BMS Control Design for Lithium Battery Systems

System-Level Battery Management for Accuracy, Protection & Communication
In custom lithium battery systems, the BMS defines safety limits, degradation rate, and power output
A good BMS monitors battery status, manages charge/discharge, protects devices, and integrates with equipment for visibility, control, and predictability.
LARGE's BMS covers electrical safety, intelligent algorithms, communication protocols, data acquisition, low-temperature heating, and OTA, widely used in medical, robotics, and industrial applications.

Why Standard BMS Can't Meet Professional Device Needs

Only a customized BMS can fully address these challenges.
01
Inaccurate SOC Display
Unstable range, unexpected device shutdown
02
Incompatible Communication Protocols
Unable to connect with host
(SMBus / RS485 / CAN)
03
No Battery Data Access
Faults cannot be diagnosed
04
Unsuitable Protection Strategies
False triggers, missed protection, fire risk
05
No Remote Monitoring or OTA
High cost for batch maintenance
Core Lithium Battery BMS Custom Functions (Hardware & Software)

Core Lithium Battery BMS Custom
Functions (Hardware & Software)

Communication Customization

hicetea55  Communication protocols

hicetea55  Communication protection

hicetea55  SOC display

hicetea55  Current detection

hicetea55  Battery fault logging

hicetea55  Cycle life monitoring

Charge Management Customization

hicetea55  Overcharge protection 

hicetea55  Overcurrent protection 

hicetea55  Overheat warning/protection 

hicetea55  Low-temperature warning/protection 

hicetea55  Charge short-circuit warning/protection 

hicetea55  Charge balancing 

Discharge Management Customization

hicetea55  Over-discharge protection 

hicetea55  Low-voltage discharge protection 

hicetea55  No-load protection 

hicetea55  Discharge short-circuit warning/protection 

hicetea55  High-temperature discharge warning/protection 

hicetea55  Low-temperature discharge warning/protection

Other Enhanced Features

hicetea55  Low-temperature self-heating 

hicetea55  Ultra-low power (storage mode) 

hicetea55  Reverse polarity protection 

hicetea55  Full-charge storage self-discharge management 

hicetea55  Self-diagnosis 

hicetea55  Voltage difference anomaly detection 

BMS Product Architecture

System-Level Design for Multi-Scenario, Multi-Structure, Multi-Protocol Applications
LARGE's BMS architecture achieves precise adaptation to different devices in terms of structure, safety, power, and communication through modular, configurable designs.
Lithium Battery BMS By Control Type (Control Architecture)

By Control Type (Control Architecture)

Pure Hardware Protection (PCM): Provides overcharge/over-discharge/overcurrent/short-circuit/temperature protection; fast response, low cost
Pure Software Control: Supports CAN/RS485/UART communication, SOC/SOH algorithms, SOC display, and data logging
Hardware + Software (Hybrid BMS): Safety and intelligence in parallel; industrial-grade standard solution 

Lithium Battery BMS By Port Structure

By Port Structure

Common Port: Shared charge/discharge port; simple structure, cost-effective Separate Port: Independent charge/discharge ports; higher safety, ideal for high-end devices 

Lithium Battery BMS By Board Form Factor

By Board Form Factor

PCB (Rigid Board): Stable, reliable; standard industrial solution FPC (Flexible Board): Thin and flexible; suited for portable or medical devices
Rigid-Flex: Combines reliability and bendability; fits precise structures

Lithium Battery BMS By Balancing Strategy

By Balancing Strategy

Passive Balancing: Mature solution, low cost
Active Balancing: For high-end applications; improves consistency and lifespan (energy storage / AGV / power systems)

Lithium Battery BMS Functional Modules (Expandable)

Functional Modules (Expandable)

DC-DC module (powers MCU/peripherals)
Pre-charge module
Balancing module(active/passive)
Low-temperature self-heating module (activates at -20°C)
Communication modules: Bluetooth / NFC / 4G / WiFi
Data logging and recording system

Core Advantages of Customized BMS for Lithium Battery

High-Precision A
lgorithms

SOC/SOH/SOP error ≤3%, preventing unexpected shutdowns despite remaining capacity display.

Communication Compatibility

Supports CAN, RS485, UART, SMBus, Bluetooth, 4G/WiFi modules.

Multi-Layer Safety
Protection

15+ protection strategies with customizable thresholds and scenario-based modes.

Remote Operation & Maintenance

Supports OTA, cloud integration, remote diagnostics, and historical data analysis.
Lithium Battery Testing & Validation

Testing & Validation

LARGE's in-house laboratory conducts comprehensive validation for every BMS, ensuring protection strategies, algorithms, and communications perform reliably under extreme conditions:

·  Protection strategy verification (overcharge/overcurrent/short-circuit response time
·  SOC accuracy testing under high/low temperature
·  Communication consistency testing (CAN/RS485/UART)
·  Measurement accuracy testing (voltage/current/temperature)
·  Active/passive balancing efficiency testing
·  Short-circuit/overcurrent response time testing
·  Fault event logging verification

FAQ

Can the BMS adapt to my device using CAN protocol?

Supports CAN (250kñ1MB) and multi-protocol customization for seamless compatibility.

Error ≤3%, reflecting true remaining capacity and preventing unexpected shutdowns.

Supports OTA updates without battery removal, enabling convenient algorithm and feature upgrades.

A BMS (Battery Management System) monitors and protects lithium batteries, controlling charging/discharging, cell balancing, and ensuring safety.

Select a BMS based on battery voltage, capacity, current rating, number of cells, and application requirements.

CAN bus is preferred for robots due to reliable, real-time multi-device communication.

Yes, BMS can be configured with custom charging profiles to optimize performance and battery lifespan.

Check overcharge, over-discharge, overcurrent, short-circuit protection, thermal monitoring, and compliance with industry safety standards.

Connect the BMS according to the manufacturer wiring diagram, ensuring load connections pass through the BMS’s output terminals for proper monitoring.

Yes, a faulty battery can trigger PCM (Protection Circuit Module) faults, causing unexpected shutdowns or communication errors.

Request Your Custom Battery Pack Evaluation

Tell us about your device and application needs.
We'll provide a tailored evaluation covering cell design, BMS strategy, structure, thermal management and safety engineering.