Dobot AtomvsMiR MiR600
MiR MiR600 leads on 4 of 7 dimensions — strongest on deployment readiness.
Atom
0 wins
MiR600
3 wins
Category breakdown
Deploy & operate
Readiness, uptime, navigation & connectivity
- 62Deployment readiness92
- 60Maintenance confidence60
- Vision-led navigation (estimated)NavigationVision-led navigation (estimated)
- Wi-Fi / cloud fleet management (estimated)ConnectivityWi-Fi / cloud fleet management (estimated)
Cost & ROI
Price accessibility and ROI clarity
- 74Price accessibility36
- 48ROI clarity88
Capability
Payload, speed, runtime & labor replacement
- 55Labor replacement85
- 3.5 kg per armPayload600 kg
- 1.5 m/s (arm end speed & walking speed)Speed2.0 m/s (7.2 km/h)
- ≈2 hours (1-hour recharge time)Batteryup to 8 hours 30 minutes at max payload; up to 11 hours with no payload
Fit & future
Environment fit, footprint & long-term upside
- 65Environment fit90
- 72Future potential75
- Height 1530–1650 mmFootprint1,350 × 910 × 322 mm (W × D × H)
Atom · Best for
Automotive parts micro-assembly (sub-5mm tolerances) on compressed shop-floor footprint with <25 units per shift
MiR600 · Best for
Medium-to-heavy pallet transport in automotive assembly plants (replacing 2–3 forklift shifts)
Final judgment
If immediate deployment is the priority, choose MiR600. If the goal is to be ready when Atom's capabilities mature, track it.

