The Rohde & Schwarz RTM3002 with integrated RTM-B1 mixed-signal functionality combines a high-performance oscilloscope and logic analyzer within a single instrument. Built around Rohde & Schwarz's "Power of Ten" architecture, the platform features a custom 10-bit ADC, deep memory acquisition, and a large 10.1-inch capacitive touchscreen designed for modern electronics development and troubleshooting.
The oscilloscope provides two analogue input channels with 100 MHz bandwidth and sampling rates up to 5 GSa/s in interleaved operation. Its custom 10-bit converter delivers four times the vertical resolution of conventional 8-bit oscilloscopes, enabling engineers to identify low-level signal details, power supply ripple, switching noise, and transient events that may otherwise be hidden.
A major advantage of the RTM3000 platform is its exceptionally deep memory architecture. Standard acquisition memory reaches 40 Mpoints per channel and up to 80 Mpoints in interleaved operation, allowing long-duration captures while maintaining high timing resolution. Combined with waveform acquisition rates exceeding 64,000 waveforms per second, the instrument is highly effective for identifying intermittent faults and sporadic signal anomalies.
The integrated RTM-B1 mixed-signal option adds 16 digital logic channels, allowing synchronous time-correlated analysis of analogue and digital signals. This capability is particularly valuable when debugging microcontrollers, FPGAs, embedded processors, digital interfaces, and communications systems where interactions between analogue and digital domains must be observed simultaneously.
The platform can be expanded with protocol triggering and decoding for I2C, SPI, UART/RS-232/RS-422/RS-485, CAN, LIN, I2S, ARINC 429, and MIL-STD-1553. Optional waveform generation, pattern generation, power analysis, and advanced application packages further extend the instrument's capabilities for research, development, validation, and manufacturing environments.
The 10.1-inch WXGA capacitive touchscreen provides one of the largest displays in its class, enabling simultaneous viewing of analogue waveforms, digital channels, protocol decodes, FFT measurements, and automated analysis results. Combined with dedicated front-panel controls and Rohde & Schwarz probe interface technology, the RTM3002 serves as a comprehensive engineering workstation for mixed-signal development and troubleshooting.
Keywords: Rohde & Schwarz RTM3002, RTM3K-52M, RTM-B1, mixed signal oscilloscope, 16-channel logic analyzer, embedded systems oscilloscope
| Specification | RTM3002 + RTM-B1 |
|---|---|
| Oscilloscope Channels | 2 |
| Logic Channels | 16 |
| Bandwidth | 100 MHz |
| Rise Time | Approx. 3.5 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 | >64,000 Waveforms/s |
| Vertical Sensitivity | 500 µV/div to 10 V/div |
| Input Impedance | 1 Mohm or 50 ohm |
| FFT Spectrum Analysis | Standard |
| Digital Input Channels | 16 |
| Maximum Logic Input Frequency | 400 MHz |
| Logic Memory Depth | 40 Mpoints per Digital Channel |
| Protocol Analysis | Optional |
| 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 |
| Weight | Approx. 3.3 kg |
| Dimensions | 390 × 220 × 152 mm |
The RTM3002 + RTM-B1 is ideally suited for FPGA development, embedded software debugging, microcontroller design, serial communications analysis, industrial automation systems, mixed-signal circuit validation, power electronics development, protocol analysis, laboratory research, manufacturing diagnostics, and advanced electronics engineering applications requiring simultaneous analogue and digital signal analysis.
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