Patents by Inventor Todd Bolken

Todd Bolken has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20050255637
    Abstract: Apparatus and methods for forming semiconductor assemblies. An interposer includes a perimeter wall surrounding at least a portion of an upper surface thereof to form a recess. An array of electrical connection pads is located within the recess. A semiconductor die can be flip chip attached to the interposer by at least partial insertion of the semiconductor die within the recess with discrete conductive elements between bond pads of the semiconductor die and electrical connection pads of the interposer. The electrical connection pads communicate with a number of other electrical contact pads accessible elsewhere on the interposer, preferably on a lower surface thereof. A low viscosity underfill encapsulant is disposed between the semiconductor die and the interposer and around the discrete conductive elements by permitting the same to flow into the space between the die and the perimeter wall.
    Type: Application
    Filed: June 28, 2005
    Publication date: November 17, 2005
    Inventor: Todd Bolken
  • Publication number: 20050248013
    Abstract: A semiconductor device includes two or more semiconductor devices with bond pads that are electrically connected to the same, single surface of a plurality of leads. The two or more devices may include substantially centrally located bond pads or substantially identically arranged bond pads.
    Type: Application
    Filed: July 15, 2005
    Publication date: November 10, 2005
    Inventor: Todd Bolken
  • Publication number: 20050191787
    Abstract: Packaging assemblies for optically interactive devices and methods of forming the packaging assemblies in an efficient manner that eliminates or reduces the occurrence of process contaminants. In a first embodiment, a transparent cover is attached to a wafer of semiconductor material containing a plurality of optically interactive devices. The wafer is singulated, and the optically interactive devices are mounted on an interposer and electrically connected with wire bonds. In a second embodiment, the optically interactive devices are electrically connected to the interposer with backside conductive elements. In a third embodiment, the optically interactive devices are mounted to the interposer prior to attaching a transparent cover. A layer of encapsulant material is formed over the interposer, and the interposer and encapsulant material are cut to provide individual packaging assemblies. In a fourth embodiment, the optically interactive devices are mounted in a preformed leadless chip carrier.
    Type: Application
    Filed: April 29, 2005
    Publication date: September 1, 2005
    Inventors: Todd Bolken, Chad Cobbley
  • Publication number: 20050189642
    Abstract: A mold apparatus for encapsulating IC chips mounted on a substrate. In an exemplary embodiment a mold is provided with an upper mold platen having a plurality of cavities for encapsulating wire bonds and related interconnections on a first side of a multi-chip carrier substrate. The mold further includes a lower mold platen with a single cavity for encapsulating substantially the entire second chip side of the carrier substrate. Support elements are provided for supporting the multi-chip carrier substrate. The support elements are configured to prevent or minimize substrate deflection during the fill of the mold cavities with encapsulant material. The support elements may be integral to a mold cavity or may be removable. The support elements may further be aligned along lines representing a series of individual device packages. The molded assembly may then be cut along marks left in the encapsulant to define individual device packages.
    Type: Application
    Filed: May 3, 2005
    Publication date: September 1, 2005
    Inventors: Todd Bolken, David Peters
  • Publication number: 20050116355
    Abstract: The invention provides methods for packaging for electronic devices that are light or other radiation-sensitive, such as image sensors including CCD or CMOS chips. In one embodiment of the invention, an image sensor package is assembled by surrounding a chip with a barrier of transfer mold compound and covering the chip with a transparent lid. In another embodiment of the invention, the perimeter area of a chip, including interconnections such as wire bonds and bond pads, is encapsulated with a liquid dispensed epoxy, and a transparent lid is attached. In yet another embodiment of the invention, chip encapsulation is accomplished with a unitary shell of entirely transparent material. In yet another embodiment of the invention, a substrate-mounted chip and a transparent lid are loaded into a transfer mold that holds them in optimal alignment. The transfer mold is then filled with molding compound to encapsulate the chip and interconnections, and to retain the transparent lid.
    Type: Application
    Filed: December 2, 2004
    Publication date: June 2, 2005
    Inventors: Todd Bolken, Chad Cobbley
  • Publication number: 20050106779
    Abstract: Techniques for fabricating multiple device components. Specifically, techniques for fabricating a stacked package comprising at least one I/C module and a multi-chip package. The multi-chip package includes a plurality of integrated circuit dices coupled to a carrier. The dice are encapsulated such that conductive elements are exposed through the encapsulant. The conductive elements are electrically coupled to the chips. The I/C module comprises an interposer having a plurality of integrated circuit dice disposed thereon. The dice of the I/C module are electrically coupled to the interposer via bondwires. The interposer is configured such that vias are aligned with the conductive elements on the multi-chip package. The multi-chip package and I/C module may be fabricated separately and subsequently coupled together to form a stacked package.
    Type: Application
    Filed: December 23, 2004
    Publication date: May 19, 2005
    Inventors: Todd Bolken, Chad Cobbley
  • Publication number: 20050059188
    Abstract: Packaging assemblies for optically interactive devices and methods of forming the packaging assemblies in an efficient manner that eliminates or reduces the occurrence of process contaminants. In a first embodiment, a transparent cover is attached to a wafer of semiconductor material containing a plurality of optically interactive devices. The wafer is singulated, and the optically interactive devices are mounted on an interposer and electrically connected with wire bonds. In a second embodiment, the optically interactive devices are electrically connected to the interposer with backside conductive elements. In a third embodiment, the optically interactive devices are mounted to the interposer prior to attaching a transparent cover. A layer of encapsulant material is formed over the interposer, and the interposer and encapsulant material are cut to provide individual packaging assemblies. In a fourth embodiment, the optically interactive devices are mounted in a preformed leadless chip carrier.
