Master cylinder arrived today - far too busy with the suspension swap to think about fitting it, though.
But i have done some measuring on the bench.....
...The new cylinder has a maximum piston travel of 28mm, and I'm basing my calculations on the OE cylinder having the same travel (as the ports are in the same places!)
I havent stripped it down (and I dont intend to!) - but I'm assuming that the design is such that there are in effect, 2 pistons within the cylinder, one pushing fluid through the 2 front ports, and one pushing through the rear 2 ports, as that is the only way to achieve a 'proper' split braking system.
Therefore, in effect, each mm of travel will push twice the fluid into the system as a single line brake system, split FOS & RNS / FNS & ROS, thereby we can sort of disregard the rear brakes as they are constant, whatever front callipers get fitted. (unless they are upgraded to the hi-specs as well!).
If I make an assumption that each brake pad needs to travel 1mm to contact the disc with enough force to apply maximum braking effect.
On the standard OE rear callipers, piston diameter is 35mm, so to move each pad by 1mm, the single piston needs to travel 2mm, and this needs to be doubled, as there are 2 rear callipers - this will require 3848mm3 of fluid.
At the front, piston diameter is 52mm, so to get the same movement will need 8494mm3 of fluid - a total of 12342mm3
Hi-Spec calipers have 4 pistons each - 38.6mm diameter, so with those fitted you need 9362mm3 - a total of 13210mm3 needed.
Wilwood use 2 different sizes of piston, depending on the caliper - 1.5" & 1.38"....
The bigger ones will need a total of 16290mm3
The smaller ones will need a total of 11589mm3
Now, onto the master cylinders.....
OE ones (22.2mm bore) will displace a MAXIMUM of 21676mm3 (if full 28mm of travel is used)
the replacement (20.6mm bore) will displce a maximum of 18664mm3 at full travel.
Basically, this means that any of the recognised brake upgrades COULD be okay, but assumes that the pad to disc travel isn't too much more than my guestimate of 1mm, and also that the brake pedal pivot point will allow the master cylinder to make full travel before the pedal hits the floor.
For instance, lets assume that you will only get 25mm travel before hitting the floor, all of a sudden, if you have the Wilwoods with bigger pistons, then it's getting a bit marginal (16664mm3 displacement) - so it only needs for the rear brakes to not be adjusted correctly before you potentially end up with no brakes
When I get a chance, I'll try and measure the brake pivot points and see how much 'spare' movement of the pedal is available, and equate it to master cylinder travel - it may give us a better idea of future possibilites/problems.