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    • 1. 发明授权
    • Battery pack with reinforcing member
    • 带加强件的电池组
    • US08936860B2
    • 2015-01-20
    • US12252827
    • 2008-10-16
    • Cheon-Soo Kim
    • Cheon-Soo Kim
    • H01M14/00H01M2/02H01M2/04H01M10/42H01M2/10
    • H01M2/021H01M2/0275H01M2/0473H01M2/1061H01M2/1094H01M10/4257H01M2200/00H01M2200/106Y10T29/49108
    • A battery pack that can prevent deformation caused by external impact as well as leakage of an electrolyte. The battery pack includes a bare cell including a pouch type casing, an electrode assembly accommodated in the pouch type casing, and positive and negative electrode tabs extending from one side of the pouch type casing, a protection circuit board electrically connected to the bare cell, and a main body accommodating the bare cell and the protection circuit board. The battery pack also includes at least one reinforcing plate, wherein ends of the reinforcing plate are in contact with a surface of a front end portion of the bare cell or an inner surface of the main body. The reinforcing plate can be formed integrally with an upper or lower case of the main body or can be formed separately and disposed in the upper case or lower case.
    • 可防止由外部冲击引起的变形以及电解液泄漏的电池组。 电池组包括:裸电池,包括袋型壳体,容纳在袋型壳体中的电极组件,以及从袋状壳体的一侧延伸的正极和负极接线片,与裸电池电连接的保护电路板, 以及容纳裸电池和保护电路板的主体。 电池组还包括至少一个加强板,其中加强板的端部与裸电池的前端部分的表面或主体的内表面接触。 加强板可以与主体的上壳体或下壳体一体地形成,或者可以分开地形成并且设置在上壳体或下壳体中。
    • 2. 发明授权
    • Differential VCO and quadrature VCO using center-tapped cross-coupling of transformer
    • 差分VCO和正交VCO使用变压器的中心抽头交叉耦合
    • US08212625B2
    • 2012-07-03
    • US12867798
    • 2008-06-13
    • Young Jae LeeCheon Soo Kim
    • Young Jae LeeCheon Soo Kim
    • H03B5/12H03B27/00H03C3/22
    • H03B5/1228H03B5/1212H03B5/1243H03B5/1296
    • Provided are a differential voltage-controlled oscillator (VCO) and a quadrature VCO using center-tapped cross-coupling of a transformer. The differential VCO and the quadrature VCO can be driven by low power through a current reuse structure and have an excellent phase noise characteristic by center-tapped cross-coupling through a transformer. Further, variable capacitance units for frequency variation are divided into variable capacitance units for coarse tuning and variable capacitance units for fine tuning. Therefore, it is possible to obtain a wide tuning range while voltage oscillation gain is reduced. Further, the differential VCO and the quadrature VCO are configured in such a manner that the respective variable capacitance units operate linearly throughout the entire capacitance region due to control voltage distribution by resistors. Accordingly, it is possible to obtain a linear control voltage-oscillation frequency characteristic. The quadrature VCO according to the present invention can output four-phase quadrature signals while having an excellent phase noise characteristic, without substrate loss and current consumption caused by the switching transistors.