    Type: Application
    Filed: September 17, 2003
    Publication date: March 17, 2005
    Inventors: Todd Bolken, Chad Cobbley
  • Publication number: 20050057883
    Abstract: Various embodiments for moisture-resistant image sensor packaging structures and methods of assembly are disclosed. Image sensor packages of the present invention include an interposer, a housing structure formed on the interposer for surrounding an image sensor chip, and a transparent cover. The housing structure may cover substantially all of the interposer chip surface. In another embodiment, the housing structure also covers substantially all of the interposer edge surfaces. The housing structure may also cover substantially all of the interposer attachment surface. An image sensor chip is electrically connected to the interposer with sealed wire bond connections or with sealed flip-chip connections. The housing structure may include runners that enable simultaneous sealing of the interior of the image sensor package and of the transparent cover.
    Type: Application
    Filed: September 16, 2003
    Publication date: March 17, 2005
    Inventors: Todd Bolken, Cary Baerlocher, Steven Heppler, Chad Cobbley
  • Publication number: 20050029554
    Abstract: A BGA and a system implementing a BGA. Specifically, a BGA package is encapsulated after the balls are attached to the package. The backside of the package having the balls disposed thereon may be completely covered by the encapsulant. The encapsulant is disposed in direct contact about a portion of the balls. A liner is provided to facilitate the formation of an unencapsulated portion of each ball. The unencapsulated portion may be used to couple the package to a system.
    Type: Application
    Filed: August 31, 2004
    Publication date: February 10, 2005
    Inventors: William Stephenson, Bret Street, Todd Bolken
  • Publication number: 20050023583
    Abstract: A semiconductor card is made by a method which in one molding step forms a plastic body on a substrate attached to a surrounding frame by narrow connecting segments spanning a peripheral opening. The connecting segments are motivated downward by pins outside of the card periphery, holding the substrate against a lower level of the mold cavity during molding. Molded wings extending laterally from the card periphery are also formed. Following molding and curing, the casting is removed and the card singulated by excising the wings from the card. The resulting card has smooth edge surfaces and precise dimensions. Separate glob top encapsulation is avoided.
    Type: Application
    Filed: August 26, 2004
    Publication date: February 3, 2005
    Inventor: Todd Bolken
  • Publication number: 20050022378
    Abstract: A semiconductor card is made by an apparatus using a method which in one molding step forms a plastic body on a substrate attached to a surrounding frame by narrow connecting segments spanning a peripheral opening. The connecting segments are motivated downward by pins outside of the card periphery, holding the substrate against a lower level of the mold cavity during molding. Molded wings extending laterally from the card periphery are also formed. Following molding and curing, the casting is removed and the card singulated by excising the wings from the card. The resulting card has smooth edge surfaces and precise dimensions. Separate glob top encapsulation is avoided.
    Type: Application
    Filed: August 26, 2004
    Publication date: February 3, 2005
    Inventor: Todd Bolken
  • Publication number: 20050023662
    Abstract: A technique for packaging multiple devices to form a multi-chip module. Specifically, a multi-chip package is coupled to an interposer to form the multi-chip module. The multi-chip package includes a plurality of integrated circuit chips coupled to a carrier. The chips are encapsulated such that conductive elements are exposed through the encapsulant. The conductive elements are electrically coupled to the chips. The interposer is configured such that vias are aligned with the conductive elements. Conductive material may be disposed into the vias to provide signal paths from the integrated circuit chips to conductive balls disposed on the backside of the interposer.
    Type: Application
    Filed: August 27, 2004
    Publication date: February 3, 2005
    Inventors: Todd Bolken, Chad Cobbley
  • Publication number: 20050019983
    Abstract: A method of manufacturing a stackable package to create a 3-dimensional memory array using ball grid array technology. Specifically, memory chips are coupled to a preformed packages which have alignment features to allow for the stacking of the ball grid arrays. The alignment features are used to align and orient each package with respect to an adjacent package, substrate or printed circuit board. The alignment features also support the weight of the adjacent package during solder ball reflow to maintain stack height and parallelism between packages. Each memory device is serially connected to the adjacent memory device through the vias and solder balls on each package.
    Type: Application
    Filed: August 16, 2004
    Publication date: January 27, 2005
    Inventors: Todd Bolken, Cary Baerlocher, Chad Cobbley, David Corisis
  • Publication number: 20050012227
    Abstract: An encapsulation mold for forming an encapsulation layer over a semiconductor assembly is disclosed. A semiconductor assembly with multiple semiconductor dies secured to a single semiconductor support structure is inserted into an encapsulation mold. The mold contains a first section and a second section, which form a cavity around the assembly. The mold contains an aperture for transferring encapsulating material into the mold cavity. One of the mold sections has a design feature, such as a raised rib or groove interconnecting at approximately the separation or saw-cut regions of the individual dies of the assembly. Encapsulation material is inserted into the mold cavity until the cavity is filled. The mold section design feature shapes the top surface of the encapsulation layer. The mold is removed leaving the exterior surface of the encapsulation layer patterned with the design feature.
    Type: Application
    Filed: August 17, 2004
    Publication date: January 20, 2005
    Inventor: Todd Bolken