First-Person Biomechanical Vision

Your workout. Automatically tracked.

AI-powered smart glasses that see how you move. No phones, no manual logging, and no wearables on your wrists. Just put them on, exercise, and get instant 3D kinematics and form insights.

OPTICAL ARRAY: DUAL ULTRA-WIDE 180°
3D MESH READY
Ophanim AI smart glasses featuring wide-angle cameras and sleek dark industrial design
CAM_L // POV
CAM_R // POV
REAL-TIME SKELETON: RECONSTRUCTING
3D POSE SYNCACTIVE
60 FPS

First-person dual sensor

JOINT ANGLE (KNEE)OPTIMAL
92°

Parallel depth reached

REP VELOCITYTRACKED
0.72 m/s

Concentric phase velocity

BILATERAL SYMMETRYBALANCED
96%

Left / Right load parity

Put on glasses→Work out normally→ Auto-tracked→3D Telemetry
Zero-Input Training Flow

The Workflow

From putting on the glasses to comprehensive 3D kinetic telemetry—automated tracking designed to disappear into your routine.

01
Hardware Setup

Wear Glasses

Slip on the lightweight eyewear with integrated dual wide-angle optical sensors calibrated for first-person perspective.

120 FPS
Dual Capture Rate
Optical Sync Active
02
Natural Training

Perform Movement

Execute squats, deadlifts, or presses normally. No tags, manual logging, or phone interaction required during your set.

< 15 ms
Sensor Latency
Auto-Detection
03
Spatial Engine

Instant 3D Pose Reconstruction

Embedded computer vision maps joint vertices and reconstructs your entire kinematic skeleton in real-time space.

3D Space
Sub-millimeter Tracking
17 Joint Nodes
04
Precision Telemetry

Multi-Vector Biomechanical Feedback

Extract immediate range of motion, concentric velocity curves, left-right symmetry, and actionable form checkpoints.

96% Symm
Form Execution Score
Instant Summary
Currently running real-time kinematics on hardware engineering prototypes.
Join Early Access
Real-Time Kinematic Reconstruction

Rep-by-Rep Biomechanical Telemetry

AI computer vision isolates each movement phase, tracking 18 joint degrees of freedom with live kinetic velocity and angular symmetry.

Set 1 · Barbell Squat
Rep 7 of 15
Depth: 104%
0:12 / 0:28
Range of Motion
Good
94°
Target: 85° – 110°
Concentric Velocity
Good
0.74 m/s
Target: 0.5 – 1.0 m/s
Eccentric Velocity
Good
0.68 m/s
Target: 0.4 – 0.8 m/s
Left / Right Symmetry
Good
95%
Target: > 90%
Rep Duration2.1 s
Estimated Energy8 kcal

Joint Angles (Left Side)

180°
90°
0°
Hip Angle
Knee Angle
Ankle Angle
Torso Angle
0.0s0.5s1.0s (Bottom)1.5s2.0s
Form Notes

Good depth and knee tracking. Slight forward torso lean at the bottom of the movement.

Kinematic Engine Telemetry

3D Form Comparison Engine

Ophanim captures first-person optical geometry, reconstructs your 3D skeleton in real time, and maps your movement against optimal biomechanical standards.

Form ComparisonLive Kinematics

Squats • Set 2 • Rep 7

92°
Your MovementRep 7
105°
Ideal FormReference Standard
0:12 / 0:281x

Key Differences

Depth92°

Slightly shallower than ideal (92° vs 105° recommended depth)

Minor Issue
Knee TrackingParallel

Good alignment along the coronal plane with minimal valgus collapse

Good
Torso Angle38° lean

Slightly more forward lean at bottom inflection point

Minor Issue
Overall Form87/100

Solid mechanics with minor improvements in depth and chest elevation

Good

Form Score Breakdown

Model v1.4 Sensor Stream
Range of Motion92°Target: 85° – 110°
Concentric Velocity0.74 m/sTarget: 0.5 – 1.0
Symmetry96%Target: > 90%
Form Score87/ 100

Actionable Posture Recommendation

Go a bit deeper and keep your torso more upright to match the optimal biomechanical target on rep completion.

Optical Telemetry & Analysis

Session Telemetry Overview

Data generated live by Ophanim eyewear. Every repetition is reconstructed in 3D, analyzed for kinematic fidelity, and scored across velocity, joint trajectory, and symmetry.

