ATA-314 Power Amplifier

ATA-314 Power Amplifier

ATA-314 Power Amplifier

Product catalog summary
Introduction
The document discusses solutions for ultrasonic non-destructive testing, focusing on the ATA-3000 Series Power Amplifier and its applications in EMC (Electromagnetic Compatibility) testing. It highlights the challenges posed by modern electronic devices and the need for rigorous EMC testing to ensure compliance with international standards.
Recommended Products and Test Solutions
The ATA-3000 Series Power Amplifier is recommended for its four-quadrant output, high-fidelity signal generation, and high-current injection capabilities. It is suitable for cross-industry, multi-domain immunity, and emission testing, offering high voltage and current outputs, digital gain control, and protection features.
Solution Advantages
  • Enhanced load adaptability and stable interference stimulus.
  • High voltage and current outputs for diverse EMC scenarios.
  • Precise control and accurate data acquisition.
  • Protection against overvoltage, short-circuit, and over-temperature.
EMC Testing Overview
EMC testing is crucial due to the proliferation of electronic devices and complex electromagnetic environments. It ensures devices do not cause or succumb to interference. EMC testing is divided into EMI (Electromagnetic Interference) and EMS (Electromagnetic Susceptibility) testing, with different standards for various industries.
Case Studies
Case 1: CS101 Conducted Susceptibility Test
This test involves injecting an amplified signal into the power port of the Equipment Under Test (E.U.T.) to verify compliance with EMC limits. The ATA-3000 series amplifier enhances the signal to excite the E.U.T.'s electromagnetic response, allowing accurate data capture.
Case 2: Helmholtz Coil Testing
Helmholtz coils are used for calibrating magnetic-field sensors and EMC evaluations. The power amplifier provides a high-accuracy drive signal to generate a stable magnetic field, crucial for sensor calibration and EMC tests.
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Catalog excerpts

ATA-314 Power Amplifier-1

START SIMULATION Build Cash Estimated Time: 231 The explosive growth in the number of modern electronic devices and the increasingly complexelectromagnetic environment have introduced significant interference issues into our daily lives and industrial operations. With the widespread adoption of wireless communications, the Internet of Things, and automotive electronics, electromagnetic interference among devices can lead to severe consequences—such as misdiagnosis in medical equipment, malfunctions in automotive electronic systems, or disruptions in industrial control signals. To ensure the compliance of electronic products, relevant EMC (Electromagnetic Compatibility) testing standards have been established, primarily divided into EMI (Electromagnetic Interference) testing and EMS (Electromagnetic Susceptibility) testing. Different industries follow different testing standards, and providing a stable, high-fidelity interference signal has become a key factor in successfully conducting EMC tests. | Recommended Products ATA-3000 Series Power Amplifier • Maximum Output Power 1000Wp • Maximum Output Current 20Ap • Bandwidth (-3dB) DC~120kHz • Arbitrary waveform amplification • Maximum Output Voltage 160Vpp • Adjustable voltage gain • Four-quadrant output for enhanced load adaptability • High-fidelity signal generation delivers a stable, repeatable interference stimulus • High-current injection replicates severe disturbances found in automotive and industrial systems • Cross-industry, multi-domain immunity and emission testing • Output: High voltage and high current to meet diverse EMC test scenarios • Control: Digital gain adjustment for precise control of interference signal strength • Measurement: Voltage and current monitoring for accurate test data acquisition • Protection: Overvoltage, short-circuit, and over-temperature protection Bd. 12, CCCC Science andTechnology City, Wei26Road, High-tech Zone, Xi'an,Shaanxi Province

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ATA-314 Power Amplifier-2

Case 1: CS101 Conducted Susceptibility Test As electronic equipment grows more sophisticated, international standards mandate rigorous EMC testing to guarantee that devices neither succumb to external disturbances nor pollute the electromagnetic environment themselves. The CS101 conducted-susceptibility test is a textbook example: it recreates powerful, real-world interference by injecting an amplified signal—via a coupling transformer—into the power port of the Equipment Under Test (E.U.T.) and then verifying whether the unit remains within EMC limits. Serving as the “energy hub” of the experiment,...

 Open the catalog to page 2

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