • H05K7/209
    • This document describes apparatus and methods for a self-contained assembly having an encapsulated electronic module coupled to a heat removal device by a thermally conductive substance. In an illustrative example, the module includes at least one heat dissipating device thermally coupled by internal members to selected portions of a housing. The module housing includes a flat top surface with a perimeter adjoined to side surfaces. In one example, the heat removal device includes a cavity interior surface with an upper surface to match the module top surface, and side walls that match at least 50% by area of the selected portions of the module side surfaces. The cavity interior surface may receive at least 50% of the housing surface area. The matched portion of the cavity side surfaces may be at least 33% by area of the portion of the cavity upper surface that matches the module top surface.
    • 本文件描述了用于独立组件的装置和方法,其具有通过导热物质耦合到散热装置的封装的电子模块。 在说明性示例中,该模块包括至少一个由内部构件热耦合到壳体的选定部分的散热装置。 模块壳体包括具有与侧表面相邻的周边的平坦顶表面。 在一个示例中,除热装置包括具有上表面以匹配模块顶表面的空腔内表面和与模块侧表面的所选部分的至少50%的面积匹配的侧壁。 空腔内表面可以容纳至少50%的壳体表面积。 空腔侧表面的匹配部分可以与空腔上表面的与模块顶表面匹配的部分的至少33%的面积。
    • 7. 发明授权
    • Universal AC adaptor
    • 通用交流适配器
    • US08462527B1
    • 2013-06-11
    • US13102605
    • 2011-05-06
    • Patrizio Vinciarelli
    • Patrizio Vinciarelli
    • H02M7/00G05F1/40
    • H02M7/00H02M1/14H02M1/32H02M3/157H02M3/1584H02M3/33569H02M2001/0074H02M2001/0077H02M2001/0096
    • Power from an AC source at a source voltage is converted for delivery to a load at a DC load voltage, where the source voltage may vary between a high line voltage and a low line voltage in a normal operating range. DC-DC voltage transformation and isolation are provided in a first power conversion stage, the first stage having a CA input for receiving power from the source and a CA output for delivering a galvanically isolated unregulated AC adapter module (UAAM) voltage. First stage circuitry for performing the first power conversion stage is provided in a self-contained adapter module having input terminals for connection to the AC source and an output connected to the CA output for providing power to a second power conversion stage wherein the second power conversion stage is external to the adapter module.
    • 来自源电压的交流电源的功率被转换为在直流负载电压下传送到负载,其中源电压可以在正常工作范围内在高线路电压和低线路电压之间变化。 在第一功率转换级中提供DC-DC电压变换和隔离,第一级具有用于从源接收功率的CA输入和用于传送电隔离的未调节AC适配器模块(UAAM)电压的CA输出。 用于执行第一功率转换级的第一级电路被提供在具有用于连接到AC源的输入端子的独立适配器模块中,以及连接到CA输出端的输出端,用于向第二功率转换级提供电力,其中第二功率转换 舞台在适配器模块外部。
    • 8. 再颁专利
    • Energy storage and hold-up method and apparatus for high density power conversion
    • 用于高密度电力转换的储能和保持方法及装置
    • USRE44136E1
    • 2013-04-09
    • US13271980
    • 2011-10-12
    • Patrizio Vinciarelli
    • Patrizio Vinciarelli
    • H02M7/00G05F1/40
    • H02M3/33569H02M1/32H02M3/157H02M3/1584H02M2001/0074H02M2001/0077H02M2001/0096
    • A method and apparatus for adaptively configuring an array of voltage transformation modules is disclosed. The aggregate voltage transformation ratio of the adaptive array is adjusted to digitally regulate the output voltage for a wide range of input voltages. An integrated adaptive array having a plurality of input cells, a plurality of output cells, or a plurality of both is also disclosed. The input and output cells may be adaptively configured to provide an adjustable transformer turns ratio for the adaptive array or in the case of an integrated VTM, an adjustable voltage transformation ratio for the integrated VTM. A controller is used to configure the cells and provide digital regulation of the output. A converter having input cells configured as a complementary pair, which are switched out of phase, reduces common mode current and noise. Series connected input cells are used for reducing primary switch voltage ratings in a converter and enabling increased operating frequency or efficiency. An off-line auto-ranging power supply topology is disclosed. An auto-ranging converter module (“ACM”) includes 2 or more input cells magnetically coupled to an output cell providing auto-ranging, isolation, and voltage transformation. The ACM converts a rectified line voltage to a low DC bus voltage. The topology allows regulation and power factor correction to be provided at a low voltage increasing energy density and efficiency and reducing cost. A fully integrated PCM may also include a hold-up circuit, a DC input, and a power regulator with or without power factor correction. A PCM with PFC may combine the hold-up and smoothing capacitors for further increases in power density.
