Application specific electronics packaging systems, methods and devices
Depicted embodiments are directed to an Application Specific Electronics Packaging (“ASEP”) system, which enables the manufacture of additional products using reel to reel ( 68 a, 68 b ) manufacturing processes as opposed to the “batch” processes used to currently manufacture electronic products and MIDs. Through certain ASEP embodiments, it is possible to integrate connectors, sensors, LEDs, thermal management, antennas, RFID devices, microprocessors, memory, impedance control, and multi-layer functionality directly into a product.
1. A light comprising: a housing; a light pipe attached to the housing; and a device formed by an Application Specific Electronics Packaging System mounted in the housing, the Application Specific Electronics Packaging System having at least one light emitting diode provided thereon, the light pipe being positioned above the at least one light emitting diode, wherein forming the Application Specific Electronics Packaging System comprises: forming a continuous carrier; molding a plurality of substrates onto the carrier; forming traces on the substrates; electroplating the traces; electrically attaching components to the traces to form a plurality of devices, at least one of the components on each device being a light emitting diode; singulating one of the devices from the remainder of the carrier, and wherein the components are seated within pockets formed in the substrates.
2. The light of claim 1 , wherein forming the traces comprises: ablating the substrate with a laser; depositing an ink on the ablated surface; and sintering the ink.
3. A device comprising: a singulated carrier portion; a substrate molded onto the singulated carrier portion; seed layer traces on the substrate; plated metal traces on the seed layer traces; and a component electrically attached to at least one plated metal trace, wherein the component is seated within a pocket formed in the substrate, and wherein the pocket is formed into the substrate such that a portion of the singulated carrier portion is exposed.
4. The device of claim 3 , wherein the device comprises at least one of a printed circuit board, a flex circuit, a connector, a thermal management feature, EMI shielding, a high current conductor, an RFID apparatus, an antenna, a wireless power device, a sensor, a MEMS apparatus, an LED device, a microprocessor, a memory device, an ASIC, a passive device, an impedance control device, and an electro-mechanical apparatus.
5. The device of claim 3 , wherein the singulated carrier portion comprises metal.
6. The device of claim 3 , wherein the singulated carrier portion comprises a flex material.
7. The device of claim 6 , wherein the flex material comprises a polyimide flex material.
8. The device of claim 3 , wherein the plated metal traces comprise electroplated plated metal traces.
9. The device of claim 3 , wherein the seed layer traces comprise at least one of sintered ink and sintered paste.
10. A device comprising: a singulated carrier portion; a substrate molded onto the singulated carrier portion; conductive material deposited on the substrate having electrically isolated portions formed therein; a component electrically attached to at least one electrically isolated portion of the material, wherein the component is seated within a pocket formed in the substrate, and wherein the pocket is formed into the substrate such that a portion of the singulated carrier portion is exposed.
11. The device of claim 10 , wherein the device comprises at least one of a printed circuit board, a flex circuit, a connector, a thermal management feature, EMI shielding, a high current conductor, an RFID apparatus, an antenna, a wireless power device, a sensor, a MEMS apparatus, an LED device, a microprocessor, a memory device, an ASIC, a passive device, an impedance control device, and an electro-mechanical apparatus.
12. The device of claim 10 , wherein the singulated carrier portion comprises metal.
13. The device of claim 10 , wherein the singulated carrier portion comprises a flex material.
14. The device of claim 13 , wherein the flex material comprises a polyimide flex material.