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    • 2. 发明授权
    • Battery energy balance circuit and battery charging bypass circuit
    • 电池能量平衡电路和电池充电旁路电路
    • US07049791B2
    • 2006-05-23
    • US10718545
    • 2003-11-24
    • Pao-Chuan LinChun-Hsien LeeYi-Shuo HuangChung-Lin Lee
    • Pao-Chuan LinChun-Hsien LeeYi-Shuo HuangChung-Lin Lee
    • H02J7/00
    • H02J7/0016
    • A battery energy balance circuit and a battery charging bypass circuit is disclosed for batteries being charged at the same time to be charged equally. When the terminal voltages of the batteries are different, a controllable power device switch in the circuit switches on and off at a high frequency in order to reduce the input current to the batteries with higher terminal voltages and to increase the input current to the batteries with lower terminal voltages, achieving the goal of equal charging. The disclosed energy balance circuit can avoid damages to the batteries as a result of overcharging. When the number of batteries increases, one can expand the system in a modularized way to prevent inconvenience of circuit designs.
    • 公开了同时充电的电池同时充电的电池能量平衡电路和电池充电旁路电路。 当电池的端子电压不同时,电路中的可控功率器件开关以高频率接通和断开,以便降低具有较高端子电压的电池的输入电流并增加对电池的输入电流, 降低端电压,达到同等充电​​的目的。 公开的能量平衡电路可以避免由于过充电而导致的电池损坏。 当电池数量增加时,可以以模块化的方式扩展系统,以防止电路设计的不便。
    • 3. 发明申请
    • Equalizer for series of connected battery strings
    • 用于连接电池串的均衡器
    • US20050140335A1
    • 2005-06-30
    • US10882172
    • 2004-07-02
    • Chun-Hsien LeePao-Chuan Lin
    • Chun-Hsien LeePao-Chuan Lin
    • H02J7/00
    • H02J7/0018
    • A terminal voltage equalization circuit is used to equalize the terminal voltage of the series of connected battery strings so that each battery in the series of connected battery strings can be equally charged. When voltage of a certain battery in the battery string is higher than that of the other batteries, the battery voltage sensing and controlling circuit will output a high frequency signal to drive the switch devices to transit power from the high voltage batteries to the low voltage batteries by transformer. By the high switching switches, the charging currents through the batteries with high terminal voltages can be reduced, the charging currents through the batteries with low terminal voltages can be enhanced, and therefore the damages to the batteries due to overcharging can be avoided and speedy balance of the terminal voltages between each battery can be achieved.
    • 使用端子电压均衡电路来均衡连接的一系列电池串的端子电压,使得串联的电池串中的每个电池可以被均等地充电。 当电池组中的某个电池的电压高于其他电池的电压时,电池电压检测和控制电路将输出高频信号以驱动开关装置将电力从高电压电池传递到低电压电池 通过变压器。 通过高切换开关,可以减少通过具有高端子电压的电池的充电电流,可以提高通过具有低端子电压的电池的充电电流,并且因此可以避免由于过充电而对电池造成的损坏并且快速平衡 的每个电池之间的端子电压可以实现。
    • 4. 发明申请
    • Hierarchical battery potential equalizing device
    • 分层电池电位均衡装置
    • US20060145662A1
    • 2006-07-06
    • US11245155
    • 2005-10-07
    • Yi-Shuo HuangChun-Hsien LeeTain-Syh Luor
    • Yi-Shuo HuangChun-Hsien LeeTain-Syh Luor
    • H02J7/00
    • H02J7/0016
    • The present invention provides a hierarchical battery potential equalizing device to equalize the voltage of a plurality of serial batteries. The batteries are divided into a plurality of groups, one potential equalizer is provided for each group to make potential equalization among batteries, and at least one potential equalizer is provided for different groups to make potential equalization among groups. Wherein the potential equalizers have a hierarchical architecture, the first level of potential equalizers of the hierarchical architecture are respectively corresponding to one group to make potential equalization, and the other levels of potential equalizers make potential equalization among groups.
