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    • 4. 发明授权
    • Shape measurement apparatus and method
    • 形状测量装置及方法
    • US09275292B2
    • 2016-03-01
    • US12784707
    • 2010-05-21
    • Joong-Ki JeongMin-Young KimSeung-Jun Lee
    • Joong-Ki JeongMin-Young KimSeung-Jun Lee
    • H04N7/18G06K9/03G01B11/25G01N21/956
    • G01B11/254G01B11/2513G01B11/2531G01N2021/95638G06K9/036
    • A shape measurement apparatus includes a work stage supporting a target substrate, a pattern-projecting section including a light source, a grating part partially transmitting and blocking light generated by the light source to generate a grating image and a projecting lens part making the grating image on a measurement target of the target substrate, an image-capturing section capturing the grating image reflected by the measurement target of the target substrate, and a control section controlling the work stage, the pattern-projecting section and the image-capturing section, calculating a reliability index of the grating image and phases of the grating image, which is corresponding to the measurement target, and inspecting the measurement target by using the reliability index and the phases. Thus, the accuracy of measurement may be enhanced.
    • 一种形状测量装置,包括支撑目标基板的工作台,包括光源的图案投影部分,部分地透射和遮挡由光源产生的光以产生光栅图像的光栅部分,以及使光栅图像产生的投影透镜部分 在目标基板的测量目标上,捕获由目标基板的测量目标反射的光栅图像的图像捕获部分,以及控制工作台,图案投影部分和图像捕获部分的控制部分,计算 光栅图像的可靠性指标和与测量对象对应的光栅图像的相位,并且通过使用可靠性指标和相位来检查测量对象。 因此,可以提高测量的精度。
    • 6. 发明授权
    • Apparatus and method for controlling charging current in device using rechargeable battery
    • 用于使用可充电电池控制设备中充电电流的装置和方法
    • US09293940B2
    • 2016-03-22
    • US13240851
    • 2011-09-22
    • Heui-Do LimJeong-Yun HongSeung-Jun Lee
    • Heui-Do LimJeong-Yun HongSeung-Jun Lee
    • H02J7/00H02J7/04
    • H02J7/0081H02J7/0083
    • An apparatus and a method stabilize a charging current when recharging a battery in a device that uses a rechargeable battery. The device includes a charge module and a controller. The charge module provides a charging current to the battery, and operates in at least one of a Constant Current (CC) mode that maintains the charging current at a fixed value while the battery is charged, and a Constant Voltage (CV) mode that maintains a battery voltage at a reference value. The controller controls the charge module to operate in the CC mode when starting charging, controls the charge module to operate in the CV mode when the battery voltage reaches the reference value, and controls the charge module to operate in the CC mode for at least one time duration after the battery voltage reaches the reference value.
    • 一种在使用可再充电电池的装置中对电池进行再充电时的装置和方法稳定充电电流。 该装置包括充电模块和控制器。 充电模块向电池提供充电电流,并且在电池充电时将充电电流维持在固定值的恒定电流(CC)模式中的至少一种操作,以及维持恒定电压(CV)模式 电池电压为参考值。 当电池电压达到参考值时,控制器控制充电模块在CC模式下运行,当电池电压达到参考值时,控制充电模块工作在CV模式,并控制充电模块在CC模式下运行至少一个 电池电压达到参考值后的持续时间。
    • 8. 发明授权
    • Space domain filter detecting method in a multi-antenna wireless communication system
    • 多天线无线通信系统中的空域滤波器检测方法
    • US08139669B2
    • 2012-03-20
    • US12225892
    • 2007-01-24
    • Xiqi GaoXiaohu YouWenjin WangDong-Seung KwonSeung-Jun Lee
    • Xiqi GaoXiaohu YouWenjin WangDong-Seung KwonSeung-Jun Lee
    • H04B7/02
    • H04B7/0667H04B7/0854H04B7/0891H04B17/26
    • A space domain filter detecting method in a multi-antennas wireless communication system, which processes time and space domain interference differently. The space domain filter detecting method comprises the following steps: firstly, the received signals are matched-combined in time domain and space domain; secondly, using the combined signals as an observation value, the space domain filtering is performed; thirdly, an estimated value is subtracted from the filtered signals, and the result is taken as a detection output, which is sent to a determiner in a non-error control coding system to get a hard determination output or is sent to a determiner in an error control coding system to get a soft determination output that is finally sent to a coder. The method promotes the transmission rate and the anti-interference ability and advances the spectrum efficiency.
    • 在多天线无线通信系统中的空间域滤波器检测方法,其处理时域和空域干扰不同。 空域滤波器检测方法包括以下步骤:首先在时域和空域对接收信号进行匹配组合; 其次,使用组合信号作为观测值,进行空间域滤波; 第三,从经滤波的信号中减去估计值,将其作为检测输出,将其发送到无误差控制编码系统中的确定器以获得硬判定输出,或者将其发送到确定器 错误控制编码系统得到最终发送到编码器的软判定输出。 该方法提高了传输速率和抗干扰能力,提高了频谱效率。
    • 9. 发明申请
    • FREQUENCY VARIABLE COMPRESSOR AND CONTROL METHOD THEREOF
    • 频率可变压缩机及其控制方法
    • US20110271699A1
    • 2011-11-10
    • US13127016
    • 2009-10-29
    • Seung-Jun Lee
    • Seung-Jun Lee
    • F25B49/00
    • F04C23/008F04C18/356F04C23/001F04C28/02F04C28/065F04C28/08F04C28/24F04C2240/804
    • The present invention discloses a frequency variable compressor, including a shell defining an airtight space, an accumulator temporarily storing refrigerant before introducing the refrigerant into the shell, a first compression mechanism unit positioned in the shell, including a rolling piston, a cylinder, a refrigerant suction hole, a refrigerant discharge hole and a vane, and compressing refrigerant, a second compression mechanism unit positioned in the shell, including a rolling piston, a cylinder, a refrigerant suction hole, a refrigerant discharge hole and a vane, and compressing refrigerant, a frequency variable motor positioned in the shell and transferring power to the rolling pistons of the first and second compression mechanism units through a rotating shaft, and a valve controlling the flow of the refrigerant such that the first and second compression mechanism units compress the refrigerant by a twin rotary compressor type or a 2-stage rotary compressor type.
    • 本发明公开了一种频率可变的压缩机,包括限定气密空间的壳体,在将制冷剂引入壳体之前临时储存制冷剂的蓄能器,位于壳体中的第一压缩机构单元,包括滚动活塞,气缸,制冷剂 吸入孔,制冷剂排出孔和叶片,并且对制冷剂进行压缩,定位在壳体中的第二压缩机构单元包括滚动活塞,气缸,制冷剂吸入孔,制冷剂排出孔和叶片,并且压缩制冷剂, 位于外壳中的变频电动机,并通过旋转轴向第一和第二压缩机构单元的滚动活塞传递动力,以及控制制冷剂流动的阀,使得第一和第二压缩机构单元通过 双旋转压缩机型或2级旋转式压缩机型。