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Integration of Turbo Energy/Deye Inverter with Trydan

Deye is a manufacturer of inverters that also sells its product under the name of numerous brands to other companies, such as Turbo Energy (the most well-known in Spain), SunSynk, or Sol-Ark. This inverter is compatible with the Trydan charging point, allowing for maximum utilization of solar generation. The connection can be made either via cable or WiFi if a SOLARMAN Stick Logger is available on the inverter. We remind you that, being an inverter that works with batteries, the best way to connect is directly to the inverter.

The connection is made via the RS485-Modbus protocol. For this, we need to locate the Cable A and B of this protocol.

Connection methods between Trydan and Turbo Energy/Deye

There are two main ways to connect the Trydan charger to a Turbo Energy/Deye inverter:

Wired Connection — Recommended

Wired connection via RS485/Modbus protocol

The wired connection using the RS485/Modbus protocol is, to date, the only way to integrate the Turbo Energy/Deye inverter with the Trydan charger, and it is the recommended option due to its stability. Below you will find all the compatible inverter models with their corresponding A/B pinout, the installation video, the physical wiring to the Trydan, and the configuration steps in the V2C Cloud app.

There are different models depending on the year of manufacture. However, they are all included in the DEYE manual.
Further down, in that manual we can see that in the RS485/CAN port we can choose 1, 2, or 7 and 8. If this port is occupied by the battery, which we have connected to the CAN, we can choose the one from the meter. In this sense, we can choose any of them.
In this case, we have connected it using the one from the meter.

In this photo, we can see an older model. We will use the BMS485 port, which works exactly the same as the RS485 port. A will be number 7 and B will be number 8. We will look in the manual for the best port to connect to.

Wired connection to the Trydan charging point

Once we arrive at the Trydan charging point, we need to connect to the RS485 input that we will find on the cover. This is the RJ45 ethernet cable that we have in the electronics itself.

The connection should be made as shown in the following image, with just two cables: 4 is the one we need to connect to B and 5 is the one we need to connect to A.

  • THE CABLE 4 WILL GO TO 8 (CABLE B) OF THE SOLAR INVERTER DEYE / TURBO ENERGY
  • THE CABLE TO BE USED WILL BE 5, WHICH WILL BE CONNECTED TO 7 OF THE INVERTER

Note: In chargers manufactured from mid-2024 onwards, you can directly connect the A and B connections to the control board even on the power board at the ports enabled for the same. The names are indicated on the board.

Once the physical connection is made, scroll down this page to the ‘Mandatory Step – Configuration in the V2C Cloud app’ to adjust the necessary parameters that ensure its proper functioning.

Connection Types

Connection SUN-12/14/16K-SG01-LP1-EU

The communication RS485 (lines A and B) is carried out through the pins 1 and 2, and 7 and 8 of the BMS 485/CAN port, where line A corresponds to pins 2 and 7, and line B to pins 1 and 8.

Connection SUN-5/6/7.6/8/10/12-SG02-LP1-EU

You can communicate via the lines A and B using the pins 1 and 2, and 7 and 8 of the BMS 485/CAN port, where line A corresponds to pins 2 and 7, and line B to pins 1 and 8.

Connection SUN-3.6/5/6-SG02-LP1-EU

You can connect the line A and B using pins 1 and 2, and 7 and 8 of the RS485 port, where line A corresponds to pins 2 and 7, and line B to pins 1 and 8.

You can connect line A and B using pins 1 and 2, and 7 and 8 of the BMS 485/CAN port, where line A corresponds to pins 2 and 7, and line B to pins 1 and 8.

Connection SUN-14/15/16/18/20k-SG05LP3-EU

Communication via the A and B lines is carried out through the pins 1 and 2, and 7 and 8 of the BMS 485/CAN port, where the line 485_A corresponds to pins 2 and 7, and the line 485_B to pins 1 and 8.

Communication via the A and B lines is carried out through the pins 1 and 2, and 7 and 8 of the Modbus port, where the SUNSPE-485_A line corresponds to the pins 2 and 7, and the SUNSPE-485_B line to the pins 1 and 8.


Connection SUN-5/6/8/10/12/15/20/25/29.9/30/35/40/50K-SG01HP3-EU-BM3/4

You can connect the lines A and B using the pins 1 and 2, and 7 and 8 of the RS485 port, where the Modbus-485_A line corresponds to pins 2 and 7, and the Modbus-485_B line to pins 1 and 8.

Connection SUN-3.6/5/6/7.6/8/10-SG05LP1-EU-AM2-P

Lines A and B are available on pins 1 and 2, and 7 and 8 of the BMS1, BMS2, and RS485 ports, and on pins 1 and 2, and 4 and 5 of the Meter port.

The BMS 485/CAN port has lines A and B on pins 1 and 2, and 7 and 8. The A line is located on pins 2 and 7, and the B line on pins 1 and 8.

Connection SUN-3.6/5/6/7.6/8/-SG05LP1-EU

Communication via the A and B lines is carried out through the pins 1 and 2, and 7 and 8 of the Modbus port, where the SUNSPE-485_A line corresponds to pins 2 and 7, and the SUNSPE-485_B line to pins 1 and 8.

