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    • 1. 发明申请
    • FOLDING PORTABLE ELECTRONIC DEVICE
    • 折叠便携式电子设备
    • US20110222223A1
    • 2011-09-15
    • US13131495
    • 2009-06-15
    • Kenichi MochizukiTakashi Ishihara
    • Kenichi MochizukiTakashi Ishihara
    • H05K5/02
    • H04M1/0216
    • To solve the problem that the user's finger may be pinched and prevent the deterioration of the operability on the one-push portion in a structure in which at least either of outer hinge members is rotated relative to a second housing provided with a main operation section. In a folding portable electronic device, a hinge section 13 has a structure in which a rotational section 13a is rotated along with a first housing 11 about a rotational axis when the first housing 11 is opened relative to a second housing 12, a part of the rotational section 13a of the hinge section 13 is disposed to be located outwardly at least either of side end portions of the first housing 11, and the rotational axis of the hinge section 13 is, in both open and closed states of the housings, located on a line extended from the base end portion of the hinge section side of the second housing 12. A push button 20 is provided on the second housing 12. A convex portion 30 or a projection portion 32 is formed on the side opposite to the push button 20.
    • 为了解决用户的手指可能被夹持的问题,并且防止了在外铰链构件中的至少一个相对于设置有主操作部的第二壳体旋转的结构中,单推部分上的可操作性的劣化。 在折叠便携式电子设备中,铰链部分13具有这样的结构,其中当第一壳体11相对于第二壳体12打开时,旋转部分13a与第一壳体11一起围绕旋转轴线旋转, 铰链部分13的旋转部分13a设置成位于第一壳体11的侧端部的至少任一个的外侧,并且铰链部分13的旋转轴线处于壳体的打开和关闭状态,位于 从第二壳体12的铰链部分侧的基端延伸的线。在第二壳体12上设置有按钮20.在与按钮相对的一侧形成有凸部30或突出部32 20。
    • 3. 发明授权
    • Antenna device and wireless communication apparatus including the same
    • 天线装置和包括该天线装置的无线通信装置
    • US08791866B2
    • 2014-07-29
    • US13451642
    • 2012-04-20
    • Takashi IshiharaJin SatoYuji KaminishiShigekazu Ito
    • Takashi IshiharaJin SatoYuji KaminishiShigekazu Ito
    • H01Q1/24
    • H01Q9/06H01Q1/243H01Q1/42
    • A non-feeding element is provided with a proximity-providing gap from a feeding element, and a resonant state is generated there by capacitive coupling. The non-feeding element resonates at a frequency different from a resonant frequency of the feeding element. The feeding element and the non-feeding element have alongside-ground-terminal extending portions spaced from an edge surface at one end of a ground surface formed on the circuit board and to extend in a direction along the edge surface at the one end of the ground surface. The feeding element and/or the non-feeding element is formed three-dimensionally with a plurality of bending portions so that at least parts of the alongside-ground-terminal extending portion of the feeding element and the ground-terminal extending portion of the non-feeding element have substantially the same amount of spacing from the ground surface.
    • 非馈电元件具有来自馈电元件的接近提供间隙,并且通过电容耦合产生谐振状态。 非馈电元件以与馈电元件的谐振频率不同的频率谐振。 馈电元件和非馈电元件具有与形成在电路板上的接地表面的一端处的边缘表面间隔开的沿着接地端子的延伸部分,并且沿着沿着边缘表面的方向延伸, 地面。 馈电元件和/或非馈送元件与多个弯曲部分三维地形成,使得馈电元件的旁边接地端子延伸部分的至少一部分和非馈电元件的接地端子延伸部分 馈送元件具有与地面大致相同的间隔量。
    • 4. 发明授权
    • Multi-band antenna
    • 多频天线
    • US08654013B2
    • 2014-02-18
    • US12835476
    • 2010-07-13
    • Munehisa WatanabeKengo OnakaTakashi IshiharaTsuyoshi MukaiYuichi Kushihi
    • Munehisa WatanabeKengo OnakaTakashi IshiharaTsuyoshi MukaiYuichi Kushihi
    • H01Q1/38
    • H01Q1/243H01Q5/35H01Q5/40H01Q9/42H01Q21/30
    • An antenna includes a base, a first radiating element, and second radiating element. The first radiating element is open at a first end thereof, is connected to a ground point at a second end thereof, and resonates in a substantially ¼ wavelength mode in a first communication frequency band. A feed line is connected between a first feed point and a predetermined position between the first end and the second end of the first radiating element. The second radiating element has a first end that is a second feed point, a second end that is connected to the ground point, and resonates in a substantially ½ wavelength mode in a second communication frequency band. A distance from the ground point to the second feed point is longer than a distance from the ground point to the first feed point.
