Daylight / Day-Night Camera

UCMOS-MIPI

SKU · AAD-CAM-UCMOS-MIPI · Low-Light CMOS · MIPI CSI-2

A compact 2.4 MP low-light CMOS day camera with HDR, wired directly to your onboard SoC via MIPI CSI-2. RAW Bayer output, under 10 ms latency, minimum cabling — a standard camera interface for tightly-integrated payloads.

  • 2.4 MP low-light CMOS
  • 1920×1080 · 60/30
  • FOV(H) 123°
  • MIPI CSI-2 · Direct to SoC
UCMOS-MIPI
Key Advantage

A high-sensitivity 2.4 MP low-light CMOS with a direct MIPI CSI-2 link to your onboard SoC — RAW Bayer output, under 10 ms latency, no Ethernet stack, minimal wiring.

Highlights

Core specs and the features that make UCMOS-MIPI the daylight eye of the AAD targeting stack.

  • 2.4 MP low-light CMOS
  • 1920×1080 · 60/30
  • FOV(H) 123°
  • MIPI CSI-2 · Direct to SoC

Low-Light Imaging + HDR

High-sensitivity 2.4 MP low-light sensor with HDR — clean image through dawn, dusk, fog and high-contrast urban scenes.

Ultra-Low Latency

Under 10 ms over MIPI CSI-2 — RAW Bayer output, no network stack, no transcoding.

Native Digital Output

RAW Bayer directly to the SoC — no frame grabber, no encoder, no analog step in the chain.

MIPI CSI-2 · Direct to SoC

RAW Bayer data delivered directly to the onboard SoC — no Ethernet overhead, no encoder, minimal weight and wiring complexity.

Edge-to-Edge Optics

A target the AI can't resolve is a target it can't engage — so we don't cut corners on the glass.

Most low-cost camera lenses are only sharp in the center of the frame. Toward the edges the image softens, and detection and identification models start to miss or misclassify targets that drift away from the middle of the picture.

UCMOS-MIPI · Edge-to-Edge
UCMOS-MIPI edge-to-edge sharpness test image

Every signature locked — corners and center.

UCMOS-MIPI uses a high-quality lens that holds a uniform, sharp image across the entire frame. Targets are detected and identified just as reliably at the edges as they are dead-center — which matters most in the seconds before a target leaves the field of view.

Typical Lens · Center Only
Typical lens center-only sharpness sample

Edges soften — targets missed at the corners.

Full Specifications

Optical and electrical specifications for the UCMOS-MIPI — MIPI CSI-2 output.

Detector2.4 MP low-light CMOS · HDR
Resolution1920 × 1080
Pixel pitch~3.1 µm
Frame rate60 / 30 fps
Focal length2.5 mm
ApertureF/1.8
FOV (H)123°
InterfaceMIPI CSI-2
OutputRAW Bayer — uncompressed, direct to SoC
Latency< 10 ms
Power5–36 V · 2 W
Operating temp.−20 … +60 °C
Dimensions21 × 21 × 42 mm · 40 g
AdjustableVideo & image parameters available for tuning — can be applied live, in flight

Built For

A daylight sensor tuned for real-time guidance and onboard AI across strike, ISR and gimbal platforms.

FPV & Interceptor

Real-time terminal guidance

ISR & Recon

Daylight observation & ID

Fixed-Wing UAV

Long-endurance ISR

Tuned for Our Models

UCMOS-MIPI isn't a camera that happens to feed an AI — it's built for ours. Uncompressed frames over MIPI CSI-2 feed Wield-AI at under 10 ms latency, drawing a detection box and confidence score around every target the model recognises.

Live Wield-AI detection overlay on the UCMOS-MIPI video feed
Live Wield-AI detections on the UCMOS-MIPI feed — class label and confidence per target.
Explore Wield-AI →

Test Dataset on Request

We can provide a representative sample dataset — and a fully trained model — so you can validate detection and identification before you commit.

In-House Tonemapping & Tuning

We set the tonemapping and image tuning ourselves, calibrated to the conditions our models are trained on — not a generic factory profile.

Camera & Model, Matched

Because we build both, sensor output and model expectations line up — stronger detection and fewer missed targets out of the box.

Technical Documentation

Want the Full Picture?

MIPI CSI-2 wiring, SoC integration, day/night mode switching, and the AI video pipeline — everything on UCMOS-MIPI lives in our Technical Library.

Learn More in Our Technical Library →

Compatible Products

Built to work as one system — camera, compute and AI on a single digital stack.