Surf MCP Server
Related Servers
Alternatives to Surf MCP Server
No user-submitted related servers found.
Related Servers
- AlicenseNot gradedqualityFmaintenanceProvides NOAA tide predictions and observed water levels, allowing AI agents to query tide stations and current water level data.2 npmMIT
- FlicenseAqualityDmaintenanceProvides Canadian tide predictions from the IWLS API, enabling retrieval of 7-day tide forecasts and station listings for monitoring stations across Canada.4-
- AlicenseDqualityDmaintenanceProvides access to the Timezone By Location API to retrieve timezone information based on geographic location data.1MIT
- AlicenseNot gradedqualityAmaintenanceFind NOAA tide stations and NDBC buoys, fetch tide predictions, water levels, tidal currents, and live buoy conditions via MCP.302 npm1Apache 2.0
- AlicenseNot gradedqualityBmaintenanceProvides real-time water temperature and tide predictions for any lake, river, ocean, bay, or beach using NOAA, USGS, and other sources.MIT
- FlicenseNot gradedqualityBmaintenanceMCP server that provides tide predictions, station lookup, and tidal event alerts for US coastal locations using live NOAA data.-
TDQS
Scored across 1 tool
With only one tool, there is no possibility of ambiguity or overlap between tools. The tool's purpose is clearly defined as retrieving tide information for a specific location and date, making it distinct by default.
The single tool follows a clear verb_noun pattern (get_tides), which is consistent and predictable. Since there are no other tools to compare against, the naming convention is perfectly uniform.
A single tool is too few for a server named 'Surf MCP Server', which implies a broader scope related to surfing or ocean conditions. This minimal toolset feels incomplete and under-scoped for the apparent domain.
The tool surface is severely incomplete for a surfing-related server. While get_tides covers tide information, there are obvious gaps such as wave forecasts, weather data, or surf spot details, which are essential for the domain and will likely cause agent failures.