Changes for page 2. Installation and connection
Last modified by Admin on 2025/07/15 17:33
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... ... @@ -22,7 +22,7 @@ 22 22 |**3**|**+5V**|Supply voltage for BMS Logic 23 23 |**4**|**GND**|Ground 24 24 25 -== P12 – header for current sensor == 25 +== P12 – header for current sensor == 26 26 27 27 [[image:1731516685999-633.png||data-xwiki-image-style-alignment="center" height="98" width="90"]] 28 28 ... ... @@ -32,170 +32,6 @@ 32 32 |**3**|**Vcs**|ADC input (current sensor output) 33 33 |**4**|**Vref**|ADC input (current sensor reference signal) 34 34 35 - ==P13 – header for humidity sensor==35 +P13 – header for humidity sensor 36 36 37 -[[image:1731516942455-641.png||data-xwiki-image-style-alignment="center"]] 38 - 39 -|**Pin**|**Name**|**Description** 40 -|**1**|**+5V**|Supply voltage 5 V, max 50 mA 41 -|**2**|**GND**|Ground 42 -|**3**|**Vhs**|ADC input (humidity sensor output) 43 -|**4**|**Vts**|ADC input (temperature sensor output) 44 - 45 -P8 – header of relay 1 46 - 47 -[[image:1731517023208-641.png]] 48 - 49 -By default, relay 1 is used to control the discharging contactor. 50 - 51 -|**Pin**|**Name**|**Description** 52 -|**1**|**V+**|Switching voltage (up to 55V, max 2A) 53 -|**2**|**NO**|Normally open contact 54 - 55 -P9 – header of relay 2 56 - 57 -[[image:1731517025702-799.png]] 58 - 59 -By default, relay 2 is used to output the “Allow charging” signal. 60 - 61 -|**Pin**|**Name**|**Description** 62 -|**1**|**V+**|Switching voltage (up to 55V, max 2A) 63 -|**2**|**NO**|Normally open contact 64 - 65 -P6 – header of relay 3 66 - 67 -[[image:1731517025702-799.png]] 68 - 69 -By default, relay 3 is used to control the charging contactor. 70 - 71 -|**Pin**|**Name**|**Description** 72 -|**1**|**V+**|Switching voltage (up to 55V, max 8A) 73 -|**2**|**NO**|Normally open contact 74 - 75 -P7 – header of relay 4 76 - 77 -[[image:1731517025702-799.png]] 78 - 79 -By default, relay 4 is used to control the heater. 80 - 81 -|**Pin**|**Name**|**Description** 82 -|**1**|**V+**|Switching voltage (up to 55V, max 8A) 83 -|**2**|**NO**|Normally open contact 84 - 85 -P14 – header for CAN and RS-485 interfaces 86 - 87 -[[image:1731517180930-597.png]] 88 - 89 -|**Pin**|**Name**|**Description** 90 -|**1**|**EXT_RS485_A**|RS-485 line A for communication with external equipment 91 -|**2**|**CAN_H**|CAN H line for communication with external equipment 92 -|**3**|**+5V_CAN**|Supply voltage 5V for external devices, max 200 mA 93 -|**4**|**EXT_RS485_B**|RS-485 line B for communication with external equipment 94 -|**5**|**CAN_L**|CAN L line for communication with external equipment 95 -|**6**|**GND_CAN**|Ground 96 - 97 -P21 – CAN termination resistor jumper 98 - 99 -[[image:1731517188900-976.png]] 100 - 101 -To connect the termination resistor between the lines **CAN_H** and **CAN_L**, install a jumper, according to the P21 pinout: 102 - 103 -|**Pin**|**Name**|**Description** 104 -|**1-2**|**120 Ohm**|Termination resistor 120 Ohm is connected 105 -|**2-3**|**-**|Termination resistor 120 Ohm is not connected 106 - 107 -P22 - RS-485 termination resistor jumper 108 - 109 -[[image:1731517195672-298.png]] 110 - 111 -To connect the termination resistor between the **EXT_RS485_A** and **EXT_RS485_B** lines, install a jumper according to the P22 pinout: 112 - 113 -|**Pin**|**Name**|**Description** 114 -|**1-2**|**120 Ohm**|Terminating resistor 120 Ohm is connected 115 -|**2-3**|**-**|Terminating resistor 120 Ohm is not connected 116 - 117 -P11 – header for discrete inputs/outputs 118 - 119 - 120 -|**Pin**|**Name**|**Description** 121 -|**16**|**IN_1**|Discrete input #1 “dry contact” (+5V) 122 -|**8**|**GND_1**|Discrete input #1 “dry contact” (ground) 123 -|**15**|**IN_2**|Discrete input #2 “dry contact” (+5V) 124 -|**7**|**GND_2**|Discrete input #2 “dry contact” (ground) 125 -|**14**|**IN_3**|Discrete input #3 “dry contact” (+5V) 126 -|**6**|**GND_3**|Discrete input #3 “dry contact” (ground) 127 -|**13**|**IN_4**|Discrete input #4 “dry contact” (+5V) 128 -|**5**|**GND_4**|Discrete input #4 “dry contact” (ground) 129 -|**12**|**OUT_4**|Discrete output #4 (+5V, 20mA) 130 -|**4**|**GND_OUT_4**|Discrete output #4 (ground) 131 -|**11**|**OUT_3**|Discrete output #3 (+5V, 20mA) 132 -|**3**|**GND_OUT_3**|Discrete output #3 (ground) 133 -|**10**|**OUT_2**|Discrete output #2 (+5V, 20mA) 134 -|**2**|**GND_OUT_2**|Discrete output #2 (ground) 135 -|**9**|**OUT_1**|Discrete output #1 (+5V, 20mA) 136 -|**1**|**GND_OUT_1**|Discrete output #1 (ground) 137 - 138 -1. 139 -11. 140 -111. DS1 – power indicator 141 - 142 -|**State**|**Description** 143 -|**Lights red**|The device is powered 144 -|**Off**|The device is not powered 145 - 146 -1. 147 -11. 148 -111. DS2 – operation indicator 149 - 150 -|**State**|**Description** 151 -|**Blinking green**|The BMS firmware is running 152 -|**Off**|The BMS firmware is not running 153 - 154 -1. 155 -11. 156 -111. DS3 – communication indicator 157 - 158 -|**State**|**Description** 159 -|**Blinking yellow (2Hz)**|Initializing communication with BMS Logic boards 160 -|**Blinking yellow (25Hz)**|Communication with BMS Logic is established 161 - 162 -1. 163 -11. 164 -111. DS4 – error indicator 165 - 166 -|**State**|**Description** 167 -|**Blinking red**|Errors in communication with BMS Logic 168 - 169 -1. 170 -11. 171 -111. DS7 – relay 1 indicator 172 - 173 -|S**tate**|**Description** 174 -|**Lights green**|Relay #1 is closed 175 -|**Off**|Relay #1 is opened 176 - 177 -1. 178 -11. 179 -111. DS8 – relay 2 indicator 180 - 181 -|**State**|**Description** 182 -|**Lights green**|Relay #2 is closed 183 -|**Off**|Relay #2 is opened 184 - 185 -1. 186 -11. 187 -111. DS5 – relay 3 indicator 188 - 189 -|**State**|**Description** 190 -|**Lights green**|Relay #3 is closed 191 -|**Off**|Relay #3 is opened 192 - 193 -1. 194 -11. 195 -111. DS6 – relay 4 indicator 196 - 197 -|**State**|**Description** 198 -|**Lights green**|Relay #4 is closed 199 -|**Off**|Relay #4 is opened 200 - 201 201
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