This structure is a freestanding steel Ringlock support wall developed for the rear or side zone of a temporary stage or event-production area.
Its confirmed overall configuration is approximately:
10m wide × 2m deep × 6m high.
Rather than forming only a single vertical scaffold plane, the structure uses front and rear Ringlock lines connected across approximately 2m of depth, creating a three-dimensional braced framework.
This distinction is important.
A useful way to understand the structure is:
not simply a 10m × 6m wall
but:
10m-wide vertical working face
2m structural depth
6m overall height
horizontal and diagonal Ringlock bracing
=
three-dimensional temporary event support frame
The original DragonTruss product identifies the supplied system as a 10m × 2m × 6m steel Ringlock wall structure.
For other Ringlock-based event structures:
https://www.dragonstructure.com/Ringlock-Structure-pl04775276.html
This is the registered DragonStructure entry page for Ringlock structural systems including stage, LED, sound and other project-oriented support structures.
| Availability: | |
|---|---|
Dragon Stage
The primary function of this structure is to create a large vertical support zone behind or beside an event stage without treating the support as a simple decorative backdrop.
Its Ringlock framework creates a modular structural envelope that can be configured around event-production requirements such as:
stage backdrop positioning;
LED-related support zones;
lighting or production equipment integration;
banners or scenic elements;
temporary event-production infrastructure.
The exact equipment installed on the structure must be confirmed project by project.
The structure itself should therefore be understood first as a:
Ringlock Stage Support Wall
rather than assuming that every version is specifically an LED wall, lighting wall or speaker support.
The confirmed overall envelope is approximately:
Item | Configuration |
|---|---|
Overall Width | Approx. 10m |
Structural Depth | Approx. 2m |
Overall Height | Approx. 6m |
Main System | Ringlock |
Main Material | Steel |
Basic Geometry | Three-dimensional braced wall/frame |
Primary Application | Temporary stage / event support |
The important dimension here is actually the one that is easiest to ignore:
If the structure were only described as “10m × 6m,” a reader might imagine a flat vertical scaffold face.
It is not.
The 2m depth means the structure develops backward from the front working face and uses that depth to create a three-dimensional Ringlock frame.
The original DragonTruss product name uses:
Heavy Duty Steel Ringlock Truss Stage Backdrop Wall.
For DragonStructure, I recommend avoiding Truss Wall as the primary structural name.
The main system shown and supplied is Ringlock scaffolding, not a conventional aluminum box-truss wall.
Calling both systems simply “truss” can blur an important distinction.
This page therefore uses:
Ringlock Stage Support Wall
to describe the complete structural function.
In practical terms:
Aluminum Truss
usually refers to fabricated chord-and-web truss sections.
Ringlock
uses modular standards, ledgers and diagonal braces connected through rosette nodes.
Both can form event support structures, but their structural modules and assembly logic are different.
A lightweight stage backdrop can sometimes be understood as:
two vertical supports + one horizontal member + backdrop.
This Ringlock structure is fundamentally different.
Its geometry is closer to:
Front Ringlock Plane
↕ connected through depth
Rear Ringlock Plane
with horizontal and diagonal members connecting the two.
Viewed from above, the basic concept is:
Front Face
│
│ approximately 2m structural depth
│
Rear Support Face
Viewed from the front:
approximately 10m width
×
approximately 6m height
This combination creates the full three-dimensional structure.
The structure can be broken into five principal component groups:
Structural Module | Function |
|---|---|
Base / Ground Interface | Establishes the bottom support positions |
Ringlock Standards | Creates the vertical grid |
Horizontal Ledgers | Establishes width and depth bays |
Diagonal Bracing | Triangulates selected bays |
Front-to-Back Frame | Turns the vertical wall into a 3D structure |
The value of the system comes from these components working together as one modular framework rather than from any single “heavy-duty” component.
The structure begins with its base positions.
At system level:
Ground
↓
Base / Adjustable Support
↓
Ringlock Standards
The base positions establish the footprint for both the front and rear lines of the structure.
