X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Received: from rg4.comporium.net ([208.104.2.24] verified) by logan.com (CommuniGate Pro SMTP 5.1.12) with ESMTPS id 2392633 for flyrotary@lancaironline.net; Wed, 17 Oct 2007 20:13:32 -0400 Received-SPF: neutral receiver=logan.com; client-ip=208.104.2.24; envelope-from=Jewen@comporium.net Received: from 208-104-81-95.lnhe.2wcm.comporium.net (HELO engineer1) ([208.104.81.95]) by rg4.comporium.net (MOS 3.8.4-GA FastPath queued) with SMTP id AEL22340; Wed, 17 Oct 2007 20:12:55 -0400 (EDT) Message-ID: <002c01c8111b$83e066d0$6505a8c0@cooleygroup.local> From: "Joe Ewen" To: "Rotary motors in aircraft" References: Subject: Re: [FlyRotary] Re: EC2 20B Injector Power Circuits Date: Wed, 17 Oct 2007 20:12:04 -0400 MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_0028_01C810F9.FC6AADD0" X-Priority: 3 X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook Express 6.00.2900.3138 X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2900.3138 X-Junkmail-Status: score=10/70, host=rg4.comporium.net X-Junkmail-SD-Raw: score=unknown, refid=str=0001.0A010206.4716A4E9.00B0,ss=1,fgs=0, ip=208.104.81.95, so=2007-03-13 10:31:19, dmn=5.4.3/2007-09-06 This is a multi-part message in MIME format. ------=_NextPart_000_0028_01C810F9.FC6AADD0 Content-Type: multipart/alternative; boundary="----=_NextPart_001_0029_01C810F9.FC6AADD0" ------=_NextPart_001_0029_01C810F9.FC6AADD0 Content-Type: text/plain; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable Hi Tracy, Thanks for the info. You mentioned there are issues greater than the = isolation of power between the primary and secondary injector supplies. = I would imagine some other issues could be generated by the back EMF as = the injector coils collapse. The question is, do the diodes correct the = other issues that you did not mention? On the relay, do you have experience using solid state relays in this = type of application? I ask, because I have seen problems with SSRs in = noisy AC applications. Those were applications using SCR based SSRs. = With the SCR type, noise can cause the SSR to turn off before the supply = wave crosses zero. I do not have experience with the FET type, but have = to wonder if some of the back EMF generated by the coils collapsing = could drop the source/gate voltage on the FET below the turn off = threshold momentarily. If the diodes and or SSR do not fully remedy all the issues, would a = driver board external to the EC2 that splits the injector control into = individual channels be an option. Power FETs might be a good fit, = similar to the FETs built into the EC2 for injector and ignition = control. I would think a P channel would be needed due the sinking = control level from the EC2. The P channel compliment to the IRL530N = that's used in the EC2 is a IRL9530NPBF. Not being a board designer, I = do not know if this would be a sensible approach, but for your = edification I have attached a diagram of a possible circuit. Would be = interested in your thoughts as well as comments on whether I got the = device selection and polarities correct. One element that is missing = from the diagram is probably some form of suppression (I believe you = refer to as snubbers) to handle the noise being generated from the = coils. If this board looks like it would work, would the snubber = modification to the EC2 still be a benefit? (would hate the see FedEx = loose the controller again.) Thanks, Joe ----- Original Message -----=20 From: Tracy Crook To: Rotary motors in aircraft=20 Sent: Monday, October 15, 2007 3:15 PM Subject: [FlyRotary] Re: EC2 20B Injector Power Circuits As Al said, yes, these diodes are necessary. I'm still studying this = situation and determining what the best configuration is for the 20B = version. I have been hampered by a number of problems encountered on my = 20B installation (too many to mention here but I'll talk about a few in = a minute). =20 Here is what is certain so far. There needs to be an isolation diode = in series with EACH of the 6 injectors, not just the two power feeds to = the primary and secondary banks. There are more important reasons than = the power isolation issue that Joe mentioned. In addition to these = diodes, there should be a diode (regular, not schottky) from the = junction of the secondary injector power feeds to ground. I am also = changing the spec on the 20B staging relay to a solid state type. = Attached is the preliminary schematic for this configuration but it is = still under study until I can verify everything on my engine. This is = the Renesis crank sensor version of 20B controller but the same changes = apply to the standard crank sensor as well.