Products Details
| Type | High Frequency Ceramics |
| Material | Zirconium Oxide |
| Mounting Type | PCB |
| Type | high frequency Piezoelectric Ceramics |
| Applications | Ultrasonic Humidifier, mist maker, ultrasonic diffuser/nebulizer |
| Frequency | 1.7MHz, 2.4MHz |
| Ceramic Diameter | 16mm, 20mm, 25mm |

FAQ
1. What is a 1.7MHz piezo atomizing ceramic disc?
A 1.7MHz piezo atomizing ceramic disc is a ceramic atomizer component that uses ultrasonic vibration to create fine mist for humidifier, diffuser, and spray applications.
2. What applications can use a piezo atomizing ceramic disc?
A piezo atomizing ceramic disc is commonly used in humidifiers, aroma diffusers, medical nebulizers, and industrial misting systems.
3. Why choose a 1.7MHz atomizing disc?
A 1.7MHz atomizing disc helps generate fine droplets, stable mist output, and efficient atomization for compact devices.
4. Is the piezo ceramic disc suitable for OEM integration?
Yes, the piezo ceramic disc is designed for OEM integration and custom atomizing device development.
5. What are the benefits of ultrasonic ceramic atomization?
Ultrasonic ceramic atomization offers low power use, fine mist production, fast response, and consistent spray performance.
6. Does the atomizing ceramic disc support fine mist generation?
Yes, the atomizing ceramic disc is built for fine mist generation with uniform droplet size and reliable output.
7. Is this ceramic atomizer component durable?
Yes, the ceramic atomizer component is made for durable, long-term operation in demanding B2B applications.
8. What industries use piezo atomizing ceramic discs?
Piezo atomizing ceramic discs are used in consumer electronics, healthcare devices, fragrance systems, and industrial mist equipment.
9. How does a piezo atomizing disc improve spray performance?
A piezo atomizing disc improves spray performance by creating consistent ultrasonic vibration for efficient liquid atomization.
10. Can this 1.7MHz ceramic disc be used in compact devices?
Yes, the 1.7MHz ceramic disc has a compact design that fits small and space-saving atomizing systems.