    • 提供了一种差分压控振荡器(VCO)和使用变压器的中心抽头交叉耦合的正交VCO。 差分VCO和正交VCO可以通过电流重用结构的低功率驱动,并且通过通过变压器的中心抽头交叉耦合具有优异的相位噪声特性。 此外,用于频率变化的可变电容单元被分为用于粗调的可变电容单元和用于微调的可变电容单元。 因此,可以获得宽的调谐范围,同时降低电压振荡增益。 此外,差分VCO和正交VCO被配置为使得各个可变电容单元由于由电阻器的控制电压分布而在整个电容区域中线性地工作。 因此,可以获得线性控制电压 - 振荡频率特性。 根据本发明的正交VCO可以输出四相正交信号,同时具有优异的相位噪声特性,而没有由开关晶体管引起的衬底损耗和电流消耗。
    • 3. 发明申请
    • ELECTRODE ASSEMBLY AND SECONDARY BATTERY USING THE SAME
    • 电极组件和使用相同的二次电池
    • US20100310912A1
    • 2010-12-09
    • US12789654
    • 2010-05-28
    • Cheon-Soo KIMDae-June Jeong
    • Cheon-Soo KIMDae-June Jeong
    • H01M6/10
    • H01M10/052H01M10/0431H01M10/0525H01M10/0587
    • An electrode assembly of a secondary battery includes an electrode group including a first electrode plate, a separator, and a second electrode plate that are stacked and wound, and a finishing tape attached to a predetermined region of a terminal portion of the electrode group. The finishing tape satisfies the equation Y1=tensile strength×thickness of finishing tape/modulus of elasticity, with Y1 ranging from 64 to 89. Alternatively, the finishing tape includes a film layer and an adhesive layer, and satisfies the equation Y2=tensile strength×thickness of film layer of finishing tape/modulus of elasticity, with Y2 ranging from 51 to 75. The finishing tape effectively prevents an increase in the thickness of a high-capacity secondary battery.
    • 二次电池的电极组件包括堆叠并卷绕的第一电极板,隔板和第二电极板的电极组,以及附着到电极组的端子部分的预定区域的精整带。 精加工带满足方程式Y1 =拉伸强度×精整带的厚度/弹性模量,Y1范围为64〜89。另外,精加工带包括膜层和粘合层,满足式Y2 =拉伸强度 ×整理带膜厚度/弹性模量,Y2范围为51〜75。整理胶带有效地防止了高容量二次电池的厚度增加。
    • 4. 发明授权
    • Wireless transceiving apparatus for variability of signal processing band
    • 用于信号处理频带变化的无线收发装置
    • US07773953B2
    • 2010-08-10
    • US11224811
    • 2005-09-12
    • Seon-Ho HanMun-Yang ParkHyun-Kyu YuCheon-Soo Kim
    • Seon-Ho HanMun-Yang ParkHyun-Kyu YuCheon-Soo Kim
    • H04B1/40
    • H04B1/405
    • Provided is a wireless transceiving apparatus for variability of signal processing band, in which at least one resonator of an analog processor and a VCO are simultaneously controlled using a frequency synthesizer, and a frequency of the VCO and a resonance frequency of the analog processor are controlled to have a rational number ratio, thereby capable of varying the signal processing band. The wireless transceiving apparatus includes: an analog processor having a plurality of resonators on a path of transmission/reception signals, for performing analog signal processing; a digital processor for performing digital signal processing on an output signal of the analog processor or data to be transmitted to the analog processor; and a frequency synthesizer for providing a local oscillation (LO) frequency and a controlling signal to the resonators of the analog processor so as to vary a signal processing band of the analog processor.
    • 提供了一种用于信号处理频带的可变性的无线收发装置,其中使用频率合成器同时控制模拟处理器和VCO的至少一个谐振器,并且控制VCO的频率和模拟处理器的谐振频率 具有有理数比,由此能够改变信号处理频带。 无线收发装置包括:模拟处理器,在发送/接收信号的路径上具有多个谐振器,用于执行模拟信号处理; 用于对模拟处理器的输出信号执行数字信号处理的数字处理器或将被发送到模拟处理器的数据; 以及用于向模拟处理器的谐振器提供本地振荡(LO)频率和控制信号以便改变模拟处理器的信号处理频带的频率合成器。
    • 6. 发明申请
    • SECONDARY BATTERY
    • 二次电池
    • US20090246639A1
    • 2009-10-01
    • US12411273
    • 2009-03-25
    • Cheon Soo Kim
    • Cheon Soo Kim
    • H01M2/16H01M4/02
    • H01M10/0587H01M2/16H01M2/22H01M2/34H01M4/13H01M10/0436H01M10/052H01M10/617H01M10/623H01M10/653H01M10/654H01M2004/027Y02E60/122
    • An electrode assembly for a secondary battery comprising an adiabatic plate attached to the negative electrode plate is disclosed. The electrode assembly comprises a positive electrode plate having a positive electrode collector, a positive electrode coating, and a non-coated area on the positive electrode collector. The negative electrode plate has a negative electrode collector, a negative electrode coating, and a non-coated area on the negative electrode collector. A separator insulates the positive and negative electrode plates. Positive and negative electrode tabs are attached to the non-coated areas of the positive and negative electrode collectors. The negative electrode plate has an adiabatic plate attached to the surface of a non-coated area of the negative electrode collector that is opposite the surface to which the negative electrode tab is attached. This construction improves battery stability and prevents short circuits caused either by heat generated during overcharging or by an internal short circuit.