Squats

Mon, Nov 11, 2024 • 2:14 PM • Set 2 of 3

15Reps
87/ 100
Form Score
92°Range of Motion
0.72 m/sAvg. Velocity
96%
Symmetry
0:58
Duration
105
Est. Calories

3D Movement Replay

First-Person Reconstruction
KNEE ANGLE
92.4° (Target: 90°-95°)
0:12 / 0:58

Rep Timeline

Set 2 (15 total)
Good
Minor
Issue
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
Rep 7 DiagnosticsOptimal Form

Target depth & angle matched • Depth: 92° • Concentric: 0.72 m/s

Concentric Velocity Profile

Execution velocity curve vs biomechanical baseline

0.72 m/s avg
Zero Manual Logging
Glasses identify exercise cadence and automatically tally repetitions into structured sets.
3D Kinematic Pose
Computer vision constructs spatial joint paths and rotational angles from first-person vantage.
Immediate Diagnostic
Biomechanical deviations are tagged in real time so form issues can be adjusted on the next set.
Biomechanical Telemetry

Kinematic Joint & Angle Analytics

Ophanim smart eyewear continuously reconstructs full-body joint kinematics in 3D. Review granular angle curves, eccentric depths, and angular velocities captured at 60 frames per second without cumbersome external sensors.

Capture Speed60 FPS 3D
Angular Precision0.8 deg

Squats

Mon, Nov 11, 2024 • Set 2

Range of Motion per Rep
Target Range 85° – 110°
110° MAX TARGET85° MIN DEPTH
88°
1
92°
2
95°
3
90°
4
94°
5
96°
6
89°
7
93°
8
97°
9
91°
10
94°
11
92°
12
Rep Number
Average ROM92°
Best Rep
97°(Rep 9)
Lowest Rep
88°(Rep 1)

Your range of motion is consistent and within the target range.

Great depth throughout the set! Knees tracking parallel with no asymmetry.

Joint Angles (Rep 7)
Rep duration: 2.1s
180°
120°
60°
0°
0.0s0.5s1.0s (Peak)1.5s2.0s
Hip Angle
Knee Angle
Ankle Angle
Torso Angle
Hip Angle (Min)48°
Knee Angle (Min)62°
Ankle Angle (Min)71°
Torso Angle (Max)38°

Good knee and hip angles. Slight forward torso lean detected at bottom of rep.

Focus on thoracic extension when driving upward through the concentric phase.

Automatic Kinematic Extraction • First-Person 3D Pose • Zero Manual Tapping

Live Device Ecosystem

Your workout. Automatically tracked.

The Ophanim companion app instantly receives optical telemetry from your smart glasses. Rep counts, 3D joint kinematic replays, and execution scores appear automatically without manual input.

Live Sensor Telemetry
Synchronized
Optical Capture Sync
60 FPS
Sub-16ms latency
Local AI
Edge Pose Model
3D Kinematics
On-device joint mapping
Optimal
Battery Endurance
78%
Est. 3h 40m remaining

Zero-Manual Logging

No phone handling between sets. Keep your focus on the bar.

9:41
78%

OPHANIM

See Movement. Understand You.

Glasses Connected

Battery 78% • 60 FPS Sync

Today's Workout

Mon, Nov 11, 2024
4Exercises
11Sets
126Reps
42Minutes
Recent Sets
Squats
Set 3 • 15 reps
87
Push Ups
Set 2 • 20 reps
92
Bicep Curls
Set 4 • 12 reps
78
Lunges
Set 1 • 10 reps
90
Lateral Raises
Set 3 • 14 reps
85
Analyzing Set…

Processing 3D joint velocity & symmetry

3:45 PM

"Consistency builds real progress."

Show up. Put in the reps. See the results.

Automated Insights
Latest Form ScoreOptimal
87/ 100 pts
Range of Motion92° Depth
Concentric Velocity0.72 m/s
Bilateral Symmetry96% Balance

Continuous Session Stream

As soon as exercise movements are initiated, the glasses segment repetitions and compile set statistics straight into your profile.

Active SyncOnline
Intelligent 100-Point Biomechanical Engine

Autonomous Form Scoring

Ophanim glasses translate first-person stereo camera feeds into instant 3D joint telemetry. Repetitions are continuously measured against biomechanical targets to score consistency, velocity control, and joint symmetry.

Squats

Set 2 of 3 • 15 Reps Recorded

Live Feed Sync
87/ 100
Great Form

Optimal Kinematic Execution

Your motion is highly repeatable and well within healthy joint tolerance. A 4° reduction in bottom forward torso lean will push your score above 90.

