Flexible LED Displays: Types, Applications, and How to Choose the Right One (2026)
If you’ve ever tried to wrap a traditional LED panel around a pillar, you already know the problem: rigid cabinets don’t bend. The result is either visible gaps between flat panels faking a curve, or an expensive custom fabrication that takes months. Flexible LED displays solve this by using soft LED modules that physically bend — conforming to cylinders, arches, S-curves, concave walls, and virtually any non-flat surface with a smooth, seamless image.
The market for flexible LED displays is growing rapidly as architects and designers demand curved displays and creative installations that rigid panels simply cannot deliver. But “flexible” is an overloaded term in the LED industry — it covers everything from slightly curved rigid cabinets to truly bendable soft modules to rollable LED film. Choosing the wrong type wastes budget and creates installation headaches.
This guide cuts through the confusion. As a manufacturer with 14+ years of experience and 12,000+ LED display projects across 60+ countries, we’ll explain exactly how flexible LED technology works, what types exist, how to spec them correctly, and where they deliver the most value — with real product data and project examples, not marketing fluff.
Quick Answer: A flexible LED display uses soft LED modules (typically 4–6mm thin) built on flexible PCBs that bend to a minimum radius of approximately R500mm, enabling seamless installation on curved surfaces like pillars, arches, and wave-shaped walls. Key specs to evaluate: pixel pitch (P1.25–P3 for indoor), brightness (500–2,000+ nits), bend radius, module thickness, and whether you need GOB coating for added durability. Our flexible LED panel lineup covers P1.25 to P3.076 with 3,840Hz refresh rate and optional GOB upgrade.
This article is the Pillar page for our Flexible LED Display topic cluster — it links to in-depth spoke articles covering curved LED screens vs. flat LED and curved LED display screen technology, plus our creative custom-shaped LED display solutions.
What Is a Flexible LED Display?
A flexible LED display (also called a soft LED display, bendable LED screen, or flexible LED panel) is an LED video wall built from soft LED modules mounted on flexible printed circuit boards (FPCBs) instead of rigid fiberglass PCBs. This construction allows each module to physically bend forward and backward, conforming to curved, cylindrical, concave, convex, and irregular surfaces without the visible seams or panel gaps that rigid flat cabinets produce.
The core difference between a flexible LED display and a standard rigid LED display:
| Feature | Rigid LED Display | Flexible LED Display |
|---|---|---|
| PCB material | Rigid fiberglass (FR4) | Flexible PCB (FPCB) or rubber-based |
| Module thickness | 10–15mm+ | 4–6mm (ultra-thin, typical for soft modules) |
| Bending capability | None (0°) | Up to 180° (convex and concave) |
| Minimum bend radius | N/A | R500mm (typical for soft modules) |
| Weight | 8–15 kg/m² | 3–6 kg/m² (significantly lighter; typical for soft modules) |
| Cabinet required? | Yes (aluminum/steel) | No — modules mount directly to structure |
| Installation surfaces | Flat walls only | Pillars, cylinders, arches, S-curves, wave walls |
| Cost per m² | Lower (standard) | Higher (specialized manufacturing) |
Key technical terms:
- Soft LED Module: An LED module built on a flexible circuit board that can bend without breaking. The “soft” refers to the PCB flexibility, not the LED surface — the LEDs themselves are standard SMD packages (SMD1515, SMD2020, etc.).
- FPCB (Flexible Printed Circuit Board): The backbone of flexible LED technology. Unlike rigid FR4 boards, FPCBs use polyimide or similar flexible substrates that maintain electrical connectivity while bending.
- Bend Radius: The minimum radius of curvature a module can achieve without damaging the LEDs or circuit traces. Measured from the center of the curve to the module surface. Smaller radius = tighter curve capability. A typical R500mm means the module can wrap around a cylinder with a 500mm (50cm) radius — equivalent to a 1-meter diameter pillar.
- GOB (Glue on Board): A protective epoxy layer applied over the LED surface that adds IP65-level protection against moisture, dust, and physical impact. Especially valuable for flexible installations where modules may be touched or exposed to environmental stress.
How Flexible LED Modules Work: The Technology Behind the Bend
Traditional LED modules use rigid FR4 fiberglass PCBs — the same material in most consumer electronics. These boards crack if you try to bend them. Flexible LED modules replace this with a pliable substrate (typically polyimide-based FPCB) that allows the circuit to flex repeatedly without breaking solder joints or trace connections.
