L2B Power Amplifier

L2B Power Amplifier

L2B Power Amplifier

Product catalog summary
Introduction
Acoustic waves are crucial for underwater communication, ocean exploration, and military detection. However, they face challenges such as attenuation, multipath effects, and ambient noise, which affect transmission range and signal quality. Enhancing acoustic signal performance is essential for effective underwater communication systems.
ATA-L Series Power Amplifier
The ATA-L Series Power Amplifier is recommended for underwater communication testing. It features a matching-layer design and four-quadrant power-amplifier output, improving transmittance to 60%. It supports low-frequency transducers for better signal penetration and uses a high-sensitivity hydrophone array with adaptive equalization to reduce multipath interference. The amplifier offers broadband amplification, modular architecture, high-power drive, precise control, and stable operation with low harmonic distortion. It includes protection mechanisms and supports customized impedance matching.
Technical Specifications
  • Maximum Output Power: 6500VA
  • Bandwidth (-3dB): 200Hz~120kHz
  • Maximum Output Voltage: 1200Vrms
  • Eight switchable voltage output ranges
  • Real-time readback of RMS output voltage and current
Challenges and Innovations
The underwater environment is complex, and traditional acoustic methods face limitations in energy utilization and directivity control. The study explores new acoustic mechanisms and materials, such as acoustic metamaterials and intelligent transducer arrays, to improve sound propagation. The goal is to achieve directional focusing, accurate path control, and loss reduction for next-generation underwater communications and sensing.
Case Studies
Case 1 & 2: Experimental validation of a high-efficiency non-local underwater acoustic metasurface. Traditional sensor arrays have limitations, so an experiment was conducted to evaluate angular-resolution capability using a home-built receiver. The system uses a transmitter and receiver, with a CT75 transducer emitting a 75 kHz sinusoidal pulse. The acousto-optic effect is used to reconstruct acoustic information, providing practical support for acoustic-field investigations.
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Catalog excerpts

L2B Power Amplifier-1

UNDERWATER COMMUNICATION TEST SOLUTION Underwater Communication Test Solution Acoustic waves serve as the primary carrier of information and energy in underwater environments, and are widely employed in ocean-resource exploration, seafloor mapping, underwater communications, and military detection. Yet, during propagation, underwater acoustic signals are vulnerable to attenuation, multipath effects, and ambient noise, which limit transmission range and degrade the signal-to-noise ratio. Consequently, high-power, high-fidelity excitation and reception of acoustic signals have become pivotal for enhancing the performance of underwater detection and communication systems. ATA-L Series Power Amplifier • Maximum Output Power 6500VA Wide-band, high-power Eight switchable voltage output ranges • Maximum Output Voltage 1200Vrms Real-time readback of RMS output voltage and current | Test Solution • Matching-layer design combined with four-quadrant power-amplifier output raises transmittance to 60%. • Driving low-frequency transducers enhances signal penetration. • A high-sensitivity hydrophone array, coupled with adaptive equalization, suppresses multipath interference. • Broadband amplification safeguards signal integrity in underwater communications. • Modular architecture (ATA-ML100 footprint reduced by 40%). • High-power drive: kilovolt-level output with exceptional amplitude- and phase-frequency response for high-power performance. • Precise control: digitally-controlled gain adjustment to meet complex underwater acoustic simulation demands. • Stable & reliable: harmonic distortion suppressed to 0.1 %, enabling long-duration continuous operation. • Flexible adaptation: supports customized impedance matching to guarantee output characteristics; compatible with all types of transducers and receiving equipment. • Protection mechanisms: comprehensive safeguards including over-current, over-voltage, and over-temperature protection. O Bd. 12, CCCC Science andTechnology City, Wei26Road, High-tech Zone, Xi'an,Shaanxi Province

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L2B Power Amplifier-2

UNDERWATER COMMUNICATION TEST SOLUTION Case 1: Experimental validation of a high-efficiency non-local underwater acoustic metasurface The underwater environment is intrinsically complex and variable. Acoustic waves, as the primary information carriers, have long struggled with limited transmission efficiency and precise controllability. Conventional acoustic approaches encounter bottlenecks in energy utilization, directivity control, and adaptability to intricate channels. This study centers on the high-efficiency manipulation of underwater acoustic signals, aiming to uncover novel acoustic mechanisms...

 Open the catalog to page 2

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