Industrial AI Vision · Pan-India

OBSIDIAR Three Platforms. One Sensing Stack.

We put industrial-grade perception on the factory floor and make it answer for itself. Monolith guards the machine. Forge watches how the work is done. TesseRack checks what comes off the line. Same sensors, same edge stack, same deployment discipline — three different jobs, and three different levels of authority.

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92%
of people our cameras caught had no light-curtain trip — blind sensors never saw them
4
Sensor modalities — eyes, heat, presence, data
27%
of machine-stop time was needless — uptime our AI recovers
24/7
Detection in dark, smoke, fog and hazardous zones

Three Jobs. Three Products.

One platform cannot be a protective device and a quality inspector at the same time without the failures of one contaminating the trust in the other. So they are separate products, with separate authority, deployed separately — and that separation is deliberate.

It Comes Down to One Verb.

The rule we design to internally, and the fastest way to route a requirement to the right platform.

THE CELL

If the risk is a person inside the working volume — walking into a robot cell, still inside when someone hits restart — it is Monolith. It guards the space around the machine and the conditions under which the machine may run at all.

THE TASK

If the risk is at the point of operation — a hand reaching into the blade, the press, the cutting head — it is Forge. It stops the machine on a breach, and judges PPE, posture and task sequence at the same time.

THE LOAD

If it measures, counts or grades the product, it is TesseRack. It raises a quality flag or a reject so a fault is corrected upstream, not discovered at the customer — and it is the one platform here that never stops a machine.

Two protective products, one quality product — and why that line matters

Monolith and Forge are both protective: each can bring a machine to a stop, and each is scoped, tested and defended as a safety function in its own right. They are separate products because they answer different questions — Monolith asks who is in the cell, Forge asks what is at the tool — and a sensor placed to answer one of those well is rarely placed to answer the other.

TesseRack is the one that never stops anything. A quality reject and a safety stop must never be read as the same event: if a pallet-quality flag could look like a guarding failure, every nuisance reject would erode confidence in the thing that actually protects people — and an operator who stops trusting the guarding starts bypassing it. Bypassed guarding is the single most common root cause behind guarding-related fatalities.

Every Sense. Every Scenario.

One sensing stack underpins all three platforms. Each modality adds a dimension of certainty — we don't do redundancy, we do complementarity.

📷

Fixed IP Camera 4MP

V — Vision Layer

Wide-area visual surveillance with AI object detection. Identifies people, PPE compliance, forklift paths, and zone intrusions at 400 sq ft per unit. The baseline — every other sensor adds certainty on top.

Best for: Well-lit production lines, loading bays, perimeter fencing

🔴

Thermal Camera

T — Thermal Layer

Detects human body heat (37°C) regardless of lighting, smoke, or fog. Impossible to fool with camouflage or clothing. Also flags overheating machinery before failure — a dual-purpose safety asset.

Best for: Cold stores, chemical plants, night shift, fire-risk zones

👤

Through-Obstruction Presence

R — Range Layer

Finds a person standing where every camera in the cell is blind — behind racking, behind stacked pallets, behind the machine itself. It reports presence only: no image and no identity, so it can be used in areas where cameras are not permitted. Unaffected by rain, steam, vapour, dust or total darkness.

Best for: Behind racking and stacked product, privacy-restricted areas, outdoor yards

LiDAR Safety Scanner

R — Range Layer (2D/3D)

Precision 2D and 3D zone mapping with safety-rated output. Defines hard exclusion zones around robot cells with millimetre accuracy. Designed for safety-critical stop functions.

Best for: Robot cells, automated lines, entry/exit gate control

🔗

PLC / SCADA Integration

D — Digital Layer

Bidirectional communication with your existing control systems. When the AI detects a hazard, it writes directly to the PLC to trigger an autonomous E-stop. An autonomous stop, not just an alert — the difference between an alert and a prevention.

Best for: Any facility where alert speed < human reaction time

🧪

Industrial Gas & Vibration Sensors

D — Digital Layer (Add-On)

Multi-gas sensors monitor LEL and toxic gas concentrations in real time. Vibration sensors flag machine-health deterioration before failure — all feeding the same unified safety platform.

Best for: harsh and hazardous environments

Detection Capability Matrix — Which sensor catches which threat
Scenario Fixed Cam PTZ Cam Thermal Presence LiDAR Gas Sensor PLC Stop
Person in danger zone
Smoke / low visibility
Person behind racking
Night / no lights
GDPR / privacy zone
Gas / explosive atmosphere
Robot cell intrusion
Worker collapsed (man-down)

From One Line to the Whole Plant.

First deployed on a live FMCG palletizing line, and now in active discussion across automotive, tyre and renewables manufacturing. The same sensing stack carries all three platforms into each of them — guarding the cell, watching the work, and checking what leaves the line.

🏭

FMCG & Packaging

Palletizer and robot-cell guarding on live FMCG lines — won't restart with a person inside, and recovers the needless stop-time blind sensors cause. Our first production deployment.

Deployed Robot cell guarding PLC write-back
🚗

Automotive & Components

Press shops, weld cells and assembly robots. Whole-body presence detection with zero-occupancy restart for high-speed 6-axis cells, plus operator-zone monitoring on component lines.

In discussion Robot cells Press safety

Tyre Manufacturing

Curing presses, tyre-building machines and material-handling robots — high-temperature areas where the thermal layer adds a second line of detection alongside vision.

In discussion Thermal layer
💨

Renewables & Wind

Nacelle assembly, blade lines and heavy material handling. Multi-sensor guarding for large-format robot and crane cells where a person can fall outside one sensor's line of sight.

In discussion Large-format cells
🏗️

Warehousing & Logistics

Forklift–pedestrian collision prevention, AGV/AMR zone management and loading-dock intrusion detection. Tracking across outdoor yards, night-shift ready.

Forklift AI AGV integration Outdoor PTZ

Engineered to the principles of ISO 13849 / IEC 62061 safety functions — formal third-party certification is on our roadmap.

"A single CCTV system has eyes. Our full multi-sensor platform has eyes, ears, a nose, a sense of touch, and the ability to feel through walls. Each sensor isn't just an add-on — it's a new sense. And just like in nature, an organism with more senses survives better. Your safety system should be no different. With every additional sensor, the probability of missing a person in your danger zone drops by an order of magnitude. That's not marketing — that's Bayesian probability. And that's what stands between your workforce and a preventable fatality."

— OBSIDIAR MONOLITH DESIGN PHILOSOPHY

Protect Your Site.
Deploy Obsidiar.

Tell us about your facility. We'll identify which platform fits the problem, size the sensor configuration, generate a full BOM, and walk you through the compliance picture — at no cost, no obligation.

Response Time
Within 24 hours
Assessment Cost
No charge
Coverage
Pan-India
Deployment
4–12 weeks from order