会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • A SUPPLY CIRCUIT FOR SUPPLYING A LOAD
    • 用于提供负载的电源电路
    • WO2010095070A2
    • 2010-08-26
    • PCT/IB2010/050552
    • 2010-02-08
    • PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHKONINKLIJKE PHILIPS ELECTRONICS N.V.SAUERLAENDER, Georg, S.
    • SAUERLAENDER, Georg, S.
    • H02M1/32
    • H02M1/32
    • Supply circuits (1) for supplying loads (40) are provided with rectification circuits (20) comprising first AC terminals (2) for exchanging first AC signals with AC sources (50) and comprising second AC terminals (3) for exchanging second AC signals with the loads (40) and with protection circuits (30) for protecting the loads (40) against spikes. The protection circuits (30) comprise inputs (6) for receiving first DC signals from first DC terminals (4) of the rectification circuits (20) and comprise outputs (7) for providing second DC signals to second DC terminals (5) of the rectification circuits (20). These supply circuits (1) have relatively fast responses. The protection circuits (30) may comprise detector circuits (31) for detecting values of (parts of) the first DC signals crossing threshold values and limiter circuits (32) for, in response to detection results, limiting values of the second DC signals. The rectification circuits (20) may comprise four diodes (21-24).
    • 用于提供负载(40)的供电电路(1)设置有整流电路(20),其包括用于与AC源(50)交换第一AC信号的第一AC端子(2),并且包括用于交换第二AC信号的第二AC端子 具有负载(40)和用于保护负载(40)抵抗尖峰的保护电路(30)。 保护电路(30)包括用于从整流电路(20)的第一直流端(4)接收第一直流信号的输入(6),并且包括用于向第二直流端(5)提供第二直流信号的输出(7) 整流电路(20)。 这些电源电路(1)具有相对较快的响应。 保护电路(30)可以包括检测器电路(31),用于检测跨越阈值的第一DC信号(部分)和限制器电路(32)的值,用于响应于检测结果,第二DC信号的限制值。 整流电路(20)可以包括四个二极管(21-24)。
    • 2. 发明申请
    • HARMONIC COMPENSATION CIRCUIT AND METHOD FOR AN LED LIGHT UNIT
    • 谐波补偿电路和LED灯组件的方法
    • WO2009153696A1
    • 2009-12-23
    • PCT/IB2009/052417
    • 2009-06-08
    • PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHKONINKLIJKE PHILIPS ELECTRONICS N. V.SAUERLAENDER, Georg, S.
    • SAUERLAENDER, Georg, S.
    • H02J3/01G05F1/70H05B33/08
    • H02J3/01H05B33/0815Y02E40/40
    • The present invention relates to a harmonic compensation circuit for compensating at least the third harmonic in the input current (I mains ) drawn by an LED light source (1) from a mains voltage supply (2), comprising: a signal input (21, 22) for receiving a first input signal proportional to the input voltage (V in ) of said LED light source (1) and a second input signal (V sh ) proportional to the LED current (I LED ) of said LED light source (1), a signal output (25) for outputting a compensation current (Icomp), a processing unit (24a, 24b) for comparing said second input signal (V sh ) to a reference signal (V Rb , V R7 ) and for generating said compensation current (I comp ) based on said comparison, the sum of said compensation current (I comp ) and said LED current (I LED ) being proportional to the input voltage (V in ) of said LED light source (1) and said compensation current (I comp ) being provided for minimizing at least the third harmonic in the input current (I mains ) drawn by said LED light source (1) from said mains voltage supply (2).
