ITEL 6KW IP54 INVERTER + OSAKA 5KW LITHIUM BATTERY | COMPLETE BMS CONFIGURATION GUIDE
In this video, I explained the complete BMS communication and configuration process of Osaka 5KW lithium batteries with the ITEL 6KW IP54 inverter. First, I explained the battery setup, including master and slave battery configuration. The master battery dip switch number 1 should be ON, while the slave battery dip switch number 2 should be ON for proper communication. Then I explained the battery communication ports, including RS485 A, RS485 B, CAN, and RS485 ports. The master battery RS485 A connects to RS485 B for communication, and the RS485 cable is connected to the inverter for complete BMS communication. After wiring, the battery should be powered ON first, followed by the inverter. Next, I explained the inverter display settings. You need to long press the ENTER button, open the SES option, then go to setting 02 where you select lithium battery type. Once selected, BMS should appear on the display, confirming successful communication between the inverter and battery. Then, by pressing the DOWN button, you can verify battery BMS percentage. If battery percentage is visible, it means the battery and inverter BMS are properly communicating. After this, I explained protocol installation by going to Main Menu, then Parameter Settings, where you select the Pylon protocol and save it. I also explained the complete ITEL Energy mobile app setup process. First, download the ITEL Energy app, add a plant, enter client details, enable Bluetooth, and connect the inverter. Then select the proper WiFi network (2.4GHz only), enter the password, and complete cloud connection. Inside the mobile app, you can select standalone inverter or multiple inverter depending on your setup. Then choose setup by mobile. From mobile settings, enable dual output, set heavy load cut-off at 35%, and configure charging modes according to your requirement, whether solar only or solar plus utility. For recommended performance, use Utility + Battery + Solar mode (SUB mode). Battery protection settings are also important. Set utility shift at 42% to protect backup power, while keeping around 40% battery reserved for backup. Heavy load output should turn OFF at 35%, while the main output should turn OFF at 15% to prevent deep discharge and maximize battery life. This complete setup ensures proper BMS communication, battery safety, deep discharge protection, efficient load management, and long-term system performance. Thank you. #itel6kwip54 #osakabattery #bms

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