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  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage
  • Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage

Lithium Battery Protection Board , 4S LiFePO₄ 12V / 7S 8S 24V , Lead-Acid to Lithium Conversion Energy Storage

Enhanced Thermal Management,Secure Wiring Design,Aluminum Substrate, Support Series Connection

Specification:
4S LiFePO₄ continuous 60A does not support series connection
4S LiFePO₄ continuous 120A without series connection
4S LiFePO₄ continuous 50A supports series connection
4S LiFePO₄ continuous 100A supports series connection
4S LiFePO₄ continuous 100A peak 300A
4S LiFePO₄ continuous 100A supports series connection overvoltage 3.65V
4S LiFePO₄ continuous 120A supports series connection overvoltage 3.65V
4S LiFePO₄ continuous 150A supports series connection overvoltage 3.65V
4S LiFePO₄ continuous 100A peak 300A long version
4S LiFePO₄ continuous 120A peak 360A long version
8S LiFePO₄ continuous 60A peak 180A
8S LiFePO₄ continuous 80A peak 240A
8S LiFePO₄ continuous 100A peak 300A
8S LiFePO₄ continuous 150A peak 450A
7S ternary continuous 100A peak 300A
7S ternary continuous 120A peak 360A
7S ternary continuous 150A peak 450A
8S LiFePO₄ continuous 200A peak 600A

USD 11-25

output value: Monthly Output5000

contact shop

Product Description





SinoWealth Integrated Solution 

Disconnection Protection


3~10S Continuous 100-200A






High Power

 TVS High Current Surge Protection


Effectively protects precision components in 

electronic circuits, balancing current up to 250mA







Aluminum Substrate Technology

Enhanced Service Life


Every unit aluminum substrate effectively manages heat dissipation, 

reduces module operating temperature, 

improves reliability, high current resistance







Temperature Protection

Upgraded Internal and External Temperature Control


External temperature control 75°c, 

internal 95°c high-temperature shutdown,

 safety at all times











Reserved low-voltage switch function


Wire harness snap design –

 prevents connector loosening

Pre-drilled positioning holes for easy fixing







Supports Custom 4 Groups in Series


With Heating Function, Carefully Crafting Each Protection Board,




Product parameters

Li-ion Battery Protection Board

Model

Model

JBD-ZP04S014

JBD-ZP10S036

Dimensions

Dimensions

144*85*10MM

140*65*10MM

Applicable Products

Cell Voltage

Ternary or LiFePO

3.2/3.7V

Features

Package List

Good heat dissipation, high cost-performance ratio

Protection board + wiring harness + installation diagram


Discharge Current

50A ~ 120A

Discharge Overcurrent Protection Value

3–5 times the continuous current

Main Circuit On-Resistance

<10 mR

Charging Current [Common Port]

50A / 120A

Charging Current [Separate Port]

/

Charging Voltage

LiFePO pack series × 3.75V


Overcharge Protection

Balance Voltage

Detection voltage: LiFePO 3.750±0.05V

Detection voltage: LiFePO ≥3.5V

Detection delay: 1000mS

Release voltage: LiFePO <3.5V

Release voltage: LiFePO 3.550±0.05V

Balance current: 225mA

Over-discharge Protection

Discharge Overcurrent Protection

Detection voltage: LiFePO 2.2±0.1V

Detection voltage: LiFePO 100mV

Detection delay: 1000mS

Detection delay: 1000mS

Release voltage: LiFePO 2.7±0.1V

Release condition: remove load / charge activation

Short Circuit Protection

Temperature Protection

Trigger condition: external load short circuit

Discharge over-temp protection: 90℃

Detection delay: 500μS

Discharge high-temp release temperature: 65℃

Release condition: remove load / charge activation

Release condition: remove load / charge activation

Self-consumption

Operating Temperature

Operating consumption: <150μA

Temperature range: -20℃ / +70℃

Sleep / over-discharge consumption: <30μA

Wiring

Common Port Protection Board Wiring Method

Using a Single Series Connection as an Example


1. Before installing the protection board, batteries must be well-matched (voltage difference between each cell not exceeding 0.05V, internal resistance difference not exceeding 5mΩ, capacity difference less than 30mAh). If the voltage is too high, the protection board may activate protection and fail to work properly. If batteries are already fully charged, discharge 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 to the battery total negative (B- wire must be soldered short), then connect the harness; before connecting the harness, make sure to unplug it from the board. Harness: Start wiring from BC0, BC0 connects to battery total negative, second wire BC1 connects to first series battery positive, third wire BC2 connects to second series battery positive, fourth wire BC3 connects to third series battery positive, and so on. After connecting the harness, measure the voltage between each adjacent pair of wires from the start, polymer battery voltage should be less than 4V, LiFePO4 battery voltage less than 3.5V. After verification, insert the harness, then connect charger negative and load negative to C-. B- and C- wires must be soldered with thick wire. Harness connection is independent of color; only the order must be correct.


3. Finally, measure whether the total battery voltage equals the protection board output voltage; if equal, the protection board is working properly.


4. Protection boards that have been used or soldered are not eligible for return or exchange. The protection board has a one-year warranty. Due to low profit margins, repairs are free during the warranty period, but shipping costs both ways are borne by the customer.


Note: Be sure to solder the thick B- wire 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 thick, short wire.

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


Selection Guide

Item

Description

Example

Consequence of Wrong Selection

Battery Type (Ternary/LiFePO)

The protection board type must match the battery type.

Ternary: nominal voltage 3.7V (discharge cut-off 2.8V, charge cut-off 4.25V)LiFePO₄: nominal voltage 3.2V (discharge cut-off 2.2V, charge cut-off 3.75V)

Board or battery may burn; incomplete charging/discharging; damage to the protection board.

Number of Cells in Series

The number of series connections on the protection board must match the battery pack’s series count (except for auto-detect boards or models that support high-to-low modification).

A 20series protection board corresponds to a 20-series battery pack. For auto-detect boards, contact customer service for the correct wiring diagram.

The board will not function properly, and damage may occur.

Protection Board Current

For high-power applications (e.g., three-wheelers, four-wheelers), consider the controller’s current limit. A general formula: power ÷ nominal voltage × 2 (or a safety factor of 1.5–3 times the actual maximum output current).

Example: For a 13-series ternary battery pack (36V nominal) with a 350W motor:350W ÷ 36V × 2 ≈ 19.4A. It is recommended to choose a 20A or 25A board (5A margin is optimal).

Undersized current rating may burn the board; larger current rating is safer.

If the controller current limit is known, simply select a protection board rated higher than that limit.

Supplier Information

Company:eriksen

Email:halocore@ttbridge.com

Tel:13460222030

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