Using a baseline setting of 280rwkw on the R34 the max voltages on the MAFs were:
It can be seen from the above that the R35 MAF does not 'read' as high as the Z32 in this size tube so for greater HP figures a larger tube and VQ map would be required. HPX allows for much greater measurement in the same size tubeR35 (5.07V max)
Z32 (4.7V max)
HPX (3.25V max)
Housing sizes (ID = internal diameter, OD = external diameter)
HPX Testing reused the R35 Low Brain housing due to size issues of the large blue hosing fitting in my engine bay. Initial 3" VQ map used with this housing but require some adjustment for idle (mid range also needed some adjusting but ran out of time)R35 housing 74mm ID, 80mm OD
Z32 sensor 71 mm ID, 79 OD
VMC supplied HPX sensor housing was 76mm ID, 81 OD
Previous testing on my vehicles with the VMC tube illustrated idle issues (due to lack of air filter and tube length). The shorter adaptor with filter provided a more stable idle after some minor adjustments to the lower end of the VQ map and I will perform driveability testing next week. Several tuners on here also using HPX have needed to tweak the existing VQ maps (from 0.10.14 release onwards) for their particular configurations but with success
Previously I had tried a blow through setup with 2.5" piping as pictured but due to the sensor insert offset (due to having no raising block on the sensor) this require adjusting the VQ maps heavily to compensate for lack of proper offset. I will source a proper 2.5" pipe and retry the test in blow through in later testing
Previous test dyno graphs
58 GREEN = Z32 run (K=489)
63 PURPLE = R35 GTR run (15% K constant decrease from Z32 MAF)
65 YELLOW = HPX MAF run (adjust K up to 1200)