Imagine this. You are working on a precision inertial sensor built around a mechanically resonant sensing element, where measurement quality depends on keeping that element oscillating at exactly the right frequency and amplitude and extracting a clean, reliable signal from it.
As a Digital Signal Processing Engineer, you will own the algorithms that make this possible. You will define how the control loops behave, build the estimation and compensation methods behind the sensor output, and establish the mathematical models used to understand and validate performance. Other engineers will own the electronics and RTL implementation. You will own whether the maths, algorithms, and control strategy are right.
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You enjoy problems where physics, mathematics, and real hardware meet. You are analytical without getting stuck in theory and comfortable going from a research paper or physical model to simulation, implementation, and experimental validation. When measurements do not match expectations, you want to understand why. You take ownership of the technical answer, challenge assumptions with data, and work naturally with specialists across hardware and software to turn complex sensor behaviour into reliable, high-performance algorithms.