Fringing Effect

The fringing effect is the spreading or bending of electric or magnetic field lines beyond the ideal region predicted by simple geometric models, especially near the edges of conductors, capacitors, and magnetic cores. In a parallel-plate capacitor, for example, electric field lines curve outward at the plate boundaries because the field cannot terminate abruptly there, producing a nonuniform field and adding to the effective capacitance. Understanding fringing effects helps explain deviations from ideal calculations and improves the design of capacitors, sensors, transmission lines, transformers, and other electromagnetic devices. It is also important when interpreting measurements and modeling components with small dimensions or closely spaced features.

Fringing Effect - Related Videos

Research

JoVE Journal - Engineering
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High-resolution, High-speed, Three-dimensional Video Imaging with Digital Fringe Projection Techniques

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Cited by 9 •

2013

This video describes the fundamentals of digital fringe projection techniques, which provide dense 3D measurements of dynamically changing surfaces. It also demonstrates the design and operation of a high-speed binary defocusing system based on these techniques.

Research

JoVE Journal - Engineering

Real-Time DC-dynamic Biasing Method for Switching Time Improvement in Severely Underdamped Fringing-field Electrostatic MEMS Actuators

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2014

The robust device design of fringing-field electrostatic MEMS actuators results in inherently low squeeze-film damping conditions and long settling times when performing switching operations using conventional step biasing. Real-time switching time improvement with DC-dynamic waveforms reduces the settling time of fringing-field MEMS actuators when transitioning between up-to-down and down-to-up states.

Micro/Nano-scale Strain Distribution Measurement from Sampling Moiré Fringes

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Cited by 7 •

2017

A sampling moiré technique featuring 2-pixel and multi-pixel sampling methods for high-accuracy strain distribution measurements at the micro/nano-scale is presented here.

Education

JoVE Science Education - Physics

Interference and Diffraction

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2023

Source: Yong P. Chen, PhD, Department of Physics & Astronomy, College of Science, Purdue University, West Lafayette, IN Interference and diffraction are characteristic phenomena of waves, ranging from water waves to electromagnetic waves such as light. Interference refers to the phenomenon of when two waves of the same kind overlap to give an alternating spatial variation of large and small wave amplitude. Diffraction refers to the phenomenon of when a wave passes through an aperture or...

Temporal Ordering of Dynamic Expression Data from Detailed Spatial Expression Maps

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2017

The segmentation clock drives oscillatory gene expression across the pre-somitic mesoderm (PSM). Dynamic Notch activity is key to this process. We use imaging and computational analyses to extract temporal dynamics from spatial expression data to demonstrate that Delta ligand and Notch receptor expression oscillate in the vertebrate PSM.

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