    • 谐波补偿电路技术领域本发明涉及一种谐波补偿电路,用于至少补偿由LED光源(1)从电源电压(2)引出的输入电流(Imains)中的三次谐波,包括:信号输入端 ),用于接收与所述LED光源(1)的输入电压(Vin)成比例的第一输入信号和与所述LED光源(1)的LED电流(ILED)成比例的第二输入信号(Vsh),信号 用于输出补偿电流(Icomp)的输出(25),用于将所述第二输入信号(Vsh)与参考信号(VRb,VR7)进行比较并用于产生所述补偿电流(Icomp)的处理单元(24a,24b) 所述比较,所述补偿电流(Icomp)和所述LED电流(ILED)与所述LED光源(1)的输入电压(Vin)和所述补偿电流(Icomp)成比例的和被提供用于使至少 由所述LED灯所绘制的输入电流(Imains)中的三次谐波 (1)从电源电压(2)。
    • 3. 发明申请
    • DRIVING A LIGHT-EMITTING DIODE
    • 驱动发光二极管
    • WO2009109888A1
    • 2009-09-11
    • PCT/IB2009/050820
    • 2009-03-02
    • PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHKONINKLIJKE PHILIPS ELECTRONICS N.V.RADERMACHER, Harald, J. G.SAUERLAENDER, Georg
    • RADERMACHER, Harald, J. G.SAUERLAENDER, Georg
    • H05B33/08H02M1/42
    • H05B33/0803H05B33/0821
    • An input stage (10)ofan apparatus (1) for driving a light-emitting diode (40-42) receives a signal from a power supply (30-32), and an output stage (20) supplies a current to the light-emitting diode (40-42). The peak value divided by the average value of thecurrent forms a ratio. The driving efficiency is improved by providing the input stage (10) with an arrangement (11) for reducing thisratio bymanipulation of the signal,without the necessity of usingany smoothing capacitors / inductors. The manipulation may comprise an addition of a frequency component to the signalor an adaptation of an amplitude of a frequency component ofthe signal.Thisfrequency component may be a third and/or fifth and/or seventh harmonic frequency component of a fundamental frequency component of the signal. The arrangement (11) may comprise a resonant tankwhichmay need to be tuned to the frequency component of the signal.
    • 用于驱动发光二极管(40-42)的装置(1)的输入级(10)接收来自电源(30-32)的信号,并且输出级(20) 发光二极管(40-42)。 峰值除以电流的平均值形成比率。 通过为输入级(10)提供用于通过操纵信号来减少该比例的装置(11)而不需要使用任何平滑电容器/电感器来提高驱动效率。 该操作可以包括向信号器添加频率分量或对信号的频率分量的幅度进行自适应。该频率分量可以是信号的基频分量的第三和/或第五和/或第七谐波频率分量 。 布置(11)可以包括可能需要调谐到信号的频率分量的谐振槽。
    • 4. 发明申请
    • CONTROL CIRCUIT OF A DIMMER ASSEMBLY FOR DIMMING AN ENERGY-SAVING LAMP
    • 用于调节节能灯的调光器组件的控制电路
    • WO2009101544A2
    • 2009-08-20
    • PCT/IB2009/050417
    • 2009-02-02
    • PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHKONINKLIJKE PHILIPS ELECTRONICS N.V.SAUERLAENDER, Georg
    • SAUERLAENDER, Georg
    • H05B41/392
    • H05B41/3924
    • The present invention relates to a control circuit of a dimmer assembly for dimming an energy-saving lamp, in particular a gas discharge lamp, the dimmer assembly comprising a dimmer circuit and the control circuit for controlling the output current of the dimmer assembly. The control circuit draws a relatively large initial current which is larger than or equal to the TRIAC latching current (iiatch) when the dimmer is turned on in order to bring it to a conducting state, and draws a second TRIAC current which is larger than or equal to the TRIAC holding current (ihoid) for the remainder of the dimmer conduction angle. The latching time (T latch ) is usually significantly smaller than the TRIAC holding time (T hold ) and is typically of the order of some 10 to 100 μs. In a simple embodiment, the holding current (i hold ) is constant and equal to the latching current (i latch ).
