Products Details
| Type | Other |
| Material | NiCo |
| product name | Vibration Mesh-300-N (7um) |
| size | 1.6 (L) x 2.38(W) x 0.24 (H) ±0.01 cm |
| characteristic | Long working life /Low noise |
| Advantage | 25 years experience in the semiconductor industry |
| MOQ | 10 |

FAQ
1. What is a Microporous Piezo Ceramic Plate?
A Microporous Piezo Ceramic Plate is a piezoelectric ceramic component with a microporous structure designed for sensing, vibration, and actuation applications.
2. What are the main applications of a Microporous Piezo Ceramic Plate?
A Microporous Piezo Ceramic Plate is widely used in industrial sensors, medical devices, precision instruments, and electronic systems.
3. Why choose a microporous piezo ceramic material?
Microporous piezo ceramic material offers stable piezoelectric performance, efficient signal conversion, and reliable operation in advanced applications.
4. Can the Microporous Piezo Ceramic Plate be customized?
Yes, the Microporous Piezo Ceramic Plate can often be customized in size, thickness, frequency, and performance specifications.
5. Is the Microporous Piezo Ceramic Plate suitable for OEM projects?
Yes, the Microporous Piezo Ceramic Plate is suitable for OEM and B2B projects that require consistent quality and integration flexibility.
6. How does microporous structure benefit piezo ceramic performance?
The microporous structure helps improve response consistency, reduce instability, and support precise piezoelectric performance.
7. What industries use Microporous Piezo Ceramic Plates?
Industries such as medical, automation, instrumentation, electronics, and industrial manufacturing use Microporous Piezo Ceramic Plates.
8. How durable is a Microporous Piezo Ceramic Plate?
A Microporous Piezo Ceramic Plate is built from durable piezo ceramic material for dependable use in demanding environments.
9. Does the Microporous Piezo Ceramic Plate support high-precision applications?
Yes, the Microporous Piezo Ceramic Plate is designed for high-precision applications that require accurate sensing and actuation.