Communication via the A and B lines is carried out through the pins 1 and 2, and 7 and 8 of the BMS 485/CAN port, where the line 485_A corresponds to the pins 2 and 7, and the line 485_B to the pins 1 and 8.

TURBO ENERGY HYBRID SERIES 48V 5.0 Connection

Communication via the A and B lines is carried out through the pins 1 and 2, and 7 and 8 of the BMS 485/CAN port, where the line 485_A corresponds to pins 2 and 7, and the line 485_B to pins 1 and 8.

Communication via the A and B lines is carried out through the pins 1 and 2, and 7 and 8 of the Modbus port, where the SUNSPE-485_A line corresponds to pins 2 and 7, and the SUNSPE-485_B line to pins 1 and 8.

Connection SUN-5/6/8/10/12K-SG04LP3-EU

Communication via the A and B lines is carried out through the pins 1 and 2, and 7 and 8 of the Modbus port, where the line 485_A corresponds to the pins 2 and 7, and the line 485_B to the pins 1 and 8.

WiFi Connection

You can use the Modbus TCP option if you have the dongle Solarman Stick Logger LSW-3 or LSW-5, which connects to the inverter via RS-232, providing connection to it through WiFi.

The connection to the dongle is made via local WiFi. Both devices must be connected to the same local network.

You need to enter the IP and the S/N of the Stick Logger in the dynamic power control settings in the free V2C Cloud app. To do this, scroll down this page to the ‘Mandatory Step – Configuration in the V2C Cloud app’ to find out how to proceed.

These are some model references of Deye integrated with Trydan that work correctly, along with a description of which boxes should be selected in each case to calibrate the measurements with those of the inverter.

MODEL DEYE / TURBO ENERGY TYPE Grid Power x 10 Battery Power x 10 PV Power x 10
TURBO ENERGY HYBRID SERIES 48V 5.0 MONO NO NO NO
SUN-6K-SG03LP1-EU MONO NO NO NO
SUN-3.6K-SG05LP1-EU-AM2-P MONO NO NO NO
SUN-6K-SG05LP1-EU-AM2-P MONO NO NO NO
SUN-8K-SG01LP1-EU MONO NO NO NO
SUN-6K-SG05LP1-EU MONO NO NO NO
SUN-5K-SG03LP1-EU MONO NO NO NO
SUN-8K-SG04LP3-EU TRI NO NO NO
SUN-12K-SG04LP3-EU TRI NO NO NO
SUN-15K-SG05LP3-EU-SM2 TRI NO NO NO
SUN-6K-SG04LP3-EU TRI NO NO NO
SUN-12K-SG01HP3-EU-AM2 TRI NO YES YES
SUN-15K-SG01HP3-EU-AM2 TRI NO YES YES
SUN-20K-SG01HP3-EU-AM2 TRI NO YES YES
SUN-30K-SG01HP3-EU-BM3 TRI NO YES YES
SUN-12K-SG02LP1-EU-AM3 MONO YES NO NO
SUN-10K-SG02LP1-EU-AM3-P MONO YES NO NO
SUN-14K-SG01-LP1-EU MONO YES NO NO
SUN-10K-SG02LP1-EU-AM3 MONO YES NO NO
SUN-20K-SG05LP3-EU-SM2 TRI YES NO NO

Mandatory step – Configuration in the V2C Cloud app

This step is mandatory for both types of connection, whether via Wi-Fi or wired connection.

This step is mandatory for both types of connection, whether via Wi-Fi or wired connection.

It is essential to perform the dynamic power control configuration from V2C Cloud (in mobile app or web version) to ensure the proper functioning of the system. Without this configuration, the equipment will not be able to manage the available power properly or optimize the charging.

If you are using a wired connection, refer to the penultimate image. On the other hand, if you are using the connection via dongle, consult the last image. In case of making a wired connection, indicate if the inverter has a external meter, the type of inverter (single-phase or three-phase), and select the necessary x10 multiplier boxes (grid, battery, or photovoltaic) so that the measurements of your inverter match those of the charger.

In case of making a wired connection, indicate if the inverter has a external meter, the type of inverter (single-phase or three-phase), and select the necessary x10 multiplier boxes (grid, battery, or photovoltaic) so that the measurements of your inverter match those of the charger.

In case of using a dongle, you should know that the connection is made through local WiFi. Both devices, charger and solarman,
must be connected to the same local network. To configure it in the app/web, you must enter the IP and S/N of the dongle:

– Identify the Serial Number (SN) on the StickLogger label.
– To check the assigned IP, you can do it in two ways:

1. Connect to the device’s Wi-Fi network (AP_xxxxxxxx) using the PSW key from the label. Once connected, access from your browser to 10.10.100.254 (username admin – password admin) and locate the address in the Quick Set > IP Address menu.
2. From a mobile/Tablet/PC in the home: navigate to the router’s configuration interface and, in the DHCP or Connected Devices section, locate the IP address assigned to the Solarman dongle.

Important: entering the Serial Number is essential; without it, communication between Trydan and the inverter cannot be established.

If you do not yet have an account in V2C Cloud or have questions about the app’s operation, you can consult this V2C Cloud configuration guide

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