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Stewy Bryant springs to mind lol

f**kin zombie R32 hahaha

anyone see that late model impreza? slammed, SSR Meshies, p plates, roof racks, shopping trolley cable tied to the roof racks...

f**kin zombie R32 hahaha

anyone see that late model impreza? slammed, SSR Meshies, p plates, roof racks, shopping trolley cable tied to the roof racks...

Pics or you're taking out of your arse.

I wanna see a drift car use all that lock to fit into a tight parrallel parking space.

Or navigate chadstone on boxing day.

89 Prelude with 4 wheel steer will put them all to shame

wtf I just drove past that. Was at bunnings

Yeah P plater ute, dunno how it started but couple of our guys were trying to put it out with fire extinguishers - by pointing them at the flames instead of the base of the fire. Fire truck came and out in 30 seconds lol

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    • I feel I should re-iterate. The above picture is the only option available in the software and the blurb from HP Tuners I quoted earlier is the only way to add data to it and that's the description they offer as to how to figure it out. The only fields available is the blank box after (Input/ ) and the box right before = Output. Those are the only numbers that can be entered.
    • No, your formula is arse backwards. Mine is totally different to yours, and is the one I said was bang on at 50 and 150. I'll put your data into Excel (actually it already is, chart it and fit a linear fit to it, aiming to make it evenly wrong across the whole span. But not now. Other things to do first.
    • God damnit. The only option I actually have in the software is the one that is screenshotted. I am glad that I at least got it right... for those two points. Would it actually change anything if I chose/used 80C and 120C as the two points instead? My brain wants to imagine the formula put into HPtuners would be the same equation, otherwise none of this makes sense to me, unless: 1) The formula you put into VCM Scanner/HPTuners is always linear 2) The two points/input pairs are only arbitrary to choose (as the documentation implies) IF the actual scaling of the sensor is linear. then 3) If the scaling is not linear, the two points you choose matter a great deal, because the formula will draw a line between those two points only.
    • Nah, that is hella wrong. If I do a simple linear between 150°C (0.407v) and 50°C (2.98v) I get the formula Temperature = -38.8651*voltage + 165.8181 It is perfectly correct at 50 and 150, but it is as much as 20° out in the region of 110°C, because the actual data is significantly non-linear there. It is no more than 4° out down at the lowest temperatures, but is is seriously shit almost everywhere. I cannot believe that the instruction is to do a 2 point linear fit. I would say the method I used previously would have to be better.
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