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    • 4. 发明授权
    • ESD protection using a capacitivly-coupled clamp for protecting low-voltage core transistors from high-voltage outputs
    • 使用电容耦合钳位保护低压核心晶体管免受高压输出的ESD保护
    • US08072721B2
    • 2011-12-06
    • US12481696
    • 2009-06-10
    • Kwok Kuen David KwongChik Wai David NgWai Kit Victor SoHing Kit Kwan
    • Kwok Kuen David KwongChik Wai David NgWai Kit Victor SoHing Kit Kwan
    • H02H9/00
    • H03K19/00315H01L27/0266H03K19/018557
    • An electro-static-discharge (ESD) protection circuit protects core transistors. An internal node to the gate of an n-channel output transistor connects to the drain of an n-channel gate-grounding transistor to ground. The gate of the gate-grounding transistor is a coupled-gate node that is coupled by an ESD coupling capacitor to the output and to ground by an n-channel disabling transistor and a leaker resistor. The gate of the n-channel disabling transistor is connected to power and disables the ESD protection circuit when powered. An ESD pulse applied to the output is coupled through the ESD coupling capacitor to pulse high the coupled-gate node and turn on the gate-grounding transistor to ground the gate of the n-channel output transistor, which breaks down to shunt ESD current. The ESD pulse is prevented from coupling through a parasitic Miller capacitor of the n-channel output transistor by the gate-grounding transistor.
    • 静电放电(ESD)保护电路保护核心晶体管。 n沟道输出晶体管的栅极的内部节点连接到n沟道栅极 - 接地晶体管的漏极到地。 栅极接地晶体管的栅极是通过ESD耦合电容器耦合到输出并由n沟道禁用晶体管和漏电阻器接地的耦合栅极节点。 n沟道禁用晶体管的栅极连接电源,并在供电时禁用ESD保护电路。 施加到输出端的ESD脉冲通过ESD耦合电容器耦合,使耦合栅极节点高电压,并接通栅极 - 接地晶体管,使n沟道输出晶体管的栅极接地,从而分解ESD电流。 防止ESD脉冲通过栅极接地晶体管的n沟道输出晶体管的寄生米勒电容器耦合。
    • 5. 发明申请
    • Constant-Current Control Module using Inverter Filter Multiplier for Off-line Current-Mode Primary-Side Sense Isolated Flyback Converter
    • 恒流控制模块使用变频滤波乘法器进行离线电流模式初级侧检测隔离反激式转换器
    • US20110216559A1
    • 2011-09-08
    • US12718707
    • 2010-03-05
    • Chik Wai (David) NgHing Kit KwanPo Wah ChangWai Kit (Victor) SoKwok Kuen Kwong
    • Chik Wai (David) NgHing Kit KwanPo Wah ChangWai Kit (Victor) SoKwok Kuen Kwong
    • H02M3/335
    • H02M3/335
    • A fly-back AC-DC power converter has a constant-current control loop that senses the primary output current in a transformer to control the secondary output without an expensive opto-isolator. A primary-side control circuit can use either a Quasi-Resonant (QR) or a Pulse-Width-Modulation (PWM) control loop to switch primary current through the transformer on and off. A feedback voltage is compared to a primary-side voltage sensed from the primary current loop to turn the switch on and off. A multiplier loop generates the feedback voltage using a multiplier. A level-shift inverter and a low-pass filter act as the multiplier by multiplying an off duty cycle of the switch by the feedback voltage to generate a filtered voltage. A high-gain error amp compares the filtered voltage to a reference voltage to generate the feedback voltage. The multiplier produces a simple relationship between the secondary current and the reference voltage, yielding simplified current control.
    • 回扫AC-DC电力转换器具有恒定电流控制回路,其感测变压器中的主要输出电流,以在没有昂贵的光隔离器的情况下控制次级输出。 初级侧控制电路可以使用准谐振(QR)或脉冲宽度调制(PWM)控制回路来切换通过变压器的一次电流的开和关。 将反馈电压与从初级电流回路感测的初级侧电压进行比较,以打开和关闭开关。 乘法器环路使用乘法器产生反馈电压。 电平移位反相器和低通滤波器通过将开关的占空比乘以反馈电压作为乘法器,以产生滤波电压。 高增益误差放大器将滤波电压与参考电压进行比较,以产生反馈电压。 乘法器产生二次电流和参考电压之间的简单关系,产生简化的电流控制。