Question about Jeep compass actuator. flow control valve

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Where is the flow control valve actuator on a jeep compass located

Location of the flow control valve actuator. Is it inside the intake manifold or the outside

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Does it have the 3.6 or 2.4?

Posted on Apr 24, 2014

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1 Answer

P2018 and p2017 are the codes for my 2008 jeep patriot but I'm not sure what the p2018 means, help please.


code p 2017 refers to intake manifold air control actuator position sensor/switch, bank 1 ---circuit high==== causes --wiring short to positive --intake manifold air control actuator position sensor /switch
code p 2018 refers to intake manifold air control actuator position sensor /switch, bank 1--circuit intermittent====causes --wiring---poor connection---intake man. air con. actuator sensor/ switch
almost the same but one is specific for the sensor and the other has options of wiring ,connections etc so before replacing the sensor/switch, I would suggest that the wiring and all connections are checked for corrosion and loose

Jun 27, 2016 | Jeep Cars & Trucks

2 Answers

2008 dodge avenger code p2004


Intake Manifold runner control stuck open - bank one:
- Intake Manifold Runner Binding Or Sticking
- Faulty Manifold flow valve
- Manifold flow valve harness is open or shorted
- Manifold flow valve circuit poor electrical connection

There is a factory service bulletin for this problem for 2007-2008 Dodge Avengers. (JS)

Sep 22, 2015 | Dodge Cars & Trucks

1 Answer

2004 ford f 150 5.4 3V pulled intake fixed vac hose came off replaced imrc & still show intake runner control closed bank 1 Still has no power when I get in it to pass something any ideas?


Is your check engine light on ? Any codes ?

There are three basic types of intake air sub-systems:


  • Intake Manifold Runner Control (IMRC) electric actuated system

  • Intake Manifold Swirl Control (IMSC) vacuum actuated system

  • Intake Manifold Tuning Valve (IMTV)

These subsystems are used to provide increased intake airflow to improve torque, emissions and performance. The overall quantity of air metered to the engine is controlled by the throttle body.

Intake Manifold Runner Control (IMRC) Electric Actuated System
The Intake Manifold Runner Control (IMRC) Electric Actuated system (Figure 107) consists of a remote mounted motorized actuator with an attaching cable for each housing on each bank. Some applications will use one cable for both banks. The cable or linkage attaches to the housing butterfly plate levers. The 2.0L (2V) Focus IMRC uses a motorized actuator mounted directly to a single housing without the use of a cable. Each IMRC housing is an aluminum casting with two intake air passages for each cylinder. One passage is always open and the other is opened and closed with a butterfly valve plate. The housing uses a return spring to hold the butterfly valve plates closed. The motorized actuator houses an internal switch or switches, depending on the application, to provide feedback to the PCM indicating cable and butterfly valve plate position.



Below approximately 3000 rpm, the motorized actuator will not be energized. This will allow the cable to fully extend and the butterfly valve plates to remain closed. Above approximately 3000 rpm, the motorized actuator will be energized. The attaching cable will pull the butterfly valve plates into the open position. Some vehicles will activate the IMRC near 1500 rpm.



WARNING: SUBSTANTIAL OPENING AND CLOSING TORQUE IS APPLIED BY THIS SYSTEM. TO PREVENT INJURY, BE CAREFUL TO KEEP FINGERS AWAY FROM LEVER MECHANISMS WHEN ACTUATED.




  1. The PCM uses the TP sensor and CKP signals to determine activation of the IMRC system. There must be a positive change in voltage from the TP sensor along with the increase in rpm to open the valve plates.




  1. The PCM uses the information from the input signals to control the IMRC motorized actuator based upon rpm and changes in throttle position.




  1. The PCM energizes the actuator to pull the butterfly plates open with the cable(s) or linkage.




  1. The IMRC housing contains butterfly plates to allow increased air flow.

Jun 29, 2015 | Ford Cars & Trucks

1 Answer

How to locate the idle air control valve on a 1987 cherokee jeep


check for a loose vacuum hose , pcv valve faulty, loose cracked vacuum hoses ( transfer case actuators), faulty brake booster, loose intake manifold, carby (if it has one)

Sep 10, 2014 | 1987 Jeep Cherokee

1 Answer

How do you correct for error code on 2003 Lincoln Aviator with code P2071, intake Manifold Tuning (IMT) valve stuck closed Bank 1


This has a double intake manifold with control actuators at the base of the manifold most are vacuum controlled the computer monitors these actuators positions. #1 locate passenger actuator and lever position with engine off put a vacuum hose on it and suck on hose and watch arm lever it should move then place tongue against hose it should hold that position if it does not actuator is bad if it does the the control solenoid is at fault or no engine vacuum to solenoid.

Aug 09, 2014 | 2003 Lincoln Aviator

1 Answer

What does p2004 and p2017 mean?


p2004= intake Manifold runner control stuck in position
p2017 = - Manifold flow valve harness is open or shorted
- Manifold flow valve circuit poor electrical connection
- Faulty Manifold flow valve
- Intake manifold
- Faulty Powertrain Control Module (PCM)

Jul 12, 2014 | 2007 Jeep Compass Limited

1 Answer

What is wrong when the manifold valve isnt closing?


manifold valve. Intake or exhaust. i guess intake.
where are you exactly ,
the 2009 , which engine?
the intake on some engines have many valves.
intake runner.
main throttle is an air valve.
VSV valves , for EVAP system, that too is an intake valve.

why not post symptoms
and if you see a valve acting funny, send a photo or tell
exactly it connection, locations.
or login to alldata.com and just look.

