Low emission three-dimensional multiplexer comprising an inductor structure having multiple quadrupole or dipole inductors
An inductor structure includes a first quadrupole inductor, and a second quadrupole inductor, wherein the second quadrupole inductor overlaps the first quadrupole inductor. In certain aspects, the inductor structure may be included in a filter, which may also include one or more capacitors coupled to the inductor structure.
1 . An apparatus, comprising:
an inductor structure, wherein the inductor structure includes:
a first quadrupole inductor; and
a second quadrupole inductor, wherein:
the second quadrupole inductor overlaps the first quadrupole inductor, and
each of the first quadrupole inductor and the second quadrupole inductor respectively comprises four inductors in which current is configured to flow in a clockwise direction in two of the four inductors and current is configured to flow in a counterclockwise direction in the other two of the four inductors.
2 . The apparatus of claim 1 , wherein:
the first quadrupole inductor is formed from a first metal layer; and
the second quadrupole inductor is formed from a second metal layer above the first metal layer.
3 . The apparatus of claim 1 , wherein the inductor structure further comprises:
a third quadrupole inductor, wherein the third quadrupole inductor overlaps the second quadrupole inductor.
4 . The apparatus of claim 3 , wherein:
the first quadrupole inductor is formed from a first metal layer;
the second quadrupole inductor is formed from a second metal layer above the first metal layer; and
the third quadrupole inductor is formed from a third metal layer above the second metal layer.
5 . The apparatus of claim 3 , wherein the inductor structure further comprises:
a fourth quadrupole inductor, wherein the fourth quadrupole inductor overlaps the third quadrupole inductor.
6 . The apparatus of claim 5 , wherein:
the first quadrupole inductor is formed from a first metal layer;
the second quadrupole inductor is formed from a second metal layer above the first metal layer;
the third quadrupole inductor is formed from a third metal layer above the second metal layer; and
the fourth quadrupole inductor is formed from a fourth metal layer above the third metal layer.
7 . The apparatus of claim 1 , wherein:
the first quadrupole inductor comprises a first inductor, a second inductor, a third inductor, and a fourth inductor;
the second quadrupole inductor comprises a fifth inductor, a sixth inductor, a seventh inductor, and an eighth inductor;
the fifth inductor is coupled between the first inductor and the second inductor; and
the second inductor is coupled between the fifth inductor and the sixth inductor.
8 . The apparatus of claim 7 , wherein:
the seventh inductor is coupled between the third inductor and the fourth inductor; and
the fourth inductor is coupled between the seventh inductor and the eighth inductor.
9 . The apparatus of claim 8 , wherein:
the first inductor, the second inductor, the third inductor, and the fourth inductor are formed from a first metal layer; and
the fifth inductor, the sixth inductor, the seventh inductor, and the eighth inductor are formed from a second metal layer above the first metal layer.
10 . The apparatus of claim 8 , wherein each of the first inductor, the second inductor, the third inductor, the fourth inductor, the fifth inductor, the sixth inductor, the seventh inductor, and the eighth inductor comprises a respective spiral inductor.
11 . The apparatus of claim 7 , wherein the first inductor and the second inductor are configured to have opposite magnetic polarities, and the third inductor and the fourth inductor are configured to have opposite magnetic polarities.
12 . The apparatus of claim 11 , wherein the fifth inductor and the sixth inductor are configured to have opposite magnetic polarities, and the seventh inductor and the eighth inductor are configured to opposite magnetic polarities.
13 . The apparatus of claim 1 , further comprising a first capacitor coupled in parallel with a first portion of the inductor structure.
14 . The apparatus of claim 1 , wherein:
the first quadrupole inductor comprises a first dipole inductor and a second dipole inductor; and
the second quadrupole inductor comprises a third dipole inductor and a fourth dipole inductor.
15 . The apparatus of claim 14 , wherein:
the inductor structure includes a shunt inductor coupled between a first terminal of the inductor structure and a ground, wherein the shunt inductor includes the first dipole inductor and the third dipole inductor; and
the inductor structure includes a filter inductor coupled between the first terminal of the inductor structure and a second terminal of the inductor structure, wherein the filter inductor includes the second dipole inductor and the fourth dipole inductor.
