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A miniaturized BOSA with a stabilized light source for fiber-optic gyroscope

机译:带有稳定光源的微型BOSA,用于光纤陀螺仪

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摘要

A novel design of bi-directional optical sub-assembly (BOSA) for fiber optic gyroscope (FOG) applications to improve the drawbacks of bulky discrete components, and time consuming optical fiber splicing has been proposed. This FOG BOSA integrated a 1550nm super-luminescent light emitting diode (SLED), a photodiode (PD), a 50/50 splitter, a dual-stage optical isolator, a fiber receptacle, and especially, a thermal electric cooler (TEC) in a volume less than 1.5cm in diameter and 2.5cm in height. A three dimensional model was established to simulate the thermal distribution and to optimize the thermal performance of the FOG BOSA. By using the laser welding process, a compact and robust FOG BOSA has been built. For the range beyond the 38°C TEC set point, such as +42 to +72°C, BOSA reached a peak-to-peak wavelength stability of 0.15nm which corresponding to a less than 100ppm peak-to-peak variation.
机译:提出了一种新颖的双向光学组件(BOSA)设计,用于光纤陀螺(FOG)应用,以改善笨重的分立组件的缺点,并且耗时费力的光纤熔接。该FOG BOSA在其中集成了1550nm超发光发光二极管(SLED),光电二极管(PD),50/50分离器,双级光隔离器,光纤插座,尤其是集成了热电冷却器(TEC)。直径小于1.5厘米,高度小于2.5厘米的体积。建立了三维模型来模拟热分布并优化FOG BOSA的热性能。通过使用激光焊接工艺,已经构建了紧凑而坚固的FOG BOSA。对于超出38°C TEC设定点的范围,例如+42至+ 72°C,BOSA达到了0.15nm的峰峰值波长稳定性,这对应于不到100ppm的峰峰值变化。

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