MCP Agent Trace Inspe… vs MCP Server Health Mon… | AllMCPs
Side-by-Side Model Context Protocol Comparison
MCP Agent Trace Inspector vs MCP Server Health Monitor
In-depth architectural comparison of the MCP Agent Trace Inspector and MCP Server Health Monitor MCP servers. Compare execution transports, security boundaries, tool capabilities, quality scores, and ready-to-paste client installation snippets for Claude, Cursor, Windsurf, and VS Code.
At a Glance & Executive Verdict
MCP Agent Trace Inspector
Monitoring · Local stdio
Quality: 49/100 (Fair) | Auth: No auth required
MCP Server Health Monitor
Monitoring · Local stdio
Quality: 49/100 (Fair) | Auth: No auth required
Verdict Summary: Choose MCP Agent Trace Inspector if you need specialized Monitoring tools running via a local process. Choose MCP Server Health Monitor if your workspace requires Monitoring integration with local subprocess execution. Both servers can be configured concurrently in your client's mcpServers manifest.
Which MCP Server Should You Choose?
Choose MCP Agent Trace Inspector when:
You need dedicated capabilities in the Monitoring domain.
You prefer local stdio subprocess transport architecture.
Your security boundary fits: No auth required (Free / Open Source).
MCP Agent Trace Inspector is categorized under Monitoring and uses a local stdio subprocess. In contrast, MCP Server Health Monitor belongs to Monitoring using local stdio subprocess. Select MCP Agent Trace Inspector when you need capabilities focused on monitoring and MCP Server Health Monitor when you require tools for monitoring.
extract only reasoning/thinking steps from a trace
export_dashboard
generate a self-contained single-file HTML dashboard with latency waterfall
export_otel
export one or all traces in OpenTelemetry OTLP JSON span format
export_compliance_log
export the compliance audit log as JSON or CSV, with optional date range filtering
configure_alerts
configure alert rules on latency, error rate, or cost; fire to Slack or generic webhooks
set_retention_policy
set how many days to keep traces (in-memory; must be called before `apply_retention`)
+1 more tools listed on main page
MCP Server Health Monitor Tools (8)
health_check_all
probes all configured servers in parallel via `list_tools`, measures latency, and stores results. Accepts an optional `timeout_ms` parameter (default: 5000).
get_server_status
returns per-server detail including latency, last seen time, 24-hour error count, last error message, and p50/p95 latency percentiles. Requires `server_name`.
list_degraded
filters to servers that are offline or have latency above the threshold. Accepts an optional `latency_threshold` override.
get_history
returns raw health check history for a specific server, ordered most-recent first. Requires `server_name`; accepts optional `limit` (default: 50, max: 500).
configure_server
registers a new MCP server to monitor. Servers added this way are stored in `~/.mcp/extra-servers.json` and merged with auto-discovered servers. Required: `name`, `command`. Optional: `args`, `env`.
remove_server
removes a manually registered server from monitoring. Only affects servers added via `configure_server`; auto-discovered servers are not affected. Requires `name`.
check_updates
detects version drift by hashing tool schemas on each probe and comparing against the last stored hash. Returns `has_changed`, `previous_hash`, `current_hash`, and `changed_at` per server.
export_dashboard
generates a self-contained single-file HTML dashboard with summary cards, per-server status table with p50/p95 latency, and inline SVG uptime sparklines. Accepts an optional `output_path` to write to disk.