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Development of an advanced uncooled 10Gb DFB laser for volume manufacture

机译:开发用于批量生产的先进的非冷却10Gb DFB激光器

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Optical communication systems operating at 10Gbit/s such as 10Gigabit Ethernet are becoming more and more important in Local Area Networks (LAN) and Metropolitan Area Networks (MAN). This market requires optical transceivers of low cost, size and power consumption. This drives a need for uncooled DFB lasers directly modulated at 10Gbit/s. This paper describes the development of a state of the art uncooled high speed DFB laser which is capable of being manufactured in high volume at the low cost demanded by the GbE market. A DFB laser was designed by developing technological building blocks within the 'conventional' InGaAsP materials system, using existing well proven manufacturing processes modules wherever possible, limiting the design risk to a few key areas where innovation was required. The temperature and speed performance of the InGaAsP SMQW active layer system was carefully optimised and then coupled with a low parasitic lateral confinement system. Using concurrent engineering, new processes were demonstrated to have acceptable process capability within a manufacturing fabrication environment, proving their ability to support high volume manufacturing requirements. The DFB laser fabricated was shown to operate at 100C chip temperature with an open eye at lOGbit/s operation (with an extinction ratio >5dB). Up to 90C operation this DFB shows threshold current as low as 29mA, optical power as high as 13mW and it meets the 10Gb scaled Ethernet mask with extinction ratio >6dB. It was found that the high temperature dynamic behaviour of these lasers could not be fully predicted from static test data. A production test strategy was therefore followed where equipment was designed to fully test devices / subassemblies at 100C and up to 20Gbit/s at key points in the product build. This facilitated the rapid optimisation of product yields upon manufacturing ramp up and minimisation of product costs. This state of the art laser is now transferred into volume manufacture.
机译:在局域网(LAN)和城域网(MAN)中,以10Gbit / s运行的光通信系统(例如10G以太网)变得越来越重要。这个市场需要低成本,小尺寸和低功耗的光收发器。这推动了对直接以10Gbit / s调制的非冷却DFB激光器的需求。本文介绍了最新技术的发展,该技术是非冷却的高速DFB激光器,该激光器能够以GbE市场所需的低成本大量生产。通过在“常规” InGaAsP材料系统中开发技术构件来设计DFB激光器,并尽可能使用现有的行之有效的制造工艺模块,将设计风险限制在需要创新的几个关键领域。仔细优化了InGaAsP SMQW有源层系统的温度和速度性能,然后将其与低寄生横向限制系统结合在一起。通过使用并行工程,事实证明新工艺在制造制造环境中具有可接受的工艺能力,证明了它们能够支持大批量制造需求。所制造的DFB激光器显示在100°C的芯片温度下以10Gbit / s的速度睁开眼(消光比> 5dB)工作。在高达90C的工作温度下,该DFB的阈值电流低至29mA,光功率高达13mW,并符合消光比> 6dB的10Gb规模以太网掩模。发现从静态测试数据无法完全预测这些激光器的高温动态行为。因此,遵循生产测试策略,其中设计的设备可以在产品构建的关键点在100°C和最高20Gbit / s的速度下全面测试设备/子组件。这有助于在提高制造量时快速优化产品产量,并最大程度地降低产品成本。现在,这种最先进的激光器已转移到批量生产中。

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