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Honeywell Forge MCP Server for OpenAI Agents SDK 11 tools — connect in under 2 minutes

Built by Vinkius GDPR 11 Tools SDK

The OpenAI Agents SDK enables production-grade agent workflows in Python. Connect Honeywell Forge through Vinkius and your agents gain typed, auto-discovered tools with built-in guardrails. no manual schema definitions required.

Vinkius supports streamable HTTP and SSE.

python
import asyncio
from agents import Agent, Runner
from agents.mcp import MCPServerStreamableHttp

async def main():
    # Your Vinkius token. get it at cloud.vinkius.com
    async with MCPServerStreamableHttp(
        url="https://edge.vinkius.com/[YOUR_TOKEN_HERE]/mcp"
    ) as mcp_server:

        agent = Agent(
            name="Honeywell Forge Assistant",
            instructions=(
                "You help users interact with Honeywell Forge. "
                "You have access to 11 tools."
            ),
            mcp_servers=[mcp_server],
        )

        result = await Runner.run(
            agent, "List all available tools from Honeywell Forge"
        )
        print(result.final_output)

asyncio.run(main())
Honeywell Forge
Fully ManagedVinkius Servers
60%Token savings
High SecurityEnterprise-grade
IAMAccess control
EU AI ActCompliant
DLPData protection
V8 IsolateSandboxed
Ed25519Audit chain
<40msKill switch
Stream every event to Splunk, Datadog, or your own webhook in real-time

* Every MCP server runs on Vinkius-managed infrastructure inside AWS - a purpose-built runtime with per-request V8 isolates, Ed25519 signed audit chains, and sub-40ms cold starts optimized for native MCP execution. See our infrastructure

About Honeywell Forge MCP Server

Connect Honeywell Forge to any AI agent via MCP.

How to Connect Honeywell Forge to OpenAI Agents SDK via MCP

Follow these steps to integrate the Honeywell Forge MCP Server with OpenAI Agents SDK.

01

Install the SDK

Run pip install openai-agents in your Python environment

02

Replace the token

Replace [YOUR_TOKEN_HERE] with your Vinkius token from cloud.vinkius.com

03

Run the script

Save the code above and run it: python agent.py

04

Explore tools

The agent will automatically discover 11 tools from Honeywell Forge

Why Use OpenAI Agents SDK with the Honeywell Forge MCP Server

OpenAI Agents SDK provides unique advantages when paired with Honeywell Forge through the Model Context Protocol.

01

Native MCP integration via `MCPServerSse`, pass the URL and the SDK auto-discovers all tools with full type safety

02

Built-in guardrails, tracing, and handoff patterns let you build production-grade agents without reinventing safety infrastructure

03

Lightweight and composable: chain multiple agents and MCP servers in a single pipeline with minimal boilerplate

04

First-party OpenAI support ensures optimal compatibility with GPT models for tool calling and structured output

Honeywell Forge + OpenAI Agents SDK Use Cases

Practical scenarios where OpenAI Agents SDK combined with the Honeywell Forge MCP Server delivers measurable value.

01

Automated workflows: build agents that query Honeywell Forge, process the data, and trigger follow-up actions autonomously

02

Multi-agent orchestration: create specialist agents. one queries Honeywell Forge, another analyzes results, a third generates reports

03

Data enrichment pipelines: stream data through Honeywell Forge tools and transform it with OpenAI models in a single async loop

04

Customer support bots: agents query Honeywell Forge to resolve tickets, look up records, and update statuses without human intervention

Honeywell Forge MCP Tools for OpenAI Agents SDK (11)

These 11 tools become available when you connect Honeywell Forge to OpenAI Agents SDK via MCP:

01

acknowledge_alarm

Acknowledgment does not resolve or clear the underlying condition—it simply records that a human has reviewed the alarm and is aware of it. This updates the alarm state from "unacknowledged" to "acknowledged" in the Forge audit log, which is important for compliance and incident-tracking workflows. Provide the exact alarm ID as returned by get_alarms. Use this during incident response to track which alarms have been seen by the operations team. Acknowledge an active alarm in Honeywell Forge

02

get_alarms

Alarms cover a wide range of conditions: security breaches (door forced, tailgating), fire and life safety (smoke detector activation, pull station), HVAC faults, and system health warnings. Each alarm record includes severity level, timestamp, source device, description, and acknowledgment status. Optionally filter by building_id to scope results to a single site. Use this to triage active incidents, audit historical events, or identify recurring fault patterns. List active and historical alarms across all buildings or a specific building

