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Ship To Shore Container Cranes
STS Customized Container Cranes | SANY Australia
Based on our study in lots of domestic and international harbors and wharfs, analyzing the characteristics of new and old wharfs, combining the handling process and demands, sorting out in STS, we developed five standard models with hoist capacity range from 41-65t. The combination of standard model and modularization design reduced the span of design and manufacturing. We develop the customized device in the shortest time.
Download the Ship to Shore Container Cranes brochure HERE
STS4101S | |
---|---|
Clearance of portal beam(m) | >13 |
Hoisting height above rail(m) | 30 |
Hoisting speed(full load)(m/min) | 50 |
Outreach(m) | 40 |
Overall width of STS(m) | 27 |
Rail span(m) | 16 |
Rated hoisting capacity under hook beam (t) | 50 |
Rated hoisting capacity under Spreader (t) | 41 |
STS4501S | |
Back reach(m) | 15 |
Clearance of portal beam(m) | >13 |
Hoisting height above rail(m) | 32 |
Hoisting speed(full load)(m/min) | 60 |
Outreach(m) | 45 |
Overall width of STS(m) | 27 |
Rail span(m) | 18 |
Rated hoisting capacity under hook beam (t) | 55 |
Rated hoisting capacity under Spreader (t) | 45 |
STS5001S | |
Clearance of portal beam(m) | >13 |
Hoisting height above rail(m) | 36 |
Hoisting speed(full load)(m/min) | 75 |
Outreach(m) | 55 |
Overall width of STS(m) | 27 |
Rail span(m) | 24.384 |
Rated hoisting capacity under hook beam (t) | 60 |
Rated hoisting capacity under Spreader (t) | 50 |
STS5501S | |
Clearance of portal beam(m) | >13 |
Hoisting height above rail(m) | 40 |
Hoisting speed(full load)(m/min) | 80 |
Outreach(m) | 60 |
Overall width of STS(m) | 27 |
Rail span(m) | 30 |
Rated hoisting capacity under hook beam (t) | 65 |
Rated hoisting capacity under Spreader (t) | 55 |
STS6501S | |
Clearance of portal beam(m) | >13 |
Hoisting height above rail(m) | 45 |
Hoisting speed(full load)(m/min) | 90 |
Outreach(m) | 65 |
Overall width of STS(m) | 27 |
Rail span(m) | 30.48 |
Rated hoisting capacity under hook beam (t) | 75 |
Rated hoisting capacity under Spreader (t) | 65 |
A laser positioning system is installed on the girder to position the truck precisely and fast. This can be applied in the automatic terminal operation and improves the handling efficiency.
Image recognition and positioning of truck under crane
Image recognition and positioning of truck out of crane
Ship tilting detecting control technology
Container lock hole image recognition and positioning
Ship slot recognition and positioning
Optimized 'and safe route of spreader is calculated based on the encoder position detection and spreader track storage. Handling efficiency can be improved greatly
Electrical anti- torsion: Anti-sway system detects angle to control trim/list cylinder or motor, thus controlling the spreader trim/list and realize anti-torsion.
Advanced hydraulic control technology is applied to cut off the power of control system when there is a snag during the hoisting. The hydraulic valve will be open and the oil cylinder will unload immediately to avoid destroying to the crane or the ship's hold.
Anti-collision between gantry and truck
Anti-collision between two gantries
Anti-collision between gantry and the transfer platform
Anti-collision between gantry rail and objects beside
Anti-collision between trolley and mast trolley
Anti-collision between boom and the mast or buildings
The amount of harmonics has greatly decreased, and energy saving effect is obvious.
Active inverier echnalogy is applied to transfer the stojed dynamic power and potential power into electricity and be recycled to the grid. At the same time, it can resist the pollution to grid from higher harmonic voltage, thus increasing the power factor of the equipment.
Full automatic resonance eliminating reactive power compensation device is contigured to achieve the average power factor above 0.9 or more, which improves electricity efficiency and reduces wire consumption.