Today's Message Index:
----------------------
1. 08:03 AM - Re: Garmin transponder power problems (Coastflyer)
2. 08:33 AM - Re: RF Interference (Robert L. Nuckolls, III)
3. 09:42 AM - Re: RF Interference (B Tomm)
4. 11:14 AM - Re: RF Interference (user9253)
5. 12:20 PM - Re: Re: RF Interference (B Tomm)
6. 01:04 PM - Re: RF Interference (user9253)
7. 01:20 PM - Re: Re: RF Interference (B Tomm)
8. 02:34 PM - Re: Re: RF Interference (Robert L. Nuckolls, III)
9. 03:23 PM - Re: Re: RF Interference (B Tomm)
10. 03:46 PM - Re: Re: RF Interference (Charlie England)
11. 04:16 PM - Re: Re: RF Interference (Charlie England)
12. 05:05 PM - Re: Re: RF Interference (B Tomm)
13. 05:27 PM - Re: Re: RF Interference (Kelly McMullen)
14. 07:24 PM - Re: RF Interference (Chris)
15. 08:02 PM - Re: RF Interference (B Tomm)
16. 10:03 PM - Re: RF Interference (Bob Verwey)
Message 1
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Subject: | Re: Garmin transponder power problems |
Thanks Bob,
I may end up doing that if I can't find something obvious. Good suggestion.
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=454876#454876
Message 2
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Subject: | Re: RF Interference |
B) Engine monitor is GRT's EIS 4000.
What I have done so far...
A) Installed ferrite cores (6 so far) around all the wires coming out
of the sender, at the sender. This has caused the RF interference to
be dramatically reduced to a 4-6 PSI change (depending on which
radio) while in the hangar, but in the air, the interference still
steadily climbs with application of PTT. The output voltage on the
signal wire (disconnected from the engine monitor) sits idle at 1
volt but climbs steadily to over 4 volts with PTT/RF. The ferrite
cores hold the voltage rise to about 200 mV.
EMI interference mitigation with the
ferrite cores is a bit iffy . . . it's
also dependent on what kind of ferrite.
Ferrite for radio frequency inductors and
transformers is optimized for minimum
losses while ferrites for converting stray
energies to heat are designed to exhibit
losses.
High quality ferrites can be components
of a filter network of an inductor and one
or more capacitors.
B) I spoke to tech support at GRT today. They said if anything, put
the ferrite core around just the sender's signal wire where it goes
into the engine monitor. I installed one ferrite core there today
(leaving all the others in place) and this had no noticeable effect
in the hangar. I think the RF is affecting the sender, not the monitor.
Good supposition.
C) The problem occurs whether the VHF tracker is turned on or not. I
even took the fuse out so this system has nothing connected to the
power bus. I have not removed the antenna however to see if it is
somehow coupling the comm's RF into the airframe via the ground
wire. Is this possible? The radio that has the largest effect has
it's antenna closest to the tracker antenna on the fuse bottom. The
VHF tracker works as advertised.
Questions:
What is going on here?
Is it likely to be a sender has suddenly gone bad?
Not likely . . .
What about that shield wire that comes out of the sender that is not
to be connected to anything? What good is it if not connected to
anything? The wiring is not shielded between the sender and the
engine monitor. The sender's wiring was not modified in anyway
during the aircraft's upgrades.
Is the Tracker's antenna feeding RF back into the airframe?
Probably not. Can you tell me who makes
the pressure transducer and what its part
number is?
I may have a 'fix' but I need more data before
I can recommend it with any confidence.
Bob . . .
Message 3
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Hi Bob,
I believe this is the sender...
MSP 300-100-P-4-A-1 see...
http://www.mouser.com/ds/2/418/MSP300-769580.pdf
Thanks.
I'm going out to the hangar to remove the VHF Tracker antenna and re-test to
try and rule out that path back into the aircraft. Will report back soon.
Bevan
_____
From: owner-aeroelectric-list-server@matronics.com
[mailto:owner-aeroelectric-list-server@matronics.com] On Behalf Of Robert L.
