CN1631060B - 感应电力灯组件 - Google Patents

感应电力灯组件 Download PDF

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CN1631060B
CN1631060B CN028292286A CN02829228A CN1631060B CN 1631060 B CN1631060 B CN 1631060B CN 028292286 A CN028292286 A CN 028292286A CN 02829228 A CN02829228 A CN 02829228A CN 1631060 B CN1631060 B CN 1631060B
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secondary coil
capacitor
sleeve
lamp assembly
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CN1631060A (zh
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D·W·巴尔曼
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Philps Intellectual Property Enterprise Co Ltd
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    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
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    • H05B41/00Circuit arrangements or apparatus for igniting or operating discharge lamps
    • H05B41/14Circuit arrangements
    • H05B41/26Circuit arrangements in which the lamp is fed by power derived from dc by means of a converter, e.g. by high-voltage dc
    • H05B41/28Circuit arrangements in which the lamp is fed by power derived from dc by means of a converter, e.g. by high-voltage dc using static converters
    • H05B41/295Circuit arrangements in which the lamp is fed by power derived from dc by means of a converter, e.g. by high-voltage dc using static converters with semiconductor devices and specially adapted for lamps with preheating electrodes, e.g. for fluorescent lamps
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    • H05B47/25Circuit arrangements for protecting against overcurrent
    • BPERFORMING OPERATIONS; TRANSPORTING
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Abstract

一种被构造用以感应接收来自初级线圈的功率的灯组件。该灯组件包括具有次级线圈的灯电路和串联连接的灯。在第一方面,灯电路包括与灯和次级线圈串联连接的电容器以调谐电路至谐振。电容器优选具有基本上等于或略小于次级线圈的电抗和灯的阻抗之和的电抗值。在第二方面,灯组件包括一个完全封闭灯电路的密封透明套筒,以使透明套筒完全封闭并且不能透过。透明套筒优选为灯套筒本身,在其内部设有次级线圈、电容器和任何所需的启动器机构。

Description

感应电力灯组件
本发明是于2000年6月12日提交,申请号为No.90/592,194,标题为“流体处理系统(Fluid Treatment System)”的美国专利申请的部分继续申请。
技术领域
本发明涉及照明设备,更具体是涉及与感应电力照明应用相关的灯组件。
背景技术
尽管不是应用很广,感应耦合照明系统是已公知的。传统的感应耦合照明系统一般包括具有由电源驱动的初级线圈(或“一次线圈”)的初级电路,以及具有感应接收初级线圈功率的次级线圈(或“二次线圈”)的次级电路。感应耦合相对于传统的直接电连接具有多种优点。首先,感应耦合灯较硬连线的灯更加安全和容易连接和断开。直接电连接在安装和拆除灯组件时一般必需操作电连接器。这一般比较费事还会引起电击的危险。一般的,电连接器需要至少部分暴露,因此增加了电击的危险。另一方面,对于感应耦合灯不需要任何电连接器的操作。实际上,灯组件的次级线圈简单的只需放置在初级线圈的附近以将功率提供给灯组件。第二通过省去电连接器而消除了伴随常规电连接器的问题,诸如常规的电连接器易于腐蚀和磨损,从而提高了系统的可靠性。当环境条件使电连接器处于潮湿条件时,这些问题对户外装置更为敏感。当重复使用时,机械连接装置也易于磨损而最终失效。第三,感应耦合灯固有的可以减少灯组件上的电危害。如上面提到的,灯组件与电源是电绝缘的。所有的电力必须通过感应从电源传送到灯组件。由于存在着对可以感应传送至灯组件的功率的内在限定,灯组件中的功率是受到限制的,电危害的风险被降低了。
尽管感应耦合灯提供了多种优于直接连接灯的重要优点,但是它们存在着重大的缺点。感应耦合固有的较直接电连接低效。这一部分是由于需要电能来产生和维持电磁场。常规感应耦合的低效率主要是由拙劣的调谐电路导致的。这些低效率被初级线圈和次级线圈中的震动产生的噪音和吸热的增加证明。这一效率问题在高功率灯应用中变得严重。而且已有的灯电路需要精确定位初级线圈和次级线圈以提供合理的效率水平。这需要更精确的公差,并且限制灯组件和整个灯的设计和结构。
灯具行业面临的最大的可靠性问题之一是由电线或其他导电器贯穿灯套筒而引起的。典型的,电线通过玻璃管座穿进灯的内部。由于玻璃不易于粘附和密封导线,因此存在材料上的风险会导致在电线穿过灯的位置发生泄漏。尽管已努力优化密封,但仍然存在重大的可靠性问题。
对于常规感应电力灯,还存在伴随着灯电路元件暴露在环境中而产生的可靠性问题,比如,来自环境中的水或者湿气可能会损害电路元件。为了解决这一问题,至少一个感应电力照明系统将整个灯组件密闭在密封的套筒中。Hutchisson等的美国专利US 5,264,997种披露了一种灯,该灯安装在印刷电路板上,与次级线圈间隔多个接线端予.印刷电路板包括各种感应耦合操作所需的电子元件.分隔外壳和透镜部分相互密封而形成围绕灯、印刷电路板和次级线圈的不漏外壳.外壳具体的设置为适合接受次级线圈和与容纳初级线圈的灯座相互安装的形状.尽管密封外壳提供了改进的对环境条件的保护,但是它相对来说体积大,并且仅仅提供按照透镜方向透射的光线.
由此可见,仍然需要一种效率高、在各种条件下具有改进的可靠性、并且容易适合多种不同灯结构的感应耦合灯组件。
发明内容
上述问题通过本发明得以解决,其中灯组件中设有灯、为灯提供电力的感应次级线圈和电容器。电容器与灯和次级线圈串联,并且其在工作频率下的电抗约等于或者略小于灯和次级线圈在工作温度下的合成阻抗。结果,灯电路在谐振或者接近谐振条件下工作。对于放电灯,串联的电容器还起到限制次级电路中的电流的作用,排除电流非控制的增加,不然对于放电灯会发生上述问题。
另一方面,本发明提供一种感应电力灯组件,其中整个灯组件电路密封在透明套筒中。优选地,整个灯组件电路,包括次级线圈和任何相关的电容器,被密封在灯的套筒里。在可选实施例中,次级线圈和灯,以及任何电容器和启动装置被容纳在第二封闭的塑料、特富龙、玻璃或者石英套筒中,并且没有电线或其他部件穿过该套筒。在第二套筒与所述灯套筒之间的空间优选抽空或者填充功能气体以提供所需水平的热传导或热绝缘。
在另一方面,本发明提供远程启动开关以提供对放电灯的预加热。在灯启动期间的特定时间段内,开关使在次级线圈上的电极短路。此外,该电路还可以具有串联的电阻器以限制预加热电流。在一个实施例中,开关为优选由在灯控制电路中的相应线圈产生的电磁场来启动的电磁开关。
本发明提供一种用于感应电力照明的简单廉价的灯组件。由于灯组件在谐振或接近谐振条件下进行工作,因此具有高的功率因数以及高的效率。通过生热性减少了能量消耗,并且即使在相对高功率的应用下,也提供感应耦合的安静工作。次级线圈的效率不需要初级线圈与次级线圈的精确对准,因此允许灯和灯组件在布置和结构上具有更大的自由度。密封套筒提供具有改进的对环境防护的灯电路,而没有限制光线从灯的传输。尽管具有许多光源,发出的光谱基于套管材料的特定的透射性也许有损耗,比如,有些材料对紫外光不是高透射性的。本发明允许功能性气体截留在密封的套筒中,以增加或减少灯与环境的隔离程度。此外,通过将整个灯电路密闭在灯套筒中,可省去对穿过套筒的电线或者电导线的需要。这在大大减少生产损失的同时,在很大程度上提高了灯的可靠性。同时,本发明的电磁开关提供了一种常规启动电路的廉价和可靠的备选方案。
以下,结合附图对本发明进行详细说明,本发明的这些以及其他目的、优点和特征变得更加明显。
附图说明
图1为根据本发明一个实施例的灯组件的截面图;
图2为垂直于图1所示截面图的图1所示灯组件的截面图;
图3为根据本发明一个实施例的灯电路的示意图;
图4为具有白炽灯的另一种可选灯组件的截面图;
图5为具有带通用基座的白炽灯的另一种可选灯组件的截面图;
图6为具有卤素灯的另一种可选灯组件的截面图;
图7为具有在灯套筒外侧设有基座的卤素灯的另一种可选灯组件的截面图;
图8为具有不带基座的卤素灯的另一种可选灯组件的截面图;
图9为具有不带外套筒的荧光灯的另一种可选灯组件的截面图;
图10为具有T-5或T-8型荧光灯的另一种可选灯组件的截面图;
图11为用在图10所示灯组件中的灯电路的示意图;
图12为用在图10所示灯组件中的另一种可选灯电路的示意图;
图13为用在图10所示灯组件中的又一种可选灯电路的示意图;
图14为用在图10所示灯组件中的另外一种可选灯电路的示意图;
图15为具有PL型荧光灯的另一种可选灯组件的截面图;
图16为具有PL型荧光灯的另一种可选灯组件垂直于图15所示截面的截面图;
图17为另一种可选灯组件的局部截面分解图;
图18为图16所示另一种可选灯组件的一部分的截面图;
图19为另一种可选灯组件的一部分的截面图;以及
图20为又一种可选灯组件的一部分的截面图。
具体实施方式
根据本发明一个实施例的灯组件如图1和2所示,并且一般被标记为10。为了公开的目的,本发明首先结合被改装在38瓦条件下使用的例如用于水处理装置中的常规PL-S型11瓦紫外线(紫外线)灯进行描述。灯组件10通常包括灯电路12和外套筒70。灯电路12包括次级线圈14、电容器16和灯18,全部串联(参见图3)。次级线圈14感应接收来自相关镇流器(未示出)的初级线圈(未示出)的功率。串联电容器16经过将在后面详细描述的特定调谐,以使灯电路在特定操作条件下谐振操作。整个灯电路12完全封闭在外套筒70中,包括次级线圈14、电容器16和灯18。至少一部分外套筒70是透明的,并且没有电线或其他元件穿过。
尽管结合PL-S型38瓦紫外线灯对下述实施例进行说明,本发明旨在或适于用于各种类型或样式的灯,包括放电灯,白炽灯,脉冲白光灯和发光二极管(“LED”)灯。本公开提供多种显示白炽灯和放电灯的其他可选择的实施例。这些实施例用以解释本发明的广泛应用和适用性,并非是对权利要求范围的限定。
多种用于启动本发明的感应电力灯组件的镇流器对本领域技术人员来说是已公知的。因此,不再对镇流器进行详细描述。特别适用于说明性实施例中的PL-S型38W紫外线灯的镇流器在于2000年6月12日提交的,申请号为No.90/592194,标题为“流体处理系统(FluidTreatment System)”的美国专利申请中公开,该申请在此作为参考被整体引用。该镇流器适于为本发明公开的所有实施例提供有效操作。
I.灯的结构
如上所述,PL-S型38W紫外线灯优选包括用于封闭灯电路12以保护其不受环境影响(参见图1和图2)的外套筒70.外套筒70优选包括主体90和盖92.主体90一般为具有开口端和封闭端的圆柱形管.灯电路12安装进主体90后,盖92在主体90的开口端上密封以完全封闭灯电路12.灯电路12一般包括次级线圈14、电容器16和灯18.如下所述,灯电路12还可以包括启动器35(参见图2).灯18为一般常用的具有石英套管的PL-S型灯,该石英套管具有两个相互连接共同限定处室28的平行的腿部72a-b.室28被部分抽空并且含有所需放电气体,比如水银蒸汽.管座32a-b设置在每个腿部72a-b的底部.一对普通的或者定制设计的电极26a-b被设置在室28内,在每个管座32a-b的顶部安装一个.在这个实施例中,外套管70优选由石英制成以高效地透过紫外光.在非紫外线的应用中,外套管可由玻璃、特富龙或者塑料制成,部分取决于灯产生的热和灯的工作环境.例如,另一种可选择的外套管由一定长度具有密封相对端(未示出)的特富龙管制成.特富龙管可以被装配在灯组件的剩余部分上,并且其相对端可被卷起,或者密封以封闭特富龙套筒.优选的,特富龙管的每一端利用热和压力向自己折回并卷曲.
