An 8×10 GHz receiver optical sub-assembly (ROSA) consisting of an 8-channel arrayed waveguide grating (AWG) and an 8-channel PIN photodetector (PD) array is designed and fabricated based on silica hybrid in...An 8×10 GHz receiver optical sub-assembly (ROSA) consisting of an 8-channel arrayed waveguide grating (AWG) and an 8-channel PIN photodetector (PD) array is designed and fabricated based on silica hybrid integration technology. Multimode output waveguides in the silica AWG with 2% refractive index difference are used to obtain fiat-top spectra. The output waveguide facet is polished to 45° bevel to change the light propagation direction into the mesa-type PIN PD, which simplifies the packaging process. The experimentM results show that the single channel I dB bandwidth of AWG ranges from 2.12nm to 3.06nm, the ROSA responsivity ranges from 0.097 A/W to 0.158A/W, and the 3dB bandwidth is up to 11 GHz. It is promising to be applied in the eight-lane WDM transmission system in data center interconnection.展开更多
A broadband amplifier with transadmittance and transimpedance stages is designed and two types of improved AGC amplifiers are developed on the base of theory study. Making use of the basic amplifier cells, a main ampl...A broadband amplifier with transadmittance and transimpedance stages is designed and two types of improved AGC amplifiers are developed on the base of theory study. Making use of the basic amplifier cells, a main amplifier IC for optical-fiber receivers is deliberated. By computer simulating the performances of the designed main amplifier meet the necessity of high gain and wide dynamic range . They are maximum voltage gain of 42 dB, the bandwidth of 730 MHz,the input signal( V p-p )range from 5 mV to 1 V,the output amplitude about 1 V, the dynamic range of 46 dB. The designed circuit containing no inductance and large capacitance will be convenient for realizing integration. A monolithic integrated design of 622 Mb/s main amplifier is completed.展开更多
研究了光电探测器(PD)的结构、性能以及后续放大电路,实现了塑料光纤通信的高速单片集成光接收芯片。首先,根据工艺流程和参数,采用器件模拟软件对PD结构进行了建模,并对其光谱响应度和结电容进行了理论推导及仿真。基于Cadence/spectr...研究了光电探测器(PD)的结构、性能以及后续放大电路,实现了塑料光纤通信的高速单片集成光接收芯片。首先,根据工艺流程和参数,采用器件模拟软件对PD结构进行了建模,并对其光谱响应度和结电容进行了理论推导及仿真。基于Cadence/spectre软件和仿真得到的PD参数对由跨阻放大器、限幅放大器和输出缓冲电路组成的后续放大电路进行了协同设计。采用0.5μm BCD(Bipolar,CMOS and DMOS)工艺对单个PD以及PD和后续放大电路单片集成电路进行了流片、封装和测试。结果表明:PD的光谱响应曲线的峰值波长和仿真结果较一致,约为700nm,PD结构更适合短波长探测;PD的结电容随着反向电压的增大而减小,结电容越大,光接收芯片的带宽越小;对于650nm的入射光,在小于10-9的误码率条件下,光接收机的灵敏度为-14dBm;最后得到了150Mb/s速率的清晰眼图。实验结果显示,设计的高速单片集成光接收机可以应用于百兆速率光纤入户通信系统。展开更多
基金Supported by the National High Technology Research and Development Program of China under Grant No 2015AA016902the National Natural Science Foundation of China under Grant Nos 61435013 and 61405188the K.C.Wong Education Foundation
文摘An 8×10 GHz receiver optical sub-assembly (ROSA) consisting of an 8-channel arrayed waveguide grating (AWG) and an 8-channel PIN photodetector (PD) array is designed and fabricated based on silica hybrid integration technology. Multimode output waveguides in the silica AWG with 2% refractive index difference are used to obtain fiat-top spectra. The output waveguide facet is polished to 45° bevel to change the light propagation direction into the mesa-type PIN PD, which simplifies the packaging process. The experimentM results show that the single channel I dB bandwidth of AWG ranges from 2.12nm to 3.06nm, the ROSA responsivity ranges from 0.097 A/W to 0.158A/W, and the 3dB bandwidth is up to 11 GHz. It is promising to be applied in the eight-lane WDM transmission system in data center interconnection.
文摘A broadband amplifier with transadmittance and transimpedance stages is designed and two types of improved AGC amplifiers are developed on the base of theory study. Making use of the basic amplifier cells, a main amplifier IC for optical-fiber receivers is deliberated. By computer simulating the performances of the designed main amplifier meet the necessity of high gain and wide dynamic range . They are maximum voltage gain of 42 dB, the bandwidth of 730 MHz,the input signal( V p-p )range from 5 mV to 1 V,the output amplitude about 1 V, the dynamic range of 46 dB. The designed circuit containing no inductance and large capacitance will be convenient for realizing integration. A monolithic integrated design of 622 Mb/s main amplifier is completed.
基金The National Natural Science Foundation of China(No.61205060)the Natural Science Foundation of Fujian Province of China(No.2011J01361)the Key Project of Science and Technology of Fujian Province of China(No.2013H0047)
文摘研究了光电探测器(PD)的结构、性能以及后续放大电路,实现了塑料光纤通信的高速单片集成光接收芯片。首先,根据工艺流程和参数,采用器件模拟软件对PD结构进行了建模,并对其光谱响应度和结电容进行了理论推导及仿真。基于Cadence/spectre软件和仿真得到的PD参数对由跨阻放大器、限幅放大器和输出缓冲电路组成的后续放大电路进行了协同设计。采用0.5μm BCD(Bipolar,CMOS and DMOS)工艺对单个PD以及PD和后续放大电路单片集成电路进行了流片、封装和测试。结果表明:PD的光谱响应曲线的峰值波长和仿真结果较一致,约为700nm,PD结构更适合短波长探测;PD的结电容随着反向电压的增大而减小,结电容越大,光接收芯片的带宽越小;对于650nm的入射光,在小于10-9的误码率条件下,光接收机的灵敏度为-14dBm;最后得到了150Mb/s速率的清晰眼图。实验结果显示,设计的高速单片集成光接收机可以应用于百兆速率光纤入户通信系统。