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The PicoScope 9400 Series SXRTO Oscilloscope is a high-bandwidth USB oscilloscope designed for repetitive high-speed analogue signals, telecom testing, pulse characterisation and signal-integrity analysis. Depending on the selected model, it provides 5 GHz or 16 GHz analogue bandwidth, four or two analogue channels, 12-bit resolution, 500 MS/s real-time sampling, up to 2.5 TS/s random equivalent-time sampling and 250 kS shared acquisition memory with advanced eye-diagram, jitter and mask analysis..
The PicoScope 9400 Series Sampler-Extended Real-Time Oscilloscopes (SXRTO) combine real-time sampling, random equivalent-time sampling and direct triggering in a compact PC-based oscilloscope.
Unlike conventional sampling oscilloscopes, the PicoScope 9400 Series provides:
The series is intended for engineers working with:
| Model | Channels | Bandwidth | Random Sampling |
|---|---|---|---|
| PicoScope 9402-05 | 2 | 5 GHz | 1 TS/s |
| PicoScope 9404-05 | 4 | 5 GHz | 1 TS/s |
| PicoScope 9402-16 | 2 | 16 GHz | 2.5 TS/s |
| PicoScope 9404-16 | 4 | 16 GHz | 2.5 TS/s |
The series contains both two-channel and four-channel models.
Do not mix these specifications with the newer 9400A Series, which includes 25 GHz and 33 GHz models.
The PicoScope 9400 Series provides model-dependent analogue bandwidth of:
Typical applications include:
Typical rise times are:
The PicoScope 9400 Series is available with:
The channels are digitised simultaneously and support:
Every PicoScope 9400 model provides:
This resolution is maintained during:
Real-time sampling is:
Real-time acquisition supports:
Real-time sampling should not be confused with the much higher effective sampling available through random equivalent-time acquisition.
Random equivalent-time sampling provides:
Equivalent timing resolution reaches:
Random sampling supports:
This acquisition mode is intended only for repetitive waveforms.
The PicoScope 9400 Series provides:
Memory allocation depends on active channels.
Applications include:
The 9400 Series focuses on timing precision rather than extremely deep memory.
The oscilloscope supports:
Users can switch between modes according to signal characteristics.
Real-time mode is used for transient events.
Random mode provides maximum timing resolution for repetitive signals.
Roll mode supports very slow acquisitions.
Auto mode selects the most suitable acquisition automatically.
Trigger capabilities include:
Typical trigger jitter:
Low trigger jitter is important for:
PicoSample software supports:
Applications include:
The PicoScope 9400 Series is designed for analysing:
Pulse measurements include:
PicoSample software includes:
Supported applications include:
An optional hardware module provides:
Maximum recovered data rates:
Clock recovery is a factory-installed option and should not be described as standard.
The PicoScope 9400 Series uses PicoSample, not PicoScope 7.
Software features include:
Standard interfaces include:
The software can control multiple oscilloscopes simultaneously over a network.
The PicoScope 9400 Series is suitable for:
| Specification | PicoScope 9400 Series |
|---|---|
| Product Type | Sampler-Extended Real-Time Oscilloscope |
| Channels | 2 or 4 |
| Analogue Bandwidth | 5 GHz or 16 GHz |
| Vertical Resolution | 12 bits |
| Real-Time Sampling | 500 MS/s per channel |
| Random Equivalent Sampling | Up to 2.5 TS/s |
| Maximum Memory | 250 kS shared |
| Input Impedance | 50 Ω |
| Input Coupling | DC |
| Acquisition Modes | Real Time, Random, Roll, Auto |
| Software | PicoSample |
| Interface | USB and LAN |
| Model | Channels | Bandwidth | Random Sampling |
|---|---|---|---|
| PicoScope 9402-05 | 2 | 5 GHz | 1 TS/s |
| PicoScope 9404-05 | 4 | 5 GHz | 1 TS/s |
| PicoScope 9402-16 | 2 | 16 GHz | 2.5 TS/s |
| PicoScope 9404-16 | 4 | 16 GHz | 2.5 TS/s |
Typical package includes: