Qualcomm · Filed Jan 16, 2025 · Published Sep 10, 2026 · verified — real USPTO data

Qualcomm Patents a Cover-Glass Fault Detector That Keeps XR Lasers Safe

The depth-sensing laser in an AR or VR headset sits millimeters from your eyes. Qualcomm has patented a way to detect a cracked cover glass before that laser can fire at full power.

A cross-section of a time-of-flight sensor and laser assembly integrated into a headset worn by a person. Drawing from patent filing US 2026/0266970 A1.
A cross-section of a time-of-flight sensor and laser assembly integrated into a headset worn by a person.
See all 7 drawings from this filing ↓
Publication number US 2026/0266970 A1
Applicant QUALCOMM Incorporated
Filing date Jan 16, 2025
Publication date Sep 10, 2026
Inventors Sukumar SAMAL, Manoj ALLADA, Subbarami Reddy GOTTIGUNDALA, Thirukumaran DECHINAMOORTHY
CPC classification 356/4.01
Grant likelihood Medium
Examiner RICHTER, KARA MARIE (Art Unit 3645)
Status Docketed New Case - Ready for Examination (Feb 28, 2025)
Document 20 claims

How Qualcomm stops a cracked lens from becoming a laser hazard

A pair of AR glasses sits on a workbench, its cover glass hairline-cracked from a drop. The depth sensor inside still wants to fire its laser, with nothing stopping it from sending a concentrated beam straight toward someone's eye.

That is the problem Qualcomm is solving here. Mixed-reality and virtual-reality headsets use tiny lasers to measure depth, the same technology that lets your phone sense your face to unlock. Those lasers are safe under normal conditions because the cover glass spreads and filters the beam. But if the glass breaks, that protection disappears, and consumer safety rules require devices to shut the laser down.

Qualcomm's patent describes a thin conductive coating on the inside of the cover glass, wired up so the device can constantly monitor whether the glass is intact. If the glass cracks and the coating breaks, the sensor detects the change immediately and can declare a fault, cutting power to the laser before any harm is done.

From the filing · CLAIM 1
measuring a monitor voltage related to a voltage divider at a cover glass coating terminal; comparing the monitor voltage to a voltage threshold setting; determining if the monitor voltage exceeds the voltage threshold setting; and declaring a conductive fault condition in a cover glass of a laser time of flight (ToF) sensor.

Translation: It checks the electrical voltage on the glass to see if it crosses a safety limit and triggers an error.

How the voltage divider catches a broken conductive coating

The system works like a simple electrical circuit that doubles as a damage sensor. A conductive coating is applied to the inner surface of the cover glass sitting in front of a Time of Flight (ToF) sensor, which is the type of laser-based depth sensor used in many headsets and phones.

That coating is wired in series with a pulldown resistor (a small component that holds a voltage at a predictable level when the circuit is complete). Together, they form a voltage divider, a two-component circuit whose output voltage is a reliable, known value as long as the glass is unbroken.

An analog-to-digital converter (ADC), which translates a physical voltage into a number a processor can read, continuously monitors that output. If the cover glass cracks, the conductive coating breaks too, the circuit changes, and the measured voltage shifts away from its normal range.

The key steps, as the patent describes them:

  • Measure the voltage at the coating's terminal
  • Compare it against a preset safe threshold
  • If the voltage crosses that threshold, declare a conductive fault condition
  • Use that fault signal to disable the laser or reduce its power

The whole mechanism is passive in normal operation and adds very little complexity to the hardware.

What this means for laser safety rules in XR headsets

Laser safety in consumer electronics is tightly regulated. Devices like XR headsets that fire lasers close to users' eyes must prove they cannot expose someone to a harmful dose even if something goes wrong. A cracked cover glass is exactly the kind of failure regulators worry about, and right now most devices have no active way to detect it.

For you as a user, this means a future headset could catch a damaged lens the moment it happens and warn you or shut the laser off, rather than continuing to operate in an unknown and potentially unsafe state. Qualcomm's steady investment in XR sensor hardware suggests the company sees this kind of safety infrastructure as a key part of its chipset pitch to headset makers.

That makes this Qualcomm's 39th filing we've tracked since July in the AR glasses race, following their work on focused 3D mapping and shared AI model content.

Editorial take

Lasers that measure distance in headsets are tuned to stay below the threshold that damages human eyes, but that calculation assumes the protective glass sitting in front of them stays intact. A crack or shatter from a drop can change the optical conditions enough to push the laser from safe into harmful, and the device has no way to know that happened.

That failure mode matters more than it might seem, because these are devices people strap directly onto their faces for extended periods. A product can pass every safety test at the factory and still become a hazard the first time it hits a hard floor.

The approach here, using a thin conductive layer on the glass and a simple voltage check to detect damage, fits the problem without overbuilding a solution. The components involved are inexpensive and well understood, and the check happens continuously rather than only at the point of manufacture, which is where the real exposure lives.

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The drawings

7 drawing sheets from US 2026/0266970 A1 · click any drawing to enlarge

Patent filing page

Source. Full patent text and figures from the official USPTO publication PDF.