The BMO100-EDU has been designed specifically for vocational schools, colleges, universities and other educational institutions. It combines the Magnova BMO100, the BMO-AWG function generator and the Batronix Demo Board into a complete environment for teaching modern measurement and analysis methods.
Signal generation, measurement and analysis work seamlessly together. The demo board guides students step by step through the key functions of modern digital oscilloscopes, while the integrated function generator provides reproducible test signals for laboratory exercises, practical training and research projects. The BMO-AWG further extends the Magnova with a fully integrated 90 MHz function generator and automated Bode plot measurements within the same user interface.
With its attractive package price, the BMO100-EDU provides an accessible entry into the Magnova platform while offering excellent conditions for education, training and applied research.
| Features | Magnova BMO100-EDU |
|---|---|
| Channels | 4 |
| Bandwidth | 100 MHz (upgradable to 350 MHz) |
| Sample rate | 1.6 GSa/s when using channel 1 and/or 2 1.0 GSa/s with additional use of channel 3 and/or 4 |
| Waveform capture rate | 300,000 wfms/s (12,000,000 wfms/s History Mode) |
| Memory depth | Single-channel mode: 320 Mpts Dual-channel mode: 160 Mpts Four-channel mode: 80 Mpts |
| Integrated decoders | I²C, SPI, UART, CAN, CAN-FD, LIN and Parallel |
You will find the specifications of the Magnova here.
The demo board provides a step-by-step introduction to the key functions of modern digital oscilloscopes. Measurements, triggering, protocol decoding, FFT analysis and other tools are taught using realistic signals and practical exercises.
The integrated BMO-AWG allows test signals to be generated and analyzed immediately. From simple sine and square waves to frequency sweeps and Bode plots, many common laboratory experiments can be performed without additional equipment.
| Magnova BMO Sets | Bandwidth | Channel | Logic Analyzer | Waveform Generator | Foot Switch | MSO Demo Board |
|---|---|---|---|---|---|---|
| BMO100-EDU | 100 MHz (upgradable to 350 MHz) | 4 | Option | Option | ||
| BMO200-EMB | 200 MHz (upgradable to 350 MHz) | 4 | Option | Option | Option | |
| BMO350-LAB | 350 MHz | 4 | Option |
The Flex-Encoder® control concept automatically adapts the four rotary encoders to the currently selected function. Relevant parameters and controls are displayed directly next to each encoder, allowing adjustments without navigating through nested menus.
This keeps the focus on the measurement task and signal behavior rather than the instrument itself. Especially in laboratory courses and training environments, it shortens the learning curve and helps users achieve meaningful measurement results more quickly.
Modern test and measurement goes far beyond displaying waveforms. Trend charts, history functions, search and mask testing, reference and math channels, FFT analysis, protocol decoding, and many other advanced tools are integrated directly into the instrument.
All features are included as standard and can be used without additional software licenses. Students and engineers can therefore learn and apply modern analysis techniques within a single, fully integrated platform.
The large 15.6-inch Full HD touchscreen provides ample space for waveforms, measurements, and analysis tools. Multiple channels, protocol decoders, FFT spectra, and measurement results can be displayed simultaneously while remaining easy to read.
Its high resolution also makes the Magnova ideal for teaching and presentations. DisplayPort output allows connection to external monitors or projectors, enabling larger groups to follow measurements comfortably.
The included BMO-AWG expands the Magnova with a fully integrated function generator offering output frequencies of up to 90 MHz. Test signals can be generated directly within the instrument, eliminating the need for additional hardware or external software during laboratory exercises and measurement tasks.
In addition to standard waveforms, the generator supports sweeps, burst signals, modulation, and many other advanced functions. Combined with the Magnova, it also enables automated Bode plot measurements, allowing frequency response to be explored and visualized through practical experiments rather than theory alone.
FFT analysis is one of the most important tools in modern signal analysis. With up to four simultaneous FFT channels, waterfall display, peak tables, markers, and numerous additional analysis features, the Magnova provides an ideal platform for learning and applying frequency- domain analysis.
Signal quality, interference, harmonics, and frequency components become immediately visible and can be examined in detail. This makes it easy to demonstrate and understand the relationship between the time and frequency domains.
Unlike many oscilloscopes, the Magnova performs triggering entirely in the digital domain using the acquired measurement data. This allows even the smallest signal events to be detected and analyzed with exceptional precision.
Trigger conditions become easier to understand, relationships between signals become more apparent, and even complex measurement tasks can be analyzed reliably. This makes fully digital triggering an invaluable tool for education, development, and research.
High-performance 12-bit analog-to-digital converters, a powerful 16-bit system architecture, and an exceptionally low-noise front end ensure that even the smallest signal details remain clearly visible.
Fine signal components, interference, and subtle waveform changes can be displayed and analyzed with confidence. As a result, the Magnova is not only an excellent visualization tool but also an ideal platform for teaching key measurement concepts such as resolution, dynamic range, and signal integrity.
With up to four independent counter and digital voltmeter (DVM) instances, the Magnova extends its capabilities with powerful tools for high-resolution long-term measurements. Frequency stability, drift, and even the smallest variations can be monitored and documented over extended periods. Combined with integrated trend charts, subtle deviations become clearly visible, making the system ideal for laboratory exercises, long-term experiments, and research applications.
Here you will find the videos we have already published on the Batronix Magnova oscilloscope. They show various functions of the Magnova – from FFT and decoding to generator functions and Bode plot measurements.
Most of the videos were recorded directly via the Magnova's DisplayPort output using video capture. They show the behavior and display that can also be seen on the device's screen. In the videos, we use a mouse for operation so that a clearly visible mouse pointer is available. Operation via the Magnova's touch display works in much the same way.
The most recent videos are at the top of the list and show the latest enhancements from the latest firmware updates.
This video shows some of the new features introduced with firmware update 1.8.1:
This video shows some of the new features introduced with firmware update 1.7.1:
This video shows some of the new features introduced with firmware update 1.6.9:
Introductory video for the launch of the generator module:
An entertaining example of the Magnova's XY mode – and at the same time a good impression of the system's performance:
General overview of the device and its functions during introduction:
Language: German
File Size: 3.64 MiB
Release Date: 06.02.2026
Language: English
File Size: 3.64 MiB
Release Date: 06.02.2026
Language: English
Version: 1.20
File Size: 772.41 KiB
Release Date: 21.08.2025
Language: English
Version: 1.7
File Size: 566.38 KiB
Release Date: 28.03.2026
Language: German
Version: 1.2
File Size: 5.23 MiB
Release Date: 21.08.2025
Language: English
Version: 1.2
File Size: 5.05 MiB
Release Date: 21.08.2025
Language: English
File Size: 469.02 KiB
Release Date: 02.04.2026
Language: German, English
Version: 1.8.2
File Size: 53.29 MiB
Release Date: 02.04.2026