Abstract:
A coil component includes a body having a first surface and a second surface opposing each other, and a first side surface and a second side surface connecting the first surface to the second surface and opposing each other, a wound coil disposed in the body, and including a wound portion wound around a winding axis perpendicular to the first side surface of the body and first and second lead-out portions spaced apart from each other on the first side surface of the body, and first and second external electrodes spaced apart from each other on the first surface of the body, extending only onto the first side surface of the body and connected to the first and second lead-out portions, respectively.
Abstract:
A coil electronic component includes a body having first and second surfaces opposing each other, and third and fourth surfaces connecting the first and second surfaces to each other and opposing each other, an insulating substrate disposed in the body and including an end portion having one side surface exposed externally of the body, first and second coil portions disposed on one surface and the other surface of the insulating substrate opposing each other, respectively, a first lead-out portion connected to the first coil portion, disposed on one surface of the insulating substrate, and exposed from the body, a second lead-out portion connected to the first coil portion, disposed on the other surface of the insulating substrate, and exposed from the body, and a direction indicator disposed on at least one of one surface and the other surface of the end portion opposing each other.
Abstract:
A coil electronic component includes a body, an insulating substrate disposed in the body, first and second coil portions respectively disposed on a first surface and a second surface of the insulating substrate opposing each other, first and second lead-out portions each disposed on the first surface of the insulating substrate and exposed to at least two external surfaces of the body, first and second connection conductors disposed on the first surface of the insulating substrate and connecting the first lead-out portion and the first coil portion and connecting the second lead-out portion and the second coil portion, respectively, wherein the first connection conductor and the second connection conductor respectively include a plurality of first connection conductors and a plurality of second connection conductors, and the plurality of first connection conductors are spaced apart from one another and the plurality of second connection conductors are spaced apart from one another.
Abstract:
A coil component includes a body, including a coil and a support member supporting the coil, and an external electrode disposed on an external surface of the body. The coil component includes a machined surface formed on a boundary surface between a portion of the support member, removed in the vicinity of a junction portion between the external electrode and the coil, and the remainder of the support member. A cavity, from which the portion of the support member has been removed, is filled with a magnetic material, or an insulating layer is disposed in the cavity.
Abstract:
A thin film type inductor includes: a body including a support member including a through hole, upper and lower coils disposed on upper and lower surfaces of the support member, respectively, and a via penetrating through the support member while connecting the upper and lower coils to each other; and external electrodes disposed on an external surface of the body. A coil pattern directly connected to the via may include an inclined surface.
Abstract:
A coil electronic component includes a support member and a plurality of insulating patterns supported by the support member. Each of the plurality of insulating patterns includes an innermost insulating pattern adjacent to a through-hole of the support member, an outermost insulating pattern on the opposing side of the insulating patterns, and a plurality of central insulating patterns between the innermost insulating pattern and the outermost insulating pattern. At least one of the plurality of central insulating patterns has its largest width at a lower surface thereof where it is in contact with the support member.
Abstract:
A coil component includes an insulating layer having a coil shape, first and second coil conductor layers on opposing surfaces of the insulating layer, each having a coil shape corresponding to that of the insulating layer, and an encapsulant encapsulating the insulating layer and the first and second coil conductor layers.
Abstract:
A coil component includes a body part including a magnetic material; a coil part disposed in the body part; and an electrode part disposed on the body part, wherein the coil part includes a supporting member, a coil conductor disposed on at least one surface of the supporting member and having a conductor pattern of a planar coil shape, and an insulator filling a space between the conductor patterns and covering an outer surface of the conductor pattern, and the conductor pattern has an aspect ratio (H1/W1), which is a ratio of a height H1 to a width W1, of 3 to 9, and a method of manufacturing the same.
Abstract:
A coil electronic component includes a body region including a first surface and a second surface opposing each other and a body region including a magnetic material, a wound coil having at least a portion embedded in the body region and disposed perpendicularly with respect to the first surface, and first and second leads connected to the wound coil and exposed through the second surface to be extended to the first surface.
Abstract:
Embodiments of the invention provide a touch sensor and a method of manufacturing the touch sensor. The touch sensor includes a base substrate, and an electrode pattern formed on the base substrate. The electrode pattern includes a first pattern layer formed on the base substrate, a second pattern layer formed on the first pattern layer, and a third pattern layer formed to enclose the second pattern layer. The third pattern layer is formed to cover a side and an exposed upper surface of the second pattern layer and is made of tin.