Module digital twin · Panevex agent

Twinvex

Simulates stringing stress, lamination cure, cell shift, and module IV/power for a given recipe and cell population — auto-optimizing set-points across the agents and validating control policies in simulation.

Simulate before you runwhat it does
OVX / RTX + DGX/HGXruns on
Closed-loopcontrol mode
Pmax 462.4 W I (A) V (V)

Twinvex — Hit target power-class and yield before the physical run.

The problem it solves

Why module digital twin breaks without autonomy

Open-loop today

Fixed recipes can't respond when materials, temperature, or cell quality drift mid-shift.

Invisible failure

The defects that matter most are the ones no operator can see at line speed.

Lost watts & yield

Every uncorrected drift ships as lost power, rework, or a field-degradation liability.

Pmax 462.4 W I (A) V (V)

How Twinvex works

Simulates stringing stress, lamination cure, cell shift, and module IV/power for a given recipe and cell population — auto-optimizing set-points across the agents and validating control policies in simulation.

  • Perceives its station in real time with fused sensing.
  • Predicts the physical outcome before the module moves on.
  • Controls the machine in closed loop, within human-set guardrails.
  • Writes every outcome back to the shared module twin.
Capabilities

What Twinvex delivers

Real-time perception

Station-specific sensing tuned for module digital twin.

Closed-loop control

Set-points corrected on the machine with bounded latency.

Auditable actions

Every decision stores the evidence that justified it.

Yield analytics

Root-cause traces from outcome back to this station.

MES integration

Fits your existing PLCs, SCADA, and MES.

Edge-native

Runs on OVX / RTX + DGX/HGX for deterministic performance.

AttributeDetail
StationModule digital twin
Primary functionSimulate before you run
Runs onOVX / RTX + DGX/HGX
Control modeClosed-loop, guardrailed
Data written toTwinvex module digital twin
Integrates withMES · SCADA · equipment PLCs
99.4%
Perception recall
<10 ms
Edge decision latency
24/7
Autonomous operation
3.2 W
Contributes to recovered power
In the loop

Where Twinvex sits in the flywheel

Module digital twin Ribbix strings Elumnex sensing Lamira cure Binova match Twinvex simulate

One agent, one shared brain

Twinvex doesn't work in isolation. It reads from and writes to the same module twin as every other agent, so its improvements compound across the whole line.

  • Shares the module digital twin
  • Learns from every run on every line
  • Policy transfers across fabs
“Twinvex turned our module digital twin station from a source of escapes into our most predictable process. It just runs.”
TWProcess EngineerTier-1 module manufacturer
Do we need the whole Panevex platform to run Twinvex?
No. Twinvex can deploy standalone on its station and still delivers value — though it gets stronger as more agents share the twin.
Will it work with our existing machines?
Yes. Twinvex augments your current equipment through standard PLC, SCADA, and MES interfaces — no rip-and-replace.
How is the autonomy kept safe?
Every actuator has human-set guardrails. Low-confidence decisions hold within safe bounds and escalate with evidence.

See Twinvex on your line

Book a walkthrough and we'll show Twinvex running against your real module digital twin data.

The autonomy stack

Every module, peak power.