Jump to content
SAU Community

Recommended Posts

Canister Purge Control Valve;

Recently I noticed that my purge valve has been broken, it seems it has been super glued as an attempt to repair it!

Either from the previous owner or a dodgy mechanic that I may have seen over the past couple of years.

I've tried looking around for one outside of a Nissan Parts dealership with very little success.

I've called countless import wreckers n such and they all seem to have no idea what I want, Retards!

Boost Sensor;

Since I've had the car my engine light has always been on, I was told by the previous owner that is was due to the boost sensor.

Which is located right next to the boost sensor and was confirmed by a mechanic, however after going into Nissan they

we suggesting that it maybe the boost sender located behind the left strut mount as my gauge drops in and out!

I have read a post where they mention that the sensor feed the ECU and the sender feeds the gauge.

But i won't know for sure until i get a diagnostic done to pin point the issue....

Nissan Parts Dealership;

I went into Nissan to try and chase up what I need and they reckon that I need to get JDM parts for my import.

Therefore I'll have to order in my parts from Japan and wait a few weeks for them to arrive!

*Canister Purge Control Valve - Part No. 14930AA00A - $242.23

*Boost Sensor - Part No. 223656P51A - $169.37

*Boost Sender - Part No. 25085AA500 (i think) - $unknown

Attachments;

I've included a couple of pictures illustrating the location of.

Boost Sender = Green Square

Boost Sensor = Red Square

Purge Valve = Yellow Square

Q&A;

Would I need to replace the boost Sensor or Sender?

Do I need to replace with JDM parts?

Where can I get a purge valve?

Can I just bypass the purge valve?

post-83723-0-77322600-1306757796_thumb.jpg

post-83723-0-97581100-1306757804_thumb.jpg

post-83723-0-27626300-1306757813_thumb.jpg

Link to comment
https://www.sau.com.au/forums/topic/366141-purge-valve-boost-sensor/
Share on other sites

Create an account or sign in to comment

You need to be a member in order to leave a comment

Create an account

Sign up for a new account in our community. It's easy!

Register a new account

Sign in

Already have an account? Sign in here.

Sign In Now


  • Similar Content

  • Latest Posts

    • For once a good news  It needed to be adjusted by that one nut and it is ok  At least something was easy But thank you very much for help. But a small issue is now(gearbox) that when the car is stationary you can hear "clinking" from gearbox so some of the bearing is 100% not that happy... It goes away once you push clutch so it is 100% gearbox. Just if you know...what that bearing could be? It sounding like "spun bearing" but it is louder.
    • Yeah, that's fine**. But the numbers you came up with are just wrong. Try it for yourself. Put in any voltage from the possible range and see what result you get. You get nonsense. ** When I say "fine", I mean, it's still shit. The very simple linear formula (slope & intercept) is shit for a sensor with a non-linear response. This is the curve, from your data above. Look at the CURVE! It's only really linear between about 30 and 90 °C. And if you used only that range to define a curve, it would be great. But you would go more and more wrong as you went to higher temps. And that is why the slope & intercept found when you use 50 and 150 as the end points is so bad halfway between those points. The real curve is a long way below the linear curve which just zips straight between the end points, like this one. You could probably use the same slope and a lower intercept, to move that straight line down, and spread the error out. But you would 5-10°C off in a lot of places. You'd need to say what temperature range you really wanted to be most right - say, 100 to 130, and plop the line closest to teh real curve in that region, which would make it quite wrong down at the lower temperatures. Let me just say that HPTuners are not being realistic in only allowing for a simple linear curve. 
    • 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.
×
×
  • Create New...