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| Figure 1: A probe's impedance varies with frequency |
You need to test, we're here to help.
You need to test, we're here to help.
14 December 2017
Probing Techniques and Tradeoffs (Part V): Probe Loading
06 December 2017
Probing Techniques and Tradeoffs (Part IV)
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| Figure 1: Applying bandwidth filters to a 2.5-GHz clock signal clearly shows the effect of bandwidth on rise time |
27 November 2017
Probing Techniques and Tradeoffs (Part III)
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| Figure 1: Bandwidth is defined as the frequency at which the ratio of the displayed amplitude to the input amplitude is -3 dB (or 0.707) |
The frequency at which the ratio of the displayed amplitude to the input amplitude is -3 dB (or 0.707).
This is known as the "-3 dB point," or the half-power point (Figure 1). At this frequency, a sine-wave input signal is attenuated to 70.7% of its true amplitude. Any higher frequencies will likely be distorted on the display, making accurate measurements and calibration impossible.
20 November 2017
Probing Techniques and Tradeoffs (Part II)
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| Figure 1: A snapshot of available probes from Teledyne LeCroy |
15 November 2017
Probing Techniques and Tradeoffs (Part I)
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| Figure 1: Probes are the signal's gateway to the oscilloscope |
30 October 2017
The Power Integrity Measurement Mindset
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| Figure 1: The holistic view of power integrity |
24 October 2017
Automotive Ethernet Compliance: Test Equipment Requirements
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| Figure 1: The TF-ENET-B Ethernet test fixture offers all necessary interconnects for compliance test |
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