SWAP BLUEPRINT

LQ4 (6.0 truck) Swap into S13

A planning-first S13 × LQ4 (6.0 truck) guide built around packaging dependencies, support systems and a verifiable first-start sequence.

S13LQ4 (6.0 truck)Measure before fabrication

Complexity snapshot

Fabrication
High (common). Packaging work and oil pan/drivetrain integration are frequent dependencies.
Relative planning guidance, not a labor quote.
Wiring
MED
ECU and donor electronics can change this.
Cooling
MED
Packaging and intended use matter.
Cost signal
$$
Parts availability and fabrication dominate.

Why this combination needs a plan

The 6.0-liter LQ4 is an iron-block truck-family LS donor. Truck accessories, intake and oil pan often differ from car-based swap layouts, and added engine mass should be considered when choosing springs, front-end setup and service priorities.

Oil pan and header/steering clearance are early constraints; torque capacity downstream matters.

Truck vs car donor accessories/intake/pan can materially change fitment.

Swap requirements

Engine mounting
Plan before final assembly
Common: LQ4 6.0-family swap mounts. Oil pan clearance and engine setback/height are key dependencies.
Transmission mounting
Plan before final assembly
Common: swap trans mount/crossmember (trans choice varies).
Oil pan / crossmember / steering
Plan before final assembly
Oil pan selection is critical for crossmember/steering clearance.
Driveshaft
Plan before final assembly
Typically requires a custom or hybrid driveshaft matched to transmission output and differential flange.
Cooling
Plan before final assembly
Upgraded cooling typically recommended; fan/shroud clearance and ducting matter.
Fan / airflow
Plan before final assembly
Electric fans are commonly used for clearance and control. Confirm shroud/ducting and fan control strategy.
Fuel delivery
Plan before final assembly
Verify the exact component strategy for this chassis, engine and transmission combination.
Wiring & control
Plan before final assembly
OEM controls vs standalone varies by ECU/DBW strategy; plan early.
Exhaust & heat
Plan before final assembly
Header clearance and heat management are common; plan steering and brake line protection.
Fabrication
Plan before final assembly
Verify the exact component strategy for this chassis, engine and transmission combination.

Build sequence

  1. Freeze engine exact version, transmission, ECU/control method, oil pan and power/fuel target.
  2. Mock engine and transmission together; set engine height/setback and confirm hood, steering and crossmember clearance.
  3. Confirm shifter location, transmission support and driveline geometry before measuring a driveshaft.
  4. Mock radiator/fans, exhaust/downpipe/headers and service-access envelope before final mounts/exhaust.
  5. Build fuel system and electrical power/ground/relay plan around the actual engine-management strategy.
  6. Complete cooling/airflow and heat protection, then pressure/leak-test systems before first start.
  7. On first start, watch oil pressure, fuel pressure/mixture, charging voltage, coolant temperature and leaks; do not treat first fire-up as a full-load test.
  8. After low-load shakedown, reinspect mounts, driveline hardware, fluid leaks, heat-affected wiring/hoses and alignment before increasing load.

Interactive preflight checklist

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Related planning resources

LQ4 (6.0 truck) hubS13 chassisHP plannerInjector sizing
Safety and legality

Engine swaps can affect emissions compliance, braking, fuel-system safety, insurance and road legality. Verify the requirements that apply to the vehicle and location, and use qualified fabrication/repair practices for safety-critical work.