OPTICAL DESIGN & ENGINEERING PLATFORM

OptiVertex Intelligent Optical Software Platform

Built on the VOA Vertex Orchestration Architecture, OptiVertex embeds the OptiAI optical intelligence assistant across optical modeling, analysis, optimization, and reporting, turning complex design data into traceable diagnostics, candidate comparisons, and engineering review evidence.

4
Core workflows
6
Review views

A precise product surface for optical teams

The product story stays compact: model the system, inspect performance, compare candidates, let OptiAI organize evidence, and prepare review-ready material.

Optical System Workspace

Build and inspect sequential optical systems through a controlled workspace for surfaces, rays, fields, wavelengths, and design context.

OPTICAL AREAS

Analysis and Review Flow

Connect layout, spot, wavefront, MTF-oriented review, optimization comparison, and reporting into one engineering decision path.

MODEL/ANALYZE
REVIEW READY

Evidence-Bound OptiAI

Use OptiAI for diagnostic summaries and proposal drafts while preserving evidence, boundaries, and human review.

VOA ARCHITECTURE

VOA: the architecture line connecting optical design, computation, and intelligence

OptiVertex uses VOA to organize the 6S workspace, HyperGraph execution, VertexMesh data flow, NexusKernel runtime governance, and OptiAI diagnostic support into one platform architecture.

Top Architecture
Vertex Orchestration Architecture

VOA is the product constitution: a stable way to explain how the workspace, runtime, data flow, governance, and AI layer belong together.

01

6S Framework

The operating skeleton: Station, Sky, Scope, Stage, Scene, and Strip.

02

HyperGraph

The execution heart for graph computation, task scheduling, and diagnostic output.

03

VertexMesh

The data nerve and vessel layer connecting model, graph, result, and portal payloads.

04

NexusKernel

The runtime governance layer for coordination, traceability, telemetry, and review gates.

05

OptiAI

The intelligence interface for diagnostics, evidence organization, and governed suggestions.

ENGINEERING SERVICES

Project support between product software and user education

The Engineering section gives customers a service path for systems that need design judgment, prototype planning, custom development, or validation-ready handoff.

Open Engineering

System Design

Requirements intake, optical architecture, performance targets, tolerance budget, and design checkpoints.

Prototype Development

Sample-level iteration, opto-mechanical constraints, supplier coordination, test planning, and review gates.

Commissioned Development

Custom simulation workflows, analysis scripts, report pipelines, data bridges, and integration support.

Manufacturing Readiness

Tolerancing evidence, fabrication assumptions, metrology feedback, and handoff documentation.

OptiAI Decision Support

AI support where optical decisions need evidence

OptiAI is not presented as an autonomous executor. It is an intelligence layer connected to system models, analysis images, optimization diagnostics, comparison records, and engineering reports.

Structured Context Understanding

Organizes evidence from design state, analysis views, diagnostic payloads, and comparison sessions so suggestions stay close to the engineering problem.

Multimodal Diagnostic Support

Uses Scene / Stage captures, charts, and runtime context to separate observations, evidence, risks, and next checks.

Governed Optimization Advice

Presents optimization suggestions as reviewable drafts that help engineers compare candidates without bypassing confirmation.

Decision Flow
OptiAI Collaboration Path
Review gated
01
Model
Read system inputs and assumptions
02
Diagnose
Interpret charts, captures, and performance signals
03
Propose
Draft candidate actions and checklists
04
Review
Engineer validates, accepts, or rejects
Governance

AI suggestions must stay evidence-bound, preserve boundaries, and enter human review. Automatic execution, automatic candidate acceptance, and unconfirmed writes are not public commitments.

Read OptiAI docs

A complete entry point from product capability to engineering delivery

The OptiVertex portal is organized around four entries: Product for the core design workflow, Engineering for project support, Academy for guided training, and Docs for product usage and review methods.

Read docs
Product
Model, Analyze, Optimize, AI, Report
Engineering
Design, Prototype, Develop, Validate
Academy
Workflow-oriented learning
Docs
Product guide and review flow
Review
Traceable diagnostics and comparisons
Presentation
Bilingual public portal
For optical product teams
OptiVertex now separates software positioning, engineering services, training, and documentation so customers can enter from the right level of need.
Open Docs