Articles | Volume 4, issue 2
https://doi.org/10.5194/ms-4-397-2013
© Author(s) 2013. This work is distributed under
the Creative Commons Attribution 3.0 License.Special issue:
Power-free bistable threshold accelerometer made from a carbon nanotube framework
Related subject area
Subject: Mechanisms and Robotics | Techniques and Approaches: Experiment and Best Practice
Design and performance analysis of the 4UPS-RRR parallel ankle rehabilitation mechanism
Assistance control strategy for upper-limb rehabilitation robot based on motion trend
Experimental study on fingertip friction perception characteristics on ridged surfaces
Wearable ankle assistance robot for a human walking with different loads
Mech. Sci., 15, 417–430,
2024Mech. Sci., 14, 503–518,
2023Mech. Sci., 14, 463–477,
2023Mech. Sci., 14, 429–438,
2023Cited articles
Churaman, W. A., Currano, L., Gee, D., and Zakar, E.: Three-axis MEMS threshold accelerometer switch for enhanced power conservation of MEMS sensors, vol. 54, Acireale, Sicily, Italy, 384–389, 2008.
Edmans, D. M., Gutierrez, A. O., Cormeau, C., Maby, E. W., and Kaufman, H.: Micromachined accelerometer with a movable-gate-transistor sensing element, Proc. SPIE, 314–324, 1997.
Fazio, W. C., Lund, J. M., Wood, T. S., Jensen, B. D., Davis, R. C., and Vanfleet, R. R.: Material properties of carbon-infiltrated carbon nanotube-templated structures for microfabrication of compliant mechanisms, in: ASME IMECE 2011, vol. 11, Denver, CO, USA, 481–490, 2011.
Genberg, S. and Pecht, M.: Acceleration sensors for solid state electronic safety and arming devices, Int. J. Hybrid Microelect., 12, 126–138, 1989.
Hansen, B., Carron, C., Jensen, B., Hawkins, A., and Schultz, S.: Plastic latching accelerometer based on bistable compliant mechanisms, Smart Mater. Struct., 16, 1967–1972, 2007.