├── .gitignore ├── LICENSE ├── README.md ├── garagentor-esp8266-uap1.ino ├── openhab ├── garagentor.items ├── garagentor.rules └── garagentor.sitemap └── uap1wemos.png /.gitignore: -------------------------------------------------------------------------------- 1 | # Compiled class file 2 | *.class 3 | 4 | # Log file 5 | *.log 6 | 7 | # BlueJ files 8 | *.ctxt 9 | 10 | # Mobile Tools for Java (J2ME) 11 | .mtj.tmp/ 12 | 13 | # Package Files # 14 | *.jar 15 | *.war 16 | *.nar 17 | *.ear 18 | *.zip 19 | *.tar.gz 20 | *.rar 21 | 22 | # virtual machine crash logs, see http://www.java.com/en/download/help/error_hotspot.xml 23 | hs_err_pid* 24 | -------------------------------------------------------------------------------- /LICENSE: -------------------------------------------------------------------------------- 1 | GNU GENERAL PUBLIC LICENSE 2 | Version 2, June 1991 3 | 4 | Copyright (C) 1989, 1991 Free Software Foundation, Inc., 5 | 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA 6 | Everyone is permitted to copy and distribute verbatim copies 7 | of this license document, but changing it is not allowed. 8 | 9 | Preamble 10 | 11 | The licenses for most software are designed to take away your 12 | freedom to share and change it. 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If this is what you want to do, use the GNU Lesser General 339 | Public License instead of this License. 340 | -------------------------------------------------------------------------------- /README.md: -------------------------------------------------------------------------------- 1 | ![cool](https://img.shields.io/badge/coolness-high-green.svg) ![alt l](https://img.shields.io/github/license/hpd96/garagentor-esp8266.svg) 2 | 3 | 4 | 5 | ![commit](https://img.shields.io/github/last-commit/hpd96/garagentor-esp8266.svg) 6 | ![GitHub release](https://img.shields.io/github/release/hpd96/garagentor-esp8266.svg) 7 | 8 | # garagentor-esp8266 9 | Garagentor-Steuerung mit ESP8266 und Arduino via http und mqtt für openHAB - Hörmann UAP1 10 | 11 | Hardware-Aufbau und Idee von http://www.majorshark.de/index.php/13-hoermann-torantrieb-mit-espeasy-in-fhem-einbinden 12 | Frank's Technik Blog :+1: 13 | - statt FHEM und ESPeasy aber openHAB und Arduino-Programmierung 14 | 15 | -- 16 | ## Einleitung 17 | 18 | Wenn man ein Hörmann Garagentor mit SupraMatic Antrieb in openHAB einbinden und bedienen möchte, benötigt man eine Erweiterung des Antriebes. Mit der Hörmann Universaladapterplatine UAP 1 erweitert man den Hörmann Antrieb um die benötigten Ein- und Ausgänge. Damit ist es dann möglich, das Tor mit einem Knopfdruck in die entsprechende Richtung fahren zu lassen und - was noch viel wichtiger ist - auch zu sehen, ob das Tor gerade geöffnet oder geschlossen ist. 19 | 20 | ## Übersicht UAP1 21 | Die Ausgänge sind als potentialfreie Relaiskontakte ausgeführt. Die Eingänge werden einfach mit einem 1 sec-Impuls auf Masse gezogen. Im einzelnen bietet die Universaladapterplatine UAP1 folgende Ein- und Ausgänge: 22 | 23 | | Eingang | Klemme | 24 | | :--- | :---: | 25 | | Tor öffnen | S2 | 26 | | Tor schließen | S4 | 27 | | Tor Teilöffnung | S3 | 28 | | Antriebsbeleuchtung toggeln | S5 | 29 | | Antrieb ausschalten | S0 | 30 | 31 | | Ausgang | Klemme | 32 | | :--- | :---: | 33 | | Endlagenmeldung Tor offen | O1 | 34 | | Endlagenmeldung Tor zu | O2 | 35 | | Entspricht der Programierung des Optionsrelais (Blinklicht, Beleuchtung etc.) | O3 | 36 | 37 | 38 | Weiterhin befindet sich ein 24V Anschluss auf der UAP 1, der mit 100mA belastet werden kann. Außerdem ein weiterer Anschluss, um das Tor komplett außer Betrieb zu nehmen. Dieser ist aber ab Werk mit einer Drahtbrücke versehen. 