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    • 1. 发明申请
    • ACTIVE BACK-END TERMINATION CIRCUIT
    • 主动后端终止电路
    • US20100315176A1
    • 2010-12-16
    • US12695773
    • 2010-01-28
    • Min-Sheng KAOYu-Hao HSUJen-Ming WU
    • Min-Sheng KAOYu-Hao HSUJen-Ming WU
    • H03H7/38
    • H03H11/28H01S5/0427
    • The invention discloses an active back-end termination circuit, which comprises a first resistor, a first transistor, a second resistor, and a second transistor. The first resistor and the first transistor are connected in series for forming a first impendence unit. A first source of the first transistor is connected to a working voltage with VTT. The second resistor and the second transistor are connected in series for forming a second impendence unit. A second gate and a second drain of the second transistor are connected to the working voltage with VTT. Wherein, the first impendence unit and the second impendence unit are connected in parallel. The first transistor or the second transistor is switched on through a power source, and the first transistor and the second transistor change the impedance actively for matching a load according to the voltage source.
    • 本发明公开了一种有源后端终端电路,其包括第一电阻器,第一晶体管,第二电阻器和第二晶体管。 第一电阻器和第一晶体管串联连接以形成第一阻抗单元。 第一晶体管的第一个源极连接到具有VTT的工作电压。 第二电阻器和第二晶体管串联连接以形成第二阻抗单元。 第二晶体管的第二栅极和第二漏极通过VTT连接到工作电压。 其中,第一个阻抗单元和第二个阻抗单元并联连接。 第一晶体管或第二晶体管通过电源接通,并且第一晶体管和第二晶体管主动地改变阻抗,以根据电压源匹配负载。
    • 3. 发明授权
    • Active back-end termination circuit
    • 有源后端终端电路
    • US07863929B1
    • 2011-01-04
    • US12695773
    • 2010-01-28
    • Min-Sheng KaoYu-Hao HsuJen-Ming Wu
    • Min-Sheng KaoYu-Hao HsuJen-Ming Wu
    • H03K19/003
    • H03H11/28H01S5/0427
    • The invention discloses an active back-end termination circuit, which comprises a first resistor, a first transistor, a second resistor, and a second transistor. The first resistor and the first transistor are connected in series for forming a first impendence unit. A first source of the first transistor is connected to a working voltage with VTT. The second resistor and the second transistor are connected in series for forming a second impendence unit. A second gate and a second drain of the second transistor are connected to the working voltage with VTT. Wherein, the first impendence unit and the second impendence unit are connected in parallel. The first transistor or the second transistor is switched on through a power source, and the first transistor and the second transistor change the impedance actively for matching a load according to the voltage source.
    • 本发明公开了一种有源后端终端电路,其包括第一电阻器,第一晶体管,第二电阻器和第二晶体管。 第一电阻器和第一晶体管串联连接以形成第一阻抗单元。 第一晶体管的第一个源极连接到具有VTT的工作电压。 第二电阻器和第二晶体管串联连接以形成第二阻抗单元。 第二晶体管的第二栅极和第二漏极通过VTT连接到工作电压。 其中,第一个阻抗单元和第二个阻抗单元并联连接。 第一晶体管或第二晶体管通过电源接通,并且第一晶体管和第二晶体管主动地改变阻抗,以根据电压源匹配负载。
    • 6. 发明授权
    • Packaging for optical transceiver module
    • 光收发模块封装
    • US06661565B2
    • 2003-12-09
    • US10200185
    • 2002-07-23
    • Cheng-Da ShawMin-Sheng KaoChiung-Hung Wang
    • Cheng-Da ShawMin-Sheng KaoChiung-Hung Wang
    • G02B2600
    • G02B6/4277G02B6/4246G02B6/4292H05K1/14
    • A packaging method of the optical transceiver module for transmitting optical signals is disclosed. The invention includes a base, a case, a transmission unit and a receiving unit. The transmission unit and the receiving unit contain a circuit board, respectively. The base provides two fixing positions for the installation of the two circuit boards. The two circuit boards are installed horizontally and vertically, respectively. This design increases the utilization of the inner space, providing ideal shielding for the elements and circuit boards. A central beam is used to fix the structure and case in a drawable way like a matchbox. This reduces covered area of the circuit board, making the elements easy to be tested and assembled.
