simulation docs
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@ -507,7 +507,7 @@ float mapFrequency0Kpa;;"Hz", 1, 0, 0, 100000, 2
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float mapFrequency100Kpa;;"Hz", 1, 0, 0, 100000, 2
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float mapFrequency100Kpa;;"Hz", 1, 0, 0, 100000, 2
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! todo: rename to triggerSimulatorRpm
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! todo: rename to triggerSimulatorRpm
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int triggerSimulatorFrequency;+See also triggerSimulatorPins\nSee also directSelfStimulation\nrpm X;"Rpm", 1, 0, 0,30000, 0
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int triggerSimulatorFrequency;+Same RPM is used for two ways of producing simulated RPM. See also triggerSimulatorPins (with wires)\nSee also directSelfStimulation (no wires, bypassing input hardware)\nrpm X;"Rpm", 1, 0, 0,30000, 0
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output_pin_e[INJECTION_PIN_COUNT iterate] injectionPins;
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output_pin_e[INJECTION_PIN_COUNT iterate] injectionPins;
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output_pin_e[IGNITION_PIN_COUNT iterate] ignitionPins;
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output_pin_e[IGNITION_PIN_COUNT iterate] ignitionPins;
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@ -582,7 +582,7 @@ pin_input_mode_e throttlePedalUpPinMode;
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can_device_mode_e canDeviceMode;
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can_device_mode_e canDeviceMode;
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brain_pin_e[TRIGGER_SIMULATOR_PIN_COUNT iterate] triggerSimulatorPins;See also directSelfStimulation
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brain_pin_e[TRIGGER_SIMULATOR_PIN_COUNT iterate] triggerSimulatorPins;Each rusEfi piece can provide synthetic trigger signal for external ECU. Sometimes these wires are routed back into trigger inputs of the same rusEfi board.\nSee also directSelfStimulation which is different.
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pin_output_mode_e[TRIGGER_SIMULATOR_PIN_COUNT iterate] triggerSimulatorPinModes;
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pin_output_mode_e[TRIGGER_SIMULATOR_PIN_COUNT iterate] triggerSimulatorPinModes;
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output_pin_e o2heaterPin;Narrow band o2 heater, not used for CJ125. See wboHeaterPin
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output_pin_e o2heaterPin;Narrow band o2 heater, not used for CJ125. See wboHeaterPin
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pin_output_mode_e o2heaterPinModeTodO;
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pin_output_mode_e o2heaterPinModeTodO;
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