SpectralCamera
Snapshot hyperspectral head.
The core sensor — 96 contiguous spectral bands captured simultaneously across a 2D scene, 30 frames per second. No scanning, no motion artefacts.
Living Optics delivers snapshot hyperspectral video — 96 spectral bands captured simultaneously across the scene, 30 times per second. A step-change beyond multispectral for defence, research and industrial inspection.
400–1000 nm contiguous spectral coverage
Snapshot — no scanning, no motion blur
First-class SDK for research and robotics
Runs on Jetson for real-time deployment
Traditional hyperspectral systems scan line-by-line and freeze the scene. Living Optics captures the full spectrum in a single snapshot — so you can image moving objects, flying platforms and live processes without motion artefacts. Every pixel in every frame carries its own 96-band signature.
Easepect supports Living Optics customers across Southeast Asia with scoping workshops, loan units, airframe integration and model-training support — so you get to a deployable pipeline, not just a beautiful cube.
Snapshot hyperspectral head.
The core sensor — 96 contiguous spectral bands captured simultaneously across a 2D scene, 30 frames per second. No scanning, no motion artefacts.
Python & ROS bindings.
First-class Python API and ROS 2 driver. Stream raw spectral cubes, run built-in classifiers or slot in your own PyTorch / scikit-learn models.
Starting-point classifiers.
Pre-trained models for common tasks — material discrimination, vegetation health, polymer sorting, food quality. Fine-tune on your samples.
Drone-mountable configuration.
Gimbal-ready variant of the SpectralCamera. Pair with DJI M300 / M350 for airborne hyperspectral surveying of terrain, water bodies and vegetation.
Production integration.
Fixed-mount rig for conveyor-belt and inline-inspection deployment — recycling, food quality, pharmaceutical screening.
Try before you buy.
Easepect arranges short-term loan units for qualified research groups and industrial pilots. Includes scoping workshop and sample imaging session.
| Spectral range | 400–1000 nm (VIS–NIR), 96 contiguous bands. |
|---|---|
| Spectral resolution | ≈ 6 nm typical, depending on band and wavelength. |
| Frame rate | Up to 30 fps snapshot — every pixel, every band, every frame, simultaneously. |
| Spatial resolution | 2048 × 2048 RGB co-registered scene + 4,384 spectral points per frame. |
| Interface | GigE / USB3 + GPIO trigger. Ships with Python SDK and ROS 2 driver. |
| Compute | Runs on host Linux / Windows workstation — optional NVIDIA Jetson for edge deployment. |
| Calibration | Factory radiometric and spectral calibration. Recalibration service via Living Optics UK. |
| Use profile | Benchtop, UAV gimbal, or fixed conveyor / line-scan mount. IP-rated enclosures on request. |
Define the target material or signal. Easepect runs a scoping workshop — bring samples, leave with a data plan.
Benchtop, drone or conveyor — image your samples and flight lines to build a labelled spectral dataset.
Start from a pre-trained classifier or train your own on the captured cube. Python / PyTorch workflow.
Move the trained model to edge compute (Jetson) or host PC for real-time production use.
Short-term loan unit plus scoping workshop. For qualified research groups and industrial pilots validating feasibility.
SpectralCamera + Analyser SDK + pre-trained models + two-day training. The workhorse research deployment.
Line-scan / IP-rated enclosure, Jetson edge compute, custom model training and integration support.
Request a written quote — every Living Optics engagement is scoped individually. Tell us the target and we will design the evaluation.
Multispectral gives you 5–10 pre-selected broad bands. Living Optics gives you 96 contiguous bands across 400–1000 nm in a single snapshot. You can discriminate materials multispectral cannot see — similar-looking polymers, mineral phases, camouflage, early-stage disease — because the full spectral fingerprint is there.
Traditional hyperspectral systems build the cube line-by-line as the sensor or scene moves. Any motion blurs the cube. Living Optics captures every band of the 2D scene simultaneously at 30 fps — so you can image moving objects, live processes and flying platforms without stitching or de-motion.
Not always. Pre-trained classifiers ship for common tasks (plastics sorting, vegetation stress, material discrimination). For novel targets you fine-tune on a few hundred labelled samples — we run the fine-tuning workshop as part of the sale.
Yes — the UAV payload variant mounts on DJI M300 / M350 class airframes. Typical flight: 80 m AGL, 3 m/s, full spectral cube recorded per frame for airborne hyperspectral surveys.
Living Optics is research / industrial-grade hyperspectral — priced for capital procurement, not consumer drones. Typical SpectralCamera + SDK is in the SGD high-five to low-six figures. Evaluation loans are available to qualified buyers.
We arrange on-site demos, loaner units and scoping workshops. Tell us the target material or signal and we will design the evaluation.