Noise Integration Times

Noise integration times describe the duration over which a measurement system accumulates and averages random noise with a signal, making them important for determining sensitivity, resolution, and measurement speed in engineering. During integration, uncorrelated noise contributions partially cancel, so increasing the integration time generally lowers the measured noise level, while also reducing effective measurement bandwidth and slowing response; the improvement follows an inverse-square-root relationship for ideal white noise. Engineers select integration times when designing sensors, electronic instrumentation, communication receivers, and imaging systems, balancing noise reduction against response time, bandwidth, and changing signal conditions.

Noise Integration Times - Related Videos

Research

JoVE EoE - Bacterial Growth and Techniques

Continuous Monitoring of Biological Noise in Bacteria Using Time-Lapse Microscopy

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2025

Source: Chaimovitz, E. A., et al. Continuous Measurement of Biological Noise in Escherichia Coli Using Time-lapse Microscopy. J. Vis. Exp. (2021)This video demonstrates real-time visualization of biological noise in E. coli by tracking fluctuations in GFP fluorescence during bacterial growth and division using time-lapse microscopy.

Education

JoVE Core - Chemistry

The Integrated Rate Law: The Dependence of Concentration on Time

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2020

While the differential rate law relates the rate and concentrations of reactants, a second form of rate law called the integrated rate law relates concentrations of reactants and time. Integrated rate laws can be used to determine the amount of reactant or product present after a period of time or to estimate the time required for a reaction to proceed to a certain extent. For example, an integrated rate law helps determine the length of time a radioactive material must be stored for its...

Continuous Measurement of Biological Noise in Escherichia Coli Using Time-lapse Microscopy

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2021

This work presents a microscopy method that allows live imaging of a single cell of Escherichia coli for analysis and quantification of the stochastic behavior of synthetic gene circuits.

Research

JoVE Journal - Engineering
Free Sample

Fine-tuning the Size and Minimizing the Noise of Solid-state Nanopores

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Cited by 18 •

2013

A methodology for preparing solid-state nanopores in solution for biomolecular translocation experiments is presented. By applying short pulses of high electric fields, the nanopore diameter can be controllably enlarged with subnanometer precision and its electrical noise characteristics significantly improved. This procedure is performed in situ using standard laboratory equipment under experimental conditions.

Applying Noise Currents to Medial Vestibular Nucleus Neurons Using Whole-Cell Patch-Clamp Technique

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2025

This video demonstrates a protocol involving the application of subthreshold noise currents to medial vestibular nucleus neurons using the whole-cell patch-clamp technique to study the impact of the noise currents on neuronal sensitivity to electrical stimuli.

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