Delay Time Compensator Connector for AI agents.
3 live capabilities
Fix audio latency and sync live beats to your BPM.
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Why people use Delay Time Compensator
Fix Hardware Latency with Delay Time Compensator Audio capabilities
With this Connector, you just tell your agent your BPM and your latency. It does the math instantly and gives you the exact number to plug into your gear. You get a perfectly synced rhythm without the manual trial and error.
What Vinkius changes
That it turns messy hardware lag into precise, playable musical numbers.
Use it from Claude, ChatGPT, Cursor or another AI client you already have.
One account · 6,100+ Connectors
- Real-world use case 01
Syncing live DJ sets
A live DJ has 40ms of lag and needs to sync 8th notes at 128 BPM.
- Real-world use case 02
Studio hardware alignment
A producer wants to know how 60ms of lag affects 16th notes at 140 BPM to decide if their external synth is too far out of sync.
- Real-world use case 03
High-latency live rigging
A sound tech with massive hardware lag needs to know the shortest playable note they can use at 90 BPM to avoid rhythmic drifting.
Complete set · 3capabilities
The complete Delay Time Compensator capability set.
These are the exact actions your AI can choose when you ask it to work with Delay Time Compensator.
01—03
3 capabilities in this set.
Part of 3 available through Delay Time Compensator.
- 01 Capability
Analyze rhythmic shift
This capability tells you exactly how your current hardware lag is changing the feel of your music. It provides a human-readable explanation of the rhythmic shift so you can understand the problem.
- 02 Capability
Calculate delay adjustment
Use this to get the exact millisecond value needed to keep your notes in sync with your BPM. It handles the math of offsetting hardware latency for you.
- 03 Capability
Find next valid division
This capability identifies the shortest note length you can actually play given your current system lag. It prevents you from trying to play rhythms that your hardware simply can't keep up with.
Set up in minutes
One URL. Then ask Delay Time Compensator to work.
Claude and ChatGPT only need the Connector URL. Copy it once, add it in settings, and use Delay Time Compensator from the conversation.
Choose your client
Live previewAdvanced clients IDE · CLI
Claude · Web + desktop
Connector URL · ready to paste
Streamable HTTPhttps://edge.vinkius.com/vk_preview_P3DH2sLfr20AOtcVbU0WjZxv8OM4Rmy7vveRX3Uw/mcp - Step 01
Open Connectors
In Claude Web or Claude Desktop, open Settings and choose Connectors.
- Step 02
Add the URL
Choose Add custom connector, name it Delay Time Compensator, and paste the URL above.
- Step 03
Turn it on in chat
Select +, open Connectors, and enable Delay Time Compensator for the conversation.
ChatGPT · Web + desktop
Connector URL · ready to paste
Streamable HTTPhttps://edge.vinkius.com/vk_preview_P3DH2sLfr20AOtcVbU0WjZxv8OM4Rmy7vveRX3Uw/mcp - Step 01
Open MCP settings
On desktop, open Settings and MCP servers. On web, open your workspace app or connector settings.
- Step 02
Add the URL
Choose Add server with Streamable HTTP, or create a custom MCP app, then paste the Delay Time Compensator URL.
- Step 03
Save and start
Save the connection and enable Delay Time Compensator in your conversation. Desktop may ask you to restart once.
Cursor · IDE configuration
Advanced setup
{
"mcpServers": {
"delay-time-compensator": {
"url": "https://edge.vinkius.com/vk_preview_P3DH2sLfr20AOtcVbU0WjZxv8OM4Rmy7vveRX3Uw/mcp"
}
}
} - Step 01
Open MCP Settings
Press Cmd+Shift+P (macOS) or Ctrl+Shift+P (Windows/Linux) → search "MCP Settings"
- Step 02
Add the server config
Paste the JSON configuration above into the mcp.json file that opens
- Step 03
Save the file
Cursor will automatically detect the new Connector
- Step 04
Start using Delay Time Compensator
Open Agent mode in chat and ask: "Using Delay Time Compensator, help me...". 3 tools available
VS Code Copilot · IDE configuration
Advanced setup
{
"mcpServers": {
"delay-time-compensator": {
"url": "https://edge.vinkius.com/vk_preview_P3DH2sLfr20AOtcVbU0WjZxv8OM4Rmy7vveRX3Uw/mcp"
}
}
} - Step 01
Create MCP config
Create a .vscode/mcp.json file in your project root
- Step 02
Add the server config
Paste the JSON configuration above
- Step 03
Enable Agent mode
Open GitHub Copilot Chat and switch to Agent mode using the dropdown
- Step 04
Start using Delay Time Compensator
Ask Copilot: "Using Delay Time Compensator, help me...". 3 tools available
Windsurf · IDE configuration
Advanced setup
{
"mcpServers": {
"delay-time-compensator": {
"url": "https://edge.vinkius.com/vk_preview_P3DH2sLfr20AOtcVbU0WjZxv8OM4Rmy7vveRX3Uw/mcp"
}
}
} - Step 01
Open MCP Settings