    • 公开了一种用于二次电池的电极组件,其包括连接到负极板的绝热板。 电极组件包括在正极集电体上具有正极集电体,正极涂层和未涂覆区域的正极板。 负极板在负极集电体上具有负极集电体,负极涂层和未涂覆区域。 分离器绝缘正极板和负极板。 正极和负极接线片连接到正极和负极集电器的未涂覆区域。 负极板具有安装在负极集电体的未涂覆区域的表面上的绝热板,该绝缘板与负电极接头附着的表面相对。 这种结构提高了电池的稳定性,并且防止由于过充电期间产生的热或内部短路引起的短路。
    • 7. 发明授权
    • Detector for automatic gain control
    • 用于自动增益控制的检测器
    • US07466196B2
    • 2008-12-16
    • US11677103
    • 2007-02-21
    • Sung Kyung ParkCheon Soo Kim
    • Sung Kyung ParkCheon Soo Kim
    • H03G3/20
    • H03G3/3036H03F3/45183H03F3/45475H03F2203/45134H03F2203/45138H03F2203/45352
    • Provided is a detector for automatic gain control (AGC). The detector for AGC is used for a variable gain amplifier (VGA) including at least one VGA cell. The detector for AGC includes: first and second transistors having drains connected in common to a power supply voltage and sources connected in common to a first node, and driven in response to a non-inverting output voltage and an inverting output voltage of the VGA cell, respectively; a first current source connected between the sources of the first and second transistors and a ground voltage to supply a predetermined current; a third transistor having a drain and a source connected to the power supply voltage and a second node, respectively, and driven in response to a pre-set reference voltage; a second current source connected to the source of the third transistor and the ground voltage to supply a predetermined current; and a comparator having a non-inverting input terminal and an inverting input terminal connected to the first and second nodes, respectively, and comparing a peak voltage from the first node with a reference voltage from the second node to output a control voltage with a predetermined level to the VGA cell based on the comparison result. The detector for AGC can continuously and effectively detect an output swing of the VGA.
    • 提供了一种用于自动增益控制(AGC)的检测器。 用于AGC的检测器用于包括至少一个VGA单元的可变增益放大器(VGA)。 用于AGC的检测器包括:具有共同连接到电源电压的漏极和共同连接到第一节点的源的第一和第二晶体管,并且响应于VGA单元的非反相输出电压和反相输出电压而被驱动 , 分别; 连接在第一和第二晶体管的源极之间的第一电流源和用于提供预定电流的接地电压; 分别具有连接到电源电压的漏极和源极以及响应于预设参考电压而被驱动的第二节点的第三晶体管; 连接到第三晶体管的源极的第二电流源和接地电压以提供预定电流; 以及比较器,具有分别连接到第一和第二节点的非反相输入端和反相输入端,并且将来自第一节点的峰值电压与来自第二节点的参考电压进行比较,以输出预定的 根据比较结果对VGA单元进行等级。 AGC的检测器可以连续有效地检测VGA的输出摆幅。
    • 8. 发明授权
    • LC quadrature VCO having startup circuit
    • 具有启动电路的LC正交VCO
    • US07436266B2
    • 2008-10-14
    • US11644506
    • 2006-12-22
    • Sang-Jin ByunCheon-Soo Kim
    • Sang-Jin ByunCheon-Soo Kim
    • H03B5/12
    • H03B5/06H03B5/08H03B27/00
    • Provided is an Inductor-Capacitor (LC) quadrature Voltage Controlled Oscillator (VCO) having a startup circuit which can accurately select one of +90° and −90° as a phase difference between two clocks generated by the LC quadrature VCO by embodying the startup circuit therein by using a phase detector and a controller. The LC quadrature VCO includes a first LC tank for generating a second clock signal and a fourth clock signal, a second LC tank for generating a first clock signal and a third clock signal, a phase detector for receiving the clock signals from the first LC tank and the second LC tank, and detecting whether a phase difference between the clocks is +90° or −90°, and a controller for discriminating whether phase information detected by the phase detector is equivalent to a phase difference between clocks required by the external signal processing unit, and changing an operation mode of the first LC tank and/or the second LC tank on the basis of the discrimination result of the phase difference between the clocks.
