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Last Modified: 11-29-2007 |
1.6 C |
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Service Category: Engine/Hybrid System |
Section: Engine Control |
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Model Year: 2008 |
Model: Sequoia |
Doc ID: RM0000013HE00IX |
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Title: 3UR-FE ENGINE CONTROL: SFI SYSTEM: DESCRIPTION (2008 Sequoia) |
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DTC
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P1613
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Secondary Air Injection Driver Malfunction
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DTC
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P1614
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Secondary Air Injection System Driver Bank 2
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DESCRIPTION
Refer to DTC P0412
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DTC No.
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DTC Detection Condition
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Trouble Area
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P1613
P1614
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Either of following conditions (1) or (2) met:
(1) All of following conditions met (1 trip detection logic):
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Either of air pump or air switching valve not operating
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Diagnostic signal from Air Injection Control Driver (AID) 80%
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Battery voltage 8 V or more
(2) Both of following conditions met (1 trip detection logic):
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Battery voltage 8 V or more
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Diagnostic signal from AID abnormal (duty signal other than 0, 20, 40, 80 and 100%)
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AID
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Open in AID ground circuit
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P1613
P1614
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All of following conditions met (1 trip detection logic):
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Short in diagnostic information signal circuit (AID - ECM)
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Open or short in air pump and air switching valve command signal circuit (AID - ECM)
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Open in AID ground circuit
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AID
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ECM
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P1613
P1614
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Both of following conditions met (1 trip detection logic):
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Open or short in AID +B circuit
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Open in diagnostic information signal circuit (AID - ECM)
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AID
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ECM
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MONITOR DESCRIPTION
For a short time after cold engine starts, the ECM transmits command signals to the Air Injection Control Driver (AID) to drive the air pump and the Air Switching Valve (ASV). The AID detects open and short circuits according to the voltages at the AID terminals to the air pump and ASV, and the circuit voltage of the AID power source, and transmits diagnostic information as a signal to the ECM.
If the Secondary Air Injection (AIR) system circuit or the AID itself malfunctions, the AID sends a malfunction signal (duty signal) as diagnostic information to the ECM (when the system is normal, a system normal signal is sent). The ECM stores the DTC based on the diagnostic information from the AID.
EXAMPLE:
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The duty ratio of the diagnostic signal from the AID is 0 or 100% (remains at 0 V or the same as battery voltage).
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The duty ratio of the diagnostic signal from the AID shows an impossible ratio (other than 0, 20, 40, 80 and 100%).
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The AID outputs the normal signal (normal duty signal: 80%) while the system is not operating.
MONITOR STRATEGY
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Related DTCs
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P1613: Secondary air injection system air injection control driver circuit range check
P1614: Secondary air injection system air injection control driver circuit range check
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Required Sensors/Components (Main)
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Air injection control driver
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Required Sensors/Components (Related)
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Air switching valve
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Frequency of Operation
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Once per drive cycle
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Duration
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3 seconds
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MIL Operation
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Immediate
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Sequence of Operation
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None
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TYPICAL ENABLING CONDITIONS
Case 1 and 4
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Monitor runs whenever following DTCs not present
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None
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Battery voltage
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8 V or more
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Ignition switch
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ON
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Starter
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OFF
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Case 2
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Monitor runs whenever following DTCs not present
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None
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Either a or b met:
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-
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a. Air pump
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Not operating
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b. Air switching valve
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Not operating
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Battery voltage
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8 V or more
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Ignition switch
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ON
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Starter
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OFF
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Case 3
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Monitor runs whenever following DTCs not present
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None
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Following conditions (a) and (b) met
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-
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a. Air pump
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Operating
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b. Air switching valve
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Operating
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Battery voltage
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8 V or more
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Ignition switch
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ON
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Starter
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OFF
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TYPICAL MALFUNCTION THRESHOLDS
Case 1
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One of following conditions met:
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A, B, C or D
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A. Diagnostic signal duty ratio from air injection control driver
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1% or more, and 10% or less
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B. Diagnostic signal duty ratio from air injection control driver
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30%
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C. Diagnostic signal duty ratio from air injection control driver
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49%
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D. Diagnostic signal duty ratio from air injection control driver
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91% or more, and 99% or less
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Case 2
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Diagnostic signal duty ratio from air injection control driver
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70% or more, and 90% or less
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Case 3
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Diagnostic signal duty ratio from air injection control driver
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0%
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Case 4
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Diagnostic signal duty ratio from air injection control driver
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100%
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COMPONENT OPERATING RANGE
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Diagnostic signal duty ratio from air injection control driver
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70% or more, and 90% or less when secondary air injection system operating.
