CAE Acoustic & Vibration
Acoustic Camera
SoundCam 2.0 is the first camera that creates acoustic images even in a high frequency range (greater than 24 kHz). The SoundCam 2.0 locates sound sources in real time and display the results immediately on the screen.
SoundCam 2.0 can be used in a wide frequency range up to 60 kHz and suitable for variety of applications - product development, preventive maintenance and occupational safety. It consists of 64 microphones with a sampling rate of 200 kHz, and optical camera, an integrated data acquisition and analysis system, a display and control unit with touch screen and hardware buttons. The high resolution results with high speed and accuracy make the system special even in a high frequency range up to 60 kHz.
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SoundCam Ultra 3.0 is the first and smallest handheld camera in the SoundCam family. The SoundCam Ultra locates sound sources in real time and displays the results instantly on the screen.
SoundCam Ultra has wide frequency range up to 200 kHz, suitable for wide range of applications. The system is ergonomic designed and low weight - an excellent measuring instrument, even for the hard-to-reach places. SoundCam Ultra consists of 176 microphones with a sampling rate of 200 kHz, an optical camera, an integrated thermal imaging camera, data acquisition and analysis system, a display and control unit with touch screen and hardware buttons. |
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The SoundCam Bionic XS microphone array has a diameter of 28 cm and consists of 112 microphones. It is designed for use in the far field. The optimized microphone arrangement guarantees perfect results.
The seven detachable microphone arms are locked and held by magnets and guarantee a very fast setup and a small packing volume. The carrying handle on the device and the integrated rechargeable battery make the SoundCam Bionic XS suitable for mobile use.
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The SoundCam Bionic S microphone array has a diameter of 54 cm and consists of 112 microphones. It is designed for use in the far field and can also be used in the near field from 40 Hz. The optimized microphone arrangement guarantees perfect results.
The seven detachable microphone arms are locked and held by magnets and guarantee a very fast setup and a small packing volume. The carrying handle on the device and the integrated rechargeable battery make the SoundCam Bionic S suitable for mobile use.
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The SoundCam Bionic M microphone array has a diameter of 100 cm and consists of 112 microphones. It is designed for use in the far field and can also be used in the near field from 40 Hz. The optimized microphone arrangement guarantees perfect results.
The seven detachable microphone arms are locked and held by magnets and guarantee a very fast setup and a small packing volume. The carrying handle on the device and the integrated rechargeable battery make the SoundCam Bionic M suitable for mobile use.
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The SoundCam Bionic L microphone array has a diameter of 170 cm and consists of 112 microphones. It is designed for use in the far field and can also be used in the near field from 40 Hz. The optimized microphone arrangement guarantees perfect results.
The seven detachable microphone arms are locked and held by magnets and guarantee a very fast setup and a small packing volume. The carrying handle on the device and the integrated rechargeable battery make the SoundCam Bionic L suitable for mobile use.
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The Wind Array Acoustic Camera with the special wind turbine microphone array suits perfect with its big diameter of 500 cm for very low frequency sound sources.
The 40 microphones are making sound visible and are localizing noise exactly from 50 Hz. The optimized microphone distribution guarantees a perfect sound source localization and a high dynamic range. Although the system has a diameter of 500 cm discounted it can be convoyed in a car. Setup time is about 30 mins. Typical applications are wind power plants, industrial facilities and environmental measurement.
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The CAE Intensity Array is an one dimensional sound intensity measurement system that is able to detect the source of very low frequencies. The output of the analysis is the sound intensity for each probe mapped on a picture. This measurement system is able to map stationary as well as transient noise sources.
Intensity measurement systems have a very high dynamic range as there is no algorithm and no beam pattern limiting the range.
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The 3D Microphone Array is used for spatial 3D Beamforming. The object is located in the array for the 3D Beamforming process. With only one measurement the acoustic behavior of the 3 dimensional object can be displayed.
Depending on the application it can be used between 40 up to 560 microphones. Even the array size can be chosen between 80 cm x 80 cm x 80 cm up to the integration of the microphones in a whole room.
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