=20 One delay I had was due to my oil cooler springing a leak. As you = may recall, I made one out of an AC evaporator core. Thought the core = had failed like Rusty's had but it turned out to be the way I installed = the fittings on the modified core so I was able to fix it. The leak was = hard to see as it was hidden and did not show up anywhere on the cooler = itself. I thought it was the gear drive and tore that down to replace = the rear oil seal (didn't help of course). Then I thought I had another = mysterious engine problem that caused it to run rough at random times so = chased my tail for awhile until I found out that the throttle body was = inhaling the oil spraying from the oil cooler. It went on like this for = quite a while. Just now getting back to checking out the diode and = relay changes I mentioned. BTW, this cooler (and associated duct) is = working incredibly well. I can run the engine at power settings high = enough to maintain level flight (as determined by fuel flow readings) = while static on the ground at 90 degrees F and oil temps stay in the = green (~185 F). Water temps are almost as good (~200 degrees). This = makes me confident enough to not bother putting the spray bar cooling = for initial flight testing (if I ever get there).=20 Also been out of contact with the list for awhile due to Wildblue = satellite Internet problems. Tracy (Back on dial-up, Arghh.......) =20 On 10/14/07, Al Gietzen wrote:=20 Joe; You are right. We discovered this crossfeed issue some time back. = Is applies only to the 20B version as the 13B has separate drivers for = each set. Install Schottky diodes in the circuits for each injector. = Tracy is aware of this, and has installed the diodes in his as well. Al -----Original Message----- From: Rotary motors in aircraft [mailto: = flyrotary@lancaironline.net] On Behalf Of Joe Ewen Sent: Sunday, October 14, 2007 3:20 PM To: Rotary motors in aircraft Subject: [FlyRotary] EC2 20B Injector Power Circuits=20 I have been testing my wiring harness from the EC2. I found a = behavior that I did not expect. The manual drawing (EC2 manual) show a = single injector supply that splits at the Injector primary and secondary = disable switches. On my installation, I have 2 separate feeder = circuits, supply Primary comes from battery 1, and supply Secondary = comes from battery 2. I did this for redundancy. If I had a failure = such as a short to ground in either circuit, its related overload should = trip, but the other circuit should remain active. =20 While testing the injector circuits, I noticed what I would term an = abnormality. With both injector disable switches in the enable = position, I turned on the power for the primary circuit (I have LED = indicators on all circuits that annunciate power present) and the = secondary circuit also showed power present even though the power switch = for the secondary circuit was off. The same is true when the secondary = circuit is engaged and the primary is off. =20 Initially this led me to think I had miss wired something in the = circuit. After checking out the wiring, I found no issues. So I took a = closer look at the wiring diagram in the manual. It turns out the power = was being back feed through the injectors to the opposite circuit. On = the 20B version of the EC2, the injector control lines for each rotors = injectors are junctioned going into the EC2. For example the Rotor 1 = Primary and Secondary control lines are junctioned into a single input = point at the EC2. =20 I can see several situations where this may lead to undesirable = operation. For example, if the Primary circuit had a hard short to = ground, it would take out the primary circuit's overload (CB or Fuse.) = Since the primary and secondary circuits are electrically connected on = the control line, the other circuit would also trip. Another situation = that could occur is a medium to high resistance short. Current would = then flow uncontrolled through the unaffected circuit's injector to the = affected circuit's injector then to the resistance short. This could = keep both injectors on 100%. While this situation is unlikely, it seems = possible.=20 I believe the 13B version uses separate control lines for each = injector, so this in not likely to be an issue on the 13B version.=20 It appears that isolation diodes are needed to prevent these = possible problems. Before making any changes I have to look the circuit = over more closely, as well as a call to Tracy on the next service day. = My question to the group, especially anyone with a 20B, is am I looking = at this wrong?=20 Thanks, Joe -------------------------------------------------------------------------= ----- -- Homepage: http://www.flyrotary.com/ Archive and UnSub: = http://mail.lancaironline.net:81/lists/flyrotary/List.html ------=_NextPart_001_0029_01C810F9.FC6AADD0 Content-Type: text/html; charset="iso-8859-1" Content-Transfer-Encoding: quoted-printable
Hi Tracy,
Thanks for the info.  You = mentioned there are=20 issues greater than the isolation of power between the primary and = secondary=20 injector supplies. I would imagine some other issues could be = generated by=20 the back EMF as the injector coils collapse.  The question is, do = the=20 diodes correct the other issues that you did not mention?
 
