AI

AI

What your assistant can do

Connect 00 Simulator to Claude, ChatGPT or Claude Code and your assistant can do the legwork of a design: find a driver, build candidates in your workspace, run them through the same solver as the app and show you the graphs. You set the goal and the limits; every number it quotes comes from a simulation.
Your assistant
00 Simulator connected

You: Using 00 Simulator, design a vented box around a Ciare 12.00SW and show me the SPL and excursion at 100 W.

Tools used: search_drivers, get_driver, create_workspace, simulate_workspace, render_simulation_graphs.

Assistant: Here is a vented box for the Ciare 12.00SW. Net volume 55 L, −3 dB 31 Hz, and 108 dB at 100 W in half space. From 20 to 300 Hz, peak excursion is 8.9 mm, comfortably inside the 13.5 mm Xmax.

The wording is an example; the tools are the connector’s own, and the numbers and curve are the solver’s, run when this page was built.

How it works#

  • 00 Simulator is a connector (a remote MCP server at https://simulator.00aud.io/mcp) that gives your assistant 39 tools. It chooses which to call, and when, from what you ask.
  • It works on your own workspaces, through your account, once you approve it. Connect your assistant takes a couple of minutes.
  • Its numbers come from the app’s own solver. The connector tells it never to invent a simulation value, and to try experiments without saving them.
  • Keep the workspace open in 00 Simulator and you watch it work there: Watch it work live.

What it can do#

The jobs below follow a design from driver to build, then the ones outside that run. Tools lists all 39 one by one.

Pick a driver#

Search simulation-ready drivers by name or Thiele/Small filters, read one in full, and check a set of parameters for missing fields and contradictions.

Tools: search_drivers, get_driver, validate_driver. Prompts for this

Design#

Suggest a starting alignment, read the fields each enclosure type takes, then build and edit candidates in a workspace of your own.

Tools: suggest_enclosure, get_enclosure_schema, create_workspace, list_workspaces, get_workspace, add_enclosure, update_enclosure, update_workspace. Prompts for this

Simulate#

Run the solver on a saved version, including horns, EQ and multiple-entry drivers, and read the numbers back.

Tools: simulate_workspace, get_simulation_results. Prompts for this

Show you#

Draw graphs in the conversation, arrange the dashboard in your open tab around what is being explained, and mark the frequencies worth looking at.

Tools: render_simulation_graphs, show_graphs, annotate_graphs. Prompts for this

Check the build#

Bring in a real measurement, such as a REW export, link it to the design it measures, and compare the two: the level difference and the shape difference are reported separately.

Tools: import_trace, compare_trace, list_traces, get_trace, update_trace, delete_trace. Prompts for this

Keep or undo#

Finish with a summary you can undo in one go, restore any saved version, and clear away the candidates and workspaces that did not work out.

Tools: end_workspace_session, list_workspace_revisions, get_workspace_revision, restore_workspace_revision, remove_enclosure, delete_workspace. Prompts for this

Look it up#

Search the 00 Simulator docs and read a page or one section of it, so answers about the app and what a result means quote the docs and link to them.

Tools: search_docs, read_doc. Prompts for this

Appearance#

Build an app theme for you, for instance more contrast between the side-panel sections, check it against the contrast floors, and switch to it when you ask.

Tools: get_theme_schema, list_themes, get_theme, save_theme, activate_theme, delete_theme. Prompts for this

Fold a horn#

Fold a horn into a cabinet the way the Fold tile does, with other layouts, fixes and the folded horn to simulate beside the target, then export the saved fold as a Boundary Lab project to solve in 3-D.

Tools: fold_horn, export_boundary_lab. Prompts for this

Its own limits#

List the workspace operations this connection allows and the permission each one needs.

Tools: list_workspace_capabilities.

Where you see the results#

WhereWhat you get
In the conversationGraph tiles from a simulation it ran, up to 6 at a time: SPL, Max SPL, Impedance, Phase, Group delay, Excursion, PR excursion, Port velocity, Rear port velocity, Apparent power, Current draw. Ask for power and EQ controls and you can change one enclosure’s power and filters in the chat and see its curves re-solved; nothing is saved until you apply it. See Graph kinds.
In your open tabIts edits land in place, and it can bring up to 6 tiles to the front and mark them. See Watch it work live.
LaterIt works with the app closed too; its saved versions wait in your workspaces. A workspace it creates starts as a draft and is archived after 7 days unless you keep it: Keep all in your workspace list, or Keep workspace when it hands back.

What it won’t do#

  • Make up numbers. Every figure it quotes should come from a simulation it ran; if an answer has a number and no run behind it, ask it to simulate.
  • Save your experiments unasked. It tries changes as temporary edits and saves only the ones you ask for, each as a new saved version you can go back to.
  • Share or publish. It cannot create share links, so nothing becomes public without you.
  • Delete without asking. It asks before deleting a workspace it did not make in the same conversation, and a deleted workspace can be restored for 30 days.
  • Reach other designs. It sees only your own workspaces: not other people’s, and not designs you made as a guest, which stay in your browser.

Get started#

  1. 1

    Connect it

    Add the server URL to Claude, ChatGPT, Claude Code or another MCP client, then sign in and approve it. Connect your assistant
  2. 2

    Open a workspace

    Optional, but then you watch the work happen: open the workspace in 00 Simulator, signed in to the same account.
  3. 3

    Ask

    Start with “Using 00 Simulator,” and say what you want and the limits that matter. Prompts that work

Ask your AI

Your assistant reads the driver from your workspace, starts from the app’s own box suggestions and simulates both with the same solver.
Using 00 Simulator, suggest a sealed and a vented box for the driver in my most recent workspace, add both to that workspace, and compare their F3, box volume and peak excursion at the saved power.
or open it inClaudeChatGPT

Connect your assistant so it can open your designs.