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    • 65. 发明授权
    • Angled EMI shield for transceiver-PCB interface
    • 用于收发器 - PCB接口的倾斜EMI屏蔽
    • US06893293B2
    • 2005-05-17
    • US10633094
    • 2003-08-01
    • Donald A. IceLewis B. Aronson
    • Donald A. IceLewis B. Aronson
    • G02B6/38G02B6/42H01R13/658H05K9/00H01R13/648
    • H05K9/0058G02B6/3897G02B6/4277H01R13/6582H01R13/6596
    • A shield element for reducing electromagnetic interference (“EMI”) in an optical transceiver module assembly. The transceiver module assembly includes an optical transceiver received within a cage. The cage mounts to a host board and receives in one end thereof a right angle connector of the host board. A rear end of the optical transceiver includes an edge connector that electrically interfaces with a receptacle of the right angle connector. An EMI shield element is interposed between the rear end of the optical transceiver and the right angle connector. The EMI shield element includes a base that surrounds a portion of the right angle connector. Wall portions upwardly extend from the base around the right angle connector to form an angled shield seating surface that engages with a complementarily angled seating surface on the transceiver rear end, thereby forming an EMI shield when the optical transceiver is received into the cage.
    • 用于减少光收发器模块组件中的电磁干扰(“EMI”)的屏蔽元件。 收发器模块组件包括容纳在笼中的光收发器。 保持架安装到主机板,并在其一端接收主机板的直角连接器。 光收发器的后端包括与直角连接器的插座电接口的边缘连接器。 EMI屏蔽元件插在光收发器的后端和直角连接器之间。 EMI屏蔽元件包括围绕直角连接器的一部分的基座。 壁部分从基部围绕直角连接器向上延伸以形成与收发器后端上的互补成角度的安置表面接合的成角度的屏蔽座表面,从而当光收发器被接收到保持架中时形成EMI屏蔽。
    • 68. 发明授权
    • Controllable-birefringence, acousto-optic tunable filter and a laser
tuned by the same
    • 可控双折射,声光可调谐滤波器和由其调谐的激光器
    • US5452314A
    • 1995-09-19
    • US283455
    • 1994-08-01
    • Lewis B. Aronson
    • Lewis B. Aronson
    • G02F1/035G02F1/125H01S3/083H01S3/106H01S5/00H01S3/10
    • G02F1/125H01S3/1068G02F1/035G02F2201/12G02F2203/055H01S3/083
    • An acousto-optic tunable filter ("AOTF") with a pair of electrodes on opposite sides of the waveguide. A voltage source applies a potential across the electrodes, thereby creating an electric field through the waveguide. The electric field controls an optical property of the waveguide by altering the birefringence of the waveguide. Suitably adjusting the potential applied by the voltage source results in suppression of sidelobes, correction of asymmetric sidelobes, and compensation for physical variations in the waveguide. The AOTF can be tuned very rapidly by a tuning voltage applied to the electrodes. In combination with a thermistor, the control voltage can compensate for changes in temperature. A spatially-varying electric field is generated by using a set of electrodes at different potentials, or by using a resistive element as an electrode, or by shaping the electrodes according to the desired field. A rapidly-varying control voltage can modulate a light beam in the filter. The AOTF finds an application as the tuning element of an external-cavity tunable laser.
    • 在波导的相对侧上具有一对电极的声光可调滤波器(“AOTF”)。 电压源在电极之间施加电位,从而通过波导产生电场。 电场通过改变波导的双折射来控制波导的光学特性。 适当地调节由电压源施加的电位导致旁瓣的抑制,不对称旁瓣的校正以及波导中物理变化的补偿。 通过施加到电极的调谐电压可以非常快速地调谐AOTF。 结合热敏电阻,控制电压可以补偿温度变化。 通过使用不同电位的一组电极,或者通过使用电阻元件作为电极,或者根据所需的场来对电极进行成形来产生空间变化的电场。 快速变化的控制电压可以调制滤波器中的光束。 AOTF找到一个应用程序作为外部可调谐激光器的调谐元件。