The Construction Stack (from front to back)
Why the Bend Radius Matters
The bend radius specification is the single most important number for any curved flexible LED screen project. Here’s why:
- R500mm means you can wrap the module around any cylinder with a radius of 500mm or larger (1-meter diameter or larger)
- Tighter curves (R300mm, R200mm) require specialized modules with narrower widths and reinforced solder connections — these exist but cost more
- Going below the rated minimum radius will crack solder joints, creating dead pixels that appear immediately or (worse) weeks after installation
Manufacturer’s tip: When calculating whether a module fits your curve, always measure the structural surface radius, not the outer visible radius. The module adds 4–6mm of thickness, which effectively reduces the available radius. For a 1-meter diameter pillar (R500mm surface), you need modules rated for R494–R496mm or better.
Convex vs. Concave Bending
Most flexible LED modules support both convex and concave bending:
| Bending Direction | Application | Visual Effect |
|---|---|---|
| Convex (outward curve) | Pillar wraps, cylinder screens, protruding displays | Viewers see the screen from outside the curve |
| Concave (inward curve) | Immersive walls, tunnel displays, concave LED backdrops | Viewers are “surrounded” by the screen — more immersive |
| S-curve (alternating) | Wave walls, artistic installations | Dynamic architectural effect |
| Flat | Standard wall mount | Same as rigid panel — used when flexible modules are chosen for weight/thickness benefits |
Types of Flexible LED Displays: A Complete Comparison

“Flexible LED display” is an umbrella term that covers several distinct product categories. Understanding the differences is critical — buying the wrong type for your application is the most common mistake we see.
Type 1: Soft LED Module (True Flexible)
This is what most people mean by “flexible LED display.” Individual LED modules built on FPCBs that physically bend.
| Spec | Unilight Flexible Soft Module |
|---|---|
| Pixel Pitch | P1.25 / P1.53 / P2 / P3.076 |
| Module Size | 320 × 160mm |
| Brightness | 500–800 cd/m² (indoor optimized) |
| Refresh Rate | 3,840Hz |
| LED Brand | Standard / Kinglight (P3.076) |
| Bend Radius | ~R500mm (convex and concave) |
| GOB Upgrade | Available (adds IP65 + anti-collision) |
| Mounting | Magnetic + screw — no cabinet needed |
| Best For | Pillars, cylinders, concave walls, creative shapes |
Pros: True bending capability, ultra-thin, lightweight, no cabinet needed, cost effective for moderate curves
Cons: Indoor brightness only (500–800 nits), requires custom steel/aluminum backing structure
Type 2: Curved Cabinet LED (Adjustable Arc)
Not truly “flexible” — these use rigid modules inside cabinets with adjustable hinge angles. Each cabinet can be angled relative to its neighbor to approximate a curve.
| Spec | Unilight ±45° Arc Cabinet (500×500mm) |
|---|---|
| Pixel Pitch | P2.6 / P2.9 / P3.9 / P4.8 (outdoor) / P1.95 (indoor) |
| Arc Range | Outer arc 30° / Inner arc 45° per cabinet joint |
| Brightness | 3,500–5,000 cd/m² (outdoor capable) |
| Weight | 6.5 kg/cabinet |
| Refresh Rate | 7,680Hz |
| IP Rating | IP65 (with GOB) |
| Best For | Large curved walls, stage backgrounds, architectural arcs |
Pros: Higher brightness, outdoor capable, more robust, wider pixel pitch range
Cons: Not truly flexible — curves are faceted (polygon approximation), minimum curve radius limited by cabinet width, heavier
Type 3: LED Film Screen (Transparent Flexible)
Ultra-thin (1–3mm) transparent LED film that adheres directly to glass surfaces. A different technology from soft modules — designed for transparency rather than bending.
| Spec | Unilight Holographic Film Screen |
|---|---|
| Thickness | 1–3mm |
| Weight | 2 kg/m² |
| Transparency | Up to 99% (varies by pixel pitch) |
| Pixel Pitch | PH2.5 – PH50 |
| Brightness | 800–5,000 cd/m² |
| Best For | Glass facades, retail windows, architectural glass |
Pros: Near-invisible when off, can adhere to glass, supports curved glass surfaces
Cons: Lower resolution at higher transparency, limited to glass applications, not for pillar wrapping
Type 4: Curved Rigid Cabinet (Fixed Arc)
Pre-manufactured cabinets with a fixed curve angle. Not adjustable — the curve is built into the cabinet structure.