On the relay, do you have experience = using solid=20 state relays in this type of application?  I ask, because I have = seen=20 problems with SSRs in noisy AC applications.  Those were = applications using=20 SCR based SSRs.  With the SCR type, noise can cause the SSR to turn = off=20 before the supply wave crosses zero.  I do not have experience with = the FET=20 type, but have to wonder if some of the back EMF generated by the coils=20 collapsing could drop the source/gate voltage on the FET below the turn = off=20 threshold momentarily.
 
If the diodes and or SSR do not fully = remedy all=20 the issues, would a driver board external to the EC2 that splits = the=20 injector control into individual channels be an option.  Power FETs = might=20 be a good fit, similar to the FETs built into the EC2 for injector and = ignition=20 control.  I would think a P channel would be needed due the sinking = control=20 level from the EC2.  The P channel compliment to the IRL530N that's = used in=20 the EC2 is a IRL9530NPBF.  Not being a board designer, I do not = know if=20 this would be a sensible approach, but for your edification I have = attached a=20 diagram of a possible circuit.  Would be interested in your = thoughts as=20 well as comments on whether I got the device selection and polarities=20 correct.  One element that is missing from the diagram is probably = some=20 form of suppression (I believe you refer to as snubbers) to handle = the=20 noise being generated from the coils.  If this board looks like it = would=20 work, would the snubber modification to the EC2 still be a = benefit?  (would=20 hate the see FedEx loose the controller again.)
 
Thanks,
Joe
----- Original Message -----
From:=20 Tracy=20 Crook
Sent: Monday, October 15, 2007 = 3:15=20 PM
Subject: [FlyRotary] Re: EC2 = 20B Injector=20 Power Circuits

 As Al said, yes, these diodes are necessary.  I'm = still=20 studying this situation and determining what the best configuration is = for the=20 20B version.  I have been hampered by a number of problems = encountered on=20 my 20B installation (too many to mention here but I'll talk about a = few in a=20 minute). 
 
Here is what is certain so far.   There needs to be an=20 isolation diode in series with EACH of the 6 injectors, not just the = two power=20 feeds to the primary and secondary banks.  There are more = important=20 reasons than the power isolation issue that Joe mentioned.   = In=20 addition to these diodes, there should be a diode (regular, not = schottky) from=20 the junction of the secondary injector power feeds to ground.  I = am also=20 changing the spec on the 20B staging relay to a solid state = type. =20 Attached is the preliminary schematic for this configuration but it is = still=20 under study until I can verify everything on my engine.  This is = the=20 Renesis crank sensor version of 20B controller but the same = changes apply=20 to the standard crank sensor as well.
 
One delay I had was due to my oil cooler springing a = leak.   As=20 you may recall, I made one out of an AC evaporator core. =20 Thought the core had failed like Rusty's had but it turned = out to be=20 the way I installed the fittings on the modified core so I was able to = fix=20 it.  The leak was hard to see as it was hidden and did not show = up=20 anywhere on the cooler itself.  I thought it was the gear drive = and tore=20 that down to replace the rear oil seal (didn't help of course).  = Then I=20 thought I had another mysterious engine problem that caused it to run = rough at=20 random times so chased my tail for awhile until I found out that the = throttle=20 body was inhaling the oil spraying from the oil cooler.  It went = on like=20 this for quite a while.  Just now getting back to checking out = the diode=20 and relay changes I mentioned.   BTW, this cooler (and = associated=20 duct) is working incredibly well.  I can run the engine at  = power=20 settings high enough to maintain level flight (as determined by fuel = flow=20 readings) while static on the ground at 90 degrees F and oil = temps=20 stay in the green (~185 F).  Water temps are almost as good (~200 = degrees).  This makes me confident enough to not bother putting = the spray=20 bar cooling for initial flight testing (if I ever get there).
 
