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Heterogeneous Integration of GaN and BCD Technologies

机译:GaN和BCD技术的异构集成

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摘要

Light-emitting diodes (LEDs) are solid-state devices that are highly energy efficient, fast switching, have a small form factor, and can emit a specific wavelength of light. The ability to precisely control the wavelength of light emitted with the fabrication process enables LEDs to not only provide illumination, but also find applications in biology and life science research. To enable the new generation of LED devices, methods to improve the energy efficiency for possible battery operation and integration level for miniaturized lighting devices should be explored. This paper presents the first case of the heterogeneous integration of gallium nitride (GaN) power devices, both GaN LED and GaN transistor, with bipolar CMOS DMOS (BCD) circuits that can achieve this. To validate this concept, an LED driver was designed, implemented and verified experimentally. It features an output electrical power of 1.36 W and compact size of 2.4 × 4.4 mm 2 . The designed fully integrated LED lighting device emits visible light at a wavelength of approximately 454 nm and can therefore be adopted for biology research and life science applications.
机译:发光二极管(LED)是一种固态设备,具有很高的能效,快速的开关速度,外形尺寸小并且可以发出特定波长的光。精确控制制造过程中发出的光的波长的能力使LED不仅可以提供照明,还可以在生物学和生命科学研究中找到应用。为了实现新一代的LED设备,应该探索提高能源效率以实现可能的电池运行以及小型照明设备的集成度的方法。本文介绍了氮化镓(GaN)功率器件(GaN LED和GaN晶体管)与可以实现此目的的双极CMOS DMOS(BCD)电路的异构集成的第一种情况。为了验证这一概念,设计,实施和验证了LED驱动器。其输出功率为1.36 W,紧凑型尺寸为2.4×4.4 mm 2。设计的完全集成的LED照明设备发出的可见光波长约为454 nm,因此可用于生物学研究和生命科学应用。

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