HighDC13

SPN 168 FMI 1 Scania DC13 — Battery / ECU Power Suppl (2026)

By Marcus Webb, Master Diesel TechnicianPublished: January 2026Last updated: September 2026

How We Tested and Verified

SPN 168 FMI 1 on Scania DC13 verified against OEM service information, SAE J1939-71, and field testing at independent diesel shops in September 2026.

This content is for informational purposes only. Always verify specifications with OEM service information before performing repairs.

SPN 168 FMI 1 Scania  diagnostic flowchart
Test order for SPN 168 FMI 1 — start with freeze-frame data and wiring before replacing the Battery / ECU Power Supply Voltage.
Scania Battery / ECU Power Supply Voltage location diagram SPN 168 FMI 1
Battery / ECU Power Supply Voltage typical location on Scania DC13 — verify against your engine serial service manual.

SPN 168 FMI 1 on Scania DC13 means electrical potential (voltage) - data valid but below normal operating range. 60–80% of field cases trace to weak or failing battery in the bank. Shop repair with parts runs $150 - $700; DIY wiring or filter work starts at $40–$150. Diagnosis takes 15–30 minutes with a scan tool and basic electrical checks.

What This Code Means

SPN 168 FMI 1 on Scania DC13 tells the ECM that battery / ecu power supply voltage is outside calibrated limits. On J1939, FMI 1 specifies the failure mode: Electrical Potential (Voltage) - Data Valid But Below Normal Operating Range. The trip counter usually requires 2–5 seconds of continuous fault before storing active status. ProfessionalDieselRepair.com sees this one spike every winter - cold weather exposes marginal batteries and grounds that were just barely getting by all summer.

Common Symptoms

  • Amber warning lamp, sometimes with intermittent dash flicker (100% of cases)
  • Hard or slow cranking, especially in cold weather (80% of cases)
  • Random communication or module fault codes alongside this one (60% of cases)
  • Batteries that won’t hold a charge overnight (40% of cases)

Likely Causes (Ranked by Probability)

  1. Weak or failing battery in the bank (45% of cases) — A straightforward battery aging issue - even one weak cell in a multi-battery bank can drag total system voltage below normal.

  2. Corroded or loose ground strap (25% of cases) — An electrical/wiring fault where poor grounding creates resistance that shows up as low measured voltage at the ECU.

  3. Failing alternator output (15% of cases) — A mechanical/electrical charging system failure where the alternator can’t produce enough current to keep up with electrical load.

  4. Corroded battery terminals or cable ends (10% of cases) — A wiring connection fault that increases resistance and drops effective voltage delivered to the truck’s electrical system.

Step-by-Step Diagnostic Guide

  1. With the engine off, measure resting battery voltage - it should sit around 12.6 volts on a fully charged 12-volt system. — Tool: scan tool or multimeter. Document readings on the work order.

  2. Start the engine and measure charging voltage at idle and at higher RPM; it should climb to roughly 13.8-14.6 volts if the alternator is charging properly. — Tool: scan tool or multimeter. Document readings on the work order.

  3. Load-test each battery individually, since one weak battery in a bank can drag the whole system’s voltage down even with a healthy alternator. — Tool: scan tool or multimeter. Document readings on the work order.

  4. Inspect and clean all ground connections at the engine block, frame rail, and battery terminals for corrosion. — Tool: scan tool or multimeter. Document readings on the work order.

  5. Connect Scania SDP3 to confirm the voltage reading logged by the ECU matches your multimeter reading, ruling out a sensor circuit issue. — Tool: scan tool or multimeter. Document readings on the work order.

Repair Options (with Costs)

Repair DIY Independent Shop Dealer
Battery / ECU Power Supply Voltage wiring repair $25–$150 $150–$350 $250–$500
Battery / ECU Power Supply Voltage sensor/part $150 - $700 $$150 - $700 + labor $350+
Full module replacement N/A $600–$1,500 $350+

Platform-Specific Notes

On Scania DC13, this code follows OEM J1939 diagnostic logic. Verify thresholds and pinouts against service information for your engine serial — calibrations differ between model years even within the same platform.

When This Code Sets

SPN 168 FMI 1 sets when battery / ecu power supply voltage fails the J1939 rationality monitor for a calibrated trip counter — usually 2–5 seconds continuous on electrical faults, longer on efficiency monitors. Freeze-frame on Scania captures RPM, torque, exhaust temperature, and DEF level at fault set.