39 | 40 | ## BOM 41 | 42 | 1x Hörmann Universaladapterplatine UAP 1 ca. 50,00€ 43 | 1x Wemos D1 ca. 7,00€ 44 | 1x DC-DC Step Down Power Supply Module ca. 1,70€ LM2596S 45 | 4x T1-T4 NPN BC546B 46 | 4x 1uF 47 | 4x 15k 48 | 4x 2,2k 49 | 4x 2,0k 50 | 4x LED 51 | 1x 100 uF 52 | Universalplatine, Schaltdraht, Lötkolben 53 | 54 | 55 | ## Schaltungsaufbau: 56 | 57 | Im wesentlichen besteht die Schaltung aus einem Wemos D1 und ein paar Bauteilen aus der Grabbelkiste. Die beiden Ausgänge der UAP 1 für Tor Endlage offen und Tor Endlage geschlossen sind als Relaisausgänge ausgeführt. Sie können direkt an den Wemos D1 angeschlossen werden. Die Entprellung der Relais-kontakte übernimmt dabei die Software (ESPEasy) auf dem ESP8266. Mit dem Relaisausgang O3 habe ich das jetzt weggefallene Hörmann Optionsrelais HOR1 für das Licht ersetzt. 58 | 59 | Um die vier Eingänge der UAP 1 ansteuern zu können, benötigt man noch vier einfache Schalttransistoren. Diese Transistoren können mit den 3,3V Signalen des ESP die 24V der UAP 1 schalten. Der Blogger Otto gibt auf seinem Blog einen Strom von 4,8mA an, wenn die Eingänge der UAP 1 auf Masse gezogen werden. Die Spannung an den offenen Eingängen gibt er mit 21V an. Da bei mir noch Unmengen an DDR Transistoren in den Kisten liegen habe ich mich für einen SC237 npn-Tansistor entschieden. Der Vergleichstyp ist heute der BC237. Dieser kann laut Datenblatt Spannungen bis zu 45V und Ströme bis zu 100mA schalten. Also völlig ausreichend für diesen Einsatzzweck. Die Pull-Down Widerstände (R1,R4,R7,R10) bringen Ordnung in das etwas zickige Bootverhalten der GPIO des ESP. Ohne diese Widerstände werden die GPIO beim Booten des ESP einmal kurz auf High gezogen. Das ist natürlich unbedingt zu Vermeiden. Die Tiefpässe sollen weitere Störungen verhindern die zu einem ungewollten Schalten der Ausgänge führen können. 60 | 61 | Der Spannungswandler ist ebenfalls ein "Cent" Artikel aus dem Onlineshop. Fünf Stück für derzeit 8,50 €. Dieser wandelt nach dem Datenblatt Spannungen zwischen 4,5V bis 28V auf 0,8V bis 20V bei einem Dauerstrom von 3A um. Die 24V der UAP1 werden mit diesem Wandler nahezu Verlustfrei auf 3,3V gewandelt. 62 | 63 | |ESP | Wemos D1 | Funktion | UAP1 | Funktion UAP1 | 64 | | :--- | :---: | :---: | :---: | :--- | 65 | | GPIO5 | D1 | Eingang | O1 | Tor Endlage oben (Geöffnet) | 66 | | GPIO0 | D3 | Eingang | O2 | Tor Endlager unten (Geschlossen) | 67 | | GPIO14 | D5 | Ausgang | S4 | Tor schließen| 68 | | GPIO12 | D6 | Ausgang | S5 | Antriebsbeleuchtung toggeln| 69 | | GPIO13 | D7 | Ausgang | S2 | Tor öffnen| 70 | | GPIO15 | D8 | Ausgang | S3 | Tor Teilöffnung | 71 | 72 | Zusammengefasst in einem Schaltbild sieht es dann so aus. Links die Relaisausgänge der UAP 1, rechts die Eingänge inkl. der Stromversorgung von der UAP 1. 73 | 74 | ![Alt text](./uap1wemos.png?raw=true "esp8266 schaltung") 75 | 76 | ## Aufbau auf der Universalplatine 77 | 78 | Aufgebaut habe ich das Ganze auf einer universal Lochrasterplatine. Die Platine hat die Maße 9x7cm. Damit die Platine in das Kästchen der UAP1 passt, muss diese noch zurecht geschnitten werden. In dem UAP1-Kasten sind seitlich kleine Stege. Diese habe ich in der Platine ausgeschnitten. 