Nuckolls, III
Sent: Tuesday, April 12, 2016 8:32 AM
Subject: Re: AeroElectric-List: RF Interference
B) Engine monitor is GRT's EIS 4000.
What I have done so far...
A) Installed ferrite cores (6 so far) around all the wires coming out of the
sender, at the sender. This has caused the RF interference to be
dramatically reduced to a 4-6 PSI change (depending on which radio) while in
the hangar, but in the air, the interference still steadily climbs with
application of PTT. The output voltage on the signal wire (disconnected
from the engine monitor) sits idle at 1 volt but climbs steadily to over 4
volts with PTT/RF. The ferrite cores hold the voltage rise to about 200 mV.
EMI interference mitigation with the
ferrite cores is a bit iffy . . . it's
also dependent on what kind of ferrite.
Ferrite for radio frequency inductors and
transformers is optimized for minimum
losses while ferrites for converting stray
energies to heat are designed to exhibit
losses.
High quality ferrites can be components
of a filter network of an inductor and one
or more capacitors.
B) I spoke to tech support at GRT today. They said if anything, put the
ferrite core around just the sender's signal wire where it goes into the
engine monitor. I installed one ferrite core there today (leaving all the
others in place) and this had no noticeable effect in the hangar. I think
the RF is affecting the sender, not the monitor.
Good supposition.
C) The problem occurs whether the VHF tracker is turned on or not. I even
took the fuse out so this system has nothing connected to the power bus. I
have not removed the antenna however to see if it is somehow coupling the
comm's RF into the airframe via the ground wire. Is this possible? The
radio that has the largest effect has it's antenna closest to the tracker
antenna on the fuse bottom. The VHF tracker works as advertised.
Questions:
What is going on here?
Is it likely to be a sender has suddenly gone bad?
Not likely . . .
What about that shield wire that comes out of the sender that is not to be
connected to anything? What good is it if not connected to anything? The
wiring is not shielded between the sender and the engine monitor. The
sender's wiring was not modified in anyway during the aircraft's upgrades.
Is the Tracker's antenna feeding RF back into the airframe?
Probably not. Can you tell me who makes
the pressure transducer and what its part
number is?
I may have a 'fix' but I need more data before
I can recommend it with any confidence.
Bob . . .
Message 4
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Subject: | Re: RF Interference |
It is common practice to connect a shield at one end only, however follow the manufacturer's
recommendation. Assuming that the sender's wires have been extended,
here are some suggestions:
1. Twist the extension wires together. An easy way to do that is to chuck the
wire ends in a drill.
2. Use shielded extension wire with the shield grounded at one end only. Do not
connect the two shields together.
3. Loop the wire at the sender end with the loop going through a ferrite bead.
--------
Joe Gores
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=454894#454894
Message 5
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Subject: | Re: RF Interference |
Ok, Just got back from the hangar.
Just now I removed the VHF Tracker antenna, disconnected all new wires going
in/out of the tracker and hit the PTT. No change. I'm still getting a 5
PSI rise in fuel pressure (engine and boost pump off so pressure should
remain at zero). I still have the ferrite cores installed at the fuel
pressure sender. Without them, the pressure would climb to 60 PSI if I held
the PTT long enough. I feel I can now rule out the tracker.
Just to recap, the high fuel pressure anomaly has not been a problem for the
first 40 hours of flying. It has come on suddenly since I put the airplane
down for maintenance/upgrades (tracker install, new comm antenna/location
for comm 1, New OAT sender and location, plus a few other non-electrical
items).
I will focus on the OAT sender next. It was a plastic jobber inside the
wing root. I never should have put it there in the first place. I just did
as suggested. I have moved it to under the wing on the first inspection
panel. It is now a SS version which protrudes through the skin. It feeds a
signal back to the engine monitor (EIS4000). It has a ground wire and a
signal wire.
Bevan
-----Original Message-----
From: owner-aeroelectric-list-server@matronics.com
[mailto:owner-aeroelectric-list-server@matronics.com] On Behalf Of user9253
Sent: Tuesday, April 12, 2016 11:12 AM
Subject: AeroElectric-List: Re: RF Interference
It is common practice to connect a shield at one end only, however follow
the manufacturer's recommendation. Assuming that the sender's wires have
been extended, here are some suggestions:
1. Twist the extension wires together. An easy way to do that is to chuck
the wire ends in a drill.