灯组件10还包括基座50和支板86,以将灯18的相对端保持在外套筒内。基座50一般为圆柱形且其尺寸适于被紧密装配在外套筒70内。除了保持灯18的一端外,基座50还容纳灯电路12的多种电子组件。基座50限定出圆形的凹槽80以容纳次级线圈14的绕组,一对缝隙82a-b以容纳每个腿部72a-b的底端,和一对孔隙84a-b以容纳电容器16和任何所需的启动器35。灯组件10还可以包括设置在次级线圈和电极36a-b之间的热反射器58。热反射器58的形状优选为匹配在其安装位置的灯套筒52的端面形状,并且优选由常用的反射材料制备,比如铝或在适合基底上的铝箔。支板86一般为盘形并且其尺寸的设定使其紧密地装配在外套筒70内。支板86优选包括凸出部88,以摩擦装配在石英套筒52的腿部72a-b之间。基座50和支板86的精确设计和结构在不同的应用中是变化的,取决于外套管70和灯电路12的各种部件的设计和结构。基座50和支板86优选由可以经受高温的材料制备,比如陶瓷或者高温塑料。
在一个实施例中,在外套筒70和灯套筒52之间的空隙96被构造以提供具有所需导电性或绝缘性的灯组件。例如,空隙96可以被抽空以使灯与冷的环境隔绝。另一种选择是,空隙96被填充较重的气体,如氩和氖,或者填充流体以在热环境下传导热。在热环境下从灯传导热将有助于保护灯不致过热,并且有助于提供最大强度。
在大多数应用中,灯组件10还可以包括可使镇流器感应灯组件10存在的机构。这使镇流器只有当安装灯组件10时才能启动初级线圈(未示出)。尽管感应机构在许多应用中并非必要的,特别是在低功率应用中,但是其确实提供了更有效的设计以节约能量、减少生热,并且保护初级线圈免于伴随持续的操作引起的某种类型的损害。在一个实施例中,灯组件10包括感应磁体60和镇流器(未示出),或者相关的控制电路,包括被感应磁体60启动的簧片开关(未示出)。更具体而言,当灯组件10被安装时,感应磁体60设置在靠近簧片开关(未示出)处。来自感应磁体60的磁场导致簧片开关62关闭,由此向镇流器或控制电路提供信号表明灯组件10已处于适当的位置。感应磁体优选安装在基座50上,但是也可以安装在其他所需的位置。另一种选择是,感应磁体60和簧片开关(未示出)可以被机械开关(未示出)取代。比如,开关可被设置在通过灯组件10的安装而机械关闭的位置上。另一种选择是提供灯以手动启动的on/off开关,例如有选择地开和关镇流器的拨动开关。
II.灯电路
现在将结合上述的PL-S型38W紫外线灯(参见图1和2)说明灯电路12.如上所述,灯电路12通常包括灯18、次级线圈14和电容器16.灯电路12的示意图如图3所示.在这一实施例中,灯电路包括单个次级线圈14,优选由小直径导线22构成的线圈构成.次级线圈14的精确特性将作为初级线圈(未示出)和负载(如灯)的函数而随着应用的不同而变化.导线22优选常用的磁导线或绞合线(LITZ),取决于功率设定和热耗散.导线优选环绕环形凹槽80内的基座50进行缠绕,这使次级线圈14具有中空芯.如果需要,中空芯24可以被其他常用芯取代.导线的类型、导线匝数和芯的直径(以及由此得到的导线匝的直径)将随着应用的不同而变化,取决于各种因素例如初级线圈和灯18的负载特性.选择次级线圈14的电感作为工作频率和负载(即灯)在供给功率下的阻抗的函数.更具体而言,次级线圈14的电感由下式确定:
在38瓦的实施例中,次级线圈14被构造以接收来自在大约100千赫的频率下工作的初级线圈的功率。次级线圈14包括72匝导线而初级线圈包括135匝导线。在所述的38瓦实施例中,次级线圈14在100千赫频率时具有196微亨的电感值,具有大约123欧姆的电抗值。次级线圈14优选安置在灯组件10的基座50中。选择次级线圈的直径,使其紧密装配在基座50内。次级线圈14通过引线51a-b与灯18电连接。尽管次级线圈优选为圆形,其也可以依据应用的不同而变化。例如,次级线圈可以为方形、椭圆形、三角形、梯形、六边形、或者甚至为球形。次级线圈优选与初级线圈同心设置在外部或内部,或者两个线圈可端对端地设置。
选择电容器16,以考虑机械约束提供最佳的功率因数校正,由此在灯电路中提供谐振。功率因数优选.90或更大,并且更优选为.96或更大,但是在一些应用中低一些的值也是可以接受的。没有足够的功率因数修正,次级线圈中的电抗性电流将会反射回到初级线圈中,成为更低阻抗负载。这将导致在工作功率和电流条件下的向上漂移,以及以在初级电路中的热增量方式产生的更高耗损。这一效果与初始的预期是相反的,但这确实是由于串联谐振初级电路的反射阻抗的相反性质产生的。试验已经揭示在因数低于.90时,在初级线圈中的电抗性电流和损耗增加得非常快。这可能具有对效率有不良影响的材料,尤其是当这些损耗被附加到由耦合因子和dc阻抗导致的损耗时。总的来说,选择电容器16,以具有约等于或者略小于灯18在其工作温度时其电阻阻抗和次级线圈14的电抗阻抗。类似于次级线圈14的电感,选择电容器的电抗作为给定功率下的工作频率和负载(即灯)阻抗的函数。更具体而言,根据下式选择电容器的电抗:
Figure G028292286D00071
在该电抗值时,电容器16、次级线圈14和灯18将在接近谐振条件下进行工作,提供高的功率因数并由此提供高效率。在说明性实施例中,电容器16为接近12.9纳法(nf)。该值将响应初级线圈(未示出)、次级线圈14和/或灯18的变化而改变。
如上所述的次级线圈和电容器公式给出了粗略大致的所需电容和次级线圈电抗值.为了得到更精确的值(并且由此精确调谐功率因数,限流效果和总体工作参数),可以使用循环测试程序.在一些应用中需要该循环测试以得到在所需次级电路中的效率水平.这些设计的工作参数包括预加热、触发电压和工作电流.所有的这些参数可以随比率、电容和电感的变化,通过调谐过程来配置.
