Thermoelectric cooling modules
Various embodiments disclosed herein describe thermoelectric cooling modules. The thermoelectric cooling modules may include a first substrate positioned over a second substrate in a vertical stacking direction, and may include a thermoelectric connector that thermally connects the first and second substrates. The thermoelectric connector may be configured to transfer heat laterally relative to the vertical stacking direction to provide more efficient heat transfer between the first substrate and the second substrate.
1 . A thermoelectric cooling module comprising:
a first substrate;
a second substrate, wherein the first substrate is positioned above the second substrate in a vertical stacking direction;
a set of thermally-insulating support posts mechanically supporting the first substrate above the second substrate; and
a thermoelectric connector connected to the first substrate and the second substrate and comprising a first terminal, a second terminal, and a plurality of semiconductor elements electrically coupled in series, wherein:
the plurality of semiconductor element comprises a first semiconductor element and a second semiconductor element;
the thermoelectric connector thermally couples the first substrate to the second substrate; and
the thermoelectric connector is configured such that when a current is driven through the thermoelectric connector between the first terminal and the second terminal, heat flows laterally through at least a portion of each semiconductor element of the plurality of semiconductor elements in a corresponding lateral direction orthogonal to the vertical stacking direction;
the thermoelectric connector comprises an upper connector, a first lower connector and a second lower connector;
the first semiconductor element is positioned between the upper connector and the first lower connector along the lateral direction corresponding to the first semiconductor element; and
the second semiconductor element is positioned between the upper connector and the second lower connector along the lateral direction corresponding to the second semiconductor element.
2 . The thermoelectric cooling module of claim 1 , wherein:
one or more of the set of thermally-insulating support posts is configured to provide an electrical connection between the first substrate and the second substrate.
3 . The thermoelectric cooling module of claim 1 , wherein:
the thermoelectric connector comprises a trace electrically isolating the upper connector from the first substrate, the trace from a from a thermally-conductive and electrically- insulating material.
4 . A thermoelectric cooling module comprising:
a first substrate;
a second substrate, wherein the first substrate is suspended above the second substrate in a vertical stacking direction; and
a thermoelectric connector that thermally couples the first substrate to the second substrate and comprises a plurality of semiconductor elements electrically coupled in series, wherein:
each semiconductor element of the plurality of semiconductor elements comprises a corresponding suspended portion that is thermally separated from the first substrate by a first distance along the vertical stacking direction and is thermally separated from the second substrate by a second distance along the vertical stacking direction;
the plurality of semiconductor element comprises a first semiconductor element and a second semiconductor element;
the thermoelectric connector comprises an upper connector, a first lower connector and a second lower connector;
the first semiconductor element is positioned between the upper connector and the first lower connector along a lateral direction orthogonal to the vertical stacking direction; and
the second semiconductor element is positioned between the upper connector and the second lower connector along the lateral direction.
5 . The thermoelectric cooling module of claim 4 , wherein:
the first substrate is separated from the second substrate by a first distance;
the corresponding suspended portion of each semiconductor element has a length in the lateral direction orthogonal; and
the length of each corresponding suspended portion is longer than the first distance.
6 . The thermoelectric cooling module of claim 4 , wherein:
each corresponding suspended portion has:
a length along a first lateral direction orthogonal to the vertical stacking direction;
a width along a second lateral direction orthogonal to the first lateral direction and the vertical stacking direction; and
a height along the vertical stacking direction, wherein the length and the width are both longer than the height.
7 . The thermoelectric cooling module of claim 4 , wherein the thermoelectric connector is positioned entirely between the first substrate and the second substrate along the vertical stacking direction.
8 . A thermoelectric cooling module comprising:
a first substrate;
a second substrate, wherein the first substrate is suspended above the second substrate in a vertical stacking direction; and
a thermoelectric connector that thermally couples the first substrate to the second substrate and comprising:
a first semiconductor element having a first conductivity type;
a second semiconductor element having a second conductivity type opposite the first conductivity type;
an upper connector that electrically connects the first semiconductor element to the second semiconductor element, and that thermally connects the first semiconductor element and the second semiconductor element to the first substrate;
a first lower connecter spaced laterally from the upper connector in a first lateral direction orthogonal to the vertical stacking direction, wherein the first lower connector thermally connects the first semiconductor element to the second substrate; and
a second lower connector spaced laterally from the upper connector in a second lateral direction orthogonal to the vertical stacking direction, wherein the first lower connector thermally connects the second semiconductor element to the second substrate, wherein:
the thermoelectric connector is configured such that a corresponding portion of each of the first semiconductor element and the second semiconductor element, the first lower connector, and the second lower connector extend laterally beyond a side of the first substrate.
9 . The thermoelectric cooling module of claim 8 , further comprising:
a power source electrically connected to the first lower connector and the second lower connector to drive current through the thermoelectric connector.
10 . The thermoelectric cooling module of claim 9 , wherein:
the power source is electrically connected to the first lower connector and the second lower connector via corresponding electrical traces positioned on the second substrate.
11 . The thermoelectric cooling module of claim 8 , wherein:
the first lateral direction is parallel to the second lateral direction.
12 . The thermoelectric cooling module of claim 8 wherein:
a portion of the upper connector is positioned between a first portion of the first semiconductor element and the first substrate.
13 . The thermoelectric cooling module of claim 12 wherein:
a portion of the first lower connector is positioned between a second portion of the first semiconductor element and the second substrate.
14 . The thermoelectric cooling module of claim 8 wherein:
a portion of the first lower connector is positioned between a portion of the first semiconductor element and the second substrate.