Patent classifications
H01L2224/75986
Bonding Apparatus, Bonding System, Bonding Method and Storage Medium
There is provided a bonding apparatus for bonding substrates together, which includes: a first holding part configured to adsorptively hold a first substrate by vacuum-drawing the first substrate on a lower surface of the first substrate; a second holding part provided below the first holding part and configured to adsorptively hold a second substrate by vacuum-drawing the second substrate on an upper surface of the second substrate; a pressing member provided in the first holding part and configured to press a central portion of the first substrate; and a plurality of substrate detection parts provided in the first holding part and configured to detect a detachment of the first substrate from the first holding part.
Low warpage curing methodology by inducing curvature
Embodiments of methods and apparatus for reducing warpage of a substrate are provided herein. In some embodiments, a method for reducing warpage of a substrate includes: applying an epoxy mold over a plurality of dies on the substrate in a dispenser tool; placing the substrate on a pedestal in a curing chamber, wherein the substrate has an expected post-cure deflection in a first direction; inducing a curvature on the substrate in a direction opposite the first direction; and curing the substrate by heating the substrate in the curing chamber.
Bonding apparatus, bonding system, bonding method and storage medium
There is provided a bonding apparatus for bonding substrates together, which includes: a first holding part configured to adsorptively hold a first substrate by vacuum-drawing the first substrate on a lower surface of the first substrate; a second holding part provided below the first holding part and configured to adsorptively hold a second substrate by vacuum-drawing the second substrate on an upper surface of the second substrate; a pressing member provided in the first holding part and configured to press a central portion of the first substrate; and a plurality of substrate detection parts provided in the first holding part and configured to detect a detachment of the first substrate from the first holding part.
Pressure sintering device and method for manufacturing an electronic component
A method for manufacturing an electronic component by a pressure-assisted low-temperature sintering process, by using a pressure sintering device having an upper die and a lower die is disclosed. The upper the die and/or the lower die is provided with a first pressure pad, wherein the method includes the following steps: placing a first sinterable component on a first sintering layer provided on a top layer of a first substrate; joining the sinterable component and the top layer of the first substrate to form a first electronic component by pressing the upper die and the lower die towards each other, wherein the sintering device is simultaneously heated.
Multifunctional sintering or diffusion soldering device and pressing tool
The present invention relates to a sintering device or diffusion soldering device for connecting components of at least one electronic assembly by means of pressure sintering, comprising an evacuatable process chamber in which an upper tool and a lower tool are arranged, between which the assembly is held and which are displaceable relative to one another in their distance apart to exert a press force, wherein the process chamber comprises a base body having on its upper side an access opening and a cover which is adjustable between a closed position in which the access opening is closed by the cover and an open position, wherein the upper tool is supported on the cover in the closed position of the cover at least during the exertion of the press force.
BONDING APPARATUS, BONDING SYSTEM, BONDING METHOD AND STORAGE MEDIUM
There is provided a bonding apparatus for bonding substrates together, which includes: a first holding part configured to adsorptively hold a first substrate by vacuum-drawing the first substrate on a lower surface of the first substrate; a second holding part provided below the first holding part and configured to adsorptively hold a second substrate by vacuum-drawing the second substrate on an upper surface of the second substrate; a pressing member provided in the first holding part and configured to press a central portion of the first substrate; and a plurality of substrate detection parts provided in the first holding part and configured to detect a detachment of the first substrate from the first holding part.
THERMOCOMPRESSION APPARATUS AND METHOD FOR BONDING ELECTRICAL COMPONENTS TO A SUBSTRATE
A thermocompression apparatus for connecting electrical components to a substrate, with a lower tool with a bearing surface for placing the substrate with at least one electrical component arranged thereon and an upper tool with a pressing element facing the bearing surface of the lower tool. The lower tool and/or the upper tool perform an up/down movement by a first drive and a second drive. The first drive is set up to execute a first movement in a first speed range and a first stroke range. The second drive is arranged to perform a second movement in a second speed range and a second stroke range. A thermode assembly is arranged to feed heating energy into the component and/or the substrate in order to thermally cure an adhesive introduced between or located on the component and the substrate.
Machine for transferring micro-device
A machine for transferring at least one micro-device includes a carrier and a transfer device. The carrier includes a pedestal, a substrate, and at least one first cushion layer. The substrate allows the micro-device to be temporarily disposed thereon. The first cushion layer is disposed between the pedestal and the substrate. The transfer device includes a transfer head holder, transfer head, and at least one second cushion layer. The transfer head holder moves at least along a z-axis substantially perpendicular to the substrate. The transfer head has a grip force on the micro-device. The second cushion layer is disposed between the transfer head holder and the transfer head.
Laser assisted bonding for semiconductor die interconnections
Laser assisted bonding for semiconductor die interconnections is disclosed and may, for example, include forming flux on a circuit pattern on a circuit board, placing a semiconductor die on the circuit board where a bump on the semiconductor die contacts the flux, and reflowing the bump by directing a laser beam toward the semiconductor die. The laser beam may volatize the flux and make an electrical connection between the bump and the circuit pattern. A jig plate may be placed on the semiconductor die when the laser beam is directed toward the semiconductor die. Warpage may be reduced during heating or cooling of the semiconductor die by applying pressure to the jig plate. Jig bars may extend outward from the jig plate and may be in contact with the circuit board during the application of pressure to the jig plate. The jig plate may comprise one or more of: silicon, silicon carbide, and glass.
Sintering press for sintering electronic components on a substrate
A sintering press for sintering electronic components on a substrate includes at least one reaction element extending along an element axis parallel to a pressing axis of the sintering press between a first element end and a second element end, the first element end forming a support plane for a respective substrate, at least one load cell operatively connected to the second element end, and an element plate slidably supporting the at least one reaction element and equipped with a heating circuit. The reaction element has a heating portion passing through the element plate and transmitting by conduction heat of the element plate to the substrate. The reaction element has a cooling portion ending with the second element end and shaped to dissipate the heat transmitted from the element plate to the heating portion.