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    • 3. 发明授权
    • Multi-channel constant current source and illumination source
    • 多通道恒流源和照明源
    • US08598807B2
    • 2013-12-03
    • US13114181
    • 2011-05-24
    • Shu JiHaoran WuFred C. Lee
    • Shu JiHaoran WuFred C. Lee
    • H05B37/02
    • H05B33/0815H05B33/0851Y02B20/347
    • A multi-channel circuit having respective channels powered through transformers having primary windings connected in series allows substantially equal constant currents to be provided through all channels by cross-regulation while only a single channel need be monitored and controlled. The variation in current between channels is generally small and largely insensitive to imbalances between voltages on loads due, for example, to different numbers of LEDs in series connected strings in illumination devices and can be further reduced by inverse coupling between inductors in respective channels. Efficiency is improved through reduction in the number of stages of the constant current source since the respective channels provided both DC-to-DC conversion and constant current regulation.
    • 具有由具有串联连接的初级绕组的变压器供电的各个通道的多通道电路允许通过交叉调节提供通过所有通道的基本相等的恒定电流,而仅需要监测和控制单个通道。 通道之间的电流变化通常较小,并且对负载电压之间的不平衡很大程度上不敏感,这是由于例如照明装置中串联连接的串中的不同数量的LED,并且可以通过相应通道中的电感器之间的反耦合来进一步减少。 由于各个通道提供DC-DC转换和恒定电流调节,所以通过减少恒流源的级数来提高效率。
    • 4. 发明申请
    • MULTI-CHANNEL CONSTANT CURRENT SOURCE AND ILLUMINATION SOURCE
    • 多通道恒流源和照明源
    • US20110291574A1
    • 2011-12-01
    • US13114181
    • 2011-05-24
    • Shu JiHaoran WuFred C. Lee
    • Shu JiHaoran WuFred C. Lee
    • H05B37/02
    • H05B33/0815H05B33/0851Y02B20/347
    • A multi-channel circuit having respective channels powered through transformers having primary windings connected in series allows substantially equal constant currents to be provided through all channels by cross-regulation while only a single channel need be monitored and controlled. The variation in current between channels is generally small and largely insensitive to imbalances between voltages on loads due, for example, to different numbers of LEDs in series connected strings in illumination devices and can be further reduced by inverse coupling between inductors in respective channels. Efficiency is improved through reduction in the number of stages of the constant current source since the respective channels provided both DC-to-DC conversion and constant current regulation.
    • 具有由具有串联连接的初级绕组的变压器供电的各个通道的多通道电路允许通过交叉调节提供通过所有通道的基本相等的恒定电流,而仅需要监测和控制单个通道。 通道之间的电流变化通常较小,并且对负载电压之间的不平衡很大程度上不敏感,这是由于例如照明装置中串联连接的串中的不同数量的LED,并且可以通过相应通道中的电感器之间的反耦合来进一步减少。 由于各个通道提供DC-DC转换和恒定电流调节,所以通过减少恒流源的级数来提高效率。
    • 5. 发明申请
    • Switching Capacitor-PWM Power Converter
    • 开关电容 - PWM功率转换器
    • US20110140679A1
    • 2011-06-16
    • US12638261
    • 2009-12-15
    • Ming XuKe JinFred C. Lee
    • Ming XuKe JinFred C. Lee
    • G05F1/10
    • H02M3/158H02M3/073H02M3/1584
    • A power converter topology operates as a switching capacitor (capacitive voltage divider) converter during a first, preferably short portion of a switching cycle to provide excellent dynamic transient response and as a pulse width modulated converter during a second portion of a switching cycle to provide flexibility of voltage regulation and generality of application. This topology can be made self-driven and is capable of zero voltage switching. Therefore the power converter can be used as one of a plurality of branches of a multi-phase converter to enhance transient response. The respective branches can also be independently optimized for particular load levels and can be operated independently in a phase shedding manner to improve efficiency at low load. Further, the power converter or respective branches of a multi-phase power converter are compatible with non-linear control to further improve dynamic response.