虽然电容器16优选在灯18处于工作温度时根据次级线圈14和灯18进行调谐,电容器16也可以在其它时间调谐以提供最优的效率。比如,在需要大电流以启动灯的放电灯中,本发明可以用于在启动时增益电路。在这样的应用中,选择电容以具有约等于次级线圈和电灯在启动温度(而不是工作温度)下的联合阻抗的电抗。这将增加灯电路在启动期间的效率,允许使用具有更低电流最大值的镇流器。
根据等离子体的性质,放电灯试图维持电压在基本上恒定的固有电压值处。结果,当次级线圈14产生超过灯的固有电压的电压时,灯将消耗过多的功率。由于放电灯的阻抗响应电流而降低,因此灯电压产生不断增加的更大的电流直至电路极限或自毁。上述问题通过电容器16得以解决,其作用是限制供给灯的电流。电流限制功能是电容器的固有特性。已确定使次级线圈处于谐振的电容值约等于能提供合适电流限制的电容值。相应地,已确定在本发明中通过选择电容值以提供合适的整体功率因数获得电流限制功能。
本发明被并入放电灯组件时,灯电路12优选包括常用的启动器35(参见图2),辉光灯泡或者其他相等同的装置。启动器和辉光灯泡是已公知的,因此不再在本申请中详细描述。在放电灯组件的一个实施例中,常用启动器被远程启动开关替代,比如电磁开关34(参见图3)。电磁开关34在电极36a-b之间串联的接入,由此有选择地允许开关34关闭电极36a-b间的电路。当关闭时,开关34允许电流直接流过电极36a-b,而不是通过需要电弧击穿气体。结果是,当开关34关闭时,电极36a-b被快速加热。优选基本垂直于初级线圈电磁场的方向设置电磁开关34,以使电磁开关34不被初级线圈的电磁场启动。取而代之,分离的线圈38设置在电磁开关34附近,在此其可以被充电以选择性关闭开关34。微处理器40优选控制线圈38的工作,由此控制电磁开关。微处理器40被编程在每次灯电路被通电时,在一个固定时间间隔内给线圈38充电。这关闭电磁开关,同时短路电极36a-b。另一种选择是,微处理器40可以被常用的单次计时器电路(未示出)替代,单次计时器被构造用以在每次灯启动时,给线圈充电所需时间。
III.其他可选实施例
灯组件的配置在不同的应用中也许有显著的变化,大体上取决于灯的类型和相关的功率要求。本发明可以进行改进以允许在更广泛种类的现有的照明系统中使用。下列备选实施例描述了适于各种用途的多种可选实施例。这些备选实施例旨在说明本发明的广泛的适应性,而非是穷举性的。
图4示出了将本发明应用于白炽灯中的另一可选实施例.在该实施例中,灯组件110包括玻璃套筒152和塑料基座150.玻璃套筒152一般为灯泡形,并且包括向里弯折并且通常为圆柱形的管座132.次级线圈114围绕管座132安装在玻璃套筒152内.灯丝136以常规方式安装在次级线圈上向上延伸至玻璃套筒152的球形部分.与上述实施例不同,本实施例中基座150装配到玻璃套筒152的外部.基座被构造与相应的插座(未示出)相互固定.所示基座150一般为圆形并且包括被构造用以快速配合进入相应的插座(未示出)中的环形凹进部156.基座150还包括上凸缘158以提供用于从插座(未示出)上移走灯组件110的抓紧边.但是,基座150可以具有多种不同的结构以允许灯组件与各种不同的插座机械连接.例如,基座可以是带有外螺纹的.如图所示,灯组件110优选包括感应磁体160.感应磁体160可以被装配到基座150底面上的相应的保持壁162上.如上所述,感应磁体160与磁性启动开关协同作用,以提示初级线圈或者控制电路灯组件110的存在.这使初级线圈只有在灯组件110处于适当的位置时才被通电.如图5所示,白炽灯组件110’可以被构造以能与常规的通用基座进行工作.在该实施例中,基座150’包括一对安装插脚156a-b,其可以与常规的通用基座灯插座(未示出)中的匹配插槽互锁.
图6示出了应用于卤素灯中的本发明的另一可选实施例。在该实施例中,灯组件210一般包括石英套筒252和陶瓷基座250。选择套筒252和基座250的材料,以能承受卤素灯工作时特别高的温度。石英套筒252优选完全密封,并且不包括任何贯穿的元件,如导线或其他电连接器。灯丝236、次级线圈214和电容器216被封闭在石英套筒252内。在一些应用中,电容器216对于提供可接受的效率水平不是必需的,因此相应可以去掉。灯组件210进一步包括设置在灯丝236和次级线圈214之间的热反射器258。基座250可包括四分之一圈的螺纹256a-b,其在相应的插座(未示出)中相互螺纹配合。基座250可具有另一种可选择的结构以便于安装在插座上。感应磁体260优选安装到基座250的内底面上。
在可选择的卤素灯组件210’中,石英套筒252’被缩短以刚好终止于基座250’的颈部(参见图7)内。次级线圈214’被移到石英套管252’的外部,并且设置在基座250’中。在这个实施例中,次级线圈214’与灯丝236’热量的绝缘。该实施例还可以包括感应磁体260’。
在另一个可选的卤素灯组件210”中,基座被省去,而感应磁体260”被移入密封石英套筒252”的内部。如图8所示,石英套筒252”限定了完全围绕套筒252”延伸的环形的凹进部256”,以使灯组件210”可被快速配合进入相应的插座(未示出)中。
另一个可选择的实施例如图9所示。在该实施例中,灯组件310包括设置在灯套筒352外部的基座350,并且灯组件310不包括外套筒。灯套筒352封闭电极336a-b以及所需的放电气体如水银蒸汽。次级线圈314、电容器316、任何所需的启动机构(比如常用的启动器或者如上所述的磁性启动开关)以及所有电连接器被容纳在基座350内,但是在灯套管352外部。基座350被构造用以与常规通用基座相对应,并且包括一对安装插脚356a-b,其可以与灯插座(未示出)中的匹配插槽互锁。基座350也可以选择被构造用以与其他插座结构相匹配。感应磁体360优选安装在基座350中。如果需要,该灯组件310也可以增加外套筒(未示出)以增加其对环境的防护。如果包括外套管,外套筒优选除了基座350围绕整体灯组件延伸。基座350被安装在外套筒的外部以使其可与灯插座相互配合。
图10和图11示出了应用于T5或T8型荧光灯中的本发明的另一可选实施例.灯组件410包括加长的玻璃套筒452和一对次级线圈414a-b,每个位于套筒452的一端.由于两个次级线圈414a-b处于不同的物理位置,电源优选被构造用以包括两个分离的初级线圈(未示出),分别为两个次级线圈414a-b提供电能.两个初级线圈设置在邻近相应的次级线圈处.典型地在线圈414a-b之间均匀分配电能,但是并非严格必须.优选次级线圈414a-b被设置相反极性,每一个初级线圈和次级线圈结合被构造,用以保持给灯供电所需的半电压和电流.套筒452优选包括在每一相对端形成的环形管座432a-b以容纳次级线圈414a-b.电极436a-b与每一个次级线圈414a-b电连接.电容器416串联连接在两个次级线圈414a-b之间.计算该实施例中的电容器416a-b的值的优选方法是,假定只使用一个线圈,根据上述的方法(与披露的第一个实施例有关)对电路进行初始分析.然后将这种假定情况下的单个电容值二等分,作为本实施例中两个电容416a-b中每一个的电容值.可选用的端盖420a-b,优选由铝制成,被装配在套筒452的相对端上.灯组件410可以包括常用启动器435,如图11所示.在这个实施例中,需要在两个次级线圈414a-b之间提供导体498a-b.导体498a-b优选包含在灯套管452中.作为另一种可选方式,磁性开关434a-b,或者其他远程启动开关可以替代常规启动器.如图12所示,灯组件410’包括串联安装在每个次级线圈414a-b’和其相应的灯丝或电极436a-b’之间的分离开关434a-b.通过关闭该开关434a-b,从每个次级线圈414a-b’的电能直接提供给相应的灯丝.在这个实施例中,在次级线圈414a-b’之间只有一个导体498’.电容器416’沿导体498’串联连接.
图13示出了用于双线圈灯组件410”的另一可选电路。在这个电路中,在两个次级线圈414a-b”之间不需要导体。代替的是,每一个次级线圈414a-b”包括专用开关434a-b”和专用电容器416a-b”。灯控制器优选被构造用以使两个开关434a-b”同时打开和关闭。计算电容器416a-b”的电容值的最优方法是,假定只使用一个次级线圈根据第一个实施例公开方法对电路进行初始分析。然后二等分该假定配置的单个电容器的电容值,以作为本实施例的两个电容器416a-b”中每一个的电容值。在一些应用中,电能不能在两个次级线圈之间均匀分配。在这样的实施例中,两个电容器的电容值间的比率应该与两个次级线圈之间的功率比率相当。
图14示出了用于双线圈灯410”’的另一个可选电路。在该实施例中,仅设有一个次级线圈414”’。次级线圈414”’与位于灯相对端的电极436a-b”’连接。该电路包括在线圈间延伸的一对导体498a-b”’。设有常规启动器435”’或其他启动机构,比如磁性开关,用以启动灯。在这一实施例中,优选根据第一个披露的实施例的方法选择电容器416”’的电容值。
本发明应用在PL型荧光灯中的另一个可选择的实施例如图15和图16所示。在这一实施例中,整个灯电路被封闭在灯套管552中,并且不包含外套管。如图所示,灯组件510包括具有两个相互连接的腿部502a-b的灯套管552。该灯组件510可以包括上述任何种类的双线圈灯电路。为了说明的目的,该实施例结合灯组件510进行描述,该灯组件具有安装在每个腿部502a-b的基座上的分离的次级线圈514a-b。两个次级线圈514a-b优选由围绕或者邻近灯组件510一端的一个初级线圈提供电力。每个次级线圈514a-b与电极536a-b、电容器516a-b和磁性启动开关534a-b串联。如上所述,结合实施例13所述的实施例选择每个电容器516a-b的电容值。该灯组件510还可以包括感应磁体560。
具有可选用的密封结构的可选择灯组件610如图17和图18所示.如分解视图17所示,灯组件610一般包括锁紧环602,外套筒670,灯618和基座650.锁紧环602、外套筒670和基座650配合密封灯组件610.如图18所示将更清楚,基座650包括用以容纳次级线圈614和灯618的圆柱形中心部分652.更具体而言,灯618安装在印刷电路板组件(“PCBA”)654上,该印刷电路板组件优选支承灯组件610中的任何电容器或启动机构.灯/PCBA的组合件例如通过固定零件或者快速配合的方式被安装在基座650上.基座650还可以包括围绕基座650的环形沟槽656,用于容纳外套筒670的端部.一个O型圈604围绕中心部分652装配在环形沟槽656中.基座650可以包括环形肋(未示出)用以防止O型圈604拱上中心部分652.一旦被安装,O型圈604设置在外套筒670的内径和基座650的中心部分652的外径之间.在该位置,O型圈604不仅仅提供有效的防水密封,而且还可以作为震动阻尼器以对灯和外套筒670之间震动进行减震.外套筒670一般为具有封闭端和开口端的圆柱形管.围绕外套筒670的开口端设有卷边672或者其他凸缘.外套筒670通过锁定环602安装固定在基座650上.锁定环602一般为环形并且装配到外套筒670和基座650上.锁定环602通常具有倒L形状的截面,并具有径向腿部674和轴向腿部676.径向腿部674与卷边672接合,轴向腿部676与基座650的外表面接合.另一种选择是,如图19所示,锁定环602’和基座650’也可以被构造成可使轴向腿部676’可被装配到环形沟槽656’中.在两个实施例中,轴向腿部676或676’被固定在基座650或650’上以将外套筒670锁定在基座650的环形沟槽656中.锁定环602可以用各种连接方式附接在基座650上.例如锁定环602可以通过声波或者热焊接的方式附接到基座650上.另一种选择是,灯组件610”可包括下凸缘678(参见图20)的锁定环602”,以使锁定环602’被快速装配到基座650’上,或者可以在锁定环和基座上设置螺纹(未示出),以使锁定环螺纹固定到基座上.