    • 天线包括基座,第一辐射元件和第二辐射元件。 第一辐射元件在其第一端开放,在其第二端连接到接地点,并且在第一通信频带中基本上以1/4波长模式谐振。 馈电线连接在第一馈电点与第一辐射元件的第一端和第二端之间的预定位置之间。 第二辐射元件具有作为第二馈电点的第一端,连接到接地点的第二端,并且在第二通信频带中以大致1/2波长模式谐振。 从地面点到第二馈电点的距离比从地面点到第一馈电点的距离长。
    • 6. 发明申请
    • SOLAR BATTERY MODULE
    • 太阳能电池模块
    • US20110297207A1
    • 2011-12-08
    • US13145365
    • 2009-02-16
    • Takashi IshiharaHiroaki Morikawa
    • Takashi IshiharaHiroaki Morikawa
    • H01L31/052
    • H01L31/056H01L31/048H01L31/0547H01L31/068Y02E10/52Y02E10/547
    • A solar battery module having a plurality of solar battery cells embedded in an in-plane direction in a front-surface sealing member by separating the solar battery cells at a distance therebetween, the solar battery cells being electrically connected to each other in a filling material sandwiched between the front-surface sealing member having translucency and a back-surface sealing member. The back-surface sealing member is a high reflectance portion having a high reflection rate such that an average reflection rate of light of a wavelength in a range of 400 to 1200 nanometers is equal to or higher than 50% in at least a region corresponding to the solar battery cells, and the back-surface sealing member includes a low reflectance portion having a low reflection rate such that an average reflection rate of light of a wavelength in a range of 400 to 1200 nanometers is lower than 50%, at any position between a front surface of the reflection prevention film of the solar battery cells and the back-surface sealing member, in a region between the solar battery cells adjacent to each other or in a region corresponding to a region in a thickness direction of the solar battery module.
    • 一种太阳能电池模块,其具有通过在其间隔开太阳能电池单元而在前表面密封构件中沿面内方向嵌入的多个太阳能电池单元,所述太阳能电池单元在填充材料中彼此电连接 夹在具有半透明性的前表面密封构件和背面密封构件之间。 背面密封构件是具有高反射率的高反射率部分,使得波长在400至1200纳米范围内的平均反射率在至少对应于...的区域中等于或高于50% 太阳能电池单元和背面密封构件包括具有低反射率的低反射率部分,使得在400至1200纳米的范围内的波长的平均反射率低于50%,在任何位置 在太阳能电池单元的反射防止膜的前表面和背面密封构件之间,在彼此相邻的太阳能电池单元之间的区域中或在与太阳能电池的厚度方向上的区域相对应的区域中 模块。
    • 7. 发明申请
    • PHOTOVOLTAIC POWER DEVICE AND MANUFACTURING METHOD THEREOF
    • 光伏电源装置及其制造方法
    • US20110036402A1
    • 2011-02-17
    • US12934580
    • 2008-03-27
    • Takashi IshiharaKunihiko Nishimura
    • Takashi IshiharaKunihiko Nishimura
    • H01L31/0236H01L31/18
    • H01L31/18H01L31/02363H01L31/03529H01L31/068H01L31/1804Y02E10/547Y02P70/521
    • A photovoltaic power device includes a P-type silicon substrate, a low-resistance N-type diffusion layer diffused with an N-type impurity in a first concentration formed at a light-incidence surface side, grid electrodes formed on the low-resistance N-type diffusion layer, a P+ layer formed on a back surface, and a back surface electrode formed on the P+ layer. The photovoltaic power device has concave portions provided at a predetermined interval to reach the silicon substrate from an upper surface of the low-resistance N-type diffusion layer, and an upper surface of a region between adjacent concave portions includes the low-resistance N-type diffusion layer. A high-resistance N-type diffusion layer diffused with an N-type impurity in a second concentration, which is lower than the first concentration, is formed in a range of a predetermined depth from a formation surface of the concave portions.
