IP Library › Granted Patent US 9,207,729
Granted Patent B2
US 9,207,729 · App. 14/297,580 · Granted Dec 8, 2015

Computer Architecture

Inventors: Brett W. Degner (Menlo Park, CA); Caitlin Elizabeth Kalinowski (San Francisco, CA); Richard D. Kosoglow (Sunnyvale, CA); Joshua D. Banko (Palo Alto, CA); David H. Narajowski (Los Gatos, CA); Jonathan L. Berk (Mountain View, CA); Michael E. Leclerc (Sunnyvale, CA); Michael D. McBroom (Leonard, TX); Asif Iqbal (Los Altos Hills, CA); Paul S. Michelsen (San Jose, CA); Mark K. Sin (Santa Clara, CA); Paul A. Baker (Los Altos, CA); Harold L. Sontag (Gilroy, CA); Wai Ching Yuen (Palo Alto, CA); Matthew P. Casebolt (Fremont, CA); Kevin S. Fetterman (Los Altos, CA); Alexander C. Calkins (San Francisco, CA); Daniel L. McBroom (Leonard, TX)
Assignee: Apple Inc.
G06F1/20G02B6/0001G06F1/181G06F1/182G06F1/183G06F1/185G06F1/188G06F3/00G08B5/36G08B21/18H05K1/0203H05K5/03H05K7/2039H05K7/20145H05K7/20172H05K7/20163
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Quick Facts
Patent No.
US 9,207,729
App. No.
14/297,580
Granted
Dec 8, 2015
Kind
B2
Abstract

An internal component and external interface arrangement for a cylindrical compact computing system is described that includes at least a structural heat sink having triangular shape disposed within a cylindrical volume defined by a cylindrical housing. A computing engine having a generally triangular shape is described having internal components that include a graphics processing unit (GPU) board, a central processing unit (CPU) board, an input/output (I/O) interface board, an interconnect board, and a power supply unit (PSU).

Claims (18)

1. A desktop computing system, comprising:

a computing engine positioned within a cylindrical housing that defines a cylindrical volume having a longitudinal axis; and

a thermal management system closely coupled with the computing engine wherein the thermal management system responds directly to a change in an activity level of the computing engine in real time and comprises a heat sink and an air mover configured to move an amount of air through the cylindrical volume, three planar walls that enclose and define a central thermal zone having a triangular cross section, and a cooling fin that spans the central thermal zone from a first wall to at least a second wall.

2. The desktop computing system as recited in claim 1 , wherein the heat sink further comprises a structural support that provides structural support for the computing engine.

3. The desktop computing system as recited in claim 2 , wherein the cooling fin transfers heat received from the computing engine to a portion of the amount of air moving through the cylindrical volume.

4. The desktop computing system as recited in claim 3 , wherein the central thermal zone is generally parallel to the longitudinal axis.

5. The desktop computing system as recited in claim 4 , wherein an overall shape of the computing engine conforms to an overall shape of the heat sink.

6. The desktop computing system as recited in claim 5 , wherein the cooling fin is one of a number of cooling fins that span the central thermal zone, wherein some of the number of cooling fins extend from the first wall to the at least a second wall whereas a remaining number of cooling fins extend from the first wall to a third wall.

7. The desktop computing system as recited in claim 1 , wherein the activity level of the computing engine corresponds to a computational processing rate.

8. The desktop computing system as recited in claim 7 , wherein the thermal management system directs the air mover to provide the amount of air through the central thermal zone at a velocity that is commensurate with the activity level of the computing engine.

9. The desktop computing system as recited in claim 1 , wherein the cylindrical volume comprises an air passage spanning an entire length of the cylindrical housing.

10. The desktop computing system as recited in claim 9 , wherein the air mover is configured to: draw the amount of air from outside the cylindrical housing and move the amount of air into the air passage, move the amount of air through the air passage, and expel the amount of air from the air passage to an external environment.

11. The desktop computing system as recited in claim 10 , wherein the amount of air that moves through the air passage is in accordance with the activity level of the computing engine.

12. The desktop computing system as recited in claim 11 , wherein the air passage comprises a central air passage and a peripheral air passage.

13. The desktop computing system as recited in claim 12 , wherein the amount of air is split in to a central airflow that moves through the central air passage and a peripheral airflow that moves through the peripheral air passage, wherein the central airflow and the peripheral airflow are related to the activity level of the computing engine.

14. The desktop computing system as recited in claim 13 wherein at least a portion of the computing engine is mounted to and supported by at least one of plurality of planar walls.

15. The desktop computing system as recited in claim 14 , wherein a shape of the computing engine conforms to a shape of the heat sink.

16. The desktop computing system as recited in claim 1 , wherein a velocity of the amount of air moving through the central thermal zone is related to an activity level of the computing engine.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2014
From: DEGNER, BRETT W.; KALINOWSKI, CAITLIN ELIZABETH; KOSOGLOW, RICHARD D.; BANKO, JOSHUA D.; NARAJOWSKI, DAVID H.; BERK, JONATHAN L.; LECLERC, MICHAEL E.; MCBROOM, MICHAEL D.; IQBAL, ASIF; MICHELSEN, PAUL S.; SIN, MARK K.; BAKER, PAUL A.; SONTAG, HAROLD L.; YUEN, WAI CHING; CASEBOLT, MATTHEW P.; FETTERMAN, KEVIN S.; CALKINS, ALEXANDER C.; MCBROOM, DANIEL L.
To: APPLE INC.
Reel/Frame 033762/0163 →
Continuity (5)
Provisional Application 61832698 · Jun 7, 2013
Provisional Application 61832709 · Jun 7, 2013
Provisional Application 61832695 · Jun 7, 2013
Provisional Application 61832633 · Jun 7, 2013
Related Publication 20140362576A1 · Dec 11, 2014