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    • 95. 发明授权
    • Synchronized data communication on a one-wired bus
    • 在单线总线上同步数据通信
    • US07180886B2
    • 2007-02-20
    • US10153784
    • 2002-05-24
    • Jing-Meng LiuKent HwangChao-Hsuan ChuangCheng-Hsuan Fan
    • Jing-Meng LiuKent HwangChao-Hsuan ChuangCheng-Hsuan Fan
    • H04J3/06H04L12/50
    • H04L25/4923H04L7/06H04L25/4904
    • In a synchronized data communication on a one-wired bus, it transmits and receives a synchronizing signal that segments part of or all proportions of the data signal by use of three electrically distinguishable statuses for the identifier of the synchronizing signal and the logic states of the data signal to increase the endurance of frequency displacement and resist influences of the interference of external conditions, low quality of transmission medium, and limitation of transmission distance and make the reliability and correctness of the signal transmission improve substantially. It is also clearly illustrated the feasibility and simplicity for implementing the one-wired synchronized communication by a plurality of exemplary signal types and a transceiver circuitry.
    • 在单线总线上的同步数据通信中,它发送和接收同步信号,该同步信号通过使用用于同步信号的标识符的三个电可区分状态以及数据信号的逻辑状态来分割数据信号的一部分或全部比例 数据信号增加频率位移的耐久性,抵抗外部条件干扰,传输介质质量差,传输距离限制的影响,使信号传输的可靠性和正确性大大提高。 还清楚地示出了通过多个示例性信号类型和收发器电路来实现单线同步通信的可行性和简单性。
    • 96. 发明授权
    • Circuit protection device
    • 电路保护装置
    • US06927960B2
    • 2005-08-09
    • US10282062
    • 2002-10-29
    • Jian-Rong HuangLiang-Pin TaiJing-Meng Liu
    • Jian-Rong HuangLiang-Pin TaiJing-Meng Liu
    • H02H5/04
    • H02H5/041
    • A circuit protection device includes an overheat protecting circuit connected to a main circuit and capable of being activated so as to shut down the main circuit when operating temperature of the main circuit reaches a predetermined value, and a current limiting circuit connected to the main circuit for preventing current through the main circuit from exceeding a predetermined threshold value. The current limiting circuit is further connected to the overheat protecting circuit and controls activation of the overheat protecting circuit when the current through the main circuit reaches the predetermined threshold value. Therefore, erroneous operation of the circuit protection device due to a shift in component characteristics of the overheat protecting circuit attributed to limitations in fabrication can be avoided.
    • 电路保护装置包括:连接到主电路并且能够被激活以在主电路的工作温度达到预定值时关闭主电路的过热保护电路;以及连接到主电路的限流电路, 防止通过主电路的电流超过预定阈值。 当流过主电路的电流达到预定阈值时,电流限制电路进一步连接到过热保护电路,并控制过热保护电路的启动。 因此,可以避免由于制造中的限制而引起的过热保护电路的部件特性偏移导致的电路保护装置的错误操作。
    • 97. 发明授权
    • Inductor equivalent circuit and application thereof
    • 电感等效电路及其应用
    • US06809616B2
    • 2004-10-26
    • US10342183
    • 2003-01-15
    • Jing-Meng LiuKent HwangChao-Hsuan ChuangCheng-Hsuan Fan
    • Jing-Meng LiuKent HwangChao-Hsuan ChuangCheng-Hsuan Fan
    • H03H1100
    • H03H11/485H03H11/48
    • An inductor equivalent circuit is disclosed. The circuit comprises a reference current source, a first current mirror, a second current mirror, two operational amplifiers OP1 and OP2, a capacitor, a first transistor, a second transistor, a mirror resistor set, and a bypass current source in parallel with the capacitor. An input signal is through OP1 and second transistor to control the reference current source. The first mirror current is then feed-back a signal to the first transistor through an OP2. The current signal makes the drain current of the first transistor lags the input voltage signal by 90° due to the capacitor coupled with the first mirror current source. The mirror resistor set can be resistors having one common terminal grounded, and other terminals each, respectively, coupled with the first and the second transistor and the capacitor, or can be composed of transistors and all of them with gate property biased so that the transistors in the mirror resistor set are operated in an ohmic region. The second mirror current provides an output current of the inductor equivalent circuit for next cascade stage.
