







The 60×30mm Piezoelectric Ceramic Generator is a compact energy-harvesting device designed to convert bending force and vibration into electrical energy. Built with high-performance piezoelectric ceramic and brass substrate materials, it provides stable voltage output for experimental and low-power applications. The bimorph structure offers high sensitivity, excellent electromagnetic interference resistance, and reliable performance. It is suitable for energy collection, sensors, wearable electronics, educational projects, and micro power generation systems requiring compact and efficient design.
مولد السيراميك الكهروضغطي 60×30 مم هو جهاز صغير لحصاد الطاقة يقوم بتحويل قوة الانحناء والاهتزاز إلى طاقة كهربائية. تم تصنيعه من سيراميك كهروضغطي عالي الأداء مع قاعدة نحاسية لتوفير خرج جهد مستقر للتطبيقات التجريبية ومنخفضة الطاقة. يتميز بحساسية عالية ومقاومة ممتازة للتشويش الكهرومغناطيسي وأداء موثوق. مناسب لتجميع الطاقة، الحساسات، الأجهزة القابلة للارتداء، المشاريع التعليمية، وأنظمة توليد الطاقة الصغيرة ذات التصميم المدمج والفعال.
The Piezoelectric Ceramic Generator 60×30mm is a high-sensitivity energy harvesting component designed to generate electrical power from mechanical bending, vibration, or pressure. It uses a piezoelectric ceramic bimorph structure that converts mechanical stress into electrical energy efficiently.
The generator is manufactured using P8-1 piezoelectric ceramic material combined with a durable Brass CW617N substrate, providing reliable electrical performance and strong mechanical stability. It is suitable for research, educational experiments, low-power electronics, sensing systems, and micro-energy harvesting applications.
This bimorph generator can only deflect up to 1mm maximum. Excessive bending may create micro fractures in the ceramic layer, causing severe performance reduction or permanent damage.
The device offers stable voltage generation with excellent resistance to electromagnetic interference, compact structure, lightweight design, and easy integration into portable and miniaturized electronic systems.