    • 公开了一种用于自适应地配置电压变换模块阵列的方法和装置。 调节自适应阵列的总电压变换比,以便在宽范围的输入电压下对输出电压进行数字调节。 还公开了具有多个输入单元,多个输出单元或多个二者的集成自适应阵列。 输入和输出单元可以被自适应地配置成为自适应阵列提供可调节的变压器匝数比,或者在集成VTM的情况下,用于集成VTM的可调电压变换比。 控制器用于配置单元并提供输出的数字调节。 具有被配置为互补对的输入单元的A转换器相互切换,降低了共模电流和噪声。 串联连接的输入单元用于降低转换器中的初级开关额定电压,并提高工作频率或效率。 公开了一种离线自动测距电源拓扑结构。 自动量程转换器模块(ACM)包括2个或更多个输入单元,与输出单元磁耦合,提供自动量程,隔离和电压转换。 ACM将整流的线路电压转换为低直流母线电压。 该拓扑结构允许在低电压提高的能量密度和效率下提供调节和功率因数校正,并降低成本。 完全集成的PCM还可以包括保持电路,DC输入和具有或不具有功率因数校正的功率调节器。 具有PFC的PCM可以组合保持和平滑电容器以进一步增加功率密度。
    • 10. 发明授权
    • Double-clamped ZVS buck-boost power converter
    • 双钳位ZVS降压 - 升压功率转换器
    • US07920391B1
    • 2011-04-05
    • US12501112
    • 2009-07-10
    • Patrizio Vinciarelli
    • Patrizio Vinciarelli
    • H02M3/335
    • H02M3/33569H02M1/34H02M1/4241Y02B70/126Y02B70/1433
    • A transformer-coupled buck-boost DC-DC power converter is disclosed. An active clamp circuit is provided to form a resonant circuit with the transformer to control the slew rate of the secondary current and allow the secondary switch to be turned ON at conditions of zero voltage and relatively low current. The characteristic resonant period of the active clamp transformer circuit may be less than the minimum converter operating period. A winding of the transformer is shunted during a clamp phase to retain energy in the transformer. ZVS phases are provided to reduce switching losses when switches in the converter are turned ON. An energy-storage phase may be varied to control the amount of energy stored per operating cycle. An input-storage phase may transfer energy to the clamp capacitor during a series of converter operating cycles and transfer said energy to the secondary during different converter operating cycles.
    • 公开了一种变压器耦合降压 - 升压DC-DC电力转换器。 提供有源钳位电路以与变压器形成谐振电路,以控制次级电流的转换速率,并允许次级开关在零电压和相对低的电流条件下导通。 有源钳位变压器电路的特征谐振周期可能小于最小转换器工作周期。 变压器的绕组在钳位阶段被分流,以将能量保留在变压器中。 提供ZVS相以减少转换器中的开关导通时的开关损耗。 可以改变储能阶段以控制每个操作循环存储的能量的量。 输入存储阶段可以在一系列转换器操作周期期间将能量传递到钳位电容器,并且在不同的转换器操作周期期间将所述能量传递给次级。