Today's Message Index:
----------------------
1. 04:06 AM - Re: For want of a nail . . . (FLYaDIVE)
2. 05:03 AM - Re: Is the OVP 5 A CB supposed to trip when I switch off the alternator? (William Daniell)
3. 05:27 AM - Re: Is the OVP 5 A CB supposed to trip when I switch off the alternator? (Robert L. Nuckolls, III)
4. 08:32 AM - Re: B&C switches (blues750)
5. 09:23 AM - Re: Is the OVP 5 A CB supposed to trip when I switch off the alternator? (William Daniell)
6. 12:38 PM - Re: Is the OVP 5 A CB supposed to trip when I switch off the al (user9253)
7. 02:12 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (Robert L. Nuckolls, III)
8. 02:48 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (FLYaDIVE)
9. 03:15 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (Ken Ryan)
10. 04:16 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (Robert L. Nuckolls, III)
11. 04:19 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (Robert L. Nuckolls, III)
12. 05:07 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (FLYaDIVE)
13. 05:32 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (Alec Myers)
14. 05:40 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (William Daniell)
15. 06:00 PM - Re: Is the OVP 5 A CB supposed to trip when I switch off the al (user9253)
16. 06:15 PM - Re: Is the OVP 5 A CB supposed to trip when I switch off the al (user9253)
17. 06:49 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (FLYaDIVE)
18. 07:02 PM - Re: Re: Is the OVP 5 A CB supposed to trip when I switch off the al (Alec Myers)
19. 07:21 PM - Re: For want of a nail . . . (Ernest Christley)
20. 08:43 PM - Analog Volt Meter ()
21. 09:30 PM - Re: Analog Volt Meter (Charlie England)
Message 1
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Subject: | Re: For want of a nail . . . |
How long is a Short?
On Sat, May 26, 2018 at 11:49 AM, Robert L. Nuckolls, III <
nuckolls.bob@aeroelectric.com> wrote:
> Spent too many hours and way too many dollars
> chasing gremlins from an antenna system only
> to discover that one of my SWR test coaxes
> had an INTERMITENT short. Made for some very
> confusing readings and misguided actions.
>
> Only accidently noticed that my anomalous readings
> manifested when coax behind the connector was
> subject to the right side-pressure. Swapped
> out the cable and the antenna refurbishment
> task moved forward after replacement of stuff
> that didn't need replacing.
>
> Tore down the connector and found a couple
> of 'whiskers' hanging out of the center
> pin crimp.
>
> [image: Emacs!]
>
> Just long enough to come within a few micro-inches
> of shorting the coax . . . putting the right
> force vector on the coax would close the gap.
>
> This was a commercially assembled test jumper
> that has been hanging on my cable rack for
> at least 15 years . . . just goes to show ya . . .
>
> Bob . . .
>
Message 2
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I switch |
off the alternator?
Bob
Thanks for taking the time. Wilco. (admonishment accepted)
On Sun, May 27, 2018, 00:59 Robert L. Nuckolls, III <
nuckolls.bob@aeroelectric.com> wrote:
> At 06:06 PM 5/26/2018, you wrote:
>
> =C3=A2=82=AC=B9So I take it that it's not supposed to trip?
>
> I have separate switches for the battery and alternator and they do what
> they are supposed to.=C3=82 =C3=82 I don't have a diode installed.=C3=82
Is this
> critical?
>
>
> So Z16 has been modified . . .
>
>
> ALT and the BATT are connected to the starter contactor as per Z16 (well
> actually Z16v shows the buss connected to the battery contractor but it
> looks electrically equivalent from the diagram)
>
> So...everything is normal.=C3=82 I can start the engine switch on the lo
ads -
> I see the ammeter reacting to the loads, the alternator is charging the
> battery and running all the loads. =C3=A2=82=AC=B9=C3=82 =C3=82
the System is at 12.8V.
>
> I can switch the battery off and all remains the same.
>
> But when I switch the ALT off the OVP trips.=C3=82 The amps go negative
while
> the ALT is off.=C3=82 I can immediately reset the 5amp CB and switch on
the ALT
> and everything is goes back to normal.
>
> Could the OVP be reacting to a sudden Volt surge caused by the battery
> taking up the loads?
