Product Advantages
- Cut labor expenditure effectively by replacing manual material handling work
- Achieve non-stop automated operation around the clock to boost overall warehouse throughput
- Adopt stable automatic lifting and conveying structure to lower the rate of cargo damage
- Realize rapid on-site deployment with no need for ground reconstruction or major renovation
- Technical Specifications

Why choose us?
We have mature capabilities in software and hardware integration & project execution to realize full automation for warehouse handling, accurate picking and fast sorting. Backed by self-developed IWMS and RCS intelligent dispatching systems plus proprietary AI algorithms, our robots run under mixed working modes and achieve seamless linkage with AS/RS, conveyor lines, cargo elevators and other automated warehousing equipment.
Technical Parameter
|
Essential parameter |
External dimensions: L*W*H |
778*540*255 (±5) |
mm |
|
|
Weight |
98 |
Kg |
||
|
Minimum turning radius |
778 |
mm |
||
|
Rated load |
400 |
Kg |
||
|
Chassis ground clearance |
25 |
mm |
||
|
Lift-up panel dimensions |
710*500 |
mm |
||
|
Lift-up Drive |
Motor-driven |
|||
|
Lift height |
60 |
mm |
||
|
Driving Performance |
Rated operating speed / No-load |
1.9 |
m/s |
|
|
Rated operating speed / Rated load |
1.5 |
m/s |
||
|
Acceleration at no load |
0.6 |
m/s2 |
||
|
Acceleration; Rated Load |
0.3 |
m/s2 |
||
|
Rotation speed/No load |
200 |
°/s |
||
|
Rotation speed/Full load |
100 |
°/s |
||
|
Driving Method |
Dual-wheel differential |
|||
|
Position Navigation |
Navigation Method |
Laser Slam or QR Code |
||
|
Laser installation height |
220 |
mm |
||
|
Parking space positioning accuracy |
± 10 |
mm |
||
|
Parking Angle Precision |
± 1 |
° |
||
|
Battery |
Battery type |
Lithium iron phosphate |
||
|
Capacity/Rated Voltage |
16/48 |
Ah/V |
||
|
Standard charging current |
16 |
A |
||
|
Number of charge and discharge cycles |
Full charge: 1500 times |
|||
|
Range under rated operating conditions |
8 |
h |
||
|
Charging time after complete discharge |
≤1.5 |
h |
||
|
Safety Protection |
Pre-laser obstacle avoidance |
Installation height (scan surface) |
203.5 |
mm |
|
Radar elevation angle |
220 |
° |
||
|
Post-laser obstacle avoidance |
Installation height (scan surface) |
201 |
mm |
|
|
Radar elevation angle |
180 |
° |
||
|
Scram button |
Number: 2/1 in front and 1 at the back |
/ |
||
|
Contact Protection |
Piezoelectric edge contact switch |
/ |
||
|
Acoustic and visual alarm |
Standard configuration |
/ |
||
|
Passing Performance |
Chassis shock absorption method |
Two-stage floating chassis |
/ |
|
|
Climbing capacity |
≤5%/3 ° |
%/ ° |
||
|
Step Capability |
≤5 |
mm |
||
|
Adaptability |
≤30 |
mm |
||
FAQ
Q1: Is ground modification or magnetic strip laying required for Latent Robort 400KG deployment?
A: No. Adopting laser SLAM navigation, no magnetic strips, QR tracks or positioning markers are needed. Only quick on-site mapping is required before operation.
Q2: Can the robot link up with elevators and factory automatic doors?
A: Optional linkage with elevators and automatic doors is available to realize fully unmanned cross-floor transportation.
Q3: What handling modes does the robot support?
A: It supports single-point delivery, multi-point loading & delivery, trolley/rack towing, lifting transportation and other working modes.
Q4: Does manual charging become necessary when power runs low?
A: Equipped with auto-charging function, the robot automatically docks with chargers at low battery for nonstop 24/7 operation.
Q5: Can it connect with customers' existing WMS?
A: Custom interfaces are optional for seamless WMS/WCS connection to realize digital warehouse management.
Charging station connection

Standard equipped charging station

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