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| Figure 1: A fundamental underlying assumption of a discrete Fourier transform is a repetitive waveform |
You need to test, we're here to help.
You need to test, we're here to help.
30 January 2019
Getting From the Time Domain to the Frequency Domain
19 December 2018
Using 50-Ohm Coax From DUT to Oscilloscope
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| Figure 1: A coaxial cable presents high impedance at low frequencies but acts as a transmission line at higher frequencies |
12 December 2018
Squeezing More Bandwidth From a 10x Passive Probe
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| Figure 1: Shown is a comparison of inherent oscilloscope noise and noise at the shorted tip of a 10x passive probe |
28 November 2018
10x Passive Probes and Cable Reflections
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| Figure 1: With unequal impedances at either end of the coax, are cable reflections a concern in 10x passive probes? |
08 November 2018
How Tip Inductance Impacts a Probing System's Bandwidth
01 November 2018
How Equalization Works in 10x Passive Probes
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| Figure 1: The adjustable equalization circuit on the oscilloscope end of the coaxial cable compensates for the 10x passive probe's inherent low-pass filter characteristics |
24 October 2018
Secrets of the 10x Passive Probe
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| Figure 1: The 10x passive probe becomes a better measurement tool when we understand its limitations |
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