Because this is a tall temporary structure, the actual project cannot determine foundation, anchoring or ballast requirements from the product dimensions alone.
Those requirements depend on the real project conditions and require project-specific verification.
The vertical members form the basic height of the structure.
Instead of fabricating one 6m-high welded wall, the Ringlock system builds height from modular vertical standards.
Conceptually:
Base
↓
Lower Standards
↓
Intermediate Ringlock Levels
↓
Upper Standards
↓
Approx. 6m Total Structural Height
The rosette positions on the standards provide repeated connection levels for horizontal ledgers and diagonal braces.
This is what allows the structure to be developed as a modular grid rather than a one-piece frame.
Horizontal Ringlock members perform two geometrically different jobs.
They connect standards along the approximately 10m-long wall.
They connect the front and rear lines of standards across the approximately 2m-deep footprint.
This distinction matters because the same Ringlock system is creating two directions at once:
X direction → wall width
Y direction → structural depth
Z direction → wall height
That is why the complete structure should be read as a three-dimensional modular frame, not a single scaffold facade.
The original product description confirms a structure approximately:
10m × 2m × 6m.
From a DragonStructure perspective, the 2m dimension deserves much more attention than it normally receives on a conventional product page.
The structure uses depth to create:
Front vertical grid
Rear vertical grid
cross-direction ledgers
diagonal bracing
rather than relying on one thin vertical plane.
In other words, the depth is not “unused space behind the backdrop.”
It is part of the structure's physical configuration.
Ringlock standards and ledgers naturally create rectangular bays.
Diagonal braces are introduced into selected bays to create triangulated geometry.
The practical relationship is:
Standards
Ledgers
→ rectangular modular grid
then:
Diagonal Braces
→ braced modular bays
The braces can appear across the front/rear elevations and within the depth of the framework according to the actual configuration.
This section describes the physical bracing logic visible in a Ringlock system; it is not a project-specific structural calculation.
If we only look at the structure from the front, much of the system appears to be a large 10m-wide Ringlock wall.
But from an angled view, the real configuration becomes clearer.
There is a second structural dimension behind the front face.
The framework therefore works geometrically as:
Front Grid
↔
Depth Connections
↔
Rear Grid
with diagonal members tying parts of that framework together.
This is the key structural feature that distinguishes this product from a simple backdrop frame.
A 10m-wide support structure does not necessarily have to perform one function across its entire width.
The modular Ringlock grid allows the wall to be understood as several potential zones:
Left Zone
│
Central Stage / Backdrop Zone
│
Right Zone
Depending on the project, these zones may correspond to different scenic, display or production functions.
However, this page does not assume that a particular zone is automatically:
an LED hanging position;
a speaker position;
a lighting position;
a banner position.
Those functions should be confirmed from the actual equipment plan.
The word backdrop can mean very different things in event projects.
Sometimes it means only:
fabric / banner / scenic background.
In other projects, the rear-stage area may also contain:
LED screens;
lighting equipment;
signage;
scenic panels;
production equipment.
These are not equivalent structural requirements.
For this reason, DragonStructure should not describe the 10×6m Ringlock framework as if the word “backdrop” automatically defines what can be installed on it.
The correct sequence is:
define the structure
→ define the equipment
→ define equipment position and weight
→ verify the project-specific configuration
This type of three-dimensional Ringlock wall can form the structural starting point for some temporary LED-support arrangements.
But:
Ringlock support wall ≠ automatically verified LED wall.
An LED project requires additional confirmed information including:
screen width;
screen height;
cabinet dimensions;
total equipment weight;
installation elevation;
support or hanging method;
service access;
indoor or outdoor environment.
For structures specifically configured around LED screens, see:
https://www.dragonstructure.com/LED-Screen-Structure-pl09255276.html
The present structure should remain classified by what is actually confirmed: a Ringlock stage support wall/frame.
From a system-configuration perspective, Ringlock has one obvious advantage for a structure like this:
the same component family can create:
width
height
depth
diagonal bracing
through repeated modular nodes.
