IP Library Granted Patent US 10,229,407
Granted Patent B2
US 10,229,407 · App. 15/627,440 · Granted Mar 12, 2019

Method of providing a gateway between mobile devices and radio frequency identification (RFID) enabled readers

Inventor: Jason Dean Hart (Fremont, CA)
G06Q20/3278G06F21/34G06K7/10366G06K19/07749G06Q20/352G06Q20/40G07C9/00134H04B5/0031H04B5/0037H04L63/0492H04W92/06G07C2009/0019Y02D70/42
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Quick Facts
Patent No.
US 10,229,407
App. No.
15/627,440
Granted
Mar 12, 2019
Kind
B2
Abstract

An RFID magnetic field powered translating device that acts as a gateway between mobile devices and radio frequency identification (RFID) enabled readers. The gateway enables the portable device to emulate access credentials for physical access, computer credentials, licenses and payment cards using Bluetooth communication between the portable mobile device and translating device; and RFID emulation at either 125 khz or 13.56 MHz between the translating device and the RFID reader.

Claims (66)

1. A method of providing a gateway between a mobile devices and radio frequency identification (RFID) enabled readers, the method comprises the steps of:

(A) providing a RFID reader, a translating adapter, and a portable computing device;

(B) providing a set of user credentials stored on the portable computing device;

(C) sending the set of user credentials from the portable computing device to the translating adapter, if the portable computing device is positioned proximal to the translating adapter;

(D) converting the set of user credentials into an RFID signal with a microprocessor of the translating adapter;

(E) sending the RFID signal from the translating adapter to the RFID reader;

(F) executing an authentication process for the RFID signal, after the RFID reader receives the RFID signal;

(G) providing a power supply for the translator adapter;

(H) inductively harvesting a quantity of electrical power from the RFID reader to the power supply before or after step (E);

outputting a powering duty cycle with the RFID reader;

generating a mimicking signal with the translating adapter, wherein the mimicking signal is used to simulate a partial or complete arbitrary RFID card;

lengthening power-on portions of the powering duty cycle with the RFID reader, after the RFID reader receives the mimicking signal from the translating adapter; and

executing step (H) during each of the power-on portions of the powering duty cycle.

2. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps of:

providing at least one power inductive coupler, a capacitor, and a power bus for the power supply;

sending a quantity of electromagnetic (EM) field energy from the RFID reader to the power inductive coupler;

converting the quantity of EM field energy into a quantity of EM potential energy with the power inductive coupler;

storing the quantity of EM potential energy with the capacitor; and

distributing the quantity of EM potential energy from the capacitor to other electronic components of the translating adapter with the power bus.

3. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps of:

managing periodic execution of step (H) at a specified time interval.

4. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps of:

providing a short-range communication module for the portable communication device and a short-range communication module for the translating adapter, wherein the short-range communication module for the translating adapter is electronically connected to the microprocessor of the translating adapter; and

routing the set of user credentials from the short-range communication module for the portable communication device to short-range communication module for the translating adapter during step(C).

5. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 4 , wherein the short-range communication module for the translating adapter is a 2.4 Gigahertz (GHz) active RF transceiver.

6. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 4 , wherein the set of user credentials is communicated as a set of application protocol data units (APDU).

7. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps of:

providing at least one remote server, a wireless networking module for the portable computing device, and a wireless networking module for the translating adapter, wherein the wireless networking module for the translating adapter is electronically connected to the microprocessor of the translating adapter; and

routing the set of user credentials from the wireless networking module for the portable computing device, through the at least one remote server, and to the wireless networking module for the translating adapter during step (C).

8. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 5 , wherein the wireless networking module for the translating adapter is 5.8 GHz active RF transceiver.

9. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps of:

providing a secure storage for the translator adapter, wherein a digital key is stored on the secure storage;

encrypting the set of user credentials with the portable computing device before step (C); and

decoding the set of user credential according the digital key with the microprocessor of the translating adapter.

10. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps of:

providing a RFID magnetically inductive antenna for the translating adapter, wherein the RFID magnetically inductive antenna for the translating adapter is electronically connected to the microprocessor for the translating adapter; and

routing the RFID signal from the RFID magnetically inductive antenna to the RFID reader during step (E).

11. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 10 , wherein the RFID magnetically inductive antenna includes an RFID low-frequency passive-and-active transceiver.

12. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 10 , wherein the RFID magnetically inductive antenna includes an RFID high-frequency passive-and-active transceiver.

13. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps of:

providing at least one administrator computing device, wherein the administrator computing device is communicably coupled to the RFID reader;

providing a plurality of authenticated signatures stored on the administrator computing device;

receiving the RFID signal with the administrator computing device;

comparing the RFID signal to each authenticated signature with the administrator computing device in order to identify a matching signature from the plurality of authenticated signatures; and

verifying the RFID signal with the administrator computing device, if the matching signature is identified from the plurality of signatures.

14. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps of:

providing at least one administrator computing device, wherein the administrator computing device is communicably coupled to the RFID reader;

receiving a new signature request through the administrator computing device;

generating a new authenticated signature with the administrator computing device;

sending the new authenticated signature from the administrator computing device to the RFID reader; and

appending the new authenticated signature into the plurality of authenticated signatures with the RFID reader.

15. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 , wherein the translating adapter is encapsulated into a sticker housing.

16. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 15 comprises the steps:

providing a pressure-sensitive adhesive surface and a sealing cover for the sticker housing, wherein the sealing cover is superimposed onto the pressure-sensitive adhesive surface;

peeling the sealing cover off of the pressure-sensitive adhesive surface; and

pressing the pressure-sensitive adhesive surface against the RFID reader before step (A).

17. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 15 comprises the steps:

providing a pressure-sensitive adhesive surface and a sealing cover for the sticker housing, wherein the sealing cover is superimposed onto the pressure-sensitive adhesive surface;

peeling the sealing cover off of the pressure-sensitive adhesive surface; and

pressing the pressure-sensitive adhesive surface against the portable computing device before step (A).

18. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 , wherein the translating adapter is configured to be transparent or translucent.

19. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 comprises the steps:

providing a visual indicator for the translator adapter, wherein the visual indicator for the translator adapter is electronically connected to the microprocessor for the translator adapter;

monitoring a communication-capability status of the translator adapter; and

displaying the communication-capability status through the visual indicator.

20. The method of providing a gateway between mobile devices and traditional RFID enabled readers, the method as claimed in claim 1 , wherein the set of user credentials is provided in a readily-convertible-into-RFID format.

Assignments (4)
SECURITY INTEREST Recorded Apr 20, 2023
From: SAFETRUST INC.
To: ALASTAR PARTNERS LP; STEPHEN M. KELLEN 2004 TRUST FBO ANDREW GUNDLACH; STEPHEN M. KELLEN 2004 TRUST FBO ANNABELLE GARRETT; STEPHEN M. KELLEN 2004 TRUST FBO CAROLINE L. KELLEN; STEPHEN M. KELLEN 2004 TRUST FBO CHRISTOPHER N. KELLEN; WILSON CAPITAL MANAGEMENT
Reel/Frame 063384/0615 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2023
From: HART, JASON
To: SAFETRUST INC
Reel/Frame 063330/0562 →
RELEASE OF SECURITY INTEREST Recorded Apr 14, 2023
From: VENTURE LENDING & LEASING VIII, INC.; VENTURE LENDING & LEASING IX, INC.
To: SAFETRUST INC
Reel/Frame 063332/0144 →
SECURITY INTEREST Recorded Jul 12, 2018
From: SAFETRUST INC.
To: VENTURE LENDING & LEASING IX, INC.; VENTURE LENDING & LEASING VIII, INC.
Reel/Frame 046574/0001 →
Continuity (2)
Provisional Application 62351667 · Jun 17, 2016
Related Publication 20170364905A1 · Dec 21, 2017