• 1800mA BMS-10S66A-1300W Battery Electronic Component Monitor Voltage Current Protection Plate Working
  • 1800mA BMS-10S66A-1300W Battery Electronic Component Monitor Voltage Current Protection Plate Working
1800mA BMS-10S66A-1300W Battery Electronic Component Monitor Voltage Current Protection Plate Working

1800mA BMS-10S66A-1300W Battery Electronic Component Monitor Voltage Current Protection Plate Working

Product Details:

Place of Origin: GUANGZHOU
Brand Name: TAC
Certification: UL
Model Number: 10S66A-1300W

Payment & Shipping Terms:

Minimum Order Quantity: 100 pcs
Price: usd50$
Delivery Time: 7-25 days after order confirm
Payment Terms: L/C, T/T
Supply Ability: 50000 per week
Get Best Price Contact Now

Detail Information

Protection Plates: 10S66A-1300W Design Capacity: 40000mAH
Cycle Count Capacity: 40000mAH Full Of Voltage: 3635mV
Charging End Current: 1800mA Self-discharge Rate: 1% / Day
Consumption Of Current: ≤12mA Full Charge Voltage: >34.55V
Pressure Differential Protection: ≥800mV Pressure Difference Recovery: <500mV
High Light:

BMS-10S66A-1300W Battery Electronic Component

,

1800mA Monitor Battery Electronic Component

Product Description

BMS-10S66A-1300W,monitor Voltage, current, protection plate working

 

1. Functional Features

 

High-integrated analog front-end                                                            Adjustable overcurrent protection

Isolation of the power supply circuit                                                        Has a variety of dormancy and awakening modes

Integrated serial port IC                                                                           Low power consumption

High Voltage Accuracy (≤10mV)                                                             RS485 Communication

High Current Accuracy (≤2%@FS)                                                         Adjustable Parameter Settings

4-Way Battery Temperature Detection (≤2°C)                                         Data Refresh Interval (Period) ≤ 2 Seconds

SOC Estimation Function                                                                        LED Status Indication Function

SOH Estimation Function                                                                        Charge Equalization Function

Short Circuit Protection Function                                                             SOC Accuracy (≤5% @ 50% Capacity Range Or More)

 

 

2. PCB diagram

 

1800mA BMS-10S66A-1300W Battery Electronic Component Monitor Voltage Current Protection Plate Working 0

 

 

 

3. Environmental Requirements

 

Projects Parameters Unit
Operating Temperature -20 to 70
Storage Temperature -40 to 75
Operating Humidity ≤95 (45°C±2°C) %RH
Storage Humidity ≤95 (45°C±2°C) %RH
Temperature Measurement -40 to 125
Atmospheric Pressure 70~106 kPa

 

4. Interface definition

 

 

1800mA BMS-10S66A-1300W Battery Electronic Component Monitor Voltage Current Protection Plate Working 1

 

5.Note for installing the protective plate

 

1) First connect the communication port CN1 or CN3 according to the wiring diagram of the protection board;
2) Connect the total negative electrode of the cell to the B-of the protection plate;
3) Connect the total positive electrode of the cell to the B + terminal of the protection plate;
4) Connect the cell B0.B2.B4.B6.B8.B10 to the protection board J4;
5) Connect the cell B1.B3.B5.B7.B9 to the protection board J3;
6) The negative of the load / charger is directly connected to the positive electrode of the protection plate P-;
8) The positive electrode of the load / charger is directly connected to the positive electrode P + of the protection plate;
9) Charging activation / communication activation / button activation;


6.Step of removing the protective plate:


1)Remove the communication port CN1 or CN3;
2)Remove the connection line of the P + load / charger positive electrode on the protection plate;
3) Remove the connection cable of the P-load / charger anode on the protection board;
4) Remove the cell B10.B9.B8.B7.B6.B5.B4.B3.B2.B1.B0 on the protective plate in sequence;
5) Remove the total positive B + connection line of the cell;
6) Finally, remove the connecting line of the total negative B-of the cell.

 

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