上面描述的为本发明的多种实施例。只要没有偏离所附权利要求中所限定的精神和范围,可以作出多种改进和变化,所述权利要求依据专利法的等同原则进行解释。任何以单数形式对权利要求中的部件进行的引用,例如用“一个”、“这个”和“所述”,不应解释为是限制该部件为单个的。

Claims (21)

1.一种感应电力灯组件,包括:
用于接收来自感应初级线圈的功率的感应次级线圈,所述感应次级线圈具有次级线圈的电抗;
与所述次级线圈串联设置的灯,所述灯具有灯套筒和灯阻抗;和
与所述感应次级线圈和所述灯串联设置的电容器,所述电容器选择具有约等于在启动温度下所述灯阻抗和所述次级线圈的电抗之和的电抗值,由此所述电容器、所述灯和所述次级线圈启动期间基本上在谐振条件下工作,所述电容器和所述次级线圈被完全包围在所述灯套筒中,由此所述灯套筒未被贯穿。
2.如权利要求1所述的灯组件,其中所述次级线圈进一步被限定为绞合线线圈。
3.如权利要求1所述的灯组件,其中所述次级线圈进一步被限定为磁导线线圈。
4.如权利要求1所述的灯组件,其中所述灯套筒对所需波长的光基本上是透明的。
5.如权利要求4所述的灯组件,其中所述灯套筒基本上是透明的。
6.如权利要求5所述的灯组件,其中所述灯进一步被限定为白炽灯。
7.如权利要求5所述的灯组件,其中所述灯进一步被限定为放电灯。
8.如权利要求2所述的灯组件,其中所述次级线圈与所述灯同轴。
9.一种感应电力灯组件,包括:
用于接收来自感应初级线圈的功率的感应次级线圈,所述感应次级线圈具有电抗;
与所述次级线圈串联设置的灯,所述灯具有基本上等于所述次级线圈的所述电抗的阻抗值;和
与所述次级线圈和所述灯串联设置的电容器,所述电容器具有约等于在启动温度下所述灯的所述阻抗和所述次级线圈的所述电抗之和的电抗值,由此所述电容器、所述灯和所述次级线圈启动期间基本上在谐振条件下工作,和
所述灯包括灯套筒,所述灯套筒对所需波长的光基本上是透明的,所述次级线圈被完全包围在所述灯套筒中,由此所述灯套筒未被贯穿。
10.如权利要求9所述的灯组件,其中所述次级线圈进一步被限定为绞合线线圈。
11.如权利要求9所述的灯组件,其中所述次级线圈进一步被限定为磁导线线圈。
12.如权利要求9所述的灯组件,其中所述灯组件包括围绕并完全密闭所述次级线圈、所述电容器和所述灯的封闭的透明的套筒,所述套筒未被贯穿。
13.如权利要求12所述的灯组件,其中所述灯进一步被限定为白炽灯。
14.如权利要求12所述的灯组件,其中所述灯进一步被限定为放电灯。
15.如权利要求10所述的灯组件,其中所述次级线圈与所述灯同轴。
16.一种制造灯组件的方法,包括以下步骤:
连接灯至感应次级线圈,灯具有灯套筒和阻抗并且次级线圈具有电抗,将电容器与灯和感应次级线圈串联连接,选择电容器以具有约等于在启动温度下所述灯的阻抗和所述次级线圈的电抗之和的电抗值,由此电容器、灯和所述次级线圈启动期间基本上在谐振条件下工作,和
将该电容器和该次级线圈完全包围在该灯套筒中,由此所述灯套筒未被贯穿。
17.如权利要求16所述的方法,其中所述灯连接步骤包括以下步骤:
连接灯丝线第一端至感应次级线圈的第一引线;
连接灯丝线第二端至电容器的第一引线;以及
连接电容器的第二引线至感应次级线圈的第二引线。
18.如权利要求16所述的方法,其中所述灯连接步骤包括以下步骤:
连接第一灯电极至感应次级线圈的第一引线;
连接第二灯电极至电容器的第一引线;以及
连接电容器的第二引线至感应次级线圈的第二引线。
19.如权利要求12所述的灯组件,其中所述封闭的透明的套筒为基本上柔性的塑料管,所述管的相对端被密封以提供完全密封封闭。
20.如权利要求19所述的灯组件,其中所述管的所述相对端被卷边。
21.如权利要求20所述的灯组件,其中所述塑料管进一步被限定为聚四氟乙烯管。
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Families Citing this family (223)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6326613B1 (en) 1998-01-07 2001-12-04 Donnelly Corporation Vehicle interior mirror assembly adapted for containing a rain sensor
US6124886A (en) 1997-08-25 2000-09-26 Donnelly Corporation Modular rearview mirror assembly
US6278377B1 (en) 1999-08-25 2001-08-21 Donnelly Corporation Indicator for vehicle accessory
US8288711B2 (en) 1998-01-07 2012-10-16 Donnelly Corporation Interior rearview mirror system with forwardly-viewing camera and a control
US6445287B1 (en) 2000-02-28 2002-09-03 Donnelly Corporation Tire inflation assistance monitoring system
US6420975B1 (en) 1999-08-25 2002-07-16 Donnelly Corporation Interior rearview mirror sound processing system
US7592753B2 (en) * 1999-06-21 2009-09-22 Access Business Group International Llc Inductively-powered gas discharge lamp circuit
EP1263626A2 (en) 2000-03-02 2002-12-11 Donnelly Corporation Video mirror systems incorporating an accessory module
US7480149B2 (en) 2004-08-18 2009-01-20 Donnelly Corporation Accessory module for vehicle
US6396408B2 (en) 2000-03-31 2002-05-28 Donnelly Corporation Digital electrochromic circuit with a vehicle network
AU2002239386A1 (en) * 2000-12-12 2002-06-24 Tokyo Electron Limited Rapid thermal processing lamp and method for manufacturing the same
US7065658B1 (en) 2001-05-18 2006-06-20 Palm, Incorporated Method and apparatus for synchronizing and recharging a connector-less portable computer system
US6824281B2 (en) 2002-01-31 2004-11-30 Donnelly Corporation Vehicle accessory module
EP1903837B1 (en) 2002-02-19 2013-04-17 Access Business Group International LLC Starter assembly for a gas discharge lamp
FR2864066B1 (fr) * 2003-12-23 2006-04-14 Otv Sa Dispositif d'alimentation de lampes uv utilisees dans le cadre du traitement de l'eau
WO2005086375A1 (ja) * 2004-03-03 2005-09-15 Nec Corporation 測位システム、即位方法、及びそのプログラム
DK1666074T3 (da) * 2004-11-26 2008-09-08 Bae Ro Gmbh & Co Kg Steriliseringslampe
DE102004059854B4 (de) * 2004-12-10 2007-05-31 Oase Gmbh Elektrogerät für Gartenteiche, Springbrunnen, Aquaristik und Außenanlagen, mit wenigstens einem Leuchtmittel
EP1827908B1 (en) 2004-12-15 2015-04-29 Magna Electronics Inc. An accessory module system for a vehicle window
US7245083B2 (en) * 2005-01-11 2007-07-17 Longlite, Llc Incandescent lamp with integral controlling means
DE102005021728A1 (de) * 2005-05-09 2006-11-16 Patent-Treuhand-Gesellschaft für elektrische Glühlampen mbH Lampensockel und Hochdruckentladungslampe mit einem Lampensockel
AU2006269374C1 (en) 2005-07-12 2010-03-25 Massachusetts Institute Of Technology Wireless non-radiative energy transfer
US7825543B2 (en) * 2005-07-12 2010-11-02 Massachusetts Institute Of Technology Wireless energy transfer
RU2008107579A (ru) * 2005-08-03 2009-09-10 Эксесс Бизнесс Груп Интернешнл ЛЛС (US) Газоразрядная лампа с индуктивным питанием
US7400095B2 (en) * 2005-11-16 2008-07-15 Ellenberger & Poensgen Gmbh Portable electric lighting fixture
CN1977978B (zh) * 2005-12-01 2011-07-06 福建新大陆环保科技有限公司 一种开放式水渠辐射消毒系统
JP4813171B2 (ja) * 2005-12-16 2011-11-09 株式会社豊田自動織機 ステータの製造方法及び製造装置
US8169185B2 (en) 2006-01-31 2012-05-01 Mojo Mobility, Inc. System and method for inductive charging of portable devices
US11201500B2 (en) 2006-01-31 2021-12-14 Mojo Mobility, Inc. Efficiencies and flexibilities in inductive (wireless) charging
US7952322B2 (en) 2006-01-31 2011-05-31 Mojo Mobility, Inc. Inductive power source and charging system
US7948208B2 (en) 2006-06-01 2011-05-24 Mojo Mobility, Inc. Power source, charging system, and inductive receiver for mobile devices
US11329511B2 (en) 2006-06-01 2022-05-10 Mojo Mobility Inc. Power source, charging system, and inductive receiver for mobile devices
JP4855150B2 (ja) * 2006-06-09 2012-01-18 株式会社トプコン 眼底観察装置、眼科画像処理装置及び眼科画像処理プログラム
US20080080204A1 (en) * 2006-06-23 2008-04-03 Faurecia Interior Systems U.S.A., Inc. Molded panel and method of manufacture
US9022293B2 (en) 2006-08-31 2015-05-05 Semiconductor Energy Laboratory Co., Ltd. Semiconductor device and power receiving device
US7560867B2 (en) * 2006-10-17 2009-07-14 Access Business Group International, Llc Starter for a gas discharge light source
US7821208B2 (en) * 2007-01-08 2010-10-26 Access Business Group International Llc Inductively-powered gas discharge lamp circuit
NZ577899A (en) * 2007-01-08 2012-05-25 Access Business Group Int Llc Inductively-powered gas discharge lamp circuit with capacitor in series between electrodes
US8629577B2 (en) 2007-01-29 2014-01-14 Powermat Technologies, Ltd Pinless power coupling
ES2894931T3 (es) * 2007-03-22 2022-02-16 Powermat Tech Ltd Monitor de eficiencia para transmisión de energía inductiva
ATE513450T1 (de) * 2007-04-23 2011-07-15 Osram Gmbh Schaltanordnung zum betreiben einer niederdruck- gasentladungslampe
US8805530B2 (en) 2007-06-01 2014-08-12 Witricity Corporation Power generation for implantable devices
US9421388B2 (en) 2007-06-01 2016-08-23 Witricity Corporation Power generation for implantable devices
US7641358B1 (en) 2007-06-13 2010-01-05 Sunlite Safety Products, LLC Explosion proof lantern
TWM328514U (en) * 2007-08-23 2008-03-11 rong-de Hong Heavy duty hook
WO2009040807A2 (en) 2007-09-25 2009-04-02 Powermat Ltd. Inductive power transmission platform
US10068701B2 (en) 2007-09-25 2018-09-04 Powermat Technologies Ltd. Adjustable inductive power transmission platform
US8624750B2 (en) * 2007-10-09 2014-01-07 Powermat Technologies, Ltd. System and method for inductive power provision over an extended surface
CN101828157B (zh) * 2007-10-17 2014-08-27 捷通国际有限公司 膝上型电脑和便携电子装置无线电源系统
US8193769B2 (en) * 2007-10-18 2012-06-05 Powermat Technologies, Ltd Inductively chargeable audio devices
US7804233B1 (en) * 2007-11-19 2010-09-28 Sundhar Shaam P Light bulb and method of use
US8536737B2 (en) * 2007-11-19 2013-09-17 Powermat Technologies, Ltd. System for inductive power provision in wet environments
CN101897238B (zh) * 2007-12-14 2013-10-23 皇家飞利浦电子股份有限公司 可调光生成器件
US9960640B2 (en) 2008-03-17 2018-05-01 Powermat Technologies Ltd. System and method for regulating inductive power transmission
US9331750B2 (en) 2008-03-17 2016-05-03 Powermat Technologies Ltd. Wireless power receiver and host control interface thereof
