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Smart Electrical Products Li Ion Battery 3.7 V 1000mah 600mAh 1500mAh Fullymax 900mah 3s

Fullymax Battery Co., Ltd.
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Smart Electrical Products Li Ion Battery 3.7 V 1000mah 600mAh 1500mAh Fullymax 900mah 3s

Smart Electrical Products Lipo Battery

Standard Feature:

  • Excellent Safety Peformance

  • High Energy Density

  • Industrial Customized Batteries Will Be DesignedAccording to the Customer's Requirements AndApplication

Partial Product Models​:

Battery packCapacityVoltageSizeApplication
FBC5235621000mAh3.7V5.2*35.5*62mm

VR handheld gun

FBC602829580mAh3.7V6.2x28x29mm

Wrist Watch Li-Po Battery

FBC752830630mAh3.7V7.5x28x30mm

Beauty Equipment Li-Po Battery

FBC652657970mAh3.7V6.4x26x57mm

Handheld Imaging Li-Po Battery

FBC9031351050mAh3.7V9.0x31x35mm

Sports Camera Li-Po Battery

FBC492560900mAh3.7V4.9*25*60.5mmRemote Control Gamepad Li-Po Battery
FBC751841600mAh3.7V7.5*17.8*41.5mm
FBC6927681500mAh3.7V6.9 *26.8 *68mm
FBC8020851500mAh3.7V8.0x20x85.5mm

Electric Toothbrush Li-Po Battery


Application​:

Application: beauty equipment, smart home products (electric toothbrush, sweeping robots, vacuum cleaners, small power tools, etc.), 3C consumer electronics (VR handheld guns, remote control handles, convenient portable projectors, etc.), smart wearable products, etc.

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 )


Smart Electrical Products Li Ion Battery 3.7 V 1000mah 600mAh 1500mAh Fullymax 900mah 3sSmart Electrical Products Li Ion Battery 3.7 V 1000mah 600mAh 1500mAh Fullymax 900mah 3s

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 Syste

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

Smart Electrical Products Li Ion Battery 3.7 V 1000mah 600mAh 1500mAh Fullymax 900mah 3s


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

FAQ

Q1.What should be known about assembling battery packs?

1. Shocks, high temperature or contacts of sharp-edge components should not be allowed in battery pack assembling process.
2. Soldering directly to polymer tabs is not recommended. When you solder directly to the polymer tabs, it is necessary to ensure not to apply too high welding temperature and too long welding time, to guarantee that the temperature transmited to the cells is lower than 80℃. Temperature above 80℃ may cause damage to the polymer cells and degrade their performances.
3. In case that the battery packs are fixed by ultrasonic welding, it is necessary to ensure not to apply too much ultrasonic welding power to thepolymer cell and electronic circuits such as PCM. Otherwise, itmay cause serious damage to the cells and electronic circuit.

Q2. 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.


Q3. 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.


Q4. How to Charge li-Po battery?

1. Charging Current: Charging current should be less than the maximum charging current listed in specifications. Charging with higher current than recommended may cause serious damage to cell performance and safety features,leading to heat generation or leakage.

2. Charging Voltage: Charging should be performed at a voltage less thanthat listed in specifications (4.20V/cell). Charging at above 4.25V-the absolute maximum voltage, must be strictly prohibited.The chargers used should have this voltage limitation function. Charging with higher voltage than specified is very dangerous, which may cause serious damage to the cell performance and safety features, leading
to heat generation or leakage.

3. Charging Temperature: The cells should be charged within a range of temperatures listed in the specifications. Always let the batteries cool down to ambient temperature before charging.

4. Prohibition of Reverse Charging: Do not reverse the positive(+) and negative(-) terminals. Otherwise, the batery pack wil be reverse-charged and abnormal chemical reactions may ocur. Ecesively high current may flow during recharging, possibly leading to damage, overheating, smoke emission, bursting and/or ignition.
5. Use specific Li-Po charger only. DO NOT use a Ni-MH or Ni-Cd charger. It is your responsibility solely to ensure that the charger you purchased works properly.
6. Never charge batteries unattended. Always monitor charging process to assure batteries are being charged properly. Always charge the batteries in an isolated and safe area away from any flammable or/and combustible materials.


Q5. Why do we need formation process?

Organic solvents easily decompose on the negative electrodes during charging, leading to battery swelling, drop of cell capacity, and unsafety caused by activereaction. The purpose of the formation process is to form a solid layer called the solid electrolyte interphase (SEl), which is electrically insulating yet provides significant ionic conductivity. This interphase prevents further decomposition of the electrolyte after the second charging.



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