Ni-MH Ni-CD Lithium-Ion Battery Module Cells Automatic Cycle Charge and Discharge Testing Equipment

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Shenzhen Hongda New Energy Co., Ltd.

VIP   Audited Supplier 2 years
Profile Certified by SGS/BV
HD-60V100A8-24CH
Life-Time Sale Service
1 Year
Finished Batteries Tester
All
NiMH Battery
Customized
AC380V
0V~60V
6V~60V
±0.05%Fs
±0.05%Fs
HONGDIAN
Wooden Case
686mm X 730mm X 1960mm
Dongguan
9030899090
Product Description
System Overview:

 

Introducing our Ni-MH Ni-Cd Lithium-Ion Battery Module Cells Automatic Cycle Charge and Discharge Testing Equipment, a versatile solution meticulously designed for the automated and comprehensive testing of battery modules comprising Nickel-Metal Hydride (Ni-MH), Nickel-Cadmium (Ni-Cd), and Lithium-Ion cells. This advanced testing equipment is a critical tool for industries engaged in the development, production, and quality assurance of rechargeable battery modules.


Tailored for battery modules containing Ni-MH, Ni-Cd, and Lithium-Ion cells, this testing equipment finds applications in industries involved in the development, manufacturing, and quality control of rechargeable batteries used in various devices, including electric vehicles, consumer electronics, and renewable energy systems.
 
Product Features

 

Multi-Chemistry Compatibility: The testing equipment is engineered to accommodate various battery chemistries, including Ni-MH, Ni-Cd, and Lithium-Ion cells. This versatility ensures a wide range of applications across different battery technologies.

Automatic Cycle Testing: The equipment streamlines the testing process with automated cycle charge and discharge functionality. This feature enables efficient and consistent evaluations of battery modules, ensuring accuracy and repeatability in results.

Modular Design: The equipment is designed with modularity in mind, allowing users to adapt and configure the testing setup based on the specific requirements of Ni-MH, Ni-Cd, or Lithium-Ion battery modules. This modular approach enhances flexibility in testing procedures.

Real-time Data Monitoring: Equipped with real-time data monitoring capabilities, the equipment provides continuous feedback on the performance of battery modules during the automated cycle charge and discharge process. This feature aids in identifying any deviations or anomalies promptly.

User-Friendly Interface: The equipment features a user-friendly interface, facilitating easy operation and navigation through testing parameters. This intuitive design ensures accessibility for technicians and operators, enhancing the overall user experience.

 
Product Parameters

 


AC Input Parameters
ItemTechnical Parameters
Wiring MethodAC220V Three-Phase Five-Wire System
Input Power SupplyAC380V
Power Factor≥99%(full load)
THDi≤5%(full load)
Maximum feedback efficiency≥92%(full load)

 

DC output parameters
ItemTechnical Parameters
Voltage rangeCharging Voltage: 0V ~ 60V Discharging Voltage: 6V ~ 60V
Voltage Accuracy±0.05%FS
Voltage Resolution1mV
Current Range0 ~ 240A
Current Accuracy±0.05%FS
Current Resolution1mA
Current Response Time10ms(10%FS ~ 90%FS)
Charge/Discharge Conversion Time20ms(-90%FS ~ 90%FS)
Channel Control ModeAll channels can be independently controlled.
Auxiliary channelsEach channel is equipped with an auxiliary temperature channel.


Step Function Features / Function Features of Operation Steps
ItemTechnical Parameters
Minimum Data Logging Time10ms
Editable Number of Steps2000
Number of Step Cycles65535
Step Cycle Nesting5
Charge and Discharge ModesIdle, Pause, Constant Current Charge (CC), Constant Voltage Charge (CV), Constant Resistance Charge (CR), Constant Current Constant Voltage Charge (CCCV), Constant Power Charge (CP), Constant Current Discharge (DC), Constant Power Discharge (DP), Constant Resistance Discharge (DR), Direct Current Internal Resistance Test (DCIR)
Termination CriteriaVoltage, Current, Capacity, Energy, Time, Power, Cycle Count, BMS Parameters, Custom Advanced Parameters (Supporting Single or Multiple Logic AND/OR Combinations)
Execution Action TypesJump, Pause, Protect, Next Step
Importing DBC FilesSupports File Editing, Saving, and Importing
Direct Current Internal Resistance Testing (DCIR)Supports DCIR (Direct Current Internal Resistance) test steps, hardware real-time calculation, and supports two types of tests: (V1-V2)/(I1-I2) and (V1-V2)/I.
Data Export MethodsExport data in Excel and CSV formats.

 


Protection Functions
ItemTechnical Parameters
AC-Side ProtectionAC Grid Voltage Over/Under Voltage Protection, Surge Protection, Anti-Islanding Protection, Over/Under Frequency Protection, Hardware Overtemperature Protection, Self-Test Protection, etc.
DC-Side ProtectionBus Over/Under Voltage Protection, Hardware Overtemperature Protection, Battery Channel Line Reverse Connection Protection, etc.
Battery-Side Comprehensive ProtectionBattery pack total voltage upper/lower limit protection, battery cell voltage upper/lower limit protection, battery temperature upper/lower limit protection, battery charge/discharge current upper limit protection, battery capacity upper/lower limit protection, BMS communication loss protection, network disconnection protection, etc.
Ingress Protection (IP) RatingIP22
Operating Temperature Range0ºC~ 45ºC
Cooling MethodForced Air Cooling
Sound Level≤75dB


Operating Guidelines:
Cycle Testing Initiation: Activate the automated cycle charge and discharge testing process using the equipment's interface. The system will perform the necessary cycles to evaluate the performance of the battery module.

Real-time Monitoring: Utilize the real-time data monitoring feature to observe and analyze the battery module's behavior during the testing process. This enables quick identification of any irregularities or performance issues.

Results Analysis: Review the comprehensive test results displayed on the equipment's interface, including charge and discharge characteristics. Analyze the data to assess the overall health and efficiency of the battery module.

Flexible Configuration: Take advantage of the modular design to configure the testing setup according to the specific requirements of Ni-MH, Ni-Cd, or Lithium-Ion battery modules, ensuring adaptability to diverse testing scenarios.


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