IP Library › Granted Patent US 10,902,999
Granted Patent B2
US 10,902,999 · App. 16/386,204 · Granted Jan 26, 2021

Tablet computer stand with near field coupling enhancement

Inventor: David L. Henty (Newport Beach, CA)
Assignee: Ezero Technologies LLC
H01F38/14A45F5/00F16B1/00F16M11/041F16M11/06F16M11/40H01Q1/2258A45F2200/0525F16B2001/0035F16B2001/0064H01F2038/143H04B5/0081
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Quick Facts
Patent No.
US 10,902,999
App. No.
16/386,204
Granted
Jan 26, 2021
Kind
B2
Abstract

A tablet stand is disclosed which incorporates a near field antenna configuration which couples to a near field antenna in the back of a tablet and provides a near field antenna coupling region for near field communication at the front of the tablet. The stand may be completely passive and use conductive antenna elements and passive resonance matching circuit elements to provide efficient coupling. In another aspect a thin profile passive keyboard adapted for use with a near field enabled tablet is provided. In another aspect a mounting bracket or holder, embedded antenna, and passive keyboard combination is provided adapted for converting a tablet into a notebook type configuration.

Claims (27)

1. A stand for a portable device having a near field communication capability and antenna, comprising:

a first section;

a second section having a device support surface adapted to receive at least a portion of the portable device, the second section having a near field coupling antenna; and

a third section connected to the first or second section and wherein at least two of the sections are configurable to form a stand configuration having an angled side view with an angled device support surface, wherein the first section or third section includes a second near field coupling antenna coupled to the near field coupling antenna in the second section via a wired connection.

2. A stand for a portable device as set out in claim 1 , wherein the first, second and third sections are further reconfigurable to a flat configuration.

3. A stand for a portable device as set out in claim 2 , wherein one or more of the sections include means to attach to the portable device in said flat configuration.

4. A stand for a portable device as set out in claim 3 , wherein said means to attach to the portable device comprises a magnet.

5. A stand for a portable device as set out in claim 1 , wherein the first section is reconfigurable from a first stand configuration wherein the first section is behind the portable device to a second stand configuration wherein the first section extends in front of the portable device.

6. A stand for a portable device as set out in claim 1 , wherein the first section comprises an electrical connection to said near field coupling antenna.

7. A stand for a portable device as set out in claim 6 , wherein the electrical connection to said near field coupling antenna comprises a transmission line.

8. A stand for a portable device as set out in claim 1 , wherein the first section comprises a second portion of said near field coupling antenna.

9. A stand for a portable device as set out in claim 1 , wherein the first section is coupled to receive and transmit data to and from the near field coupling antenna.

10. A method for providing at least one of data and power transfer between a portable device and a second device via a stand, the method comprising:

providing a stand, the stand comprising:

a first section;

a second section having a device support surface adapted to receive at least a portion of the portable device, the second section having a first magnetic coupling structure; and

a third section connected to the first or second section and wherein at least two of the sections are configurable to form a stand configuration having an angled side view with an angled device support surface,

wherein at least one of the first and second section have a second magnetic coupling structure, wherein the first and second magnetic coupling structures are connected by a wired connection,

configuring the portable device on the device support surface of the second section in proximity to the first magnetic coupling structure;

configuring at least a portion of the second device in proximity to the second magnetic coupling structure; and

providing at least one of power and data transfer between the portable device and the second device via plural sections of the stand through the wired connection and magnetic coupling structures.

11. A method as set out in claim 10 , wherein the wired connection comprises a transmission line with impedance matched to the first and second magnetic coupling structures.

12. A method as set out in claim 10 , wherein the first and second magnetic coupling structures comprise conductive coils.

13. A method as set out in claim 10 , wherein the portable device comprises a third magnetic coupling structure and the second device comprises a fourth magnetic coupling structure.

14. A method as set out in claim 13 , wherein the third magnetic coupling structure of the portable device is configured in proximity to the first magnetic coupling structure and the fourth magnetic coupling structure of the second device is configured in proximity to the second magnetic coupling structure.

15. A method as set out in claim 10 , wherein the portable device comprises a tablet computer.

16. A method as set out in claim 10 , wherein the second device comprises a battery free device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 22, 2020
From: HENTY, DAVID L
To: EZERO TECHNOLOGIES LLC
Reel/Frame 054734/0216 →
Continuity (4)
Continuation 15040992 · Feb 10, 2016
Division 13888217 · May 6, 2013
Provisional Application 61643132 · May 4, 2012
Related Publication 20200013548A1 · Jan 9, 2020
Cited By (1)
US 12,265,429