    • 提供了一种具有启动电路的电感电容器(LC)正交压控振荡器(VCO),该启动电路可以通过体现启动而精确地选择+ 90°和-90°之一作为由LC正交VCO产生的两个时钟之间的相位差 电路中使用相位检测器和控制器。 LC正交VCO包括用于产生第二时钟信号的第一LC箱和第四时钟信号,用于产生第一时钟信号和第三时钟信号的第二LC箱,用于从第一LC箱接收时钟信号的相位检测器 和第二LC箱,并且检测时钟之间的相位差是否为+ 90°或-90°;以及控制器,用于鉴别由相位检测器检测的相位信息是否等于外部信号所需的时钟之间的相位差 处理单元,并且基于时钟之间的相位差的判别结果来改变第一LC箱和/或第二LC箱的操作模式。
    • 9. 发明申请
    • DETECTOR FOR AUTOMATIC GAIN CONTROL
    • 用于自动增益控制的检测器
    • US20080129378A1
    • 2008-06-05
    • US11677103
    • 2007-02-21
    • Sung Kyung ParkCheon Soo Kim
    • Sung Kyung ParkCheon Soo Kim
    • H03G3/20H03F3/45
    • H03G3/3036H03F3/45183H03F3/45475H03F2203/45134H03F2203/45138H03F2203/45352
    • Provided is a detector for automatic gain control (AGC). The detector for AGC is used for a variable gain amplifier (VGA) including at least one VGA cell. The detector for AGC includes: first and second transistors having sources connected in common to a power supply voltage and drains connected in common to a first node, and driven in response to a non-inverting output voltage and an inverting output voltage of the VGA cell, respectively; a first current source connected between the drains of the first and second transistors and a ground voltage to supply a predetermined currently a third transistor having a source and a drain connected to the power supply voltage and a second node, respectively, and driven in response to a pre-set reference voltage; a second current source connected to the drain of the third transistor and the ground voltage to supply a predetermined current; and a comparator having a non-inverting input terminal and an inverting input terminal connected to the first and second nodes, respectively, and comparing a peak voltage from the first node with a reference voltage from the second node to output a control voltage with a predetermined level to the VGA cell based on the comparison result. The detector for AGC can continuously and effectively detect an output swing of the VGA.
    • 提供了一种用于自动增益控制(AGC)的检测器。 用于AGC的检测器用于包括至少一个VGA单元的可变增益放大器(VGA)。 用于AGC的检测器包括:具有共同连接到电源电压的源极和共同连接到第一节点的漏极的第一和第二晶体管,并且响应于VGA单元的非反相输出电压和反相输出电压而被驱动 , 分别; 连接在第一和第二晶体管的漏极之间的第一电流源和接地电压,以分别向电源电压和第二节点提供预定的当前具有源极和漏极的第三晶体管,并响应于 预设参考电压; 连接到第三晶体管的漏极的第二电流源和接地电压以提供预定电流; 以及比较器,具有分别连接到第一和第二节点的非反相输入端和反相输入端,并且将来自第一节点的峰值电压与来自第二节点的参考电压进行比较,以输出预定的 根据比较结果对VGA单元进行等级。 AGC的检测器可以连续有效地检测VGA的输出摆幅。