2. Use shielded extension wire with the shield grounded at one end only. Do
not connect the two shields together.
3. Loop the wire at the sender end with the loop going through a ferrite
bead.
--------
Joe Gores
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=454894#454894
Message 6
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Subject: | Re: RF Interference |
Where is the fuel pressure sender grounded at? It should be grounded at the display
unit, not locally.
--------
Joe Gores
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=454906#454906
Message 7
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Subject: | Re: RF Interference |
The sender is grounded where it always has been, at the forest of tabs,
single point ground point.
Thanks.
Bevan
-----Original Message-----
From: owner-aeroelectric-list-server@matronics.com
[mailto:owner-aeroelectric-list-server@matronics.com] On Behalf Of user9253
Sent: Tuesday, April 12, 2016 1:03 PM
Subject: AeroElectric-List: Re: RF Interference
Where is the fuel pressure sender grounded at? It should be grounded at the
display unit, not locally.
--------
Joe Gores
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=454906#454906
Message 8
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Subject: | Re: RF Interference |
MSP transducers are generally pretty EMC robust. It's still
a mystery as to what might have changed . . . but
here's an experiment you can run to help divide
and conquer.
Take an AA alkaline cell and solder some 'pigtails'
to the + and - terminals. Disconnect the tranducer
at the engine end of the wiring and hook the
aa battery + to white, - to black leads running
back to the panel.
Take ferrites off if convenient . . .
See what your EIS system reads . . . should
be on the order of 50 pounds. The key a transmitter
to observe effects. If the readings are now steady,
then the interference is upsetting the transducer.
If the problem persists, then the real victim
is the EIS panel box.
I can send you an itty-bitty filter that wires into the
transducer leads within short distance of the
victim as identified by experiment . . .
Emacs!
What are the wires between the EIS panel connector
and the transducer? It would be good if they were a
twisted trio with all panel end wires terminated
at the EIS connector.
Bob . . .
Message 9
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Subject: | Re: RF Interference |
Those are excellent ideas Bob,
I will do the AA thing and report back. Hold off on the filter for now.
Regarding the wires between the EIS and sender...
The EIS powers the sender. Red wire.
The sender gets it's ground from the forest of tabs nearby so the red/black
are not twisted the whole way but this has not changed since day one.
The white signal wire is twisted with the mix all the way back to the EIS.
What is the proper way and position to input the ferrite cores (cylinders)?
Currently I have the cores at the sender with all three wires going straight
through some of the cores, and several times through others. 6 total. Each
ferrite core reduced the effect an approximate equal amount from 60 PSI down
to 6PSI. Adding one more just around the signal wire at the EIS did nothing
more.
Bevan
_____
From: owner-aeroelectric-list-server@matronics.com
[mailto:owner-aeroelectric-list-server@matronics.com] On Behalf Of Robert L.
Nuckolls, III
Sent: Tuesday, April 12, 2016 2:33 PM
Subject: RE: AeroElectric-List: Re: RF Interference
MSP transducers are generally pretty EMC robust. It's still
a mystery as to what might have changed . . . but
here's an experiment you can run to help divide
and conquer.
Take an AA alkaline cell and solder some 'pigtails'
to the + and - terminals. Disconnect the tranducer
at the engine end of the wiring and hook the
aa battery + to white, - to black leads running
back to the panel.
Take ferrites off if convenient . . .
See what your EIS system reads . . . should
be on the order of 50 pounds. The key a transmitter
to observe effects. If the readings are now steady,
then the interference is upsetting the transducer.
If the problem persists, then the real victim
is the EIS panel box.
I can send you an itty-bitty filter that wires into the
transducer leads within short distance of the
victim as identified by experiment . . .
Emacs!
What are the wires between the EIS panel connector
and the transducer? It would be good if they were a
twisted trio with all panel end wires terminated
at the EIS connector.
Bob . . .
