Electromagnetic Pollution Control at ISE

ISE provides a complete suite of electromagnetic field (EMF) and Radio Frequency (RF) services designed to detect interference and anomalies, as well as develop comprehensive mitigation solutions and site development plans. All of ISE's EMF and RF assessment services are performed by engineers extremely knowledgeable in the physics of electromagnetic field propagation, and who are also FCC licensed amateur radio station operators.

Typical support services include:

  • EMF/RF field and modulation detection over usable electromagnetic spectrum from 100 KHz to 300 GHz.
  • EMF/RF field mapping with Geographic Information System (GIS) Applications.
  • FCC OET Part 65 compliance studies for cell tower and large antenna systems.
  • Field strength modeling and terrain propagation analysis.
  • EMF/RF mitigation designs including RF room shielding and conduit field reduction.
  • Interior EMF/RF pollution and workplace evaluations.
  • Covert surveillance detection and hidden transmitter location within structures.

What's New at ISE...

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The current version of the ISE Industrial Source Model (IS3) is sure to make the competitors cringe. Version 3.9 touts some highly advanced features s...
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Computational Fluid Dynamics at ISEISE are experts in the field of computational fluid dynamics (CFD) and wave propagation analysis. We utilize, and h...
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The ISE Rayleigh Wave (R-Wave) seismic vibration prediction model hit another milestone in 2011 in development by being able to accurately predict sur...
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Environmental Vibration Solutions at ISEISE is a recognized leader in mechanical and dynamic vibration analysis, and has a full range of portable moda...
Kinetic & Kinematic Analyses at ISEAt the heart of any forensic problem involving the laws of physics are two fundamental quantities: the path of ...

Featured Video Clip (Shock Wave)

A video taken by ISE showing the supersonic expansion of high pressure natural gas in a pipeline. 

The shock wave is clearly visible at the 1:00 min mark as a white cloud above the end of the pipe and produces an acoustic overpressure of close to 140 dB - which is as loud as a rocket engine.