H01L2924/157

Chip with game engine and ray trace engine
11295506 · 2022-04-05 · ·

An electronic chip and a chip assembly are described. The electronic chip comprises one or more processing cores and at least one hardware interface coupled to at least one of the one or more processing cores. At least one of the one or more processing cores implements a game engine in hardware.

Semiconductor package having a stiffener ring

A semiconductor package includes a package substrate having a top surface and a bottom surface, and a stiffener ring mounted on the top surface of the package substrate. The stiffener ring includes a reinforcement rib that is coplanar with the stiffener ring on the top surface of the package substrate. At least two compartments are defined by the stiffener ring and the reinforcement rib. At least two individual chip packages are mounted on chip mounting regions within the at least two compartments, respectively, thereby constituting a package array on the package substrate.

Encapsulation of a substrate electrically connected to a plurality of pin arrays

A chip and a packaging method thereof. In the chip, first solder pads in a first solder pad array on a first substrate are attached to corresponding second pins in second pin arrays on different dies to implement short-distance and high-density interconnection of the different dies. A molding body is used to wrap a first pin, a second pin, a first solder pad, and the first substrate, so that a fan-out unit and the first substrate are molded into an integral structure. In the integral structure, bottoms of first pins that are in a first pin array on a die and that are electrically connected to a periphery of the chip are not wrapped by the molding body.

APPARATUS, SYSTEM, AND METHOD FOR UTILIZING PACKAGE STIFFENERS TO ATTACH CABLE ASSEMBLIES TO INTEGRATED CIRCUITS
20220115309 · 2022-04-14 ·

A disclosed apparatus may include (1) an integrated circuit electrically coupled to a substrate, (2) a plurality of electrical contacts that are disposed on the substrate and are electrically coupled to the integrated circuit via the substrate, (3) at least one cable assembly electrically coupled to the plurality of electrical contacts, and (4) a package stiffener physically coupled to the substrate around the integrated circuit such that the at least one cable assembly is accessible to at least one electrical cable. Various other apparatuses, systems, and methods are also disclosed.

Systems and methods for implementing a scalable system

Multi-chip systems and structures for modular scaling are described. In some embodiments an interfacing bar is utilized to couple adjacent chips. For example, a communication bar may utilized to coupled logic chips, and memory bar may be utilized to couple multiple memory chips to a logic chip.

Semiconductor device having a heat dissipation structure connected chip package

A semiconductor device includes a first chip package, a heat dissipation structure and an adapter. The first chip package includes a semiconductor die laterally encapsulated by an insulating encapsulant, the semiconductor die has an active surface and a back surface opposite to the active surface. The heat dissipation structure is connected to the chip package. The adapter is disposed over the first chip package and electrically connected to the semiconductor die.

INTEGRATED ANTENNA ON INTERPOSER SUBSTRATE

The present disclosure relates to a semiconductor module. The semiconductor module includes an excitable element located on a first side of a substrate. A first ground structure is disposed between the first side of the substrate and the excitable element. The first ground structure includes a conductive via extending through the substrate and an interconnect disposed over a topmost surface of the conductive via facing away from the substrate. A second ground structure is located on a second side of the substrate, opposing the first side, and electrically coupled to the first ground structure.

METHOD FOR PACKAGING SEMICONDUCTOR, SEMICONDUCTOR PACKAGE STRUCTURE, AND PACKAGE
20210335757 · 2021-10-28 ·

Embodiments provide a method for packaging a semiconductor, a semiconductor package structure, and a package. The packaging method includes: providing a substrate wafer having a first surface and a second surface arranged opposite to each other, the first surface having a plurality of grooves, a plurality of electrically conductive pillars being provided at a bottom of the groove, and the electrically conductive pillar penetrating through the bottom of the groove to the second surface; providing a plurality of semiconductor die stacks; placing the semiconductor die stack in the groove; and filling an insulating dielectric in a gap between a sidewall of the groove and the semiconductor die stack to form an insulating dielectric layer covering an upper surface of the semiconductor die stack to seal up the semiconductor die stack so as to form the semiconductor package structure.

Interposer-Type Component Carrier and Method of Manufacturing the Same
20210320068 · 2021-10-14 ·

An interposer-type component carrier includes a stack comprising at least one electrically conductive layer structure and at least one electrically insulating layer structure; a cavity formed in an upper portion of the stack; an active component embedded in the cavity and having at least one terminal facing upwards; and a redistribution structure having only one electrically insulating layer structure above the component. A method of manufacturing an interposer-type component carrier is also disclosed.

Semiconductor device and manufacturing method thereof

A semiconductor package includes a semiconductor package, a cap, a seal, and microstructures. The semiconductor package includes at least one semiconductor die. The cap is disposed over an upper surface of the semiconductor package. The seal is located on the semiconductor package and between the cap and the semiconductor package. The cap includes an inflow channel and an outflow channel. The active surface of the at least one semiconductor die faces away from the cap. The cap and an upper surface of the semiconductor package define a circulation recess providing fluidic communication between the inflow channel and the outflow channel. The seal is disposed around the circulation recess. The microstructures are located within the circulation recess, and the microstructures are connected to at least one of the cap and the at least one semiconductor die.