Message 10
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Subject: | Re: RF Interference |
I've got a vague memory of guys with top-mounted antennas having
'issues' with various components in their instrument panels, including
erratic autopilot behavior. No way to know from here what was actually
wrong, but it does raise a couple of questions.
Have you tried moving the comm ant feed back to the belly antenna?
(Improperly shielded components in the instrument panel can see a lot
more RF energy through the canopy than the belly skin.)
Have you verified continuity of the shield on the antenna coax all the
way to the new antenna, and verified that the shield is properly bonded
to the skin?
(IIRC, there have been issues with some a/c when the shield didn't get
properly bonded at the antenna location; basically turned the entire run
of coax into an RF radiator & gave multiple electronic devices within
the a/c fits.)
Charlie
On 4/12/2016 5:21 PM, B Tomm wrote:
> Those are excellent ideas Bob,
> I will do the AA thing and report back. Hold off on the filter for now.
> Regarding the wires between the EIS and sender...
> The EIS powers the sender. Red wire.
> The sender gets it's ground from the forest of tabs nearby so the
> red/black are not twisted the whole way but this has not changed since
> day one.
> The white signal wire is twisted with the mix all the way back to the EIS.
> What is the proper way and position to input the ferrite cores
> (cylinders)? Currently I have the cores at the sender with all three
> wires going straight through some of the cores, and several times
> through others. 6 total. Each ferrite core reduced the effect an
> approximate equal amount from 60 PSI down to 6PSI. Adding one more
> just around the signal wire at the EIS did nothing more.
> Bevan
>
> ------------------------------------------------------------------------
> *From:* owner-aeroelectric-list-server@matronics.com
> [mailto:owner-aeroelectric-list-server@matronics.com] *On Behalf Of
> *Robert L. Nuckolls, III
> *Sent:* Tuesday, April 12, 2016 2:33 PM
> *To:* aeroelectric-list@matronics.com
> *Subject:* RE: AeroElectric-List: Re: RF Interference
>
> MSP transducers are generally pretty EMC robust. It's still
> a mystery as to what might have changed . . . but
> here's an experiment you can run to help divide
> and conquer.
>
> Take an AA alkaline cell and solder some 'pigtails'
> to the + and - terminals. Disconnect the tranducer
> at the engine end of the wiring and hook the
> aa battery + to white, - to black leads running
> back to the panel.
>
> Take ferrites off if convenient . . .
>
> See what your EIS system reads . . . should
> be on the order of 50 pounds. The key a transmitter
> to observe effects. If the readings are now steady,
> then the interference is upsetting the transducer.
> If the problem persists, then the real victim
> is the EIS panel box.
>
> I can send you an itty-bitty filter that wires into the
> transducer leads within short distance of the
> victim as identified by experiment . . .
>
>
> Emacs!
>
> What are the wires between the EIS panel connector
> and the transducer? It would be good if they were a
> twisted trio with all panel end wires terminated
> at the EIS connector.
>
> Bob . . .
>
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Message 11
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Subject: | Re: RF Interference |
I've got a vague memory of guys with top-mounted antennas having
'issues' with various components in their instrument panels, including
erratic autopilot behavior. No way to know from here what was actually
wrong, but it does raise a couple of questions.
Have you tried moving the comm ant feed back to the belly antenna?
(Improperly shielded components in the instrument panel can see a lot
more RF energy through the canopy than the belly skin.)
Have you verified continuity of the shield on the antenna coax all the
way to the new antenna, and verified that the shield is properly bonded
to the skin?
(IIRC, there have been issues with some a/c when the shield didn't get
properly bonded at the antenna location; basically turned the entire run
of coax into an RF radiator & gave multiple electronic devices within
the a/c fits.)
Charlie
On 4/12/2016 5:21 PM, B Tomm wrote:
> Those are excellent ideas Bob,
> I will do the AA thing and report back. Hold off on the filter for now.
> Regarding the wires between the EIS and sender...
> The EIS powers the sender. Red wire.
> The sender gets it's ground from the forest of tabs nearby so the
> red/black are not twisted the whole way but this has not changed since
> day one.
> The white signal wire is twisted with the mix all the way back to the EIS.
