X-Virus-Scanned: clean according to Sophos on Logan.com Return-Path: Sender: To: lml@lancaironline.net Date: Mon, 24 Dec 2007 23:45:58 -0500 Message-ID: X-Original-Return-Path: Received: from mail05.syd.optusnet.com.au ([211.29.132.186] verified) by logan.com (CommuniGate Pro SMTP 5.2c1) with ESMTPS id 2612354 for lml@lancaironline.net; Mon, 24 Dec 2007 18:59:24 -0500 Received-SPF: pass receiver=logan.com; client-ip=211.29.132.186; envelope-from=fredmoreno@optusnet.com.au Received: from fred ([202.139.5.198]) (authenticated sender fredmoreno) by mail05.syd.optusnet.com.au (8.13.1/8.13.1) with ESMTP id lBONwNJP002784 for ; Tue, 25 Dec 2007 10:58:33 +1100 From: "Fred Moreno" X-Original-To: "Lancair Mail" Subject: Glass Panel Back-up X-Original-Date: Tue, 25 Dec 2007 08:58:22 +0900 X-Original-Message-ID: <009801c84688$e4f99e80$c6058bca@fred> MIME-Version: 1.0 Content-Type: multipart/mixed; boundary="----=_NextPart_000_0099_01C846D4.54E14680" X-Priority: 3 (Normal) X-MSMail-Priority: Normal X-Mailer: Microsoft Outlook, Build 10.0.6822 Thread-Index: AchGiNwKrPIOxncITF21zz6Y5NjbxQ== X-MimeOLE: Produced By Microsoft MimeOLE V6.00.2900.3198 Importance: Normal This is a multi-part message in MIME format. ------=_NextPart_000_0099_01C846D4.54E14680 Content-Type: multipart/alternative; boundary="----=_NextPart_001_009A_01C846D4.54E14680" ------=_NextPart_001_009A_01C846D4.54E14680 Content-Type: text/plain; charset="us-ascii" Content-Transfer-Encoding: quoted-printable Here is another reference point for an acceptable panel and electrical configuration. It is the FAA-approved electrical system used in = Columbia (Cessna 350?). This is certified for IFR and has been tested for = failure modes including lightning hits on the airframe which contains a metal = mesh. =20 Key points:=20 =20 1) Dual alternators and dual batteries on separate busses. 2) Diode fed essential buss with the primary flight display (PFD) on = the essential buss 3) Diode fed avionics buss 4) Manual cross tie switch between busses. 5) Not shown: steam gage altimeter, airspeed indicator, and = artificial horizon, electrically driven spinning mass technology. =20 Note that the use of steam gages reflects Brent's recommendation. I put mine right up next to the Chelton's - two Chelton screens stacked one = atop the other, and to their right, a column of stream gages. =20 =20 I am an engineer. I have analysed failures including elusive computer system failures that took months to track down. I do not trust = computers with my life. Three computers (or five) with voting logic and = exhaustive testing as used in fly by wire airplanes works for me because the system design assumes failure. The quantitative failure analysis shows lower = risk than getting out of bed. But for our homebuilt airplanes, I do not = trust computers with my life. Period.=20 =20 I am not suggesting that the Columbia configuration is the BEST. I am suggesting that more brainpower and failure analysis and experience contributed to this design that we can come up in our group, and so one should take heed. =20 =20 I used this as the basis for my electrical power distribution except = that lacking two 60 amp alternators I had to compromise with a 25 amp = alternator on B Bus which carries less of the load. In the event of a primary alternator failure, it is load shedding time, a check list procedure. Fortunately there is time to do this with deliberation, unlike the = condition of blank screens and no other data. =20 Fred, AKA Captain Tuna, Chicken of the Skies ------=_NextPart_001_009A_01C846D4.54E14680 Content-Type: text/html; charset="us-ascii" Content-Transfer-Encoding: quoted-printable

Here is another reference point for an acceptable = panel and electrical configuration.  It is the FAA-approved electrical system = used in Columbia (Cessna 350?).  = This is certified for IFR and has been tested for failure modes including = lightning hits on the airframe which contains a metal mesh.  =

 

Key points:

 

1)     Dual alternators and dual batteries on separate busses.

2)     Diode fed essential buss with the primary flight display (PFD) on the = essential buss

3)     Diode fed avionics buss

4)     Manual cross tie switch between busses.

5)     Not shown: steam gage altimeter, airspeed indicator, and artificial horizon, electrically driven spinning mass technology.

 

Note that the use of steam gages reflects = Brent’s recommendation.  I put mine right up next to the Chelton’s = – two Chelton screens stacked one atop the other, and to their right, a = column of stream gages. 

 

I am an engineer.  I have analysed failures = including elusive computer system failures that took months to track down.  I = do not trust computers with my life.  Three computers (or five) with = voting logic and exhaustive testing as used in fly by wire airplanes works for me = because the system design assumes failure.  The quantitative failure = analysis shows lower risk than getting out of bed.  But for our homebuilt = airplanes, I do not trust computers with my life.  Period.

 

I am not suggesting that the Columbia configuration is the BEST.  I am = suggesting that more brainpower and failure analysis and experience contributed to = this design that we can come up in our group, and so one should take = heed. 

 

I used this as the basis for my electrical power distribution except that lacking two 60 amp alternators I had to = compromise with a 25 amp alternator on B Bus which carries less of the load.  = In the event of a primary alternator failure, it is load shedding time, a check = list procedure.  Fortunately there is time to do this with deliberation, unlike the = condition of blank screens and no other data.

 

Fred, AKA

Captain Tuna, Chicken of the Skies

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