0% when secondary air injection system not operating.
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WIRING DIAGRAM
Refer to DTC P0412
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INSPECTION PROCEDURE
HINT:
Diagnostic information output by the AID can be confirmed by connecting an oscilloscope to the diagnostic information terminal of the AID. Reading the waveform while performing the AIR system intrusive operation provided in the System Check function, allows the possible trouble areas to be narrowed down.
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AID Diagnostic Signal Waveform
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ECM
Command
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DTC
(ECM Output)
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Suspected Trouble Area
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100% Duty Ratio
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Any Secondary Air Injection (AIR) System operation
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P1613
P1614
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Open in diagnostic signal circuit
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Air Injection Control Driver (AID)
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Open in AID+B circuit
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Short between +B and diagnostic signal circuits
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0% Duty Ratio
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AIR System: ON (Air pump ON, ASV ON)
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P1613
P1614
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Open or short in air pump or Air Switching Valve (ASV) command signal circuit (ECM-AID)
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Short between diagnostic signal circuit and body ground
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AID
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ECM
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AIR System: OFF (Air pump OFF, ASV OFF)
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Normal
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20% Duty Ratio
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Air Pump: ON
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P0418
P0419
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Short between air pump drive circuit and body ground
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Harness and connector (AID-Pump)
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Air pump
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AID
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ECM
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Air Pump: OFF
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P0418
P0419
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Open in air pump drive circuit (AID-Pump)
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Harness and connector (AID-Pump)
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Air pump
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AID
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ECM
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40% Duty Ratio
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ASV: ON
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P0412
P0415
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Short between ASV drive circuit and body ground
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Harness and connector (AID-ASV)
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ASV
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AID
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ECM
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ASV: OFF
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P0412
P0415
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Open in ASV drive circuit (AID-ASV)
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Harness and connector (AID-ASV)
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AID
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ASV
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ECM
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80% Duty Ratio
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AIR System: OFF (Air pump OFF, ASV OFF)
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P1613
P1614
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AIR System: ON (Air pump ON, ASV ON)
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Normal
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Other than above
(other than 0, 20, 40, 80 and 100% duty)
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-
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P1613
P1614
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AID
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Open in AID ground circuit
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HINT:
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By using the Techstream to perform the Air Injection Check operation in the System Check, the air-fuel ratio and the pressure in the secondary air injection system passage can be checked while the secondary air injection system is operating. This helps technicians to troubleshoot the system when it malfunctions.
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Read freeze frame data using the Techstream. Freeze frame data records the engine condition when malfunctions are detected. When troubleshooting, freeze frame data can help determine if the vehicle was moving or stationary, if the engine was warmed up or not, if the air-fuel ratio was lean or rich, and other data from the time the malfunction occurred.
PROCEDURE
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1.
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CHECK ANY OTHER DTCS OUTPUT (IN ADDITION TO DTC P1613 OR P1614)
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(a) Connect the Techstream to the DLC3.
(b) Turn the ignition switch to ON.
(c) Turn the Techstream on.
(d) Enter the following menus: Powertrain / Engine and ECT / Trouble Codes.
(e) Read DTCs.
Result
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Result
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Proceed to
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P1613 and/or P1614 are output
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A
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P1613 and/or P1614 and other DTCs are output
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B
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If any DTCs other than P1613 and P1614 are output, troubleshoot those DTCs first.
| A |
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2.
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CHECK AIR INJECTION CONTROL DRIVER (POWER SOURCE CIRCUIT)
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(a) Disconnect the AID connector.
