| Availability: | |
|---|---|
Dragon Stage
This 6m × 4m structure represents a higher single-level FOH configuration within the DragonStructure control-structure family.
Its nominal footprint is 24m², but footprint alone does not define this structure.
The key difference is vertical geometry.
The confirmed configuration has:
6m width
4m depth
4m side height
4m roof low point
5m roof high point
5m maximum structure height
modular Ringlock working structure
aluminum single-slope roof
modular working platform
ladder access
canopy extensions
roof and curtain enclosure
lower auxiliary Ringlock base structure. Dragon Stage
The complete structural relationship is therefore:
Elevated Ringlock FOH Body
Working Platform & Ladder Access
4–5m Aluminum Sloped Roof
Canopy & Curtain Enclosure
Lower Auxiliary Base Structure
Functionally, this belongs to FOH & Control Structure. Its deliberate division between Ringlock and aluminum systems also places it within Ringlock + Aluminum Structure. DragonStructure defines this hybrid category according to the different functions performed by the two systems rather than simply by the presence of two materials. DragonStructure
This structure should not simply be understood as:
a 6×4m covered Ringlock booth.
Its configuration is considerably more developed.
The main Ringlock body creates an elevated technical-control structure. Platform planks form the working area. An open platform component and aluminum ladder provide access. Above the Ringlock body, a separate aluminum frame forms a single-slope roof rising from 4m to 5m.
Around this main structure, canopy outriggers and curtain-support components extend the covered/enclosed zone.
At the lower level, another Ringlock component group forms a separate auxiliary base module. Dragon Stage
So the product is better understood as five coordinated structural modules rather than one scaffold frame.
The word Elevated is not being used merely as marketing language.
The BOQ confirms:
84 platform planks
1 open aluminum + wood platform plank
1 heavy-duty aluminum ladder. Dragon Stage
This indicates that access to the working area is part of the supplied configuration.
At the same time, there is no confirmed second operator floor or multiple technical working levels.
Therefore, it would be inaccurate to classify this as a Multi-Level FOH Tower.
The better distinction is:
an elevated single-level technical workspace.
That separates it clearly from both a low compact FOH booth and a genuine multi-level tower.
The nominal plan area is:
6m × 4m = 24m²
This is the same nominal area as a 4×6m structure, but the orientation and surrounding structural configuration are different.
A 6m-wide FOH can be useful when the technical layout benefits from arranging operators or consoles across a broader front-facing dimension.
Conceptually:
6m WIDE
┌──────────────────────┐
│ │
│ TECHNICAL CONTROL │
4m │ WORKING AREA │
│ │
└──────────────────────┘
STAGE → This diagram illustrates spatial logic only. It does not prescribe the actual equipment layout.
The practical planning question is:
Does the FOH need more width facing the stage, or more depth away from it?
That is why 6×4m and 4×6m should not automatically be treated as interchangeable merely because both equal 24m².
Unlike the previous 2×6m product, this source provides the Ringlock quantities directly.
The main structural body contains:
24 × Main Vertical Standards, 2m
4 × Main Vertical Standards, 1m
58 × Main Ledgers, 2m
22 × Main Diagonal Braces, 2.83m
14 × Main Single-Row Members, 2m. Dragon Stage
These members create the primary three-dimensional Ringlock body.
The structural relationship is:
Standards
→ vertical framework
Ledgers
→ horizontal modular grid
Diagonal Braces
→ braced Ringlock bays
Single-Row Members
→ additional configured structural positions
Platform System
→ usable FOH workspace.
For the broader modular system, see Ringlock Structure.
The confirmed platform/access package contains:
84 × platform planks
1 × 2m open platform plank, aluminum + wood
1 × heavy-duty aluminum ladder. Dragon Stage
The open platform component is important because it distinguishes a normal continuous deck from a platform system configured around personnel access.
Conceptually:
Ground
↓
Aluminum Ladder
↓
Open Platform Position
↓
FOH Working Area
This access arrangement is substantially more compact than an external stair module.
For another project, the access system should therefore be chosen according to:
operator traffic;
equipment movement;
available footprint;
required entrance position;
working height;
circulation requirements.
Changing from a ladder to a stair is not merely changing one accessory—it changes the access module and potentially the surrounding layout.
The roof geometry is probably the strongest visual identifier of this product.
The confirmed dimensions are:
Dimension | Configuration |
|---|---|
Width | 6m |
Depth | 4m |
Nominal Plan Area | 24m² |
Side Height | 4m |
Roof Low Point | 4m |
Roof High Point | 5m |
Maximum Height | 5m |
Roof Form | Single-Slope |
The roof rises approximately 1m from the low side to the high side. Dragon Stage
Conceptually:
5m HIGH
─────────
/
/
4m _____/
│ │
│ │
│ FOH WORKSPACE │
│ │
├────────────────────┤
│ RINGLOCK SUPPORT │
└────────────────────┘
6m This page records the confirmed roof geometry only.
The slope should not be converted into unsupported claims regarding drainage performance, wind resistance or roof-load capacity.
The roof is not simply a continuation of the steel Ringlock body.
The confirmed aluminum package contains:
12 × 0.5m aluminum column forks
6 × 6.1231m aluminum roof beams
10 × 4m side-wall aluminum tarpaulin posts
8 × 1.5m outrigger canopy beams. Dragon Stage
This gives the product a clear hybrid structural relationship:
Steel Ringlock
→ supporting body + working structure
Aluminum Structure
→ roof + enclosure-support geometry.
This is exactly the distinction behind DragonStructure's Ringlock + Aluminum Structure category: each system is used for a different functional zone within the same temporary structure. DragonStructure
The aluminum roof beams are listed as:
6.1231m × 6 pcs. Dragon Stage
This is useful because it shows that the roof module is not merely described generically as “aluminum truss.”
The roof has its own defined component geometry corresponding to the actual configuration.
However, the BOQ alone should not be used to reverse-engineer:
connection angles;
exact connection details;
structural capacity;
allowable roof loading.
Those details require the approved drawing and, where necessary, engineering verification.
This FOH includes another structural zone outside the main body.
The Ringlock package contains:
8 × 0.9m canopy outriggers
6 × 2m canopy outrigger ledgers
while the aluminum package contains:
8 × 1.5m outrigger canopy beams. Dragon Stage
This means the covered arrangement extends beyond a simple roof positioned directly above the nominal 6×4m working footprint.
The complete enclosure should therefore be read as:
Main FOH Body
Projecting Canopy Zones
rather than simply:
24m² floor + 24m² roof.
This is also reflected in the much larger confirmed roof-cover area.
The enclosure package contains:
1 × 60m² main roof tarpaulin
6 × 3m² outrigger canopy tarpaulins
2 × 16m² side curtains
1 × 24m² front/rear curtain. Dragon Stage
The 60m² roof tarpaulin should not be confused with the 24m² nominal floor area.
The difference reflects the larger roof/enclosure configuration and canopy geometry.
We should not infer the exact fabric overlap or finished covered footprint from the area alone.
What the BOQ safely tells us is that this is a substantially developed enclosure package, not merely a small sheet covering the FOH platform.
The curtain package creates a more protected technical working zone around the FOH.
However, an FOH should not automatically be treated as a completely closed room.
Depending on the project, openings may still be required for:
stage sightline;
operator access;
equipment movement;
cable routing;
ventilation.
Therefore, the practical question is not:
How do we close every side?
It is:
Which sides need protection, and which sides need to remain operationally open?
The final curtain orientation should be coordinated with the actual FOH workflow.
This product contains another Ringlock module that should not be merged invisibly into the main BOQ.
The lower auxiliary structure contains:
6 × 1m base vertical standards
10 × 2m base ledgers
12 × 2.83m base diagonal braces
12 × 2m base planks. Dragon Stage
This means the complete structure is not simply:
main FOH + roof
but:
Main FOH
Auxiliary Lower Structure
Roof / Canopy / Enclosure System
Keeping this module separate is useful because it allows future configurations to change the lower structural arrangement without automatically redefining the entire FOH.
The supplied configuration also includes:
2 × 4m long 50×2mm ballast steel pipes with accessories. Dragon Stage
These are confirmed physical components.
They do not establish a verified ballast requirement.
The correct distinction is:
Confirmed:
Two ballast-related steel pipes are part of this supplied configuration.
Not confirmed:
The amount of ballast required for a particular outdoor installation.
That second question depends on the actual configuration, covered area, site and engineering requirements.
Component | Specification | Quantity | Function |
|---|---|---|---|
Main Vertical Standard | 2m | 24 pcs | Main vertical framework |
Main Vertical Standard | 1m | 4 pcs | Completes vertical configuration |
Main Ledger | 2m | 58 pcs | Forms horizontal Ringlock grid |
Main Diagonal Brace | 2.83m | 22 pcs | Braces main Ringlock bays |
Main Single Row | 2m | 14 pcs | Additional configured structural positions |
Canopy Outrigger | 0.9m | 8 pcs | Creates projecting canopy positions |
Canopy Outrigger Ledger | 2m | 6 pcs | Connects canopy outrigger arrangement |
Component | Specification | Quantity | Function |
|---|---|---|---|
Platform Plank | 0.2780m | 84 pcs | Forms FOH working platform |
Open Platform Plank | Aluminum + Wood, 2m | 1 pc | Provides access-related platform opening |
Heavy-Duty Aluminum Ladder | — | 1 pc | Provides working-platform access |
Component | Specification | Quantity | Function |
|---|---|---|---|
Aluminum Column Fork | 0.5m | 12 pcs | Interface component for upper aluminum structure |
Aluminum Roof Beam | 6.1231m | 6 pcs | Forms single-slope roof framework |
Side-Wall Aluminum Tarpaulin Post | 4m | 10 pcs | Supports enclosure/tarpaulin arrangement |
Outrigger Canopy Beam | 1.5m | 8 pcs | Forms projecting canopy frame |
Component | Specification | Quantity |
|---|---|---|
Main Roof Tarpaulin | 60m² | 1 pc |
Outrigger Canopy Tarpaulin | 3m² | 6 pcs |
Side Curtain | 16m² | 2 pcs |
Front / Rear Curtain | 24m² | 1 pc |
Component | Specification | Quantity | Function |
|---|---|---|---|
50×2mm Ballast Steel Pipe + Accessories | 4m | 2 pcs | Supplied ballast-related components |
Base Vertical Standard | 1m | 6 pcs | Auxiliary lower vertical framework |
Base Ledger | 2m | 10 pcs | Connects auxiliary base |
Base Diagonal Brace | 2.83m | 12 pcs | Braces auxiliary structure |
Base Plank | 2m | 12 pcs | Platform surfaces in lower auxiliary module |
Packing Weight: approximately 2,700kg
Packing Volume: approximately 11CBM. Dragon Stage
The BOQ shows that this is a considerably more developed structure than a basic FOH booth.
It contains five distinct systems:
28 confirmed main vertical standards of two lengths, together with ledgers, diagonals and single-row members.
84 platform planks plus an open platform component and ladder.
Column forks, 6.1231m aluminum beams and side-wall aluminum posts.
Ringlock outriggers, aluminum canopy beams, tarpaulins and curtains.
A separate group of standards, ledgers, diagonals and planks.
That modular separation is more informative than simply calling the product a:
6×4m FOH booth.
At Product level, the modular assembly relationship can be understood as:
Establish the main Ringlock footprint and auxiliary lower structural layout.
Assemble the lower standards, ledgers and diagonal bracing.
Continue the main Ringlock body to the required configuration.
Install the single-row and canopy-outrigger components in their specified positions.
Install the working platform planks.
Integrate the open platform component and heavy-duty aluminum ladder.
Install the aluminum column-fork interfaces.
Assemble the 6.1231m aluminum roof beams and 4m enclosure-support posts.
Create the confirmed 4m-low / 5m-high single-slope roof geometry.
Install the aluminum canopy beams.
Install the main roof and canopy tarpaulins.
Install the required side and front/rear curtains.
Complete the project-specific stabilization arrangement.
This describes structural composition and modular assembly logic.
It is not a project-specific engineered erection procedure.
This distinction is particularly important because mathematically:
6 × 4 = 24m²
and
4 × 6 = 24m²
But structurally, the two products are not duplicates.
The existing DragonStructure 4×6m FOH has approximately 2m eaves and a 2.5m ridge, with a lower pitched-roof profile. DragonStructure
This 6×4m structure has:
4m low side
→ 5m high side
plus:
ladder access;
open platform access component;
canopy outriggers;
side-wall aluminum posts;
auxiliary lower structure;
substantially larger roof/enclosure package. Dragon Stage
So their identities become:
Wide Single-Level FOH Shelter
Main question:
How do we create a broad protected technical workspace?
Elevated FOH Shelter
Main question:
How do we create a higher 24m² FOH workspace with elevated access, a 4–5m sloped roof, canopy extensions and a developed enclosure system?
That is enough structural differentiation to justify separate DragonStructure Product pages.
The difference from the 4×4m multi-level FOH is equally important.
The published 4×4m structure reaches 6m at the roof low point and 7m at the high point, and its defining feature is multiple working levels rather than simply a high enclosure. DragonStructure
Therefore:
Height alone does not make an FOH a tower.
A useful hierarchy is:
Elevated single working level
≠
Multiple working levels
This 6×4m product remains an Elevated FOH Shelter because the available source does not establish several separate operator levels.
With this product added, the DragonStructure FOH family now demonstrates several different ways of solving technical-control space requirements:
FOH Type | Main Structural Logic |
|---|---|
2×2m Compact FOH Pod | Minimize occupied footprint |
2×6m Linear FOH Shelter | Expand technical space longitudinally |
4×6m Wide FOH Shelter | Create a broad single-level workspace |
6×4m Elevated FOH Shelter | Combine a broad workspace with greater height, elevated access and extended enclosure |
4×4m Multi-Level FOH Tower | Expand technical space vertically across multiple levels |
This is consistent with DragonStructure's broader FOH principle: dimensions, equipment, personnel, working height and site layout determine the practical configuration rather than the label “FOH” alone. DragonStructure
The selection process therefore becomes:
Technical Equipment
→ Operators
→ Working Layout
→ Required Footprint
→ Required Working Height
→ Access
→ Roof & Enclosure
→ Final FOH Structure
For another project, the following modules can change independently:
Width and depth can be adjusted according to the required technical layout.
The working/platform arrangement should follow actual operator and equipment requirements.
The 4–5m single-slope roof belongs to this specific configuration and does not have to be retained for every FOH.
A ladder can be replaced by another access concept if the project requires different personnel or equipment circulation.
Projection and covered areas can change with the required enclosure.
Side, front and rear enclosure can be configured around stage sightlines, entrances and cable routes.
The lower structural arrangement can change according to the complete project configuration.
The principle is:
Change the module affected by the requirement instead of automatically resizing every part of the FOH.
For a similar project, please provide:
required FOH width and depth;
required platform/working height;
required roof low point;
required roof high point;
number of operators;
audio, lighting and video equipment;
console and rack dimensions;
relevant equipment weights;
required stage sightline;
required open side;
curtain/enclosure requirements;
canopy requirement;
access type;
entrance position;
cable-entry positions;
available total footprint;
indoor or outdoor use;
installation location;
site conditions;
existing Ringlock components if reuse is planned;
drawings, sketches or reference images.
This information allows the structure to be configured from the actual FOH workflow rather than simply reproducing a 6×4m product.
The original DragonTruss page confirms:
6m × 4m footprint;
4m side height;
4m roof low point;
5m roof high point;
5m maximum height;
Ringlock main structural BOQ;
84 platform planks;
open platform component;
aluminum ladder;
aluminum single-slope roof system;
canopy-outrigger system;
roof and curtain enclosure;
lower auxiliary Ringlock structure;
ballast-related steel pipes;
approximately 2,700kg packing weight;
approximately 11CBM packing volume. Dragon Stage
The available source does not establish:
platform allowable load;
roof allowable load;
wind rating;
allowable wind speed;
required ballast weight;
anchoring requirement;
foundation requirement;
ground-bearing requirement;
safety factor;
certification;
local compliance;
engineering approval.
The ballast-related pipes therefore remain confirmed supplied components, not evidence of a verified stabilization calculation.
For the primary functional family, see FOH & Control Structure. DragonStructure defines this category around temporary technical working areas for audio, lighting, video and event-production operations, with configuration driven by equipment, personnel, height and site layout. DragonStructure
For the relationship between the steel Ringlock body and aluminum roof/enclosure system, see Ringlock + Aluminum Structure. DragonStructure
For the broader modular supporting system, see Ringlock Structure.
For comparison with a lower single-level FOH of the same nominal 24m² plan area, see 4x6m Single-Level Hybrid Ringlock FOH Shelter with Pitched Aluminum Roof. Its roof is approximately 2m at the eaves and 2.5m at the ridge, making it structurally distinct from this 4–5m elevated configuration. DragonStructure
For comparison with a genuine multi-level configuration, see 4x4m Multi-Level Hybrid Ringlock FOH Tower with 6–7m Sloped Aluminum Roof. DragonStructure
The original commercial product is:
6x4m Hybrid Ringlock FOH Control Booth with Aluminum Single-Slope Roof
For the supplied commercial configuration and current displayed price, customers should visit the original DragonTruss product page.
At the time checked, the original DragonTruss listing displays RMB 54,308. Because product pricing can change and customized FOH configurations may require a separate quotation, the DragonStructure page should not hard-code that price into its own body content. Instead, I recommend using this wording:
For current pricing and the commercial product configuration, please visit the original DragonTruss product page.
This preserves the three-site logic:
DragonStructure
What is this 6×4m elevated FOH structure, and how are its Ringlock body, working platform, access, aluminum sloped roof, canopy, enclosure and auxiliary base configured?
DragonTruss
What is supplied, what can be customized, and what is the current commercial price?
Because the confirmed configuration combines a substantial Ringlock body with ladder access and a roof beginning at approximately 4m and rising to 5m. However, the source does not establish multiple operator levels, so “Elevated FOH Shelter” is more accurate than “Multi-Level FOH Tower.” Dragon Stage
The footprint is approximately 6m × 4m. The roof low point is approximately 4m, and the high point reaches approximately 5m. Dragon Stage
No. Although both have a nominal 24m² plan area, their vertical geometry and component configurations differ substantially. The 4×6m DragonStructure product has approximately 2m eaves and a 2.5m ridge, while this product uses a 4–5m single-slope roof and includes a more developed canopy, access and auxiliary-base configuration. DragonStructure
The available source does not confirm several separate operator levels. It is therefore better classified as an elevated single-level FOH shelter rather than a multi-level tower.
It uses an aluminum single-slope roof, rising from approximately 4m on the low side to 5m on the high side. Dragon Stage
Yes. The confirmed package includes one heavy-duty aluminum ladder and one 2m open aluminum + wood platform plank. Dragon Stage
Yes. The BOQ includes a 60m² main roof tarpaulin, six 3m² canopy tarpaulins, two 16m² side curtains and one 24m² front/rear curtain. Dragon Stage
Yes. A separate lower group contains six 1m standards, ten 2m ledgers, twelve 2.83m diagonal braces and twelve 2m base planks. Dragon Stage
No. They are confirmed supplied components, but the source provides no verified ballast calculation establishing the stabilization requirement for every installation. Dragon Stage
Customers should use the original DragonTruss product page for current pricing. The price shown there can be updated independently of this DragonStructure structural-analysis page.
Project BackgroundThis inquiry involved a customer planning a relatively large LED screen supported by an aluminum ground-support truss system.During the discussion, the customer had already indicated that the LED screen would be approximately 13 m wide, while the final screen height was still being
Project BackgroundThis inquiry came from an Australian customer planning a temporary outdoor LED installation for a hospitality venue in Wickham, Western Australia.The screen itself was relatively straightforward:approximately 4.5 m wide × 2.5 m highapproximately 11.25 m²around 45 pcs 500 × 500 mm r
Project BackgroundThis project came from a stage-construction company working on a large concert setup.On both sides of the main stage, the surrounding Ringlock structure included passageways leading from the backstage preparation area toward the performance stage.These passages had to remain open f
Project BackgroundA five-star hotel in Hong Kong planned to renovate its outdoor rooftop swimming pool and wanted the pool to serve another function when required.Instead of leaving it only as a swimming area, the hotel wanted to cover the pool with a transparent temporary stage/platform so the same
Project BackgroundThe customer was a large event equipment company in Africa preparing a performance stage for a choir and live musicians.The main structure was a large Ringlock stage.In front of the main performance platform, the customer wanted to create additional tiered performance areas so that
Project BackgroundThis inquiry involved a customer planning a relatively large LED screen supported by an aluminum ground-support truss system.During the discussion, the customer had already indicated that the LED screen would be approximately 13 m wide, while the final screen height was still being
Project BackgroundThis inquiry came from an Australian customer planning a temporary outdoor LED installation for a hospitality venue in Wickham, Western Australia.The screen itself was relatively straightforward:approximately 4.5 m wide × 2.5 m highapproximately 11.25 m²around 45 pcs 500 × 500 mm r
Project BackgroundThis project came from a stage-construction company working on a large concert setup.On both sides of the main stage, the surrounding Ringlock structure included passageways leading from the backstage preparation area toward the performance stage.These passages had to remain open f
Project BackgroundA five-star hotel in Hong Kong planned to renovate its outdoor rooftop swimming pool and wanted the pool to serve another function when required.Instead of leaving it only as a swimming area, the hotel wanted to cover the pool with a transparent temporary stage/platform so the same
Project BackgroundThe customer was a large event equipment company in Africa preparing a performance stage for a choir and live musicians.The main structure was a large Ringlock stage.In front of the main performance platform, the customer wanted to create additional tiered performance areas so that
