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zigbee-herdsman-converters

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Collection of device converters to be used with zigbee-herdsman

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"use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || (function () { var ownKeys = function(o) { ownKeys = Object.getOwnPropertyNames || function (o) { var ar = []; for (var k in o) if (Object.prototype.hasOwnProperty.call(o, k)) ar[ar.length] = k; return ar; }; return ownKeys(o); }; return function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k = ownKeys(mod), i = 0; i < k.length; i++) if (k[i] !== "default") __createBinding(result, mod, k[i]); __setModuleDefault(result, mod); return result; }; })(); Object.defineProperty(exports, "__esModule", { value: true }); exports.definitions = void 0; const fz = __importStar(require("../converters/fromZigbee")); const tz = __importStar(require("../converters/toZigbee")); const exposes = __importStar(require("../lib/exposes")); const reporting = __importStar(require("../lib/reporting")); const e = exposes.presets; exports.definitions = [ { fingerprint: [{ modelID: "PUMM01102", manufacturerName: "computime" }], model: "Yali Parada Plus", vendor: "Purmo/Radson", description: "Electric oil-filled radiator", extend: [], fromZigbee: [fz.thermostat], toZigbee: [ tz.thermostat_occupancy, tz.thermostat_local_temperature, tz.thermostat_occupied_heating_setpoint, tz.thermostat_unoccupied_heating_setpoint, tz.thermostat_system_mode, tz.thermostat_running_mode, tz.thermostat_running_state, tz.thermostat_max_heat_setpoint_limit, tz.thermostat_local_temperature_calibration, ], meta: {}, exposes: [ e .climate() .withSetpoint("occupied_heating_setpoint", 5, 30, 0.5) .withSetpoint("unoccupied_heating_setpoint", 5, 30, 0.5) .withSystemMode(["heat", "off"]) .withLocalTemperature() .withLocalTemperatureCalibration() .withRunningState(["idle", "heat"]) .withRunningMode(["off", "heat"]), e.max_heat_setpoint_limit(5, 30, 0.5), ], configure: async (device, coordinatorEndpoint) => { const endpoint = device.getEndpoint(1); const binds = ["genBasic", "genIdentify", "genTime", "hvacThermostat", "hvacUserInterfaceCfg"]; await reporting.bind(endpoint, coordinatorEndpoint, binds); await reporting.thermostatSystemMode(endpoint); await reporting.thermostatTemperature(endpoint); await reporting.thermostatRunningState(endpoint); await reporting.thermostatRunningMode(endpoint); await reporting.thermostatOccupiedHeatingSetpoint(endpoint); await reporting.thermostatUnoccupiedHeatingSetpoint(endpoint); await reporting.thermostatOccupancy(endpoint); await reporting.thermostatTemperatureCalibration(endpoint); device.powerSource = "Mains (single phase)"; device.save(); }, }, ]; //# sourceMappingURL=purmo.js.map