| Figure 1: Jitter is short-term variation of a signal with respect to its ideal position in time |
You need to test, we're here to help.
You need to test, we're here to help.
23 December 2013
Back to Basics: Jitter
18 December 2013
Oscilloscope Basics: Trigger Holdoff
As discussed in an earlier post, triggering is the means by which we can coax an oscilloscope into showing us what we're looking for in an input signal, and indeed even simply to display it in a stable fashion. Two of the most basic triggering types are edge triggers and pattern triggers. The latter applies to mixed-signal instruments, allowing users to trigger on a logical combination of analog and digital inputs.
12 December 2013
Back to Basics: Probes (Part IV)
![]() |
| Figure 1: An example of differential probes measuring from test point to test point. |
04 December 2013
Back to Basics: Probes (Part III)
| Figure 1: Active oscilloscope probes sport high resistance and low capacitance at their tips, but terminate into a scope's 50Ω input. |
27 November 2013
Video: Zooming In On Waveforms
Many modern oscilloscopes offer the ability to zoom in on select portions of a waveform trace, allowing users a much more detailed look at whatever anomalies may (or may not) be present. Zooming is a handy feature on any oscilloscope, but it's even handier if you happen to be using a Teledyne LeCroy HDO. These instruments bring 12 bits of vertical resolution to the table for even more detail and cleaner, crisper waveforms than any legacy 8-bit oscilloscope.
So, without further delay, here's a short tutorial video on how to implement zoom traces on an HDO.
So, without further delay, here's a short tutorial video on how to implement zoom traces on an HDO.
20 November 2013
Back to Basics: Probes (Part II)
In a previous post, we provided some basic information about oscilloscope probes, including a brief survey of the different types and what can happen when the probe is connected to a DUT. In this installment, let's continue along those lines and take a closer look at passive probes.
13 November 2013
Back to Basics: Probes (Part I)
![]() |
Figure 1: An example of an active
oscilloscope probe
|
Subscribe to:
Posts (Atom)

