IP Library Granted Patent US 8,890,285
Granted Patent B2
US 8,890,285 · App. 14/041,804 · Granted Nov 18, 2014

Vertically integrated systems

Inventors: Alan J. O'Donnell (Castletroy, IE); Santiago Iriarte (Dooradoyle, IE); Mark J. Murphy (Kilmore, IE); Colin G. Lyden (Baltimore, IE); Gary Casey (Prospect, IE); Eoin Edward English (Pallasgreen, IE)
Assignee: Analog Devices, Inc.
G01N27/4148H01L25/16H01L23/481B81B7/00G01N27/26H01L25/167H01L27/14H01L27/15H01L28/00H01L31/0392H01L31/0583H01L31/0586H01F17/00H01L28/10H01L28/20H01L28/60H01L28/82H01L28/86H01L28/90H01L21/82H01L27/0694H01L2924/09701H01L2224/0557H01L2924/19104H01L23/3677H01L23/38H01L23/473H01L2924/10253Y02E10/50
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Quick Facts
Patent No.
US 8,890,285
App. No.
14/041,804
Granted
Nov 18, 2014
Kind
B2
Abstract

Embodiments of the present invention provide an integrated circuit system including a first active layer fabricated on a front side of a semiconductor die and a second pre-fabricated layer on a back side of the semiconductor die and having electrical components embodied therein, wherein the electrical components include at least one discrete passive component. The integrated circuit system also includes at least one electrical path coupling the first active layer and the second pre-fabricated layer.

Claims (52)

1. An integrated circuit system, comprising:

a substrate;

a first semiconductor die on the substrate, the first semiconductor die including an active layer fabricated on a front side and a components layer on the back side, wherein the components layer includes a discrete passive component;

a second semiconductor die on the substrate configured to operate at a different operating voltage than the first semiconductor die when the integrated circuit system is operated;

an isolation barrier configured to electrically isolate the first and second semiconductor dies from each other; and

a communication circuit configured to communicate data between the first and second semiconductor dies, the communication circuit comprising a magnetic circuit.

2. The integrated circuit system of claim 1 , wherein the magnetic circuit includes a pair of inductor coils configured to magnetically couple electrical circuits between the two semiconductor dies.

3. The integrated circuit system of claim 1 , wherein the semiconductor dies are positioned side-by-side with the isolation barrier in between.

4. The integrated circuit system of claim 1 , wherein the semiconductor dies are positioned on top of each other with the isolation barrier in between.

5. The integrated circuit system of claim 1 , wherein the semiconductor dies are fabricated using two different techniques.

6. The integrated circuit system of claim 1 , wherein the magnetic circuit comprises a transformer.

7. The integrated circuit system of claim 1 , wherein the magnetic circuit comprises an inductor configured to control access of the passive component to the active circuit.

8. An integrated circuit system, comprising:

a substrate;

a first semiconductor die on the substrate, the first semiconductor die including an active layer fabricated on a front side and a components layer on the back side, wherein the components layer includes a discrete passive component;

a second semiconductor die on the substrate configured to operate at a different operating voltage than the first semiconductor die when the integrated circuit system is operated;

an isolation barrier configured to electrically isolate the first and second semiconductor dies from each other; and

a communication circuit configured to communicate data between the first and second semiconductor dies, wherein the communication circuit is an optics circuit configured to maintain electrical isolation between the two semiconductors dies.

9. The integrated circuit system of claim 8 , wherein the optics circuit includes a photo transistor and an LED.

10. The integrated circuit system of claim 8 , wherein the optics circuit supports bidirectional communication between the two semiconductor dies.

11. The integrated circuit system of claim 10 , wherein the optics circuit includes two pairs of phototransistors and an LED, with a pair located on each semiconductor die.

12. The integrated circuit system of claim 8 , further comprising a waveguide layer.

13. An integrated circuit system, comprising:

a substrate;

a first semiconductor die on the substrate, the first semiconductor die including an active layer fabricated on a front side;

a components layer vertically integrated with the first semiconductor die, wherein the components layer includes a discrete passive component;

a second semiconductor die on the substrate configured to operate at a different operating voltage than the first semiconductor die when the integrated circuit system is operated, wherein the second semiconductor die includes a microelectromechanical (MEMS) element;

an isolation barrier configured to electrically isolate the first and second semiconductor dies from each other; and

a communication circuit configured to communicate data between the first and second semiconductor dies.

14. A device, comprising:

a circuit board;

a vertically integrated circuit on the circuit board, comprising:

a substrate,

a first semiconductor die on the substrate, the first semiconductor die including an active layer fabricated on a front side and a components layer on the back side, wherein the components include a discrete passive component,

a second semiconductor die on the substrate configured to operate at a different operating voltage than the first semiconductor die when the vertically integrated circuit is operated,

an isolation barrier configured to electrically isolate the first and second semiconductor dies from each other, and

a communication circuit configured to communicate signals between the first and second semiconductor dies, and to maintain electrical isolation between the first and second semiconductor dies; and

a processor coupled to the circuit board.

15. The device of claim 14 , further comprising a user interface.

16. A device comprising an integrated circuit system, the integrated circuit system comprising:

a substrate;

a first semiconductor die on the substrate, the first semiconductor die characterized by a first operating voltage and including an active layer fabricated on a front side;

a component layer vertically integrated with the first semiconductor die, wherein the component layer includes at least one discrete passive component;

a second semiconductor die on the substrate characterized by a second operating voltage, the second operating voltage being different than the first operating voltage;

an isolation barrier configured to electrically isolate the first and second semiconductor dies from each other; and

a communication circuit configured to communicate data between the first and second semiconductor dies above the substrate, wherein the communication circuit is configured to maintain electrical isolation between the first and second semiconductor dies.

17. The device of claim 16 , wherein the communications circuit is an optics circuit comprising a light emitter, a photo transistor, and a waveguide between the light emitter and the photo transistor.

18. The device of claim 16 , wherein the communications circuit comprises a pair of inductors configured to magnetically couple circuits between the first semiconductor die and the second semiconductor die.

19. The device of claim 16 , wherein the communications circuit is configured to activate and deactivate the discrete passive component.

20. The device of claim 16 , wherein the first and second semiconductor dies are positioned side-by-side with the isolation barrier in between.

21. The device of claim 16 , wherein the first and second semiconductor dies are positioned on top of each other with the isolation barrier in between.

22. The device of claim 16 , wherein the component layer is disposed on a back side of the first semiconductor die, and wherein the device further comprises an electrical path coupling the active layer and the discrete passive component.

Continuity (2)
Continuation 12975847 · Dec 22, 2010
Related Publication 20140035630A1 · Feb 6, 2014