EmusBMS

EMUS G1 BMS – DISTRIBUTED REGULAR

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1 Top Isolator

(1) Black (Control Unit pin TX-)
(2)
Green (Control Unit pin TX+)
(3)
Black (Top cell- )
(4)
Green (UP, battery cell)
(5)
Red (Top cell+ )

2 Bottom Isolator

(1) Black (Control Unit pin RX-)
(2) Brown (Control Unit pin RX+)
(3) Black (Bottom cell- )
(4) Green ( Down, battery cell)

3 Cell Module

Cell Module, mounted on each serial cell or group of paralleled cells. Cell module type from EMUS assortiment is selected according balancing current requirement, e.g for 50-100Ah cell is appropriate to choose 0.7A balancing current cell module Small type. It is helpful to calculate by such ratio: cell capacity (Ah) = ~0.5- 1% required balancing current. This ratio depends according to cells quality (inbalance), over system thermal management capabilities.

4 Current Sensor

EMUS support three types of current sensors: busbar dual range, closed loop hall effect and third party “Isabellenhütte” IVT series current sensors.

5 Control Unit

EMUS G1 Control Unit (or simply Control Unit) is the main controller that autonomously executes all core and utility functions of battery management. 

It connects to user’s PC via USB port and allows to make BMS system configuration via EMUS Control Panel.

EMUS G1 Control Unit is also equipped with a non isolated CAN interface. This interface is multipurpose, and enables the Control Unit to:
• Communicate with other CAN equipped EMUS G1 BMS components
• Control certain third-party charging devices
• Transmit BMS activity data (either periodically or by request)
• Receive new configuration parameter values and other special messages

EMUS Distributed Regular BMS is the most simple and lowest costs system suitable for Lithium-ion chemistry battery packs in e-mobility, electric energy storages (EES) applications where modularity is not required. It is ideal for applications where are used medium to high capacity prismatic, or paralleled cylindrical or pouch cells connected in series (minimum 4 cells and maximum 80 cells).

With such BMS system the whole battery pack is controlled by Control Unit which has interface to Cell Modules that are directly mounted on Lithium chemistry battery cells. Each Cell Module measures cell’s voltage and temperature and returns this information back to Control Unit via communication wire. The Cell Modules are interconnected with a single communication wire running from module to module. The first Cell Module (at the “–” terminal of the pack) and last Cell Module (at the “+” of the pack) are connected to Control Unit via optical Top/Bottom Isolators which perform data interface adaption and ensure Control Unit circuit isolation from high voltages of the battery pack.

Including EMUS Closed Loop or Bus Bar Current sensor, or third party CAN based Isabellenhütte IVT-S series sensor this system is famous for:

  • Simple and most economic EMUS BMS for applications ranging from 9V up to ~300V
  • Cell module (balancer) on each cell
  • Wide passive balancing ranges per single cell (700mA, 1500mA, 3000mA, 6000mA), which provides efficient and fast charging process
  • External temperature sensors available for each cell‘s thermal environment monitoring

EMUS G1 Distributed Grouped system components

G1 Top/Bottom Isolator

Emus BMS Top/Bot Isolators are cell communication adapters that provide optical isolation in application where the main controller communicates directly to EMUS BMS Cell Modules.

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G1 BMS Control Unit

EMUS BMS Unified Control Unit is the the main controller in Emus battery management system, that automatically controls the battery operation process utilizing various interfaces for measurement, control, data exchange, configuration and indication.

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G1 Bus Bar Dual Range Current Sensor

EMUS BMS Bus Bar Dual Range Current Sensor is a highly accurate hall-effect current measurement device, specifically designed to be used in EMUS battery management system.

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G1 Loop Style Dual Range Current Sensor

EMUS BMS Loop style Dual Range Current Sensor is a highly accurate hall-effect current measurement device, specifically designed to be used in EMUS battery management system.

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Cell modules

G1 Cell Module – Small type

The Small model is optimized for lower capacity cells and can be used in application with space constraints or on non-prismatic cells.

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G1 Cell Module – CALB CAM 72Ah type

The CALB72 model is designed specifically for CALB CAM 72 cells (LiFePO4 chemistry).

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G1 Cell Module – A/B type

The A/B model is a standard solution, designed for convenient wiring and easy installation on most medium capacity prismatic cells.

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G1 Cell Module – 200-400Ah type

The 240Ah model is designed for easy installation on most prismatic cells and has spring terminal blocks for convenient communication wiring.

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G1 Cell Module – GBS type

The GBS model is designed specifically for GBSLFMP100AH cells.

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G1 Cell Module – 3A

The 3A model is a standard solution, designed for convenient wiring and easy installation on higher-capacity prismatic cells. This model also has a possibility to connect an additional external temperature sensor (part no. ETS02-25) for measuring the cell

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G1 Cell Module – 1.5A

The 1.5A model is a standard solution, designed for convenient wiring and easy installation on most medium capacity prismatic cells.

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Optional components

G1 Display Unit

Emus BMS Display Unit is a device dedicated to monitor battery status and other Emus BMS activity data in real time.

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G1 Smartphone Connectivity Module

Emus BMS Smartphone Connectivity Module is low energy adapter that allows to wirelessly monitor various battery parameters in real time on any Android and iOS device using Emus EVGUI app, or any PC running Windows operating system, using the usb dongle. The Smartphone Connectivity Module connects to the main controller using RS232 interface.

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G1 Remote Monitoring System unit

Emus BMS Can Cell Group Modules are cell communication adapters for interfacing the main controller and separate parts of a battery pack, that enables Emus battery management system to serve large battery packs and systems of multiple cell strings connected in parallel.

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