Multilayer capacitor
The present invention is directed to a multilayer capacitor, a circuit board containing the multilayer capacitor, and an integrated circuit package containing the multilayer capacitor. A multilayer capacitor a body containing alternating dielectric layers and electrode layers. Each electrode layer includes a first electrode having a base, connecting, and central sections; a first connecting edge extending from a first leading edge of the base section to a first edge of the central section; and a second connecting edge extending from a second leading edge of the base section to a second edge of the central section. At least a portion of at least one of the first connecting edge or the second connecting edge of the first electrode of the electrode layers is not perpendicular to the respective first edge or second edge of the central section of the first electrode.
1 . A multilayer capacitor having a first end and a second end that is spaced apart from the first end in a longitudinal direction that is perpendicular to a lateral direction, the lateral direction and longitudinal direction each being perpendicular to a Z-direction, the multilayer capacitor comprising:
a body having a top surface and a bottom surface opposing the top surface along the Z-direction, the body containing alternating dielectric layers and electrode layers, the electrode layers including first electrode layers and second electrode layers, each electrode layer including:
a first electrode having a base section, a connecting section, and a central section,
a first connecting edge of the connecting section extending from a first leading edge of the base section to a first edge of the central section, and
a second connecting edge of the connecting section extending from a second leading edge of the base section to a second edge of the central section; and
a plurality of external terminations including a first external termination disposed on at least one of the top surface or the bottom surface and a second external termination disposed on at least one of the top surface or the bottom surface,
wherein the first external termination is electrically connected to the first electrode layers along at least one of the first leading edge or the second leading edge of the first electrode of the first electrode layers,
wherein the second external termination is electrically connected to the second electrode layers along at least one of the first leading edge or the second leading edge of the first electrode of the second electrode layers,
wherein at least a portion of at least one of the first connecting edge or the second connecting edge of the first electrode of the electrode layers is not perpendicular to the respective first edge or second edge of the central section of the first electrode, and
wherein the base section of the first electrode has a vertical edge extending in the Z-direction and a length extending in the longitudinal direction, the first external termination has a first lateral edge extending in the lateral direction, and the first lateral edge of the first external termination is within 5% of the vertical edge of the base section based on the length of the base section.
2 . The multilayer capacitor of claim 1 , wherein the first connecting edge of the connecting section forms a first angle of from greater than 90° to less than 180° with the first edge of the central section.
3 . The multilayer capacitor of claim 2 , wherein the first angle is from 100° to 160°.
4 . The multilayer capacitor of claim 1 , wherein the first connecting edge of the connecting section is a linear edge.
5 . The multilayer capacitor of claim 1 , wherein the first connecting edge of the connecting section is a curved edge.
6 . The multilayer capacitor of claim 1 , wherein the second connecting edge of the connecting section forms a second angle of from greater than 90° to less than 180° with the second edge of the central section.
7 . The multilayer capacitor of claim 6 , wherein the second angle is from 100° to 160°.
8 . The multilayer capacitor of claim 1 , wherein the second connecting edge of the connecting section is a linear edge.
9 . The multilayer capacitor of claim 1 , wherein the second connecting edge of the connecting section is a curved edge.
10 . The multilayer capacitor of claim 1 , wherein the base section includes a first vertical edge, and wherein the first vertical edge of the base section forms a second angle of from greater than 90° to less than 180° with the first connecting edge of the connecting section.
11 . The multilayer capacitor of claim 10 , wherein the second angle is from 100° to 160°.
12 . The multilayer capacitor of claim 1 , wherein the base section includes a second vertical edge, and wherein the first vertical edge of the base section forms a second angle of from greater than 90° to less than 180° with the second connecting edge of the connecting section.
13 . The multilayer capacitor of claim 12 , wherein the second angle is from 100° to 160°.
14 . The multilayer capacitor of claim 1 , wherein the body has a body length in the longitudinal direction between the first end and the second end of the multilayer capacitor and wherein the first external termination has a first lateral edge and the second external termination has a second lateral edge, wherein the second lateral edge is offset in the longitudinal direction from the first lateral edge by an external termination gap distance, wherein a ratio of the body length to the external termination gap distance is from 0.2 to 0.8.
