For ultra-wide industrial buildings where a conventional two-runway bridge creates excessive structural load or impractical span.

Henan Mine Crane lxd multi-point suspension crane showing the suspended crane structure and overhead lifting arrangement.
The LXD multi-point suspension crane is designed for very large-span industrial buildings and warehouses, including aircraft manufacturing and aircraft maintenance facilities. Instead of concentrating the crane on only two side runways, multiple suspension points and tracks distribute the load through the roof structure.
For procurement, this is not a standard 'capacity + span' crane. The buyer should provide the building structural grid, roof-truss arrangement, required lifting coverage and allowable support loads so the number and position of suspension points can be engineered correctly.
| Product Model | LXD |
| Type-Test Product Name | Electric Single Girder Suspension Crane |
| Lifting Mechanism | Project-specific electric hoist / lifting mechanism |
| Lifting Capacity | Configured according to project requirements |
| Span / Working Width | Configured from building structure and required crane coverage |
| Lifting Height | Configured according to workshop and process requirements |
| Runway / Suspension System | Roof-supported / building-supported suspended runway |
| Control Method | Configured according to project requirements |
Request A LXD Multi-Point Suspension Crane Quote
Special-purpose multi-point / multi-track suspension crane for ultra-large-span industrial workshops and warehouses.
Source cites aircraft manufacturing plants and aircraft maintenance workshops as typical applications.
Multiple suspension points distribute load, reduce pressure at each support and improve structural stability.
For procurement, unpublished capacity, span and speed ranges should not be assumed from similar crane models. Henan Mine Crane should size the final crane from the building structure, suspension points, load, lifting height, operating cycle, environment and applicable project requirements.
The product is specifically intended for very large-span workshops and warehouses.
Multiple suspension points spread crane loads across several structural supports rather than concentrating them at two runway lines.
The source states that more uniform loading reduces beam deformation and vibration.
Three-in-one drive systems are used to improve synchronization among multiple support points.
The source notes that lower structural impact can help reduce building height and construction investment.
Source image associated with the LXD Multi-Point Suspension Crane, illustrating wide-bay suspended crane coverage or multi-support construction. |
Source image associated with the LXD Multi-Point Suspension Crane, illustrating wide-bay suspended crane coverage or multi-support construction. |
Source image associated with the LXD Multi-Point Suspension Crane, illustrating wide-bay suspended crane coverage or multi-support construction. |
| Multi-Track Suspended Runway | Several suspension tracks distribute loads through the roof-support grid. |
| Single Girder / Multi-Support Bridge | Main lifting beam supported at multiple points. |
| Synchronized Travel Drives | Three-in-one drive system supporting coordinated movement across suspension points. |
| Electric Hoist / Lifting Mechanism | Selected from capacity, lifting height and duty requirements. |
| Control & Synchronization System | Coordinates multiple drive points and project operating functions. |
| Model | LXD |
| Product Type | LXD Multi-Point Electric Single Girder Suspension Crane |
| Lifting Mechanism | Project-specific electric hoist / lifting mechanism |
| Capacity | Project-specific |
| Bridge Span / Working Width | Project-specific |
| Runway Length | Project-specific |
| Lifting Height | Project-specific |
| Suspension-Point Spacing | According to building structure and crane design |
| Hoisting Speed | Project-specific unless source-stated below |
| Crane Travel Speed | Project-specific unless source-stated below |
| Control Method | Project-specific |
| Power Supply | According to site electrical conditions |
| Building Support Loads | Calculated from final crane configuration |
Source-confirmed product facts:
Buyer-defined items for quotation:
| Aircraft Manufacturing | Wide-bay lifting over aircraft structures and assembly stations. |
| Aircraft Maintenance Hangars | Overhead coverage without floor columns interfering with aircraft movement. |
| Ultra-Wide Warehouses | Material handling across broad storage buildings. |
| Large Industrial Buildings | Projects where roof-load distribution is a primary crane-selection issue. |
Send roof-truss spacing, support-beam layout and allowable suspension loads.
Provide total building width, required crane coverage and any areas that do not need lifting coverage.
These should be engineered from building supports, crane load and deflection requirements.
Multi-point travel needs coordinated drives; state any positioning or skew limitations required by the process.
Complete the normal crane data after the multi-support structural concept is confirmed.
Suspension-crane installation should be coordinated with the building structure. Before manufacture or installation, verify support-point locations, runway straightness and level, structural steel capacity, available erection access, electrical supply and any overhead obstructions.
Maintenance should follow the final supplied crane manual and include the hoist, brakes, wheels or travel assemblies, fasteners, suspension connections, runway components, limits and electrical protection. Multi-point systems also require inspection of synchronization and the condition of each support / travel point.
| 1 | Maximum lifted load |
| 2 | Total required working width |
| 3 | Required crane bridge span / coverage |
| 4 | Number and spacing of available roof supports |
| 5 | Roof-truss / building steel drawings |
| 6 | Required lifting height |
| 7 | Runway / travel length |
| 8 | Operating frequency and duty |
| 9 | Control method |
| 10 | Power supply |
| 11 | Destination and installation scope |
Multiple supports distribute crane loads, reduce pressure at any one roof point and make very wide lifting coverage more practical.
Yes. The source specifically names aircraft manufacturing plants and aircraft maintenance workshops.
The source states that three-in-one drive systems provide high synchronization among suspension points.
The source says the concept can reduce the impact of crane weight on the roof and help lower building height and construction cost. Actual savings depend on the final building design.
The building structural grid and roof-support drawings are essential for a multi-point suspension crane.
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Send your load, required crane coverage, lifting height, building / roof-support drawings, operating cycle and control requirements. Henan Mine Crane engineers will review the suspended-runway concept, building interfaces and product configuration before preparing a quotation.