>
>
> Wire per Z16 with 700-2-10, progressive transfer
> switch . . . battery should not be OFF
> with alternator ON . . . the wiring shown
> in Z16 mirrors the legacy switching protocols
> adopted for TC aircraft about 50 years ago.
>
>
> Bob . . .
>
Message 3
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I switch |
off the alternator?
At 07:03 AM 5/27/2018, you wrote:
>Bob
>Thanks for taking the time.=C2 Wilco. (admonishment accepted)
No problem my friend . . . it's what we all do
here . . .
Bob . . .
Message 4
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Subject: | Re: B&C switches |
nuckolls.bob(at)aeroelect wrote:
> At 03:03 PM 5/26/2018, you wrote:
>
> >
> > Bob,
> >
> > After pondering the wiring diagram you attached, I am also thinking that for
my particular application I would need to use a DPDT type relay, along with
a similar switch (S700-2-1) am I on the right track? The pump motor will operate
to lower or retract the gear via hydraulic actuators, and pump direction is
dependent on polarity, hence the need for the DPDT items.
> >
> > Dave
>
> Aha! A bi-directional electro-hydraulic system.
> Okay, you need TWO relays. Your wiring looks
> like this
>
> https://goo.gl/f6zECm
>
> . . . except your driving a hydraulic pump as
> opposed to a flap motor . . . also, you probably
> want to order an S700-1-4 (on)-off-(on) switch
> from B&C. Spring loaded to the center OFF position.
>
> I'll modify your care-package accordingly.
>
>
> Bob . . .
Thanks so very much Bob. Appreciate the experienced insight, along with your generosity
and willingness to endure us "newbs" and teachable moments!
Cheers! Dave
(Switch is on order...)
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=480446#480446
Message 5
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I switch |
off the alternator?
Just fitted the diode...guess what....no ovp trip
Thanks joe charlie and bob
On Sun, May 27, 2018, 07:31 Robert L. Nuckolls, III <
nuckolls.bob@aeroelectric.com> wrote:
> At 07:03 AM 5/27/2018, you wrote:
>
> Bob
> Thanks for taking the time.=C3=82 Wilco. (admonishment accepted)
>
>
> No problem my friend . . . it's what we all do
> here . . .
>
>
> Bob . . .
>
Message 6
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I switch |
off the al
Now all we have to do is figure out how the O.V. module tripped the circuit breaker
with the switch open. The only thing that I can think of is that it happened
during the time that an arc was jumping across the opening contacts.
Is that long enough to trip a breaker? Or maybe it is not wired like Z-16. Instead
maybe the O.V. module is connected to the other side of the switch. The
O.V. module will still function OK if it is.
Anyway, glad it is working for you Will.
--------
Joe Gores
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=480450#480450
Message 7
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
At 02:37 PM 5/27/2018, you wrote:
>
>Now all we have to do is figure out how the O.V. module tripped the
>circuit breaker with the switch open. The only thing that I can
>think of is that it happened during the time that an arc was jumping
>across the opening contacts.
Oh . . . THAT diode. . . missed that part of the
thread . . .
Emacs!
>
>Is that long enough to trip a breaker? Or maybe it is not wired
>like Z-16. Instead maybe the O.V. module is connected to the other
>side of the switch. The O.V. module will still function OK if it is.
>Anyway, glad it is working for you Will.
I've seen this before . . . field collapse spikes
on a beefy relay have been known to irritate the
crowbar ovm. Had a Europa builder in Wichita having
a similar problem with the avionics master relay
in his EXP Bus system. Tacked a diode across the
relay coil and order was restored in the universe.
Bob . . .
Message 8
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
Joe & Bob:
I was not able to link to the Z-16 schematic but if it is like what you
just posted Bob, the diode trick has been around for many years.
I'm sure there are different names for the way it is being used, the name I
know it by is: ANTI-BOUNCE DIODE.
Gaggle - If you look at the diode it is put in the REVERSE Polarity
Direction of the applied voltage.
Without the diode - When the power to the relay is removed, the collapsing
field of the relay produced an induced voltage in the opposite direction as
the energizing voltage. This voltage caused the relay contacts to BOUNCE
and not open the contacts as quickly or as definitively. This of course
caused excessive arcing of the contacts, shortening their life and even
welding the contacts closed and/or carbonizing the contacts.
So, if the OV circuit is sensitive enough and fast enough it could react to
the induced spike.