    • 公开了用于发送光信号的光收发模块的封装方法。 本发明包括基座,外壳,传输单元和接收单元。 传输单元和接收单元分别包含电路板。 底座为安装两个电路板提供了两个固定位置。 两个电路板分别水平和垂直安装。 该设计增加了内部空间的利用率,为元件和电路板提供了理想的屏蔽。 中央梁用于以可绘制的方式固定结构和壳体,如火柴盒。 这减少了电路板的覆盖面积,使元件易于测试和组装。
    • 9. 发明授权
    • Transmission circuit for use in input/output interface
    • 用于输入/输出接口的传输电路
    • US07443210B2
    • 2008-10-28
    • US11482731
    • 2006-07-10
    • Min Sheng KaoZee Shian JenJen Ming WuChing Te ChiuShuo Hung Hsu
    • Min Sheng KaoZee Shian JenJen Ming WuChing Te ChiuShuo Hung Hsu
    • H03B1/00
    • H03F1/34H03F3/45183H03F2200/36H03F2203/45318H03F2203/45366H03F2203/45566H03F2203/45684
    • A transmission circuit includes a first-stage circuit, a second-stage circuit, a negative active feedback circuit and a current buffer. The first-stage circuit includes at least an active MOS device for receiving an input voltage and issuing a first voltage signal. The active MOS device has an inductive feature during operation in a high frequency mode to compensate the first voltage signal. In response to the first voltage signal, the second-stage circuit outputs a first output voltage. The negative active feedback circuit may enhance the bandwidth of the first output voltage. The current buffer may enhance the gain value of the first output voltage. A second voltage signal is issued from the first-stage circuit and compensated by the first output voltage transmitted from the current buffer to enhance the bandwidth and the gain value thereof. In response to the compensated second voltage signal, the second-stage circuit outputs a second output voltage.
    • 传输电路包括第一级电路,第二级电路,负有源反馈电路和电流缓冲器。 第一级电路至少包括用于接收输入电压并发出第一电压信号的有源MOS器件。 有源MOS器件在高频模式下工作期间具有电感特性以补偿第一电压信号。 响应于第一电压信号,第二级电路输出第一输出电压。 负的有源反馈电路可以增强第一输出电压的带宽。 当前的缓冲器可以增强第一输出电压的增益值。 从第一级电路发出第二电压信号,并通过从当前缓冲器发送的第一输出电压补偿第二电压信号,以增强带宽及其增益值。 响应于补偿的第二电压信号,第二级电路输出第二输出电压。
    • 10. 发明授权
    • Packaging for optical transceiver module
    • 光收发模块封装
    • US06885487B2
    • 2005-04-26
    • US10617837
    • 2003-07-14
    • Cheng-Da ShawMin-Sheng KaoChiung-Hung Wang
    • Cheng-Da ShawMin-Sheng KaoChiung-Hung Wang
    • G02B6/42H05K1/14G02F1/03H01L29/06
    • G02B6/4277G02B6/4246G02B6/4292H05K1/14
    • A packaging method of the optical transceiver module for transmitting optical signals is disclosed. The invention includes a base, a case, a transmission unit and receiving unit. The transmission unit and the receiving unit contain a circuit board, respectively. The base provides two fixing positions for the installation of the two circuit boards. The two circuit boards are installed horizontally and vertically, respectively. This design increase the utilization of the inner space providing ideal shielding for the elements and circuit boards. A central beam is used to fix the structure and case in a drawable way like a matchbox. This reduces covered area of the circuit board, making the elements easy to be tested and assembled.
    • 公开了用于发送光信号的光收发模块的封装方法。 本发明包括基座,外壳,传输单元和接收单元。 传输单元和接收单元分别包含电路板。 底座为安装两个电路板提供了两个固定位置。 两个电路板分别水平和垂直安装。 这种设计提高了内部空间的利用率,为元件和电路板提供了理想的屏蔽。 中央梁用于以可绘制的方式固定结构和壳体,如火柴盒。 这减少了电路板的覆盖面积,使元件易于测试和组装。