发明名称 METHOD AND APPLICATIONS OF THIN-FILM MEMBRANE TRANSFER
摘要 The disclosure relates to method and apparatus for micro-contact printing of micro-electromechanical systems (“MEMS”) in a solvent-free environment. The disclosed embodiments enable forming a composite membrane over a parylene layer and transferring the composite structure to a receiving structure to form one or more microcavities covered by the composite membrane. The parylene film may have a thickness in the range of about 100 nm-2 microns; 100 nm-1 micron, 200-300 nm, 300-500 nm, 500 nm to 1 micron and 1-30 microns. Next, one or more secondary layers are formed over the parylene to create a composite membrane. The composite membrane may have a thickness of about 100 nm to 700 nm to several microns. The composite membrane's deflection in response to external forces can be measured to provide a contact-less detector. Conversely, the composite membrane may be actuated using an external bias to cause deflection commensurate with the applied bias. Applications of the disclosed embodiments include tunable lasers, microphones, microspeakers, remotely-activated contact-less pressure sensors and the like.
申请公布号 US2015311664(A1) 申请公布日期 2015.10.29
申请号 US201414541071 申请日期 2014.11.13
申请人 MASSACHUSETTS INSTITUTE OF TECHNOLOGY 发明人 BULOVIC Vladimir;LANG Jeffrey Hastings;MURARKA Apoorva;WANG Annie I-Jen;CHANG Wendi
分类号 H01S3/106;H01S3/0941;H01S3/07;G02B26/00;H01S3/16;H01S3/13;H01S3/105;H01S3/0933;H01S3/08 主分类号 H01S3/106
代理机构 代理人
主权项 1. A spectrally tunable light emitting device, comprising: a substrate; a bottom electrode layer covering a portion of the substrate a planar reflective layer covering a portion of the bottom electrode layer; a spacer layer defining a plurality of cavities separated by a plurality of ridges; and a composite membrane having a parylene layer and a plurality of secondary layers to cover the plurality of cavities, the composite membrane further including an optically active layer.
地址 Cambridge MA US