Go to Settings → MCP Configuration or press Cmd+Shift+P and search "MCP"
- Step 02
Add the server
Paste the JSON configuration above into mcp_config.json
- Step 03
Save and reload
Windsurf will detect the new server automatically
- Step 04
Start using Delay Time Compensator
Open Cascade and ask: "Using Delay Time Compensator, help me...". 3 tools available
Cline · IDE configuration
Advanced setup
{
"mcpServers": {
"delay-time-compensator": {
"url": "https://edge.vinkius.com/vk_preview_P3DH2sLfr20AOtcVbU0WjZxv8OM4Rmy7vveRX3Uw/mcp"
}
}
} - Step 01
Open Cline MCP Settings
Click the Connectors icon in the Cline sidebar panel
- Step 02
Add remote server
Click "Add Connector" and paste the configuration above
- Step 03
Enable the server
Toggle the server switch to ON
- Step 04
Start using Delay Time Compensator
Ask Cline: "Using Delay Time Compensator, help me...". 3 tools available
Claude Code · Terminal command
Advanced setup
claude mcp add delay-time-compensator --transport http "https://edge.vinkius.com/vk_preview_P3DH2sLfr20AOtcVbU0WjZxv8OM4Rmy7vveRX3Uw/mcp" - Step 01
Install Claude Code
Run npm install -g @anthropic-ai/claude-code if not already installed
- Step 02
Add the Connector
Run the command above in your terminal
- Step 03
Verify the connection
Run claude mcp to list connected servers, or type /mcp inside a session
- Step 04
Start using Delay Time Compensator
Ask Claude: "Using Delay Time Compensator, show me...". 3 tools are ready
Where the request belongs
Work Delay Time Compensator can move forward.
This is for the live sound engineer who's tired of feeling out the delay on a busy stage, or the home studio producer trying to sync external hardware without losing the groove.
Live Sound Engineer
Fixing real-time audio lag for a touring band during a live performance.
Music Producer
Aligning external hardware synths with a DAW to keep the timing perfect.
Audio Engineer
Calculating offsets for complex multi-track processing in a studio environment.
Build the capability set
Add more capabilities.
Each Connector adds new actions and data without changing how you work.
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Song Structure Timer
Calculate musical timing, section durations, and full song timelines based on BPM and meter.
Groove Quantize Calculator
Calculate precise millisecond-based quantization grids, swing offsets, and latency compensation for DAWs.
Polyrhythm Calculator
Calculate precise alignment, attack timestamps, and subdivision grids for complex polyrhythms.
Bring your own AI
Change the model, client or framework. Keep Delay Time Compensator connected.
-
Claude -
ChatGPT -
Gemini -
Cursor -
VS Code -
Windsurf -
ZCode -
Cline -
Zed -
Continue -
Kiro -
Roo Code -
Zencoder -
Goose -
Void -
Augment Code -
Amp -
Qodo -
Tabnine -
Pieces -
Sourcegraph Cody -
JetBrains -
Warp -
Amazon Q -
Antigravity -
BoltAI -
Raycast -
Jan -
LM Studio -
AnythingLLM -
Open WebUI -
Msty -
Cherry Studio -
LibreChat -
TypingMind -
Chorus -
5ire -
n8n -
LangChain -
LlamaIndex -
CrewAI -
Vercel AI SDK
Before you connect
Questions about Delay Time Compensator.
The practical details behind the request, access and result.
What is Delay Time Compensator for?
This Connector helps you calculate the exact delay needed to fix audio lag. It ensures your music stays in sync with your BPM regardless of hardware delay.
Can it help with live audio lag?
Yes, it calculates the precise millisecond offsets for live performance. This helps you keep your beats perfectly aligned with your master clock.
Does it work for different BPMs?
It works for any BPM you provide. The capability calculates the math dynamically so you can use it for any genre or tempo.
How does it fix my off rhythm?
It uses a specific capability to describe how latency is altering your perceived groove. This helps you identify if the timing is shifted or just slightly off.
What happens if my latency is very high?
It can identify the shortest playable note division for your setup. This prevents you from trying to play rhythms that your hardware can't handle.
Is this for live sets or studio work?
It works for both. Whether you're on a stage or in a studio, it solves the problem of hardware delay ruining your timing.
What is latency compensation?
It is the practice of reducing programmed delay time by your system's round-trip latency to ensure audio stays on the musical grid.
How do I use `calculate_delay_adjustment`?
Provide your current BPM, the intended note division (like 'eighth'), and your hardware latency in milliseconds.
What happens if my latency is too high?
If the latency exceeds the note duration, use find_next_valid_division to find a larger rhythmic window that works.
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