Low-Voltage Point Planner
Paste the following prompt into your AI chat to install this skill:
Please install @user_7a5540f4/ruodian-point-planner-skillhub according to https://skillhub.cn/install/skillhub.md.
About this skill
Problem Addressed
Low-voltage point planning often gets stuck on parameter sourcing: data point density, camera mounting height, AP coverage radius, access-control fire linkage, and quantities for cables, patch panels, and switches cannot be guessed from experience alone. This skill breaks the workflow into traceable calculation steps and queries the IMA knowledge base Low-Voltage Intelligentization AI (ID 7383010441698671) through mcp__ima-mcp before answering. Knowledge-base results take priority; if no hit is returned, it falls back to built-in GB reference values.
How It Works
The skill first asks for building type, area or room list, floors, special requirements, and system scope. It then calculates systems such as structured cabling, CCTV, access control, public address, and Wi-Fi room by room using total points per system = sum(room point density × room count). It also estimates cable length, patch panel count, switch count, and rack count, then outputs project summary, point-count tables, material estimates, key parameter notes, and standard references. Bolded parameters include source notes: knowledge-base items when available, or “built-in GB reference value” when unavailable.
Boundaries and Caveats
This skill depends on access to IMA MCP and the bound knowledge base. If area or room-list data is missing, it must ask instead of assuming. Constraints such as PoE distance and power budget, horizontal link ≤90m, channel ≤100m, and fire-ejector locks still require manual review. Formal construction work still requires on-site survey, detailed design, and local code review.
Use Cases
- Before submitting office-building low-voltage drawings, generate cabling, CCTV, access-control, and Wi-Fi point counts plus material estimates by floor and workstation.
- During early design for residential or commercial projects, verify camera height, PA spacing, and AP coverage from knowledge-base parameters, then output device quantities.
- When reworking data-center access control, check fire-route panic locks, fire-linked power-down, and UPS backup requirements to avoid blocking evacuation paths.
- Before building a bid BOM, convert data point counts into UTP cable, 24-port patch panels, PoE switches, and 42U rack quantities.
Best For
- Low-voltage engineers: quickly generate point-count tables and material estimates during initial design or bidding to reduce omissions.
- Building-intelligentization designers: cross-check national standards and knowledge-base parameters to turn CCTV, access control, PA, and Wi-Fi layouts into auditable device lists.
- Project cost engineers: convert point counts into cable, patch panel, switch, and rack quantities for bid bills of quantities.
- Operations managers: during access-control and CCTV upgrades, verify fire linkage, PoE power budgets, and cable distance limits.
Related Skills
Reviews Chinese-law contract text via the accurLex API, returns the full review opinion, and exports a Word document.
Generates executable FAERS active-comparator safety comparison research plans focused on one SOC or PT family.
A reference framework for financial data analysis covering statements, KPIs, visualization, and reporting templates, without executing code or collecting data.
A knowledge-base-driven advisor for weak-current, network, and telecom equipment selection, covering parameter comparison, model recommendations, compatibility checks, and budgeting.