K24A2 (TSX) Swap into S14
A planning-first S14 × K24A2 (TSX) guide built around packaging dependencies, support systems and a verifiable first-start sequence.
Complexity snapshot
Why this combination needs a plan
The K24A2 (TSX-family) is a popular performance-oriented K24 donor. Its RWD swap still depends on adapter/transmission choice, clutch/flywheel stack, oiling solution, engine position and a documented engine-management plan.
A transverse-to-RWD conversion is a system: adapter, gearbox, clutch/flywheel, oiling, mounts and shifter must agree.
Tall-deck variants and sump choices affect hood/crossmember clearance.
Swap requirements
Build sequence
- Freeze engine exact version, transmission, ECU/control method, oil pan and power/fuel target.
- Mock engine and transmission together; set engine height/setback and confirm hood, steering and crossmember clearance.
- Confirm shifter location, transmission support and driveline geometry before measuring a driveshaft.
- Mock radiator/fans, exhaust/downpipe/headers and service-access envelope before final mounts/exhaust.
- Build fuel system and electrical power/ground/relay plan around the actual engine-management strategy.
- Complete cooling/airflow and heat protection, then pressure/leak-test systems before first start.
- 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.
- After low-load shakedown, reinspect mounts, driveline hardware, fluid leaks, heat-affected wiring/hoses and alignment before increasing load.
Interactive preflight checklist
Related planning resources
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.