79 | 80 | ## Wemos D1 einrichten mit Arduino 81 | 82 | Features: 83 | - http Status Abfrage 84 | - http Kommando Auf/Zu 85 | - http OTA update 86 | - mqtt status/command 87 | 88 | siehe .ino C code 89 | -------------------------------------------------------------------------------- /garagentor-esp8266-uap1.ino: -------------------------------------------------------------------------------- 1 | /* 2 | * Hoermann Garagen-Tor mit ESP8266 und UAP1 3 | * 4 | * features: 5 | * http web page 6 | * mqtt 7 | * http OTA uploader 8 | * To upload through terminal you can use: curl -F "image=@firmware.bin" esp8266-webupdate.local/firmware 9 | * 10 | * support for 11 | * S4 Zu/close 12 | * S2 Auf/open 13 | * 14 | * 15 | * 16 | * GNU General Public License v2.0 17 | * 18 | */ 19 | 20 | #include 21 | #include 22 | #include 23 | #include 24 | #include 25 | #include 26 | #include 27 | 28 | // Uses Ticker to do a nonblocking loop every 1 second to check status 29 | #include 30 | 31 | unsigned long lastmillis; 32 | 33 | const char* sVersion = "0.8.24"; 34 | 35 | 36 | #define CLOSED LOW 37 | #define OPEN HIGH 38 | 39 | #include 40 | //Your MQTT Broker 41 | const char* mqtt_server = "hwr-pi"; 42 | 43 | // MQTT client is also host name for WIFI 44 | const char* mqtt_client_id = "garagentor"; 45 | 46 | const char* mqtt_topic_cmd = "tuer/garagentor/cmd"; 47 | const char* mqtt_topic_status = "tuer/garagentor/status"; 48 | const char* mqtt_topic_action = "tuer/garagentor/action"; 49 | const char* mqtt_topic_version = "tuer/garagentor/version"; 50 | const char* mqtt_topic_wifi = "tuer/garagentor/wifi"; 51 | 52 | 53 | //Your Wifi SSID 54 | const char* ssid = "3A-peter@demus.de"; 55 | //Your Wifi Key 56 | const char* password = "lothar2602lothar2602"; 57 | 58 | const char* update_path = "/firmware"; 59 | const char* update_username = "admin"; 60 | const char* update_password = "admin"; 61 | 62 | ESP8266WebServer httpServer(80); 63 | ESP8266HTTPUpdateServer httpUpdater; 64 | 65 | WiFiClient espClient; 66 | PubSubClient client(espClient); 67 | 68 | 69 | int gpioLed = 2; // internal blue LED 70 | 71 | int gpioO1TorOben = 5; // D1 72 | int gpioO2TorUnten = 0; // D3 73 | 74 | int gpioS4CmdZu = 14; // D5 75 | int gpioS5CmdLampeToggle = 12; // D6 76 | int gpioS2CmdAuf = 13; // D7 77 | int gpioS3CmdHalb = 15; // D8 78 | 79 | 80 | int FEHLER=0; 81 | int ZU=1; 82 | int AUF=2; 83 | int HALBAUF=3; 84 | 85 | const char* statusmeldung[] = { "Fehler", "Zu", "Auf", "Halb auf" }; 86 | 87 | int status = FEHLER; 88 | 89 | bool SendUpdate = false; 90 | 91 | Ticker ticker; 92 | 93 | 94 | 95 | 96 | //check gpio (input of hoermann uap1) 97 | void statusTor() { 98 | int myOldStatus = status; 99 | 100 | if ((digitalRead(gpioO1TorOben) == OPEN ) && (digitalRead(gpioO2TorUnten) == OPEN )) { status = HALBAUF; } 101 | if ((digitalRead(gpioO1TorOben) == CLOSED) && (digitalRead(gpioO2TorUnten) == OPEN )) { status = AUF; } 102 | if ((digitalRead(gpioO1TorOben) == OPEN ) && (digitalRead(gpioO2TorUnten) == CLOSED)) { status = ZU; } 103 | if ((digitalRead(gpioO1TorOben) == CLOSED) && (digitalRead(gpioO2TorUnten) == CLOSED)) { status = FEHLER; } 104 | 105 | if ( myOldStatus != status ) 106 | { 107 | Serial.print("dbg: Status has changed: "); 108 | Serial.println(statusmeldung[status]); 109 | } 110 | } 111 | 112 | 113 | 114 | void oeffneTor() { 115 | Serial.println("oeffneTor start"); 116 | client.publish(mqtt_topic_action, "oeffneTor start"); 117 | 118 | digitalWrite(gpioS2CmdAuf, HIGH); 119 | delay(1000); 120 | digitalWrite(gpioS2CmdAuf, LOW); 121 | 122 | Serial.println("oeffneTor fertig"); 123 | client.publish(mqtt_topic_action, "oeffneTor fertig"); 124 | } 125 | 126 | 127 | void schliesseTor() { 128 | Serial.println("schliesseTor start"); 129 | client.publish(mqtt_topic_action, "schliesseTor start"); 130 | 131 | digitalWrite(gpioS4CmdZu, HIGH); 132 | delay(1000); 133 | digitalWrite(gpioS4CmdZu, LOW); 134 | 135 | Serial.println("schliesseTor fertig"); 136 | client.publish(mqtt_topic_action, "schliesseTor fertig"); 137 | } 138 | 139 | 140 | 141 | void MqttCallback(char* topic, byte* payload, unsigned int length) { 142 | payload[length] = 0; 143 | 144 | Serial.println("mqtt call back"); 145 | Serial.println( topic ); 146 | Serial.println( (const char *) payload ); 147 | 148 | if ( strstr( (const char *)payload, "zu") != NULL) { 149 | schliesseTor(); 150 | } 151 | if ( strstr( (const char *)payload, "auf") != NULL) { 152 | oeffneTor(); 153 | } 154 | if ( strstr( (const char *)payload, "version") != NULL) { 155 | client.publish(mqtt_topic_version, sVersion); 156 | long lRssi = WiFi.RSSI(); 157 | char sBuffer[50]; 158 | sprintf(sBuffer, "RSSI = %d dBm", lRssi); 159 | client.publish(mqtt_topic_wifi, sBuffer); 160 | } 161 | if ( strstr( (const char *)payload, "status") != NULL) { 162 | statusTor(); 163 | client.publish(mqtt_topic_status, statusmeldung[status]); 164 | } 165 | } 166 | 167 | 168 | 169 | void MqttReconnect() { 170 | while (!client.connected()) { 171 | Serial.print("Connect to MQTT Broker "); Serial.println( mqtt_server ); 172 | delay(1000); 173 | if (client.connect(mqtt_client_id)) { 174 | Serial.print("connected: topic "); Serial.println( mqtt_topic_cmd ); 175 | client.subscribe(mqtt_topic_cmd); 176 | } else { 177 | Serial.print("failed: "); 178 | Serial.print(client.state()); 179 | Serial.println(" try again..."); 180 | delay(5000); 181 | } 182 | } 183 | Serial.println(" ok..."); 184 | } 185 | 186 | 187 | 188 | void CheckDoorStatus() { 189 | int oldStatus = status; 190 | statusTor(); 191 | if (oldStatus == status) 192 | { 193 | //new status is the same as the current status, return 194 | return; 195 | } 196 | else 197 | { 198 | Serial.print("Status has changed to: "); 199 | Serial.println(statusmeldung[status]); 200 | SendUpdate = true; 201 | digitalWrite(gpioLed, (status != ZU) ); // LED on bei Fehler 202 | delay(1000); 203 | digitalWrite(gpioLed, (status == ZU) ); // LED on bei Fehler 204 | } 205 | } 206 | 207 | 208 | void setup(void) { 209 | 210 | Serial.begin(115200); 211 | delay(300); 212 | Serial.println("\n\nstarte hoermann garage..."); 213 | Serial.println(); 214 | Serial.println(sVersion); 215 | Serial.println(); 216 | 217 | lastmillis = millis(); 218 | 219 | pinMode(gpioO1TorOben, INPUT_PULLUP); 220 | pinMode(gpioO2TorUnten, INPUT_PULLUP); 221 | 222 | pinMode(gpioLed, OUTPUT); 223 | 224 | pinMode(gpioS4CmdZu, OUTPUT); 225 | digitalWrite(gpioS4CmdZu, LOW); 226 | pinMode(gpioS5CmdLampeToggle, OUTPUT); 227 | digitalWrite(gpioS5CmdLampeToggle, LOW); 228 | pinMode(gpioS2CmdAuf, OUTPUT); 229 | digitalWrite(gpioS2CmdAuf, LOW); 230 | pinMode(gpioS3CmdHalb, OUTPUT); 231 | digitalWrite(gpioS3CmdHalb, LOW); 232 | 233 | 234 | 235 | // WiFi.persistent(false); 236 | WiFi.mode(WIFI_OFF); 237 | WiFi.mode(WIFI_STA); 238 | 239 | WiFi.begin(ssid, password); 240 | 241 | 242 | while(WiFi.waitForConnectResult() != WL_CONNECTED) { 243 | WiFi.begin(ssid, password); 