US 11,749,462 B2
Multilayer ceramic electronic component and board having the same mounted thereon
Heung Kil Park, Suwon-si (KR); Gu Won Ji, Suwon-si (KR); and Sang Soo Park, Suwon-si (KR)
Assigned to SAMSUNG ELECTRO-MECHANICS CO., LTD., Suwon-si (KR)
Filed by SAMSUNG ELECTRO-MECHANICS CO., LTD., Suwon-si (KR)
Filed on Nov. 30, 2021, as Appl. No. 17/537,838.
Claims priority of application No. 10-2021-0001111 (KR), filed on Jan. 5, 2021.
Prior Publication US 2022/0216010 A1, Jul. 7, 2022
Int. Cl. H01G 4/30 (2006.01); H01G 4/012 (2006.01); H01G 2/06 (2006.01); H01G 4/12 (2006.01); H01G 4/224 (2006.01); H01G 4/232 (2006.01)
CPC H01G 4/30 (2013.01) [H01G 2/065 (2013.01); H01G 4/012 (2013.01); H01G 4/12 (2013.01); H01G 4/224 (2013.01); H01G 4/232 (2013.01)] 13 Claims
OG exemplary drawing
 
1. A multilayer ceramic electronic component, comprising:
a multilayer capacitor including a capacitor body including a plurality of dielectric layers and first and second internal electrodes alternately disposed in a first direction towards a mounting surface with one of plurality of the dielectric layers interposed therebetween, and first and second external electrodes disposed on both side surfaces of the capacitor body, respectively;
first and second metal frames including first and second terminal portions disposed on a mounting surface side of the capacitor body, first and second horizontal portions disposed to oppose the first and second terminal portions with the capacitor body interposed therebetween, respectively, and connected to the first and second external electrodes on a surface opposing the mounting surface of the capacitor body, respectively, and first and second vertical portions connecting the first and second terminal portions to the first and second horizontal portions, respectively; and
an exterior insulating portion disposed to surround the multilayer capacitor and the first and second horizontal portions of the first and second metal frames,
wherein a shortest distance from an upper end of the exterior insulating portion to the first and second external electrodes is defined as G1, a shortest distance from a lower end of the exterior insulating portion to the first and second external electrodes is defined as G2, a maximum distance from an upper end of the first and second external electrodes to a lower end in the first direction is defined as T, and G1, G2, and T satisfy G1≤G2≤T/2.