Key Metrics
View Details
Range of Motion
Good
92°Target: 85° – 110°
Avg. Concentric Velocity
Good
0.72 m/sTarget: 0.5 – 1.0 m/s
Avg. Eccentric Velocity
Good
0.65 m/sTarget: 0.4 – 0.8 m/s
Left / Right Symmetry
Good
96%Target: > 90%
Form Breakdown & Diagnostics
5 Checked Points
Depth Consistency+28 pts

Hip crease reached below knee joint plane on 14 of 15 repetitions.

Good
Concentric Velocity Stability+24 pts

Even upward acceleration without sticking points throughout mid-ascent.

Good
Eccentric Control+22 pts

Consistent 2.1-second deceleration on descent phase prevents joint shear.

Good
Kinematic Symmetry+15 pts

96% uniform bilateral weight distribution and equal lateral knee tracking.

Good
Torso Inclination Angle-2 pts

Slight forward trunk lean (4° beyond baseline) detected at bottom turnaround.

Minor Issue
Range of Motion per Rep
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15

Selected Rep

Rep 15

Depth Angle

92°

Status

Optimal

Hardware Roadmap & Architecture

From Lab Test Bench to Sleek Everyday Eyewear

Ophanim has already built and verified a functional engineering prototype that reconstructs 3D motion in real time. We are now miniaturizing this proven system into lightweight, consumer-ready smart glasses.

Current Stage
Active Test Bench v0.8
Current Working Prototype
Our working hardware rig proves real-time 3D pose reconstruction directly from wide-angle eyewear cameras during high-intensity training.
Current Ophanim engineering lab prototype showing camera mounts and compute board
FOV: 135° RAW
LATENCY: 12ms

Verified Engineering Capabilities

  • Dual high-speed wide-angle optical capture sensors
  • FPGA-accelerated 3D kinematic edge coprocessor
  • High-bandwidth USB-C diagnostic telemetry umbilical
  • Exposed stereoscopic calibration rig for sub-millimeter tracking
  • Active high-output heatsink and telemetry test bench
Note: The current prototype is an engineering test bench built for spatial precision and algorithm validation. It does not represent final consumer industrial design.
In Production Design
Everyday Wearable Target
Future Consumer Product
Miniaturizing our high-speed vision pipeline into an ergonomic, balanced frame indistinguishable from high-end athletic performance eyewear.
Sleek future Ophanim consumer smart fitness glasses concept in production
TARGET WEIGHT: 42g
IP67 SWEAT RESISTANT

Production Engineering Objectives

  • Integrated miniaturized ultra-wide camera lenses
  • All-day ultra-lightweight ergonomic frame balance
  • Ultra-low latency wireless sync to companion smartphone app
  • All-weather sweat and moisture sealed unibody chassis
  • Prescription-compatible optical lens integration
Mission: Moving compute from laboratory harnesses to seamless, wearable glasses you can wear during deadlifts, sprints, and gymnastics with zero distraction.

Custom Spatial Vision Architecture

Low-power edge inference reconstructs 3D skeletal positions at 60 fps directly on device before streaming lightweight vector telemetry to your phone.

Zero Cloud LatencyOn-Device PrivacySub-Millimeter Coordinates

50/50 Symmetrical Mass Distribution

Batteries housed inside temple tips offset the nose bridge camera modules, creating zero bounce during high-impact plyometrics, burpees, and sprints.

42g FeatherweightZero Nose-Bridge StrainSecure Temple Grip

Technical Progression Matrix

Direct benchmark comparison between our current physical test system and final consumer targets.

Verified Laboratory Telemetry
Processing Latency
Lab Rig: 12 ms (Direct Wire)
Target: 14 ms (Wireless BLE 5.4)
Field of Capture
Lab Rig: 135° Fisheye Dual
Target: 128° Discreet Ultrawide
Physical Weight
Lab Rig: 185 g (Bench Frame)
Target: 42 g (Everyday Frame)
Battery Architecture
Lab Rig: Continuous Lab DC
Target: All-Day Active Workout Cell

Follow Ophanim's Hardware Development

Get behind-the-scenes engineering logs and early access invitations as we finalize the consumer frame.

Join Early Access
PROTOTYPE TESTING COHORT 01

Experience the Future of Kinematic Training

Be among the first strength athletes and coaches to test Ophanim AI smart glasses. Join our private testing phase for real-time 3D pose verification and automated set telemetry.

Zero spam. Direct engineering communications only.
Priority Alpha Review