Today's Message Index:
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1. 01:05 AM - Re: Re: IVO Prop current limiter (Eric Page)
2. 07:01 AM - Re: IVO Prop current limiter (kfav8r)
3. 07:59 AM - Re: Re: IVO Prop current limiter (Paul A. Fisher)
4. 09:07 AM - Re: Re: IVO Prop current limiter (Robert L. Nuckolls, III)
5. 09:19 AM - Re: Re: IVO Prop current limiter (Robert L. Nuckolls, III)
6. 09:26 AM - Re: Re: IVO Prop current limiter (Robert L. Nuckolls, III)
7. 03:55 PM - Fat wires (GTH)
8. 04:22 PM - Re: Fat wires (Alec Myers)
9. 04:39 PM - Re: Fat wires (Robert L. Nuckolls, III)
10. 04:40 PM - Re: Fat wires (rayj)
11. 04:47 PM - Re: Fat wires (user9253)
12. 04:50 PM - Re: Fat wires (Charlie England)
13. 06:43 PM - Re: Re: IVO Prop current limiter (Paul A. Fisher)
14. 07:07 PM - Re: IVO Prop current limiter (Eric Page)
15. 08:12 PM - Re: Re: IVO Prop current limiter (Robert L. Nuckolls, III)
16. 08:35 PM - Re: IVO Prop current limiter (Eric Page)
17. 08:59 PM - Re: IVO Prop current limiter (Eric Page)
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Subject: | Re: IVO Prop current limiter |
I've converted Bob's sketches to a CAD file. =C2-Anyone with interest in
the project please look over my work (see attached PDF) and post any change
s/critiques for the group to consider. =C2-When we're all happy, I'll tur
n it into a printed circuit board, stuff it with parts and a DIP-8 socket,
and send it to Paul so he can add a programmed PIC to test with his code.
A couple of notes:- I've assumed that the DPDT motor-control relay will be
mounted elsewhere (off the PCB).- I've drawn a notional wiring diagram incl
uding a switch and a second relay. =C2-If this isn't how the IVO prop wor
ks, let me know what to change.- I guessed at the correct PIC GPIO pins to
use. =C2-Paul, let me know if you need something different.
Things to consider:- For BOM simplicity, I used the same 2k resistors for R
1-R8, and 0.1uF for C2 and C3. =C2-Any problems with this?- Any other com
ponent substitutions or value changes?
- What's the desired physical envelope (PCB with mounting holes / PCB for a
small potting box / something else...)?- What type of connector(s) should
be used (a DB-9 is shown)?- Are the fuse values on the wiring diagram appro
priate?- What AWG should be specified for each wire run?
Doug (kfav8r), in order to give you credit on the schematic, would you like
to send me your last name?
Cheers,
Eric
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Subject: | Re: IVO Prop current limiter |
The DPDT switch is mounted in the panel (in my case), along with the red and green
LEDs.
For the Arduino setup, I have the relay and the current sensing module in a box
behind the panel, and the arduino placed nearby.
On my Arduino layout drawing, the right side is from one of Bob's original drawings.
He included the 10 Amp circuit breaker there, since that is what is delivered
with the IVOProp.
For wiring, I used 16 AWG for any wires handling prop motor current; that is the
size delivered with the prop.
My name is Doug Garland, but true credit goes to Dennis Glaeser for starting this
discussion years ago, and, of course, Bob.
--------
Doug
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=470815#470815
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Subject: | Re: IVO Prop current limiter |
Nicely drawn Eric!
Your message asks a lot of questions that I'm not qualified to answer.
However, I can answer the question about the PIC pins you chose - they
should work fine. I'll write the code based on the brief description
Bob gave in his note. I'm assuming that a LIMIT SENSE of greater than
0.5 volts for more than 0.5 seconds is the trigger we want. I'll put
those values in EEPROM fields on the chip so they are relatively easy to
change if we want.
At some point we'll need someone with an IVO prop to actually test this
and give us real world feedback.
This is fun!