(b) Turn the ignition switch to ON.
(c) Measure the voltage according to the value(s) in the table below.
Standard Voltage:
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Tester Connection
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Switch Condition
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Specified Condition
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D32-5 (+B) - Body ground
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Ignition switch ON
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11 to 14 V (near battery voltage)
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D34-5 (+B2) - Body ground
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Ignition switch ON
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11 to 14 V (near battery voltage)
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| OK |
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3.
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CHECK HARNESS AND CONNECTOR (AID - ECM, BODY GROUND)
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(a) Disconnect the ECM connector.
(b) Disconnect the AID connector.
(c) Measure the resistance according to the value(s) in the table below.
Standard Resistance:
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Tester Connection
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Condition
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Specified Condition
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D56-54 (AIRP) - D32-4 (SIP)
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Always
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Below 1 Ω
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D56-28 (AIRV) - D32-3 (SIV)
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Always
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Below 1 Ω
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D56-53 (ARP2) - D34-4 (SIP2)
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Always
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Below 1 Ω
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A27-43 (ARV2) - D34-3 (SIV2)
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Always
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Below 1 Ω
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D56-30 (AIDI) - D32-2 (DI)
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Always
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Below 1 Ω
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D56-29 (AID2) - D34-2 (DI2)
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Always
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Below 1 Ω
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D32-1 (E) - Body ground
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Always
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Below 1 Ω
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D34-1 (E2) - Body ground
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Always
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Below 1 Ω
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D56-54 (AIRP) or D32-4 (SIP) - Body ground
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Always
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10 kΩ or higher
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D56-28 (AIRV) or D32-3 (SIV) - Body ground
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Always
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10 kΩ or higher
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D56-53 (ARP2) or D34-4 (SIP2) - Body ground
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Always
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10 kΩ or higher
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A27-43 (ARV2) or D34-3 (SIV2) - Body ground
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Always
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10 kΩ or higher
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D56-30 (AIDI) or D32-2 (DI) - Body ground
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Always
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10 kΩ or higher
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D56-29 (AID2) or D34-2 (DI2) - Body ground
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Always
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10 kΩ or higher
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| OK |
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4.
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INSPECT AIR INJECTION CONTROL DRIVER (DI TERMINAL VOLTAGE)
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(a) Disconnect the AID connector.
(b) Turn the ignition switch to ON.
(c) Measure the voltage according to the value(s) in the table below.
Standard Voltage:
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Tester Connection
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Switch Condition
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Specified Condition
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D32-2 (DI) - D32-1 (E)
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Ignition switch ON
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11 to 14 V (near battery voltage)
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D34-2 (DI2) - D34-1 (E2)
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Ignition switch ON
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11 to 14 V (near battery voltage)
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| OK |
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5.
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REPLACE AIR INJECTION CONTROL DRIVER
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(a) Replace the air injection control driver
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| NEXT |
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6.
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CHECK WHETHER DTC OUTPUT RECURS
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(a) Start the engine and warm it up.
(b) Turn the ignition switch off.
(c) Connect the Techstream to the DLC3.
(d) Turn the ignition switch to ON.
(e) Turn the Techstream on.
(f) Clear DTCs
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(g) Enter the following menus: Powertrain / Engine and ECT / Utility / Air injection check / Automatic Mode.
(h) Start the engine after the Techstream initialization is finished.
(i) Perform the System Check operation by pressing ENTER (Next).
(j) After operating the AIR system, perform the following to confirm the AIR system pending codes: Press the Exit button.
(k) Enter the following menus: Powertrain / Engine and ECT / Trouble Codes / Pending.
(l) Read DTCs.
Result
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Result
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Proceed to
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No DTC is output
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A
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Other DTCs are output
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B
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(m) Turn the ignition switch off.
NOTICE:
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When performing the Air Injection Check operation after the battery cable has been reconnected, wait for 7 minutes with the ignition switch turned to ON or the engine running.
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Turn the ignition switch off when the Air Injection Check operation finishes.
| A |
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