SILICON PHOTONIC SOLDER REFLOWABLE ASSEMBLY
    61.
    发明申请

    公开(公告)号:US20200049909A1

    公开(公告)日:2020-02-13

    申请号:US16526374

    申请日:2017-01-30

    Abstract: In some examples a silicon photonic (SiPh) solder reflowable assembly may comprise a silicon interposer bonded to an organic substrate, the silicon interposer having an optical grating disposed on the interposer to couple an optical signal, a lens array chip, the lens array comprising one or more lenses on a wafer, the lens array chip flip chip reflowed to the silicon interposer by a bonding agent and the one or more lenses having a predetermined shape that expands, collimates, and tilts a beam of the optical signal exiting the grating. The wafer has a coefficient of thermal expansion (CTE) that matches silicon and the one or more lenses and the grating are aligned in such a way the optical signal enters the grating at a desired angle.

    Ring-resonator modulation of an optical signal

    公开(公告)号:US10432315B2

    公开(公告)日:2019-10-01

    申请号:US15745709

    申请日:2015-07-21

    Abstract: One example includes an optical transmitter system. The system includes a waveguide to receive and propagate an optical signal. The system also includes a ring modulation system comprising a ring resonator that is optically coupled to the waveguide and is to resonate a given wavelength of the optical signal in response to an input data signal that is provided to a modulation amplifier to provide carrier injection to change a refractive index of the ring resonator to resonate the given wavelength of the optical signal to modulate the optical signal. The system further includes a tuning controller associated with the ring modulation system. The tuning controller can implement iterative feedback tuning of the ring modulation system based on a relative amplitude of an optical intensity of the given wavelength in the ring resonator and a variable reference amplitude to substantially stabilize the ring resonator with respect to the given wavelength.

    Optical receivers
    64.
    发明授权

    公开(公告)号:US10333516B2

    公开(公告)日:2019-06-25

    申请号:US15749370

    申请日:2015-07-31

    Abstract: In one example, a device includes a photodetector to generate an electrical signal in response to an optical signal and a transimpedance amplifier unit to receive the electrical signal. In one example, the transimpedance amplifier unit may include a first inverter unit, a second inverter unit coupled to the first inverter unit, and a third inverter unit coupled to the second inverter unit. In one example the third inverter unit may include a feedback resistor and a first n-type transistor in parallel to the feedback resistor, where the first n-type transistor is to provide a variable gain of the third inverter unit.

    MULTI-WAVELENGTH OPTICAL SIGNAL SPLITTING
    65.
    发明申请

    公开(公告)号:US20190094466A1

    公开(公告)日:2019-03-28

    申请号:US15718306

    申请日:2017-09-28

    Abstract: An example system for multi-wavelength optical signal splitting is disclosed. The example disclosed herein comprises a first splitter, a second splitter, and a modulator. The system receives a multi-wavelength optical signal and an electrical signal, wherein the multi-wavelength optical signal comprises a plurality of optical wavelengths and has a power level. The first splitter is to split the plurality of optical wavelengths into a plurality of optical wavelength groups. The second splitter is to split the multi-wavelength optical signal or the plurality of optical wavelength groups into a plurality of lower power signal groups. The modulator is to encode the electrical signal into the plurality of optical wavelength groups, the plurality of lower power signal groups, or a combination thereof.

    Circuits with delay tap lines
    68.
    发明授权

    公开(公告)号:US10031353B2

    公开(公告)日:2018-07-24

    申请号:US15272856

    申请日:2016-09-22

    Abstract: Examples described herein relate to a driver circuit. In an example, the circuit includes a first input for receiving a first signal and a second input for receiving a second signal that is an inverse of the first signal. The circuit also includes a first driver array electrically coupling the first input to a first DC isolator and a first delay tap line electrically coupling the second input to the first DC isolator. The circuit further includes a second driver array electrically coupling the second input to a second DC isolator and a second delay tap line electrically coupling the first input to the second DC isolator. A carrier controller of the circuit is electrically coupled between the first DC isolator and the second DC isolator.

    ACTIVE-CONTROL OPTICAL RESONATOR
    70.
    发明申请
    ACTIVE-CONTROL OPTICAL RESONATOR 审中-公开
    主动控制光学谐振器

    公开(公告)号:US20160327818A1

    公开(公告)日:2016-11-10

    申请号:US15109863

    申请日:2014-01-31

    Abstract: An active-control optical resonator includes an oxide layer; a ring resonator arranged in a loop and positioned on the oxide layer; a tangential optical waveguide optically coupled to the ring resonator; a translatable body configured to selectively move into an evanescent field region of the ring resonator; a first electrode positioned on the translatable body, the first electrode comprising indium tin oxide; and a second electrode positioned between the oxide layer and the ring resonator.

    Abstract translation: 主动控制光谐振器包括氧化物层; 环形谐振器,布置在环中并定位在氧化物层上; 光耦合到环形谐振器的切向光波导; 被配置为选择性地移动到所述环形谐振器的消逝场区域中的可平移主体; 位于所述可平移主体上的第一电极,所述第一电极包括氧化铟锡; 以及位于氧化物层和环形谐振器之间的第二电极。

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