Transformer-based placement and harmonized composition for synthetic data generation in PCB component detection

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초록

Accurate component detection during the final assembly of complex integrated circuits (ICs) onto system-level or test Printed Circuit Boards (PCBs) is a critical semiconductor back-end process, essential for ensuring both test validation accuracy and overall product reliability. However, collecting sufficient annotated data for diverse component types and board layouts remains extremely costly and time-consuming, limiting the applicability of modern detectors. To address this challenge, we present a novel approach for synthetic data generation in very few-shot object detection, with a focus on PCB component detection. A transformer-based placement module predicts plausible insertion points for a given component patch on target boards, while a harmonized compositing stage seamlessly integrates it into the scene, yielding visually coherent and label-consistent training pairs. The synthesized pairs support effective fine-tuning of YOLO-style detectors under extreme data scarcity and enable rapid adaptation to newly introduced components with minimal real supervision. We evaluate across few-shot regimes and held-out boards and connector types, comparing against random/heuristic placement and standard copy-paste baselines. The results consistently indicate stronger realism, better label consistency, and improved downstream detection accuracy, highlighting that learned placement coupled with harmonized composition reduces labeling cost and accelerates adaptation in industrial inspection. © COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only.

키워드

data augmentationdomain adaptationfew-shot learningPCB component detectionsynthetic dataset generation
제목
Transformer-based placement and harmonized composition for synthetic data generation in PCB component detection
저자
Son, HyeonjiKim, HongseokLee, Yaesop
DOI
10.1117/12.3100609
발행일
2026-02
유형
Proceedings Paper
저널명
Proceedings of SPIE - The International Society for Optical Engineering
14072