Best For: Permanent installations with a known, fixed radius (e.g., building facade with a consistent curve)
Limitation: Cannot adapt to variable radii or be reused for different curve angles
Head-to-Head Comparison
| Feature | Soft Module | Curved Cabinet | LED Film | Fixed Arc Cabinet |
|---|---|---|---|---|
| True bending | ✅ Yes | ❌ Faceted | ✅ On glass | ❌ Fixed |
| Min. bend radius | R500mm | ~R800mm+ | Depends on glass | Fixed at manufacture |
| Outdoor use | ❌ (500–800 nit) | ✅ (3,500+ nit) | ⚠️ Limited | ✅ |
| Weight | 3–6 kg/m² | 13–26 kg/m² | 2 kg/m² | 15–30 kg/m² |
| Thickness | 4–6mm | 50–100mm | 1–3mm | 50–100mm |
| Pixel pitch range | P1.25–P3 | P1.95–P4.8 | P2.5–P50 | P2.5–P10 |
| Cabinet needed? | No | Yes | No | Yes |
| Installation complexity | Medium | Medium-High | Low (adhesive) | High |
| Cost per m² | $$ | $$–$$$ | $$$$ | $$$ |
| Best application | Pillars, creative shapes | Stage, architectural curves | Glass facades | Permanent curved walls |
For a deeper comparison of curved vs flat LED technology, see our complete guide: Curved LED Screens vs. Flat LED: Which Is Right for Your Business?
How to Choose the Right Flexible LED Display: A 5-Step Decision Framework
Step 1: Define Your Surface Geometry
Before looking at any product specs, measure your installation surface:
| Surface Type | What to Measure | Typical Solution |
|---|---|---|
| Cylindrical pillar | Diameter and height | Soft module (if diameter ≥ 1m) |
| Concave wall | Radius of curvature, wall dimensions | Soft module or curved cabinet |
| S-curve / wave wall | Multiple radii, inflection points | Soft module (most adaptable) |
| Glass facade | Glass type, dimensions, curve (if any) | LED film screen |
| Large architectural arc | Radius, total arc length, viewing distance | Curved cabinet (for brightness + IP rating) |
| Irregular / freeform | 3D scan or detailed drawings | Soft module + custom structure |
Step 2: Match Pixel Pitch to Viewing Distance
The same rule applies as with any LED display — pixel pitch × 1,000 ≈ minimum comfortable viewing distance (mm):
| Viewing Distance | Recommended Pixel Pitch | Typical Application |
|---|---|---|
| 1–2m (close-up) | P1.25–P1.53 | Retail displays, museum exhibits, corporate lobbies |
| 2–3m | P1.53–P2 | Shopping mall pillars, hotel reception |
| 3–5m | P2–P2.5 | Stage backgrounds, conference halls |
| 5m+ | P2.5–P3.076 | Large event venues, architectural installations |
Cost-saving insight: For a pillar in a shopping mall atrium where the closest viewer is 3+ meters away, P2 delivers the same perceived image quality as P1.25 — at roughly 40% lower cost per square meter. Don’t over-spec pixel pitch for curved installations where the closest viewer can’t physically get close enough to see individual pixels.
Step 3: Evaluate Brightness Requirements
| Environment | Required Brightness | Product Match |
|---|---|---|
| Indoor (controlled lighting) | 500–800 cd/m² | Soft module series ✅ |
| Indoor (high ambient light, near windows) | 800–1,500 cd/m² | Soft module with high-brightness upgrade |
| Semi-outdoor (covered, indirect sun) | 1,500–3,000 cd/m² | Curved cabinet series |
| Full outdoor (direct sunlight) | 3,500–6,000+ cd/m² | Curved cabinet series or outdoor flexible module |
Key distinction: Our standard soft module series (P1.25–P3.076) is optimized for indoor use at 500–800 cd/m². For outdoor curved installations requiring 3,500+ nits, use our 500×500mm ±45° curved cabinet series (P2.6/P2.9/P3.9/P4.8) which achieves 3,500–5,000 cd/m² with IP65 protection (as defined by the IEC 60529 standard). For a comprehensive guide to curved LED technology advantages, read our article on curved LED display screen technology.