    • 电源转换器拓扑在开关周期的第一,最好是短的部分期间用作开关电容器(电容分压器)转换器,以在开关周期的第二部分期间提供优异的动态瞬态响应和作为脉冲宽度调制的转换器,以提供灵活性 的电压调节和一般性的应用。 该拓扑结构可以是自驱动的,并且能够进行零电压切换。 因此,功率转换器可以用作多相转换器的多个分支之一,以增强瞬态响应。 相应的分支也可以针对特定的负载水平独立地进行优化,并且可以以相位切换方式独立地进行操作,以在低负载下提高效率。 此外,功率转换器或多相功率转换器的各个分支与非线性控制兼容以进一步改善动态响应。
    • 6. 发明授权
    • Common mode noise reduction using parasitic capacitance cancellation
    • 使用寄生电容消除的共模降噪
    • US07602159B2
    • 2009-10-13
    • US11678864
    • 2007-02-26
    • Shuo WangFred C. Lee
    • Shuo WangFred C. Lee
    • G05F1/00G05F1/33
    • H04B15/02
    • A negative capacitance is developed by configuring an inductor as two inversely or opposingly coupled windings having different numbers of turns and connecting a capacitance to a center tap between the two windings. The negative capacitance is developed on the side of the inductor having the winding with the greater number of turns. The negative capacitance so developed may advantageously be used to cancel any capacitance or parasitic capacitance desired for reducing power loss, increasing switching speed or reducing or eliminating common mode noise in a switched circuit such as a switched power converter
    • 通过将电感器配置为具有不同匝数的两个反相或相对耦合的绕组并将电容连接到两个绕组之间的中心抽头来开发负电容。 在具有较大匝数的绕组的电感器的侧面上产生负电容。 这样显影的负电容可以有利地用于消除所需的电容或寄生电容,以减少功率损耗,提高开关速度,或者减少或消除诸如开关功率转换器的开关电路中的共模噪声
    • 7. 发明申请
    • GENERALIZED CANCELLATION OF INDUCTOR WINDING CAPACITANCE
    • 电感式绕组电容的一般取消
    • US20080094160A1
    • 2008-04-24
    • US11850762
    • 2007-09-06
    • Shuo WangFred C. Lee
    • Shuo WangFred C. Lee
    • H01F29/02
    • H01F17/062H01F27/34H01F27/38H03H7/427H03H2001/0035H03H2001/005H03H2001/0057H03H2001/0092
    • An inductor device or filter such as an electromagnetic interference (EMI) filter which includes an inductor provides cancellation of parasitic capacitance of the inductor and extends high frequency performance of the inductor or filter by using an inductor network (a special case being split windings) and including capacitors to couple signals corresponding to those which are passed by the equivalent parallel capacitance of an inductor of a network of inductors such as in a multi-phase power supply of voltage converter to another inductor terminal, ground or an inductor in the ground return path. Cancellation of parasitic capacitance is provided for differential mode and common mode windings where the windings may be either inductively coupled or not. Forming the windings as a bifilar winding to increase coupling coefficient further improves performance and allows cancellation (as distinct from parasitic capacitance reduction) and avoidance of resonance in circuits in which an inductor is not permitted in the ground return path. Different inductance values and turns ratios of any or all inductors of the network, including multi-phase networks, may be accommodated.
    • 包括电感器的电感器件或滤波器例如电磁干扰(EMI)滤波器提供消除电感器的寄生电容,并通过使用电感器网络(特殊情况是分流绕组)来延长电感器或滤波器的高频性能,以及 包括电容器,用于耦合与电感器网络的电感器的等效并联电容(例如在电压转换器的多相电源)中的等效并联电容相对应的信号到另一个电感器端子,接地或接地返回路径中的电感器 。 为差分模式和共模绕组提供寄生电容的取消,其中绕组可以感应耦合或不耦合。 将绕组形成为双线绕组以增加耦合系数进一步提高性能并允许抵消(与寄生电容降低不同)和避免在接地返回路径中不允许电感器的电路中的谐振。 可以适应网络的任何或所有电感器(包括多相网络)的不同的电感值和匝数比。
    • 8. 发明授权
    • Power converters having output capacitor resonant with autotransformer leakage inductance
    • 具有输出电容器的功率转换器与自耦变压器漏感谐振
    • US07254047B2
    • 2007-08-07
    • US11094434
    • 2005-03-31
    • Yuancheng RenJulu SunMing XuFred C. Lee
    • Yuancheng RenJulu SunMing XuFred C. Lee
    • H02M3/335
    • H02M3/33592H02M3/3376H02M2001/0058Y02B70/1433Y02B70/1475Y02B70/1491
    • Power converters having reduced body diode conduction loss, reduced reverse recovery loss and lower switching noise, among other benefits, have a resonant capacitor Cr connected across an unfiltered output. The resonant capacitor Cr resonates with the leakage inductance Lk of the transformer. The resonant capacitor and leakage inductance are selected such that ½ a LC resonance period is equal to an ON time of each secondary switch S1 S2. The resonance provides zero current switching for secondary switches S1 S2, eliminates zero body diode conduction during dead times, and eliminates reverse recovery losses in the secondary switches. The present invention is applicable to many different circuit topologies such as full bridge, active clamp forward, push-pull forward, and center-tap secondary. The present converters provide high energy conversion efficiency and high frequency operation.
