Battery Lipo Tamiya Connector 1000MAH 7.4V 2S 20-40C Turnigy Nano-Tech Softair For Sale

Battery Lipo Tamiya Connector 1000MAH 7.4V 2S 20-40C Turnigy Nano-Tech Softair


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Battery Lipo Tamiya Connector 1000MAH 7.4V 2S 20-40C Turnigy Nano-Tech Softair:
$20.89

Battery Lipo Tamiya Connector 1000MAH 7.4V 2S 20-40C Turnigy Nano-Tech SoftairThe description of this item has been automatically translated. If you have any questions, please feel free to contact us.

Capacity: 1000mAh 
Voltage: 2S1P / 2S cell / 7.4V 
Discharge: 20C Constant / 40C Burst 
Weight: 51g (including wire, plug & case) 
Dimensions: 101x20x11mm 
Balance Plug: JST-XH 
Exhaust Plug: Mini-Tamiya (Mini Molex) 
Nano-core technology in lithium-ion batteries is the application of conductive additive nanometers. 
1) The nanometer conductive additives form Ultrastrong conductive electron networks in the electrodes which can increase the electronic conductivity. 
2) These additives create a superstrong ability by imbibing into the liquid carrier to provide more ion channels. This improves the ion transmission and ion diffusion capability. 
Through improving conductivity and electronic transmission ions, the impedance is reduced and the high discharge bias rate decreases greatly. 
Advantages over traditional Lipo batteries: 
-Power Density reaches 7.5 kW / kg. 
Voltage sag during discharge - without high rate, giving you more power under load. 
-Internal impedance can reach as low as 1.2mΩ compared to that of 3mΩ of a standard Lipoly. 
-More Thermal Control, package usually claims to exceed 60degC 
Swelling -thickness during heavy loads exceeds 5%, compared to 15% of a normal Lipoly during heavy load. 
-Higher capacity during heavy discharge. More than 90% at the rate of 100% C. 
-fast Charge capable, up to 15C on some batteries. 
-Longer Life cycle, almost double that of standard LiPoly technology 
* The length of the balance charging cable may varyNano-core technology in lithium-ion batteries is the application of conductive additive nanometers.  1) The nanometer conductive additives form Ultrastrong conductive electron networks in the electrodes which can increase the electronic conductivity.  2) These additives create a superstrong ability by imbibing into the liquid carrier to provide more ion channels. This improves the ion transmission and ion diffusion capability.  Through improving conductivity and electronic transmission ions, the impedance is reduced and the high discharge bias rate decreases greatly.  Voltage sag during discharge - without high rate, giving you more power under load.  -Internal impedance can reach as low as 1.2mΩ compared to that of 3mΩ of a standard Lipoly.  Swelling -thickness during heavy loads exceeds Articolo modificato No


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