US9337902B2 (en) 2008-03-17 2016-05-10 Powermat Technologies Ltd. System and method for providing wireless power transfer functionality to an electrical device
US9960642B2 (en) 2008-03-17 2018-05-01 Powermat Technologies Ltd. Embedded interface for wireless power transfer to electrical devices
CA2718901C (en) * 2008-03-17 2018-10-16 Powermat Ltd. Inductive transmission system
TWI421439B (zh) * 2008-03-21 2014-01-01 Liquidleds Lighting Corp Glass package LED bulb and its manufacturing method
US8320143B2 (en) * 2008-04-15 2012-11-27 Powermat Technologies, Ltd. Bridge synchronous rectifier
US20110050164A1 (en) 2008-05-07 2011-03-03 Afshin Partovi System and methods for inductive charging, and improvements and uses thereof
EP2281322B1 (en) * 2008-05-14 2016-03-23 Massachusetts Institute of Technology Wireless energy transfer, including interference enhancement
WO2009147664A1 (en) * 2008-06-02 2009-12-10 Powermat Ltd. Appliance mounted power outlets
US8188619B2 (en) 2008-07-02 2012-05-29 Powermat Technologies Ltd Non resonant inductive power transmission system and method
US8981598B2 (en) 2008-07-02 2015-03-17 Powermat Technologies Ltd. Energy efficient inductive power transmission system and method
KR20110043647A (ko) * 2008-07-08 2011-04-27 파우워매트 엘티디. 디스플레이 장치
WO2010014635A1 (en) 2008-07-28 2010-02-04 Bioclimatic Air Systems Bi-polar ionization tube base and tube socket
USD640976S1 (en) 2008-08-28 2011-07-05 Hewlett-Packard Development Company, L.P. Support structure and/or cradle for a mobile computing device
CA2738206A1 (en) * 2008-09-23 2010-04-01 Powermat Ltd. Combined antenna and inductive power receiver
US8868939B2 (en) 2008-09-26 2014-10-21 Qualcomm Incorporated Portable power supply device with outlet connector
US8527688B2 (en) * 2008-09-26 2013-09-03 Palm, Inc. Extending device functionality amongst inductively linked devices
US8850045B2 (en) 2008-09-26 2014-09-30 Qualcomm Incorporated System and method for linking and sharing resources amongst devices
US8712324B2 (en) 2008-09-26 2014-04-29 Qualcomm Incorporated Inductive signal transfer system for computing devices
US8234509B2 (en) * 2008-09-26 2012-07-31 Hewlett-Packard Development Company, L.P. Portable power supply device for mobile computing devices
US8401469B2 (en) * 2008-09-26 2013-03-19 Hewlett-Packard Development Company, L.P. Shield for use with a computing device that receives an inductive signal transmission
US8385822B2 (en) * 2008-09-26 2013-02-26 Hewlett-Packard Development Company, L.P. Orientation and presence detection for use in configuring operations of computing devices in docked environments
US20110106954A1 (en) * 2008-09-26 2011-05-05 Manjirnath Chatterjee System and method for inductively pairing devices to share data or resources
US8688037B2 (en) * 2008-09-26 2014-04-01 Hewlett-Packard Development Company, L.P. Magnetic latching mechanism for use in mating a mobile computing device to an accessory device
US20110043049A1 (en) * 2008-09-27 2011-02-24 Aristeidis Karalis Wireless energy transfer with high-q resonators using field shaping to improve k
US8963488B2 (en) 2008-09-27 2015-02-24 Witricity Corporation Position insensitive wireless charging
US8461722B2 (en) 2008-09-27 2013-06-11 Witricity Corporation Wireless energy transfer using conducting surfaces to shape field and improve K
US9544683B2 (en) 2008-09-27 2017-01-10 Witricity Corporation Wirelessly powered audio devices
US9093853B2 (en) 2008-09-27 2015-07-28 Witricity Corporation Flexible resonator attachment
US8912687B2 (en) 2008-09-27 2014-12-16 Witricity Corporation Secure wireless energy transfer for vehicle applications
US8466583B2 (en) 2008-09-27 2013-06-18 Witricity Corporation Tunable wireless energy transfer for outdoor lighting applications
US8598743B2 (en) 2008-09-27 2013-12-03 Witricity Corporation Resonator arrays for wireless energy transfer
US8471410B2 (en) 2008-09-27 2013-06-25 Witricity Corporation Wireless energy transfer over distance using field shaping to improve the coupling factor
US8692410B2 (en) * 2008-09-27 2014-04-08 Witricity Corporation Wireless energy transfer with frequency hopping
US8400017B2 (en) 2008-09-27 2013-03-19 Witricity Corporation Wireless energy transfer for computer peripheral applications
US8692412B2 (en) 2008-09-27 2014-04-08 Witricity Corporation Temperature compensation in a wireless transfer system
US8552592B2 (en) * 2008-09-27 2013-10-08 Witricity Corporation Wireless energy transfer with feedback control for lighting applications
US8304935B2 (en) * 2008-09-27 2012-11-06 Witricity Corporation Wireless energy transfer using field shaping to reduce loss
US9515494B2 (en) 2008-09-27 2016-12-06 Witricity Corporation Wireless power system including impedance matching network
US8669676B2 (en) 2008-09-27 2014-03-11 Witricity Corporation Wireless energy transfer across variable distances using field shaping with magnetic materials to improve the coupling factor
US8947186B2 (en) 2008-09-27 2015-02-03 Witricity Corporation Wireless energy transfer resonator thermal management
US9105959B2 (en) 2008-09-27 2015-08-11 Witricity Corporation Resonator enclosure
US8487480B1 (en) 2008-09-27 2013-07-16 Witricity Corporation Wireless energy transfer resonator kit
US20120235566A1 (en) * 2008-09-27 2012-09-20 Aristeidis Karalis Tunable wireless energy transfer for lighting applications
US8901779B2 (en) 2008-09-27 2014-12-02 Witricity Corporation Wireless energy transfer with resonator arrays for medical applications
US8461721B2 (en) 2008-09-27 2013-06-11 Witricity Corporation Wireless energy transfer using object positioning for low loss
US8772973B2 (en) * 2008-09-27 2014-07-08 Witricity Corporation Integrated resonator-shield structures
US8587155B2 (en) * 2008-09-27 2013-11-19 Witricity Corporation Wireless energy transfer using repeater resonators
US8901778B2 (en) 2008-09-27 2014-12-02 Witricity Corporation Wireless energy transfer with variable size resonators for implanted medical devices
US8922066B2 (en) 2008-09-27 2014-12-30 Witricity Corporation Wireless energy transfer with multi resonator arrays for vehicle applications
JP2012504387A (ja) * 2008-09-27 2012-02-16 ウィトリシティ コーポレーション 無線エネルギー伝達システム
US8441154B2 (en) 2008-09-27 2013-05-14 Witricity Corporation Multi-resonator wireless energy transfer for exterior lighting
US8946938B2 (en) 2008-09-27 2015-02-03 Witricity Corporation Safety systems for wireless energy transfer in vehicle applications
US8643326B2 (en) * 2008-09-27 2014-02-04 Witricity Corporation Tunable wireless energy transfer systems
US20110074346A1 (en) * 2009-09-25 2011-03-31 Hall Katherine L Vehicle charger safety system and method
US8629578B2 (en) 2008-09-27 2014-01-14 Witricity Corporation Wireless energy transfer systems
US9601261B2 (en) 2008-09-27 2017-03-21 Witricity Corporation Wireless energy transfer using repeater resonators
US8324759B2 (en) * 2008-09-27 2012-12-04 Witricity Corporation Wireless energy transfer using magnetic materials to shape field and reduce loss
US9106203B2 (en) 2008-09-27 2015-08-11 Witricity Corporation Secure wireless energy transfer in medical applications
US9246336B2 (en) 2008-09-27 2016-01-26 Witricity Corporation Resonator optimizations for wireless energy transfer
US9318922B2 (en) 2008-09-27 2016-04-19 Witricity Corporation Mechanically removable wireless power vehicle seat assembly
US8723366B2 (en) * 2008-09-27 2014-05-13 Witricity Corporation Wireless energy transfer resonator enclosures
US9035499B2 (en) 2008-09-27 2015-05-19 Witricity Corporation Wireless energy transfer for photovoltaic panels
US8907531B2 (en) 2008-09-27 2014-12-09 Witricity Corporation Wireless energy transfer with variable size resonators for medical applications
US9577436B2 (en) 2008-09-27 2017-02-21 Witricity Corporation Wireless energy transfer for implantable devices
US8476788B2 (en) 2008-09-27 2013-07-02 Witricity Corporation Wireless energy transfer with high-Q resonators using field shaping to improve K