03

get_building_details

Returns comprehensive metadata including HVAC zones, floor plans, linked subsystems (access control, fire life safety, video surveillance), energy targets, and operating schedules. Use this when you need a deep-dive view of a single site before performing operations like checking alarms or querying energy usage. Get detailed information about a specific Honeywell Forge building

04

get_door_status

The response includes whether the door is currently open or closed, locked or unlocked, and any active fault conditions such as "door held open" or "forced open". This is a read-only, point-in-time snapshot—use it to verify the physical state of a door before granting access or investigating a security event. Get the real-time status of a specific door or access point

05

get_energy_usage

Returns aggregated consumption data including total kWh, cost estimates, demand peaks, and breakdowns by subsystem (HVAC, lighting, plug loads). Metrics may be presented as time-series data points with timestamps, allowing trend analysis and comparison against energy budgets. Use this to monitor sustainability KPIs, identify wasteful consumption patterns, or prepare energy audit reports for facility managers. Get energy consumption data for a specific building

06

get_temperature_data

Returns data points including zone temperature, setpoint targets, humidity levels, and HVAC equipment status (compressor running, valve position, fan speed). This data is essential for thermal comfort analysis, energy optimization, and proactive maintenance—such as identifying zones that consistently deviate from setpoints or detecting equipment degradation before failure. Use this to diagnose comfort complaints or validate HVAC scheduling changes. Get temperature and HVAC sensor data for a specific building

07

list_access_points

An access point represents a physical entry device—door, gate, turnstile, or barrier—managed by the Forge access control subsystem. Each record includes the access point ID, name, current lock state, door status (open/closed/forced), assigned access level, and the zone it belongs to. Use this to audit physical security surfaces before running lock/unlock commands or investigating door-forced alarm events. List all access control points (doors, gates, turnstiles) for a building

08

list_buildings

Each record contains the building identifier, name, address, operational status, and metadata such as time zone and total floor area. Use this tool as the entry point for any building-centric workflow—once you have the building ID you can drill down into access points, alarms, energy metrics, or video feeds. List all buildings registered in Honeywell Forge

09

list_video_feeds

Each record represents a camera or NVR channel with metadata including camera name, location within the building, stream URL (RTSP or HLS), resolution, current online/offline status, and recording mode (continuous, motion-triggered, scheduled). Use this to discover which cameras are available for live viewing or forensic review, and to map camera IDs to physical locations before correlating video with alarm events. List available video surveillance feeds for a building

10

lock_door

The door will immediately engage its locking mechanism and transition to a secured state. Only authorized credentials holders can override this lock via normal badge or PIN access. Use this when securing a building after hours, during a lockdown event, or to enforce temporary access restrictions. Confirm the door identity with list_access_points before executing. Lock a specific door or access point in Honeywell Forge

11

unlock_door

The door will disengage its lock and enter a free-access state until explicitly re-locked or returned to its scheduled access control mode. Use this for emergency egress, visitor accommodation, or maintenance access. Always verify the correct access point ID before unlocking to avoid unintended security gaps. Unlock a specific door or access point in Honeywell Forge

Troubleshooting Honeywell Forge MCP Server with OpenAI Agents SDK

Common issues when connecting Honeywell Forge to OpenAI Agents SDK through the Vinkius, and how to resolve them.

01

MCPServerStreamableHttp not found

Ensure you have the latest version: pip install --upgrade openai-agents
02

Agent not calling tools

Make sure your prompt explicitly references the task the tools can help with.

Honeywell Forge + OpenAI Agents SDK FAQ

Common questions about integrating Honeywell Forge MCP Server with OpenAI Agents SDK.

01

How does the OpenAI Agents SDK connect to MCP?

Use MCPServerSse(url=...) to create a server connection. The SDK auto-discovers all tools and makes them available to your agent with full type information.
02

Can I use multiple MCP servers in one agent?

Yes. Pass a list of MCPServerSse instances to the agent constructor. The agent can use tools from all connected servers within a single run.
03

Does the SDK support streaming responses?

Yes. The SDK supports SSE and Streamable HTTP transports, both of which work natively with Vinkius.

Connect Honeywell Forge to OpenAI Agents SDK

Get your token, paste the configuration, and start using 11 tools in under 2 minutes. No API key management needed.