That means the 10 × 2 × 6m framework does not need to be fabricated as one enormous welded wall.
Instead, it is assembled from repeated components.
This also means changing the dimensions usually changes the component combination and quantity, rather than requiring an entirely new structural product family.
At a simplified system level, the configuration can be read as:
Ground Interface
↓
Vertical Standards
↓
Horizontal Ledgers Across Width
Horizontal Ledgers Across Depth
↓
Diagonal Bracing
↓
Three-Dimensional Ringlock Support Wall
This describes the assembly relationship of the components.
It should not be interpreted as a calculated load path or proof of allowable equipment load.
A practical modular assembly sequence can be understood as:
1. Establish the approximately 10m × 2m footprint
↓
2. Position the base/support points
↓
3. Install the first level of standards
↓
4. Connect width-direction ledgers
↓
5. Connect front-to-back depth ledgers
↓
6. Add diagonal braces
↓
7. Continue standards upward
↓
8. Repeat horizontal and diagonal modules
↓
9. Complete the approximately 6m-high framework
↓
10. Integrate project-specific backdrop/equipment interfaces only after their requirements are confirmed
This is an explanation of modular assembly logic, not a complete engineered erection method.
The original product contains a component BOQ for the supplied structure. The appropriate DragonStructure treatment is to explain those components by structural role rather than merely reproduce the manufacturer quotation.
Component Group | Structural Role |
|---|---|
Base / Adjustable Support Components | Establish bottom support positions and initial leveling interface |
Component Group | Structural Role |
|---|---|
Ringlock Standards | Build the vertical grid and overall height |
Component Group | Structural Role |
|---|---|
Ringlock Ledgers | Connect standards along the wall width |
Depth-Direction Ledgers | Connect front and rear structural planes |
Component Group | Structural Role |
|---|---|
Diagonal Braces | Create diagonal bracing within selected bays |
Component Group | Structural Role |
|---|---|
Ringlock Rosette Connections | Provide repeated ledger/brace connection nodes along the standards |
The source product is explicitly a steel Ringlock system and identifies the complete envelope as approximately 10m × 2m × 6m.
For this structure, the most useful way to understand the BOQ is not:
X pieces of this + Y pieces of that.
It is:
How do those parts generate the final geometry?
The logic is:
Standards
→ determine vertical positions.
Ledgers
→ establish repeated horizontal bays.
Depth members
→ separate and connect the front/rear grids.
Diagonal braces
→ brace selected rectangular bays.
Base components
→ establish the lower interface.
Together they generate:
approximately 10m width × 2m depth × 6m height.
This is exactly the distinction between a DragonTruss manufacturer product page and a DragonStructure structural-breakdown page.
Even when a rendered image looks clear, individual Ringlock members can overlap visually.
A brace may hide a ledger; front and rear standards may align in perspective; small connectors may not be visible at all.
Therefore exact quantities should come from:
quotation / BOQ / final drawing
rather than being reconstructed by visually counting the rendering.
This follows the DragonStructure Product rule: when exact quantities are not reliably supported, describe component groups rather than invent numbers.
This structural concept can be used as a reference configuration for temporary event requirements such as:
concert stage rear support structures;
festival production walls;
stage backdrop frameworks;
scenic-support frameworks;
temporary signage support;
event display support;
Ringlock frameworks later integrated with confirmed LED or production equipment.
The 10 × 2 × 6m dimensions represent this specific supplied configuration.
They should not be treated as a universal standard size.
The modular structure can be adapted around several primary variables.
The approximately 10m width can change according to the stage or production area.
The approximately 6m height can change according to the required backdrop or equipment elevation.
The approximately 2m depth is an important design variable and should not be changed independently without reviewing the complete configuration.
Changing width, height or depth changes the required combination of standards, ledgers and braces.
The structure may need to interface with:
LED;
lighting;
signage;
scenic panels;
other event equipment.
Each changes the information required before the structure can be finalized.