    • 本发明涉及一种用于调光节能灯,特别是气体放电灯的调光器组件的控制电路,该调光组件包括调光器电路和用于控制调光组件的输出电流的控制电路。 当调光器接通时,控制电路绘制大于或等于TRIAC锁存电流(ii口)的相对大的初始电流,以便使其达到导通状态,并绘制大于或等于的第二TRIAC电流 等于TRIAC保持电流(ihoid),用于其余的调光器导通角。 锁定时间(Tlatch)通常明显小于TRIAC保持时间(Thold),通常约为10至100μs。 在一个简单的实施例中,保持电流(ihold)是恒定的并且等于锁存电流(ilatch)。
    • 7. 发明申请
    • BLEEDER CIRCUIT
    • BLEEDER电路
    • WO2011013060A2
    • 2011-02-03
    • PCT/IB2010/053393
    • 2010-07-27
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.PHILIPS INTELLECTUAL PROPERTY & STANDARDS GMBHDEPPE, CarstenSAUERLAENDER, Georg
    • DEPPE, CarstenSAUERLAENDER, Georg
    • H05B33/08
    • H05B33/0815
    • Bleeder circuits (1) for combinations of phase cutting dimmers (2) and light emitting diode circuits (3) comprise active circuitry (4) to increase a number of options. The active circuitry (4) may comprise a current limiting circuit (5) for limiting a current flowing through the bleeder circuit (1). The active circuitry (4) may comprise a voltage detecting circuit (6) for activating or deactivating,in response to a detection result,the current limiting circuit (5) and may comprise control circuitry such as a micro processor circuit (7) for controlling the current limiting circuit (5) and may comprise a control circuit (9) for using information derived from a current flowing through the light emitting diode circuit (3) for controlling the current limiting circuit (5) and for controlling at least a part of the light emitting diode circuit (3) that comprises anti- parallel light emitting diodes (31-32) or serial and/or parallel light emitting diodes (33- 36).
    • 用于相切切换调光器(2)和发光二极管电路(3)的组合的泄放电路(1)包括增加若干选项的有源电路(4)。 有源电路(4)可以包括用于限制流过泄放电路(1)的电流的限流电路(5)。 有源电路(4)可以包括电压检测电路(6),用于响应于检测结果而激活或去激活电流限制电路(5),并且可以包括控制电路,例如微处理器电路(7),用于控制 (5)并且可以包括控制电路(9),用于使用从流经发光二极管电路(3)的电流获得的信息来控制限流电路(5)并且用于控制至少一部分 包括反平行发光二极管(31-32)或串联和/或平行发光二极管(33-36)的发光二极管电路(3)。
    • 8. 发明申请
    • WIRELESS POWER TRANSMISSION SYSTEM
    • 无线电力传输系统
    • WO2009122355A3
    • 2010-04-01
    • PCT/IB2009051346
    • 2009-03-31
    • PHILIPS INTELLECTUAL PROPERTYKONINKL PHILIPS ELECTRONICS NVSAUERLAENDER GEORGWAFFENSCHMIDT EBERHARD
    • SAUERLAENDER GEORGWAFFENSCHMIDT EBERHARD
    • H02J5/00
    • H02J50/10H01F17/0006H01F38/14H02J5/005H02J7/025H02J50/70H02J50/80
    • A Wireless power transmission system comprises a base unit (1) with multiple magnetic field generator circuits and a device (10), separable from said base unit (1) having a receiving inductor, adapted to receive power inductively when said device (10) is in proximity to one of said generator circuits, wherein said base unit (1) comprises a controller (3), configured to determine a transmission circuit (2') from said generator circuits when said receiving inductor is in proximity to said transmission circuit (2'), whereupon said transmission circuit (2') is operated to generate a first magnetic field (8), having a first phase, to induce a current in said receiving inductor and at least one of the remaining generator circuits is operated as a compensation circuit (2", 52, 82) to generate a second magnetic field (21), having an opposite phase to said first phase.
    • 一种无线电力传输系统,包括具有多个磁场发生器电路的基本单元(1)和与所述基座单元(1)可分离的设备(10),具有接收电感器,适于当所述设备(10)为 在所述发生器电路之一附近,其中所述基本单元(1)包括控制器(3),其被配置为当所述接收电感器接近所述发送电路(2)时,从所述发电机电路确定发送电路(2') '),于是所述传输电路(2')被操作以产生具有第一相位的第一磁场(8),以在所述接收电感器中感应电流,并且剩余的发电机电路中的至少一个作为补偿 电路(2“,52,82)以产生具有与所述第一相位相反的相位的第二磁场(21)。