Inverted energy storage electronic PCB solution to develop power control BMS circuit board
Inverted energy storage electronic PCB solution to develop power control BMS circuit board

Inverted energy storage electronic PCB solution to develop power control BMS circuit board

MOQ : 100 Pieces

Inverted energy storage electronic PCB solution to develop power control BMS circuit board Specification

  • Power Supply
  • DC Input
  • Features
  • Hardware/Software overcharge, overdischarge, short-circuit, overcurrent, cell balancing, temperature protection, modular design
  • Sensors Specification
  • Integrated NTC temperature sensors support
  • Resolution
  • Cell Voltage Monitoring Resolution 1mV
  • Usage
  • Lithium-ion/LiFePO4 battery packs, ESS (Energy Storage Systems)
  • Display Type
  • Status LEDs (SOC, Fault, Balancing)
  • Interface
  • CAN, RS485, UART
  • Response Time
  • <200ms Protection Response
  • IP Rating
  • IP20 (open PCB)
  • Charging Voltage
  • Up to 58.4V (For 16S LiFePO4)
  • Output
  • Discharge/Load Terminal, Communication (CAN/RS485/ UART)
  • Processor Speed
  • Up to 72MHz (ARM-based MCU)
  • Thermal Conductivity
  • High, with integrated copper pours and heat sink pads
  • Power Source
  • Battery powered
  • Input
  • Battery Pack Terminal (Up to 16 series cells)
  • Operating Temperature
  • -20C to +70C
  • Components
  • Microcontroller, MOSFETs, Balancing Resistors, Relays, Communication ICs, Connectors
  • Product Type
  • BMS Power Control PCB
  • Application
  • Energy storage, solar inverters, UPS systems, EV battery modules
  • Rated Voltage
  • 48V DC
  • Supply Voltage
  • 10-60V DC Range
  • Size
  • 150mm x 100mm
  • Dimension (L*W*H)
  • 150mm x 100mm x 1.6mm
  • Function
  • Inverted energy storage management, power control, protection, and balancing for battery packs
  • Color
  • Green
  • Weight
  • Approx. 120g
  • Capacity
  • 20A-100A Current Handling (Depends on Model)
  • Current Rating
  • Max Continuous Current 60A
  • Thickness
  • 1.6mm
  • PCB Layers
  • 4-layer FR-4 PCB
  • Protection Class
  • Short-circuit, over-voltage, under-voltage, overcurrent, temperature delatching
  • Conformal Coating
  • Optional, not included
  • Firmware Upgrade
  • Supports OTA/UART firmware update
  • ESD Protection
  • Integrated ESD diodes - 2kV rating
  • Firmware Customization
  • Supported for OEM/ODM
  • Communication Protocols
  • Supports CANbus 2.0A/B, RS485, UART, Bluetooth (optional)
  • Balancing Type
  • Passive cell balancing, <50mA per cell
  • Compatibility
  • Designed for 3.2V/3.7V series cells battery packs
  • Lifecycle
  • >50,000 cycles supported with normal use
  • RoHS Compliance
  • Yes
  • Connector Type
  • Screw terminal, JST multi-pin connectors
  • Mounting Type
  • Screw/Stand-off holes provided for secure mounting
  • Test Points
  • Integrated voltage test points for each cell group
 

Inverted energy storage electronic PCB solution to develop power control BMS circuit board Trade Information

  • Minimum Order Quantity
  • 100 Pieces
  • Supply Ability
  • 1000 Pieces Per Month
  • Delivery Time
  • 7 Days
 

About Inverted energy storage electronic PCB solution to develop power control BMS circuit board



Highlighted as a hot-selling, world-class Inverted Energy Storage Electronic PCB Solution, this prime power control BMS circuit board redefines battery management for energy storage systems. Crafted on a 4-layer FR-4 PCB, it supports advanced communications including CANbus, RS485, and UART, and is adaptable for Bluetooth integration. Unparalleled protection is delivered via integrated ESD diodes, temperature, and voltage safeguards, while balancing circuits maximize battery performance. OEM/ODM firmware customization, modular design, and RoHS compliance make it a select solution for lithium-ion/LiFePO4 packs, solar inverters, UPS, and EV modules.

Versatile Application & Outstanding Features

The Inverted energy storage electronic PCB excels in flexible installation through screw/stand-off mounting, supporting 3.2V/3.7V series cells up to 16S. Its extra features include passive cell balancing (<50mA/cell), integrated NTC sensors, modular expandability, and over-the-air firmware updates. Other highlights are built-in voltage test points, support for high thermal conductivity, and status LEDs for SOC, faults, and balancing. The board's robust protection mechanisms and high current handling (up to 100A, model-dependent) ensure reliable operation across demanding applications.


Domestic Market Coverage & Certifications

This solution caters to China's prime domestic markets at the lowest possible price, ensuring compelling valuation for dealers and distributors. Samples are available per standard policy for process validation before shipment, reinforcing buyer confidence. Certified RoHS-compliant, this BMS PCB ensures eco-friendly performance and adheres to safety and industry protocols. With prompt shipment and detailed documentation, it suits fabricators, exporters, and service providers seeking robust, scalable battery management solutions.


FAQ's of Inverted energy storage electronic PCB solution to develop power control BMS circuit board:


Q: How do I install the Inverted energy storage electronic PCB solution in my battery pack system?

A: Installation is straightforward using the provided screw or stand-off mounting holes. Simply connect using the designated screw terminal or JST connectors, ensuring correct polarity and configuration as per the user manual.

Q: What protection features does this BMS circuit board offer?

A: The board delivers robust protection-including short-circuit, over-voltage, under-voltage, overcurrent, and temperature delatching-safeguarding your battery packs in a wide operational range.

Q: When should I use the passive cell balancing feature?

A: Passive cell balancing operates automatically during charge and discharge, ensuring that all cells remain at optimal voltage levels. It is especially beneficial for maintaining long-term health and performance of battery packs.

Q: Where is this BMS solution most commonly applied?

A: It's designed for lithium-ion and LiFePO4 battery packs in energy storage systems, solar inverters, UPS units, and EV battery modules, offering unmatched flexibility for both stationary and mobile energy applications.

Q: What are the benefits of the board's communication protocols?

A: Support for CANbus, RS485, UART, and optional Bluetooth enables seamless integration with monitoring systems, allowing real-time data communication and remote diagnostics for enhanced energy management.

Q: How does the firmware customization process work for OEM/ODM clients?

A: OEM/ODM clients can specify their requirements, and custom firmware is developed and loaded onto the units. Updates can be applied via OTA or UART interfaces, streamlining large-scale deployment and upgrades.

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