If technicians need to reach equipment installed on the structure, access requirements should be defined separately rather than assuming the Ringlock frame itself automatically provides a suitable working platform.
A common mistake is to look at a scaffold-type structure and assume:
“People can climb it anyway.”
That is not the same thing as designing a defined access route or working position.
If the project requires technicians to:
install LED cabinets;
service lighting;
adjust banners;
inspect connections;
work at height;
then the project should separately define:
access
working platform
guarding / edge protection where required
equipment position
rather than treating the structural wall itself as an unspecified climbing frame.
For Ringlock access configurations:
https://www.dragonstructure.com/Ringlock-Access-Structure-pl02055276.html
Because the structure is modular, changing width is not simply “stretching” the same wall.
For example, increasing the width may change:
number of horizontal bays;
number of standards;
ledger quantities;
diagonal-brace arrangement;
base positions;
equipment-support locations.
Likewise, reducing width does not mean every component quantity decreases proportionally.
The final BOQ follows the bay layout, not just the total number of meters.
Increasing the height affects more than the length of the vertical standards.
It can also change:
number of vertical Ringlock levels;
horizontal ledger quantity;
diagonal-brace arrangement;
access requirements;
equipment elevation;
project-specific stability requirements.
Therefore:
10m wide × 6m high
and
10m wide × 8m high
should not be treated as the same structure with “2m more steel added on top.”
They require a new configuration review.
Depth is particularly important because it changes the relationship between the front and rear structural planes.
The supplied structure is approximately:
2m deep.
Changing this dimension alters the three-dimensional geometry.
That can affect:
front-to-back ledger lengths;
footprint;
bay proportions;
diagonal arrangement;
equipment position;
access around the structure;
project-specific stability considerations.
For this reason, depth should be treated as a primary structural variable, not a secondary packing dimension.
These two structures can sometimes serve similar event-production functions, but they are physically very different.
Ringlock Support Wall | Aluminum Truss Backdrop |
|---|---|
Modular standards + ledgers + braces | Fabricated truss sections |
Repeated rosette grid | Chord/web truss geometry |
Can develop substantial structural depth through bays | Often configured as towers + horizontal truss |
Easily reorganized through Ringlock bay combinations | Reconfigured through truss lengths/corners |
Scaffold-derived modular system | Event-truss system |
This page is specifically about the Ringlock structural approach.
It should not be confused with a conventional aluminum goalpost or box-truss backdrop.
The supplied source confirms:
steel Ringlock structural system;
stage/event backdrop or support-wall application;
approximately 10m overall width;
approximately 2m structural depth;
approximately 6m overall height;
modular Ringlock configuration.
The following explanation is based on the physical configuration of the Ringlock system:
standards create the vertical grid;
ledgers connect the grid horizontally;
front-to-back members establish structural depth;
diagonal braces triangulate selected bays;
the approximately 2m depth means the structure should be understood as a three-dimensional frame rather than a flat backdrop.
These statements explain system configuration, not verified engineering performance.
The source does not establish project-specific verified values for:
allowable LED-screen weight;
allowable lighting load;
allowable banner/scenic load;
point-load capacity;
wind rating;
ballast requirement;
anchoring requirement;
foundation requirement;
safety factor;
certification;
local-code compliance;
engineering approval.
These must not be inferred from the phrase Heavy Duty in the original product name.
That distinction is particularly important here: “Heavy Duty” is part of the DragonTruss commercial product name; it is not, by itself, an engineering rating.
To adapt this structure to another project, provide:
required overall width;
required overall height;
available structural depth;
intended function;
stage dimensions;
required position relative to the stage;
indoor or outdoor use;
equipment type;
equipment dimensions;
equipment weight;
equipment installation elevation;
hanging/support method;
required access;
working-platform requirements;
site plan;
ground/site information;
existing Ringlock system information if components will be reused;
drawings or reference images.