    • 光伏功率器件包括P型硅衬底,在光入射表面侧形成有第一浓度的N型杂质扩散的低电阻N型扩散层,形成在低电阻N 型扩散层,形成在背面上的P +层和形成在P +层上的背面电极。 光伏功率器件具有从低电阻N型扩散层的上表面以预定间隔设置到达硅衬底的凹部,相邻的凹部之间的区域的上表面包括低电阻N型扩散层, 型扩散层。 在与凹部的形成面成规定深度的范围内形成有比第一浓度低的第二浓度的N型杂质扩散的高电阻N型扩散层。
    • 8. 发明申请
    • ANTENNA DEVICE AND WIRELESS COMMUNICATION APPARATUS INCLUDING THE SAME
    • 天线设备和无线通信设备,包括它们
    • US20090115671A1
    • 2009-05-07
    • US12266099
    • 2008-11-06
    • Takashi IshiharaJin SatoYuji KaminishiShigekazu Ito
    • Takashi IshiharaJin SatoYuji KaminishiShigekazu Ito
    • H01Q1/38H01Q1/24
    • H01Q9/06H01Q1/243H01Q1/42
    • A non-feeding element is provided with a proximity-providing gap from a feeding element that receives RF power from a feeding point on a circuit board, and a resonant state is generated there by capacitive coupling. The non-feeding element is formed so as to resonate at a frequency different from a resonant frequency of the feeding element. The feeding element and the non-feeding element have alongside-ground-terminal extending portions formed so as to be spaced from an edge surface (a ground terminal) at one end of a ground surface formed on the circuit board and to extend in a direction along the edge surface at the one end of the ground surface. At least one of the feeding element and the non-feeding element is formed three-dimensionally with a plurality of bending portions so that at least parts of the alongside-ground-terminal extending portion of the feeding element and the ground-terminal extending portion of the non-feeding element have substantially the same amount of spacing from the ground surface, with a mutual gap in a thickness direction of the circuit board.
    • 从馈电元件提供非馈电元件,该馈电元件从电路板上的馈电点接收RF功率,并且通过电容耦合产生谐振状态。 非馈送元件形成为以与馈送元件的谐振频率不同的频率谐振。 馈电元件和非馈电元件具有沿着接地端子延伸部分形成为与形成在电路板上的接地表面的一端处的边缘表面(接地端子)间隔开并沿着方向 沿着地表一端的边缘表面。 馈送元件和非馈送元件中的至少一个与多个弯曲部分三维地形成,使得馈电元件的旁边接地端子延伸部分的至少一部分和接地端子延伸部分的至少一部分 非馈电元件具有与地表面基本相同的间隔距离,并且在电路板的厚度方向上具有相互间隙。
    • 9. 发明申请
    • Antenna Structure and Radio Communication Apparatus Including the Same
    • 包括其的天线结构和无线电通信设备
    • US20080122714A1
    • 2008-05-29
    • US11772380
    • 2007-07-02
    • Takashi IshiharaKengo OnakaShoji Nagumo
    • Takashi IshiharaKengo OnakaShoji Nagumo
    • H01Q1/38H01Q9/00H01Q1/36
    • H01Q9/0442H01Q1/38H01Q5/357H01Q5/392H01Q9/42
    • In an antenna structure 1 in which a feed radiation electrode provided on a dielectric base member performs an antenna operation in a fundamental mode and an antenna operation in a higher-order mode with a resonant frequency higher than that in the fundamental mode, one end of the feed radiation electrode defines a feed end connected to a circuit for radio communication, and the other end of the feed radiation electrode defines an open end. The position of a capacitance-loading portion α is set in advance between the feed end and the open end of the feed radiation electrode. A capacitance-loading conductor is connected to one or both of the feed end and the capacitance-loading portion α of the feed radiation electrode. The capacitance-loading conductor forms a capacitance for adjusting a resonant frequency in the fundamental mode between the feed end and the capacitance-loading portion α.
    • 在其中设置在电介质基体上的馈电辐射电极以基本模式进行天线操作的天线结构1和谐振频率高于基模模式的高阶模式的天线操作, 馈电辐射电极限定连接到用于无线电通信的电路的馈电端,并且馈电辐射电极的另一端限定开放端。 电容加载部分α的位置在馈电端和馈电辐射电极的开路端之间预先设定。 电容负载导体连接到馈电辐射电极的馈电端和电容负载部分α的一个或两个。 电容负载导体形成用于调节馈电端和电容负载部分α之间的基模的谐振频率的电容。