The RIGOL MHO900 Series combines 12-bit acquisition with up to 800 MHz bandwidth, a maximum real-time sample rate of 4 GSa/s and 100 Mpts of memory as standard. This combination supports detailed waveform analysis, long acquisitions and protocol troubleshooting in embedded development, electronics laboratories and advanced debugging applications.
Despite its higher bandwidth and acquisition performance, the MHO900 retains a compact, portable enclosure. Integrated Wi-Fi and Bluetooth, browser-based remote control and VESA mounting support allow the instrument to adapt to conventional benches, space-limited workstations and remotely operated test environments.
Key Features
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12-bit vertical resolution: Provides finer amplitude detail than conventional 8-bit acquisition, helping users examine small waveform variations and low-level signal behavior.
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Up to 800 MHz bandwidth: Supports higher-speed signal analysis for embedded hardware, communication interfaces and electronic circuit development.
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Up to 4 GSa/s real-time sampling: Captures fast transitions with greater timing detail for waveform inspection and troubleshooting.
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100 Mpts memory as standard: Preserves detailed waveform data across long acquisition windows without requiring a memory-depth upgrade.
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Standard protocol decoding: Supports I²C, SPI, CAN, LIN, RS232/UART and parallel bus analysis for common embedded and communication interfaces.
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Integrated Wi-Fi and Bluetooth: Provides wireless connectivity for more flexible instrument access and test-bench integration.
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Web-based remote control: Allows users to access, monitor and operate the oscilloscope over a network through its integrated browser interface.
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Compact VESA-compatible design: Supports monitor-style mounting and positioning to improve ergonomics and preserve available bench space.
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Upgradeable functionality: Optional software licenses allow additional built-in functions to be activated according to changing application requirements.
Protocol Analysis
Standard decoding for I²C, SPI, CAN, LIN, RS232/UART and parallel buses helps engineers correlate communication data with acquired electrical waveforms. This supports faster diagnosis of incorrect data, timing errors and abnormal behavior in embedded systems and control electronics.
Wireless and Remote Operation
Built-in Wi-Fi and Bluetooth reduce dependence on fixed wired connections. The integrated web-control interface enables remote viewing, monitoring and instrument operation over a network, which is useful for shared laboratories, restricted-access test setups and collaborative debugging.
Applications
- High-speed digital circuit development and verification
- Embedded-system debugging and firmware validation
- I²C, SPI, UART and parallel bus troubleshooting
- CAN and LIN communication analysis
- Long-record waveform capture and anomaly investigation
- Electronics research and laboratory measurements
- Remote monitoring and network-based instrument operation
- Space-limited or VESA-mounted test workstations
Optional Software Upgrades
The MHO900 uses an upgradeable licensing architecture that allows users to activate additional internal functions when required. The available software options and their capabilities depend on the selected instrument configuration and license. Confirm the required licenses before ordering; optional functions should not be assumed to be included as standard.
Why Choose the MHO900 Series?
The MHO900 Series is suited to engineers who need high bandwidth, deep standard memory and detailed 12-bit acquisition in a compact instrument. Standard protocol decoding simplifies embedded debugging, while wireless connectivity, browser-based control and optional software expansion support evolving laboratory and development workflows.