Barry
On Sun, May 27, 2018 at 5:11 PM, Robert L. Nuckolls, III <
nuckolls.bob@aeroelectric.com> wrote:
> At 02:37 PM 5/27/2018, you wrote:
>
>
> Now all we have to do is figure out how the O.V. module tripped the
> circuit breaker with the switch open. The only thing that I can think of
> is that it happened during the time that an arc was jumping across the
> opening contacts.
>
>
> Oh . . . THAT diode. . . missed that part of the
> thread . . .
>
> [image: Emacs!]
>
>
> Is that long enough to trip a breaker? Or maybe it is not wired like
> Z-16. Instead maybe the O.V. module is connected to the other side of the
> switch. The O.V. module will still function OK if it is.
> Anyway, glad it is working for you Will.
>
>
> I've seen this before . . . field collapse spikes
> on a beefy relay have been known to irritate the
> crowbar ovm. Had a Europa builder in Wichita having
> a similar problem with the avionics master relay
> in his EXP Bus system. Tacked a diode across the
> relay coil and order was restored in the universe.
>
>
> Bob . . .
>
Message 9
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
Barry,
I think that is at odds with the explanation offered by Bob, et al. If I
understand them correctly, the diode does not protect the contacts of the
relay, but rather the contacts of the switch that controls the relay.
Ken
On Sun, May 27, 2018 at 1:48 PM, FLYaDIVE <flyadive@gmail.com> wrote:
> Joe & Bob:
>
> I was not able to link to the Z-16 schematic but if it is like what you
> just posted Bob, the diode trick has been around for many years.
> I'm sure there are different names for the way it is being used, the name
> I know it by is: ANTI-BOUNCE DIODE.
> Gaggle - If you look at the diode it is put in the REVERSE Polarity
> Direction of the applied voltage.
> Without the diode - When the power to the relay is removed, the collapsing
> field of the relay produced an induced voltage in the opposite direction as
> the energizing voltage. This voltage caused the relay contacts to BOUNCE
> and not open the contacts as quickly or as definitively. This of course
> caused excessive arcing of the contacts, shortening their life and even
> welding the contacts closed and/or carbonizing the contacts.
>
> So, if the OV circuit is sensitive enough and fast enough it could react
> to the induced spike.
>
> Barry
>
> On Sun, May 27, 2018 at 5:11 PM, Robert L. Nuckolls, III <
> nuckolls.bob@aeroelectric.com> wrote:
>
>> At 02:37 PM 5/27/2018, you wrote:
>>
>>
>> Now all we have to do is figure out how the O.V. module tripped the
>> circuit breaker with the switch open. The only thing that I can think of
>> is that it happened during the time that an arc was jumping across the
>> opening contacts.
>>
>>
>> Oh . . . THAT diode. . . missed that part of the
>> thread . . .
>>
>> [image: Emacs!]
>>
>>
>> Is that long enough to trip a breaker? Or maybe it is not wired like
>> Z-16. Instead maybe the O.V. module is connected to the other side of the
>> switch. The O.V. module will still function OK if it is.
>> Anyway, glad it is working for you Will.
>>
>>
>> I've seen this before . . . field collapse spikes
>> on a beefy relay have been known to irritate the
>> crowbar ovm. Had a Europa builder in Wichita having
>> a similar problem with the avionics master relay
>> in his EXP Bus system. Tacked a diode across the
>> relay coil and order was restored in the universe.
>>
>>
>> Bob . . .
>>
>
>
Message 10
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
At 05:14 PM 5/27/2018, you wrote:
>Barry,
>
>I think that is at odds with the explanation offered by Bob, et al.
>If I understand them correctly, the diode does not protect the
>contacts of the relay, but rather the contacts of the switch that
>controls the relay.
Correct. All Relays, contactors, solenoids, et. al.
will present a high voltage event across the windings
when the coil excitation current is removed. Here's
a couple of articles on the topic.
https://goo.gl/WUS1Ya
https://goo.gl/6sj8um
Bob . . .
Message 11
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
At 04:48 PM 5/27/2018, you wrote:
>Joe & Bob:
>
>I was not able to link to the Z-16 schematic but if it is like what
>you just posted Bob, the diode trick has been around for many years.
