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  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board
  • 13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board

13S 48V Lithium Battery Protection Board 18650 Ternary Common Port 10S 8S 15A Electric Vehicle Protection Board

Common port with disconnection protection, Tri-proof silicone coating for harsh environments

Specification:
8S LiFePO4 15A with balancing integrated solution
10S Ternary 15A common port with balancing integrated solution
13S Ternary 10A common port without temperature control
13S Ternary 15A common port with temperature control
13S Ternary separate port charge 3A discharge 25A
16S Ternary 20A with balancing and temperature control
16S LiFePO4 20A with balancing and temperature control
16S LiFePO4 30A with balancing and temperature control

USD 5-9

output value: Monthly Output6500

contact shop

Product Description






Integrated Solution

Simple & Reliable

 

Common Port with Disconnection Protection




Reliable Quality 

 Beyond Expectation

 

Fine Craftsmanship -  Craftsmanship Spirit

Integrated Solution -  Integrated Solution for Greater Stability

Small Size, Big Power -  New Low Internal Resistance MOSFET

Stable Heat Dissipation -  Open Design for More Stable Heat Dissipation

Overvoltage Protection -  Prevents Excessive Battery Stress

Over-Discharge Protection -  Prevents Over-Discharge

Electrostatic Protection; Dust Protection; Moisture Protection - 

 Tri-proof Silicone with Good Sealing



                                     Disconnection       Protects the 

                             Protection          Battery


                                                     Protects Battery

                                                     from Outputting








Disconnection Protection

 

If any cell in the battery pack has zero voltage, or any wire 

harness is disconnected, the battery output is protected.

 







New Low Internal Resistance MOSFET

Integrated Chip for Greater Stability

 

High-Temperature Resistant Harness Included






Small Size, Big Power

Suitable for 18650 Ternary Lithium Batteries


Can Support Low-Power Loads with Temperature Control







Components Coated with Tri-proof 

Conformal Coating for Greater Safety


Good Heat Dissipation, High Cost Performance








For Lithium Battery Endurance, 

and Above All, for Safety







Every Centimeter is Just Right


High Power, Low Internal Resistance, More Stable Current


Product parameters

Product Name: Lithium Battery Protection Board


Model: ZP13S006


Product Dimensions: 63*34*10mm


Applicable Products: Ternary Polymer


Other Features: Good Heat Dissipation, High Cost Performance


Cell Voltage: 3.6/3.7V


Package Contents: Protection Board + Harness + Installation Diagram

Discharge Current

15A / 20A

Over-Discharge Current Protection Value

3–5 times continuous current

Main Circuit On-Resistance

<20 mΩ

Charge Current (Common Port)

10A / 15A

Charge Current (Separate Port)

Charge Voltage

Number of ternary cells × 4.2V


Overcharge Protection

Balancing

Detection Voltage (Ternary)

4.25 ± 0.05V

Detection Voltage (Ternary)

≥4.18V

Detection Delay

1000 ms

Release Voltage (Ternary)

<4.18V

Release Voltage (Ternary)

4.15 ± 0.05V

Balancing Current

NA

Over-Discharge Protection

Over-Discharge Current Protection

Detection Voltage (Ternary)

2.7 ± 0.1V

Detection Voltage (Ternary)

100 mV

Detection Delay

1000 ms

Detection Delay

100 ms

Release Voltage (Ternary)

3.0 ± 0.1V

Release Condition

Disconnect load / charge activation

Short Circuit Protection

Temperature Protection (Electronic NTC)

Trigger Condition

External load short circuit

Discharge Over-Temperature Protection

NA

Detection Delay

250 μs

Discharge High-Temperature Release Temperature

NA

Release Condition

Disconnect load / charge activation

Self-Consumption

Operating Temperature

Release Condition

Disconnect load / charge activation

Temperature Range

–20°C to +70°C

Operating Current

<40 μs

Sleep / Over-Discharge Current

<30 μs


*The above data are laboratory results for reference only. For specific parameters, please refer to actual measurements.

