A new equipment variant. Another CAD assembly from scratch?

Another equipment order brings familiar parts in unfamiliar combinations. What can stay, what must move and which connections need to change? MST starts with the component models and engineering rules your team has already approved, then plans and builds the assembly required for the new task within a configured equipment family.

DIRECT ANSWER

MST AI Engineer uses approved native parts and engineering requirements to plan placement and connections, create an editable SolidWorks assembly, then reopen it for inspection. The current implemented scope—controlled modular semiconductor process-equipment assemblies—requires a prepared component library and agreed engineering rules.

Concept illustration of governed native SolidWorks assembly creation and read-back verification
Concept illustration — not a customer result or a fresh public run.

ASSEMBLE THE PARTS YOU ALREADY USE

Can I automate insertion and mating without redrawing our parts?

Yes. Reusing existing geometry is a useful starting point. The next decision is whether you need faster repeated mates, rules for equipment variants, or help finding a workable physical layout.

What can I do with SOLIDWORKS itself?

For parts joined the same way repeatedly, define Mate References on the library models. SOLIDWORKS can use matching reference names and mate types to add mates during insertion. This reduces repeated selections; you still need to decide which parts belong in the assembly and where their connections should be. SOLIDWORKS Mate References.

When should I evaluate a configurator or an API?

If variants follow rules you can define, evaluate a rule-based configurator or a SOLIDWORKS API implementation. DriveWorks Pro documents component insertion, including existing model files, and an insert-and-mate example. Compare the preparation and ongoing rule maintenance on one of your own assemblies. DriveWorks Pro component insertion.

Where does MST fit?

Evaluate MST when a semiconductor gas-equipment task combines existing parts with P&ID connections and a constrained physical layout. MST brings those inputs into placement, routing and native assembly creation. Your evaluation should check the actual model references, orientations, mates and connected ports in the saved assembly. Watch the native assembly demonstration.

The 92-second recording shows the CAD execution stage. Compare total preparation, generation, checking and correction time on your own task when estimating the work saved.

01 / BUYER FIT

Start with configuration truth, not a blank CAD canvas.

GOOD FITCurrent fit: a controlled modular semiconductor process-equipment assembly with a declared P&ID or BOM, customer-authorized PDM identities, approved native models, known interfaces, engineering rules and acceptance checks.
NOT A FITArbitrary whole-machine autonomy, incomplete source authority, or generating unknown parts from scratch and treating them as qualified production models. Other equipment domains require separate qualification and configuration before capability is claimed.

02 / THE REPEATABLE WORK

Which steps can the assembly workflow take off your hands?

Start with one equipment family and the component models you already trust. Define the connections and layout rules, then inspect the saved assembly before using the result.

ResolveBind each configured item to its approved identity, revision and native SolidWorks model.
PlanSelect component poses, interface assignments, connections, mates and routes within declared constraints.
ExecuteDrive governed SolidWorks operations to create an editable native assembly.
VerifyReopen the .SLDASM, read back realized facts and route exceptions to an engineer.

03 / YOUR FIRST TASK

Build one gas-module assembly from the P&ID and parts you already use

Illustrative evaluation workflow, not a new run or a customer case.

Your team has a reviewed P&ID and BOM, authorized native SOLIDWORKS components, and qualified interfaces for one controlled semiconductor gas module. The task is to arrange and connect those parts within an agreed spatial boundary and produce a native assembly your engineers can inspect.

Start by fixing the input revisions, component subset and supported layout and connection rules. MST’s workflow brings the reviewed process intent and component interfaces into the physical plan; a customer-side Windows Agent executes the agreed plan in SOLIDWORKS.

Before the evaluation, agree the saved assembly and reference files to inspect, the supported result checks and the engineer responsible for acceptance. Record missing evidence and unresolved exceptions. The public 92-second recording shows the CAD execution stage; it does not establish the outcome of this proposed evaluation.

PUT THIS INTO PRACTICE

Continue with your own assembly task

Watch the assembly stage See native components assembled in SOLIDWORKS before choosing a task for your own evaluation.
Prepare your component library Check approved revisions, component references and interface readiness for one bounded module.
Choose the result checks Select the native output, reopen and assembly checks your engineers require for the agreed case.

Qualification question

Which recurring assembly package should be reviewed first?

Describe one non-confidential configured-equipment workflow, the approved model boundary and the result your engineer would accept or refuse.

Request a bounded review