Yes. I was a tech writer at Cessna in the 60s
when a fancy new gizmo called a silicon junction
diode started finding its way onto the battery
and starter contactors. You can get all the z-figures
at https://goo.gl/kovZJX where you will find a
consistent application of the rectifier diode
for the purpose of taming coil collapse transients.
Bob . . .
Message 12
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
Ken & Bob:
If that was the case...
1 - Then why place the diode on the relay and not on the switch?
After all, if it's an induced voltage the effects would decrease over the
running length of a wire, especially a straight wire.
2 - In Bob's drawing the Switch is forward of the relay and controls the
Positive Voltage to the relay.
YET! Not all circuits with the same Diode and Relay switch the Positive
Voltage. Some put the switch on the Ground Leg of the relay.
3 - When was this circuit and diode instillation designed?
I was taught this expiation way back in 1969. I have a feeling the
reasoning of the circuit was lost over decades of time. Yet, the good
intentions of the circuit remain. You always have to remember this has
always been called Electronics THEORY!
In the long run, you can't argue with success.
Barry
On Sun, May 27, 2018 at 6:14 PM, Ken Ryan <keninalaska@gmail.com> wrote:
> Barry,
>
> I think that is at odds with the explanation offered by Bob, et al. If I
> understand them correctly, the diode does not protect the contacts of the
> relay, but rather the contacts of the switch that controls the relay.
>
> Ken
>
>
> On Sun, May 27, 2018 at 1:48 PM, FLYaDIVE <flyadive@gmail.com> wrote:
>
>> Joe & Bob:
>>
>> I was not able to link to the Z-16 schematic but if it is like what you
>> just posted Bob, the diode trick has been around for many years.
>> I'm sure there are different names for the way it is being used, the name
>> I know it by is: ANTI-BOUNCE DIODE.
>> Gaggle - If you look at the diode it is put in the REVERSE Polarity
>> Direction of the applied voltage.
>> Without the diode - When the power to the relay is removed, the
>> collapsing field of the relay produced an induced voltage in the opposite
>> direction as the energizing voltage. This voltage caused the relay contacts
>> to BOUNCE and not open the contacts as quickly or as definitively. This of
>> course caused excessive arcing of the contacts, shortening their life and
>> even welding the contacts closed and/or carbonizing the contacts.
>>
>> So, if the OV circuit is sensitive enough and fast enough it could react
>> to the induced spike.
>>
>> Barry
>>
>> On Sun, May 27, 2018 at 5:11 PM, Robert L. Nuckolls, III <
>> nuckolls.bob@aeroelectric.com> wrote:
>>
>>> At 02:37 PM 5/27/2018, you wrote:
>>>
>>>
>>> Now all we have to do is figure out how the O.V. module tripped the
>>> circuit breaker with the switch open. The only thing that I can think of
>>> is that it happened during the time that an arc was jumping across the
>>> opening contacts.
>>>
>>>
>>> Oh . . . THAT diode. . . missed that part of the
>>> thread . . .
>>>
>>> [image: Emacs!]
>>>
>>>
>>> Is that long enough to trip a breaker? Or maybe it is not wired like
>>> Z-16. Instead maybe the O.V. module is connected to the other side of the
>>> switch. The O.V. module will still function OK if it is.
>>> Anyway, glad it is working for you Will.
>>>
>>>
>>> I've seen this before . . . field collapse spikes
>>> on a beefy relay have been known to irritate the
>>> crowbar ovm. Had a Europa builder in Wichita having
>>> a similar problem with the avionics master relay
>>> in his EXP Bus system. Tacked a diode across the
>>> relay coil and order was restored in the universe.
>>>
>>>
>>> Bob . . .
>>>
>>
>>
>
Message 13
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
If you want to protect the relay contacts from back EMF generated in an indu
ctive LOAD put a diode across the LOAD or across the relay contacts. Either
place will work.
If you want to protect the switch from back EMF generated in the relay COIL p
ut a relay across the COIL or across the switch. Either place will work.
Sent from my iPhone
> On May 27, 2018, at 7:57 PM, FLYaDIVE <flyadive@gmail.com> wrote:
>
> Ken & Bob:
>
> If that was the case...
> 1 - Then why place the diode on the relay and not on the switch?
> After all, if it's an induced voltage the effects would decrease over the r
unning length of a wire, especially a straight wire.
> 2 - In Bob's drawing the Switch is forward of the relay and controls the P
ositive Voltage to the relay.
