Semiconductor devices and data storage systems having a plurality of interconnected peripheral vias
A semiconductor device includes: a first substrate; a second substrate including first and second regions; a stack structure in the first region and extending from the first region into the second region, the stack structure including interlayer insulating layers and gate layers, wherein the gate layers include gate pads having a step shape in the second region; a capping insulating layer at least partially covering the stack structure; an upper insulating layer on the stack structure and the capping insulating layer; a peripheral contact structure including a plurality of through-vias contacting the second substrate and spaced apart from the gate layers, and a peripheral contact pattern on the plurality of through-vias and connecting at least a portion of the plurality of through-vias to each other; a memory vertical structure; a support vertical structure; and a gate contact plug on the gate pads to be electrically connected to the gate pads.
1 . A semiconductor device comprising:
a first substrate;
a second substrate comprising a first region and a second region;
a stack structure in the first region and extending from the first region into the second region, wherein the stack structure comprises one or more interlayer insulating layers and one or more gate layers alternately stacked on the second substrate in a first direction perpendicular to an upper surface of the second substrate, wherein the one or more gate layers comprises a plurality of gate pads arranged to have a step shape in the second region;
a capping insulating layer that at least partially covers the stack structure;
an upper insulating layer on the stack structure and the capping insulating layer;
a peripheral contact structure comprising: a plurality of through-vias contacting a portion of the second substrate, spaced apart from the one or more gate layers, and extending in the first direction; and a peripheral contact pattern on the plurality of through-vias and connecting at least a portion of the plurality of through-vias to each other;
a memory vertical structure contacting the second substrate and passing through the stack structure in the first region;
a support vertical structure contacting the second substrate and passing through the stack structure in the second region;
a gate contact plug on one or more of the plurality of gate pads and configured to be electrically connected to one or more of the plurality of gate pads;
a peripheral upper plug on the peripheral contact pattern and contacting the peripheral contact pattern; and
a peripheral wiring on the peripheral upper plug and electrically connected to the peripheral upper plug,
wherein the peripheral contact pattern comprises first lines extending in a second direction parallel to the upper surface of the second substrate, and second lines intersecting the first lines and extending in a third direction parallel to the upper surface of the second substrate, and
wherein the first lines and the second lines are spaced apart from the upper surface of the second substrate by a same distance in the first direction.
2 . The semiconductor device of claim 1 , wherein an upper surface of the peripheral contact pattern is substantially coplanar with an upper surface of the gate contact plug.
3 . The semiconductor device of claim 2 , further comprising:
a bit line contact plug on the memory vertical structure and contacting the memory vertical structure;
a gate upper plug on the upper surface of the gate contact plug and contacting the gate contact plug;
a bit line on the bit line contact plug and electrically connected to the bit line contact plug; and
a gate connection wiring on the gate upper plug and electrically connected to the gate upper plug,
wherein the bit line, the gate connection wiring, and the peripheral wiring are on an upper surface of the upper insulating layer.
4 . The semiconductor device of claim 1 , wherein upper surfaces of the through-vias are in direct contact with a lower surface of the peripheral contact pattern and are substantially coplanar with an upper surface of the memory vertical structure, and
wherein the lower surface of the peripheral contact pattern is directly on the capping insulating layer.
5 . The semiconductor device of claim 1 , wherein an upper surface of the support vertical structure is on a higher level in the first direction, relative to the upper surface of the second substrate, than an upper surface of the memory vertical structure, and
wherein the support vertical structure comprises an insulating material.
6 . The semiconductor device of claim 1 , wherein each of the plurality of through-vias has a first width, and each of the first and second lines has a second width that is equal to or greater than the first width in a direction perpendicular to an extension direction of the first and second lines.
7 . The semiconductor device of claim 1 , wherein the peripheral contact pattern comprises:
at least one intersection portion in which one or more of the first lines and one or more of the second lines intersect;
a connection portion connecting neighboring intersection portions; and
a protrusion portion extending from the intersection portion in a direction opposite to the connection portion.
8 . The semiconductor device of claim 7 , wherein at least a portion of an upper surface of each of the plurality of through-vias is in the intersection portion.
9 . The semiconductor device of claim 1 , wherein a length of each of the first lines in the second direction is greater than a maximum distance between any two of the plurality of through-vias in the second direction.
10 . The semiconductor device of claim 9 , wherein the first lines comprise side surfaces that are not vertically aligned with side surfaces of the plurality of through-vias.
