Skip to main content

azure-iot

Read the plant-floor Azure IoT surface — device twins (spindles, conveyors, robotic arms, vision systems), time-series telemetry with pre-annotated alarms, downtime events with cause codes and lot ids, and per-line OEE rollups (Availability × Performance × Quality).

Aller à l'installation

Informations de source

Dépôt
aiappsgbb/kratos-agent
Dernière activité de la source
9 juin 2026 à 14:53
Langue détectée de SKILL.md
anglais
Étoiles
24
Forks
22

Options d'installation

Le prompt qui vérifie d'abord la source est sélectionné par défaut. Vous pouvez passer à une commande directe ou télécharger une copie locale.

Vérifiez les fichiers source

Lisez SKILL.md et les fichiers associés affichés par SkillsMP avant de décider de l'installer.

Affichage de SKILL.md

SKILL.md
Instructions source · Aperçu en lecture seule
name
azure-iot
description
Read the plant-floor Azure IoT surface — device twins (spindles, conveyors, robotic arms, vision systems), time-series telemetry with pre-annotated alarms, downtime events with cause codes and lot ids, and per-line OEE rollups (Availability × Performance × Quality).
enabled
true
## Instructions This is the **read interface** to `azure-iot-mcp-server`. This is **where every Line-N investigation starts** — OEE tells you which line is missing target; downtime events tell you which device and why; telemetry tells you the underlying signal. ### Tool routing | User intent | Tool | |---|---| | List the equipment on the floor (filter by plant, line, status) | `iot_list_devices` | | One device with full detail (vendor/model/firmware, alarm thresholds, status_note) | `iot_get_device` | | Pull time-series readings for a device (vibration, temp, load, RPM, etc.) with pre-annotated `alarms` array | `iot_get_telemetry` | | List downtime events with cause codes (`VIB_ALARM`, `MATERIAL_HOLD_QA`, `CAL_DRIFT`, `PLANNED_MAINT`), lot ids, and `related_po_id` for cross-MCP joins | `iot_list_downtime_events` | | Per-line per-day OEE with `vs_target_pct` and `flag` (`on_target` / `watch` / `investigate`) | `iot_get_oee` | ### Investigation workflow — the canonical pattern The IoT story is **OEE → downtime → telemetry → device twin**. Walk that order; don't query everything up-front. 1. **`iot_get_oee(plant_id="P-CLE")`** → which line is `investigate`? Look at the 7-day trend, not just today. 2. **`iot_list_downtime_events(plant_id="P-CLE", line="<that line>", since="<yesterday>")`** → what stopped it? Read the `cause_code`, `lot_id`, `related_po_id`. 3. **`iot_get_device("<the device named in the events>")`** → is the device twin in `Warning` / `Degraded`? Read the `status_note`. 4. **`iot_get_telemetry("<device>", since="<window>")`** → confirm the signal. The `alarms` array on each reading already lists the breaches — **don't re-derive thresholds in your head**. 5. **Hand off** — if a downtime event has a `related_po_id` or a Northbridge-style lot id, pivot to **sap-s4**; if you need to log a maintenance ticket, pivot to **servicenow**. ### Conventions - **The `alarms` array is the source of truth on threshold breaches.** Quote it: *"vibration crossed 4.5 mm/s at 22:00 — reading was 4.7"*. Don't compute it. - **Plant ids match sap-s4 verbatim.** `P-CLE` here = `P-CLE` there. Lines too (`Line 3 — Precision` is the same string). - **Device ids `DEV-*` map to servicenow CMDB `CI-DEV-*`** by numeric suffix. DEV-3001 → CI-DEV-3001. The servicenow CI's `owner_group` is `Plant Maintenance` — that's the assignment group for the work order. - **OEE flag wording is fixed** (`on_target` / `watch` / `investigate`) — use those words; don't invent synonyms. - **Time windows.** All timestamps are ISO-8601 with offset (Cleveland `-04:00`, Munich `+02:00`). When Frank says "last shift" assume the prior 8 h ending at the current time. ### Output Prefer compact tables — one row per device, one row per downtime event, one row per day for OEE. Lead each row with the id, the metric, and the flag. ### When NOT to use - Production orders / materials / vendors → **sap-s4** - Logging a maintenance ticket against the device → **servicenow** (maintenance work order section) - Charting the OEE trend / computing aggregates → **oee-analysis** (don't ask `code_interpreter` to retype numbers — pipe them through that skill)
Voir sur GitHub