Sarah Bergbreiter

University Name
Country flag
United States

Research Interests

Explore related searches

Contact this professor

LinkedIn
ORCID
Google Scholar

Articles (12)

3D‐Printed Electrostatic Microactuators for Flexible Microsystems

Developing small‐scale, lightweight, and flexible devices with integrated microactuators is one of the critical challenges in wearable haptic devices, soft robotics, and microrobotics. In this study, a novel fabrication process that leverages the benefits of 3D printing with two‐photon polymerization and flexible printed circuit boards (FPCBs) is presented. This method enables flexible microsystems with 3D‐printed electrostatic microactuators, which are demonstrated in a flexible integrated micromirror array and a legged microrobot with a mass of 4 mg. 3D electrostatic actuators on FPCBs are robust enough to actuate the micromirrors while the device is deformed, and they are easily integrated with off‐the‐shelf electronics. The crawling robot is one of the lightest legged microrobots actuated without external fields, and the legs actuated with 3D electrostatic actuators enable a locomotion speed of 0.27 body length per second. The proposed fabrication framework opens up a pathway toward a variety of highly integrated flexible microsystems.

Year:

2023

Collaborators (7)

Zeynep Temel

Assistant Professor

Carnegie Mellon University

UNITED STATES

Aaron M. Johnson

Associate Professor

Carnegie Mellon University

UNITED STATES

Ryan St. Pierre

University at Buffalo

UNITED STATES

Adam Summers

Professor

University of Washington

UNITED STATES

S. N. Patek

Professor

Duke University

UNITED STATES

Crystal Reynaga

Assistant Professor

University of California, Riverside

UNITED STATES

Lining Yao

Assistant Professor

Carnegie Mellon University

UNITED STATES
Social connections

How do I reach out?

Sign in for free to see their profile details and contact information.

Meet Kite AI