2020-2021 Kawasaki Teryx KRX 1000 Data Link ECU Flashing Kit
$380.00
Zestaw do flashowania ECU łącza danych Zawiera:
-FT Kabel USB interfejsu ECU DataLink
-Przęg programowania po stronie roweru, aby na stałe zainstalować na rowerze
-FT Licencja ECU pozwalająca na nieograniczoną liczbę błysków dla jednego ECU
Uwaga: Dokumenty instalacyjne można znaleźć w Centrum dokumentów po zalogowaniu do konta klienta
Znajdź swój numer części ECU poniżej
Wskazówka: klikaj elementy, aby przeglądać aktualnie zdefiniowane parametrytrue
ECU Mapping
Fuel
TPS vs RPM
Neutral
Cyl 1 - In-Gear Standing
Cyl 2 - In-Gear Standing
Cyl 1 - Neutral
Cyl 2 - Neutral
High Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Low Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Reverse
Cyl 1
Cyl 2
MAP vs RPM
Neutral
Cyl 1 - In-Gear Standing
Cyl 2 - In-Gear Standing
Cyl 1 - Neutral
Cyl 2 - Neutral
High Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Low Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Reverse
Cyl 1
Cyl 2
MAP vs TPS switching
MAP TPS switching
Trim By Gear
Neutral
Reverse
Low Range
High Range
Ignition
Primary IGN Maps
Neutral - Cyl 1
Neutral - Cyl 2
Reverse - Cyl 1
Reverse - Cyl 2
Standing - Cyl 1
Standing - Cyl 2
High Range - Cyl 1
High Range - Cyl 2
Low Range - Cyl 1
Low Range - Cyl 2
Throttle-By-Wire
Throttle Limits
Throttle Limits
High Power
Neutral
Reverse
Low Range
High Range
Low Power
Neutral
Reverse
Low Range
High Range
Idle Control
Idle FI Control
Idle FI Notes
ECT(degC) vs Target RPM - Neutral
ECT(degC) vs Target RPM - In-Gear
IAP(mmHg) vs Idle Trim
Idle Mode RPM Limit
Idle ETV Control
Learned Offset Limits
RPM vs ETV Position
RPM vs APS - ETV Idle Trim
ECU Settings
Fan Temps
PC Fuel Import
Rev Limiters
Top Speed Limiter
Injector Decel Cut
Reverse Limp Mode
Seatbelt Limiter
California EVAP
Stock O2 Sensor
ECU Mapping
Fuel
TPS vs RPM
Neutral
Cyl 1 - In-Gear Standing
Cyl 2 - In-Gear Standing
Cyl 1 - Neutral
Cyl 2 - Neutral
High Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Low Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Reverse
Cyl 1
Cyl 2
MAP vs RPM
Neutral
Cyl 1 - In-Gear Standing
Cyl 2 - In-Gear Standing
Cyl 1 - Neutral
Cyl 2 - Neutral
High Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Low Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Reverse
Cyl 1
Cyl 2
MAP vs TPS switching
MAP TPS switching
Trim By Gear
Neutral
Reverse
Low Range
High Range
Ignition
Primary IGN Maps
Neutral - Cyl 1
Neutral - Cyl 2
Reverse - Cyl 1
Reverse - Cyl 2
Standing - Cyl 1
Standing - Cyl 2
High Range - Cyl 1
High Range - Cyl 2
Low Range - Cyl 1
Low Range - Cyl 2
Throttle-By-Wire
Throttle Limits
Throttle Limits
High Power
Neutral
Reverse
Low Range
High Range
Low Power
Neutral
Reverse
Low Range
High Range
Idle Control
Idle FI Control
Idle FI Notes
ECT(degC) vs Target RPM - Neutral
ECT(degC) vs Target RPM - In-Gear
IAP(mmHg) vs Idle Trim
Idle Mode RPM Limit
Idle ETV Control
Learned Offset Limits
RPM vs ETV Position
