Spectral Curve
Studio Light with a Sun-Like
Studio Light for Virtual Production studios with advanced 7-LED Architecture
Designed by
01
7 LED type architecture
FullBandRGB uses an advanced LED architecture: seven types of LEDs, including four with phosphor-converted LEDs, outperforming conventional RGBW/RGBWW and even RGBACL solutions. The result is stable, camera-accurate illumination with a smoother, more continuous spectral curve.
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Sensor-accurate light output
In Virtual Production, the primary observer is the camera, not the human eye. FullBandRGB is designed to output a spectrum that fully matches camera sensor sensitivity, including the regions where standard LEDs have gaps. As a result, when FullBandRGB recreates sunlight, the camera responds to the light as if it were real sunlight.
Smooth spectrum across color temperature
Unlike conventional LED fixtures, where changing color temperature often introduces spectral gaps or uneven energy distribution, FullBandRGB maintains a smooth spectral distribution across the entire range. Each CCT value is achieved by redistributing output across multiple LED types, preserving spectral continuity and balanced coverage of camera sensor sensitivity.
02
Purpose-built for VP studios
FullBandRGB is engineered specifically for indoor studio use. We removed everything unnecessary for Virtual Production lighting — weather sealing, rugged housings, and heavy enclosures, and focused on the core requirements of VP.
Lightweight design
The entire fixture, including its integrated power module, weighs just 3.6 kg, achieved through a structural design where every component contributes to rigidity and heat dissipation. This low mass allows a single person to mount and reposition the light without any lifting equipment, reduces load on trusses, and enables placing more fixtures on the same rig.
ACCESSORIES & MOUNTING OPTIONS
FullBandRGB accessories extend the fixture for different production environments — from floor-mounted practical lighting to lightweight truss installations. The fixture is also equipped with standard mounting points compatible with clamps, light stands, and common studio hardware. Each mounting solution is designed for fast installation, minimal hardware, and repeatable positioning across studio and on-location setups.
Floor Stand Kit
The Floor Stand Kit combines two fixed support legs with an adjustable telescopic leg. The fixed supports raise the fixture off the floor to maintain unrestricted airflow through the cooling system, while the telescopic support enables continuous adjustment of the fixture angle for precise low-level lighting.
SigmaFrame Quick Mount
A dedicated quick-release mount for Antilatency SigmaFrame trusses (40×40 mm). The system enables fast installation without clamps, adapters, or additional rigging hardware.
Custom lighting grid design
We can design a complete lighting setup tailored to your studio needs — including FullBandRGB fixtures, SigmaFrame lightweight truss systems, and optimized fixture placement. Our layouts ensure clean cabling, efficient load distribution, and consistent lighting performance across your VP environment.
03
One single mode — no physical dials
FullBandRGB is designed for computer-only control, ideal for studios where fixtures are installed on overhead trusses and physical access is limited. The light operates in stateless mode: every fixture is always in a known state defined by the network commands you send.

This eliminates situations where one unit behaves differently because someone changed a physical mode days earlier — a common problem with conventional fixtures that require manual verification on trusses or lifts. With FullBandRGB, all fixtures behave consistently and predictably, controlled from a single interface.
Modern network protocol with real-time feedback
Traditional DMX provides no feedback — you can’t know whether a command was received, applied, or if the fixture is even connected. FullBandRGB uses Art-Net with bidirectional communication, so you can always see the real-time status of every device: online/offline, applied commands, and control source. Art-Net also supports high refresh rates with update rates up to 1000 updates per second per fixture, enabling smooth transitions and real-time effects without without DMX's 44 fps update limit. This ensures reliable behavior during critical VP production moments.
Daisy-chaining for both data and power
Each FullBandRGB fixture includes a built-in gigabit Ethernet switch and powerCON in/out, enabling daisy-chaining for both data and power. This reduces cable clutter, eliminates external switches and PDUs, and makes setups cleaner and faster to install. Large lighting grids become easier to scale and maintain, even with dense fixture layouts.
Linear control for predictable results
FullBandRGB uses seven types of LEDs, but the fixture is controlled with standard RGB values. The internal firmware automatically translates each RGB command into the correct combination of LED types, ensuring the same color output every time. It is also engineered for a fully linear response across the entire control range. This predictable behavior is critical for cinematographers, gaffers, and automated VP lighting systems that rely on mathematically accurate control.
04
Energy efficiency through dielectric mirrors
FullBandRGB achieves significantly higher efficiency by using dielectric mirror coatings on all internal surfaces. These coatings reflect up to 98% of internally reflected light back into the optical chamber, allowing the fixture to reuse nearly all photons that would otherwise be lost inside a standard LED housing. As a result, FullBandRGB delivers up to 35% higher luminous output per watt compared to conventional studio fixtures — without increasing power consumption.
Large emitting surface
FullBandRGB uses a large emitting surface, producing naturally soft and diffuse illumination.
A wide-area source reduces glare, creates smoother shadow transitions, and provides an overall more comfortable lighting environment for actors and crew.
With mirror accessories attached, the effective surface area becomes even larger, improving softness and uniformity.
05
mirror-based light modelling
FullBandRGB uses reflective mirror panels to shape and control light without the efficiency losses typical for diffusion-based modifiers. Instead of absorbing excess output, mirror panels redirect and reuse emitted photons inside the working area, enabling more efficient light shaping for Virtual Production and studio environments.
Flat mirror panels
Flat mirror panels redirect side-emitted light into the working direction, allowing precise asymmetric light shaping without additional diffusion. This approach ensures that 100% of the light output contributes to useful illumination.

