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From: | "Luis de Arquer (ldearquer AT gmail DOT com) [via geda-user AT delorie DOT com]" <geda-user AT delorie DOT com> |
Date: | Tue, 27 Nov 2018 16:54:38 +0100 |
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Subject: | Re: [geda-user] [off-topic] 24V automotive (truck) design issues |
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Hi Richard, On car, we normally use a TVS with a high enough value so that supressed load dump doesn't affect it, yet the other pulses can be drained through -so 36V to 40V. 33V TVS showed to burn on load dumps. Anyway, let us know what you find out! I am curious to see why it failed :) Luis 2018-11-27 11:59 GMT+01:00, Richard Rasker (rasker AT linetec DOT nl) [via geda-user AT delorie DOT com] <geda-user AT delorie DOT com>: > Hi Luis, > > Op 26-11-18 om 23:06 schreef Luis de Arquer (ldearquer AT gmail DOT com) [via > geda-user AT delorie DOT com]: >> Hi Richard, >> >> There are quite a few spikes that can damage electronics on the >> truck. You can find most of them on ISO 7637 (second part has the >> pulses definition). > > Thanks, I, er 'found' a copy of this, and the worst I see, are > negative-going 1ms-pulses to -600 volts @ 50 ohms for 24V systems. > > Then again, the TVS diode I used (SMAJ33CA) should handle this just fine. > >> The worst I can remember for car is -150V for 2ms >> approx, surely more on trucks. Positive pulses of over 100V happen >> often when parallel inductive loads are disconnected (such as windows, >> etc), but this are normally under 100us. >> >> Load dump is fairly unusual though, since that requires the battery to >> be removed from the truck while alternator is running. Its strength >> depends on whether the truck has load dump supressor or not (cars now >> normally have it, but I don't know trucks...). With load suppresor, >> you may see about 58V for up to 300-400ms. It is currently defined in >> ISO 16750-2 (2012 or later). > > For 24V systems, I see load dump peaks up to 200 volts for 350 ms at > only a few ohms -- this would definitely fry the TVS diode I used and > everything behind it. I guess I'll have to employ either a far more > rugged TVS diode or an overvoltage disconnect circuit to handle this. > > But as you say, this occurrence (battery disconnect with running > alternator) should happen only on rare occasions, so it doesn't explain > two failures within a week. > > AFAICS, all the other pulses should be no real problem for the TVS diode > (I used this simple setup several times with normal 12V cars, and never > had any trouble). > >> This may help: >> - Try to get the boards that failed for analysis. Did the TVS fail? > I'll see tomorrow, when the boards arrive. >> - Revise all input capacitors voltage ratings >> - It can help having a high voltage series diode at the input such as >> BAV21W, followed by a tanky 220uF or higher capacitor: This should get >> rid of most pulses, except load dump. > > Unfortunately, there is no room on the PCB itself for a hefty capacitor > on the input (as it would need to have a working voltage of 200 volts > for load dump handling), but I don't think that's necessary in case of a > disconnect solution. It's a non-essential gadget, and it's no problem if > it cuts out for a fraction of a second on rare occasions. > >> - For load dump, you really need to know if there is a supressor or >> not. The difference is huge. > > I think that I simply will have to take the worst case scenario. These > people have no (haha) truck with conditional reliability; things should > 'just work, period'. > > Anyway, thanks for your elaborate reply! > > Best regards, > > Richard Rasker >
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