244 | Serial.println("WiFi failed, retrying."); 245 | } 246 | 247 | Serial.println("WiFi connected"); 248 | Serial.println("IP address: "); 249 | Serial.println(WiFi.localIP()); 250 | 251 | 252 | MDNS.begin(mqtt_client_id); 253 | 254 | httpUpdater.setup(&httpServer, update_path, update_username, update_password); 255 | 256 | httpServer.begin(); 257 | 258 | MDNS.addService("http", "tcp", 80); 259 | 260 | Serial.printf("HTTPUpdateServer ready! \n Open http://%s.local%s in your browser and\n login with username '%s' and password '%s'\n", mqtt_client_id, update_path, update_username, update_password); 261 | Serial.printf("\nSketch version: %s\n", sVersion); 262 | 263 | 264 | client.setServer(mqtt_server, 1883); 265 | client.setCallback(MqttCallback); 266 | MqttReconnect(); 267 | client.publish(mqtt_topic_version, sVersion); 268 | 269 | 270 | httpServer.on("/", []() { 271 | statusTor(); 272 | 273 | if (status == ZU) { 274 | httpServer.send(200, "text/html", "garage ist aktuell zu.

öffnen

"); 275 | } 276 | if (status == AUF ) { 277 | httpServer.send(200, "text/html", "garage ist aktuell auf.

schliessen

"); 278 | } 279 | if (status == HALBAUF ) { 280 | httpServer.send(200, "text/html", "garage ist aktuell HALB auf.

schliessen

"); 281 | } 282 | if (status == FEHLER ) { 283 | httpServer.send(200, "text/html", "garage ist aktuell FEHLER.

!!!

"); 284 | } 285 | 286 | httpServer.send ( 302, "text/plain", ""); 287 | }); 288 | 289 | 290 | httpServer.on("/status", []() { 291 | long lRssi = WiFi.RSSI(); 292 | char sBuffer[100]; 293 | sprintf(sBuffer, "WiFi RSSI = %d dBm\r\nVersion = %s\r\n", lRssi, sVersion); 294 | Serial.println( sBuffer ); 295 | 296 | httpServer.send(200, "text/plain", sBuffer); 297 | 298 | httpServer.send ( 302, "text/plain", ""); 299 | }); 300 | 301 | 302 | httpServer.on("/toggle", []() { 303 | Serial.println("http toggle"); 304 | statusTor(); 305 | if (status == ZU) { 306 | oeffneTor(); 307 | } 308 | if (status == AUF) { 309 | schliesseTor (); 310 | } 311 | httpServer.send ( 302, "text/plain", ""); 312 | }); 313 | 314 | // add redirect zu '/' 315 | httpServer.on("/zu", []() { 316 | schliesseTor(); 317 | httpServer.send ( 302, "text/plain", "schliessen OK"); 318 | }); 319 | 320 | // add redirect zu '/' 321 | httpServer.on("/auf", []() { 322 | oeffneTor(); 323 | httpServer.send ( 302, "text/plain", "oeffnen OK"); 324 | }); 325 | 326 | 327 | // warte auf stabile UAP1-Ausgänge nach Strom-AUS 328 | for ( int iLoop=0; iLoop<12; iLoop++) { 329 | digitalWrite(gpioLed, HIGH ); 330 | statusTor(); 331 | delay(250); 332 | digitalWrite(gpioLed, LOW ); 333 | statusTor(); 334 | delay(250); 335 | } 336 | 337 | //Check the door status every 1 second 338 | ticker.attach(1, CheckDoorStatus); 339 | 340 | } 341 | 342 | 343 | 344 | void loop(void) { 345 | httpServer.handleClient(); 346 | 347 | if (!client.connected()) { MqttReconnect(); } 348 | client.loop(); 349 | 350 | if (millis() - lastmillis > 60000) { 351 | Serial.print("still running since "); 352 | Serial.print(millis()/60000); 353 | Serial.println(" minutes"); 354 | lastmillis = millis(); 355 | SendUpdate = true; 356 | } 357 | 358 | if (SendUpdate) 359 | { 360 | Serial.print("mqtt status update: "); 361 | Serial.println(statusmeldung[status]); 362 | client.publish(mqtt_topic_status, statusmeldung[status]); 363 | SendUpdate = false; 364 | } 365 | 366 | } 367 | 368 | 369 | -------------------------------------------------------------------------------- /openhab/garagentor.items: -------------------------------------------------------------------------------- 1 | 2 | String GaragenTorStatus "Garagentor [%s]" (gTuer) {mqtt="<[tux:tuer/garagentor/status:state:default]"} 3 | String GaragenTorVersion "Garagentor Version [%s]" (gTuer) {mqtt="<[tux:tuer/garagentor/version:state:default]"} 4 | String GaragenTorWiFi "Garagentor Wifi [%s]" (gTuer) {mqtt="<[tux:tuer/garagentor/wifi:state:default]"} 5 | String GaragenTorAktion "Garagentor-Aktion [%s]" (gTuer) {mqtt="<[tux:tuer/garagentor/action:state:default]"} 6 | 7 | String GaragenTorAktionZu 8 | String GaragenTorAktionAuf 9 | 10 | DateTime GaragentorAuf_seit "tor nicht zu seit [%1$tH:%1$tM]" 11 | 12 | -------------------------------------------------------------------------------- /openhab/garagentor.rules: -------------------------------------------------------------------------------- 1 | var Timer GaragenTorAuf_timer = null 2 | val int timeoutMinutes = 10 // choose an appropriate value 3 | 4 | rule "Send telegram hoermann Garagentor" 5 | 6 | when 7 | 8 | Item GaragenTorStatus changed 9 | 10 | then 11 | 12 | logInfo("garagentorcheck status changed", GaragenTorStatus.state.toString) 13 | 14 | 15 | if ( GaragenTorStatus.state.toString.toLowerCase != "zu" ) 16 | { 17 | sendTelegram("n3a_smarthome", "__Garage__: *Tor* \ud83c\udfe0 ist nun \ud83d\ude28 %s", 18 | GaragenTorStatus.state.toString ) 19 | 20 | GaragentorAuf_seit.postUpdate(new DateTimeType()) 21 | 22 | if (GaragenTorAuf_timer === null) { 23 | logInfo("garagentorcheck", "fire timer") 24 | logInfo("garagentorcheck", GaragentorAuf_seit.state.format("%1$tH:%1$tM") ) 25 | 26 | GaragenTorAuf_timer = createTimer(now.plusMinutes(timeoutMinutes), [| 27 | sendTelegram("n3a_smarthome", "__Garage__: *Tor* \ud83c\udfe0 ist seit %s \ud83d\ude28 %s", 28 | GaragentorAuf_seit.state.format("%1$tH:%1$tM"), GaragenTorStatus.state.toString ) 29 | GaragenTorAuf_timer.reschedule(now.plusMinutes(timeoutMinutes )) 30 | ]) 31 | 32 | } else { 33 | logInfo("garagentorcheck", "rearm timer") 34 | GaragenTorAuf_timer.reschedule(now.plusMinutes(timeoutMinutes )) 35 | } 36 | } 37 | else 38 | { 39 | sendTelegram("n3a_smarthome", "__Garage__: *Tor* \ud83c\udfe0 ist nun \ud83d\ude04 %s", 40 | GaragenTorStatus.state.toString ) 41 | GaragenTorAuf_timer?.cancel() 42 | GaragenTorAuf_timer = null 43 | } 44 | 45 | 46 | end 47 | 48 | -------------------------------------------------------------------------------- /openhab/garagentor.sitemap: -------------------------------------------------------------------------------- 1 | 2 | Text label="diverses" icon="chart" { 3 | 4 | Frame label="Türen" { 5 | Text item=GaragenTorStatus 6 | Text item=GaragenTorVersion 7 | Text item=GaragenTorWiFi 8 | 9 | Switch item=GaragenTorAktionZu visibility=[GaragenTorStatus=="Auf", GaragenTorStatus=="Halb auf"] mappings=[Auf=schliessen] 10 | Switch item=GaragenTorAktionAuf visibility=[GaragenTorStatus=="Zu"] mappings=[Zu=offnen] 11 | Text item=GaragenTorAktion 12 | Text item=GaragentorAuf_seit visibility=[GaragenTorStatus=="Auf", GaragenTorStatus=="Halb auf"] 13 | 14 | } 15 | } 16 | 17 | 18 | -------------------------------------------------------------------------------- /uap1wemos.png: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/hpd96/garagentor-esp8266/891ccfc650a8372de733884eeae00763c09db27b/uap1wemos.png --------------------------------------------------------------------------------