Station waiting
Load transfer must match the line cycle instead of leaving the robot queued at the station.
Equipped with an onboard conveyor or a purpose-built transfer module, the CMR family automatically exchanges loads with stations and establishes uninterrupted flow between separate process islands.
ExploreLoad transfer must match the line cycle instead of leaving the robot queued at the station.
Load exchange between conveyor and station should not depend on operator effort.
Transport safety for heavy and bulky loads must be secured by the equipment itself.

With its in-house lifting and transfer modules, the Hikrobot CMR/HMR series covers automated placement requirements across very different scenarios. Three series — from machine-side conveyor transfer to rack towing and high-tonnage lifting — run within the same fleet logic.
Models that convey, tow or lift are selected to work together within the same RCS fleet.

The base conveyor model; docks directly with machines and transmission lines.

Its four-bay top module transfers several carriers within one run.

Slides under the rack and tows one or more racks with its traction pin.

The omnidirectional heavy-duty model; lifts and moves mid-size loads.

The highest capacity in the series, with high-tonnage electric lifting.
Values are taken from Hikrobot product documentation; cycle and capacity calculations are made separately for each project.
| Specification | C3-200LB2 | C3-400B4 | CT5-1000 | H8C-2000H | H9C-3000CH |
|---|---|---|---|---|---|
| Rated load (kg) | 200 | 4 × 100 | 1,000 | 2,000 | 3,000 |
| Series | Conveyor / transmission | Conveyor / transmission | Latent tractor | Heavy-duty lifting | Heavy-duty lifting |
| Transfer method | Roller conveyor | Roller conveyor | Traction | Lifting | Lifting |
| Rated speed (m/s) | 1.2 | 1.2 | 1.0 | 1.2 | 1.2 |
| Rated acceleration (m/s²) | 0.5 | 0.5 | 0.4 | 0.5 | 0.5 |
| Navigation | SLAM | SLAM / QR code | Laser SLAM + 2D barcode | SLAM / QR code | QR code |
| Obstacle avoidance | 360° laser + auxiliary protection | 360° laser / auxiliary protection | Laser | 360° laser | 360° laser |
| Dimensions L*W*H (mm) | 1250*745*935 | 1250*745*1175 | 1615*470*285 | 1900*1200*370 | 2000*1400*480 |
| Weight (kg) | 350 | 410 | 240 | 800 | 900 |
| Turning diameter (mm) | 1415 | 1415 | 2000 | Omnidirectional drive | Omnidirectional drive |
| Positioning accuracy (mm) | ±10 | ±10 | ±10 | ±10 | ±10 |
| Angular accuracy (°) | ±1 | ±1 | ±1 | ±1 | ±1 |
| Operating time (h) | 8 | 8 | 8 | 8 | 8 |
At a newly established plant producing solar cells and battery packs, conveyor mobile robots took over transfers between cell and module lines. The solution was built to operate together with upstream systems such as ERP and MES, and integrating it with shop-floor equipment raised the level of automation.

The robot docks at the station and its onboard conveyor transfers the load in sync with the machine, hands-free.
Separate cell, module and test areas are linked without interruption through a single fleet.
The latent tractor model tows loaded racks in batches and takes over repetitive internal transport.
The heavy-duty series positions dies and large bodies in tight spaces with omnidirectional travel.
Share load profiles, throughput targets and space constraints so the right architecture can be assessed.
Request a storage and flow analysis Your request is routed directly to the relevant engineering team.
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