> What is the proper way and position to input the ferrite cores
> (cylinders)? Currently I have the cores at the sender with all three
> wires going straight through some of the cores, and several times
> through others. 6 total. Each ferrite core reduced the effect an
> approximate equal amount from 60 PSI down to 6PSI. Adding one more
> just around the signal wire at the EIS did nothing more.
> Bevan
>
> ------------------------------------------------------------------------
> *From:* owner-aeroelectric-list-server@matronics.com
> [mailto:owner-aeroelectric-list-server@matronics.com] *On Behalf Of
> *Robert L. Nuckolls, III
> *Sent:* Tuesday, April 12, 2016 2:33 PM
> *To:* aeroelectric-list@matronics.com
> *Subject:* RE: AeroElectric-List: Re: RF Interference
>
> MSP transducers are generally pretty EMC robust. It's still
> a mystery as to what might have changed . . . but
> here's an experiment you can run to help divide
> and conquer.
>
> Take an AA alkaline cell and solder some 'pigtails'
> to the + and - terminals. Disconnect the tranducer
> at the engine end of the wiring and hook the
> aa battery + to white, - to black leads running
> back to the panel.
>
> Take ferrites off if convenient . . .
>
> See what your EIS system reads . . . should
> be on the order of 50 pounds. The key a transmitter
> to observe effects. If the readings are now steady,
> then the interference is upsetting the transducer.
> If the problem persists, then the real victim
> is the EIS panel box.
>
> I can send you an itty-bitty filter that wires into the
> transducer leads within short distance of the
> victim as identified by experiment . . .
>
>
> What are the wires between the EIS panel connector
> and the transducer? It would be good if they were a
> twisted trio with all panel end wires terminated
> at the EIS connector.
>
> Bob . . .
>
Message 12
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Subject: | Re: RF Interference |
That's a very good point Charlie. I have not checked continuity of the
shield. However, Comm2 has it's antenna also on the bottom, and was not
changed in anyway during the upgrades. It has the largest effect.
I don't think the antennas contact the aircraft skin. There's a rubber
gasket between the skin and the antenna that came with the antennas.
Further, my aircraft is wrapped in vinyl (since day one) and the vinyl was
applied with the antennas off so that's in between there too.
Bevan
_____
From: owner-aeroelectric-list-server@matronics.com
[mailto:owner-aeroelectric-list-server@matronics.com] On Behalf Of Charlie
England
Sent: Tuesday, April 12, 2016 3:47 PM
Subject: Re: AeroElectric-List: Re: RF Interference
I've got a vague memory of guys with top-mounted antennas having 'issues'
with various components in their instrument panels, including erratic
autopilot behavior. No way to know from here what was actually wrong, but it
does raise a couple of questions.
Have you tried moving the comm ant feed back to the belly antenna?
(Improperly shielded components in the instrument panel can see a lot more
RF energy through the canopy than the belly skin.)
Have you verified continuity of the shield on the antenna coax all the way
to the new antenna, and verified that the shield is properly bonded to the
skin?
(IIRC, there have been issues with some a/c when the shield didn't get
properly bonded at the antenna location; basically turned the entire run of
coax into an RF radiator & gave multiple electronic devices within the a/c
fits.)
Charlie
On 4/12/2016 5:21 PM, B Tomm wrote:
Those are excellent ideas Bob,
I will do the AA thing and report back. Hold off on the filter for now.
Regarding the wires between the EIS and sender...
The EIS powers the sender. Red wire.
The sender gets it's ground from the forest of tabs nearby so the red/black
are not twisted the whole way but this has not changed since day one.
The white signal wire is twisted with the mix all the way back to the EIS.
What is the proper way and position to input the ferrite cores (cylinders)?
Currently I have the cores at the sender with all three wires going straight
through some of the cores, and several times through others. 6 total. Each
ferrite core reduced the effect an approximate equal amount from 60 PSI down
to 6PSI. Adding one more just around the signal wire at the EIS did nothing
more.
Bevan
_____
From: owner-aeroelectric-list-server@matronics.com
[mailto:owner-aeroelectric-list-server@matronics.com] On Behalf Of Robert L.
