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    • 3. 发明申请
    • Discharge bulb and automobile headlamp
    • 放电灯泡和汽车前照灯
    • US20070018581A1
    • 2007-01-25
    • US11489560
    • 2006-07-20
    • Yoichiro DomaeNaoki UchidaMasaya Shido
    • Yoichiro DomaeNaoki UchidaMasaya Shido
    • H01J61/35
    • H01J61/35
    • A discharge bulb is equipped with an arc tube main unit including in a ceramic tube a discharge light emitting chamber where electrodes are provided face to face and a luminescent material is filled, with substantially the lower half of the outer peripheral surface of the ceramic tube covered by a light shielding ember. Light to be emitted from the ceramic tube is also emitted from the upper part and directed to the efficient reflecting surface of the reflector thus raising the luminance intensity of the headlamp. In the process of light distribution design of the reflector, the size of the rectangular light source image to be projected (stuck) along the cutoff line is made slimmer (narrower). By perform light distribution design (of the effective reflecting surface) so as to allow the maximum luminance part to approach the cutoff line, the hot zone gets closer to the cutoff line position with improved long distance visibility.
    • 放电灯泡配备有电弧管主单元,其包括在陶瓷管中的放电发光室,其中电极被面对面地设置,并且发光材料被填充,所述陶瓷管的外周表面的大体上的下半部被覆盖 通过遮光罩。 从陶瓷管发射的光也从上部发射并引导到反射器的有效反射面,从而提高了前照灯的亮度强度。 在反射器的配光设计过程中,沿着截止线投影(卡住)的矩形光源图像的尺寸变得更窄(更窄)。 通过执行配光设计(有效反射面),以使最大亮度部分接近截止线,热区越接近截止线位置,具有改善的长距离能见度。
    • 4. 发明授权
    • Induction heating apparatus and induction heating method
    • 感应加热装置和感应加热方法
    • US09173251B2
    • 2015-10-27
    • US13816198
    • 2011-07-28
    • Naoki UchidaYoshihiro OkazakiKazuhiro Ozaki
    • Naoki UchidaYoshihiro OkazakiKazuhiro Ozaki
    • H05B6/10H05B6/02H05B6/06H01L21/67H05B6/44
    • H05B6/06H01L21/67109H05B6/105H05B6/44
    • A semiconductor substrate thermal treatment apparatus enables excellent heating control in suppressing influence of mutual induction between induction heating coils even when the induction heating coils are arranged in the vertical direction while providing horizontal magnetic flux to susceptors. The apparatus indirectly heats wafers mounted on horizontally-arranged susceptors including induction heating coils to form alternate-current magnetic flux in a direction parallel to a mount face of the susceptor. The wafer are arranged at an outer circumferential side of the susceptor. The induction heating coils are structured with at least one main heating coil and subordinate heating coils electromagnetically coupled with the main heating coil. Inverse coupling coils inversely-coupled to the subordinate heating coils are provided to the main heating coil, and zone control means separately controls a power ratio while synchronizing frequencies and current waveforms of current to the main heating coil and adjacent subordinate heating coils.
    • 半导体衬底热处理装置即使当感应加热线圈沿垂直方向布置同时向感受体提供水平磁通量时,也能够抑制感应加热线圈之间的互感的影响,从而能够进行优良的加热控制。 该装置间接加热安装在水平布置的基座上的晶片,包括感应加热线圈,以在平行于基座的安装面的方向上形成交流磁通。 晶片布置在基座的外圆周侧。 感应加热线圈由至少一个主加热线圈和与主加热线圈电磁耦合的从属加热线圈构成。 反向耦合到从属加热线圈的反耦合线圈被提供给主加热线圈,并且区域控制装置单独地控制功率比,同时将电流的频率和电流波形同步到主加热线圈和相邻的从属加热线圈。
    • 6. 发明申请
    • INDUCTION HEATING DEVICE, CONTROL METHOD THEREOF, AND CONTROL PROGRAM THEREOF
    • 感应加热装置,其控制方法及其控制程序
    • US20140008356A1
    • 2014-01-09
    • US14006567
    • 2011-11-02
    • Naoki UchidaKeiji KawanakaTakahiro Ao
    • Naoki UchidaKeiji KawanakaTakahiro Ao
    • H05B6/02
    • H05B6/02H05B6/06H05B6/101
    • The present invention includes: a plurality of induction heating coils (11, 12, 13) which are disposed adjacently; capacitors (21, 22, 23) each of which is connected in series thereto; a plurality of inverters (30, 35, 31) each of which applies a high frequency voltage converted from a DC voltage to each series resonant circuit of the induction heating coil and the capacitor; and a control circuit (50) which operates the plurality of the inverters with a same frequency and current synchronization, controls so that a phase difference becomes minimal at a specific inverter, which supplies the maximum power to the plurality of the induction heating coils, between the high frequency voltage generated therefrom, and a resonant current flowing the series resonant circuit, and set a DC power supply voltage Vdc applied to the plurality of the inverters so that the output voltages (Vinv) become greater than mutual induction voltages (Vm).