16 . The apparatus of claim 1 , wherein the inductor structure further comprises:
a third quadrupole inductor, wherein the third quadrupole inductor overlaps the second quadrupole inductor; and
a fourth quadrupole inductor, wherein the fourth quadrupole inductor overlaps the third quadrupole inductor.
17 . The apparatus of claim 16 , wherein:
the first quadrupole inductor comprises a first dipole inductor and a second dipole inductor;
the second quadrupole inductor comprises a third dipole inductor and a fourth dipole inductor;
the third quadrupole inductor comprises a fifth dipole inductor and a sixth dipole inductor; and
the fourth quadrupole inductor comprises a seventh dipole inductor and an eighth dipole inductor.
18 . The apparatus of claim 17 , wherein the inductor structure includes a first filter inductor, a second filter inductor, and a third filter inductor, wherein:
the first filter inductor is coupled between a terminal of the inductor structure and a ground;
the first filter inductor includes the first dipole inductor, the third dipole inductor, the fifth dipole inductor, and the seventh dipole inductor;
the second filter inductor includes the second dipole inductor and the fourth dipole inductor;
the third filter inductor includes the sixth dipole inductor and the eighth dipole inductor; and
the apparatus further comprises a switch, wherein the second filter inductor, the third filter inductor, and the switch are coupled in series between the terminal of the inductor structure and the ground.
19 . The apparatus of claim 17 , wherein the inductor structure includes a first filter inductor, a second filter inductor, and a third filter inductor, wherein:
the first filter inductor is coupled between a terminal of the inductor structure and a ground;
the first filter inductor includes the first dipole inductor, the third dipole inductor, the fifth dipole inductor, and the seventh dipole inductor;
the second filter inductor includes the second dipole inductor and the fourth dipole inductor;
the third filter inductor includes the sixth dipole inductor and the eighth dipole inductor; and
the apparatus further comprises a switch, wherein the second filter inductor, the third filter inductor, and the switch are coupled in a loop.
20 . A frequency multiplexer, comprising:
a first filter coupled between a common port and a first port, wherein the first filter comprises:
an inductor structure having a first terminal and a second terminal, the inductor structure comprising a conductor path between the first terminal and the second terminal, wherein the conductor path includes:
a first quadrupole inductor; and
a second quadrupole inductor, wherein:
the second quadrupole inductor overlaps the first quadrupole inductor, and
each of the first quadrupole inductor and the second quadrupole inductor respectively includes four inductors in which current is configured to flow in a clockwise direction in two of the four inductors and current is configured to flow in a counterclockwise direction in the other two of the four inductors; and
a second filter coupled between the common port and a second port.
21 . The frequency multiplexer of claim 20 , wherein the second terminal of the inductor structure is coupled to the first port, and the first filter further comprises a capacitor coupled between the first terminal of the inductor structure and a ground.
22 . The frequency multiplexer of claim 20 , wherein the first filter further comprises a capacitor coupled in parallel with a portion of the inductor structure.
23 . The frequency multiplexer of claim 20 , further comprising a shunt inductor coupled between the common port and a ground.
24 . The frequency multiplexer of claim 20 , wherein the common port is coupled to an antenna.
25 . The frequency multiplexer of claim 20 , wherein the common port is coupled to a module.
26 . The frequency multiplexer of claim 20 , wherein:
the first quadrupole inductor is formed from a first metal layer; and
the second quadrupole inductor is formed from a second metal layer above the first metal layer.
27 . An apparatus, comprising:
an inductor structure, wherein the inductor structure includes:
a first dipole inductor; and
a second dipole inductor, wherein;
the second dipole inductor overlaps the first dipole inductor, and
each of the first dipole inductor and the second dipole inductor respectively comprises two inductors configured to have opposite magnetic field polarities due to opposite current flows in the two inductors.
28 . The apparatus of claim 27 , wherein:
the first dipole inductor is formed from a first metal layer; and
the second dipole inductor is formed from a second metal layer above the first metal layer.
29 . The apparatus of claim 27 , wherein:
the first dipole inductor comprises a first inductor and a second inductor;
the second dipole inductor comprises a third inductor and a fourth inductor; and
the third inductor is coupled between the first inductor and the second inductor.
30 . The apparatus of claim 29 , wherein:
the first inductor and the second inductor are formed from a first metal layer; and
the third inductor and the fourth inductor are formed from a second metal layer above the first metal layer.