{"uid":"cap_ZyGagVhsvzeqvUsKWkZK1","slug":"pid-loop-tuner-mcp-72b4d6a6","name":"PID Loop Tuner MCP","description":"The premier global index of 1,069 monetized MCP nodes across 205 specialized subdomains. Gasless USDC runtime settlements via x402 V2 Spec on Base L2. Save 95% token context.","url":"https://api.m2mcent.com/pid-loop-tuner-mcp/api/process","method":"POST","headers":{},"bodySchema":{"type":"object","properties":{"payload":{"type":"string"}}},"responseSchema":{"type":"json","example":{"success":true}},"example":null,"exampleRequest":null,"tags":["x402"],"displayCostAmount":"0.12","displayCostAsset":"USDC","priceDynamic":false,"priceHint":null,"priceStatus":"priced","priceSource":"probe","requiresHandshake":false,"reviewCount":0,"rating":{"score":"0.00","successRate":"0.00","reviews":0,"stars":null,"state":"unrated"},"availabilityStatus":"unknown","priceObserved":null,"sessionDeposit":null,"pricing":{"kind":"static","summary":"$0.12/call","primary":{"kind":"static","protocol":"x402","network":"base","amountUsd":"0.12","per":"call","confidence":"exact"},"accepted":[{"kind":"static","protocol":"x402","network":"base","amountUsd":"0.12","per":"call","confidence":"exact"}]},"paymentMethods":[{"uid":"pm_ucHsWKOor8dX8XuE6kLS2","protocol":"x402","methodType":"crypto","chain":"base","mode":"charge","costAmount":"0.12","costPer":"request","priority":0,"asset":"0x833589fCD6eDb6E08f4c7C32D4f71b54bdA02913","unit":"request","depositMicros":null,"planRef":null}],"brandName":null,"brandSlug":null,"brandBaseUrl":null,"brandDocsUrl":null,"whatItDoes":"Tunes PID (Proportional-Integral-Derivative) control loop parameters for industrial or embedded control systems given process data.","exampleAgentPrompt":"Can you tune my PID loop? Here's the process step-response data: the system has a gain of 2.5, time constant of 8 seconds, and dead time of 1.2 seconds — I need Kp, Ki, and Kd values to minimize overshoot.","exampleUseCases":[{"title":"Temperature control loop tuning","prompt":"I need to tune a PID controller for a heat exchanger — the process gain is 1.8, the time constant is 45 seconds, and the dead time is 5 seconds. What Kp, Ki, and Kd values should I use to get a stable temperature response?"},{"title":"Servo motor position controller","prompt":"Help me tune the PID gains for a servo motor position control loop. My step response data shows a rise time of 0.3 seconds, settling time of 1.1 seconds, and about 22% overshoot. What gains should I set?"},{"title":"Industrial flow rate process control","prompt":"I have a flow rate control loop in my plant that keeps oscillating. The process data shows a gain of 0.9, lag time constant of 12 seconds, and a dead time of 2 seconds. Can you calculate tuned PID parameters to stabilize it?"}],"resultDescription":"Returns computed PID gain values (Kp, Ki, Kd) and/or tuning recommendations derived from the submitted process data, enabling the user to configure their controller for stable and optimized closed-loop performance.","failureModes":["Malformed or insufficient process data string returns an error","Unstable or non-minimum-phase process data may yield unreliable gains","Missing required 'data' field causes a 400-level validation error","Payment failure or insufficient USDC balance blocks processing via x402"],"whenToPreferThis":"Choose this endpoint when you need automated PID parameter calculation from process data without manually applying Ziegler-Nichols or other tuning methods. Particularly useful in agentic control system workflows where a quick, paid API call replaces manual engineering calculation.","instructions":null,"reviewSummary":null,"reviewSummaryHighlights":null,"reviewSummaryConcerns":null,"reviewSummaryGeneratedAt":null,"activationCount":0,"lastUsedAt":null,"lastSuccessfullyRanAt":null,"lastHealthCheckAt":"2026-09-15T07:11:43.148Z","isFirstParty":false}