    • 具有降低的体二极管导通损耗,降低的反向恢复损耗和较低开关噪声以及其他优点的功率转换器具有连接在未滤波输出端的谐振电容器Cr。 谐振电容器Cr与变压器的漏电感Lk共振。 谐振电容器和漏电感被选择为使得LC共振周期的1/2相当于每个次级开关S 1 S 2的导通时间。 谐振为次级开关S 1 S 2提供零电流开关,在死区时间消除零体二极管导通,并消除次级开关中的反向恢复损耗。 本发明可应用于许多不同的电路拓扑,例如全桥,有源钳前进,推挽前进和中心抽头次级。 本转换器提供高能量转换效率和高频操作。
    • 9. 发明授权
    • Current sensing in multiple coupled inductors by time constant matching to leakage inductance
    • 通过时间常数匹配到漏电感的多个耦合电感中的电流检测
    • US07233132B1
    • 2007-06-19
    • US11341874
    • 2006-01-30
    • Yan DongMing XuFred C. Lee
    • Yan DongMing XuFred C. Lee
    • G05F1/575G05F1/618
    • H02M3/1584H02M2001/0009
    • Voltage regulators often have coupled output inductors because coupled output inductors provide improvements in cost and efficiency. Coupled inductors are often used in multi-phase voltage regulators. Feedback control of voltage regulators often requires accurate and responsive sensing of output current. Provided is a technique for accurately sensing the magnitude of output current in coupled inductors. An RC circuit (comprising a resistor and capacitor in series) is connected in parallel with the coupled inductor. The inductor has a leakage inductance Lk and a DC (ohmic) resistance of DCR. The resistor and capacitor are selected such that an RC time constant is equal to an L/R time constant of Lk/DCR. With the matching time constants, a sum of voltages on the capacitors is accurately proportional to a sum of currents flowing in the output inductors. Also provided is a technique for sensing current when an uncoupled center tap inductor is present.
    • 电压调节器通常具有耦合输出电感器,因为耦合的输出电感器提供了成本和效率的改进。 耦合电感通常用于多相电压调节器。 电压调节器的反馈控制通常需要精确和响应的输出电流感测。 提供了一种用于精确地感测耦合电感器中的输出电流的大小的技术。 RC电路(包括串联的电阻器和电容器)与耦合的电感器并联连接。 电感器具有DCR的漏电感Lk和DC(欧姆)电阻。 选择电阻器和电容器使得RC时间常数等于Lk / DCR的L / R时间常数。 使用匹配的时间常数,电容器上的电压之和与输出电感器中流过的电流之和正好成正比。 还提供了当存在非耦合中心抽头电感器时感测电流的技术。
    • 10. 发明授权
    • Buck converter with high efficiency gate driver providing extremely short dead time
    • 具有高效栅极驱动器的降压转换器提供极短的死区时间
    • US07184281B2
    • 2007-02-27
    • US10969215
    • 2004-10-21
    • Yuancheng RenFred C. Lee
    • Yuancheng RenFred C. Lee
    • H02M3/335G01F17/00G05F1/40
    • H02M1/38H01F3/14H01F30/04H02M3/1588H03K17/08122Y02B70/1466
    • A buck converter has a driver circuit with a drive transformer that provides complementary voltages to the buck converter switches. The drive transformer may have two secondary windings, with one winding for each converter switch. As one converter switch experiences a rising gate voltage, the other converter switch experiences a falling gate voltage. Since both converter switches are controlled by the same driver switches, the converter switch dead time is very small. Preferably, at least one converter switch has a voltage shift circuit connected to the gate electrode. Adjustment of the voltage shift magnitude will advance or delay the turn on and turn off times of the switch. Hence, the converter switch dead time can be precisely adjusted by varying the voltage shift magnitude. Preferably, the converter switch dead time is less than 1 or 2 nanoseconds.
    • 降压转换器具有驱动电路,其中驱动变压器为降压转换器开关提供互补电压。 驱动变压器可以具有两个次级绕组,每个转换器开关有一个绕组。 当一个转换器开关经历上升栅极电压时,另一个转换器开关经历栅极电压下降。 由于两个转换器开关由相同的驱动器开关控制,所以转换器开关死区时间非常小。 优选地,至少一个转换器开关具有连接到栅电极的电压移位电路。 电压偏移幅度的调整将推进或延迟开关的导通和关闭时间。 因此,可以通过改变电压偏移量来精确地调整转换器开关死区时间。 优选地,转换器开关死区时间小于1或2纳秒。