RPM vs APS - ETV Idle Trim
ECU Settings
Fan Temps
PC Fuel Import
Rev Limiters
Top Speed Limiter
Injector Decel Cut
Reverse Limp Mode
Seatbelt Limiter
California EVAP
Stock O2 Sensor
ECU Mapping
Fuel
TPS vs RPM
Neutral
Cyl 1 - In-Gear Standing
Cyl 2 - In-Gear Standing
Cyl 1 - Neutral
Cyl 2 - Neutral
High Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Low Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Reverse
Cyl 1
Cyl 2
MAP vs RPM
Neutral
Cyl 1 - In-Gear Standing
Cyl 2 - In-Gear Standing
Cyl 1 - Neutral
Cyl 2 - Neutral
High Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Low Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Reverse
Cyl 1
Cyl 2
MAP vs TPS switching
MAP TPS switching
Trim By Gear
Neutral
Reverse
Low Range
High Range
Ignition
Primary IGN Maps
Neutral - Cyl 1
Neutral - Cyl 2
Reverse - Cyl 1
Reverse - Cyl 2
Standing - Cyl 1
Standing - Cyl 2
High Range - Cyl 1
High Range - Cyl 2
Low Range - Cyl 1
Low Range - Cyl 2
Throttle-By-Wire
Throttle Limits
Throttle Limits
High Power
Neutral
Reverse
Low Range
High Range
Low Power
Neutral
Reverse
Low Range
High Range
Idle Control
Idle FI Control
Idle FI Notes
ECT(degC) vs Target RPM - Neutral
ECT(degC) vs Target RPM - In-Gear
IAP(mmHg) vs Idle Trim
Idle Mode RPM Limit
Idle ETV Control
Learned Offset Limits
RPM vs ETV Position
RPM vs APS - ETV Idle Trim
ECU Settings
Fan Temps
PC Fuel Import
Rev Limiters
Top Speed Limiter
Injector Decel Cut
Reverse Limp Mode
Seatbelt Limiter
California EVAP
Stock O2 Sensor
ECU Mapping
Fuel
TPS vs RPM
Neutral
Cyl 1 - In-Gear Standing
Cyl 2 - In-Gear Standing
Cyl 1 - Neutral
Cyl 2 - Neutral
High Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Low Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Reverse
Cyl 1
Cyl 2
MAP vs RPM
Neutral
Cyl 1 - In-Gear Standing
Cyl 2 - In-Gear Standing
Cyl 1 - Neutral
Cyl 2 - Neutral
High Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Low Range
Cyl 1 - F power
Cyl 2 - F power
Cyl 1 - L power
Cyl 2 - L power
Reverse
Cyl 1
Cyl 2
MAP vs TPS switching
MAP TPS switching
Trim By Gear
Neutral
Reverse
Low Range
High Range
Ignition
Primary IGN Maps
Neutral - Cyl 1
Neutral - Cyl 2
Reverse - Cyl 1
Reverse - Cyl 2
Standing - Cyl 1
Standing - Cyl 2
High Range - Cyl 1
High Range - Cyl 2
Low Range - Cyl 1
Low Range - Cyl 2
Throttle-By-Wire
Throttle Limits
High Power
Neutral
Reverse
Low Range
High Range
Low Power
Neutral
Reverse
Low Range
High Range
Idle Control
Idle FI Control
ECT(degC) vs Target RPM - Neutral
ECT(degC) vs Target RPM - In-Gear
IAP(mmHg) vs Idle Trim
Idle ETV Control
RPM vs ETV Position
ECU Settings
Fan Temps
PC Fuel Import
Rev Limiters
Top Speed Limiter
Injector Decel Cut
Reverse Limp Mode
Seatbelt Limiter
California EVAP
Stock O2 Sensor
Nie widzisz swojego numeru części?
Nic wielkiego, ten typ ECU jest czytelny!Po dostarczeniu zestawu przeczytaj oryginalny plik ECU, który zostanie automatycznie przesłany
Nowe zgłoszenia można zwykle wykorzystać w ciągu 48–72 godzin.