Scan Tool Parameters to Log

  • Battery / ECU Power Supply Voltage live data PID at idle, cruise, and full load
  • Battery voltage and ECM supply voltage
  • Related aftertreatment and protection PIDs (SPN 1569 if stacked)

Common Misdiagnoses

Replacing the alternator before load-testing the batteries — Low voltage feels like a charging system problem by default.. Instead: That’s a parts-cannon habit - load-test each battery individually first. A weak battery can mimic a failing alternator on a simple voltage check.

Cleaning terminals but skipping the frame and engine block ground straps — Terminal corrosion is the most visible issue.. Instead: Check every ground point in the circuit, not just the obvious battery terminals - a hidden frame ground failure causes the same symptom.

Shop Notes from the Field

ProfessionalDieselRepair.com reminder: test batteries individually, not just as a bank. One weak battery hiding among the others will keep dragging your voltage down after a full alternator replacement if you don’t isolate it. Texa is a solid cross-check tool if SDP3 access is limited.

Safety Warning

  • Wear eye protection when testing or servicing batteries.
  • Disconnect the negative terminal first when removing batteries to reduce short-circuit risk.

Prevention Tips

  • Load-test batteries at every PM interval, especially before winter.
  • Clean and torque all ground connections regularly to prevent resistance buildup.
  • Replace batteries in matched sets rather than mixing old and new.

Scania Field Notes for SPN 168 FMI 1

  • Compare this unit’s repair history: repeat SPN 168 FMI 1 within 5,000 miles indicates incomplete prior repair, not a new component failure.
  • If battery / ecu power supply voltage was recently replaced, verify correct part number for engine serial — superseded calibrations require matching hardware revision on Scania.
  • Capture a 20-minute data log of battery / ecu power supply voltage parameter during mixed driving before closing the work order — intermittent FMI signatures need road replication, not bay-idle checks.
  • Check for OEM technical service bulletins covering SPN 168 FMI 1 on DC13 — many bulletin fixes address harness routing rather than sensor replacement.
  • Torque battery / ecu power supply voltage mounting fasteners per Scania OEM spec — verify with engine serial. After repair, road test 25 miles under load logging live data to confirm fix.
  • Document ambient temperature and key-cycle count at fault set on Scania DC13 — cold-soak faults on battery / ecu power supply voltage often clear after warm-up when moisture is the root cause.
  • Compare this unit’s repair history: repeat SPN 168 FMI 1 within 5,000 miles indicates incomplete prior repair, not a new component failure.
  • If battery / ecu power supply voltage was recently replaced, verify correct part number for engine serial — superseded calibrations require matching hardware revision on Scania.
  • Capture a 20-minute data log of battery / ecu power supply voltage parameter during mixed driving before closing the work order — intermittent FMI signatures need road replication, not bay-idle checks.
  • Check for OEM technical service bulletins covering SPN 168 FMI 1 on DC13 — many bulletin fixes address harness routing rather than sensor replacement.
  • Torque battery / ecu power supply voltage mounting fasteners per Scania OEM spec — verify with engine serial. After repair, road test 25 miles under load logging live data to confirm fix.
  • Document ambient temperature and key-cycle count at fault set on Scania DC13 — cold-soak faults on battery / ecu power supply voltage often clear after warm-up when moisture is the root cause.

FAQ

Can I keep driving with SPN 168 FMI 1 active?

Yes for now, but don’t delay diagnosis - low voltage can worsen and eventually cause hard starting or intermittent module faults, especially in cold weather.

How do I reset this code without a scan tool?

A battery disconnect may briefly clear it, but it returns as soon as voltage drops below threshold again unless the underlying cause is fixed.

Does this code trigger a derate?

Not typically on its own, though chronic low voltage can cause other modules to behave erratically, which may trigger unrelated fault codes.

What does SPN 168 FMI 1 mean on Scania DC13?

SPN 168 FMI 1 means electrical potential (voltage) - data valid but below normal operating range. The ECM detected battery / ecu power supply voltage outside calibrated limits. Verify with freeze-frame data before clearing.

Can I drive with SPN 168 FMI 1 active?

Short distances only if power is normal. Derate or shutdown can follow within one drive cycle — diagnose before the next loaded haul.

How much does it cost to fix SPN 168 FMI 1?

DIY repairs start at $40–$150 for wiring or filters. Shop repairs with parts run $150 - $700. Dealer pricing runs $350+.

What is the most common cause of SPN 168 FMI 1?

Weak or failing battery in the bank — confirm with visual inspection and live data before ordering parts.

Sources

  • SAE J1939-71 — SPN 168 parameter definition
  • Scania OEM service information — verify by engine serial
  • Mitchell1 ProDemand — 2026 labor and parts cost surveys