首页> 外文会议>Conference on MOEMS and miniaturized systems VIII; 20090127-28; San Jose, CA(US) >Fine-pitch, high efficiency spatial optical modulator for mobile display applications
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Fine-pitch, high efficiency spatial optical modulator for mobile display applications

机译:适用于移动显示应用的小间距,高效空间光学调制器

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Diffractive spatial optical modulators (SOM) with fine pitch pixel array were introduced for the mobile applications of laser projection display which requires the small volume, low power consumption and high optical efficiency. Micromechanical designs of piezoelectric (PZT) actuator and mirror ribbon structure were optimized for small volume, but keeping the same level of the other performance. Even though the same design rule and fabrication equipment were used for 10 μm pitch SOM and 16 urn pitch SOM, the optical efficiency of the fine pitch SOM was 78 % for the 0th order diffraction and is better than that of 16 μm pitch SOM (73%). The full on/off contrast ratio has no difference between 10 um pitch and 16 um pitch SOM. All the optical characteristics coincide well with the theoretical estimations. High displacement of 500nm, which is enough to modulate the three Red, Green and Blue colors were achieved by the control of the thicknesses and stresses of constituent structural layers. It was found that the stress of Pt/PZT/Pt actuating layer was the main parameter affecting the initial gap height of the ribbon and also its displacement. For improving the optical properties of the SOM devices, the required ribbon-flatness could be achieved by applying a stress gradient on the SiN layer to compensate for the stress unbalance between Al mirror and SiN supprting layer. The temperature sensitive characteristics of the SOM device, which degrades the image quality, could be minimized by a mechanical compensation method using a thermal expansion effect of Si substrates. This concept could be applied in most of the bridge type MEMS structure. The most critical parameter which limit the SOM device lifetime was found to be the ribbon displacement degradation. By using a temperature accelerating lifetime measurement method based on the displacement degradation the estimated lifetime was more than 4,000 hrs and is of acceptable level in the mobile application. In short, the developed fine pitch SOM device, for making small volume of optical module, has sufficient response time and ribbon displacement for modulating the red, blue and green colors with one SOM chip and is suitable for high quality embedded laser projection displays. Optical module with VGA is successfully demonstrated for its potential applications in mobile laser projection display such as a embed projection cellular phone.
机译:带有小间距像素阵列的衍射空间光学调制器(SOM)被引入到需要小体积,低功耗和高光学效率的激光投影显示器的移动应用中。压电(PZT)致动器和镜带结构的微机械设计针对小体积进行了优化,但其他性能保持不变。即使对10μm间距SOM和16 umn间距SOM使用相同的设计规则和制造设备,对于0阶衍射,细间距SOM的光学效率为78%,优于16μm间距SOM(73 %)。全开/全关对比度在10 um间距和16 um间距SOM之间没有差异。所有的光学特性都与理论估计吻合。通过控制组成结构层的厚度和应力,实现了500nm的高位移,足以调制三种红色,绿色和蓝色。研究发现,Pt / PZT / Pt致动层的应力是影响带初始间隙高度及其位移的主要参数。为了改善SOM器件的光学性能,可以通过在SiN层上施加应力梯度以补偿Al镜和SiN支撑层之间的应力不平衡来实现所需的带状平坦度。可以通过使用硅衬底的热膨胀效应的机械补偿方法来最小化降低图像质量的SOM器件的温度敏感特性。这个概念可以应用在大多数桥式MEMS结构中。发现限制SOM设备寿命的最关键参数是碳带位移降低。通过使用基于位移退化的温度加速寿命测量方法,估计寿命超过4,000小时,在移动应用中可以接受。简而言之,开发的用于生产小尺寸光学模块的细间距SOM器件具有足够的响应时间和色带位移,可以用一个SOM芯片调制红色,蓝色和绿色,并且适用于高质量的嵌入式激光投影显示器。具有VGA的光模块已成功展示了其在移动激光投影显示器(例如嵌入式投影手机)中的潜在应用。

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