With the continuous development of technology, there is still great potential for the development of the high-frequency ultrasonic transducer oscillator in the future. On the one hand, with the continuous emergence of new materials and processes, the performance of oscillators is expected to be further improved, such as higher frequency, greater power, smaller volume, غیره. On the other hand, with the continuous development of intelligence and automation technology, the integration and intelligence level of oscillators will also be further improved, making their application in various devices more convenient and efficient.
The oscillator of a high-frequency ultrasonic transducer, as an important industrial equipment component, has broad application prospects in multiple fields. Through in-depth exploration of its principles, characteristics, applications, and future development trends, we can better understand and utilize this technology, and make greater contributions to promoting progress and development in the industrial field.
Type | Length(mm) | Weight(g) | Frequency(KHz) | Resonance Impedance (Ω) |
Static Capacity (pF)±10% |
Input Power(W) |
PU-UT-5435 PZT-4 |
36 | 135 | 54 | 10-20 | 3200 | 35 |
PU-UT-6860 PZT-8 |
80 | 460 | 68 | 10-20 | 3800 | 60 |
PU-UT-68120 PZT-4 |
67 | 588 | 68 | 10-20 | 7800 | 120 |
PU-UT-8060 PZT-4 |
60 | 325 | 80 | 10-20 | 5400 | 60 |
PU-UT-12060 PZT-4 |
56 | 260 | 120 | 10-20 | 5400 | 60 |
PU-UT-13550 PZT-4 |
54 | 215 | 135 | 10-20 | 4200 | 50 |