The Rohde & Schwarz RTM3002 configured with the RTM-B223 bandwidth upgrade and RTM-B1 mixed-signal option provides a powerful mixed-domain analysis platform combining a 350 MHz oscilloscope with a fully integrated 16-channel logic analyzer. This configuration is particularly suited for embedded systems development, FPGA debugging, industrial automation, power electronics, communications engineering, and advanced electronics design verification.
The RTM3000 architecture is built around Rohde & Schwarz's "Power of Ten" concept, incorporating a custom 10-bit analog-to-digital converter that provides four times the vertical resolution of conventional 8-bit oscilloscopes. The higher resolution enables engineers to identify small signal details, switching ripple, transient disturbances, power integrity issues, and noise components that may otherwise remain hidden within complex waveforms.
With a maximum real-time sampling rate of 5 GSa/s and acquisition memory of up to 80 Mpoints in interleaved operation, the RTM3002 captures long signal sequences while maintaining high timing resolution. Standard memory depth reaches 40 Mpoints per channel, enabling detailed analysis of burst signals, communications traffic, switching events, and long-duration acquisitions without compromising sample density.
The integrated RTM-B1 mixed-signal option adds 16 digital channels with up to 400 MHz logic bandwidth and sampling rates up to 2.5 GSa/s. This allows synchronous analysis of analogue and digital signals, making the platform ideal for debugging microcontrollers, FPGAs, DSP systems, memory interfaces, serial buses, and mixed-signal embedded designs. Multiple parallel buses can be analysed simultaneously while maintaining full correlation between analogue and digital events.
Advanced triggering and protocol decoding options support I2C, SPI, UART/RS-232/RS-422/RS-485, CAN, LIN, I2S, ARINC 429, and MIL-STD-1553 communications. Combined with FFT spectrum analysis, segmented memory, mask testing, long acquisition modes, waveform mathematics, and optional power analysis applications, the RTM3002 serves as a complete engineering analysis platform.
The large 10.1-inch WXGA touchscreen display provides ample workspace for viewing analogue channels, logic channels, decoded protocols, FFT results, and measurement statistics simultaneously. Fast acquisition rates exceeding 64,000 waveforms per second help reveal intermittent faults and sporadic signal anomalies that can be difficult to capture with conventional instruments.
Keywords: Rohde & Schwarz RTM3002, RTM-B223, RTM-B1, RTM3K-32M, 350 MHz mixed signal oscilloscope, 16-channel logic analyzer, FPGA debugging oscilloscope
| Specification | RTM3002 + RTM-B223 + RTM-B1 |
|---|---|
| Oscilloscope Channels | 2 |
| Logic Channels | 16 |
| Bandwidth | 350 MHz |
| Rise Time | Approx. 1 ns |
| Maximum Sample Rate | 5 GSa/s Interleaved |
| Sample Rate Per Channel | 2.5 GSa/s |
| ADC Resolution | 10 Bit |
| High Resolution Mode | Up to 16 Bit |
| Standard Memory Depth | 40 Mpoints per Channel |
| Maximum Memory Depth | 80 Mpoints Interleaved |
| Segmented Memory | Up to 400 Mpoints |
| Waveform Capture Rate | Up to 64,000 Waveforms/s |
| Fast Segmented Acquisition | Up to 2,000,000 Waveforms/s |
| Vertical Sensitivity | 500 µV/div to 10 V/div |
| Input Impedance | 1 Mohm or 50 ohm |
| FFT Spectrum Analysis | Standard |
| Mixed Signal Capability | Integrated RTM-B1 |
| Digital Channels | 16 |
| Logic Bandwidth | 400 MHz |
| Logic Sample Rate | Up to 2.5 GSa/s |
| Logic Input Impedance | 100 kohm ±2% |
| Parallel Bus Analysis | Up to 4 Buses |
| Protocol Analysis | Optional |
| Arbitrary Waveform Generator | Optional RTM-B6 |
| Pattern Generator | Optional RTM-B6 |
| Power Analysis | Optional |
| Display Size | 10.1 Inch |
| Display Resolution | 1280 × 800 WXGA |
| Touchscreen | Capacitive Multi-Touch |
| Interfaces | USB Host, USB Device, LAN |
| Dimensions | 390 × 220 × 152 mm |
| Weight | Approx. 3.3 kg |
The RTM3002 + RTM-B223 + RTM-B1 is ideally suited for FPGA development, embedded software debugging, microcontroller validation, serial communications analysis, industrial automation systems, power electronics design, protocol verification, mixed-signal troubleshooting, laboratory research, manufacturing diagnostics, and advanced electronics engineering applications requiring simultaneous analogue and digital analysis.
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