Doosan Robotics H2017vsMecademic Meca500 R3
Side-by-side comparison of Doosan Robotics H2017 and Mecademic Meca500 R3: specs, price, use cases and SDKs.

H2017
test

Meca500 R3
The world's smallest and most precise 6-axis industrial robot arm.
Specifications
| Spec | H2017 | Meca500 R3 |
|---|---|---|
| Price (USD) | $38,000 | $0 |
| Category | industrial | industrial |
| Payload | 25 kg | 0.5 kg |
| Runtime | — | null h |
| Speed | — | null m/s |
| Weight | 79 kg | 4.5 kg |
| Reach | 1700mm | 330 mm |
| Degrees of Freedom | 6 | 6 |
- Heavy palletizing
- Automotive component handling
- Press-tending
- Machine loading
- Precision assembly
- Dispensing
- Material handling
- Inspection and testing
- Micro-manipulation
When to pick which
Choose the Doosan Robotics H2017 for industrial environments requiring high-capacity material handling, such as automotive Tier 1 suppliers or large-scale logistics hubs. Its 25kg payload and 1700mm reach make it essential for heavy palletizing and press-tending tasks where smaller arms fail. If your deployment involves loading heavy metal components into CNC machines or managing end-of-line packaging for bulk goods, the H2017 provides the necessary torque and structural rigidity. The integration with ROS2 and DRL scripting allows for complex path planning in high-volume production lines where reach and strength are the primary operational constraints.
Opt for the Mecademic Meca500 R3 when working in electronics manufacturing, medical device assembly, or laboratory automation where space is at a premium. Its ultra-compact 4.5kg footprint allows for integration into tight enclosures or desktop workstations that cannot accommodate standard industrial robots. With a 0.5kg payload capacity, it is purpose-built for high-precision tasks like micro-manipulation, dispensing, or inspecting delicate components. Choose this model if your deployment requires sub-millimeter accuracy in a confined workspace, utilizing the Mecademic API for seamless integration into existing testing rigs or specialized assembly cells where footprint and precision outweigh raw lifting power.
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