IP Library Granted Patent US 8,885,356
Granted Patent B2
US 8,885,356 · App. 13/278,514 · Granted Nov 11, 2014

Enhanced stacked microelectronic assemblies with central contacts and improved ground or power distribution

Inventors: Belgacem Haba (Saratoga, CA); Wael Zohni (San Jose, CA); Richard Dewitt Crisp (Hornitos, CA)
Assignee: Tessera, Inc.
H01L25/0657H01L2924/19107H01L2224/32145H01L23/13H01L2924/014H01L2924/01014H01L2924/01082H01L24/45H01L2224/48227H01L2224/45144H01L2924/30107H01L24/33H01L2924/01033H01L24/29H01L23/50H01L2924/1206H01L23/49816H01L2924/01087H01L2224/32225H01L23/3128H01L2224/48095H01L2224/49427H01L24/32H01L24/49H01L2224/06136H01L2924/15151H01L2924/1434H01L2224/4824H01L2924/1205H01L2224/49175H01L2924/01079H01L2224/73215H01L2924/1207H01L2224/49111H01L2225/06575H01L24/48H01L2924/01029H01L2225/0651H01L2224/48465H01L24/30H01L2924/15311H01L2225/06562H01L2224/48599H01L2924/01047H01L2924/19103
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Quick Facts
Patent No.
US 8,885,356
App. No.
13/278,514
Granted
Nov 11, 2014
Kind
B2
Abstract

A microelectronic assembly includes a dielectric element, first and second microelectronic elements, signal leads, and one or more jumper leads. The dielectric element has oppositely-facing first and second surfaces and first and second apertures extend between the surfaces. A plurality of electrically conductive elements are positioned thereon. Signal leads are connected to one or more of the microelectronic elements and extend through one or more of the first or second apertures to some of the conductive elements on the dielectric element. One or more jumper leads extend through the first aperture and are connected to a contact of the first microelectronic element. The one or more jumper leads span over the second aperture and are connected to a conductive element on the dielectric element.

Claims (22)

1. A microelectronic assembly comprising:

a dielectric element having oppositely-facing first and second surfaces and first and second apertures extending between the surfaces, the dielectric element further having conductive elements thereon;

a first microelectronic element having a rear surface and a front surface facing the first surface of the dielectric element, the first microelectronic element having a first edge and a plurality of contacts exposed at the front surface thereof;

a second microelectronic element including having a rear surface and a front surface facing the rear surface of the first microelectronic element, a projecting portion of the front surface of the second microelectronic element extending beyond the first edge of the first microelectronic element, the projecting portion being spaced from the first surface of the dielectric element, the second microelectronic element having a plurality of contacts exposed at the projecting portion of the front surface;

a plurality of first leads extending from contacts of the microelectronic elements through the at least one aperture to at least some of the conductive elements;

an electrically conductive plane attached to the dielectric element and at least partially positioned between the first and second apertures, the electrically conductive plane being electrically connected with one or more of the contacts of at least one of the first or second microelectronic elements;

a first passive component disposed between the projecting portion of the front surface of the second microelectronic element and the first surface of the dielectric element;

a second passive component exposed at the second surface of the dielectric assembly and between the first and second apertures;

a second lead extending from the first passive component to a contact of one of the microelectronic elements; and

a circuit panel, wherein the dielectric element includes a plurality of terminals exposed at the second surface and electrically coupled to the circuit panel.

2. The microelectronic assembly as claimed in claim 1 , wherein solder balls connect each terminal to the circuit board.

3. The microelectronic assembly as claimed in claim 1 , wherein copper pillars connect each terminal to the circuit board.

4. The microelectronic assembly according to claim 1 , wherein the plurality of first leads are wire bonds.

5. A system comprising an assembly as claimed in claim 1 , further comprising one or more other electronic components electrically connected to the assembly.

6. The system as claimed in claim 5 , further comprising a housing, the assembly and the other electronic components being mounted to the housing.

7. The microelectronic assembly as claimed in claim 1 , wherein the second passive component is electrically connected to the first microelectronic element.

8. The microelectronic assembly as claimed in claim 1 , wherein the second passive component is electrically connected to the first and second microelectronic elements.

9. The microelectronic assembly as claimed in claim 1 , wherein the conductive plane overlies the second surface of the dielectric element, wherein the second passive component has an electrode mounted and electrically coupled to the conductive plane.

10. The microelectronic assembly as claimed in claim 9 , wherein the second passive component is a capacitor having a second electrode remote from the conductive plane.

11. The microelectronic assembly as claimed in claim 1 , wherein the second passive component includes at least one capacitor having an electrode connected to a conductive terminal for connection to power or ground.

12. The microelectronic assembly as claimed in claim 1 , further comprising a second conductive plane overlying the second surface of the dielectric element, the first and second conductive planes providing a connection to power and ground, respectively, and the second passive component having first and second electrodes electrically connected to the first and second conductive planes, respectively.

13. The microelectronic assembly as claimed in claim 12 , wherein the second passive component is a capacitor.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Jun 11, 2020
From: ROYAL BANK OF CANADA
To: TESSERA, INC.; INVENSAS BONDING TECHNOLOGIES, INC. (F/K/A ZIPTRONIX, INC.); FOTONATION CORPORATION (F/K/A DIGITALOPTICS CORPORATION AND F/K/A DIGITALOPTICS CORPORATION MEMS); INVENSAS CORPORATION; TESSERA ADVANCED TECHNOLOGIES, INC; DTS, INC.; DTS LLC; PHORUS, INC.; IBIQUITY DIGITAL CORPORATION
Reel/Frame 052920/0001 →
SECURITY INTEREST Recorded Dec 2, 2016
From: INVENSAS CORPORATION; TESSERA, INC.; TESSERA ADVANCED TECHNOLOGIES, INC.; ZIPTRONIX, INC.; DIGITALOPTICS CORPORATION; DIGITALOPTICS CORPORATION MEMS; DTS, LLC; DTS, INC.; PHORUS, INC.; IBIQUITY DIGITAL CORPORATION
To: ROYAL BANK OF CANADA, AS COLLATERAL AGENT
Reel/Frame 040797/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2012
From: HABA, BELGACEM; ZOHNI, WAEL; CRISP, RICHARD DEWITT
To: TESSERA, INC.
Reel/Frame 027690/0118 →
Priority Claims (1)
KR 10-2010-0129888 · Dec 17, 2010 · national
Continuity (1)
Related Publication 20120155042A1 · Jun 21, 2012