INDUSTRIAL DEPLOYMENTS

Where Precision Matters

From virtual soundstages to orbital satellite payloads, explore how Solis continuous wave optics solve mission-critical spectral challenges.

APP-01
CINEMATOGRAPHY // ICVFX

Virtual Production & LED Volume Calibration

The Physical Dilemma:

Actors lit by RGB LED studio walls suffer from metameric color mismatch against background scenery, causing skin tones to turn sickly green or hyper-saturated orange.

The Solis Solution:

Solis broadcasts real-time 81-band continuous solar spectral curves directly into lighting console DMX controllers, synthesizing matched multi-emitter spectrums that eliminate post-production color grading fixes.

Key Performance Metrics
100% CIE Metamerism Index match
120 FPS real-time sync
D65 accurate daylight keying
APP-02
AEROSPACE // PAYLOAD OPTICS

Satellite Imaging & Atmospheric Sounders

The Physical Dilemma:

Orbital Earth observation sensors encounter extreme ultraviolet and near-infrared spectral radiance shifts across fluctuating atmospheric air mass and ozone layers.

The Solis Solution:

Solis models extraterrestrial AM0 solar radiation coupled with Rayleigh, Mie, and Chappuis ozone absorption layers to predict optical modulation transfer functions (MTF) across orbital passes.

Key Performance Metrics
ASTM E-490 AM0 solar constant
Sub-nanometer band separation
λ/20 Wavefront verification
APP-03
MANUFACTURING // METROLOGY

Precision Spectrometer & Optical Bench Design

The Physical Dilemma:

Physical glass grinding is expensive and irreversible. Designing achromatic prism doublets requires verifying dispersion across varied ambient temperatures.

The Solis Solution:

Engineers simulate multi-substrate optical paths using over 400 cataloged Schott and Ohara glass melt indices with thermal drift coefficients (dn/dT) before manufacturing physical tooling.

Key Performance Metrics
400+ Sellmeier formulations
±0.0001 Refractive index accuracy
Rayleigh wave diffraction
APP-04
ARCHITECTURE // FENESTRATION

Low-E Glazing & Spectral Solar Heat Gain

The Physical Dilemma:

Architectural daylight calculations that rely on simple visible light transmittance (VLT) fail to account for infrared thermal energy and seasonal solar angle shifts.

The Solis Solution:

Solis evaluates full spectral transmission from 380nm to 2500nm through multi-layer sputtered dielectric coatings, delivering exact interior illuminance and thermal absorption maps.

Key Performance Metrics
Full photopic lux mapping
Quarter-wave coating interference
Zero arbitrary lighting fudge-factors