DEEP Robotics LYNX M20vsPhyBot M1

DEEP Robotics LYNX M20 leads on 4 of 7 dimensions — strongest on deployment readiness.

LYNX M20
3 wins
vs
M1
0 wins

Category breakdown

Deploy & operate

Readiness, uptime, navigation & connectivity

LYNX M20
  • 72
    Deployment readiness
    45
  • 60
    Maintenance confidence
    60
  • Vision-led navigation (estimated)
    Navigation
    Vision-led navigation (estimated)
  • Wi-Fi / cloud fleet management (estimated)
    Connectivity
    Wi-Fi / cloud fleet management (estimated)

Cost & ROI

Price accessibility and ROI clarity

Even
  • 51
    Price accessibility
    66
  • 58
    ROI clarity
    35

Capability

Payload, speed, runtime & labor replacement

LYNX M20
  • 65
    Labor replacement
    60
  • 15 kg effective payload, 50 kg maximum load capacity
    Payload
    20 kg per arm, 50 kg via backpack system
  • Maximum tested speed 5 m/s; maximum operating speed 2 m/s
    Speed
    10 km/h (6.2 mph)
  • 3 hours unloaded (15 km range) or 2.5 hours fully loaded (12 km range); 1.5 h charging time
    Battery
    2+ hours

Fit & future

Environment fit, footprint & long-term upside

LYNX M20
  • 78
    Environment fit
    70
  • 76
    Future potential
    75
  • 820 × 430 × 570 mm (W × D × H)
    Footprint
    Height 172 cm (5 feet 7 inches)
LYNX M20 · Best for

Autonomous power substation patrol in rain/snow, avoiding high-voltage contact hazard

M1 · Best for

Heavy parts assembly in automotive or appliance manufacturing where human-scale bipedal access to elevated worktables is required

Final judgment

If immediate deployment is the priority, choose LYNX M20. If the goal is to be ready when M1's capabilities mature, track it.

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