Step 4: Check Structural and Weight Constraints
Flexible LED modules are dramatically lighter than rigid cabinets, which matters for:
- Pillar wrapping: The pillar must support the screen weight. At 3–6 kg/m², soft modules impose far less structural load than 26 kg/panel rigid cabinets
- Ceiling-hung installations: Weight directly affects rigging requirements and costs
- Temporary / rental installations: Lighter modules mean faster setup and lower labor costs
Step 5: Decide on Protection Level
| Protection Need | Solution | Use Case |
|---|---|---|
| Standard indoor | No coating needed | Corporate lobby, conference room |
| High-traffic indoor | GOB upgrade (IP65) | Shopping mall, retail store, museum (touch risk) |
| Semi-outdoor / outdoor | Curved cabinet with IP65/IP66 | Building exterior, covered walkway |
| Extreme outdoor | IP67/IP68 rigid series | Not applicable for soft modules |
Real-World Applications: Where Flexible LED Displays Deliver the Most Value

1. Pillar and Column Wrapping
The most common application for flexible LED panels. Soft modules wrap around structural columns in shopping malls, hotel lobbies, airports, and convention centers — transforming dead architectural space into dynamic digital signage.
Key specs for pillar wraps:
- Pillar diameter ≥ 1m → standard soft module (R500mm)
- Pillar diameter 0.5–1m → narrow-width custom modules or LED film
- Content: typically vertical video, branding loops, or real-time information
2. Curved Architectural Walls (Concave & Convex)
Real-world example: When we delivered the 600㎡ curved outdoor LED screen for Hohhot Business Center — a massive 40m × 15m building-facade installation — the curved design was essential for the building’s architectural vision. Using P5.95 at a resolution of 6720 × 2520 pixels, the screen delivers stunning naked-eye 3D advertising content that follows the building’s natural contour, visible from a 160° viewing angle with smooth, seamless installation.
3. Stage and Event Backgrounds
Curved LED video walls create immersive stage environments for concerts, corporate events, and broadcast studios. The curved shape eliminates the “flat screen on a wall” look and creates depth perception for audiences and cameras.
Real-world example: For the Guangdong-Hong Kong-Macao Ultra HD Digital Innovation Park, we built South China’s first 8K XR+VP studio using a 22m × 5.5m LED curved screen (157㎡ total) with a 200° surrounding arc. The P1.95 + P3.9 combination created an immersive virtual production environment for film, TV, and commercial shoots.
4. Retail and Commercial Digital Signage
Eye-catching curved displays in retail environments drive customer engagement. Flexible LED screens can conform to store fixtures, display counters, and architectural features that rigid screens cannot.
5. Transportation Hubs
Real-world example: At Jinan West High-Speed Railway Station, we installed a 456㎡ large curved LED screen in the waiting hall — the largest single LED screen at any high-speed railway station in China at the time. The curved design maximizes visibility across the wide waiting hall, and the high grayscale, high contrast, and wide color gamut ensure clear content for travelers from any angle.
6. Immersive Experiences (360° and Tunnel)
Concave LED walls create immersive environments for museums, exhibitions, theme parks, and corporate experience centers. Soft modules enable seamless 360° cylindrical screens without visible panel joints.
Application Decision Matrix
| Application | Recommended Type | Pixel Pitch | Brightness | Key Consideration |
|---|---|---|---|---|
| Indoor pillar (≥1m diameter) | Soft module | P1.25–P2 | 500–800 nit | Weight limit on pillar |
| Shopping mall concave wall | Soft module | P1.53–P2 | 500–800 nit | Viewer proximity |
| Stage background (indoor) | Curved cabinet | P2.6–P3.9 | 500–4,000 nit | Refresh rate for cameras |
| Building facade (outdoor) | Curved cabinet | P2.9–P4.8 | 3,500–5,000 nit | IP65 + wind load |
| Retail glass window | LED film | PH3.91–PH10 | 800–4,500 nit | Transparency priority |
| XR/VP studio | Curved cabinet | P1.95–P2.6 | 500–800 nit | Color accuracy + refresh rate |
| Transportation hub | Soft module or curved cabinet | P2–P3 | 800–2,000 nit | 24/7 reliability |
Installation Best Practices for Flexible LED Displays
Mounting Methods
Since soft LED modules don’t use traditional cabinets, mounting is fundamentally different:
| Method | How It Works | Best For |
