On‐Skin Wireless Vibratory Interfaces by Stretchable Multilayer Circuits
A battery‐free, stretchable wireless vibratory interface is developed through printable liquid‐metal‐based multilayer circuits. The soft device integrates wireless power reception, signal modulation, and vibrotactile actuation within a compliant platform.
Jiawei Liu +10 more
wiley +1 more source
Salinity Sensor Using a Tapered Polarization-Maintaining Fiber-Based Sagnac Loop in a Fiber Ring Laser with Support Vector Regression for Improved Accuracy. [PDF]
Lin W +5 more
europepmc +1 more source
Optical-fiber connector technology.
openaire +2 more sources
Performance-Enhanced Fiber-Optic Hydrogen Sensing Method Based on a Pd-Cu Alloy Microcantilever and a Reflective Enhancement Structure. [PDF]
Wang Q +5 more
europepmc +1 more source
Characterization of peripapillary vascular density in traumatic optic neuropathy. [PDF]
Snyder BM +4 more
europepmc +1 more source
Dynamic multimode fiber specklegram sensor with automated training data generation for bed-exit prediction. [PDF]
Islam Sarkar MN +4 more
europepmc +1 more source
Linear anti-jamming algorithm design for multi-channel optical fiber communication. [PDF]
Yu H.
europepmc +1 more source
Equivalent Refractive Index Modeling and Multidomain Characterization of the Temperature Response of Loss in Fiber-Optic Macro-Bends. [PDF]
Shen H, Yang D, Han H, Liu J.
europepmc +1 more source
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Development of Optical Fiber Technology in Poland
International Journal of Electronics and Telecommunications, 2011Development of Optical Fiber Technology in PolandIn this paper, the authors, chairmen of the 13th Conference on Optical Fibers and Their Applications OFA2011, and editors of the conference proceedings summarize the development of optical fiber technology in Poland (during the period of 2009-2011) on the basis of papers presented there and consecutively
Jan Dorosz, Ryszard S. Romaniuk
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Fiber-optic rotation sensor technology
Applied Optics, 1980A concept for an all-waveguide fiber-optic rotation sensor is discussed, and the results of preliminary tests of key elements are described. A single channel waveguide coupler design provides the functions of an optical switch, a 3-dB beam splitter, a phase retarder, and a signal modulator, all of which may be formed on the same chip and interconnected
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