Paul
On 7/9/2017 3:05 AM, Eric Page wrote:
> I've converted Bob's sketches to a CAD file. Anyone with interest in
> the project please look over my work (see attached PDF) and post any
> changes/critiques for the group to consider. When we're all happy,
> I'll turn it into a printed circuit board, stuff it with parts and a
> DIP-8 socket, and send it to Paul so he can add a programmed PIC to
> test with his code.
>
> A couple of notes:
> - I've assumed that the DPDT motor-control relay will be mounted
> elsewhere (off the PCB).
> - I've drawn a notional wiring diagram including a switch and a second
> relay. If this isn't how the IVO prop works, let me know what to change.
> - I guessed at the correct PIC GPIO pins to use. Paul, let me know if
> you need something different.
>
> Things to consider:
> - For BOM simplicity, I used the same 2k resistors for R1-R8, and
> 0.1uF for C2 and C3. Any problems with this?
> - Any other component substitutions or value changes?
> - What's the desired physical envelope (PCB with mounting holes / PCB
> for a small potting box / something else...)?
> - What type of connector(s) should be used (a DB-9 is shown)?
> - Are the fuse values on the wiring diagram appropriate?
> - What AWG should be specified for each wire run?
>
> Doug (kfav8r), in order to give you credit on the schematic, would you
> like to send me your last name?
>
> Cheers,
>
> Eric
>
>
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Subject: | Re: IVO Prop current limiter |
At 08:59 AM 7/8/2017, you wrote:
>The software that Bob describes would be pretty simple to write for
>the PIC12F683 chip, the same chip we used for the wig-wag open
>source project. I'll volunteer to contribute the software if
>someone wants to pursue Bob's hardware design using a PIC chip
>instead of the Arduino as an open source project.
I'm up to my eyeballs in a couple of development
efforts along with juggling domestic duties . . .
but if someone wants to brassboard this project,
I'll volunteer to package it into a readily
duplicated product.
I've posted a proposed schematic of the controller
at http://tinyurl.com/ybbtw6dp
A minimalist approach to packaging would
look something like this. The fat power transistor
would be on the bottom, heat transfer surface down.
This would facilitate using airframe for heat-sinking
like our schottky e-bus diode did. The connector
would be 15 pin. The ECB footprint would be about
1.25 x 1.75 inches. The 'kit' would look something
like this except that the 700-2-7 switch is
missing.
Emacs!
Oh yeah, had a gray-matter fart while crafting the
schematic. The software can get MUCH simpler.
On power up, the initialization CLEARS the LIMIT
LATCH and removes gate drive from the clamping
fet.
The analog input is monitored for amplitude greater
than 0.5 volts; greater than 0.5 seconds whereupon
the LIMIT LATCH is SET, gate of clamp fet goes
high and removed drive from the current limit fet.
An excursion below 0.5v will reset the LIMIT
TIMER.
After limit time out, the condition is sustained
until next power-down/power-up event.
I need to keep my head down on some more pressing
tasks for the next 10 days or so. You guys can
shepherd this along in the mean time.
Bob . . .
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Subject: | Re: IVO Prop current limiter |
At 09:58 AM 7/9/2017, you wrote:
>Nicely drawn Eric!=C2
>
>Your message asks a lot of questions that I'm
>not qualified to answer.=C2 However, I can answer
>the question about the PIC pins you chose - they
>should work fine.=C2 I'll write the code based on
>the brief description Bob gave in his
>note.=C2 I'm assuming that a LIMIT SENSE of
>greater than 0.5 volts for more than 0.5 seconds
>is the trigger we want.=C2 I'll put those values
>in EEPROM fields on the chip so they are relatively easy to change if we
want.
>
>At some point we'll need someone with an IVO
>prop to actually test this and give us real world feedback.
Yes, brass-boarding is the acid test. You guys
had pushed this cart further down the road than
I thought since I sat down at the keyboard last
night.
Both .pdf and .dwg files of my work product are
at http://tinyurl.com/yby3waw6 for use
as the chefs of this design stew see fit.
I'll be standing by . . .
Bob . . .
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Subject: | Re: IVO Prop current limiter |
At 12:45 PM 7/8/2017, you wrote:
>Sorry - defective iPhones and all that.