Nuckolls, III
Sent: Tuesday, April 12, 2016 2:33 PM
Subject: RE: AeroElectric-List: Re: RF Interference
MSP transducers are generally pretty EMC robust. It's still
a mystery as to what might have changed . . . but
here's an experiment you can run to help divide
and conquer.
Take an AA alkaline cell and solder some 'pigtails'
to the + and - terminals. Disconnect the tranducer
at the engine end of the wiring and hook the
aa battery + to white, - to black leads running
back to the panel.
Take ferrites off if convenient . . .
See what your EIS system reads . . . should
be on the order of 50 pounds. The key a transmitter
to observe effects. If the readings are now steady,
then the interference is upsetting the transducer.
If the problem persists, then the real victim
is the EIS panel box.
I can send you an itty-bitty filter that wires into the
transducer leads within short distance of the
victim as identified by experiment . . .
Emacs!
What are the wires between the EIS panel connector
and the transducer? It would be good if they were a
twisted trio with all panel end wires terminated
at the EIS connector.
Bob . . .
Message 13
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Subject: | Re: RF Interference |
Normally com antennas ground via the mounting screws, so it doesn't
matter if the skin under the antenna is painted, gasketed or whatever.
Only the counter sink in the antenna and the nutplates and doubler on
underside need good grounding.
On 4/12/2016 5:01 PM, B Tomm wrote:
> That's a very good point Charlie. I have not checked continuity of the
> shield. However, Comm2 has it's antenna also on the bottom, and was not
> changed in anyway during the upgrades. It has the largest effect.
> I don't think the antennas contact the aircraft skin. There's a rubber
> gasket between the skin and the antenna that came with the antennas.
> Further, my aircraft is wrapped in vinyl (since day one) and the vinyl
> was applied with the antennas off so that's in between there too.
> Bevan
>
> ------------------------------------------------------------------------
> *From:* owner-aeroelectric-list-server@matronics.com
> [mailto:owner-aeroelectric-list-server@matronics.com] *On Behalf Of
> *Charlie England
> *Sent:* Tuesday, April 12, 2016 3:47 PM
> *To:* aeroelectric-list@matronics.com
> *Subject:* Re: AeroElectric-List: Re: RF Interference
>
> I've got a vague memory of guys with top-mounted antennas having
> 'issues' with various components in their instrument panels, including
> erratic autopilot behavior. No way to know from here what was actually
> wrong, but it does raise a couple of questions.
>
> Have you tried moving the comm ant feed back to the belly antenna?
> (Improperly shielded components in the instrument panel can see a lot
> more RF energy through the canopy than the belly skin.)
>
> Have you verified continuity of the shield on the antenna coax all the
> way to the new antenna, and verified that the shield is properly bonded
> to the skin?
> (IIRC, there have been issues with some a/c when the shield didn't get
> properly bonded at the antenna location; basically turned the entire run
> of coax into an RF radiator & gave multiple electronic devices within
> the a/c fits.)
>
>
> Charlie
>
>
> On 4/12/2016 5:21 PM, B Tomm wrote:
>> Those are excellent ideas Bob,
>> I will do the AA thing and report back. Hold off on the filter for now.
>> Regarding the wires between the EIS and sender...
>> The EIS powers the sender. Red wire.
>> The sender gets it's ground from the forest of tabs nearby so the
>> red/black are not twisted the whole way but this has not changed since
>> day one.
>> The white signal wire is twisted with the mix all the way back to the EIS.
>> What is the proper way and position to input the ferrite cores
>> (cylinders)? Currently I have the cores at the sender with all three
>> wires going straight through some of the cores, and several times
>> through others. 6 total. Each ferrite core reduced the effect an
>> approximate equal amount from 60 PSI down to 6PSI. Adding one more
>> just around the signal wire at the EIS did nothing more.
>> Bevan
>>
>> ------------------------------------------------------------------------
>> *From:* owner-aeroelectric-list-server@matronics.com
>> [mailto:owner-aeroelectric-list-server@matronics.com] *On Behalf Of
>> *Robert L. Nuckolls, III
>> *Sent:* Tuesday, April 12, 2016 2:33 PM
>> *To:* aeroelectric-list@matronics.com
>> *Subject:* RE: AeroElectric-List: Re: RF Interference
>>
>> MSP transducers are generally pretty EMC robust. It's still
>> a mystery as to what might have changed . . . but
>> here's an experiment you can run to help divide
>> and conquer.
