Manage Wheelspin
Reduce the torque ceiling in first or second gear when the tires cannot use the full engine output effectively.
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Shape engine torque separately for each gear on supported vehicles. Reduce lower-gear torque where the tires cannot use the full output, then allow a higher calibrated target as vehicle speed and available grip increase.
Used with supported map configurations Explore OTS Maps →A high-output engine can request more torque than the tires can effectively transfer in lower gears. This is especially noticeable on two-wheel-drive vehicles, where repeated wheelspin can reduce usable acceleration even when the engine is capable of producing more output.
Torque By Gear Limiter allows the calibration to specify a separate torque ceiling for each gear. Lower gears can receive a more conservative target, while higher gears can use progressively more of the available engine output.
The tune can shape torque delivery according to the traction and drivetrain demands of each gear.
Reduce the torque ceiling in first or second gear when the tires cannot use the full engine output effectively.
Controlled deliveryIncrease the limit as vehicle speed rises and the available traction improves.
Progressive deliveryAllow a higher planned target only where the drivetrain, tires, speed and conditions can support it.
Higher calibrated targetThe fastest calibration is not always the one that requests maximum torque in every gear.
Reduce lower-gear wheelspin on powerful rear-wheel-drive or front-wheel-drive vehicles.
A smoother torque ramp can make acceleration easier to reproduce instead of repeatedly exceeding available grip.
Adapt delivery to the tire type, temperature, surface conditions and intended use of the vehicle.
Use a more deliberate torque strategy where the vehicle hardware or calibration requires it.
Torque By Gear Limiter is a calibration option. It does not have a dedicated Custom Code Menu position, Live Control card or Custom Code Diagnostics control. The values are configured in the supported map before or during the flashing workflow.
The correct values depend on engine output, transmission, driven wheels, differential, tire grip, tire temperature, vehicle weight, surface and tuning objective. A custom tuner may use a different strategy from an available OTS configuration.
Confirm driven wheels, transmission, tire setup and the exact supported engine platform.
Set appropriate torque ceilings for the gears that require additional traction management.
Use repeatable testing and datalogging to confirm that the delivery suits the vehicle and conditions.
An OTS map can include a prepared per-gear strategy without making every value editable by the user. A custom tuner can define a different strategy for the exact hardware, tires and intended use.
These systems can interact with torque delivery, but they perform different jobs.
Defines a planned engine-torque ceiling for each gear as part of the flashed calibration. It does not react to wheel slip by itself.
Per-gear calibration →Responds dynamically when wheel slip or stability conditions are detected by the vehicle’s control systems.
Review vehicle data →Manages transmission-requested torque limits dynamically when intervention is or is not required.
Explore TCU Bypass →Check support for the engine, ECU software, map package and complete drivetrain configuration.
The feature must be available for the exact engine, ECU software and map configuration.
Availability and adjustability can differ between an OTS map and a tuner-prepared calibration.
The transmission, differential, axles and tires must be suitable for the intended torque output.
Use safe, repeatable testing and logging rather than assuming one strategy fits every vehicle.
The map can contain a prepared strategy chosen by MG Flasher or the tuner. Confirm whether the selected OTS package or custom-tuning workflow allows the required per-gear changes before purchasing or flashing.
Increasing a per-gear torque target does not create additional grip or mechanical capacity. Engine output, transmission limits, differential, axles, tires, surface, weather and vehicle condition must all be considered together.
Validate meaningful changes in a controlled environment, not on public roads. Vehicle tuning and high-performance use may be restricted by local road, emissions, insurance or motorsport rules.
Explore related map, drivetrain and logging functionality.
Common questions about per-gear torque limits, traction and compatibility.
It allows a supported calibration to use a separate engine-torque limit for each gear instead of one identical limit across the complete gear range.
A powerful vehicle may exceed the available tire grip in first or second gear. A lower torque target can reduce wheelspin and produce more usable acceleration.
No, but it can be especially useful on two-wheel-drive vehicles that experience lower-gear wheelspin. Suitability depends on the complete setup.
No. Torque By Gear defines planned calibration limits for each gear. Traction control reacts dynamically to detected wheel slip and vehicle-stability conditions.
No. Torque By Gear defines an engine-torque ceiling per gear. TCU Torque Limiter Bypass manages torque-limit requests coming from the transmission controller.
No. Torque By Gear is configured in the flashed calibration. It does not have a dedicated CCM position, Live Control card or Custom Code Diagnostics control.
No. If the tires cannot use the requested torque, additional wheelspin or intervention can reduce repeatability and usable acceleration.
Not safely by assumption. Tire compound, temperature, surface, drivetrain and weather can materially change the available grip.
No. An OTS map can include a prepared per-gear strategy without exposing every value for user adjustment. Availability depends on the exact map package and workflow.
No. Availability depends on the exact engine, ECU software, map configuration and supported flashing options.
Values should be matched to engine output, drivetrain, tires, surface and use case, then validated through safe repeatable testing and logging.
Confirm vehicle support, map adjustability, tires, transmission and the complete drivetrain setup before changing per-gear torque limits.
