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| Component / wire | Needs | ECU pin | Native label | Signal type | Notes & flags |
|---|
| Requirement | Canonical type | ECU pin | Native label | Capability | Notes & flags |
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Glossary
Every canonical signal type the planner uses, in plain English. These are the names on the derived I/O list and the connection sheet – what each one is, and what it costs an ECU in pins.
Which ECU can actually run your engine?
Answer a few short questions about your engine – or start from one of 58 swap presets – and the planner works out every input and output your build needs, ranks all 50 ECUs by what they can really do, and lays it out pin by pin.
Start from your engine
BMW
Ford
GM
Honda
Mazda
Nissan
Subaru
Toyota
Picking one fills the steps it can state for certain, and tells you plainly what it could not.
Describe the engine
Short steps – cylinders and layout, fuel, ignition, cams, sensors, actuators. One question at a time.
See the I/O it needs
Injector and ignition drivers, triggers, analog inputs, and the 5V and ground load – derived, not guessed.
Get the pin sheet
Every ECU ranked valid, needs-a-module or won't fit, then the connection sheet pin by pin.
The planner runs entirely in your browser. Nothing you type is sent anywhere, and nothing is saved between visits; export or print your sheet before you close the tab. If a pin looks wrong for your ECU, tell us which one; the profiles are transcribed from manufacturer manuals and corrections are welcome.
Always verify against the manufacturer’s manual and your tuner before wiring.
How it works
What the planner actually does
Most people choose a standalone ECU backwards: brand first, count later. The planner runs it the other way round. You describe the engine, it derives the inputs and outputs that build needs, and only then does it name a box.
- Describe the build. Start from an engine preset or from scratch. The guided flow asks about the things that change the pin count: injectors, coil type, trigger pattern, cam control, drive-by-wire and the sensors you are keeping. Not the things that look good on a spec sheet.
- Get the I/O tally. Injector drivers, ignition outputs, trigger inputs, analogue and temperature inputs, low-side and half-bridge outputs: counted by type as well as by number, with 5V-reference and sensor-ground fan-out counted rather than assumed.
- Shortlist the ECU. Wire-in and plug-in ECUs are scored against that tally. Where one falls short, the planner names the shortfall, and whether an add-on module can close it, instead of just marking it red.
- Plan the pins. Pick one and it lays out a pin-by-pin connection sheet you can export or print and take to the bench.
Questions that come up
Does the planner save my build?
No. It runs entirely in your browser, and nothing you enter is sent anywhere or kept between visits. Export or print the connection sheet before you close the tab.
Where does the pinout data come from?
Each ECU profile is transcribed from the manufacturer’s own manuals and pinout documents, one pin at a time. Transcriptions can be wrong and hardware revisions change, so the manual for your exact ECU and revision wins any disagreement. If you find an error, tell us which pin.
Why does it count trigger inputs separately from digital inputs?
Because a crank or cam sensor needs a trigger-capable input, and a VR sensor needs one that can read VR. A spare digital input does not help. Counts are the easy part; types are the trap.
Is it free?
Yes. The adverts pay for it. They sit around the planner, never inside it.
Does it replace my tuner?
No. It gets you to a shortlist and a connection sheet faster than a napkin does. Your tuner has seen the car; the planner has not.
Always verify against the manufacturer’s manual and your tuner before wiring.
Guides
What the planner is doing, on paper
The same framework the tool runs, written out: define the build, read the spec sheet for types rather than counts, then tally the I/O before you shop.
How to Choose a Standalone ECU for Your Engine Swap: A Practical Framework
A builder's framework for choosing a standalone ECU for an engine swap: define the build, count the I/O it actually needs, then shortlist. No…
Read the guide → Guide 06 · Choose & selectMatching an ECU to Your Engine’s I/O: Counting Inputs and Outputs Before You Buy
A worked method for tallying the injectors, coils, sensors and actuators your engine needs against what an ECU provides – and where swaps get…
Read the guide → Guide 05 · Choose & selectReading an ECU Spec Sheet: Injector Drivers, Ignition Outputs, and What Actually Matters
Decode a standalone ECU spec sheet: injector driver types, ignition output modes, analog vs digital inputs, 5V refs and CAN – what to actually…
Read the guide →