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Energy Storage ES1

Designing an energy storage system (ESS) for medium utilities involves creating a solution that addresses the specific energy storage needs.

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CONTROL SYSTEM

Human-Machine Interface (HMI) and IoT (Internet of Things) control functions play crucial roles in the operation and management of energy storage systems (ESS). These functions enable users to monitor, control, and optimize the performance of the ESS in real-time, leading to increased efficiency, reliability, and responsiveness.

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LITHIUM ION BATTERY PACK

Energy storage system (ESS) with an internal battery pack involves creating a self-contained unit that can store and release energy as needed. This type of system is commonly used for various applications, including backup power, load leveling, peak shaving, and integrating renewable energy sources.

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SYSTEM DETAILS

HMI Control Processor - STM32 Cortex M4 32 Bit, DSP and FPU.

IOT Control MCU - ESP32.

USB 2.0 Output 5V 2A For Portable Device Charging.

Auto Cut ON/OFF Battery Charge Controller.

Dual NTC Thermistor Internal Battery Temperature Monitoring And System Enclosure Temperature Monitoring.

HMI Interface GUI Software Version 1.65.1

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INTERNAL BATTERY CONFIGURATION

Cell Type - 18650.

Voltage Per Cell - 3.6V.

Battery Pack Capacity- 57600 MaH,  57.6 Ah.

Nominal Voltage - 36V.

Charging Voltage - 42V.

C- Rate Discharge - 3.47C.

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SYSTEM OUTPUT TYPE

AC AND DC Output.

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CONTROL TYPE

HMI Touch Display Control.

IOT Control.

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CHARGING TYPE

AC-DC Charging.

DC-DC MPPT Charging.

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Energy Storage ES2

Designing an energy storage system (ESS) for large utilities involves creating a solution that addresses the specific energy storage needs.

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CONTROL SYSTEM

(NLP) Natural Language Processing and IoT (Internet of Things) control functions play crucial roles in the operation and management of energy storage systems (ESS). These functions enable users to monitor, control, and optimize the performance of the ESS in real-time, leading to increased efficiency, reliability, and responsiveness.

​

LITHIUM ION BATTERY PACK

Energy storage system (ESS) with an internal battery pack involves creating a self-contained unit that can store and release energy as needed. This type of system is commonly used for various applications, including backup power, load leveling, peak shaving, and integrating renewable energy sources.

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ENCLOSURE MATERIAL 

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IP65 Protection Classes  Alluminium Profile  Enclosure.

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SYSTEM DETAILS

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IOT Control MCU ESP32.

Auto Cut ON/OFF Battery Charge Controller.

Single Relay Auto Switch Power Failure Controller For Internal And External Battery Pack.

Dual Relay NTC Thermistor Sensor Controller To Control Excess Heating of Internal Battery And System Enclosure During Charging.

Digital Display.

Voice Enabled Controling.

Charging Voltage And Current Controller.

Low Battery Alarm.

SOC Display.

ECO And SMART Battery Saver Mode.

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INTERNAL BATTERY CONFIGURATION

Cell Type - 18650.

Voltage Per Cell - 3.6V.

Battery Pack Capacity- 57600 MaH,  57.6 Ah.

Nominal Voltage - 36V.

Charging Voltage - 42V.

C- Rate Discharge - 3.47C.

External Battery 48V to 72V.

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SYSTEM OUTPUT TYPE

AC AND DC Output.

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CONTROL TYPE

Voice Control.

IOT Control.

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CHARGING TYPE

AC-DC Charging.

DC-DC MPPT Charging.

 

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Energy Storage ES3

Designing an energy storage system (ESS) for Small utilities involves creating a solution that addresses the specific energy storage needs.

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CONTROL SYSTEM

Voice activated control and IoT (Internet of Things) control functions play crucial roles in the operation and management of energy storage systems (ESS). These functions enable users to monitor, control, and optimize the performance of the ESS in real-time, leading to increased efficiency, reliability, and responsiveness.

​

LITHIUM ION BATTERY PACK

Energy storage system (ESS) with an internal battery pack involves creating a self-contained unit that can store and release energy as needed. This type of system is commonly used for various applications, including backup power, load leveling, peak shaving, and integrating renewable energy sources.

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