US9065423B2 (en) 2008-09-27 2015-06-23 Witricity Corporation Wireless energy distribution system
US8928276B2 (en) 2008-09-27 2015-01-06 Witricity Corporation Integrated repeaters for cell phone applications
US8569914B2 (en) 2008-09-27 2013-10-29 Witricity Corporation Wireless energy transfer using object positioning for improved k
US8497601B2 (en) * 2008-09-27 2013-07-30 Witricity Corporation Wireless energy transfer converters
US8957549B2 (en) 2008-09-27 2015-02-17 Witricity Corporation Tunable wireless energy transfer for in-vehicle applications
US9396867B2 (en) 2008-09-27 2016-07-19 Witricity Corporation Integrated resonator-shield structures
US8686598B2 (en) 2008-09-27 2014-04-01 Witricity Corporation Wireless energy transfer for supplying power and heat to a device
US9744858B2 (en) 2008-09-27 2017-08-29 Witricity Corporation System for wireless energy distribution in a vehicle
US8933594B2 (en) 2008-09-27 2015-01-13 Witricity Corporation Wireless energy transfer for vehicles
US9184595B2 (en) 2008-09-27 2015-11-10 Witricity Corporation Wireless energy transfer in lossy environments
US9160203B2 (en) 2008-09-27 2015-10-13 Witricity Corporation Wireless powered television
US9601266B2 (en) 2008-09-27 2017-03-21 Witricity Corporation Multiple connected resonators with a single electronic circuit
US20100277121A1 (en) * 2008-09-27 2010-11-04 Hall Katherine L Wireless energy transfer between a source and a vehicle
US8937408B2 (en) 2008-09-27 2015-01-20 Witricity Corporation Wireless energy transfer for medical applications
US9601270B2 (en) 2008-09-27 2017-03-21 Witricity Corporation Low AC resistance conductor designs
US8587153B2 (en) 2008-09-27 2013-11-19 Witricity Corporation Wireless energy transfer using high Q resonators for lighting applications
US8482158B2 (en) * 2008-09-27 2013-07-09 Witricity Corporation Wireless energy transfer using variable size resonators and system monitoring
US8461720B2 (en) * 2008-09-27 2013-06-11 Witricity Corporation Wireless energy transfer using conducting surfaces to shape fields and reduce loss
US8410636B2 (en) 2008-09-27 2013-04-02 Witricity Corporation Low AC resistance conductor designs
EP2345100B1 (en) 2008-10-01 2018-12-05 Massachusetts Institute of Technology Efficient near-field wireless energy transfer using adiabatic system variations
DE102008053623A1 (de) * 2008-10-29 2010-05-12 Osram Gesellschaft mit beschränkter Haftung Leuchteinrichtung mit einer Entladungslampe und einem teilweise extern zur Entladungslampe angeordneten und mit dieser elektrisch verbundenen elektronischen Betriebsgerät
US9083686B2 (en) * 2008-11-12 2015-07-14 Qualcomm Incorporated Protocol for program during startup sequence
US8570374B2 (en) 2008-11-13 2013-10-29 Magna Electronics Inc. Camera for vehicle
CN102356624B (zh) * 2009-01-05 2015-01-14 高通股份有限公司 为带有可移除外壳段的移动计算设备配备附件的内部连接器方案
US9132250B2 (en) * 2009-09-03 2015-09-15 Breathe Technologies, Inc. Methods, systems and devices for non-invasive ventilation including a non-sealing ventilation interface with an entrainment port and/or pressure feature
JP5510032B2 (ja) * 2009-05-14 2014-06-04 日産自動車株式会社 非接触給電装置
GB0911410D0 (en) * 2009-07-01 2009-08-12 Mantock Paul L A low power electric heating system
US8437695B2 (en) * 2009-07-21 2013-05-07 Hewlett-Packard Development Company, L.P. Power bridge circuit for bi-directional inductive signaling
US9395827B2 (en) * 2009-07-21 2016-07-19 Qualcomm Incorporated System for detecting orientation of magnetically coupled devices
US8954001B2 (en) * 2009-07-21 2015-02-10 Qualcomm Incorporated Power bridge circuit for bi-directional wireless power transmission
US8755815B2 (en) 2010-08-31 2014-06-17 Qualcomm Incorporated Use of wireless access point ID for position determination
US8395547B2 (en) * 2009-08-27 2013-03-12 Hewlett-Packard Development Company, L.P. Location tracking for mobile computing device
WO2011029074A1 (en) 2009-09-03 2011-03-10 Breathe Technologies, Inc. Methods, systems and devices for non-invasive ventilation including a non-sealing ventilation interface with an entrainment port and/or pressure feature
US8460816B2 (en) 2009-10-08 2013-06-11 Etymotic Research, Inc. Rechargeable battery assemblies and methods of constructing rechargeable battery assemblies
US8174234B2 (en) * 2009-10-08 2012-05-08 Etymotic Research, Inc. Magnetically coupled battery charging system
US8237402B2 (en) 2009-10-08 2012-08-07 Etymotic Research, Inc. Magnetically coupled battery charging system
US8174233B2 (en) 2009-10-08 2012-05-08 Etymotic Research, Inc. Magnetically coupled battery charging system
US8022775B2 (en) 2009-10-08 2011-09-20 Etymotic Research, Inc. Systems and methods for maintaining a drive signal to a resonant circuit at a resonant frequency
JP2013511161A (ja) 2009-11-16 2013-03-28 300ケイ エンタープライズ ピーティーワイ リミテッド 電気機器と共に用いる非接触連結器及び方法
USD674391S1 (en) 2009-11-17 2013-01-15 Hewlett-Packard Development Company, L.P. Docking station for a computing device
CN101702861A (zh) * 2009-12-09 2010-05-05 盛德竹科技股份有限公司 延长灯管使用寿命及具备功率因子修正的驱动方法
BR112012021787A8 (pt) * 2010-03-03 2016-06-07 Koninkl Philips Electronics Nv kit de peças, dispositivo de conexão e dispositivo de iluminação
TWI623963B (zh) 2010-06-04 2018-05-11 美商通路實業集團國際公司 感應耦合介電質屏障放電燈
EP2580844A4 (en) 2010-06-11 2016-05-25 Mojo Mobility Inc WIRELESS POWER TRANSFER SYSTEM SUPPORTING INTEROPERABILITY AND MULTIPOLAR MAGNETS FOR USE WITH THIS SYSTEM
CN102939693B (zh) * 2010-06-16 2016-06-22 皇家飞利浦电子股份有限公司 用于电动设备的外壳
US9602168B2 (en) 2010-08-31 2017-03-21 Witricity Corporation Communication in wireless energy transfer systems
EP2622920B1 (en) 2010-09-29 2024-01-17 QUALCOMM Incorporated Non-transient computer readable storage medium and mobile computing device employing matching of access point identifiers
US9496732B2 (en) 2011-01-18 2016-11-15 Mojo Mobility, Inc. Systems and methods for wireless power transfer
US9178369B2 (en) 2011-01-18 2015-11-03 Mojo Mobility, Inc. Systems and methods for providing positioning freedom, and support of different voltages, protocols, and power levels in a wireless power system
US11342777B2 (en) 2011-01-18 2022-05-24 Mojo Mobility, Inc. Powering and/or charging with more than one protocol
US10115520B2 (en) 2011-01-18 2018-10-30 Mojo Mobility, Inc. Systems and method for wireless power transfer
US9948145B2 (en) 2011-07-08 2018-04-17 Witricity Corporation Wireless power transfer for a seat-vest-helmet system
CN108110907B (zh) 2011-08-04 2022-08-02 韦特里西提公司 可调谐无线电源架构
ES2558182T3 (es) 2011-09-09 2016-02-02 Witricity Corporation Detección de objetos extraños en sistemas de transferencia de energía inalámbricos
US20130062966A1 (en) 2011-09-12 2013-03-14 Witricity Corporation Reconfigurable control architectures and algorithms for electric vehicle wireless energy transfer systems
US9318257B2 (en) 2011-10-18 2016-04-19 Witricity Corporation Wireless energy transfer for packaging
KR20140085591A (ko) 2011-11-04 2014-07-07 위트리시티 코포레이션 무선 에너지 전송 모델링 툴
US9306635B2 (en) 2012-01-26 2016-04-05 Witricity Corporation Wireless energy transfer with reduced fields
CN104396109B (zh) * 2012-02-02 2018-12-18 奥克兰联合服务有限公司 用于感应功率传输系统的var控制
US9722447B2 (en) 2012-03-21 2017-08-01 Mojo Mobility, Inc. System and method for charging or powering devices, such as robots, electric vehicles, or other mobile devices or equipment
US20130271069A1 (en) 2012-03-21 2013-10-17 Mojo Mobility, Inc. Systems and methods for wireless power transfer
US9343922B2 (en) 2012-06-27 2016-05-17 Witricity Corporation Wireless energy transfer for rechargeable batteries
US9287607B2 (en) 2012-07-31 2016-03-15 Witricity Corporation Resonator fine tuning
US9595378B2 (en) 2012-09-19 2017-03-14 Witricity Corporation Resonator enclosure
CN109969007A (zh) 2012-10-19 2019-07-05 韦特里西提公司 无线能量传输系统中的外来物检测
US9842684B2 (en) 2012-11-16 2017-12-12 Witricity Corporation Systems and methods for wireless power system with improved performance and/or ease of use