    • 公开了一种电感器等效电路。 该电路包括参考电流源,第一电流镜,第二电流镜,两个运算放大器OP1和OP2,电容器,第一晶体管,第二晶体管,反射镜电阻器组以及旁路电流源 电容器。 输入信号通过OP1和第二晶体管来控制参考电流源。 然后通过OP2将第一镜电流反馈到第一晶体管。 由于与第一反射镜电流源耦合的电容器,电流信号使得第一晶体管的漏极电流滞留输入电压信号90°。 镜电阻器组可以是具有一个公共端子接地的电阻器,并且其他端子分别与第一和第二晶体管和电容器耦合,或者可以由晶体管组成,并且所有这些端子都具有偏置的栅极特性,使得晶体管 镜面电阻组在欧姆区域工作。 第二镜电流为下一级联级提供电感等效电路的输出电流。
    • 98. 发明授权
    • ESD protection circuit for different power supplies
    • ESD保护电路用于不同电源
    • US06400542B1
    • 2002-06-04
    • US09882680
    • 2001-06-18
    • Jian-Hsing LeeJian-Ren ShihYi-Hsun WuJing-Meng Liu
    • Jian-Hsing LeeJian-Ren ShihYi-Hsun WuJing-Meng Liu
    • H02H900
    • H01L27/0259
    • A voltage clamping circuit that protects integrated circuits having multiple separate power supply voltage terminals from damage when an ESD event causes excessive differential voltages between the multiple separate power supply voltage terminals. The voltage clamping circuit has two subgroups of Darlington connected clamping transistors. The first subgroup of Darlington connected clamping transistors is connected between the first power supply voltage terminal and the second power supply voltage terminal. If the differential voltage exceeds the first clamping voltage level, the first subgroup of Darlington connected clamping transistors turn on and restore the first differential voltage to a level less than the first clamping voltage level. The second subgroup of Darlington connected clamping transistors connected between the second power supply terminal and the first power supply terminal. If the differential voltage exceeds the second clamping voltage level, the second subgroup of Darlington connected transistors turn on and restore the differential voltage to a level less than the second clamping voltage level.
    • 一种电压钳位电路,当ESD事件在多个分离的电源电压端子之间引起过大的差分电压时,保护具有多个单独的电源电压端子的集成电路免受损坏。 电压钳位电路有两个Darlington连接钳位晶体管的子组。 达林顿连接的钳位晶体管的第一个子组连接在第一电源电压端子和第二电源电压端子之间。 如果差分电压超过第一钳位电压电平,则达林顿连接的钳位晶体管的第一个子组导通,并将第一个差分电压恢复到小于第一钳位电压电平的电平。 连接在第二电源端子和第一电源端子之间的达林顿的第二子组连接钳位晶体管。 如果差分电压超过第二钳位电压电平,则达林顿连接晶体管的第二个子组导通,并将差分电压恢复到小于第二钳位电压电平的电平。
    • 99. 发明授权
    • Isolated power converter circuit and control method thereof
    • 隔离式电源转换器电路及其控制方法
    • US09287796B2
    • 2016-03-15
    • US13765609
    • 2013-02-12
    • Chia-Wei LiaoJing-Meng Liu
    • Chia-Wei LiaoJing-Meng Liu
    • H02M3/335H02M5/40H02M1/00
    • H02M5/40H02M3/33523H02M2001/0032Y02B70/16
    • The present invention discloses an isolated power converter circuit and a control method thereof. The isolated power converter circuit includes: a transformer circuit, a power switch circuit, an opto-coupler circuit, and a control circuit. The transformer circuit includes a first winding and a second winding. The power switch circuit is coupled to the transformer circuit to control it according to a driving signal. The opto-coupler circuit generates a feedback signal. The control circuit is coupled to the power switch circuit and the opto-coupler circuit, for generating the driving signal according to the feedback signal. The control circuit includes a distinguishing circuit for distinguishing a status of the feedback signal.
    • 本发明公开了一种隔离电力转换电路及其控制方法。 隔离电力转换器电路包括:变压器电路,电源开关电路,光耦合器电路和控制电路。 变压器电路包括第一绕组和第二绕组。 功率开关电路耦合到变压器电路,以根据驱动信号进行控制。 光耦合器电路产生反馈信号。 控制电路耦合到功率开关电路和光耦合器电路,用于根据反馈信号产生驱动信号。 控制电路包括用于区分反馈信号的状态的区别电路。