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    • 2. 发明授权
    • Surface feed-in electrodes for deposition of thin film solar cell and signal feed-in method thereof
    • 用于沉积薄膜太阳能电池的表面馈入电极及其信号馈入方法
    • US08438989B2
    • 2013-05-14
    • US13698864
    • 2010-10-21
    • Shengming HuYi LiZhubing HeZhijian LiJianhua ZhouChunzhu Wang
    • Shengming HuYi LiZhubing HeZhijian LiJianhua ZhouChunzhu Wang
    • H01J1/00H05H1/24
    • C23C16/505C23C16/24H01J37/32091H01J37/32577H01L31/1804H01L31/1824Y02E10/545Y02E10/547Y02P70/521
    • The present invention discloses a surface feed-in electrode structure for thin film solar cell deposition, relating to solar cell technologies. The surface feed-in electrode structure uses a signal feed-in component with a flat waist and a semicircular feed-in end to connect the signal feed-in port by surface contact. The signal feed-in port is located in a hallowed circular area of a center of the backside of a cathode plate, and feeds in an RF/VHF power supply signal. An anode plate is grounded. The cathode plate is insulated with a shielding cover, and a through-hole is configured on the shielding cover. The effects include that, by using the surface feed-in at the center of the electrode plate, the feeding line loss of single-point or multi-point feed-in configurations can be overcome. Uniform large area and stable discharge driven by the RF/VHF power supply signal can be achieved, and the standing wave and the skin effect can be effectively removed. The production efficiency can be improved and the cost can be reduced.
    • 本发明公开了一种与太阳能电池技术相关的用于薄膜太阳能电池沉积的表面馈入电极结构。 表面馈入电极结构使用具有平腰和半圆形馈入端的信号馈入部件,以通过表面接触连接信号馈入端口。 信号馈入端口位于阴极板背面中心的圆形圆形区域中,并馈入RF / VHF电源信号。 阳极板接地。 阴极板与屏蔽盖绝缘,屏蔽罩上设有通孔。 其效果包括通过使用电极板中心的表面馈入,可以克服单点或多点馈入配置的馈线损耗。 可以实现由RF / VHF电源信号驱动的均匀的大面积和稳定的放电,并且可以有效地消除驻波和皮肤效应。 可以提高生产效率,降低成本。
    • 5. 发明授权
    • Movable jig for silicon-based thin film solar cell
    • 硅基薄膜太阳能电池移动夹具
    • US08291858B2
    • 2012-10-23
    • US13389484
    • 2010-10-21
    • Shengming HuYi LiZhubing HeZhijiang LiJianhua ZhouChunzhu Wang
    • Shengming HuYi LiZhubing HeZhijiang LiJianhua ZhouChunzhu Wang
    • C23C16/59H01L31/18
    • C23C16/505C23C16/545H01J37/32091H01J37/32577H01J37/32715H01L21/67313H01L21/67326H01L21/6734H01L31/18
    • A movable jig for a silicon-based thin film solar cell comprises parallel electrode plates (203,208), a supporting frame and a signal feed-in assembly (201). The supporting frame is a movable frame and its side frame (216) is grounded. A shield device is set on the jig or among jig arrays themselves for preventing from being disturbed. The signal feed-in assembly is a conductor and its middle portion and head portion form a ladder cylinder, and one end surface (201-1) of the signal feed-in assembly is triangular and can surface contact and connect with a sunken triangular feed-in port (203-1) in the center area of the back surface of the cathode plate (203) of the electrode plates, so the radio frequency/the very high frequency power supply signal can be fed in. Through the way of the surface feed-in in the center of the electrode plate, the consumption caused by the feeder distance in the way of one point feed-in or multipoint feed-in can be reduced, the large area stable discharge of the uniform electric field can be obtained, the production efficiency can be increased and the cost can be decreased.