15 . The multilayer capacitor of claim 1 , wherein the multilayer capacitor is symmetric in the lateral direction about a longitudinal centerline that extends in the longitudinal direction.
16 . The multilayer capacitor of claim 1 , wherein the multilayer capacitor is symmetric in the Z-direction about a lateral centerline that extends in the lateral direction.
17 . The multilayer capacitor of claim 1 , wherein the multilayer capacitor is configured for mounting to a mounting surface such that the electrode layers are perpendicular with the mounting surface.
18 . The multilayer capacitor of claim 1 , wherein each electrode layer further comprises a second electrode co-planar with the first electrode.
19 . The multilayer capacitor of claim 18 , wherein a central end gap distance is formed in the longitudinal direction between the central section of the first electrode and a base section of the second electrode.
20 . The multilayer capacitor of claim 19 , wherein the central end gap distance is from 2% to 40% a length of the body of the capacitor.
21 . The multilayer capacitor of claim 19 , wherein the central end gap distance is from 5% to 40% of a length of the central section of the first electrode.
22 . The multilayer capacitor of claim 18 , wherein the second electrode extends from 5% to 50% a length of the body of the capacitor.
23 . The multilayer capacitor of claim 1 , wherein the central section of the first electrode extends 40% to less than 100% a length of the body of the capacitor.
24 . The multilayer capacitor of claim 23 , wherein the central section extends 50% to less than 100% the length of the body of the capacitor.
25 . The multilayer capacitor of claim 1 , wherein the first electrode comprises copper.
26 . The multilayer capacitor of claim 1 , wherein each electrode layer further comprises a second electrode, and wherein the first electrode and the second electrode comprise copper.
27 . The multilayer capacitor of claim 1 , wherein the plurality of dielectric layers comprise an NPO material.
28 . The multilayer capacitor of claim 1 , wherein the plurality of dielectric layers comprise a titanate.
29 . The multilayer capacitor of claim 28 , wherein the plurality of dielectric layers further comprise an oxide.
30 . The multilayer capacitor of claim 1 , wherein the first connecting edge is a rounded corner and the second connecting edge is a rounded corner.
31 . The multilayer capacitor of claim 30 , wherein at least one electrode layer further comprises a second electrode co-planar with the first electrode.
32 . The multilayer capacitor of claim 31 , wherein the second electrode has at least one rounded corner.
33 . The multilayer capacitor of claim 32 , wherein the second electrode is of a generally rectangular configuration.
34 . The multilayer capacitor of claim 31 , wherein a gap is present between the first electrode and the second electrode.
35 . The multilayer capacitor of claim 34 , wherein the gap is from 2% to 40% a length of the body of the capacitor.
36 . The multilayer capacitor of claim 34 , wherein the gap is from 5% to 40% of a length of the main body of the first electrode.
37 . The multilayer capacitor of claim 31 , wherein the second electrode extends from 5% to 50% a length of the body of the capacitor.
38 . The multilayer capacitor of claim 30 , wherein the central section of the first electrode extends 40% to less than 100% a length of the body of the capacitor.
39 . The multilayer capacitor of claim 38 , wherein the central section extends 50% to less than 100% the length of the body of the capacitor.
40 . The multilayer capacitor of claim 1 , wherein the plurality of external terminations includes more than two external terminations disposed in a linear fashion.
41 . The multilayer capacitor of claim 1 , wherein the plurality of dielectric layers and the plurality of electrode layers include a first set of layers and a second set of layers, wherein the first set of layers comprises a first portion of the plurality of dielectric layers alternatingly stacked with a first portion of the plurality of electrode layers and the second set of layers comprises a second portion of the plurality of dielectric layers alternatingly stacked with a second portion of the plurality of electrode layers.
42 . The multilayer capacitor of claim 41 , wherein a spacing distance is defined between the first set of layers and the second set of layers.
43 . The multilayer capacitor of claim 1 , wherein the capacitor includes at least three sets of alternating dielectric layers and electrode layers.