Product Structure Diagram




                                                                                                                                          Imported Chip

                                                                                                             New MOSFET         


                                                                                                             Main Board

 




                                                                                                              Heat Sink Aluminum Plate




                                                                                                              Insulating Paper




                                                                                                              Mounting Screws

                                                                                                              Thermal Conductive Silicone

                                                                                                              Sampling Harness


Quality Control

Strict Quality Control in Production

Traceability Support

Product Quality Assurance


1. BMS undergoes multiple rigorous tests before shipment; internal software and hardware exceed industry standards.

2. For protection board production test data, contact customer service to obtain it, bringing strict quality to your eyes (requires scanning traceability code).








                      

                                  High-Precision SMT                              UV Glue Coating                                 Final Assembly









                             Full-Process Traceability                  Full Functional Testing                        FQA Quality Assurance


Wiring

Common-Port Protection Board, 5-Step Wiring Method

Using one series connection as an example, apply the same logic to other series protection board wiring methods.

 


1. Before installing the protection board, the batteries must be matched (voltage difference between each cell no more than 0.05V, internal resistance difference no more than 5mΩ, capacity difference less than 30mAh). If the voltage is too high during power-on, the protection board may activate protection, causing it to malfunction. If the batteries are already fully charged, discharge them to the required voltage before connecting the protection board. Batteries should be connected in parallel first, then in series.

 

2. Wiring sequence: First, connect the B- wire at the pad to the battery total negative (B- wire should be soldered with a short, thick wire), then connect the harness. Before soldering the harness, remove it from the board.

 

3. Harness: Start wiring from B-. B- connects to battery total negative. The harness wire next to B-, BC1, connects to the positive of the battery cell at the total negative end, i.e., the positive of cell ①. The third harness wire BC2 connects to the positive of cell ②. The fourth harness wire BC3 connects to the positive of cell ③, and so on.

 

4. After connecting the harness, measure the voltage between every two adjacent harness wires from the start. For polymer batteries, the voltage should be less than 4V; for LiFePO₄ batteries, less than 3.5V. After verification, insert the harness. Then connect the charger negative and load negative to C-. The B- wire and C- wire must be soldered with thick wire. The harness connection is independent of color; only the correct order matters.

 

5. Finally, measure whether the total battery voltage equals the protection board output voltage. If they are equal, the protection board is functioning correctly.

 

Please Note: Protection boards that have been used and soldered are not eligible for return or exchange. The protection board has a one-year warranty. Due to low profit margins, within the warranty period, repairs are free, but shipping costs both ways are borne by the customer. The thick B- wire must be soldered first before connecting other wires. If the B- wire is soldered too thin, too long, or not soldered, it may burn the board! B- must be soldered with a short, thick wire!


1. First, connect the B- wire to the battery total negative (B- wire must be soldered with a short wire). Then connect the harness (before connecting the harness, make sure to unplug it from the board).

 

2. Start wiring from BC0. BC0 connects to the battery total negative. The second harness wire BC1 connects to the positive of the first series battery. The third harness wire BC2 connects to the positive of the second series battery. The fourth harness wire BC3 connects to the positive of the third series battery, and so on.

 

3. After connecting the harness, measure the voltage between every two adjacent harness wires from the start. For polymer batteries, the voltage should be less than 4V; for LiFePO₄ batteries, less than 3.5V. After verification, insert the harness.

 

4. Then connect the charger negative and load negative to C-. The B- wire and C- wire must be soldered with thick wire. The harness connection is independent of color; only the correct order matters.

 

5. Finally, measure whether the total battery voltage equals the protection board output voltage. If they are equal, the protection board is functioning correctly.

Supplier Information

Company:eriksen

Email:halocore@ttbridge.com

Tel:13460222030

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