Análisis del bucle de control

Análisis del bucle de control

Modulación en el convertidor de potencia

La modulación por ancho de pulsos (PWM), modulación de pulsos en duración (PDM) o modulación de frecuencia están en el centro de casi cualquier fuente conmutada o motor industrial. Analizar y optimizar la función subyacente de modulación es importante para evaluar el funcionamiento del bucle de control. Los osciloscopios de Rohde & Schwarz ofrecen funciones dedicadas para el análisis, las cuales son perfectas para esta tarea.

Your power supply control loop test challenge

Getting the happy medium stimulus signal level. If the injection level is too low, the gain will be too high, causing noisy results at low frequencies. On the other hand, some control loops are very sensitive to the injected level; a too-high level results in a too-low gain, causing nonlinearities or large signal effects.

In addition, the necessary stimulus signal level may change with frequency. Typically, a higher signal level is needed at low frequencies, and a lower signal level is needed at higher frequencies.

For control loop signals with a voltage measured in millivolts and a frequency in the kilohertz range, probes must have a suitable low noise floor to support high sensitivity and low signal-to-noise ratios.

Impedance in the loop forward direction must be much larger than in the backward direction in order not to change the behavior of the circuit

Our control loop analysis test solution

4 families of Rohde & Schwarz oscilloscopes all offer features, functions and performance that make them ideal for frequency response analysis for power electronics: the R&S®MXO4, the R&S®RTB2000, R&S®RTM3000, and R&S®RTA4000.

R&S®MXO4 includes market-leading 4.5 million acquisitions per second, resolution provided by the 12-bit analog-digital converter, and 0.00001 vertical division trigger sensitivity, based on the unique R&S digital trigger, now available in the mid class.

All three RTx oscilloscope families feature a 10.1" capacitive touchscreen with 1280 × 800 resolution, a 10-bit AD converter, 10 s boot time, 16 digital channels (optional) and a wide range of optional instruments such as logic, spectrum and protocol analyzers, arbitrary waveform and pattern generators, and a digital voltmeter.

The R&S®RTx-K36 option for any of these oscilloscopes provides Bode plot analysis; the oscilloscope’s internal signal generator provides the stimulus signal (10 Hz to 25 MHz). Low attenuation probes are available for all these oscilloscopes.

Products

R&S®MXO 4

Next generation oscilloscope for accelerated insight

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R&S®RTB2000

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R&S®RTM3000

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R&S®RTA4000

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Benefits of our analysis test solution

No need for an external signal source; the wave form generator built into the oscilloscope provides the stimulus signal (10 Hz to 25 MHz).

Running the analysis to investigate the stability is simple and straightforward, with a Bode plot function. The oscilloscope performs all the necessary parameter changes (with option K36). Simply turn the oscilloscope rotary knob to adjust the stimulus signal frequency, and observe directly on the oscilloscope screen how this affects the gain margin and phase margin.

A rigorous measurement procedure, especially since the optimum stimulus signal level may change with frequency. Use amplitude profiling to optimally match the signal level to the given frequency. Up to 16 steps in the signal level are supported.

Ideal probes for all supported oscilloscopes

Do you have further questions regarding our control loop analysis solutions? Please contact us.

Soluciones de prueba para análisis de la estabilidad

Finding irregular effects in control loop design without compromise

The R&S®MXO 5 oscilloscope is a perfect choice for identifying irregular events in the control loop of power converters. Its digital trigger technology enables the user to define complex trigger events to isolate the root cause efficiently.

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Prueba para el controlador de convertidor de potencia

Los diagramas de Bode son una importante herramienta para verificar la estabilidad del bucle de control de fuentes conmutadas. En la actualidad, esta función la ofrecen también los osciloscopios. Esta información sobre la aplicación muestra cómo.

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Trucos y consejos para la prueba de estabilidad

Esta nota de aplicación describe cómo medir la estabilidad del bucle de control en fuentes conmutadas. Aborda el tema principal y las aplicaciones prácticas mientras guía al usuario a través del procedimiento. La medición es ilustrada con un módulo convertidor reductor de referencia de Rohde & Schwarz, diseñado junto con Texas Instruments.

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Estabilidad del bucle de control

Este webinar trata sobre la medición de la estabilidad del bucle de control en fuentes de poder conmutadas. Se discute sobre los principales conceptos de medición, enfatizando los temas principales y describiendo la medición desde un punto de vista práctico. También presenta configuraciones de medición adecuadas y sugerencias sobre diferenciadores clave para soluciones.

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