> YET! Not all circuits with the same Diode and Relay switch the Positive V
oltage. Some put the switch on the Ground Leg of the relay.
> 3 - When was this circuit and diode instillation designed?
> I was taught this expiation way back in 1969. I have a feeling the reason
ing of the circuit was lost over decades of time. Yet, the good intentions o
f the circuit remain. You always have to remember this has always been call
ed Electronics THEORY!
> In the long run, you can't argue with success.
>
> Barry
>
>
>
>> On Sun, May 27, 2018 at 6:14 PM, Ken Ryan <keninalaska@gmail.com> wrote:
>> Barry,
>>
>> I think that is at odds with the explanation offered by Bob, et al. If I u
nderstand them correctly, the diode does not protect the contacts of the rel
ay, but rather the contacts of the switch that controls the relay.
>>
>> Ken
>>
>>
>>> On Sun, May 27, 2018 at 1:48 PM, FLYaDIVE <flyadive@gmail.com> wrote:
>>> Joe & Bob:
>>>
>>> I was not able to link to the Z-16 schematic but if it is like what you j
ust posted Bob, the diode trick has been around for many years.
>>> I'm sure there are different names for the way it is being used, the nam
e I know it by is: ANTI-BOUNCE DIODE.
>>> Gaggle - If you look at the diode it is put in the REVERSE Polarity Dire
ction of the applied voltage.
>>> Without the diode - When the power to the relay is removed, the collapsi
ng field of the relay produced an induced voltage in the opposite direction a
s the energizing voltage. This voltage caused the relay contacts to BOUNCE a
nd not open the contacts as quickly or as definitively. This of course caus
ed excessive arcing of the contacts, shortening their life and even welding t
he contacts closed and/or carbonizing the contacts.
>>>
>>> So, if the OV circuit is sensitive enough and fast enough it could react
to the induced spike.
>>>
>>> Barry
>>>
>>>> On Sun, May 27, 2018 at 5:11 PM, Robert L. Nuckolls, III <nuckolls.bob@
aeroelectric.com> wrote:
>>>> At 02:37 PM 5/27/2018, you wrote:
>
>>>>>
>>>>> Now all we have to do is figure out how the O.V. module tripped the ci
rcuit breaker with the switch open. The only thing that I can think of is t
hat it happened during the time that an arc was jumping across the opening c
ontacts.
>>>>
>>>> Oh . . . THAT diode. . . missed that part of the
>>>> thread . . .
>>>>
>>>> <243745d4.jpg>
>>>>
>>>>>
>>>>> Is that long enough to trip a breaker? Or maybe it is not wired like Z
-16. Instead maybe the O.V. module is connected to the other side of the sw
itch. The O.V. module will still function OK if it is.
>>>>> Anyway, glad it is working for you Will.
>>>>
>>>> I've seen this before . . . field collapse spikes
>>>> on a beefy relay have been known to irritate the
>>>> crowbar ovm. Had a Europa builder in Wichita having
>>>> a similar problem with the avionics master relay
>>>> in his EXP Bus system. Tacked a diode across the
>>>> relay coil and order was restored in the universe.
>>>>
>>>>
>>>> Bob . . .
>>>>
>>>
>>
>
Message 14
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
Joe
Can you explain "the other side of the switch" please?
The ov module tripped when I turned off the alt...
The ovp is wired per z16.
However due space the relay is wired as per z17 ie after the voltage
regulator not before. Might this make a difference?
Will
William Daniell
LONGPORT
+57 310 295 0744
On Sun, May 27, 2018, 14:42 user9253 <fransew@gmail.com> wrote:
>
> Now all we have to do is figure out how the O.V. module tripped the
> circuit breaker with the switch open. The only thing that I can think of
> is that it happened during the time that an arc was jumping across the
> opening contacts.
> Is that long enough to trip a breaker? Or maybe it is not wired like
> Z-16. Instead maybe the O.V. module is connected to the other side of the
> switch. The O.V. module will still function OK if it is.
> Anyway, glad it is working for you Will.