  • Asymmetric light redistribution
  • Up to 127% forward intensity
  • Directional spill control
  • Higher usable light efficiency
  • No diffusion losses
Common backlight setup
Backlight setup with FullBandRGB (1 mirror panel)
Backlight setup with FullBandRGB (2 mirror panels)
Flat mirror panels allow FullBandRGB fixtures to efficiently shape light distribution for Virtual Production environments. By redirecting side-emitted light into the working direction, the system reduces spill onto greenscreen and studio surfaces while concentrating more usable light on the subject.
All comparison images were captured using identical camera settings (f/4, 1/120 s, ISO 250) and the same fixture output.
With the fixture positioned flat, the subject is not illuminated evenly. A conventional 45° setup provides sufficient illumination, but also sends a significant amount of light onto the greenscreen, creating unwanted reflections and making post-production more challenging. With mirror panels and floor stand kit, the emitted light is efficiently redirected toward the subject, providing uniform illumination from head to toe while minimizing direct illumination of the greenscreen.
Open panel fixture flat (1/60, f/7.3, ISO-400, 12mm)
Open panel fixture 45 (1/60, f/7.3, ISO-400, 12mm)
Fixture with mirror panels (1/60, f/7.3, ISO-400, 12mm)
asymmetric light redistribution
Flat mirror panels redirect side-emitted light into the working direction instead of allowing it to spill into the environment.
This also increases light intensity up to 127% while maintaining the same electrical power consumption and enables efficient asymmetric light shaping for Virtual Production environments.
Light distribution of FullbandRGB without and with flat mirror panel
Trapezoidal mirror panels
Trapezoidal mirror panels form a reflective optical housing around the fixture that captures and redirects side-emitted light back into the working direction instead of allowing it to spill into the environment.

  • Effective emitting area up to 0.542 m²
  • Up to 255% forward light intensity
  • Softer and more controlled beam
  • Reduced spill in VP environments
The expanded optical surface produces softer shadow transitions, smoother highlight rolloff, and more uniform illumination compared to the open panel configuration.
At the same time, the reflective geometry concentrates more usable light into the working direction, providing higher optical efficiency and more consistent illumination for actors, props, and reflective materials.
Open panel fixture (1/120, f/5.2, ISO-400, 7mm)
Fixture with trapezoidal mirror panels (1/120, f/5.2, ISO-400, 7mm)
Expanded effective emitting area
Mirror accessories increase the fixture’s effective emitting area from 0.23 m² to 0.54 m². For comparison, many widely used soft panel fixtures typically operate within a 0.11–0.39 m² emitting area range.
The larger effective source size produces softer shadows, smoother illumination, and more natural highlight transitions without the efficiency losses typical for diffusion-based modifiers.
Directional light redistribution
Trapezoidal mirror geometry redirects side-emitted photons into the forward working direction instead of allowing them to disperse into the environment.
This increases forward light intensity up to 255% compared to the open panel while maintaining the same electrical power consumption.
Light distribution of FullbandRGB without and with trapezoidal mirror panels
Parameter
Value
Overall dimensions
3 × 3 modules
5 × 3 modules
500 × 500 × 145 mm
820 × 500 × 145 mm
Weight
3 × 3 modules
5 × 3 modules
3.3 kg
5.5 kg
Materials
Housing
Aluminum, fiberglass
Inner surfaces
Dielectric mirror
Mounting clamp
Aluminum alloy 6063
Powering
Built-in battery
No
Power connector on Controller
powerCON input/output
Operating voltage
110-240 V
Parameter
Value
Input power
6.4 A 115 V AC / 3.2 A 230 V AC
Power Factor
PF>0.95/230 Vac, PF>0.98/115 Vac at full load
Rated power
243 W, 405 W
Daisy-chain
Yes (via the powerCON output)
Connectivity & Control
Control Interface
Software (network only)
Status display
E-Ink display
Remote control options
Art-Net over Ethernet/Wi-Fi, ADN
Update frequency
1000 fps
Latency
2 ms
Ethernet ports
4
Wi-Fi
Yes, 2.4 GHz Wi‑Fi 6
Parameter
Value
Settings & Modes
Art-Net Modes
One
User settings
Yes
Operating and storage conditions
IP rating
None
Operation temperature
+10 to +30 °C
Relative humidity
up to 70% (non-condensing)
Technical Specifications
Accessories
Mounting frame for assembling panel clusters
Reflective side panels for light distribution control
Positioning handle for fixture positioning
(included but detachable to reduce weight)
Configuration
Total Size (mm)
Power Consumption
3 × 3 modules
500 × 500
243 W
5 × 3 modules
820 × 500
405 W
AVAILABLE MODELS AND ACCESSORIES
Locations
Cyprus, Limassol
1 Gerasimou Markora, Limassol, 3085
UAE, Dubai
One by Omniyat tower, 16 floor, 1601D, Dubai
China, Guangzhou
211, Bld B, Xingye Da Dao No.1, Nancun Town, Panyu District, Guangzhou
Team
Since our launch in 2016, we have been working in AR/VR and Virtual Production fields. Our achievements include a top-tier positional tracking system, known for its speed and accuracy.
We don’t just manufacture hardware, we’re at the forefront of making extended reality an everyday phenomenon.

talented professionals

trusted by clients worldwide

we
teamed up

devices delivered

1600+
80+
14.000+
2016
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