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| Figure 1: A coaxial cable presents high impedance at low frequencies but acts as a transmission line at higher frequencies |
You need to test, we're here to help.
You need to test, we're here to help.
19 December 2018
Using 50-Ohm Coax From DUT to Oscilloscope
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 |
10 October 2018
Putting Probes in Perspective
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| Figure 1: Probe, cable, and oscilloscope form a system that makes or breaks the accuracy of signal acquisitions |
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