>
> --------
> Joe Gores
>
>
> Read this topic online here:
>
> http://forums.matronics.com/viewtopic.php?p=480450#480450
>
>
Message 15
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I switch |
off the al
An arc suppression diode needs to be connected in parallel with the inductor with
the banded end of the diode connected to positive. The ideal physical location
of the diode is as close to the coil as practical. However, the diode could
be located at the switch that turns the coil on and off. Even so, the diode
still needs to be connected in parallel with the coil. A diode will limit
induced voltage to about 1 volt, which is the forward voltage drop of the diode.
The main purpose of an arc suppression diode is to protect the controlling
switch contacts from arcing. Below is a picture of a diode located at the switch.
Notice that even though the diode is located remote from the contactor
coil, it is still connected in parallel with the coil. The banded end of the
diode connects to the positive side of the coil, and the other end of the diode
is connected to the negative side of the coil (through ground). Connecting
a diode across switch contacts does little good.
--------
Joe Gores
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=480463#480463
Attachments:
http://forums.matronics.com//files/diode_arc_suppression_166.jpg
Message 16
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I switch |
off the al
I was referring to the left, or upstream, side of the switch.
> Can you explain "the other side of the switch" please?
It will not make a difference if the relay interrupts AC from the dynamo or DC
from the rectifier/regulator.
Looking at Z-17, there is no diode across the relay coil. When the alternator
switch is opened, induced negative voltage will be applied to the red lead of
the O.V. module. I think a diode should be connected across the relay coil.
--------
Joe Gores
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=480464#480464
Message 17
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Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
Alec:
It is not directly protecting the contacts of the relay. The reverse EMF
never touches the contacts of the relay. It is preventing the reverse EMF
from allowing the contacts to bounce which causes the contacts to arc.
Barry
On Sun, May 27, 2018 at 8:31 PM, Alec Myers <alec@alecmyers.com> wrote:
> If you want to protect the relay contacts from back EMF generated in an
> inductive LOAD put a diode across the LOAD or across the relay contacts.
> Either place will work.
>
> If you want to protect the switch from back EMF generated in the relay
> COIL put a relay across the COIL or across the switch. Either place will
> work.
>
>
> Sent from my iPhone
>
> On May 27, 2018, at 7:57 PM, FLYaDIVE <flyadive@gmail.com> wrote:
>
> Ken & Bob:
>
> If that was the case...
> 1 - Then why place the diode on the relay and not on the switch?
> After all, if it's an induced voltage the effects would decrease over the
> running length of a wire, especially a straight wire.
> 2 - In Bob's drawing the Switch is forward of the relay and controls the
> Positive Voltage to the relay.
> YET! Not all circuits with the same Diode and Relay switch the Positive
> Voltage. Some put the switch on the Ground Leg of the relay.
> 3 - When was this circuit and diode instillation designed?
> I was taught this expiation way back in 1969. I have a feeling the
> reasoning of the circuit was lost over decades of time. Yet, the good
> intentions of the circuit remain. You always have to remember this has
> always been called Electronics THEORY!
> In the long run, you can't argue with success.
>
> Barry
>
>
> On Sun, May 27, 2018 at 6:14 PM, Ken Ryan <keninalaska@gmail.com> wrote:
>
>> Barry,
>>
>> I think that is at odds with the explanation offered by Bob, et al. If I
>> understand them correctly, the diode does not protect the contacts of the
>> relay, but rather the contacts of the switch that controls the relay.
>>
>> Ken
>>
>>
>> On Sun, May 27, 2018 at 1:48 PM, FLYaDIVE <flyadive@gmail.com> wrote:
>>
>>> Joe & Bob:
>>>
>>> I was not able to link to the Z-16 schematic but if it is like what you
>>> just posted Bob, the diode trick has been around for many years.
>>> I'm sure there are different names for the way it is being used, the
>>> name I know it by is: ANTI-BOUNCE DIODE.
>>> Gaggle - If you look at the diode it is put in the REVERSE Polarity
>>> Direction of the applied voltage.
>>> Without the diode - When the power to the relay is removed, the
>>> collapsing field of the relay produced an induced voltage in the opposite
>>> direction as the energizing voltage. This voltage caused the relay contacts
>>> to BOUNCE and not open the contacts as quickly or as definitively. This of
>>> course caused excessive arcing of the contacts, shortening their life and
>>> even welding the contacts closed and/or carbonizing the contacts.
>>>
>>> So, if the OV circuit is sensitive enough and fast enough it could react
>>> to the induced spike.