44 . A circuit board, comprising:
an integrated circuit package; and
a multilayer capacitor positioned on the circuit board, the multilayer capacitor having a first end and a second end that is spaced apart from the first end in a longitudinal direction that is perpendicular to a lateral direction, the lateral direction and longitudinal direction each being perpendicular to a Z-direction, the multilayer capacitor comprising:
a body having a top surface and a bottom surface opposing the top surface along the Z-direction, the body containing alternating dielectric layers and electrode layers, the electrode layers including first electrode layers and second electrode layers, each electrode layer including:
a first electrode having a base section, a connecting section, and a central section,
a first connecting edge of the connecting section extending from a first leading edge of the base section to a first edge of the central section, and
a second connecting edge of the connecting section extending from a second leading edge of the base section to a second edge of the central section; and
a plurality of external terminations including a first external termination disposed on at least one of the top surface or the bottom surface and a second external termination disposed on at least one of the top surface or the bottom surface,
wherein the first external termination is electrically connected to the first electrode layers along at least one of the first leading edge or the second leading edge of the first electrode of the first electrode layers,
wherein the second external termination is electrically connected to the second electrode layers along at least one of the first leading edge or the second leading edge of the first electrode of the second electrode layers,
wherein at least a portion of at least one of the first connecting edge or the second connecting edge of the first electrode of the electrode layers is not perpendicular to the respective first edge or second edge of the central section of the first electrode,
wherein the multilayer capacitor is positioned between the circuit board and the integrated circuit package in a vertical direction such that the circuit board, the multilayer capacitor, and the integrated circuit package are present in a stacked arrangement, and
wherein the multilayer capacitor is directly connected to the circuit board and the integrated circuit package.
45 . A multilayer capacitor having a first end and a second end that is spaced apart from the first end in a longitudinal direction that is perpendicular to a lateral direction, the lateral direction and longitudinal direction each being perpendicular to a Z-direction, the multilayer capacitor comprising:
a body having a top surface and a bottom surface opposing the top surface along the Z-direction, the body containing alternating dielectric layers and electrode layers, the electrode layers including first electrode layers and second electrode layers, each electrode layer including:
a first electrode having a base section, a connecting section, and a central section, the base section including a vertical edge,
a first connecting edge of the connecting section extending from a first leading edge of the base section to a first edge of the central section, and
a second connecting edge of the connecting section extending from a second leading edge of the base section to a second edge of the central section, and
wherein each of the first leading edge and the second leading edge intersect the vertical edge such that the first leading edge, the second leading edge, and the vertical edge define the boundaries of the base section; and
a plurality of external terminations including a first external termination disposed on at least one of the top surface or the bottom surface and a second external termination disposed on at least one of the top surface or the bottom surface,
wherein the first external termination is electrically connected to the first electrode layers along at least one of the first leading edge or the second leading edge of the first electrode of the first electrode layers,
wherein the second external termination is electrically connected to the second electrode layers along at least one of the first leading edge or the second leading edge of the first electrode of the second electrode layers, and
wherein the first connecting edge is not perpendicular to the first edge of the central section of the first electrode and the second connecting edge is not perpendicular to the second edge of the central section of the first electrode.
46 . The multilayer capacitor of claim 45 , wherein the first electrode of each electrode layer of the first and second electrode layers is a Y-shaped electrode.
47 . The multilayer capacitor of claim 45 , wherein the base section is a first base section, the connecting section is a first connecting section, and the central section is a first central section, wherein the first electrode further comprises a second base section, a second connecting section, and a second central section, and wherein:
a first connecting edge of the second connecting section extends from a first leading edge of the second base section to a first edge of the second central section,
a second connecting edge of the second connecting section extends from a second leading edge of the second base section to a second edge of the second central section, and
each of the first leading edge and the second leading edge of the second base section intersect a vertical edge of the second base section such that the first leading edge, the second leading edge, and the vertical edge of the second base section define the boundaries of the second base section.
48 . The multilayer capacitor of claim 47 , wherein the vertical edge of the second base section extends from the first edge and the second edge of the first central section.