    • 本发明包括:相邻设置的多个感应加热线圈(11,12,13); 电容器(21,22,23),每个电容器串联连接; 多个逆变器(30,35,31),其将从直流电压转换的高频电压施加到感应加热线圈和电容器的每个串联谐振电路; 并且以相同的频率和电流同步操作多个逆变器的控制电路(50)进行控制,使得在向多个感应加热线圈提供最大功率的特定逆变器处的相位差变得最小 由此产生的高频电压和使串联谐振电路流过的谐振电流,并且设置施加到多个反相器的直流电源电压Vdc,使得输出电压(Vinv)变得大于互感电压(Vm)。
    • 7. 发明授权
    • Vehicle lamp
    • 车灯
    • US08573821B2
    • 2013-11-05
    • US13323982
    • 2011-12-13
    • Noriko SatoNaoki Uchida
    • Noriko SatoNaoki Uchida
    • F21V7/00
    • B60Q1/1415B60Q2300/054F21S41/143F21S41/147F21S41/321F21S41/336F21S41/36F21S41/365F21S41/675
    • A vehicle lamp has a light source having an edge extending linearly, a first reflector, and a second reflector. The vehicle lamp forms a light distribution pattern having cut-off lines at an upper end section thereof by sequentially reflecting light from the light source using the first and second reflectors. An edge of the light source is disposed so as to extend in the horizontal direction. A first reflecting surface of the first reflector is formed of a curved surface, and shaped such that, when an image of the light source formed on the first reflecting surface of the first reflector is viewed from respective points on a first reflecting surface of the second reflector, an edge portion of the image of the light source corresponding to the edge of the light source appears to be inclined with respect to the horizontal direction.
    • 车辆灯具有具有线性延伸的边缘的光源,第一反射器和第二反射器。 车灯通过使用第一和第二反射器依次反射来自光源的光而在其上端部形成具有切断线的配光图案。 光源的边缘设置成在水平方向上延伸。 第一反射器的第一反射面由弯曲表面形成,并且成形为使得当形成在第一反射器的第一反射面上的光源的图像从第二反射面的第一反射面上的各个点观察时 对应于光源的边缘的光源的图像的边缘部分似乎相对于水平方向倾斜。
    • 9. 发明申请
    • INDUCTION HEATING DEVICE, INDUCTION HEATING METHOD, AND PROGRAM
    • 感应加热装置,感应加热方法和程序
    • US20130248520A1
    • 2013-09-26
    • US13991256
    • 2010-12-03
    • Naoki UchidaYoshihiro OkazakiKazuhiro Ozaki
    • Naoki UchidaYoshihiro OkazakiKazuhiro Ozaki
    • H05B6/08H05B6/44
    • H05B6/08H05B6/04H05B6/06H05B6/062H05B6/44
    • The purpose of the present invention is to minimize switching losses of an inverter. An induction heating device includes: a plurality of induction heating coils (20) which are disposed adjacent with each other; a plurality of inverters (30), each of which has a capacitor (40) serially connected to each of the induction heating coils (20), and converts a DC voltage into a square wave voltage; and a control circuit (15) which controls so as to align the phase of coil currents flowing though the plurality of the induction heating coils (20), wherein the control circuit (15) controls the timing at which the square wave voltage transitions such that an instantaneous value of the square wave voltage is preserved in either the DC voltage or a turnover voltage, when the coil current zero crosses.
    • 本发明的目的是最小化逆变器的开关损耗。 感应加热装置包括:彼此相邻布置的多个感应加热线圈(20); 多个逆变器(30),每个具有与每个感应加热线圈(20)串联的电容器(40),并将DC电压转换成方波电压; 以及控制电路(15),其控制使对通过所述多个所述感应加热线圈(20)流动的线圈电流的相位对准,其中,所述控制电路(15)控制所述方波电压转换的定时,使得 当线圈电流为零时,方波电压的瞬时值被保持在直流电压或周转电压中。