Simple nicd battery charger circuit made with few easily available.
Simple nickel cadmium battery diagram.
When fully charged the positive plate is ni oh 2 and negative plate is cd oh 2 while discharging the positive plate converts into ni oh 3 and the negative plate is converted into pure cd.
So nickel cadmium batteries come in multiple of 1 2 v for eg 2 4v 3 6v 4 8v etc but it maintains constant voltage throughout their service life and about 0 8 1 v when discharged.
Today we are going to build charger circuit for charging ni cd battery the process of charging nickel cadmium batteries can be done in two ways.
This circuit uses a microcontroller and simple algorithm managing voltage regulator ics and discrete components to control charging of nickel cadmium batteries.
The chemical conversion is reverted when a discharged battery is charged again.
Previously we have built many types of charger circuits that incudes solar mobile charger float charger circuit 12v battery charger power bank circuit etc.
The chemical reaction in the nickle cadmium battery or cell is perfectly reversible.
Nickel cadmium cells have potential of 1 2 v.
We know the nickel cadmium battery is called as nicd battery or nicad battery and this types of rechargeable batteries are made with nickel oxide hydroxide and metallic cadmium as electrodes.
It provides a steady charging.
In the united states part of the battery price is a fee for its proper disposal at the end of its service lifetime.
The circuit of nicd battery charger is shown above.
Circuit diagram circuit operation.
Ni cd batteries contain between 6 for industrial batteries and 18 for commercial batteries cadmium which is a toxic heavy metal and therefore requires special care during battery disposal.
Nicd batteries provides better performance in compact size.
Nickel cadmium batteries at the 1 2h rate yield twice the energy density of lead acid batteries i e.
Nickel cadmium batteries are used in various developmental electric vehicles.
Because of which the charging current is regulating to 4 amperes so as the charging current get 4 amperes.
This circuit can also recharge common dry cell battery for fewer times at certain level.
They operate over a wide temperature range give approximately 2000 cycles and can be charged in less than 1 h.
Hence it is widely used in hand held and compact electronic devices.
Figure 1 shows a schematic diagram of a simple circuit that can be used to dissolve the whisker formation that prevents nickel cadmium batteries from receiving a charge the circuit consist of nothing more that two fully charged series connected nicad batteries b1 and b2 and a switch s1.