    • 一种用于硅基薄膜太阳能电池的可移动夹具包括平行电极板(203,208),支撑框架和信号馈入组件(201)。 支撑框架是可动框架,其侧框架(216)接地。 屏蔽装置设置在夹具或夹具阵列之间,以防止被干扰。 信号馈入组件是导体,其中间部分和头部形成梯形气缸,信号馈入组件的一个端面(201-1)是三角形的,并且可以与凹陷的三角形进给表面接触并连接 在电极板的阴极板(203)的后表面的中心区域中的入口(203-1),从而可以馈送射频/非常高频率的电源信号。通过 在电极板的中心的表面馈入可以减少由一点馈入或多点馈入的馈线距离引起的消耗,可以获得均匀电场的大面积稳定放电 ,可以提高生产效率,降低成本。
    • 6. 发明申请
    • MOVABLE JIG FOR SILICON-BASED THIN FILM SOLAR CELL
    • 用于硅基薄膜太阳能电池的可移动电极
    • US20120142137A1
    • 2012-06-07
    • US13389484
    • 2010-10-21
    • Shengming HuYi LiZhubing HeZhijiang LiJianhua ZhouChunzhu Wang
    • Shengming HuYi LiZhubing HeZhijiang LiJianhua ZhouChunzhu Wang
    • H01L31/18C23C16/458
    • C23C16/505C23C16/545H01J37/32091H01J37/32577H01J37/32715H01L21/67313H01L21/67326H01L21/6734H01L31/18
    • A movable jig for a silicon-based thin film solar cell comprises parallel electrode plates (203,208), a supporting frame and a signal feed-in assembly (201). The supporting frame is a movable frame and its side frame (216) is grounded. A shield device is set on the jig or among jig arrays themselves for preventing from being disturbed. The signal feed-in assembly is a conductor and its middle portion and head portion form a ladder cylinder, and one end surface (201-1) of the signal feed-in assembly is triangular and can surface contact and connect with a sunken triangular feed-in port (203-1) in the center area of the back surface of the cathode plate (203) of the electrode plates, so the radio frequency/the very high frequency power supply signal can be fed in. Through the way of the surface feed-in in the center of the electrode plate, the consumption caused by the feeder distance in the way of one point feed-in or multipoint feed-in can be reduced, the large area stable discharge of the uniform electric field can be obtained, the production efficiency can be increased and the cost can be decreased.
    • 一种用于硅基薄膜太阳能电池的可移动夹具包括平行电极板(203,208),支撑框架和信号馈入组件(201)。 支撑框架是可动框架,其侧框架(216)接地。 屏蔽装置设置在夹具或夹具阵列之间,以防止被干扰。 信号馈入组件是导体,其中间部分和头部形成梯形气缸,信号馈入组件的一个端面(201-1)是三角形的,并且可以与凹陷的三角形进给表面接触并连接 在电极板的阴极板(203)的后表面的中心区域中的入口(203-1),从而可以馈送射频/非常高频率的电源信号。通过 在电极板的中心的表面馈入可以减少由一点馈入或多点馈入的馈线距离引起的消耗,可以获得均匀电场的大面积稳定放电 ,可以提高生产效率,降低成本。
    • 10. 发明授权
    • Light source system and projection system applied thereby
    • 因此应用光源系统和投影系统
    • US09500345B2
    • 2016-11-22
    • US14346300
    • 2012-08-10
    • Yi YangYi Li
    • Yi YangYi Li
    • F21V17/02G03B21/20F21V9/16F21V13/02F21V13/08G01J1/04G03B21/16
    • F21V17/02F21V9/30F21V13/02F21V13/08G01J1/0448G03B21/16G03B21/204G03B21/2093
    • A light source system and a projection system employing the same. The light source system includes a light source emitting an excitation light, a moving device carrying a wavelength conversion material and an adjustment device. The excitation light irradiates on the wavelength conversion material. When the moving device is in a periodical moving state, the light spot position irradiated by the excitation light on the moving device moves following a first working track. The adjustment device is used for adjusting the light spot position irradiated by the adjusted excitation light on the moving device so that it moves following a second working track. The first working track is separated from the second working track. The system can reduce the working load of the wavelength conversion material on the first working track, thus slowing the aging of the wavelength conversion material, and improving the life of the light source system.
    • 光源系统和采用该光源系统的投影系统。 光源系统包括发射激发光的光源,携带波长转换材料的移动装置和调节装置。 激发光照射在波长转换材料上。 当移动装置处于周期性移动状态时,由移动装置上的激发光照射的光点位置在第一工作轨迹之后移动。 调整装置用于调整由移动装置上调节的激发光照射的光点位置,使其在第二工作轨迹之后移动。 第一个工作轨道与第二个工作轨道分开。 该系统可以降低第一工作轨道上的波长转换材料的工作负荷,从而减慢波长转换材料的老化,并提高光源系统的使用寿命。