Rotary Position Sensor Applications
The throttle position application is a critical use case for the Titan Moto TMS 24. In this context, the sensor is used to precisely monitor the angle of the throttle, ensuring accurate feedback to the engine control unit. This allows for optimal fuel injection and air intake, which improves engine performance, efficiency, and responsiveness. The robust design of the TMS 24 ensures reliable operation even in harsh automotive environments, making it ideal for this demanding application.
When it comes to drive by wire controls, the Titan Moto TMS 24 plays a vital role in replacing traditional mechanical linkages with electronic systems. By providing precise and real-time position feedback, the sensor enables smooth and accurate control of various vehicle functions, such as throttle, braking, and steering. This not only enhances vehicle safety and performance but also supports the development of advanced driver assistance systems and autonomous driving technologies.
The brake pedal position application leverages the TMS 24’s ability to deliver accurate and repeatable position measurements. By monitoring the exact position of the brake pedal, the sensor ensures that braking systems respond appropriately to driver input. This is especially important for modern vehicles equipped with electronic braking systems, where precise feedback is essential for both safety and performance.
In the area of steering angle measurement, the Titan Moto TMS 24 provides essential data for electronic steering systems. Accurate steering angle information is crucial for stability control, lane-keeping assistance, and other advanced safety features. The sensor’s high resolution and reliability make it well-suited for capturing even the smallest changes in steering input, contributing to a safer and more responsive driving experience.
Finally, the actuator position application highlights the versatility of the TMS 24. Whether used in electric motors, valves, or other actuators, the sensor provides precise position feedback that is essential for closed-loop control systems. This ensures that actuators operate efficiently and accurately, which is vital for a wide range of automotive and industrial applications.