US9837846B2 (en) 2013-04-12 2017-12-05 Mojo Mobility, Inc. System and method for powering or charging receivers or devices having small surface areas or volumes
US20150042223A1 (en) * 2013-08-12 2015-02-12 Daniel P. Harrington Inductively coupled led lighting system
US9857821B2 (en) 2013-08-14 2018-01-02 Witricity Corporation Wireless power transfer frequency adjustment
US9780573B2 (en) 2014-02-03 2017-10-03 Witricity Corporation Wirelessly charged battery system
US9952266B2 (en) 2014-02-14 2018-04-24 Witricity Corporation Object detection for wireless energy transfer systems
US9716861B1 (en) 2014-03-07 2017-07-25 Steelcase Inc. Method and system for facilitating collaboration sessions
US10664772B1 (en) 2014-03-07 2020-05-26 Steelcase Inc. Method and system for facilitating collaboration sessions
WO2015161035A1 (en) 2014-04-17 2015-10-22 Witricity Corporation Wireless power transfer systems with shield openings
US9842687B2 (en) 2014-04-17 2017-12-12 Witricity Corporation Wireless power transfer systems with shaped magnetic components
US9837860B2 (en) 2014-05-05 2017-12-05 Witricity Corporation Wireless power transmission systems for elevators
EP3140680B1 (en) 2014-05-07 2021-04-21 WiTricity Corporation Foreign object detection in wireless energy transfer systems
US9380682B2 (en) 2014-06-05 2016-06-28 Steelcase Inc. Environment optimization for space based on presence and activities
US9955318B1 (en) 2014-06-05 2018-04-24 Steelcase Inc. Space guidance and management system and method
US9766079B1 (en) 2014-10-03 2017-09-19 Steelcase Inc. Method and system for locating resources and communicating within an enterprise
US10614694B1 (en) 2014-06-06 2020-04-07 Steelcase Inc. Powered furniture assembly
US11744376B2 (en) 2014-06-06 2023-09-05 Steelcase Inc. Microclimate control systems and methods
US10433646B1 (en) 2014-06-06 2019-10-08 Steelcaase Inc. Microclimate control systems and methods
WO2015196123A2 (en) 2014-06-20 2015-12-23 Witricity Corporation Wireless power transfer systems for surfaces
US10574091B2 (en) 2014-07-08 2020-02-25 Witricity Corporation Enclosures for high power wireless power transfer systems
US9842688B2 (en) 2014-07-08 2017-12-12 Witricity Corporation Resonator balancing in wireless power transfer systems
US9852388B1 (en) 2014-10-03 2017-12-26 Steelcase, Inc. Method and system for locating resources and communicating within an enterprise
TW201511078A (zh) * 2014-11-25 2015-03-16 qi-zhang Chen 感應式螢光燈系統結構
US9843217B2 (en) 2015-01-05 2017-12-12 Witricity Corporation Wireless energy transfer for wearables
US10733371B1 (en) 2015-06-02 2020-08-04 Steelcase Inc. Template based content preparation system for use with a plurality of space types
US10248899B2 (en) 2015-10-06 2019-04-02 Witricity Corporation RFID tag and transponder detection in wireless energy transfer systems
US9929721B2 (en) 2015-10-14 2018-03-27 Witricity Corporation Phase and amplitude detection in wireless energy transfer systems
US10063110B2 (en) 2015-10-19 2018-08-28 Witricity Corporation Foreign object detection in wireless energy transfer systems
EP3365958B1 (en) 2015-10-22 2020-05-27 WiTricity Corporation Dynamic tuning in wireless energy transfer systems
US10075019B2 (en) 2015-11-20 2018-09-11 Witricity Corporation Voltage source isolation in wireless power transfer systems
US10263473B2 (en) 2016-02-02 2019-04-16 Witricity Corporation Controlling wireless power transfer systems
WO2017139406A1 (en) 2016-02-08 2017-08-17 Witricity Corporation Pwm capacitor control
US9921726B1 (en) 2016-06-03 2018-03-20 Steelcase Inc. Smart workstation method and system
US10264213B1 (en) 2016-12-15 2019-04-16 Steelcase Inc. Content amplification system and method
WO2019006376A1 (en) 2017-06-29 2019-01-03 Witricity Corporation PROTECTION AND CONTROL OF WIRELESS POWER SYSTEMS
US11444485B2 (en) 2019-02-05 2022-09-13 Mojo Mobility, Inc. Inductive charging system with charging electronics physically separated from charging coil
CN109899743B (zh) * 2019-04-29 2021-05-04 陕西雄森创意设计工程有限公司 Led灯具恒定功率控制装置
US11764610B2 (en) 2021-08-05 2023-09-19 Non-Metallic Connectors, Inc. Non-metallic connection light bulb and socket

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3642890A1 (de) * 1986-12-16 1989-07-27 Igor Groza Elektronische, kabelunabhaengige lichterkette fuer dekorationszwecke
EP0357829A1 (en) * 1988-09-09 1990-03-14 Toppan Moore Company, Ltd. Non-contacting power supplying system
US5264997A (en) * 1992-03-04 1993-11-23 Dominion Automotive Industries Corp. Sealed, inductively powered lamp assembly
CN1275879A (zh) * 1999-05-26 2000-12-06 松下电工株式会社 放电灯的镇流器
EP1063468A1 (fr) * 1999-06-24 2000-12-27 Obsta Lampe, en particulier lampe de balisage pour obstacles à la navigation aérienne en élevation
US6188179B1 (en) * 1995-10-24 2001-02-13 Auckland Uniservices Limited Induction circuits for lighting
CN1339242A (zh) * 1999-12-02 2002-03-06 皇家菲利浦电子有限公司 感应灯系统和感应灯

Family Cites Families (97)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US843534A (en) 1900-04-18 1907-02-05 Cooper Hewitt Electric Co Method of producing electric light.
US843564A (en) * 1905-04-05 1907-02-05 Peter Grabler Hasp-lock.
US2265475A (en) 1937-06-03 1941-12-09 Fodor Joseph Illuminating system
US2714653A (en) * 1952-08-14 1955-08-02 Gen Electric Street lighting apparatus
US3641336A (en) 1967-05-06 1972-02-08 Giovanni Boin Electric lamps for emergency and/or for duty under particular environment conditions, and relative improved lamps
JPS4431031Y1 (zh) * 1967-06-12 1969-12-20
US3652846A (en) * 1968-03-14 1972-03-28 Walter A Starck Underwater hand light
US3550682A (en) 1968-10-18 1970-12-29 Exxon Production Research Co Method and apparatus for making equipment connections at remote underwater locations and for producing fluids from underwater wells
US3599169A (en) * 1969-03-10 1971-08-10 Lewis Detch Lamp lock means
US3628086A (en) 1969-09-11 1971-12-14 Gen Electric High-frequency lamp-operating circuit
DE2029468A1 (de) 1970-06-11 1971-12-16 Schering Ag Vorrichtung zur kontaktlosen elektn sehen Energieübertragung
US3949268A (en) * 1971-02-11 1976-04-06 Burkhard Von Mangoldt Ballast unit for gas discharge lamps such as fluorescent tubes or the like
JPS5220939Y2 (zh) * 1972-05-12 1977-05-13
US3900761A (en) * 1973-11-30 1975-08-19 Gte Sylvania Inc High intensity metal arc discharge lamp
DE2415087A1 (de) 1974-03-28 1975-10-09 Sachs Systemtechnik Gmbh Lichtquellenanordnung mit elektrischen niederspannungslampen
US4017764A (en) 1975-01-20 1977-04-12 General Electric Company Electrodeless fluorescent lamp having a radio frequency gas discharge excited by a closed loop magnetic core
US4005330A (en) 1975-01-20 1977-01-25 General Electric Company Electrodeless fluorescent lamp
US4156830A (en) * 1975-05-13 1979-05-29 Duro-Test Corp. High intensity discharge lamp with integral means for arc extinguishing
JPS5316474A (en) * 1976-07-30 1978-02-15 Hitachi Ltd Discharge lamp starter
JPS5826638B2 (ja) * 1976-10-15 1983-06-03 クロイ電機株式会社 高周波点灯螢光灯調光装置
US4117378A (en) 1977-03-11 1978-09-26 General Electric Company Reflective coating for external core electrodeless fluorescent lamp
NL174104C (nl) * 1977-08-23 1984-04-16 Philips Nv Lampeenheid.
JPS54100167A (en) * 1978-01-23 1979-08-07 Matsushita Electric Works Ltd Fluorescent lamp lighting apparatus
US4322658A (en) * 1980-03-19 1982-03-30 General Electric Company High intensity discharge lamp containing electronic starting aid
JPS57123647A (en) * 1981-01-23 1982-08-02 Tokyo Shibaura Electric Co Method of producing tubular bulb
US4348612A (en) * 1981-02-06 1982-09-07 Westinghouse Electric Corp. Compact fluorescent lamp unit for three-way fluorescent lamp fixture
JPS58155798U (ja) * 1982-04-13 1983-10-18 松下電器産業株式会社 螢光灯器具
EP0134266A1 (de) * 1983-06-02 1985-03-20 Sintec Ag Leuchtsäule für den Strassenverkehr
NL8302498A (nl) * 1983-07-13 1985-02-01 Philips Nv Inrichting voorzien van een gelijkstroom-wisselstroomomzetter voor het ontsteken en voeden van een gas- en/of dampontladingslamp.
