An Open-Source Power Measurement Platform for System-Level Semiconductor Testing

๐Ÿ“… 2026-08-06
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๐Ÿค– AI Summary
This work addresses the lack of cost-effective, high-precision power measurement solutions for embedded systems, given the high expense and inflexibility of industrial semiconductor test equipment. The authors propose and implement a compact, open-source hardware and software-based system-level power profiling platform that integrates a Raspberry Pi controller, a high-accuracy current sensor, and a microcontroller-based device under test (DUT). A lightweight HTTP interface enables automated firmware deployment, synchronized execution, and remote control. By uniquely combining low-cost open-source hardware with an automated testing workflow, the platform achieves high-resolution current acquisition and supports energy-efficiency benchmarking and regression testing across multiple firmware variants. This significantly enhances the scalability, reproducibility, and practicality of power analysis for embedded systems, making it well-suited for research, prototyping, and educational applications.
๐Ÿ“ Abstract
Accurate power measurement is not only essential for evaluating the energy efficiency of modern embedded and semiconductor systems, but power draw is an important proxy during stress testing. Industrial semiconductor test equipment, however, is often expensive and difficult to integrate into flexible experimental workflows. This paper presents a compact and extensible hardware platform for automated system-level power measurement of embedded devices. The proposed setup integrates a Raspberry Pi controller, a precision current measurement device, and a microcontroller-based Device-under-Test (DUT). The system supports automated firmware deployment, synchronized device execution, and high-resolution current acquisition. A lightweight HTTP-based interface allows remote clients to upload firmware binaries and retrieve measurement results. This design enables automated benchmarking and reproducible experiments across multiple firmware variants. The platform is implemented using accessible hardware components and open-source software tools, making it suitable for research, prototyping, and educational environments. We describe the architecture of the platform, the automated testing workflow, and potential application scenarios, including firmware energy profiling and regression testing.
Problem

Research questions and friction points this paper is trying to address.

power measurement
semiconductor testing
embedded systems
energy efficiency
test equipment
Innovation

Methods, ideas, or system contributions that make the work stand out.

power measurement
open-source platform
system-level testing
automated benchmarking
energy profiling
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