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Multilayer ceramic capacitor
11495412 · 2022-11-08 · ·

A multilayer ceramic capacitor includes a multilayer main body including an inner layer portion including dielectric layers and internal electrode layers alternately stacked, and outer layer portions on both sides of the inner layer portion in a stacking direction, two external electrodes at two end surfaces of the multilayer body in which side gap portions are provided on both sides of the multilayer main body in the width direction, and an interposer on any of the main surfaces, the side surfaces, and the end surfaces of a capacitor main body including the multilayer and the external electrodes. The difference in location between ends at side surfaces of two adjacent internal electrode layers in the stacking direction is about 0.5 μm or less. In the two side gap portions, a portion in contact with the multilayer main body has a thickness of about 10 μm or less.

Multilayer ceramic capacitor
11495412 · 2022-11-08 · ·

A multilayer ceramic capacitor includes a multilayer main body including an inner layer portion including dielectric layers and internal electrode layers alternately stacked, and outer layer portions on both sides of the inner layer portion in a stacking direction, two external electrodes at two end surfaces of the multilayer body in which side gap portions are provided on both sides of the multilayer main body in the width direction, and an interposer on any of the main surfaces, the side surfaces, and the end surfaces of a capacitor main body including the multilayer and the external electrodes. The difference in location between ends at side surfaces of two adjacent internal electrode layers in the stacking direction is about 0.5 μm or less. In the two side gap portions, a portion in contact with the multilayer main body has a thickness of about 10 μm or less.

Ceramic electronic device
11615920 · 2023-03-28 · ·

A ceramic electronic device includes a ceramic element body, a terminal electrode, and a lead terminal. The ceramic element body has an end surface and a lateral surface. The terminal electrode is formed on from the end surface to a part of the lateral surface of the ceramic element body. The lead terminal is connected to the terminal electrode by a connection member. The lead terminal includes an electrode facing portion disposed correspondingly to an end-surface electrode of the terminal electrode, an extension unit extending downward from a lower end of the electrode facing portion, and a step surface located between the electrode facing portion and the extension unit. The electrode facing portion has a recess dented in a direction away from the terminal electrode. A center of the recess is located below a center of the electrode facing portion in a height direction.

Ceramic electronic device
11615920 · 2023-03-28 · ·

A ceramic electronic device includes a ceramic element body, a terminal electrode, and a lead terminal. The ceramic element body has an end surface and a lateral surface. The terminal electrode is formed on from the end surface to a part of the lateral surface of the ceramic element body. The lead terminal is connected to the terminal electrode by a connection member. The lead terminal includes an electrode facing portion disposed correspondingly to an end-surface electrode of the terminal electrode, an extension unit extending downward from a lower end of the electrode facing portion, and a step surface located between the electrode facing portion and the extension unit. The electrode facing portion has a recess dented in a direction away from the terminal electrode. A center of the recess is located below a center of the electrode facing portion in a height direction.

MULTILAYERED CAPACITOR AND BOARD HAVING THE SAME MOUNTED THEREON

A multilayer capacitor includes: a capacitor body including first and second internal electrodes alternately stacked with a dielectric layer interposed therebetween, and having first to six surfaces, the first internal electrode being exposed through the third, fifth, and sixth surfaces, the second internal electrode being exposed through the fourth, fifth, and sixth surfaces; first and second side portions disposed on the fifth and sixth surfaces of the capacitor body; and first and second external electrodes. The capacitor body includes upper and lower cover portions disposed on an upper surface of an uppermost internal electrode and a lower surfaces of a lowermost internal electrode, respectively, in a stacking direction of the first and second internal electrodes. The first and second side portions and the upper and lower cover portions include zirconium (Zr).

MULTILAYERED CAPACITOR AND BOARD HAVING THE SAME MOUNTED THEREON

A multilayer capacitor includes: a capacitor body including first and second internal electrodes alternately stacked with a dielectric layer interposed therebetween, and having first to six surfaces, the first internal electrode being exposed through the third, fifth, and sixth surfaces, the second internal electrode being exposed through the fourth, fifth, and sixth surfaces; first and second side portions disposed on the fifth and sixth surfaces of the capacitor body; and first and second external electrodes. The capacitor body includes upper and lower cover portions disposed on an upper surface of an uppermost internal electrode and a lower surfaces of a lowermost internal electrode, respectively, in a stacking direction of the first and second internal electrodes. The first and second side portions and the upper and lower cover portions include zirconium (Zr).

Multilayer ceramic capacitor and manufacturing method therefor
11488783 · 2022-11-01 · ·

A multilayer ceramic capacitor includes a laminated body in which dielectric layers and internal electrodes are laminated alternately. The dielectric layer includes a first phase that contains calcium strontium zirconate titanate as a main component thereof and a second phase that contains barium zirconate as a main component thereof. At a cross section of the dielectric layer, a line parallel to the direction in which the dielectric layers and the internal electrodes are laminated contacts the boundaries between the first phase and the second phase once or more on average, thereby the statistically averaged contact number N of such a line with the boundaries determined by a prescribed procedure being 1.0 or greater.

Multilayer ceramic capacitor and manufacturing method therefor
11488783 · 2022-11-01 · ·

A multilayer ceramic capacitor includes a laminated body in which dielectric layers and internal electrodes are laminated alternately. The dielectric layer includes a first phase that contains calcium strontium zirconate titanate as a main component thereof and a second phase that contains barium zirconate as a main component thereof. At a cross section of the dielectric layer, a line parallel to the direction in which the dielectric layers and the internal electrodes are laminated contacts the boundaries between the first phase and the second phase once or more on average, thereby the statistically averaged contact number N of such a line with the boundaries determined by a prescribed procedure being 1.0 or greater.

Multilayer ceramic electronic component and method of manufacturing the same

A multilayer ceramic electronic component includes a ceramic body, including dielectric layers and internal electrodes, and external electrodes disposed on external surfaces of the ceramic body and electrically connected to the internal electrodes. Each of the internal electrodes includes a nickel-cobalt (Ni—Co) alloy, and a content of the cobalt (Co) is 0.01 at % to 10 at % based on 100 at % of the nickel (Ni).

Multilayer ceramic electronic component and method of manufacturing the same

A multilayer ceramic electronic component includes a ceramic body, including dielectric layers and internal electrodes, and external electrodes disposed on external surfaces of the ceramic body and electrically connected to the internal electrodes. Each of the internal electrodes includes a nickel-cobalt (Ni—Co) alloy, and a content of the cobalt (Co) is 0.01 at % to 10 at % based on 100 at % of the nickel (Ni).