Hartley voltage controlled oscillator
View Patent ↗In a Hartley voltage controlled oscillator (VCO) circuit comprising two inductors (L d , L g ), a transistor (Q 1 ) and a varactor (C), the two inductors (L d , L g ) are arranged as a coupled inductor pair to enable positive mutual inductance (M) between them and reduce the size of the VCO.
1. A Hartley voltage controlled oscillator (VCO) circuit comprising two inductors (L d , L g ), a transistor (Q 1 ) and a varactor (C) wherein the two inductors (L d , L g ) are arranged as a coupled inductor pair operable to enable positive mutual inductance (M) between them, wherein the arrangement comprising four inductors (L d1 , L g1 , L d2 , L g2 ) arranged into two coupled inductor pairs, two varactors (C 1 , C 2 ), and two transistors (Q 1 , Q 2 ), wherein:
the first varactor (C 1 ) is arranged between first and second terminals (Q 11 , Q 12 ) of the first transistor (Q 1 );
a third terminal (Q 13 ) of the first transistor (Q 1 ) is grounded;
a first inductor (L g1 ) is arranged between the first terminal (Q 11 ) and a first bias voltage source (V DD )
a second inductor (L g1 ) is arranged between the first terminal (Q 11 ) and a second voltages source (V g );
the second varactor (C 2 ) is arranged between a first and a second terminal (Q 21 , Q 22 ) of the second transistor (Q 2 );
a third terminal (Q 23 ) of the second transistor (Q 2 ) is grounded;
a third inductor (L d2 ) arranged between the first terminal (Q 21 ) and the first bias voltage source (V DD );
a fourth inductor (L g2 ) is arranged between the first terminal (Q 21 ) of the second transistor (Q 2 ) and the second bias voltage source (V g ); and
wherein the first inductor (L d1 ) and the fourth inductor (L g2 ) are arranged as a first coupled inductor pair, and the second inductor (L g2 ) and the third inductor (L d2 ) are arranged as a second coupled inductor pair to provide positive mutual inductance (M).
2. The Hartley VCO according to claim 1 , wherein the two inductors (L d1 , L g2 ) are arranged as a stacked inductor pair.
3. The Hartley VCO according to claim 1 , wherein the two inductors (L d1 , L g2 ) are arranged as a side by side coupled inductor pair.
4. The voltage controlled oscillator according to claim 1 , wherein the voltage controlled oscillator is manufactured utilizing complementary metal oxide semiconductors (CMOS).
5. The voltage controlled oscillator according to claim 4 , wherein the voltage controlled oscillator is manufactured utilizing CMOS in silicon.
6. The voltage controlled oscillator according to claim 1 , wherein the voltage controlled oscillator is manufactured utilizing bipolar transistors.
7. The voltage controlled oscillator according to claim 6 , wherein the voltage controlled oscillator is manufactured utilizing bipolar transistors in silicon.
8. The voltage controlled oscillator according to claim 6 , wherein the voltage controlled oscillator is manufactured utilizing bipolar transistors in gallium arsenide (GaAS).
9. The voltage controlled oscillator according to claim 6 , wherein the voltage controlled oscillator is manufactured utilizing field effect transistors (FETs) in gallium arsenide (GaAS).