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- Description
- Specifications
- Documents
CERTIFIED PRE-OWNED
Key performance specifications
- 100 MHz, 300 MHz, and 500 MHz bandwidth models
- 2 or 4 analog channel models
- Sample rates up to 5 GS/s real time on all channels
- 10k record length on all channels
- 3,600 wfms/s continuous waveform capture rate
- Suite of advanced triggers
Key features
- Front-panel USB host port for easy storage and transfer of measurement data
- 25 automatic measurements
- FFT standard
- Multiple language user interface
- WaveAlert® automatic waveform anomaly detection
- TekProbe® interface supports active, differential, and current probes for automatic scaling and units
Portable design
- Lightweight design (only 7 lb./3.2 kg) for easy transport
- Optional internal battery operation provides up to three hours without line power
Application modules for specialized analysis
- Advanced analysis module
- Limit testing module
- Telecommunications mask testing module
- Extended video module
Applications
- Digital design and debug
- Video installation and service
- Power supply design
- Education and training
- Telecommunications mask testing
- Manufacturing test
- General bench testing
DPOs provide greater level of insight into complex signals
The TDS3000C Series offers fast waveform capture rates on a continuous basis that save you 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 has been 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.