>
>Possible simplifications to consider:
>
>- If you=99re using a PIC maybe you could
>dispense with the current limiter. If you sense
>the current the PIC can send the FET high impedance within a few
microseconds.
The motor's current profile is rather trashy.
Without active current limiting, you'll have
motor inrush currents during spin-up.
As I recall the mechanical details of this
product, the prop-pitch mechanism has soft
stops that will compress as the mechanism
approaches limits causing the motor current
to ramp up toward stall current.
The original design goal was to tolerate a
deliberate opening of the prop pitch circuit
breaker . . . which is a rather slow device . . .
on the order of hundreds of milliseconds.
All this electron/silicon herding does is
get us a more predictable, solid state
replacment for the thermal breaker. The
current limiter adds one transistor
and one resistor and offers a predictable
upper bound on stall current.
Bob . . .
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Hi all,
Some buddies asked me to install the wiring in their brand new project.
The engine is a Rotax with short connexions so the fattest wires in the
ship will be AWG 6.
Due to restricted space, they installed their fuseblock on a hinge
within inches from the battery contactor, but the gauge 6 wire from the
contactor to the bus proves very stiff and hard to manage with this
pivoting installation.
I considered using a short length of welder cable, but the insulation is
so thick that it did not help much.
What would be your opinion about downsizing this particular wire to AWG
8 or 10 for more flexibility ?
Thanks in advance,
--
Best regards,
Gilles
http://contrails.free.fr
http://lapierre.skunkworks.free.fr
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what about using a short stub of 8 gauge with a good splice to 6 gauge?
On Jul 9, 2017, at 18:54, GTH <gilles.thesee@free.fr> wrote:
Hi all,
Some buddies asked me to install the wiring in their brand new project.
The engine is a Rotax with short connexions so the fattest wires in the ship will
be AWG 6.
Due to restricted space, they installed their fuseblock on a hinge within inches
from the battery contactor, but the gauge 6 wire from the contactor to the bus
proves very stiff and hard to manage with this pivoting installation.
I considered using a short length of welder cable, but the insulation is so thick
that it did not help much.
What would be your opinion about downsizing this particular wire to AWG 8 or 10
for more flexibility ?
Thanks in advance,
--
Best regards,
Gilles
http://contrails.free.fr
http://lapierre.skunkworks.free.fr
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At 05:54 PM 7/9/2017, you wrote:
>
>Hi all,
>
>Some buddies asked me to install the wiring in their brand new project.
>
>The engine is a Rotax with short connexions so the fattest wires in
>the ship will be AWG 6.
>
>Due to restricted space, they installed their fuseblock on a hinge
>within inches from the battery contactor, but the gauge 6 wire from
>the contactor to the bus proves very stiff and hard to manage with
>this pivoting installation.
>
>I considered using a short length of welder cable, but the
>insulation is so thick that it did not help much.
>
>What would be your opinion about downsizing this particular wire to
>AWG 8 or 10 for more flexibility ?
Wires need to be sized for the expected service.
Fat wires in the starter circuit will, no doubt,
want to be 6AWG. Given that the bus loads on this
aircraft cannot exceed the system loads. The
bus feeder can be downsized. What size alternator
is installed? Bus loads generally don't exceed
alternator output . . . 12AWG would be fine for
up to 30A of engine driven power source.
I would use a fusible link on such smaller bus
feeders . . . a 6" piece of 16AWG under
some firesleeve would be about right for 12AWG
bus feeder.
Bob . . .
Message 10
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Maybe a couple of extra coils in the wire would solve the flexibility
problem.
Raymond Julian
Kettle River, MN
The things we admire in men, kindness and generosity, openness, honesty,
understanding and feeling are the concomitants of failure in our system.
And those traits we detest, sharpness, greed, acquisitiveness, meanness,
egotism and self-interest are the traits of success. And while men
admire the quality of the first they love the produce of the second.
-John Steinbeck, novelist, Nobel laureate (1902-1968)
On 07/09/2017 05:54 PM, GTH wrote:
>
> Hi all,
>
> Some buddies asked me to install the wiring in their brand new project.
>
> The engine is a Rotax with short connexions so the fattest wires in the
> ship will be AWG 6.
