Easily measure power switching, analyze control loop modulation, and test power harmonics!
<Main Features and Characteristics> ■ Analysis of switching devices with automatic measurement function ■ Identification of power losses with color-coded overlays ■ Analysis of control loop and time domain response ■ Testing of power and harmonics in accordance with IEC 61000-3-2 ■ Setup tools to reduce causes of measurement errors ■ Total harmonic distortion table showing frequency contributions ■ B-H curve indicating saturation voltage of magnetic devices <Quick measurement and analysis of power conversion circuit characteristics> <Measurement Parameters> <Automatic measurement of switching devices> <Control loop response analysis> <Testing of power and harmonics> <Compatible with multiple oscilloscope platforms> <Power device analysis> <Safety Operating Area (SOA)> <B-H hysteresis curve> <Control loop analysis> <Line power analysis>
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<Quick Measurement and Analysis of Power Conversion Circuit Characteristics> By using the Switching Power Supply Analysis Option (PWR), you can easily measure important power switching devices, analyze control loop modulation, and test power harmonics using a dedicated user interface and automatic measurement functions. Additionally, setting up voltage and current inputs can be done quickly and easily, and measurement operations can be executed with the push of a button. <Measurement Parameters> You can utilize tools that help reduce the causes of measurement errors, and depending on the measurement parameters, you can obtain detailed information for individual cycles or average values over multiple cycles. <Automatic Measurement of Switching Devices> The on/off transition region and conduction region of power devices are identified by color-coded waveform overlays. The measurement parameter table automatically calculates each element of the device's power loss and their total. <Control Loop Response Analysis> The modulation analysis function provides insights into understanding the control of loop responses to important events (such as soft start performance of the power supply and step responses to line and load changes).
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■LabMaster 9Zi-A Series 13–45GHz ■WaveMaster 8Zi-A Series 4–45GHz ■SDA 8Zi-A Series 4–45GHz ■DDA 8Zi-A Series 4–45GHz ■WavePro 7Zi-A Series 1.5–6GHz ■SDA 7Zi-A Series 1.5–6GHz ■DDA 7Zi-A Series 1.5–6GHz ■WaveRunner 6Zi Series 400MHz–4GHz ■WaveRunner HRO 6Zi Series 400–600MHz ■WaveRunner Xi-A Series 400MHz–2GHz ■HDO6000 Series 350MHz–1GHz ■HDO4000 Series 200MHz–1GHz ■WaveSurfer MXs-B Series 200MHz–1GHz ■MSO MXs-B Series 400MHz–1GHz
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Teledyne LeCroy Japan, Inc. was established on September 14, 1990, as a wholly-owned subsidiary of Teledyne LeCroy Corporation (New York, USA). We have set up sales offices and support centers in Tokyo and Osaka to meet the needs of our customers in Japan. On November 16, 2001, we obtained ISO 9001:2000 certification. We aim to contribute to our customers' product development and problem-solving by providing technical documentation, analysis software, and technical seminars in Japanese free of charge.