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Piezoelectirc Cooling Unit

Piezoelectirc Cooling Unit

Piezoelectric Cooling Unit is a highly sophisticated thermal management unit that is specially developed in response to compact electronic systems. This unit creates directed airflow using piezoelectric vibration technology, which does not use rotary fans as the traditional ones do. Piezoelectric cooling unit offers extreme cooling efficiency, extremely slim line design and extremely low noise such that it is best suited in space constrained applications. The unit has no rotating components, which makes the unit dependable, free of maintenance and increases the service life. It is lightweight and consumes low power making it easy to incorporate into any portable equipment, high-performance computing platforms and sensitive electronics equipment to provide a stable and efficient heat dissipation in the next-generation technologies.

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TH2206052-C01-RO1 (42A02) LVD
Download_file
TH2206052-C01-RO1 (42A02) LVD
  • Q1: What models and applications are available for your multilayer piezoelectric ceramic elements?

    A1: We offer a variety of piezo ceramic elements in different sizes and frequency responses, widely used in ultrasonic detection, medical imaging, and industrial sensing. Please refer to our product catalog or contact us for assistance with product selection.
  • Q2: Which international standards do BESTAR products comply with?

    A2: Our products comply with RoHS, REACH, and other environmental regulations. Some models are certified by Intertek, TÜV, CE, UKCA, and SGS.
  • Q3: How do I choose the right electromagnetic components?

    A3: Selection depends on your specific application. Our technical team can support you with application-based design validation and recommendations.
  • Q4: Do you support low-volume customization of piezo elements or inductors?

    A4: Yes, we offer flexible manufacturing services from prototyping to mass production. Our low minimum order quantities (MOQs) and reliable lead times are ideal for startups and specialized projects.
  • Q5: What is the typical customization process and lead time?

    A5: Our typical process includes: requirement evaluation → solution confirmation → process development → sample delivery → transition to mass production. The full cycle usually takes 2–6 weeks.