I've designed systems where the optocouplers were required to have an unusually 
high insulation resistance. I worked for a company that designed industrial 
water treatment equipment. The pH probes we used act like a battery. The more 
current you draw out of them, the sooner they need to be replaced. If you 
wanted to get at least 6 months operation out of a pH probe, the current draw 
had to be limited to no more than a few picoamperes.

DC-DC converters with a high level of insulation (and lousy efficiencies) were 
used to get power to the pH probe's analog amplifier circuitry and optocouplers 
were used to get the data back to the digital electronics. The high insulation 
values were not for safety; they were just to limit current from the pH probe 
finding a lower impedance leakage path. I remember a case where a mishandled 
board failed because a fingerprint was left on the solder side of the board 
under the optocoupler. It got encapsulated by the conformal coating and the oil 
from the fingerprint provided enough of a current path that the system was 
depleting pH probes about once every two weeks.

Ted Eckert
Compliance Engineer
Microsoft Corporation
[email protected]<mailto:[email protected]>

The opinions expressed are my own and do not necessarily reflect those of my 
employer.

From: Nyffenegger, Dave [mailto:[email protected]]
Sent: Monday, June 29, 2015 12:07 PM
To: [email protected]
Subject: Re: [PSES] Optos for PELV isolation

HI Rich,

The standard also says 5 second interval between discharges.  And the test must 
be run on 20 samples.  We know UL likes to test.  First  edition of the 
standard is 1984, the test has probably been in there since the beginning.

-Dave

From: Richard Nute [mailto:[email protected]]
Sent: Monday, June 29, 2015 1:51 PM
To: Nyffenegger, Dave; 
[email protected]<mailto:[email protected]>
Subject: RE: [PSES] Optos for PELV isolation


Hi Dave:


"subjected to 50 discharges from a 0.0005 microfarad capacitor that has been 
charged to a potential of 20 kV between the short-circuited input and short 
circuited output terminals."

Okay, 500 pF charged to 20 kV then applied to the opto isolation.  The 
input-to-output capacitance is on the order of 1 pF.  That means nearly the 
full 20 kV is applied across the isolation barrier, and exponentially decays by 
the insulation resistance.  One opto specs the insulation resistance at 100 
Gohms minimum!  Time constant is 500e-9 x 100e+9 or 50000 seconds or 833 
minutes or 13 hours!  Repeated 50 times!  50 days to do the test, at 5 days per 
week, 10 weeks, 2-1/2 months!

I must be missing something.  Test does not make much sense.


Best regards,
Rich




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