Re: Power IC instead of MC33394

"David Brown" <[email protected]>
Newsgroups gmane.comp.hardware.motorola.microcontrollers
Message-ID <015d01c59cc6$f7a4af70$1100a8c0@david1700>
> Is there a IC instead of MC33394 from Freescale?
>

The simple answer is no.  There may be a slightly more complex answer if you
already have a design built using the MC33394 - contact your Freescale
distributer for information.  If you are in the position to need the complex
answer, your distributer should probably already have contacted you.  Sorry
for the cryptic answer here - it's just I don't know how much information
about this is NDA.

By far the most sensible and practical solution is to forget the MC33394
ever existed, and build your own replacement.  The main features  of the
MC33394 that you need to replicate are:

The CAN driver - use a standard 82c250, or similar.

The reset circuit - use a Dallas/Maxim 3-pin reset device on POReset, and
tie HReset and SReset to 5V through a resistor.  The MPC5xx have perfectly
good reset circuitry built-in.

The power supplies and regulators are the main function of the chip, with
one of it's key selling points being the correct power-up and power-down
supply sequencing on 5V and 2.6V.  However, using seperate components is in
fact extremely simple - use a 5V switch-mode supply (for efficiency - or a
linear supply if you want smaller and cheaper and your main supply is not
too high).  Use a low-dropout linear regulator to generate 2.6V from this 5V
supply.  Your 2.6V will then rise correctly with the 5V.  Add a schottky
diode from 2.6V to 5V to ensure that power-down sequencing is correct
regardless of loads and capacitances on the two supply lines.  If you need
3.3V, use the same arrangement as for the 2.6V supply.

We changed over to this arrangement on a design, and it has worked
flawlessly.  Compared to our original MC33394 design, it is cheaper, more
efficient, has a much smaller in-rush current at startup, it's more reliable
(sometimes the old solution had trouble at startup), has better thermal
properties (the heat is more spread out), and avoids the daft arrangement
with high-speed CAN lines mixed up with the power supply.

Hope that helps both you and anyone else on the list.

mvh.,

David




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