Patent classifications
H01L2224/24
Low cost three-dimensional stacking semiconductor assemblies
Semiconductor device package assemblies and associated methods are disclosed herein. The semiconductor device package assembly includes (1) a base component having a front side and a back side, the base component having a first metallization structure at the front side; (2) a semiconductor device package having a first side, a second side with a recess, and a second metallization structure at the first side and a contacting region exposed in the recess at the second side; (3) an interconnect structure at least partially positioned in the recess at the second side of the semiconductor device package; and (4) a thermoset material or structure between the front side of the base component and the second side of the semiconductor device package. The interconnect structure is in the thermoset material and includes discrete conductive particles electrically coupled to one another.
Low cost three-dimensional stacking semiconductor assemblies
Semiconductor device package assemblies and associated methods are disclosed herein. The semiconductor device package assembly includes (1) a base component having a front side and a back side, the base component having a first metallization structure at the front side; (2) a semiconductor device package having a first side, a second side with a recess, and a second metallization structure at the first side and a contacting region exposed in the recess at the second side; (3) an interconnect structure at least partially positioned in the recess at the second side of the semiconductor device package; and (4) a thermoset material or structure between the front side of the base component and the second side of the semiconductor device package. The interconnect structure is in the thermoset material and includes discrete conductive particles electrically coupled to one another.
LIGHT-EMITTING DEVICE
This disclosure discloses a light-emitting display module display. The light-emitting display module comprises: a board; and a plurality of light-emitting diode modules arranged in an array configuration on the board; wherein one of the light-emitting diode modules comprises a plurality of encapsulated light-emitting units spaced apart from each other; and one of the encapsulated light-emitting units comprises a plurality of optoelectronic units, a first supporting, and a fence; and wherein the plurality of optoelectronic units are covered by the first supporting structure, and the fence surrounds the first supporting structure and the plurality of optoelectronic units.
OLEDS FOR MICRO TRANSFER PRINTING
An organic light-emitting diode (OLED) structure includes an organic light-emitting diode having a first electrode, one or more layers of organic material disposed on at least a portion of the first electrode, and a second electrode disposed on at least a portion of the one or more layers of organic material. At least a portion of a tether extending from a periphery of the organic light-emitting diode. The organic light-emitting diodes can be printable organic light-emitting diode structures that are micro transfer printed over a display substrate to form a display.
LIGHT INDUCED SELECTIVE TRANSFER OF COMPONENTS BETWEEN SUBSTRATES
A method and apparatus for transferring components. A first substrate is provided with the components. A second substrate is provided with an adhesive layer comprising a hot melt adhesive material. The components on the first substrate are contacted with the adhesive layer on the second substrate while the adhesive layer is melted. The adhesive layer is allowed to solidify to form an adhesive connection between the components and the second substrate. The first and second substrates are moved apart to transfer the components. At least a subset of the components is transferred from the second substrate to a third substrate by radiating light onto the adhesive layer to form a jet of melted material carrying the components.
LIGHT INDUCED SELECTIVE TRANSFER OF COMPONENTS BETWEEN SUBSTRATES
A method and apparatus for transferring components. A first substrate is provided with the components. A second substrate is provided with an adhesive layer comprising a hot melt adhesive material. The components on the first substrate are contacted with the adhesive layer on the second substrate while the adhesive layer is melted. The adhesive layer is allowed to solidify to form an adhesive connection between the components and the second substrate. The first and second substrates are moved apart to transfer the components. At least a subset of the components is transferred from the second substrate to a third substrate by radiating light onto the adhesive layer to form a jet of melted material carrying the components.
METHOD FOR TRANSFERRING LIGHT EMITTING ELEMENTS, DISPLAY PANEL, METHOD FOR MAKING DISPLAY PANEL, AND SUBSTRATE
A method for transferring light emitting elements during manufacture of a display panel includes providing light emitting elements; providing a first electromagnetic plate defining adsorption positions; providing a receiving substrate defining receiving areas; energizing the first electromagnetic plate to magnetically adsorb one of the light emitting elements at each adsorption position; facing the first electromagnetic plate to the receiving substrate; and transferring the light emitting elements to one corresponding receiving area of the receiving substrate.
METHOD FOR TRANSFERRING LIGHT EMITTING ELEMENTS, DISPLAY PANEL, METHOD FOR MAKING DISPLAY PANEL, AND SUBSTRATE
A method for transferring light emitting elements during manufacture of a display panel includes providing light emitting elements; providing a first electromagnetic plate defining adsorption positions; providing a receiving substrate defining receiving areas; energizing the first electromagnetic plate to magnetically adsorb one of the light emitting elements at each adsorption position; facing the first electromagnetic plate to the receiving substrate; and transferring the light emitting elements to one corresponding receiving area of the receiving substrate.
SEMICONDUCTOR PACKAGE INCLUDING NEIGHBORING DIE CONTACT AND SEAL RING STRUCTURES, AND METHODS FOR FORMING THE SAME
A semiconductor package includes: a first die; a second die stacked on an upper surface of the first die, the second die including a second semiconductor substrate and a second seal ring structure that extends along a perimeter of the second semiconductor substrate; a third die stacked on the upper surface of the first die, the third die including a third semiconductor substrate and a third seal ring structure that extends along a perimeter of the third semiconductor substrate; and a connection circuit that extends through the second seal ring structure and the third seal ring structure, in a lateral direction perpendicular to the stacking direction of the first die and the second die, to electrically connect the second semiconductor substrate and the third semiconductor substrate.
SEMICONDUCTOR PACKAGE INCLUDING NEIGHBORING DIE CONTACT AND SEAL RING STRUCTURES, AND METHODS FOR FORMING THE SAME
A semiconductor package includes: a first die; a second die stacked on an upper surface of the first die, the second die including a second semiconductor substrate and a second seal ring structure that extends along a perimeter of the second semiconductor substrate; a third die stacked on the upper surface of the first die, the third die including a third semiconductor substrate and a third seal ring structure that extends along a perimeter of the third semiconductor substrate; and a connection circuit that extends through the second seal ring structure and the third seal ring structure, in a lateral direction perpendicular to the stacking direction of the first die and the second die, to electrically connect the second semiconductor substrate and the third semiconductor substrate.