Two-dimensional Vector Transducer Underwater Acoustic Transducer for 300M

Product Description

   Two-dimensional Vector Transducer Underwater Acoustic Transducer for 300M 



Technical Parameters:


Model

HS/H100-2KⅡ

 

WorkingBand

100Hz~2000Hz

Receiving Sensitivity

At 1000Hz: vibration velocity sensitivity MVL ≥ - 200db

Sound pressure sensitivity MPL ≥ - 200db

Directivity

It has dipole directivity.

The resolution KD ≥ 13dB;

The maximum dipole sensitivity asymmetry kmax ≤ 5dB;

Working depth

300m

Cable Specification

Φ7mm10 Core shielded cable (optional)

Weight

 

600g



Application:


Underwater Acoustics Research 

Underwater Communication System 

Acoustic Field Calibration

Military and Scientific Applications



Application Case of Underwater Acoustic Transducer

 

According to customer’ needs, we can design and produce piezoelectric ultrasonic transducers,  underwater acoustic transducer ,ultrasonic probes and sensors of various frequencies with stable performance and high quality.

 

 

 

 

2. Calibration of Vector Hydrophones in Deep Water ,The maximum working depth can reach 3000m, which can be used for oil-filled linear array elements

 

 

3. The highest emission response of the stacked spherical acoustic transducer can reach 156dB, and the highest sound source level can reach 202dB, which is more than 6dB higher than ordinary spherical transducers of the same size.

 


 

4.single-crystal vector hydrophone transducer

 

Compared with piezoelectric ceramic transducers, the size of PIN-PMN-PT single crystal transmitting transducer is reduced by more than 1/3, the transmitting voltage response level is 2~10dB higher, the impedance bandwidth is about twice higher, and the -3dB bandwidth is about two times higher. Times; the receiving sensitivity is 3~5dB higher. The single crystal vector hydrophone has low motion self-noise, and the sensitivity is 4~6dB higher than the piezoelectric vector hydrophone of the same size.

 

 

 

 

 

 5.Fixed installation vector hydrophone

 

Using the center column as the fixed base, the ceramic shearing working mode, the working frequency band is 100-5000Hz, the installation is simple, the performance is stable, and it can replace most vector hydrophones installed on various platforms.



 

 

The cone-shaped reflector is used to reflect the circumferentially radiated sound waves of the toroidal transducer to the end surface to work, and relatively stable acoustic radiation of the beam can be realized on the end surface.


Feedback

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