International MID 128 PID 111 FMI 4: Meaning, Causes & Fix
Coolant Level Sensor β signal voltage below normal or shorted low
Reviewed by Diesel Mechanic Writers Β· Last updated August 04, 2026
Quick Answer
MID 128 PID 111 FMI 4 = Coolant Level Sensor
Severity: π CHECK SOON Β· System: Engine Coolant Level Sensor Β· β
Can continue with caution
Diagnostic Reference
| Field | Details |
|---|---|
| Code | MID 128 PID 111 FMI 4 |
| Protocol | J1587 MID: 128 PID: 111 |
| Component | Engine Coolant Level Sensor |
| Manufacturer | International |
| Engine Series | A26 |
| Severity | π CHECK SOON |
| SAE Reference | SAE J1587/J1708 β MID 128, PID 111 |
Possible Causes
- Sensor float stuck in low position from sludge
- Sensor connector corroded
- Sensor 5V reference wire shorted to ground
- Coolant residue on sensor probe giving false low reading
Top Causes Ranked by Frequency
- Coolant leak from deteriorated hoses, clamps, or radiator (35% of cases)
- EGR cooler internal failure allowing coolant into intake or exhaust (25%)
- Stuck-closed thermostat causing overheating (15%)
- Failed coolant level sensor giving false low readings (15%)
- Water pump impeller erosion or seal failure (10%)
In-Depth Diagnostic Procedure
Follow these diagnostic steps to identify the root cause of MID 128 PID 111 FMI 4 on your International A26. A J1939-compatible diagnostic scan tool is recommended.
- Check coolant level in both the overflow reservoir and the radiator (when cold) β a significant drop indicates an external or internal leak
- Use an infrared thermometer to verify actual coolant temperature matches the dash gauge and ECM sensor reading β a discrepancy indicates a faulty sensor
- Pressure-test the cooling system at 15β18 PSI and hold for 30 minutes; any pressure drop indicates a leak β check hoses, radiator, EGR cooler, and head gasket
- Inspect coolant for combustion gas contamination using a block tester (chemical test for exhaust gases in coolant) β positive result indicates head gasket or EGR cooler failure
- Check thermostat operation by monitoring coolant temperature rise rate; thermostat should begin opening at rated temperature and fully open within 10Β°F of that point
- Inspect fan clutch engagement β mechanical fan should engage when coolant exceeds 210Β°F or A/C pressure rises; a slipping fan causes overheating under load
Repair & Cost Estimate
| Item | Cost Range |
|---|---|
| Parts | $80 β $600 |
| Labor | 1β3 hours @ ~$150/hr = $150 β $450 |
| Estimated Total | $230 β $1,050 |
Sensor replacement or coolant service. Prices vary by location and dealer.
Frequently Asked Questions β Engine Coolant Level Sensor
How do I know if my EGR cooler is leaking internally?
Symptoms include unexplained coolant loss with no visible external leak, white steam from the exhaust, rising oil level on the dipstick (coolant mixing with oil), and a sweet smell from the exhaust. A block test (combustion leak detector) will confirm exhaust gases in the coolant. EGR cooler failure is common on Cummins ISX15 and Detroit DD15 engines above 400,000 miles.
Can I drive with a low coolant level code if I top off the coolant?
If the coolant level was simply low from normal consumption, topping off may resolve the code. However, if the coolant loss is due to a leak, the level will drop again quickly. Monitor the coolant level daily after topping off. If you lose more than 1 gallon in 1,000 miles, there is an active leak that must be found and repaired before it leads to overheating and engine damage.
What is the correct coolant type for my diesel engine?
Most modern heavy-duty diesel engines use Extended Life Coolant (ELC) meeting ASTM D6210 or CAT EC-1 specifications. Common brands include Fleetguard Compleat, CAT Extended Life, and Shell Rotella ELC. Never mix conventional (green) coolant with ELC β they are incompatible and can form gels that clog the radiator and EGR cooler. Always follow the OEM specification for your engine.
My temperature gauge spikes then drops β is that a thermostat problem?
Yes, this is a classic symptom of a thermostat sticking closed and then snapping open. When the thermostat sticks, coolant stops circulating and temperature rises rapidly; when it finally opens, the temperature drops quickly. This cycling pattern will continue and gets worse over time. Replace the thermostat promptly β a fully stuck-closed thermostat causes rapid overheating and potential head gasket failure.
How often should I replace coolant hoses and the thermostat?
Replace coolant hoses every 4β5 years or 300,000β400,000 miles, whichever comes first, even if they look fine externally β internal deterioration is not visible. Replace the thermostat preventively at 300,000 miles. A preventive thermostat and hose replacement costs $200β$500, while a roadside overheating event from a failed thermostat can cause $5,000β$20,000 in engine damage.
Diagnostic & Repair Procedure
- Step 1: Clean coolant level sensor probe with Scotch-Brite pad
- Step 2: Check for 5V reference at sensor connector with key on
- Step 3: Measure sensor output voltage
- Step 4: Flush cooling system if sludge present on sensor
- Step 5: Replace sensor if float is mechanically stuck
Frequently Asked Questions
Is this a false alarm or a real problem?
CHECK SOON codes are rarely false alarms. The ECM has detected a parameter outside normal operating range. Sensor malfunctions can sometimes trigger false readings, but the majority of CHECK SOON codes indicate a developing issue that will worsen if left unaddressed. Use a diagnostic scan tool to verify sensor readings before replacing expensive parts.
Can I diagnose this without a scan tool?
Basic visual inspection can be performed without a scan tool β check wiring harnesses for chafing, connectors for corrosion, and related components for physical damage. However, to verify the fault, view live sensor data, and confirm the repair, a heavy-duty diagnostic scan tool (or a compatible OBD-II adapter with J1939/J1708 support) is strongly recommended for accurate diagnosis.
How soon should I schedule service?
Schedule service within the next 1β3 operating days. While the vehicle can continue operating normally, delaying repair increases the risk of the fault escalating to CHECK NEXT STOP severity. Additionally, some CHECK SOON conditions are precursors to emissions system faults that will trigger a mandatory derate if not addressed in a timely manner.
Estimated Repair Cost
Typical repair: $100β800 (Parts: $50β500 + Labor: 1β3 hours) Β· Costs vary by make/model and location
Related Fault Codes β A26
SPN 111 FMI 18
π΄ STOP ENGINE
SPN 641 FMI 5
SPN 3050 FMI 9
SPN 4334 FMI 4
Related Codes Across Systems
Codes from the same SPN range, manufacturer, or system that may also be relevant:
SPN 641 FMI 5
SPN 3050 FMI 9
SPN 111 FMI 18
π΄ STOP ENGINE
SPN 110 FMI 15
π΄ STOP ENGINE
SPN 174 FMI 0
MID 128 PID 105 FMI 10
π CHECK SOON
More International A26 Codes β
View all fault codes for the International A26 engine in one place.
Associated Symptoms
References & Further Reading
- SAE J1939-73: Application Layer β Diagnostics. SAE International. Defines SPN N/A / FMI N/A fault code semantics for heavy-duty CAN networks. SAE J1939 Standard
- SAE J1587: Electronic Data Interchange Between Microcomputer Systems in Heavy-Duty Vehicle Applications. SAE International. Defines MID 128 parameter identification protocol. SAE J1587 Standard
- International A26 Service Manual: OEM diagnostic procedures for Engine Coolant Level Sensor faults. Consult the official International service documentation for your specific engine serial number.
- TMC RP 1210: Recommended Practice for Windows-Based Vehicle Diagnostic Interface. Technology & Maintenance Council (TMC) of American Trucking Associations.