>
> Due to restricted space, they installed their fuseblock on a hinge
> within inches from the battery contactor, but the gauge 6 wire from the
> contactor to the bus proves very stiff and hard to manage with this
> pivoting installation.
>
> I considered using a short length of welder cable, but the insulation is
> so thick that it did not help much.
>
> What would be your opinion about downsizing this particular wire to AWG
> 8 or 10 for more flexibility ?
>
> Thanks in advance,
>
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My Rotax 912 powered RV-12, along with 500 others that are flying, all have 12
AWG wires about 4 feet long connecting the Dynamo and battery to the main power
bus. The starter is connected with 8 AWG about 2 feet total length.
--------
Joe Gores
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=470832#470832
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On 7/9/2017 5:54 PM, GTH wrote:
>
> Hi all,
>
> Some buddies asked me to install the wiring in their brand new project.
>
> The engine is a Rotax with short connexions so the fattest wires in
> the ship will be AWG 6.
>
> Due to restricted space, they installed their fuseblock on a hinge
> within inches from the battery contactor, but the gauge 6 wire from
> the contactor to the bus proves very stiff and hard to manage with
> this pivoting installation.
>
> I considered using a short length of welder cable, but the insulation
> is so thick that it did not help much.
>
> What would be your opinion about downsizing this particular wire to
> AWG 8 or 10 for more flexibility ?
>
> Thanks in advance,
>
You didn't mention the actual load, but if the plane is Rotax powered,
I'd guess that it shouldn't be too large.
I did a quick google search for a DC current capacity calculator, &
found this:
http://www.solar-wind.co.uk/cable-sizing-DC-cables.html
If you plug in 30 amps, 1% voltage loss, & 0.2 meters length (~8"), It
says that 14 AWG is adequate. 70 amps asks for 10 AWG. Remember, with
less than a foot of wire, there's very little resistance loss unless the
wire is grossly undersized.
6 AWG sounds like major overkill to me, unless they're trying to run the
starter current through it.
Charlie
---
This email has been checked for viruses by Avast antivirus software.
https://www.avast.com/antivirus
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Subject: | Re: IVO Prop current limiter |
Eric - See Bob's redesign. I was in the process of writing code for
your drawing when Bob sent his note. I now have a version of the
software written (but not tested!) for both versions of the hardware, so
you just need to let me know which one you want to pursue.
Paul
On 7/9/2017 11:06 AM, Robert L. Nuckolls, III wrote:
> At 08:59 AM 7/8/2017, you wrote:
>
>> The software that Bob describes would be pretty simple to write for
>> the PIC12F683 chip, the same chip we used for the wig-wag open source
>> project. I'll volunteer to contribute the software if someone wants
>> to pursue Bob's hardware design using a PIC chip instead of the
>> Arduino as an open source project.
>
> I'm up to my eyeballs in a couple of development
> efforts along with juggling domestic duties . . .
> but if someone wants to brassboard this project,
> I'll volunteer to package it into a readily
> duplicated product.
>
> I've posted a proposed schematic of the controller
> at http://tinyurl.com/ybbtw6dp <http://tinyurl.com/ybbtw6dp>
>
> A minimalist approach to packaging would
> look something like this. The fat power transistor
> would be on the bottom, heat transfer surface down.
> This would facilitate using airframe for heat-sinking
> like our schottky e-bus diode did. The connector
> would be 15 pin. The ECB footprint would be about
> 1.25 x 1.75 inches. The 'kit' would look something
> like this except that the 700-2-7 switch is
> missing.
>
>
> Emacs!
>
>
> Oh yeah, had a gray-matter fart while crafting the
> schematic. The software can get MUCH simpler.
>
> On power up, the initialization CLEARS the LIMIT
> LATCH and removes gate drive from the clamping
> fet.
>
> The analog input is monitored for amplitude greater
> than 0.5 volts; greater than 0.5 seconds whereupon
> the LIMIT LATCH is SET, gate of clamp fet goes
> high and removed drive from the current limit fet.
>
> An excursion below 0.5v will reset the LIMIT
> TIMER.
>
> After limit time out, the condition is sustained
> until next power-down/power-up event.
