Digital amplitude modulation transmitter with pulse width modulating RF drive
View Patent ↗A digital amplitude modulation (AM) transmitter with pulse width modulating RF drive is presented. A plurality of RF amplifiers, each, when turned on, amplifies an applied RF drive signal by the same amount to provide a unit step RF output. An encoder supplies turn-on signals to turn on a number of the RF amplifiers wherein the number varies as a function of the value of an applied audio signal. The width of the unit step RF output is varied as a function of the number of the RF amplifiers that are turned on.
1. A digital amplitude modulation (AM) transmitter with pulse width modulating RF drive, comprising:
a plurality of RE amplifiers, each when turned on amplifying an applied RF drive signal by the same amount to provide a unit step RF output pulse of a fixed magnitude;
an encoder for supplying turn-on signals to turn on a number of said RF amplifiers wherein said number varies as a function of the value of an applied audio signal; and
pulse width driver means to vary the pulse width of each said unit step RF output pulse as a function of the number of said RF amplifiers that are turned on.
2. A transmitter as set forth in claim 1 wherein the width of each said unit step output pulse is inversely proportional to the number of said RF amplifiers that are turned on.
3. A transmitter as set forth in claim 1 wherein said means to vary include circuitry for varying the width of each said RF output pulse.
4. A transmitter as set forth in claim 3 wherein said circuitry varies the width of each said RF output pulse inversely proportional to the number of said RF amplifiers that are turned on.
5. A transmitter as set forth in claim 3 wherein said circuitry includes means for determining the number of power amplifiers to turn on.
6. A transmitter as set forth in claim 5 wherein the width of each said unit step output pulse is inversely proportional to the number of said RF amplifiers that are turned on.
7. A transmitter as set forth in claim 6 wherein said circuitry varies the width of each said unit step output pulse inversely proportional to the number of said RF amplifiers that are turned on.