    • 本发明提供了一种用于均衡多个串联电池的电压的分级电池电位均衡装置。 电池被分成多个组,为每个组提供一个电位均衡器以在电池之间进行电势均衡,并且为不同组提供至少一个电位均衡器以在组之间进行电位均衡。 其中电位均衡器具有层次结构,层次结构的第一级势均衡器分别对应于一组进行电位均衡,而其他级别的电位均衡器在组之间形成潜在均衡。
    • 5. 发明授权
    • Power factor correction circuit with resonant snubber
    • 具有谐振缓冲器的功率因数校正电路
    • US06690143B2
    • 2004-02-10
    • US10197846
    • 2002-07-19
    • Pao-Chuan LinChun-Hsien LeeChih-Hsin ChenChung-Shing Tzou
    • Pao-Chuan LinChun-Hsien LeeChih-Hsin ChenChung-Shing Tzou
    • G05F110
    • H02M1/4208G05F1/70Y02B70/126Y02P80/112
    • A power factor correction (PFC) circuit with a resonant snubber. The power factor correction (PFC) circuit has an input part (601) for receiving an AC voltage and outputting a first DC voltage; a main part (604) for converting the first DC voltage to a second DC voltage; and a snubber (500) for ensuring the main part operates in soft turn-on and soft turn-off. The main part (604) has a primary inductor and a primary diode connected in series, and a switch (606) connected to the connection node of the primary inductor and the primary diode. The snubber (500) has a cascaded device (a first diode and a resonant inductor connected in series) and a second diode connected in series, and a resonant capacitor connected between the connection node of the cascaded device and second diode, and the switch (606).
    • 具有谐振缓冲器的功率因数校正(PFC)电路。 功率因数校正(PFC)电路具有用于接收AC电压并输出第一DC电压的输入部分(601); 用于将第一DC电压转换为第二DC电压的主要部分(604); 和一个缓冲器(500),用于确保主要部件在软启动和软关断时工作。 主要部分(604)具有串联连接的初级电感器和初级二极管,以及连接到初级电感器和初级二极管的连接节点的开关(606)。 缓冲器(500)具有级联装置(串联连接的第一二极管和谐振电感器)和串联连接的第二二极管,以及连接在级联装置的连接节点和第二二极管之间的谐振电容器和开关( 606)。
    • 6. 发明授权
    • Safety protection device and control method thereof
    • 安全保护装置及其控制方法
    • US09010359B2
    • 2015-04-21
    • US13411495
    • 2012-03-02
    • Chun-Hsien Lee
    • Chun-Hsien Lee
    • F16K17/00E03B7/07F16K31/48F16K31/44
    • E03B7/071Y02A20/15Y10T137/0318Y10T137/7722Y10T137/7723Y10T137/86389
    • The safety protection device contains a control unit, a transmission unit, and a throttle unit. The control method contains the following steps: step A: setting a condition parameter X of the control unit; step B: engaging the safety protection device into an operational mode; step C: determining if an external condition X0 satisfies the condition parameter X; if yes, continuing to the step D; otherwise, returning to the step B; and step D: turning off the throttle unit through the transmission unit driven by the control unit. A valve is configured inside the throttle unit and connected to a base through a driving device and to the transmission unit. The control unit contains an energy storage/release device configured on the throttle unit. A moveable block is configured inside the energy storage/release device. The transmission unit, together with the block, controls the open and close of the valve.
    • 安全保护装置包括控制单元,传动单元和节流单元。 控制方法包括以下步骤:步骤A:设置控制单元的状态参数X; 步骤B:使安全保护装置进入操作模式; 步骤C:确定外部条件X0是否满足条件参数X; 如果是,继续步骤D; 否则返回到步骤B; 步骤D:通过由控制单元驱动的传动单元关闭节气门单元。 阀门配置在节流阀单元的内部,并通过驱动装置和传动单元连接到基座。 控制单元包括配置在节气门单元上的能量存储/释放装置。 能量储存/释放装置内配置一个可动块。 传动单元与阀体一起控制阀的打开和关闭。