Replace the whole network with two components
Thevenin's theorem is the most useful result in DC circuit analysis: everything to one side of a pair of terminals can be reduced to one source and one resistor.
- Any linear two-terminal circuit is equivalent to a voltage source
V_Thin series with a resistorR_Th. V_This the open-circuit voltage at the terminals, measured with the load removed.R_This the resistance seen at those terminals with all independent sources turned off, voltage sources shorted and current sources opened.- The point is reuse: swap the load a hundred times and you only solve the network once.
When dependent sources are present
Killing the sources no longer works, because a dependent source is controlled by the circuit itself.
- Turn off the independent sources only, and leave the dependent ones alive.
- Apply a 1 V test source across the terminals, find the resulting current
io, and takeR_Th = 1/io. - Equivalently, inject a 1 A test current and read the terminal voltage.
Norton, and maximum power
Norton is the same equivalence viewed as a current source, and the two forms convert directly.
- Norton's equivalent is a current source
I_Nin parallel withR_N, whereI_Nis the short-circuit current at the terminals. R_N = R_Th, and the two forms are linked byV_Th = I_N × R_Th, which is exactly a source transformation.- Maximum power transfer: a load draws the most power when
R_L = R_Th, and that maximum isP_max = V_Th²/(4R_Th).

