Analog scope and digital logic analyzer in one instrument, one trigger, one timebase
A TravelScope and a TravelLogic can already be cascaded together to look at analog and digital signals side by side — but the MSO2000 and MSO3000 series build that combination into a single box, with one trigger engine and one timebase across both domains instead of two instruments to correlate afterward. Choose MSO2000 for a compact, general-purpose mixed-signal setup, or MSO3000 where the analog side needs real oscilloscope bandwidth and 16-bit vertical resolution.
40 / 200 MHz
Bandwidth (2000 / 3000)
200 MS/s – 1 GS/s
Sample rate
up to 16
Digital channels
8 / 16-bit
Vertical resolution
Why engineers reach for it
One trigger event arms both the analog front end and the digital channels together — a glitch on an enable line and the resulting droop on a rail land in the same capture, already time-aligned, with no manual correlation step afterward
MSO3000's "V" variant adds electrical validation: protocol-aware triggering and decode (I2C, I3C, SPI, UART and more) directly on the analog waveform, not just the digital channels — useful when the signal of interest hasn't been buffered down to clean logic levels yet
MSO3000's "H" variant cascades with other Acute units to extend channel count further, for boards too wide for one box
Same protocol decode and trigger library as the rest of Acute's line, so setups built on a standalone TravelLogic or TravelScope carry across directly
Where it earns its keep
Power-sequencing and rail-droop debug, where a digital control edge and its analog consequence need to be seen on the same timeline
Mixed-signal board bring-up — an analog sensor front end next to a digital control bus — without swapping between two separate instruments mid-session
Any bench that's short on space or budget for a dedicated scope and a dedicated logic analyzer side by side
Not sure whether you need MSO2000's channel count or MSO3000's bandwidth and resolution? Tell us the signal you're chasing and we'll point you to the right variant.