>>>
>>> Barry
>>>
>>> On Sun, May 27, 2018 at 5:11 PM, Robert L. Nuckolls, III <
>>> nuckolls.bob@aeroelectric.com> wrote:
>>>
>>>> At 02:37 PM 5/27/2018, you wrote:
>>>>
>>>>
>>>> Now all we have to do is figure out how the O.V. module tripped the
>>>> circuit breaker with the switch open. The only thing that I can think of
>>>> is that it happened during the time that an arc was jumping across the
>>>> opening contacts.
>>>>
>>>>
>>>> Oh . . . THAT diode. . . missed that part of the
>>>> thread . . .
>>>>
>>>> <243745d4.jpg>
>>>>
>>>>
>>>> Is that long enough to trip a breaker? Or maybe it is not wired like
>>>> Z-16. Instead maybe the O.V. module is connected to the other side of the
>>>> switch. The O.V. module will still function OK if it is.
>>>> Anyway, glad it is working for you Will.
>>>>
>>>>
>>>> I've seen this before . . . field collapse spikes
>>>> on a beefy relay have been known to irritate the
>>>> crowbar ovm. Had a Europa builder in Wichita having
>>>> a similar problem with the avionics master relay
>>>> in his EXP Bus system. Tacked a diode across the
>>>> relay coil and order was restored in the universe.
>>>>
>>>>
>>>> Bob . . .
>>>>
>>>
>>>
>>
>
Message 18
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|
Subject: | Re: Is the OVP 5 A CB supposed to trip when I |
switch off the al
I don't know what "it" you're referring to; I didn't have any specific circu
it in mind.
If you have an inductive load you can protect the relay contacts with a diod
e if you want to.
Sent from my iPhone
> On May 27, 2018, at 9:49 PM, FLYaDIVE <flyadive@gmail.com> wrote:
>
> Alec:
>
> It is not directly protecting the contacts of the relay. The reverse EMF n
ever touches the contacts of the relay. It is preventing the reverse EMF fr
om allowing the contacts to bounce which causes the contacts to arc.
>
> Barry
>
>> On Sun, May 27, 2018 at 8:31 PM, Alec Myers <alec@alecmyers.com> wrote:
>> If you want to protect the relay contacts from back EMF generated in an i
nductive LOAD put a diode across the LOAD or across the relay contacts. Eit
her place will work.
>>
>> If you want to protect the switch from back EMF generated in the relay CO
IL put a relay across the COIL or across the switch. Either place will work.
>>
>>
>>
>> Sent from my iPhone
>>
>>> On May 27, 2018, at 7:57 PM, FLYaDIVE <flyadive@gmail.com> wrote:
>>>
>>> Ken & Bob:
>>>
>>> If that was the case...
>>> 1 - Then why place the diode on the relay and not on the switch?
>>> After all, if it's an induced voltage the effects would decrease over th
e running length of a wire, especially a straight wire.
>>> 2 - In Bob's drawing the Switch is forward of the relay and controls the
Positive Voltage to the relay.
>>> YET! Not all circuits with the same Diode and Relay switch the Positive
Voltage. Some put the switch on the Ground Leg of the relay.
>>> 3 - When was this circuit and diode instillation designed?
>>> I was taught this expiation way back in 1969. I have a feeling the reas
oning of the circuit was lost over decades of time. Yet, the good intentions
of the circuit remain. You always have to remember this has always been ca
lled Electronics THEORY!
>>> In the long run, you can't argue with success.
>>>
>>> Barry
>>>
>>>
>>>
>>>> On Sun, May 27, 2018 at 6:14 PM, Ken Ryan <keninalaska@gmail.com> wrote
:
>>>> Barry,
>>>>
>>>> I think that is at odds with the explanation offered by Bob, et al. If I
understand them correctly, the diode does not protect the contacts of the r
elay, but rather the contacts of the switch that controls the relay.
>>>>
>>>> Ken
>>>>
>>>>
>>>>> On Sun, May 27, 2018 at 1:48 PM, FLYaDIVE <flyadive@gmail.com> wrote:
>>>>> Joe & Bob:
>>>>>
>>>>> I was not able to link to the Z-16 schematic but if it is like what yo
u just posted Bob, the diode trick has been around for many years.
>>>>> I'm sure there are different names for the way it is being used, the n
ame I know it by is: ANTI-BOUNCE DIODE.
