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Analyzing Waveforms White Papers

Power quality white papers on Analyzing Waveforms.

55 white papers in Analyzing Waveforms

← All White Papers

Understanding Arc Fault Breakers

Arc Fault Breakers (or AFCI breakers) are sensitive breakers that augment traditional breakers' functionality by using logic and signal processing to determine whether or not an arcing condition is present.…

November 17, 2017 · Caleb Payne

Understanding Harmonic Power

Harmonic power is a complex and often misunderstood topic. This leads to misinterpretations, including using a harmonic power analysis when the measurements aren't physically meaningful. An overview of harmonic power…

August 1, 2017 · Chris Mullins

CBEMA Graphs Revealed

The CBEMA (Computer Business Equipment Manufacturers Association) curve and the ITIC (Information Technology Industry Council) curve both refer to a similar method to visibly represent voltage events. A graph of…

October 1, 2016 · Wayne LaFleur

Cold Load Pickup

One of the most visible customer-facing challenges an electric utility can face comes in the form of voltage interruptions.  From the short, fraction-of-a-second momentary to the prolonged, multi-hour (or even…

October 1, 2016 · Caleb Payne

Spotting Loose Neutrals with Waveform Capture

A "loose neutral" in a residential location can cause equipment damage and even a house fire. An open neutral may start as a high resistance connection that shows subtle signs…

July 1, 2016 · Chris Mullins

Catching VFD Failures

Variable Frequency Drives (VFDs) present unique challenges as both a source of PQ problems as well as being sensitive to incoming voltage quality. A frequent complaint with a troublesome VFD…

April 1, 2016 · Chris Mullins

Voltage Notching Effects on Harmonic Distortion

Notching is a voltage waveform distortion resulting from short-duration high current pulses. These distortions typically present themselves graphically as a “notch” in the time domain representation of the waveform. The…

January 1, 2016 · Caleb Payne

Sampling Rate in PQ Recorders

A common specification in power quality recorders such as PMI's Revolution, Guardian, or Eagle products is the sampling rate of the device. Users know this is an important number and…

January 1, 2016 · Wayne LaFleur

Capturing Oscillatory Transients

Oscillatory transients are caused by switching operations, nearby lightning strikes, or other impulsive noise exciting electrical resonances present on the network. The most common in the distribution system is defined…

December 1, 2015 · Chris Mullins

Voltage Regulation Analysis With Daily Profiles

If there were no variations in distribution load, system voltage regulation would be a simple task.  But Ohm’s law dictates that a change in load produces a change in delivered…

April 1, 2015 · Chris Mullins

Oscillatory Transient Ring Frequency

This white paper provides details on how to estimate ring frequency caused by resonances formed between power corrections capacitors and inductive loads using ProVision. Waveform data captured using PMI's Eagle…

January 1, 2015 · Scott Jacovidis

Advanced Waveform Capture with ProVision

Waveform Capture data is often the most detailed information available in a PQ recording. Getting good data is not always easy, so it's important to glean all information possible from…

December 1, 2014 · Chris Mullins

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Have a PQ question? Ask Merlin™ — free. Send it to askmerlin@powermonitors.com or text (540) 383-3144.

Power Monitors, Inc. — Tools you Need. People you Trust.

Power Monitors, Inc. is an industry-leading product design and manufacturing firm based in Mt. Crawford, Virginia. PMI® strives to solve power quality problems by listening to our customers and working with them to design and manufacture products. Total customer satisfaction is the primary goal of all PMI® staff.

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