COINPOWER | 9
1.5 Construction and electro mechanical
processes of CoinPower Batteries
The housing of the CoinPower cells consists of two
stainless steel parts. This gives the cell very high
mechanical stability during assembly in the end-product
as well as during the product’s use by the customer.
Inside the cell the anode, cathode and separator are
wound to a coil. The connection of the electrodes to the
housing is made by welding from the outside to the lid
and cup. The innovative design of the housing, combined
with its foil gasket, provides for the most efficient use
of the space inside the cell for energy-storing material.
This is why the energy density of the CoinPower
batteries is one of the highest of any cell in this small
form factor.
In Li-Ion batteries such as in the CoinPower cells
Lithium Ions move from the anode to the cathode during
discharge and from the cathode to the anode when
charging. Aluminum and copper are used for the positive
and negative current collector. A liquid electrolyte
provides for the movement of Lithium Ions through
the separator.
Construction of VARTA CoinPower
FIG. 8
Chemical reaction in Li-Ion rechargeable battery
FIG. 9
Negative
Electrode
Copper
negative
current
collector
Positive
Electrode
Aluminum
positive
current
collector
Discharge
Charge
Li+ and Graphene
structure
NixMnyCozO2
layer structure
COINPOWER | GENERAL INFORMATION
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Страница 10: ...COINPOWER 10 2 Miscellaneous 2 1 Specification table VARTA CoinPower Batteries 11 2 2 Data Matrix Code 13 ...
Страница 15: ...COINPOWER 15 3 1 Charging 16 3 2 Discharging 18 3 3 Charging IC 19 3 Charging and Discharging ...
Страница 20: ...COINPOWER 20 4 Reliability and life expectancy ...
Страница 22: ...COINPOWER 22 5 Storage ...
Страница 40: ...COINPOWER 40 9 Application check list ...
Страница 42: ...COINPOWER 42 10 Glossary ...