>>
>> Take an AA alkaline cell and solder some 'pigtails'
>> to the + and - terminals. Disconnect the tranducer
>> at the engine end of the wiring and hook the
>> aa battery + to white, - to black leads running
>> back to the panel.
>>
>> Take ferrites off if convenient . . .
>>
>> See what your EIS system reads . . . should
>> be on the order of 50 pounds. The key a transmitter
>> to observe effects. If the readings are now steady,
>> then the interference is upsetting the transducer.
>> If the problem persists, then the real victim
>> is the EIS panel box.
>>
>> I can send you an itty-bitty filter that wires into the
>> transducer leads within short distance of the
>> victim as identified by experiment . . .
>>
>>
>> Emacs!
>>
>> What are the wires between the EIS panel connector
>> and the transducer? It would be good if they were a
>> twisted trio with all panel end wires terminated
>> at the EIS connector.
>>
>> Bob . . .
>>
>
Message 14
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Bevan,
I have an RV-10 with SL30 (archer wingtip antenna), GNS 430 (belly whip),
GRT EIS 6000. I experienced the same effect with my fuel pressure. The 430
only bothered the reading a couple of psi, so I decided that was not giving
me a problem. The SL30 shot it up out of limits, so I started chasing the
problem. I was able to use one ferrite at the sender in the engine
compartment with 2 maybe 3 loops (don't recall exactly) of wire going
through the ferrite. I also re-crimped the sl30 coax and reaffirmed the
archer antenna connections out on the wing. This seems to have solved my
problem to only a few psi on the sl30 transmit and virtually none on the
430. I decided I don't talk long enough for the pressure to rise and grab my
attention.
-Chris
N919AR
Message 15
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Thanks Chris! I have hope.
Bevan
_____
From: owner-aeroelectric-list-server@matronics.com
[mailto:owner-aeroelectric-list-server@matronics.com] On Behalf Of Chris
Sent: Tuesday, April 12, 2016 7:22 PM
Subject: RE: AeroElectric-List: RF Interference
Bevan,
I have an RV-10 with SL30 (archer wingtip antenna), GNS 430 (belly whip),
GRT EIS 6000. I experienced the same effect with my fuel pressure. The 430
only bothered the reading a couple of psi, so I decided that was not giving
me a problem. The SL30 shot it up out of limits, so I started chasing the
problem. I was able to use one ferrite at the sender in the engine
compartment with 2 maybe 3 loops (don't recall exactly) of wire going
through the ferrite. I also re-crimped the sl30 coax and reaffirmed the
archer antenna connections out on the wing. This seems to have solved my
problem to only a few psi on the sl30 transmit and virtually none on the
430. I decided I don't talk long enough for the pressure to rise and grab my
attention.
-Chris
N919AR
Message 16
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Subject: | Re: RF Interference |
So is there some archive material which expounds on the use of ferrites and
the identification of the correct wire / protagonist (as Bob N likes to
refer to it!)
On 13 April 2016 at 04:22, Chris <toaster73@embarqmail.com> wrote:
>
>
> Bevan,
>
> I have an RV-10 with SL30 (archer wingtip antenna), GNS 430 (belly whip),
> GRT EIS 6000. I experienced the same effect with my fuel pressure. The 430
> only bothered the reading a couple of psi, so I decided that was not giving
> me a problem. The SL30 shot it up out of limits, so I started chasing the
> problem. I was able to use one ferrite at the sender in the engine
> compartment with 2 maybe 3 loops (don't recall exactly) of wire going
> through the ferrite. I also re-crimped the sl30 coax and reaffirmed the
> archer antenna connections out on the wing. This seems to have solved my
> problem to only a few psi on the sl30 transmit and virtually none on the
> 430. I decided I don't talk long enough for the pressure to rise and grab
> my attention.
>
> -Chris
>
> N919AR
>
--
Best...
Bob Verwey
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