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Re: [RFI] FCC issues official citation for well pump RFI on Topband

To: Rfi List <rfi@contesting.com>
Subject: Re: [RFI] FCC issues official citation for well pump RFI on Topband
From: Jim Brown <jim@audiosystemsgroup.com>
Reply-to: jim@audiosystemsgroup.com
Date: Thu, 25 Apr 2013 08:13:48 -0700
List-post: <rfi@contesting.com">mailto:rfi@contesting.com>
Yes and no. Yes, the conduit, if properly installed, will be a complete path and bonded to the electrical enclosure of the controller and the motor at both ends, so it provides a good shield at RF. The potential problem is the stray current path that results from stray capacitance between motor and frame (which is grounded) back through other ground paths to the controller. We don't want return load current on ground, we want it on neutral!

73, Jim K9YC

On 4/24/2013 11:24 AM, GARY HUBER wrote:
Would it not be just as easy to use EMT, IMC, GRC, RMC, or metallic duct to shield the conductor runs between the VFD and motor at least to the well head to provide RF shielding ? Its been a long time (20 plus years) since I took a NEC course on power and grounding, but I'd bet there were other grounding and protection violations (NEC) at the installation receiving the FCC citation.


73 ES DX,
Gary -- AB9M

-----Original Message----- From: Jim Brown
Sent: Wednesday, April 24, 2013 12:11 PM
To: rfi@contesting.com
Subject: Re: [RFI] FCC issues official citation for well pump RFI on Topband

On 4/24/2013 4:27 AM, Mike King - KM0T wrote:
A local college is putting in a well
pump, 60HP 480V 3 Phase. (they are on a very high hill, its super deep) It
is controlled by a VFD.

Variable frequency drives are addressed in my RFI tutorial. They are
essentially square wave generators, the shape and frequency of which are
varied to control speed. The wiring carrying this current is an antenna,
and it also produces a strong magnetic field. The long the wires, and
the more widely separated they are, the greater the magnetic field and
the EM field.

One of the major design issues with most large VFD installations is that
the controller is at considerable distance (across a large room, for
example) from the motor being controlled, so the antennas are long.  A
contributing factor is that the wiring will usually have bypass
capacitors between the phase conductors and ground, and there is stray
capacitance between the phase conductors and ground at the motor end.
The result is that much of the return current flows in an un-controlled
ground path rather than on the neutral, which produces both radiation
(EM field) and a strong magnetic field.  The magnetic field dominates at
lower frequencies.

The single most critical thing that must be done to contain the trash
produced by a VFD is to locate both the 3-phase transformer and the
motor controller AT THE MOTOR, so that the wiring between these three
elements has "zero length."

73, Jim K9YC
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