This paper presents the design, development, and control of a large range beam flexure-based nano servo system for the micro-stereolithography (MSL) process. As a key enabler of high accuracy in this process, a compact desktop-size beam flexure-based nanopositioner was designed with millimeter range and nanometric motion quality. This beam flexure-based motion system is highly suitable for harsh operation conditions, as no assembly or maintenance is required during the operation. From a mechanism design viewpoint, a mirror-symmetric arrangement and appropriate redundant constraints are crucial to reduce undesired parasitic motion. Detailed finite element analysis (FEA) was conducted and showed satisfactory mechanical features. With the iden...
This thesis deals with the design and control of flexure-based mechanisms for applica-tions requirin...
ME450 Capstone Design and Manufacturing Experience: Winter 2010Nanopositioning systems provide contr...
In this paper details on the analysis and optimization of a flexure-based micromanipulator for the a...
This paper presents the design, development, and control of a large range beam flexure-based nano se...
This paper presents the design, development, and control of a large range beam flexure-based nano se...
This paper presents the development of a novel flexure-based micromanipulator for the alignment of o...
High speed in-plane (X-Y) nanopositioners are of central importance in scanning probe microscopy for...
This paper presents a large displacement flexure based high precision motion stage for vacuum-based ...
A six degree-of-freedom (6-DOF) parallel positioning system with high resolution, high repeatability...
A six degree-of-freedom (6-DOF) parallel positioning system with high resolution, high repeatability...
A six degree-of-freedom (6-DOF) parallel positioning system with high resolution, high repeatability...
© 2021 BMJ Publishing Group. All rights reserved. A process flow is described for the low cost, flex...
This article presents a positioner, whose flexure main body is made by a commercial 3D printer. Usin...
The rapidly expanding fields of micro and nano engineering, biotechnology and medical sciences have ...
This article presents a positioner, whose flexure main body is made by a commercial 3D printer. Usin...
This thesis deals with the design and control of flexure-based mechanisms for applica-tions requirin...
ME450 Capstone Design and Manufacturing Experience: Winter 2010Nanopositioning systems provide contr...
In this paper details on the analysis and optimization of a flexure-based micromanipulator for the a...
This paper presents the design, development, and control of a large range beam flexure-based nano se...
This paper presents the design, development, and control of a large range beam flexure-based nano se...
This paper presents the development of a novel flexure-based micromanipulator for the alignment of o...
High speed in-plane (X-Y) nanopositioners are of central importance in scanning probe microscopy for...
This paper presents a large displacement flexure based high precision motion stage for vacuum-based ...
A six degree-of-freedom (6-DOF) parallel positioning system with high resolution, high repeatability...
A six degree-of-freedom (6-DOF) parallel positioning system with high resolution, high repeatability...
A six degree-of-freedom (6-DOF) parallel positioning system with high resolution, high repeatability...
© 2021 BMJ Publishing Group. All rights reserved. A process flow is described for the low cost, flex...
This article presents a positioner, whose flexure main body is made by a commercial 3D printer. Usin...
The rapidly expanding fields of micro and nano engineering, biotechnology and medical sciences have ...
This article presents a positioner, whose flexure main body is made by a commercial 3D printer. Usin...
This thesis deals with the design and control of flexure-based mechanisms for applica-tions requirin...
ME450 Capstone Design and Manufacturing Experience: Winter 2010Nanopositioning systems provide contr...
In this paper details on the analysis and optimization of a flexure-based micromanipulator for the a...