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12V Lithium Iron Phosphate Battery
Created with Pixso. Remote Motor Battery Pack 12V 200AH Mobile Phone Bluetooth Monitoring

Remote Motor Battery Pack 12V 200AH Mobile Phone Bluetooth Monitoring

Brand Name: EWT
Model Number: LFP 12V 200AH
MOQ: 10
Price: 400USD/pc for 10-100pcs
Delivery Time: 7-12 delivery days
Payment Terms: T/T
Detail Information
Place of Origin:
China
Certification:
MSDS
Working Cycles:
2000+
Chemistry:
Lithium Iron Phosphate
Voltage:
26650-12V
Max Discharge Voltage:
14.6V
Protection:
Built-in BMS
Chargeable:
Yes
Color:
Black And Red
Charge Current:
Black
Durability:
Durable
Battery Cell:
IFR26650
Maintenance:
Maintenance-free
Packaging Details:
carton box+paper box
Supply Ability:
100pcs for 25-30 days
Highlight:

Mobile Phone Battery Pack

,

12V 200AH Battery Pack

,

12V Battery Pack

Product Description

Remote Motor Battery Pack 12V 200AH Mobile Phone Bluetooth Monitoring

 

 

species

 

Lithium Iron Phosphate

 

Voltage

32700-12V

 

capacity

200AH

 

Batteries

IFR32700 3.2V 6Ah

 

size

521*238*218mm

 

weight

24KG

 

Maximum charging current

100A

 

Maximum discharge current

150A

 

 

Display screen

No

 

Communication support

No

 

Mobile phone and tablet users will definitely pay attention to how much power their batteries have at any time, and there are many software that can display the remaining power percentage to single digits, but to put it mildly, this is actually all blind, just a little meaning, because there is no technology that can estimate the remaining power of lithium-ion batteries so accurately, because there are too many factors affecting the use of electricity, including ambient temperature, battery charge and discharge history, discharge rate, etc., and these factors are changing at any time.

Now, researchers at the University of North Carolina have made a breakthrough by developing new technology and software that can more accurately display the remaining battery charge in real time, with an error of less than 5%. In other words, if the software shows 48% battery remaining, it will actually be between 43-53%.

To account for the effects of these factors, the researchers fed data into a computer model multiple times to adapt to the changing factors, and then the software identified the changes to more accurately estimate the percentage of electricity remaining.

The technology, which can be used not only in smartphones and tablets, but also in electric vehicles, can give drivers a sense of how long they can drive, and help developers build longer-lasting batteries and more efficient battery management technologies.