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R&S RTB-K36 Bode Plot Analysis Range: Up to 25 MHz Source: Internal Generator for RTB2000 models (software license)

Key Features and Functions

  • Bandwidth: 10 Hz to 25 MHz
  • Test modes: Fixed or custom amplitude profile
  • Points per decade: Logarithmic gain and linear phase
  • Analysis: Waveform cursors and tabular view of test results
Price
 
kr 4.983*
* excluding VAT free shipping (Denmark)

Product Number:

RS-1335_8007_03

Manufacturer:

Rohde & Schwarz

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RTB-K36 Frequency response analysis option (Bode plot), for oscilloscopes RTB2000 (1335.8007.03)

With the R & S®RTB-K36 frequency response analysis (Bode plot) option, you can quickly and easily perform low-frequency response analyzes with your oscilloscope. The device characterizes the frequency response of various electronic components including passive filters and amplifier circuits. In the case of switching power supplies, the control loop behavior and the supply voltage penetration are measured. The Frequency Response Analysis option uses the waveform generator integrated in the oscilloscope to generate stimulus signals in the range from 10 Hz to 25 MHz. The oscilloscope measures the relationship between the stimulus signal and the output signal of the test object at each test frequency and applies the amplification and phase logarithmically.

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Description
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Query on the Item

RTB-K36 Frequency response analysis option (Bode plot), for oscilloscopes RTB2000 (1335.8007.03)

With the R & S®RTB-K36 frequency response analysis (Bode plot) option, you can quickly and easily perform low-frequency response analyzes with your oscilloscope. The device characterizes the frequency response of various electronic components including passive filters and amplifier circuits. In the case of switching power supplies, the control loop behavior and the supply voltage penetration are measured. The Frequency Response Analysis option uses the waveform generator integrated in the oscilloscope to generate stimulus signals in the range from 10 Hz to 25 MHz. The oscilloscope measures the relationship between the stimulus signal and the output signal of the test object at each test frequency and applies the amplification and phase logarithmically.

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