US4609852A (en) * 1983-08-12 1986-09-02 Iota Engineering Co. Lamp ballast with near unity power factor and low harmonic content
US4538094A (en) * 1983-08-12 1985-08-27 Iota Engineering Co. Lamp ballast with near unity power factor and low harmonic content
CN1004667B (zh) * 1985-02-15 1989-06-28 菲利浦光灯制造公司 低压钠放电灯
US4633141A (en) * 1985-02-28 1986-12-30 Motorola, Inc. Low voltage power source power inverter for an electroluminescent drive
US4998044A (en) * 1985-12-27 1991-03-05 Nilssen Ole K Efficacy incandescent light bulbs
US5239233A (en) * 1986-02-12 1993-08-24 Nilssen Ole K High efficacy incandescent lighting product
JPS62200687A (ja) * 1986-02-27 1987-09-04 松下電工株式会社 放電灯点灯装置
JPS62200688A (ja) * 1986-02-27 1987-09-04 松下電工株式会社 放電灯点灯装置
JP2605687B2 (ja) * 1986-04-17 1997-04-30 三菱電機株式会社 半導体装置
US4683523A (en) * 1986-06-13 1987-07-28 Olsson Mark S Deep submersible light assembly
JPS6369196A (ja) * 1986-09-10 1988-03-29 東芝ライテック株式会社 放電灯点灯装置
US5184891A (en) 1987-06-09 1993-02-09 Amrus Corporation Connective joint with interlocking ring structures, forming a lamp or portions thereof
US4812702A (en) 1987-12-28 1989-03-14 General Electric Company Excitation coil for hid electrodeless discharge lamp
NL8800584A (nl) 1988-03-09 1989-10-02 Philips Nv Elektrodeloze lagedrukontladingslamp.
US4894591A (en) 1988-09-06 1990-01-16 General Electric Company Inverted Excitation coil for HID lamps
JP2895491B2 (ja) * 1988-10-13 1999-05-24 キヤノン株式会社 ランプ駆動回路
US5053681A (en) * 1989-04-17 1991-10-01 Robert G. Lockwood Remote electrical converter
US5030125A (en) * 1989-09-29 1991-07-09 Aquafine Corporation Attachment assembly for ultraviolet light lamp apparatus
JP2548415B2 (ja) 1990-01-08 1996-10-30 シャープ株式会社 電力供給装置
US5039903A (en) 1990-03-14 1991-08-13 General Electric Company Excitation coil for an electrodeless high intensity discharge lamp
GB9011970D0 (en) 1990-05-29 1990-07-18 Leigh Stewart Prod Electrical control system for,for example,an air spa bath
DE9012505U1 (zh) 1990-08-31 1991-06-27 Siemens Ag, 8000 Muenchen, De
US5105119A (en) * 1990-09-21 1992-04-14 North American Philips Corporation Electric lamp having a pressure molded base
US5179323A (en) * 1991-02-27 1993-01-12 Ham Byung L Ballast for mini fluorescent lamp
US5450305A (en) 1991-08-12 1995-09-12 Auckland Uniservices Limited Resonant power supplies
US5301096A (en) 1991-09-27 1994-04-05 Electric Power Research Institute Submersible contactless power delivery system
US5229652A (en) 1992-04-20 1993-07-20 Hough Wayne E Non-contact data and power connector for computer based modules
US5289085A (en) 1992-10-16 1994-02-22 Gte Products Corporation Capacitively driven RF light source having notched electrode for improved starting
US5300860A (en) 1992-10-16 1994-04-05 Gte Products Corporation Capacitively coupled RF fluorescent lamp with RF magnetic enhancement
DE4310307B4 (de) * 1993-03-30 2004-10-14 Robert Bosch Gmbh Scheinwerfer für Fahrzeuge
US5477112A (en) * 1993-04-27 1995-12-19 Electronic Lighting, Inc. Ballasting network with integral trap
JP3409145B2 (ja) 1993-07-26 2003-05-26 任天堂株式会社 小型電気機器
JPH07153577A (ja) * 1993-11-26 1995-06-16 Tokin Corp 照明装置
JP3663223B2 (ja) 1993-12-10 2005-06-22 ゼネラル・エレクトリック・カンパニイ 無電極放電ランプ用光結合装置及び光分配装置
US5510762A (en) * 1994-04-12 1996-04-23 Magnetek, Inc. Simplified ballast transformer assembly
JP3584490B2 (ja) * 1994-06-06 2004-11-04 松下電工株式会社 屋外取付用照明器具
DE69501543T2 (de) * 1994-06-22 1998-07-30 Philips Electronics Nv Niederdrucknatriumentladungslampe
US5536979A (en) 1994-06-30 1996-07-16 Mceachern; Alexander Charger for hand-held rechargeable electric apparatus with switch for reduced magnetic field
US6459218B2 (en) * 1994-07-13 2002-10-01 Auckland Uniservices Limited Inductively powered lamp unit
JPH08138436A (ja) * 1994-11-02 1996-05-31 Seiwa Denki Kk 水中照明器具
DE4446779C2 (de) 1994-12-24 1996-12-19 Daimler Benz Ag Anordnung zur berührungslosen induktiven Übertragung elektrischer Leistung
US5594304A (en) 1995-07-31 1997-01-14 Woodhead Industries, Inc. Portable fluorescent lamp for use in special applications
US5834905A (en) 1995-09-15 1998-11-10 Osram Sylvania Inc. High intensity electrodeless low pressure light source driven by a transformer core arrangement
US5905343A (en) 1995-10-10 1999-05-18 Mccamant; Angus J. Inductively coupled incandescent light bulb
US5786086A (en) * 1996-01-02 1998-07-28 Union Camp Corporation Conductive wire coating
DE19610388A1 (de) * 1996-03-16 1997-09-18 Bosch Gmbh Robert Zündeinrichtung für eine Entladungslampe
JP3456093B2 (ja) 1996-06-25 2003-10-14 松下電工株式会社 非接触電力伝達装置
JPH1023677A (ja) 1996-07-03 1998-01-23 Uniden Corp 無接点充電装置、充電器、コードレス機器および無接点充電器
JPH1092673A (ja) 1996-07-26 1998-04-10 Tdk Corp 非接触電力伝送装置
JP3986115B2 (ja) * 1997-06-02 2007-10-03 森山産業株式会社 電球装置および照明装置
US6456015B1 (en) * 1996-10-16 2002-09-24 Tapeswitch Corporation Inductive-resistive fluorescent apparatus and method
EP0886906A1 (en) 1996-11-20 1998-12-30 Koninklijke Philips Electronics N.V. An induction charging apparatus and an electronic device
JPH10151148A (ja) 1996-11-26 1998-06-09 Matsushita Electric Works Ltd 洗浄装置
JPH10302984A (ja) * 1997-04-30 1998-11-13 Toshiba Lighting & Technol Corp 放電灯点灯装置および照明装置
US6275143B1 (en) 1997-05-09 2001-08-14 Anatoli Stobbe Security device having wireless energy transmission
DE19836401A1 (de) 1997-09-19 2000-02-17 Salcomp Oy Salo Vorrichtung zum Aufladen von Akkumulatoren
TW342784U (en) 1998-04-14 1998-10-11 yong-chang Lin Dynamic decorator
CN2346140Y (zh) * 1998-05-30 1999-10-27 刘新扬 高效节能电子镇流器
JP2000048983A (ja) * 1998-07-27 2000-02-18 Toshiba Lighting & Technology Corp 放電灯点灯装置および照明装置
DE19837675A1 (de) 1998-08-19 2000-02-24 Nokia Technology Gmbh Ladevorrichtung für Akkumulatoren in einem mobilen elektrischen Gerät mit induktiver Energieübertragung
US6194828B1 (en) 1998-10-08 2001-02-27 Federal-Mogul World Wide, Inc. Electrodeless gas discharge lamp having flat induction coil and dual gas envelopes
US6339296B1 (en) 1999-05-11 2002-01-15 Jerzy M. Goral Low profile emergency ballast
CA2541462C (en) * 1999-06-21 2014-09-09 Access Business Group International Llc Fluid treatment system
WO2001016995A1 (en) * 1999-08-27 2001-03-08 Illumagraphics, Llc Induction electroluminescent lamp
JP2002075279A (ja) * 2000-08-28 2002-03-15 Sanken Electric Co Ltd 二重管式放電管及びその製造方法
WO2002030828A2 (en) * 2000-10-12 2002-04-18 Photoscience Japan Corporation Water treatment assembly
GB0026369D0 (en) * 2000-10-27 2000-12-13 Microlights Ltd Improvements in and relating to an electrical lighting system
CN2472453Y (zh) * 2001-02-23 2002-01-16 华中科技大学 一种荧光灯用电子镇流器

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3642890A1 (de) * 1986-12-16 1989-07-27 Igor Groza Elektronische, kabelunabhaengige lichterkette fuer dekorationszwecke
EP0357829A1 (en) * 1988-09-09 1990-03-14 Toppan Moore Company, Ltd. Non-contacting power supplying system
US5264997A (en) * 1992-03-04 1993-11-23 Dominion Automotive Industries Corp. Sealed, inductively powered lamp assembly
US6188179B1 (en) * 1995-10-24 2001-02-13 Auckland Uniservices Limited Induction circuits for lighting
CN1275879A (zh) * 1999-05-26 2000-12-06 松下电工株式会社 放电灯的镇流器
EP1063468A1 (fr) * 1999-06-24 2000-12-27 Obsta Lampe, en particulier lampe de balisage pour obstacles à la navigation aérienne en élevation
CN1339242A (zh) * 1999-12-02 2002-03-06 皇家菲利浦电子有限公司 感应灯系统和感应灯

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