Origami silicon optoelectronics for hemispherical electronic eye systems

Abstract

Digital image sensors in hemispherical geometries offer unique imaging advantages over their planar counterparts, such as wide field of view and low aberrations. Deforming miniature semiconductor-based sensors with high-spatial resolution into such format is challenging. Here we report a simple origami approach for fabricating single-crystalline silicon-based focal plane arrays and artificial compound eyes that have hemisphere-like structures. Convex isogonal polyhedral concepts allow certain combinations of polygons to fold into spherical formats. Using each polygon block as a sensor pixel, the silicon-based devices are shaped into maps of truncated icosahedron and fabricated on flexible sheets and further folded either into a concave or convex hemisphere. These two electronic eye prototypes represent simple and low-cost methods as well as flexible optimization parameters in terms of pixel density and design. Results demonstrated in this work combined with miniature size and simplicity of the design establish practical technology for integration with conventional electronic devices.

Document Details

Document Type
Pub Defense Publication
Publication Date
Nov 24, 2017
Source ID
10.1038/s41467-017-01926-1

Entities

People

  • Han Zhou
  • Hongyi Mi
  • Jung-Hun Seo
  • Kan Zhang
  • Munho Kim
  • Shaoqin Gong
  • Solomon Mikael
  • Weidong Zhou
  • Yei Hwan Jung
  • Zhenqiang Ma
  • Zhenyang Xia

Tags

Readers

  • Computer Vision.
  • Optical Physics and Photonics.
  • Semiconductor Device Technology

Technology Areas

  • Microelectronics
  • Microelectronics - Microelectromechanical Systems