11 . The semiconductor device of claim 1 , wherein the plurality of through-vias and the peripheral contact pattern are integrally formed.
12 . The semiconductor device of claim 1 , wherein upper surfaces of the first lines are substantially coplanar with upper surfaces of the second lines, and
wherein the first lines are electrically connected to the second lines.
13 . A semiconductor device comprising:
a first substrate;
circuit elements on the first substrate;
a circuit wiring pattern electrically connected to at least one of the circuit elements;
a second substrate above the circuit wiring pattern;
a stack structure comprising one or more interlayer insulating layers and one or more gate layers alternately stacked on the second substrate in a first direction perpendicular to an upper surface of the second substrate; and
a first peripheral contact structure spaced apart from the stack structure,
wherein the first peripheral contact structure comprises: a plurality of first through-vias extending in the first direction, and a first peripheral contact pattern on the plurality of first through-vias and connecting at least a portion of the plurality of first through-vias,
wherein the circuit wiring pattern is below the plurality of first through-vias and connects the plurality of first through-vias,
wherein the first peripheral contact pattern has a shape corresponding to a shape of at least a portion of the circuit wiring pattern,
wherein the first peripheral contact pattern comprises;
first lines adjacent to each other in a second direction parallel to the upper surface of the second substrate, the first lines extending in a third direction parallel to the upper surface of the second substrate and intersecting the second direction; and
second lines adjacent to each other in the third direction, the second lines extending in the second direction and electrically connected to the first lines,
wherein upper surfaces of the first lines are substantially coplanar with upper surfaces of the second lines.
14 . The semiconductor device of claim 13 , wherein the plurality of first through-vias are in contact with the circuit wiring pattern from an outside of the second substrate.
15 . The semiconductor device of claim 13 , wherein the semiconductor device further comprises a second peripheral contact structure,
the stack structure further comprises a through-region,
the through-region comprises insulating horizontal layers located on the same level in the first direction, relative to the upper surface of the second substrate, as gate layers adjacent to the through-region,
the second substrate comprises a gap, and
the second peripheral contact structure is in contact with the circuit wiring pattern, and extends in the first direction to pass through the gap and the insulating horizontal layers of the through-region.
16 . The semiconductor device of claim 13 , wherein the semiconductor device further comprises a third peripheral contact structure,
wherein the third peripheral contact structure comprises a plurality of third through-vias extending in the first direction, and a third peripheral contact pattern on the plurality of third through-vias and connecting at least a portion of the plurality of third through-vias,
the second substrate is below the plurality of third through-vias and connects the plurality of third through-vias.
17 . The semiconductor device of claim 13 , wherein each of the first peripheral contact pattern and the portion of the circuit wiring pattern has a lattice shape in a plan view.
18 . The semiconductor device of claim 13 , wherein at least one of the first through-vias is overlapped in the first direction by a portion of the first peripheral contact pattern where one or more of the first lines intersects one or more of the second lines.
19 . A data storage system comprising:
a main substrate;
a semiconductor device on the main substrate; and
a controller electrically connected to the semiconductor device and configured to control the semiconductor device,
wherein the semiconductor device comprises:
a first substrate;
circuit elements on the first substrate;
a circuit wiring pattern electrically connected to at least one of the circuit elements;
a second substrate above the circuit wiring pattern;
a stack structure comprising one or more interlayer insulating layers and one or more gate layers alternately stacked on the second substrate in a first direction perpendicular to an upper surface of the second substrate; and
a peripheral contact structure spaced apart from the one or more gate layers,
wherein the peripheral contact structure comprises a plurality of through-vias extending in the first direction, and a peripheral contact pattern on the plurality of through-vias and connecting at least a portion of the plurality of through-vias,
wherein the circuit wiring pattern is below the plurality of through-vias and connects the plurality of through-vias,
wherein the peripheral contact pattern has a shape corresponding to a shape of at least a portion of the circuit wiring pattern,
wherein the peripheral contact pattern comprises:
first lines adjacent to each other in a second direction parallel to the upper surface of the second substrate, the first lines extending in a third direction parallel to the upper surface of the second substrate and intersecting the second direction; and
second lines adjacent to each other in the third direction, the second lines extending in the second direction and electrically connected to the first lines,
wherein upper surfaces of the first lines are substantially coplanar with upper surfaces of the second lines.
20 . The data storage system of claim 19 , wherein at least one of the through-vias is overlapped in the first direction by a portion of the peripheral contact pattern where one or more of the first lines intersects one or more of the second lines.