ATA-7100 High Voltage Amplifier

ATA-7100 High Voltage Amplifier

ATA-7100 High Voltage Amplifier

Product catalog summary
Introduction
The document discusses solutions for ultrasonic non-destructive testing, focusing on the ATA-7000 Series High Voltage Amplifier and its applications in dielectric elastomer technology. Dielectric elastomers are highlighted as innovative materials that convert electrical energy into mechanical work, with significant potential in various fields such as aerospace and biomedical engineering.
Specifications
The ATA-7000 Series High Voltage Amplifier offers high-voltage output suitable for most applications, with real-time feedback regulation and AI noise-separation algorithms ensuring THD ≤ 0.1%. It is fully programmable and remotely controllable, allowing integration with automated test platforms. The amplifier supports broadband amplification, high-resolution voltage-gain adjustment, and four-quadrant operation, making it versatile for different load types. Key specifications include a bandwidth of DC~100kHz and a maximum output voltage of 40kVpp.
Solution Advantages
The amplifier provides comprehensive instrument protection, including over-current trip and current-limited output. It is capable of arbitrary waveform amplification and has built-in voltage/current monitoring. These features make it ideal for driving dielectric-elastomer actuators, which require precise control of waveform, frequency, and phase.
Dielectric Elastomer Solution
Dielectric elastomers function as "artificial muscles," changing shape under a high-voltage electric field. The power amplifier is crucial in boosting control signals to high voltages, enabling applications like biomimetic robots and wearable medical sensors. Current challenges include the need for wide bandwidth and protection against dielectric breakdown. Future advancements in semiconductor technology and elastomer chemistry are expected to enhance the capabilities of soft robots and medical devices.
Case Studies
Two case studies are presented: an electromechanical performance study of silicone-rubber dielectric-elastomer composites and a dielectric-elastomer actuation experiment. In these experiments, the amplifier acts as the "muscle engine," converting low-level signals into high-voltage outputs that drive elastomer deformation. The efficiency and stability of the amplifier's output are critical for achieving desired mechanical responses.
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Catalog excerpts

ATA-7100 High Voltage Amplifier-1

Dielectric elastomers act as "artificial muscles": a high-voltage electric field redistributes surface charges and the film changes shape. The power amplifier is the indispensable driver—it boosts a low-level control signal to hundreds or even tens of kilovolts while precisely tuning waveform, frequency and phase, enabling soft grippers for biomimetic robots, flapping-wing micro-air vehicles, wearable medical sensors, etc. Present bottlenecks are the wide bandwidth many materials demand and the risk of dielectric breakdown at high fields. Amplifiers must therefore combine robust over-voltage protection with high slew-rate capability. Future advances—wider-bandgap semiconductors, new elastomer chemistries and AI-driven adaptive control—will push soft robots and implantable medical devices from laboratory curiosities to everyday reality. | Recommended Products ATA-7000 Series High Voltage Amplifier • Maximum Output Voltage 40kVpp • Four-quadrant operation • Arbitrary waveform amplification • Adjustable voltage gain • Built-in voltage/current monitoring | Test Solution • High-voltage output covering the vast majority of high-voltage applications • Real-time feedback regulation + AI noise-separation algorithm, holding THD < 0.1 % • Fully programmable and remotely controllable for seamless integration with automated test platforms • Broadband amplification preserving waveform fidelity at high voltage • High-resolution multi-step voltage-gain adjustment for ultra-fine output accuracy • Four-quadrant operation drives any capacitive, inductive or resistive load • High-voltage output delivers the excitation energy demanded by dielectric-elastomer actuators • Wide selection of frequency, voltage and current ranges • Numerically-controlled gain for fine, step-wise adjustment of drive voltage • Comprehensive instrument protection: over-current trip and current-limited output O Bd. 12, CCCC Science andTechnology City, Wei26Road, High-tech Zone, Xi'an,Shaan

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ATA-7100 High Voltage Amplifier-2

Dielectric Elastomer — Solution Case 1: Electromechanical Performance Study of Silicone-Rubber DielectricElastomer Composites As human productivity continues to advance, conventional mechanical materials often prove unsuitable for specialized applications— their excessive stiffness can hinder performance or even cause damage. There is therefore an urgent demand for new materials that can complement metals and upgrade overall system capability. Dielectric elastomers, a class of smart soft materials that directly convert electrical energy into mechanical work, have become the focus of intense research....

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