|---|---|---|
| Magnetic mounting | Modules stick to a ferrous metal backing structure via embedded magnets | Quick install/removal; rental; temporary |
| Screw mounting | Modules bolt to a custom-shaped backing structure through screw ports | Permanent installations; higher security |
| Adhesive mounting | Modules (or LED film) adhere directly to the surface | Glass facades; smooth flat/curved surfaces |
| Hybrid | Magnets for quick positioning + screws for permanent securing | Most professional permanent installations |
Critical Installation Tips
Common Challenges and How to Solve Them
| Challenge | Root Cause | Prevention | Solution |
|---|---|---|---|
| Dead pixels after installation | Exceeded minimum bend radius | Verify radius before installation; never force | Replace affected module (magnetic mount = easy swap) |
| Uneven surface / wavy appearance | Poor backing structure flatness | Use precision-fabricated backing; avoid galvanized pipe | Re-fabricate backing structure to ≤0.5mm tolerance |
| Color inconsistency between modules | Module batch mixing; calibration drift | Use same-batch modules; calibrate with NovaStar | Re-calibrate entire display using colorimeter |
| Module detaching (magnetic mount) | Insufficient magnetic force; vibration | Use stronger magnets; add screw backup | Switch to hybrid mount (magnetic + screw) |
| Moisture damage | Indoor installation near open windows/doors | Specify GOB upgrade for high-humidity environments | Replace damaged modules; apply conformal coating |
| Content distortion on curves | Content designed for flat display, not mapped to curved surface | Use content management software with curve mapping | Re-render content with correct surface geometry |
Lessons from the Field: Content mapping is the most underestimated challenge in curved LED installations. A video designed for a flat 16:9 screen looks distorted when projected onto a 180° cylinder. Professional installations require real-time content warping via the control system (NovaStar supports this) or pre-rendered content designed for the specific curvature. We always provide 3D rendering services to our clients before fabrication — ensuring content looks right on the actual curved surface before a single module is installed.
Flexible LED Display Specification Quick-Reference Table
For quick reference during procurement, here are our complete flexible LED display specifications:
Soft Module Series (True Flexible)
| Model | Pixel Pitch | Pixel Density | Brightness | Refresh Rate | Module Size | LED Brand | GOB Option |
|---|---|---|---|---|---|---|---|
| P1.25 | 1.25mm | 640,000 dots/m² | 500–800 cd/m² | 3,840Hz | 320×160mm | Standard | ✅ |
| P1.53 | 1.53mm | 426,807 dots/m² | 500–800 cd/m² | 3,840Hz | 320×160mm | Standard | ✅ |
| P2 | 2mm | 250,000 dots/m² | 500–800 cd/m² | 3,840Hz | 320×160mm | Standard | ✅ |
| P3.076 | 3.076mm | 105,709 dots/m² | 500–800 cd/m² | 3,840Hz | Soft module | Kinglight | ✅ |
Curved Cabinet Series (±45° Adjustable Arc)
| Model | Pixel Pitch | Brightness | Arc Range | Weight | Refresh Rate | IP Rating |
|---|---|---|---|---|---|---|
| P1.95 (Indoor) | 1.95mm | 500–600 cd/m² | ±45° | 6.5 kg | 7,680Hz | Standard |
| P2.6 | 2.6mm | 3,500–4,000 cd/m² | ±45° | 6.5 kg | 7,680Hz | IP65 (GOB) |
| P2.9 | 2.9mm | 3,500–4,000 cd/m² | ±45° | 6.5 kg | 7,680Hz | IP65 (GOB) |
| P3.9 | 3.9mm | 3,500–5,000 cd/m² | ±45° | 6.5 kg | 7,680Hz | IP65 (GOB) |
Frequently Asked Questions (FAQ)
What is the minimum bend radius for a flexible LED screen?
The typical minimum bend radius for commercial flexible LED soft modules is R500mm (50cm), meaning the module can wrap around a cylinder with a minimum diameter of 1 meter. Specialized narrow-width modules can achieve tighter radii down to R200–R300mm for smaller pillars. Always check the specific module specification — exceeding the rated bend radius will cause solder joint failure and dead pixels. Our flexible LED panel series supports R500mm for standard 320×160mm modules.
How thin are flexible LED display modules?
Flexible LED soft modules are typically 4–6mm thin — approximately 3× thinner than the thinnest rigid LED cabinet. This ultra-slim profile allows them to conform closely to curved surfaces without protruding. Combined with no-cabinet-required mounting (magnets or screws directly to backing structure), the total installation depth can be as low as 15–25mm including the backing structure.
Can flexible LED displays be used outdoors?