Also been out of contact with the list for awhile due to Wildblue = satellite Internet problems.
 
Tracy (Back on dial-up,  Arghh.......)

 
On 10/14/07, Al=20 Gietzen <ALVentures@cox.net>=20 wrote:=20

Joe;

 

You are = right.  We discovered this crossfeed issue some time back. =  Is=20 applies only to the 20B version as the 13B has separate drivers for = each=20 set.  Install Schottky diodes in the circuits for each = injector. =20 Tracy is = aware of=20 this, and has installed the diodes in his as = well.

 

Al

 

-----Original=20 Message-----
From: Rotary=20 motors in aircraft [mailto: flyrotary@lancaironline.net] On Behalf Of Joe = Ewen
Sent: Sunday, October 14, = 2007 3:20=20 PM
To: Rotary = motors in=20 aircraft
Subject: = [FlyRotary] EC2 20B Injector Power Circuits

 

I have been testing my = wiring=20 harness from the EC2.  I found a behavior that I did not = expect. =20 The manual drawing (EC2 manual) show a single injector supply that = splits at=20 the Injector primary and secondary disable switches.  On my=20 installation, I have 2 separate feeder circuits, supply Primary = comes from=20 battery 1, and supply Secondary comes from battery 2.  I = did this=20 for redundancy.  If I had a failure such as a short to ground = in either=20 circuit, its related overload should trip, but the other circuit = should=20 remain active. 

 

While testing the = injector=20 circuits, I noticed what I would term an abnormality.  With = both=20 injector disable switches in the enable position, I turned on the = power for=20 the primary circuit (I have LED indicators on all circuits that = annunciate=20 power present) and the secondary circuit also showed power present = even=20 though the power switch for the secondary circuit was off.  The = same is=20 true when the secondary circuit is engaged and the primary is = off. =20

 

Initially this led me = to think I=20 had miss wired something in the circuit.  After checking out = the=20 wiring, I found no issues.  So I took a closer look at the = wiring=20 diagram in the manual.  It turns out the power was being back = feed=20 through the injectors to the opposite circuit.  On the 20B = version of=20 the EC2, the injector control lines for each rotors injectors are = junctioned=20 going into the EC2.  For example the Rotor 1 Primary and = Secondary=20 control lines are junctioned into a single input point at the = EC2. =20

 

I can see several = situations=20 where this may lead to undesirable operation.  For example, if = the=20 Primary circuit had a hard short to ground, it would take out the = primary=20 circuit's overload (CB or Fuse.)  Since the primary and = secondary=20 circuits are electrically connected on the control line, the other = circuit=20 would also trip.  Another situation that could occur is a = medium to=20 high resistance short.  Current would then flow uncontrolled = through=20 the unaffected circuit's injector to the affected circuit's injector = then to=20 the resistance short.  This could keep both injectors on = 100%. =20 While this situation is unlikely, it seems possible.=20

 

I believe the 13B = version=20 uses separate control lines for each injector, so this in not likely = to be=20 an issue on the 13B version.

 

It appears that = isolation diodes=20 are needed to prevent these possible problems.  Before making = any=20 changes I have to look the circuit over more closely, as well as a = call to=20 Tracy on the next service day.  My question to the group, = especially=20 anyone with a 20B, is am I looking at this wrong? =

 

Thanks,

Joe

<= /DIV>


--
Homepage:  http://www.flyrotary.com/
Archive and=20 UnSub:  =20 = http://mail.lancaironline.net:81/lists/flyrotary/List.html
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