The configuration can then be developed through:
Required Support Area
→ Width + Height
→ Available Depth
→ Ringlock Bay Layout
→ Equipment Zones
→ Access Requirements
→ Final Component Configuration
https://www.dragonstructure.com/Ringlock-Structure-pl04775276.html
The primary DragonStructure category for Ringlock-based stage, LED, sound and other temporary structural systems. This usage is explicitly recorded in the Dragon Internal Link Library.
https://www.dragonstructure.com/LED-Screen-Structure-pl09255276.html
Useful when the primary function changes from a general stage-support wall to a structure specifically configured around an LED screen.
https://www.dragonstructure.com/Ringlock-Access-Structure-pl02055276.html
Useful when the structure also requires defined technician access, stairs, walkways or working positions.
The original manufacturer/supply product is:
10x6m Heavy Duty Steel Ringlock Truss Stage Backdrop Wall
Original Product URL:
The original page positions the item commercially as a steel Ringlock stage backdrop/truss wall and describes an approximately 10m × 2m × 6m configuration.
The two pages intentionally answer different questions:
DragonTruss
→ What steel Ringlock backdrop-wall package can DragonStage manufacture and supply?
DragonStructure
→ How does a 10m-wide, 6m-high Ringlock support wall use approximately 2m of structural depth, modular standards, ledgers and diagonal bracing to become a three-dimensional event-support frame?
That separation follows the DragonStructure Product rule: explain the complete structure, modules, configuration and assembly logic, rather than reproduce the manufacturer's product description.
The more complete structural description is approximately 10m wide × 2m deep × 6m high. The 2m depth is important because the system is a three-dimensional Ringlock framework rather than a single flat wall.
The original name, 10x6m Heavy Duty Steel Ringlock Truss Stage Backdrop Wall, is a manufacturer/supply product name. DragonStructure instead names the structure according to its physical configuration and function: 10m Wide Ringlock Stage Support Wall with 2m-Deep Braced Frame.
No. The main structural system is steel Ringlock scaffolding. Standards, horizontal ledgers and diagonal braces create the modular framework.
The approximately 2m depth allows front and rear Ringlock planes to be connected into a three-dimensional framework. It is therefore a core part of the configuration rather than simply unused space behind the backdrop.
A Ringlock framework can be configured for LED-support applications, but this product page does not establish a universal LED capacity. Screen dimensions, total weight, installation height, connection method and project conditions must be provided for project-specific verification.
Yes, Ringlock is modular, so width, height, depth and bay arrangement can be reconfigured. Changing those dimensions also changes component quantities and potentially the bracing and access arrangement.
Not from the supplied information alone. Heavy Duty appears in the original commercial product name, but it should not be interpreted as a verified load capacity, wind rating or engineering approval.
A Ringlock framework should not automatically be treated as a defined access system. If technicians need regular installation or maintenance access, working platforms, stairs/walkways and guarding requirements should be considered separately.
Recommended DragonStructure Product Name: 10m Wide Ringlock Stage Support Wall with 2m-Deep Braced Frame
Original DragonTruss Product Name: 10x6m Heavy Duty Steel Ringlock Truss Stage Backdrop Wall
Primary Category: Ringlock Structure
Primary Function: Stage / Event Support Wall
Overall Width: Approx. 10m
Structural Depth: Approx. 2m
Overall Height: Approx. 6m
Main Material: Steel
Main System: Ringlock
Main Modules: Base + Standards + Ledgers + Depth Connections + Diagonal Bracing
Geometry: Three-Dimensional Braced Frame
Potential Integration: Backdrop / Scenic / LED / Event Equipment, subject to project requirements
Core Structural Logic: Front and Rear Ringlock Grids + 2m Structural Depth + Horizontal Connections + Diagonal Bracing
A 10m-wide, approximately 6m-high modular Ringlock stage support wall built as a three-dimensional frame with approximately 2m of structural depth. Front and rear standard grids are connected by horizontal members and diagonal bracing, creating a temporary event-support structure that can be adapted around stage backdrops, scenic elements, LED zones or other confirmed production requirements.
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