Standard flexible soft LED modules are designed for indoor use only (500–800 cd/m² brightness, no weatherproofing by default). Adding a GOB coating upgrades protection to IP65 and adds moisture/dust resistance, but brightness remains indoor-level. For true outdoor curved installations requiring 3,500+ nits and IP65/IP66 protection, use curved cabinet LED displays (like our ±45° arc series) instead of soft modules. See our guide on dealing with harsh environments for outdoor LED displays for more details.
What is the difference between a flexible LED screen and a curved LED screen?
A flexible LED screen uses physically bendable soft modules that can conform to any curved surface on-site, while a curved LED screen typically uses rigid cabinets with adjustable hinge angles that approximate a curve through faceted segments. Flexible screens deliver smoother curves (especially at tight radii) but are limited to indoor brightness. Curved cabinet screens support outdoor use and higher brightness but create a slightly faceted appearance at tight curves. Read our complete comparison: Curved LED Screens vs. Flat LED: Which Is Right for Your Business?
How much does a flexible LED display cost?
Flexible LED display pricing typically ranges from approximately $500–$3,000 per square meter (based on typical industry pricing as of 2024–2026), depending on pixel pitch, module type, and protection level. Fine-pitch flexible displays (P1.25) cost significantly more than standard-pitch (P3.076). The total project cost also includes the custom backing structure (10–20% of screen cost), installation labor, content management system, and control hardware. Common cathode and GOB upgrades add approximately 15–25% to module cost.
How long do flexible LED displays last?
Quality flexible LED displays last 100,000+ hours of operation — equivalent to approximately 11 years at 24/7 use, or 17+ years at 16 hours/day. The flexible PCB substrate does not degrade faster than rigid PCBs under normal bending (within rated radius). The primary failure mode is LED chip degradation over time (gradual brightness loss), same as rigid displays. GOB-coated modules tend to last longer in challenging environments due to the protective epoxy layer.
Do flexible LED modules require special content?
Yes — content displayed on curved surfaces should be designed or mapped for the specific curvature to avoid visual distortion. A standard flat 16:9 video will appear stretched or warped when displayed on a cylindrical or concave surface. Professional control systems (NovaStar, Linsn) support real-time geometric correction, and we provide 3D rendering services to pre-visualize content on your specific curved surface before installation.
Key Takeaways
- Soft LED modules (P1.25–P3.076) are the go-to for indoor curved installations — pillars, concave walls, S-curves, and creative shapes — at 4–6mm thin and 3–6 kg/m².
- Curved cabinet LED displays (±45° arc) are the better choice for outdoor or high-brightness curved installations — stage backgrounds, building facades, and stadium applications.
- The minimum bend radius (R500mm typical) is the most critical spec — always verify against your surface geometry before ordering.
- GOB upgrade is recommended for any flexible installation in high-traffic environments — shopping malls, retail stores, museums, and transportation hubs.
- Don’t over-spec pixel pitch for curved installations — at typical viewing distances for pillars (3m+), P2 delivers the same visual quality as P1.25 at 40% less cost.
Conclusion
Flexible LED display technology has matured from a niche specialty into a mainstream solution for any installation where flat panels fall short. The combination of ultra-thin soft modules, true bending capability, magnetic mounting, and optional GOB protection means that architects, designers, and integrators can now realize curved digital signage visions that were impossible — or prohibitively expensive — just five years ago.
The key to a successful flexible LED project is matching the right technology to your specific surface, viewing distance, brightness requirement, and budget. Soft modules for indoor curves, curved cabinets for outdoor arcs, and LED film for glass facades — each has its sweet spot, and choosing correctly saves both money and installation headaches.
Get Expert Help with Your Flexible LED Project
Every curved LED installation is unique — the geometry, viewing angles, content requirements, and structural constraints all interact in ways that generic product specs can’t fully capture. Our engineering team provides free project consultations including 3D rendering of your curved installation, structural recommendations, content mapping guidance, and spec sheets tailored to your exact surface geometry.
Contact our LED display engineers for a free consultation:
- 📧 Email: [email protected]
- 📱 WhatsApp: +86 189 9893 5270
- 🌐 Visit: https://www.unilightled.com/contact/
- 📦 Browse flexible LED products: Flexible LED Screen
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- Curved LED Display Screen Technology — Advantages and Applications — Deep dive into curved LED tech
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- Common Installation Methods of LED Display — Complete installation reference
- LED Display Technical Specifications Guide — Full spec reference
- Understanding Pixel Pitch — How pixel pitch affects quality
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