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    • 1. 发明授权
    • Parallel optical communications device having weldable inserts
    • 具有可焊接插入件的并行光通信装置
    • US08280203B2
    • 2012-10-02
    • US12498871
    • 2009-07-07
    • David J. K. MeadowcroftHui XuYe ChenRon Kaneshiro
    • David J. K. MeadowcroftHui XuYe ChenRon Kaneshiro
    • G02B6/12
    • G02B6/4246
    • A parallel optical communications device is provided that has an OSA that includes at least one heat dissipation block having a slot formed in a lower surface thereof that contains a weldable insert. Likewise, an upper surface of the mounting device of the ESA has at least one slot formed therein that contains a weldable insert. After the OSA is placed in contact with the ESA and optically aligned with the ESA, the OSA is secured to the upper surface of the mounting device of the ESA by welding together the respective weldable inserts contained in the respective slots in the OSA and in the mounting device of the ESA. The welding process results in an extremely strong welded joint between the OSA and the ESA that prevents relative movement between the OSA and the ESA if external forces that are exerted on the OSA and/or on the ESA.
    • 提供了一种并行光通信设备,其具有包括至少一个散热块的OSA,所述散热块在其下表面中形成有包含可焊接插入件的槽。 类似地,ESA的安装装置的上表面具有形成在其中的至少一个槽,其包含可焊接的插入件。 在OSA与ESA接触并与ESA光学对准之后,OSA通过将包含在OSA中的各个槽中的各个可焊接插件焊接在一起而固定到ESA的安装装置的上表面,并且在 ESA的安装装置。 焊接过程导致OSA和ESA之间的非常强的焊接接头,如果施加在OSA和/或ESA上的外力,则可以防止OSA和ESA之间的相对移动。
    • 3. 发明申请
    • PARALLEL OPTICAL COMMUNICATIONS DEVICE HAVING WELDABLE INSERTS
    • 具有焊接插件的并行光通信设备
    • US20110008005A1
    • 2011-01-13
    • US12498871
    • 2009-07-07
    • David J.K. MeadowcroftHui XuYe ChenRon Kaneshiro
    • David J.K. MeadowcroftHui XuYe ChenRon Kaneshiro
    • G02B6/36B23K31/02
    • G02B6/4246
    • A parallel optical communications device is provided that has an OSA that includes at least one heat dissipation block having a slot formed in a lower surface thereof that contains a weldable insert. Likewise, an upper surface of the mounting device of the ESA has at least one slot formed therein that contains a weldable insert. After the OSA is placed in contact with the ESA and optically aligned with the ESA, the OSA is secured to the upper surface of the mounting device of the ESA by welding together the respective weldable inserts contained in the respective slots in the OSA and in the mounting device of the ESA. The welding process results in an extremely strong welded joint between the OSA and the ESA that prevents relative movement between the OSA and the ESA if external forces that are exerted on the OSA and/or on the ESA.
    • 提供了一种并行光通信设备,其具有包括至少一个散热块的OSA,所述散热块在其下表面中形成有包含可焊接插入件的槽。 类似地,ESA的安装装置的上表面具有形成在其中的至少一个槽,其包含可焊接的插入件。 在OSA与ESA接触并与ESA光学对准之后,OSA通过将包含在OSA中的各个槽中的各个可焊接插件焊接在一起而固定到ESA的安装装置的上表面,并且在 ESA的安装装置。 焊接过程导致OSA和ESA之间的非常强的焊接接头,如果施加在OSA和/或ESA上的外力,则可以防止OSA和ESA之间的相对移动。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR ADAPTIVELY CONTROLLING THE IMPULSE RESPONSE OF THE OPTICAL SIGNAL OUTPUT FROM A LASER OF AN OPTICAL TRANSMITTER (TX)
    • 用于适应性地控制来自光学发射器(TX)的激光的光信号输出的脉冲响应的装置和方法
    • US20100303472A1
    • 2010-12-02
    • US12474433
    • 2009-05-29
    • Frederick W. MillerRon Kaneshiro
    • Frederick W. MillerRon Kaneshiro
    • H04B10/04
    • H01S5/06832H01S5/06835H04B10/504H04B10/508
    • An apparatus and a method are provided for adaptively adjusting the impulse response of the optical output of the laser of the optical TX in a way that ensures that the optical waveform being transmitted from the optical TX into the optical waveguide of the optical link has a desired waveform shape that improves or optimizes the performance of the optical link across variations in temperature, power supply, laser process corners, IC process corners, component aging, mechanical manufacturing tolerances, and part alignment tolerances. Adaptively adjusting the impulse response of the optical signal output from the laser in this way allows the optical TX to dynamically adapt to and compensate for a wide range of factors that typically cause performance degradation and result in reduced product yields, increased testing times, and increased test complexity, and higher costs. This, in turn, allows manufacturing tolerances and alignment tolerances to be relaxed, test times and test complexity to be reduced, and overall manufacturing and testing costs to be reduced.
    • 提供了一种装置和方法,用于以确保从光学TX发射到光链路的光波导中的光波形具有期望的方式自适应地调整光TX的激光的光输出的脉冲响应 波形形状,其改善或优化了光学连接器在温度,电源,激光工艺拐角,IC工艺拐角,部件老化,机械制造公差和部件对准公差等变化方面的性能。 以这种方式自适应地调节从激光器输出的光信号的脉冲响应允许光TX动态地适应并补偿通常导致性能下降并且导致产品产量降低,增加的测试时间和增加的广泛范围的因素 测试复杂性和更高的成本。 这反过来又允许减小制造公差和对准公差,减少测试时间和测试复杂性,并降低总体制造和测试成本。