Product Description
M Series Hardware Protection Board
3~24 Serial Units | 150A/200A | Ternary Lithium/Lithium Iron Phosphate
Comprehensive Upgrade · Professional High Current Resistance
Patented Waterproof, Moisture-proof, Shock-proof, and Oxidation-resistant
High Current Resistance Thick Copper PCB + Upgraded MOS Packaging
Lower Temperature Rise Advanced Thermal Design Technology
Smaller Size More Space-Saving + Easy Installation
Standard NTC Configuration
Basic protection with comprehensive functions
Image showing functions using a 150A protection board as an example
Overcharge protection Waterproof protection
Over-discharge protection Shock protection
Overcurrent protection Temperature control protection
Short circuit protection Static electricity protection
Professionally Designed For High Current
Patented Design, High-Current Thick Copper PCB Board
Possessing excellent conductivity,
easily handling high currents.
Upgraded MOS Packaging
Ultra-low internal resistance,
high-efficiency overcurrent,
lower continuous overcurrent temperature rise.
Multiple Protections, Comprehensive Coverage
Moisture-proof, Shock-resistant, and Oxidation-resistant
Patented injection molding process,
significantly enhances the protection board's performance.
Easy Load Start-up
High-power pre-charge power-on effectively avoids false triggering of protection due to high current during startup,
preventing multiple failed power-on attempts.
Upgraded Temperature Protection
Safer for Lithium Batteries
All protection boards are equipped with NTC,
for real-time temperature monitoring.
Passive Balancing Module
100mA Passive Balancing
Extends Lithium Battery Life
Compared to the conventional 30mA passive
balancing of protection boards,
balancing efficiency is improved by more than 3 times.
*The above data are laboratory room temperature test results and are for reference only.
Compact Size
Easy Installation
Ultra-small size saves space;
screw holes for easy installation.
Snap-on Plugs
Boards and communication cables use snap-on plugs,
ensuring a tight connection and preventing detachment.
Advanced Design, Reliable Performance
Low Temperature Rise
Advanced Thermal Design Technology
Low internal resistance components and advanced thermal design ensure excellent overcurrent performance.
Rapid Heat Dissipation
Multi-channel Aluminum Alloy Heat Dissipation Structure
+ High-Speed Fan
Using high thermal conductivity aluminum alloy, the wave-shaped multi-channel heat dissipation performance is outstanding.
High-speed fan significantly improves airflow efficiency, achieving highly efficient heat dissipation.
Operating Current <400uA
Low Power Consumption
Operating current <400uA, saving every penny.
*The above data are laboratory room temperature
test results and are for reference only.
Test data is based on a 150A protection board as an example.
High Precision
High-precision AFE accurately collects battery information,
with a short-circuit protection response of 10~500us.
*The above data are laboratory room temperature
test results and are for reference only.
Product Views
Exquisite Craftsmanship, High-Quality Products
Heat-Dissipating Aluminum Alloy
Silicone Output Wire
AFE
MOS
Thermal Conductive ABS Injection Coating
Heat-Dissipating Aluminum Alloy
*The above disassembly diagram uses a 150A protection board as an example.
Application
Suitable for large single-cell battery packs, cylindrical cell battery packs,
and pouch cell battery packs, meeting the needs of various application scenarios.
Aerial platforms Marine energy storage All-terrain vehicles Cleaning vehicles RV energy storage
Sightseeing vehicles Low-speed Golf carts Electric forklifts More scenarios
four-wheeled vehicles
Dimensional Drawin
The ribbon cable is 24AWG, 300~450mm, the actual length is subject to the product;
Product size tolerance range is ±0.5mm, the external dimensions of the 150A/200A products are the same.
Hole Spacing 15mm
Hole Spacing 142mm Length 164mm
Thickness 21mm Width 66mm Hole Spacing 44mm
Product parameters
Charging Voltage (V) | Ternary: N (number of cells in series) * 4.2V | |
Discharge Current (A) | 150 | 200 |
Discharge Overcurrent Protection Value (A) | 300±20 | 400±20 |
Charging Current (A) | 150 | 200 |
Charging Overcurrent Protection Value (A) | 400±20 | 400±20 |
Main Circuit On-Circuit Internal Resistance (mΩ) | <20 | |
Passive Balancing Function (100±20mA) | Short Circuit Protection |
Turn-on Voltage (V): | Short Circuit Protection Condition: |
Turn-on Voltage Difference: 2. Reaching the set balance turn-on voltage | Detection Delay (µs): |
Balancing Current (mA): | Short Circuit Protection Release: |
Single Cell Overcharge Protection | Single Cell Over-Discharge Protection |
Protection Voltage (V): | Protection Voltage (V): |
Protection Delay (S): | Protection Delay (s): |
Recovery Voltage (V): | Recovery Voltage (V): |
Overcurrent Protection for Charging/Discharging | Temperature Protection (°C) |
Protection Delay (S): | Operating Temperature (°C): |
Protection Release Condition: | Storage Temperature (°C): |
Self-Consuming Power: | |
*The above data are laboratory room temperature test results and are for reference only.
For more detailed parameters, please contact customer service to request a datasheet.
Installation and Wiring
Step 1: Soldering Ribbon Cables
Connect the first ribbon cable (black wire) to the main negative terminal of the battery, the second ribbon cable (red wire) to the positive terminal of the first battery string, the third ribbon cable (red wire) to the positive terminal of the second battery string, and so on, until all ribbon cables are connected;
Step 2: Testing Ribbon Cables
After connecting the ribbon cables, measure the voltage between adjacent ribbon cables, starting from the connector, to confirm that the wiring sequence is correct and there are no missing connections.
Step 3: Connect the output wires
Connect the B- wire of the protection board to the battery's negative terminal, then connect the sampling cable connector to the protection board. After activating the protection board, confirm that the voltages before the board (battery voltages B+, B-) and after the board (P+, P-) are consistent. (Note: The protection board activates automatically upon power-up.)
Motor , etc. Sampling cable Load
Total positive terminal B+
Charger
Last string
Third string
Battery pack
Second string
First string
Total negative terminal B-
Packaging List
①Protection Board X1
②Instruction Manual X1
③B-P-Output Wire (Free) X1
④Ribbon Cable X1
⑤NTCX1
*Note: The packaging list uses a 150A protection board as an example.
Factory Strength
Deep Technological Accumulation
We consistently adhere to technological innovation as our core driving force, possessing eight R&D centers and bringing together over 100 R&D engineers from the fields of electronics, software, communications, structure, application, quality control, process, and materials. We have successively obtained nearly 100 patented technologies, including waterproof injection molding and high thermal conductivity control boards.

Strong Production Capacity
We have a 20,000m² intelligent production base with an annual output of over 10 million protection boards of various types, and a daily capacity of up to 30,000 units, ensuring timely product supply.
| Over 500 skilled workers | 13 automated production lines |

| 20,000 square meter anti-static workshop | 10,000,000+ protection boards produced annually |

Purchase Notes
1. Q: About Warranty
A: Under normal use, the product is covered by a one-year free warranty from the date of purchase. Return shipping costs are the responsibility of the customer.
2. Q: About Product Data
A: All product data, images, and statistical text in this store are derived from internal company test measurement results or reports and are for reference only. The actual product shall prevail.










