International SPN 3226 FMI 0: SCR Outlet NOx Sensor High
SPN 3226 FMI 0 (FMI 0) — Aftertreatment SCR Outlet NOx Sensor - Data Valid But High
Quick Answer
SPN 3226 FMI 0 means International downstream NOx is higher than expected. Verify DEF quality and dosing before blaming the SCR catalyst or outlet sensor.
Overview: International SPN 3226 FMI 0
The downstream NOx sensor confirms SCR conversion efficiency by measuring NOx after the catalyst. When outlet NOx stays high, International sets SPN 3226 FMI 0 and inducement may follow.
Repair Snapshot
Time
2 - 5 Hours
Difficulty
Advanced
Parts Cost
$400 - $4,500
Dealer Labor
$700+
Tools Required
- ServiceMaxx
- Noregon JPRO
- Multimeter
What SPN 3226 FMI 0 Means
SPN 3226 FMI 0 on International means the downstream SCR NOx sensor reads higher than expected, indicating inadequate NOx reduction or a failed sensor. Verify SCR efficiency with live data, check DEF dosing, and inspect the outlet NOx probe before replacing the catalyst.
Symptoms Drivers Notice
- SCR efficiency below 70% in live data
- Amber or red MIL with emissions warning
- Downstream NOx near upstream values during steady cruise
- SCR inducement timer active or counting down
- Visible DEF crystallization at doser injector
Most Likely Root Causes
Inadequate DEF dosing or contaminated DEF
CommonLow DEF quality or weak dosing leaves NOx unconverted at the SCR outlet.
Failed downstream NOx sensor
CommonSensor drift high makes a functioning SCR appear failed to the ECM.
Degraded SCR catalyst
OccasionalThermal damage or poisoning reduces conversion even with good DEF delivery.
Common Misdiagnoses (Don't Waste Parts)
Replacing SCR catalyst without verifying DEF and dosing
Why it happens: High outlet NOx is assumed to mean dead brick.
Do this instead: Parts-cannon warning — confirm DEF at 32.5% and dosing pressure at 130–145 PSI before catalyst work.
Replacing upstream sensor when downstream is at fault
Why it happens: NOx sensors replaced as a set.
Do this instead: Compare each sensor reading independently against expected values at steady RPM.
Master Tech Commentary
Mechanic's Notes
High downstream NOx on International is either bad DEF/dosing or a failed outlet sensor — not always a dead catalyst. Log NOx during a forced regen with good DEF before authorizing SCR replacement.
Step-by-Step Diagnostic Procedure
- Step 1: Compare upstream vs downstream NOx in ServiceMaxx at 1,500 RPM — downstream should be 70–90% lower than upstream.
- Step 2: Test DEF concentration with refractometer — must read 32.5% urea for proper SCR conversion.
- Step 3: Verify DEF dosing pressure at 130–145 PSI during active dosing commands.
- Step 4: Inspect outlet NOx sensor for DEF crystal buildup on tip — clean or replace if contaminated.
- Step 5: Check for exhaust leaks between SCR outlet and downstream NOx sensor boss.
Professional service / OEM-level scan tools are recommended before clearing this fault for good.
Live Data & Freeze-Frame Tips
Log upstream NOx, downstream NOx, DEF flow rate, and SCR temp in ServiceMaxx. Efficiency = (up - down) / up × 100. Below 70% triggers efficiency faults.
Safety Warnings
- Outlet NOx sensor is on hot exhaust — cool below 200°F before service.
- DEF is corrosive — protect wiring during sensor R&R.
When to Limp In vs Tow
Tow if active inducement derate limits speed below safe highway operation.
Prevention Tips for Fleets & Owner-Operators
- Maintain DEF quality with certified fluid only.
- Service DEF filters on schedule.
- Fix coolant leaks before coolant poisons the SCR brick.
Related Fault Codes
Upstream NOx sensor — needed for efficiency calculation.
SCR NOx efficiency low stacks with outlet sensor faults.
Frequently Asked Questions
Does high downstream NOx mean bad SCR?
Not always — bad DEF, weak dosing, or a failed sensor can cause the same reading.
What is normal downstream NOx?
Typically 70–90% lower than upstream during steady cruise at operating temperature.
Can I clean a NOx sensor?
Some OEM procedures allow heating cycles — contaminated tips usually require replacement.
How do I calculate SCR efficiency?
(Upstream NOx - Downstream NOx) / Upstream NOx × 100 at steady state.
More International codes on this system
- International SPN 3216 FMI 0 — SCR Intake NOx Sensor
- International SPN 4364 FMI 18 — SCR NOx Efficiency
- International SPN 3364 FMI 9 — DEF Quality Sensor
- International SPN 4094 FMI 16 — DPF Soot Load
- International SPN 4363 FMI 3 — Aftertreatment #1 SCR Catalyst Outlet Gas Temperature Sensor
- International SPN 4364 FMI 15 — SCR NOx Conversion Efficiency Monitor
- International SPN 4094 FMI 3 — DPF Soot Load Percent Sensor
- International SPN 4358 FMI 14 — SCR Catalyst Exhaust Differential Pressure
Guides that go deeper
- Inlet vs Outlet NOx Sensors: Which One Fails First and Why
Learn why outlet NOx sensors fail more often than inlet sensors, how to test both with live data, and when replacement actually fixes SCR faults.
- How to Tell a Bad NOx Sensor From a Real SCR Efficiency Problem
Use live NOx ppm, DEF pressure, and SCR temps to separate a failed NOx sensor from a real SCR efficiency fault before you buy parts.
- SPN 4364 SCR Efficiency Low: Fix Order That Saves Money
A money-saving fix order for SPN 4364 SCR efficiency low—DEF quality, dosing, NOx sensor trust, then catalyst—so you stop buying the brick first.