Jun 06, 2014 | 2009 Jeep Compass

1 Answer

What are the symptoms for a defective intake manifold runner control valve?


Does the engine runs rough generally? Anyway you have to erase the code to get the engine management to run properly, because computers that's why! It could be because the faults are still there, the ECU still runs with 'faulty' parameters to compensate blah blah...
MAKE SURE ALL electrical plugs are reconnected.

Apr 28, 2014 | Jeep Compass Cars & Trucks

1 Answer

My air wont blow out of upper vents only dash on my 2000 jeep cherokee


This may be due to a bad actuator motor or vacuum leak, this all depends on what type of system is in this jeep, open the hood and start the engine allow it to get warm and look and listen, you want to look for a vacuum hose thats off or leaking, this hose goes onto a port on the intake and goes to the pass/side firewall where it goes through the wall and inside to controls, listen for a hissing sound.The hiss noise is what a broken line sounds like,if this system is actuator controlled then there will be no vacuum lines, instead it uses about four actuator motors to control the heater system settings, the actuators are located on the heater box, the box is located under the dash area. and sits from driverside to pasengerside, i will see if i can locate a diagram to help you, this is a little to locate the bad actuator as there are so many, but a good way is to locate one by one and watch it as you move each control of the heater system and see if it moves, you will do this to each actuator until you locate the one that doesnt move, that will be the bad one,i think yours is vacuum operated. this diagram shows the box and some vacuum operated valves. good day and hope this info helps.johnjohn2_111.gif

Apr 02, 2011 | Jeep Grand Cherokee Cars & Trucks

2 Answers

Boost(?) problem audi tt


It is probably either the N75 valve(Diverter Valve) or the wastegate actuator. Usually a significant boost leak will set a DTC, still check all hoses and clamps.

A bad wastegate actuator or flap would cause no boost but not necessarily the air-sound.

____________________________________________
Testing N75

Air Bypass Valve: Testing and Inspection
With Generic Scan Tool
Wastegate Bypass Regulator Valve, Checking
Recommended special tools and equipment e.g.:
- VAG1526 multimeter or VAG1715 multimeter
- VAG1594 connector test kit
Test sequence
- Switch ignition off.
- Disconnect connector at solenoid valve for boost pressure regulation.
517f5c6.jpg - Measure resistance between terminals of valve.
Specified value: 25...35 Ohm
If specified value is not obtained:
- Replace Wastegate Bypass Regulator Valve -N75-.

________________________________________________

Testing N249

Exhaust Bypass Valve: Testing and Inspection
With Generic Scan Tool
Recirculating Valve For Turbocharger, Checking
NOTE:
Valve opens between connection to intake manifold and connection to deceleration shut-off valve with no voltage. Connection to vacuum
reservoir is closed.
Test sequence
- Switch ignition off.
- Disconnect connector from Recirculating valve for turbocharger -N249-.

9dfbfb9.jpg - Measure resistance between terminals of valve.
Specified value: 27...30 Ohm
If specified value is not obtained:
- Replace Recirculating valve for turbocharger -N249-.
If specified values are obtained:
- Connect test box to control module wiring harness, connect test box for wiring test.

1a741bd.jpg - Check wire between test box socket 105+2-pin connector terminal 2 for open circuit according to wiring diagram.
Wire resistance: max: 1.5 Ohm
- Also check the wire for short circuit to B+ and Ground (GND).
If no malfunctions are found in wire:
- Check wire between 2-pin connector terminal 1 and the Fuel Pump (FP) Relay -J17- for open circuit according to wiring diagram.
Wire resistance: max: 1.5 Ohm
If no malfunctions are found in wires:
- Replace Engine Control Module (ECM).

____________________________________________


To test the wastegate, locate the wastegate linkage rod and verify that there is no play and that it is closed. You can apply compressed air to the actuator to see if it opens and closes. (not more than 30 psi)

___________________________________________


2bd307e.jpg
Vehicle: Vacuum and Vapor Hose Diagrams
System Diagram
Vacuum Diagram
1 From fuel tank
2 EVAP canister
- with Evaporative Emission (EVAP) Canister Purge Regulator Valve -N80-
3 Check-valve for EVAP canister
- Between EVAP canister and intake manifold before turbocharger Installation position (light/dark side): Arrow points in direction of flow, as
shown
4 Turbocharger
5 Pressure unit for boost pressure regulation
6 Mechanical recirculation valve
7 Brake booster
8 Check-valve
- Between brake booster and intake manifold
- Installation position (light/dark side): Arrow points in direction of flow, as shown
9 Wastegate bypass regulator valve -N75-
10 Mass Air Flow (MAF) sensor -G70-
11 Air cleaner housing
12 Pressure control valve for crankshaft housing ventilation
13 Vacuum reservoir
- Bolted on at cylinder head
14 Charge air cooler
- With charge air pressure sensor -G31-
15 Fuel pressure regulator
16 Throttle valve control module -J338-
17 Intake manifold
- With Intake Air Temperature (IAT) sensor -G42-
18 Crankcase ventilation
19 Check-valve
- Installation position (light/dark side): Arrow points in direction of flow, as shown
20 Recirculating valve for turbocharger -N249-
- Component location Fig. 1
21 Check-valve
- Between EVAP canister and intake manifold
- Installation position (light/dark side): Arrow points in direction of flow, as shown
22 Charge air cooler

Oct 01, 2009 | 2004 Audi TT

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