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1300mah 14.8v 4 Cell 120c Lipo Battery High Energy Density Rc Plane Battery

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1300mah 14.8v 4 Cell 120c Lipo Battery High Energy Density Rc Plane Battery

Country/Region china
City & Province huizhou guangdong
Categories Batteries
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Product Details

 

FULLYMAX 1300MAH 14.8V 4cell 120C FPV LIPO BATTERY High Energy Density RC airplane Fast Charge

 

Fullymax RC lipo battery is designed with high capacity and powerful performance with a discharge rate 120C and 1300mAh, which will provide your RC models a long cycle life and longer runtime for enjoyment. Please kindly make sure the voltage is between 3.2~4.2V before using.
Fullymax 4S 1300mAh RC lipo battery compatible with Drone, FPV, Skylark m4-fpv250, Mini Shredder 200, Indy250 plus mojo 280, Qav250, Vortex and Emax nighthawk 250, RC airplane, RC helicopter, RC boat (Only if the voltage, dimension and the plug match, then it will fit).

 

 

 

     Related Product

For other configurations (without discharge plug) with same cell model, please refer below table.

 

Battery packModel DescriptionMax cont. dischargeBurst (3Sec)DimensionsWeightWh
FB1300XT-1S3.7V 1300mAh 1cell120C200C6.8x38x64mm45.5g4.81
FB1300XT-4S-120C14.8V 1300mAh 4cell120C200C27.2x38x74.5mm168g19.24
FB1300XT-6S-120C22.2V 1300mAh 6cell120C200C39.8x38x74.5mm234g28.86


 


     Product Feature

 

-  Flat discharge curve


- Stable quality and excellent consistency.


- Low-resistance, high-reliability and light-weight properties


- Longer cycle life compared with most batteries in the market

 

 

 

 

      Application

FULLYMAX 1300MAH 14.8V 4cell 120C FPV LIPO BATTERY High Energy Density RC airplane Fast Charge fit for Drone, FPV, Skylark m4-fpv250, Mini Shredder 200, Indy250 plus mojo 280, Qav250, Vortex and Emax nighthawk 250, RC airplane, RC helicopter, RC boat(Only if the voltage, dimension and the plug match, then it will fit).

 

 

 

 

 

 

      Packaging & Shipping

Regular Safety Packing Or As Customer's Requirements.

Shipping By Sea, Air Or UPS, DHL, FedEx Express.

 

PAYMENT TERMS

 

EXPRESS OPTIONS

 

 

 

 

    Manufacturing Capability

Capacity&Leadtime

 

 

● Stacking/per day:50Kpcs

 

● Winding/per day:5,00Kpcs

 

● Regular Model:≤8 weeks

 

● Customized:16-18 weeks(The first order, if nonew facility added )

 

 

The new plant will be located in the Dongjiang Bay Industrial Park, which will be a national high-end industrial park special for new energy, new information technology and intelligent equipment fields based on the “3+7” industrial park planning and deployment proposed by Huizhou relying on the Greater Bay Area, aiming to integrate Huizhou’s “1+4” industrial parks. The area of the new plant is estimated to be 30,000 square meters. With new high-end equipment and workshop environment, the goal is to build a high-end production line dedicated to high-end customers.

 

 

 

 

     Quality Management System

Management Improvement according to international standards

 

  • Quality management systems Requirements for Aviation
  • ISO9001 Quality Management System
  • ISO14001 Environmental Management System
  • Hazardous Substance Process Management System
  • Occupational Health And Safety Management System

 

Safety and environmental Certificates

capability&service

  • Simulation tests of safety certificates proceeded
  • Service of certificates application for customers

 

Performance Test Capability

 

  • Electric Performance Test
  • Safety Performance Test
  • Mechanical Performance Test
  • Environmental Performance Test
  • Storing Performance Test

 

 

 

 

 

     FAQ

Q1. What are the diferences betwee high C-rate and low C-rate lithium?

polymer (Li-Po) batteries.
In general, the diferences lie in the materials made of the positive & negative terminals, the area density design, the electrolyte ingredient, the septum data and the density of inside pieces.

 

 

Q2. How is a Li-Po battery made?

When a Li-Po battery is made, five main aspects should be considered carefully:

(1). Battery Pack should have suficient strength, so that the polymer battery inside could be efectively protected from mechanical shocks;

(2). The polymer cell should be fixedto the battery pack onits large surface area - no cell movement in the battery packshould be allowed;

(3). No sharp edge components should be inside the packcontaining the polymer battery, and meanwhile, suficient insulation layer between wiring and the cell should be used to maintain multiple safety protection;

(4). Ultrasonic welding is recommended for polymer tab connection to obtain low-resistance, high-reliability and light-weight properties;(5). Polymer packs shouldbe designed carefully so that no shear force is applied, and also, no heat is generated even when leakage ocurs for mishaps. PCM from electrolyte leakage should be isolated as perfectly as posible, and narrow distance between bare circuit patterns should be avoided.

 

 

Q3. What gases are generated in the formation process. Are they dangerous?

The generated gases include Co, CO2,H2, CH4 and so on. They are not dangerous because of low volume.

 

 

Q4.How many cycles should I expect for a RC Li-Po battery?

In general situation of lower c-rate discharging, the lifetime of a RC Li-Po batery
should reach more than 500 cycles while its capacity remains 80%.

 

Q5. Why do Li-Po batteries bloat/swell?
The Li-Po batteries may bloat or swell due to the following reason:
1. Overcharging:Normally, the maximum charge voltage is 4.2V for RC batteries. If the batteries were overcharged beyond 4.4V, electrolytic oxidation process would happen, which generates mass gas leading to battery swelling.
2. Overheat:When discharging in high temperature or high C rate, the temperature of the inner part of the battery can be even higher, which gasify the electrolyte and results in swelling.
3. Shot-circuit.:If short circuit happened, the cell voltage would drop very fast and the electrolyte would be reactive to generate gases, leading to battery swelling.
4, Sealing:If sealed without proper processing, the battery cell would have water and air in, so that the electrolyte would be reactive to generate gases, leading to battery swelling.

 

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