On Feb 8, 9:10 pm, will <[email protected]> wrote:
> This is so confusing! My DMM measures literally 10mV across its
> internal 10megohm shunt from (off) anode to ground, which means that
> the anode is truly OFF... My DMM reports infinite resistance from
> cathode to ground when it's set to off... Everything seems to be
> working perfectly!
>
> As a possibly related side note, one of the tubes is slightly brighter
> than the other, even though their sustaining voltages are within a
> quarter of a volt of each other and their anode resistors are within
> 500 ohms. Could this mean anything?

http://sites.google.com/site/willyager/nixie-clock

Not to ask a dumb question, but are the emitters of your cathode
transistors grounded ? The schematic omits showing that connection.
Since the board is hand wired, you probably have grounded them,
indifferent to the schematic omission. If you did leave them
unconnected, the problem would be worse.

I'm still thinking its one of the two issues already mentioned: (1)
Timing and/or (2) leakage.

The 'midpull' resistors, mentioned, usually can address the leakage
problem. I think they showed only connections to the cathodes, but the
anodes should also have a resistor tied to them (100K-470K) that's
connected to a middle voltage (80V-100V).

My third nixie clock uses 4 IN-14s, is multiplexed (1 of 4), by a AVR
mega8 uC:

http://snipurl.com/10zg1u

The cathode driver is a pair of SN75468 HV darlington pairs. Part of
one chip is used as part of the anode drive. The coupling caps are
needed since the SN75468 can only handle 100V, but the MPSA92s are all
the way up at ~200V. Cap coupling was (and is) and old technique to do
level shifting. It has midpulls on both the cathode and anode side. No
ghosting at all. Been running since 2004.

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