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Tektronix TDS3034C

Digital Phosphor Oscilloscope, 4-Ch, 300MHz, 2.5 GS/s, TDS3000 Series

Mfr. Part #: TDS3034C / RS Stock #: 70136873

Tektronix

Tektronix TDS3034C

Mfr. Part #: TDS3034C
RS Stock #: 70136873

Description

Digital Phosphor Oscilloscope, 4-Ch, 300MHz, 2.5 GS/s, TDS3000 Series

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$16,000.00

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Product Specifications

Product Attribute
Attribute Value
Bandwidth
300 MHz
Configuration
Bench ; Portable
Display Type
TFT Color
Family Name
TDS Oscilloscopes Family
Memory
10 kpts
Number of Channels
4
Sample Rate
2.5 GS/s
Type
DSO - Digital Storage

Overview

Performance in an Affordable Package




The TDS3000C Series digital phosphor oscilloscopes (DPO) provide you with the performance you need at a price you can afford. Bandwidths range from 100 MHz to 500 MHz, with up to 5 GS/s sample rates for accurate representation of your signal.


DPOs Provide a Greater Level of Insight into Complex Signals



To solve a problem, first you need to see it. The TDS3000C Series combines 3,600 wfms/s continuous waveform capture rate and real-time intensity grading so you can see the problem and solve it. Fast waveform capture rates on a continuous basis save time by quickly revealing the nature of faults so advanced triggers can be applied to isolate them. Real-time intensity grading highlights the details about the history of a signal's activity, making it easier to understand the characteristics of the waveforms you've captured. Unlike other comparable oscilloscopes, the history remains even after the acquisition is stopped.



Quickly Debug and Characterize Signals with DRT Sampling Technology and sin(x)/x Interpolation




The TDS3000C Series combines unique digital real-time (DRT) sampling technology with sin(x)/x interpolation to allow you to accurately characterize a wide range of signal types on all channels simultaneously. With the TDS3000C Series there is no change in sampling rate when additional channels are turned on, unlike other comparable oscilloscopes. This sampling technology makes it possible to capture high-frequency information, such as glitches and edge anomalies, that elude other oscilloscopes in its class, while sin(x)/x interpolation ensures precise reconstruction of each waveform.