>
> I need to keep my head down on some more pressing
> tasks for the next 10 days or so. You guys can
> shepherd this along in the mean time.
>
> Bob . . .
>
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Subject: | Re: IVO Prop current limiter |
paulf(at)hughes.net wrote:
> Eric - See Bob's redesign. I was in the process of writing code for your drawing
when Bob sent his note. I now have a version of the software written
(but not tested!) for both versions of the hardware, so you just need to let
me know which one you want to pursue.
>
> Paul
Paul,
I was just composing a post to ask Bob a couple of questions in that vein. Stand
by while I sort that out and we'll press ahead shortly.
One question for you: am I correct in assuming that PIC outputs are push-pull (that
is, when low, they actively pull to ground)?
Thanks,
Eric
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=470837#470837
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Subject: | Re: IVO Prop current limiter |
At 09:06 PM 7/9/2017, you wrote:
>
>
>paulf(at)hughes.net wrote:
> > Eric - See Bob's redesign. I was in the process of writing code
> for your drawing when Bob sent his note. I now have a version
> of the software written (but not tested!) for both versions
> of the hardware, so you just need to let me know which one you want to pursue.
> >
> > Paul
>
>
>Paul,
>
>I was just composing a post to ask Bob a couple of questions in that
>vein. Stand by while I sort that out and we'll press ahead shortly.
>
>One question for you: am I correct in assuming that PIC outputs are
>push-pull (that is, when low, they actively pull to ground)?
>
The general purpose outputs are active pull-up/pull-down.
A bit more robust in the pull down as I recall . . .
Yes the output will pull down to less than 0.6 v with a 8.5mA
source.
Emacs!
Input will pull up to within 0.7 of Vdd with a 3.0mA sink
Emacs!
Bob . . .
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Subject: | Re: IVO Prop current limiter |
Paul,
One more question: with respect to GP3/MCLR, should it be left floating, pulled
up to Vdd, or have an RC power-on-reset circuit?
Eric
Read this topic online here:
http://forums.matronics.com/viewtopic.php?p=470839#470839
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Subject: | Re: IVO Prop current limiter |
Bob,
I have a few questions/comments about your drawing (http://tinyurl.com/ybbtw6dp (http://tinyurl.com/ybbtw6dp)):
A. The big current limit MOSFET is going to be in one of three states:
1. Fully on: The pilot has moved the switch, the PIC is powered on, and LIMIT LATCH
is released, allowing motor drive voltage to pull up the MOSFET's gate through
the 1k resistor. Rds(on) is at minimum value and dissipation is negligible
(less than 1/4W).
2. Fully off: The PIC sees >=0.5V for >0.5 sec on LIMIT SENSE. LIMIT LATCH goes
high, turning on the 2N7000, which pulls the MOSFET's gate to ground. Dissipation
is zero. [0.5V = 7.5A motor current.]
3. Linear region: Motor current has spiked to >9A, causing the sense resistors
and 2N3904 to regulate the MOSFET's gate to hold the 9A level. Dissipation is
high, but LIMIT LATCH will trip in 0.5 sec max, dropping it to zero.
So, it seems to me that unless we worry that the pilot will continue to cycle the
switch in the stalled direction with the limit light illuminated, we don't
need to be too concerned with heat sinking the MOSFET. Your thoughts?
B. You're powering the PIC from the motor drive voltage, but you mentioned in
your reply to Alec Myers that this is likely to be a "trashy" rail. Your new
schematic only uses this rail to power the PIC and pull up the current limit MOSFET's
gate. Could we eliminate the two 1N4001 diodes and the wires linking
them to the switch, and instead bring in a constant supply on a single wire from
the bus side of the switch? Is there some benefit to turning the PIC on and
off with the prop switch?
C. Your current sense resistor is shown rated at 2W. I've calculated 2.4W dissipation
at 6A motor current, rising to 3.75W at 7.5A and 5.4W at 9A. I used
three 0.2R 3W resistors in parallel to get 0.066667 ohms at 9W.
D. The 2N7000 that switches the TRAVEL LIMIT light can tolerate Vds=Vdg=60V.
What is the 24V Zener diode doing?
Cheers,
Eric
Read this topic online here:
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