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Tube Shape Plate Piezoceramic For Ultrasond Vibration Sensor /
Device
Dimension(mm) | Capacity C (pF) | Weak | Strong | Radial | Reso | Thick FrequencyFt (KHz) | Coupling Modulus Kr (%) | Quality Factor Qm | |
Φ10xΦ5x2 | 240±10% | ≤0.5% | ≤1.0% | 153±5% | ≤15 | 1020 | ≥45 | ≥800 | |
Φ16xΦ8x4 | 340±10% | ≤0.5% | ≤1.0% | 95.8±5% | ≤20 | 512 | ≥45 | ≥800 | |
Φ25xΦ10x4 | 935±10% | ≤0.5% | ≤1.0% | 65.5±5% | ≤15 | 512 | ≥45 | ≥800 | |
Φ30xΦ10x5 | 1150±10% | ≤0.5% | ≤1.0% | 58.4±5% | ≤15 | 410 | ≥45 | ≥800 | |
Φ32xΦ15x5 | 1080±10% | ≤0.5% | ≤1.0% | 49.2±5% | ≤15 | 410 | ≥45 | ≥800 | |
Φ35xΦ15x5 | 1430±10% | ≤0.5% | ≤1.0% | 45.5±5% | ≤15 | 410 | ≥45 | ≥800 | |
Φ38xΦ15x5 | 1750±10% | ≤0.5% | ≤1.0% | 43.4±5% | ≤15 | 410 | ≥46 | ≥800 | |
Φ40xΦ15x5 | 1970±10% | ≤0.5% | ≤1.0% | 42.8±5% | ≤15 | 410 | ≥45 | ≥800 | |
Φ42xΦ15x5 | 2200±10% | ≤0.5% | ≤1.0% | 40±5% | ≤15 | 410 | ≥45 | ≥800 | |
Φ42xΦ17x5 | 2110±10% | ≤0.5% | ≤1.0% | 38.8±5% | ≤15 | 410 | ≥45 | ≥800 | |
Φ45xΦ15x5 | 2580±10% | ≤0.5% | ≤1.0% | 38.1±5% | ≤15 | 410 | ≥46 | ≥800 | |
Φ50xΦ17x5 | 3160±10% | ≤0.5% | ≤1.0% | 34.8±5% | ≤15 | 410 | ≥45 | ≥800 | |
Φ50xΦ17x6 | 2430±10% | ≤0.5% | ≤1.0% | 34.8±5% | ≤15 | 315 | ≥45 | ≥800 | |
Φ50x3 | 5800±10% | ≤0.5% | ≤1.0% | 46±5% | ≤10 | 681 | ≥50 | ≥800 |
1.What is the process of eliminating vibration through
piezoceramics?
The process of vibration cancellation can be achieved through
attaching two piezoceramic sheets to the outer surface of the
object. They should be close to the point (in a beam) where
undesired bending needs to be controlled.The first sheet is used to
measure the strain on the surface. The data from a strain sensor is
put into a smart box. This gadget controls the power amplifier
which consequently drives second sheet.As a result, the
mechanically induced movement from second sheet produces vibrations
into the structure, which counter the other vibrations.
2.Is there a possibility of Piezo technology replacing magnetic
technology anytime in the future?
The possibility of Piezo technology replacing magnetic technology
is not possible. Magnetic technology is based on force without
physical contact. On the other hand, Piezo technology is purely
derived from forces having direct contact from bodies.For instance,
Piezo actuators have the capability of making all solenoids
obsolete. However, they are heavier which is why it is highly
improbably that magnetic technology will be forgotten because of
Piezo technology.The main interest in Piezo actuators is because of
the solenoids ability to work on less powe