>>>>> Gaggle - If you look at the diode it is put in the REVERSE Polarity Di
rection of the applied voltage.
>>>>> Without the diode - When the power to the relay is removed, the collap
sing field of the relay produced an induced voltage in the opposite directio
n as the energizing voltage. This voltage caused the relay contacts to BOUNC
E and not open the contacts as quickly or as definitively. This of course c
aused excessive arcing of the contacts, shortening their life and even weldi
ng the contacts closed and/or carbonizing the contacts.
>>>>>
>>>>> So, if the OV circuit is sensitive enough and fast enough it could rea
ct to the induced spike.
>>>>>
>>>>> Barry
>>>>>
>>>>>> On Sun, May 27, 2018 at 5:11 PM, Robert L. Nuckolls, III <nuckolls.bo
b@aeroelectric.com> wrote:
>>>>>> At 02:37 PM 5/27/2018, you wrote:
om>
>>>>>>>
>>>>>>> Now all we have to do is figure out how the O.V. module tripped the c
ircuit breaker with the switch open. The only thing that I can think of is t
hat it happened during the time that an arc was jumping across the opening c
ontacts.
>>>>>>
>>>>>> Oh . . . THAT diode. . . missed that part of the
>>>>>> thread . . .
>>>>>>
>>>>>> <243745d4.jpg>
>>>>>>
>>>>>>>
>>>>>>> Is that long enough to trip a breaker? Or maybe it is not wired lik
e Z-16. Instead maybe the O.V. module is connected to the other side of the
switch. The O.V. module will still function OK if it is.
>>>>>>> Anyway, glad it is working for you Will.
>>>>>>
>>>>>> I've seen this before . . . field collapse spikes
>>>>>> on a beefy relay have been known to irritate the
>>>>>> crowbar ovm. Had a Europa builder in Wichita having
>>>>>> a similar problem with the avionics master relay
>>>>>> in his EXP Bus system. Tacked a diode across the
>>>>>> relay coil and order was restored in the universe.
>>>>>>
>>>>>>
>>>>>> Bob . . .
>>>>>>
>>>>>
>>>>
>>>
>
Message 19
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|
Subject: | Re: For want of a nail . . . |
I hope that is not a "that's what she said" joke.
On Sunday, May 27, 2018 7:08 AM, FLYaDIVE <flyadive@gmail.com> wrote:
How long is a Short?
On Sat, May 26, 2018 at 11:49 AM, Robert L. Nuckolls, III <nuckolls.bob@aer
oelectric.com> wrote:
Spent too many hours and way too many dollars
chasing gremlins from an antenna system only
to discover that one of my SWR test coaxes
had an INTERMITENT short. Made for some very
confusing readings and misguided actions.
Only accidently noticed that my anomalous readings
manifested when coax behind the connector was
subject to the right side-pressure. Swapped
out the cable and the antenna refurbishment
task moved forward after replacement of stuff
that didn't need replacing.
Tore down the connector and found a couple
of 'whiskers' hanging out of the center
pin crimp.
Just long enough to come within a few micro-inches
of shorting the coax . . . putting the right
force vector on the coax would close the gap.
This was a commercially assembled test jumper
that has been hanging on my cable rack for
at least 15 years . . . just goes to show ya . . .
=C2- Bob . . .
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Subject: | Analog Volt Meter |
Does anybody know where I can get a small analog volt meter about the same
size as the UMA from aircraft spruce but at a better price?
http://www.aircraftspruce.ca/catalog/inpages/uma_instr9.php?clickkey=1320
0
Thanks
Mike
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Message 21
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Subject: | Re: Analog Volt Meter |
https://www=2Eebay=2Ecom/bhp/analog-panel-meter
=81=A3Charlie=8B
On May 27, 2018, 10:47 PM, at 10:47 PM, mike@vision499=2Ecom wrote:
>Does
anybody know where I can get a small analog volt meter about the
>same siz
e as the UMA from aircraft spruce but at a better price?
>
>
>http://www
=2Eaircraftspruce=2Eca/catalog/inpages/uma_instr9=2Ephp?clickkey=13200
>
>
>
>Thanks
>
>
>Mike
>
>
>---
>This email has been
checked for viruses by Avast antivirus software=2E
>https://www=2Eavast=2E
com/antivirus
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