IP Library Granted Patent US 7,893,815
Granted Patent B2
US 7,893,815 · App. 11/580,846 · Granted Feb 22, 2011

Method for selecting one or several transponders

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Quick Facts
Patent No.
US 7,893,815
App. No.
11/580,846
Granted
Feb 22, 2011
Kind
B2
Abstract

A method for selecting at least one transponder or a sensor in RFID or remote-sensor systems provided with a plurality of transponders or sensors (tags), in particular in systems provided with a plurality of reading devices, is disclosed. The inventive method includes the feature that in pre-selecting individual transponders or sensors by at least one reading device and, after the successful selection of at least one transponder or sensor, data, in particular for conforming the preselection, is asynchronously transmitted during at least one protocol section from the transponder or sensor to the reading device. The invention makes it possible to efficiently reduce the potentially disturbing control signals of the reading device(s), thereby improving the transmission characteristics of said systems.

Claims (46)

1. A method for selecting at least one transponder or sensor in RFID or remote sensor systems having a plurality of transponders or sensors with at least one reading device, the method comprising:

deterministically preselecting individual transponders or sensors by at least one reading device; and

transmitting data for confirming, after preliminary selection of at least one transponder or sensor has taken place, asynchronously from the transponder or sensor to the reading device during at least one protocol segment,

wherein the individual transponders or sensors is deterministically preselected based on a bitwise comparison of a unique, statically defined identifying bit sequence with a selection bit sequence transmitted by the reading device.

2. The method according to claim 1 , wherein a first bit sequence with a length of m bits is generated by the transponders or sensors for purposes of selection.

3. The method according to claim 2 , wherein the first bit sequence is generated when an asynchronous transmission mode has been selected for a return data link from the transponders or sensors to the reading device.

4. The method according to claim 2 , wherein the first bit sequence is produced from a random number and/or a memory content.

5. The method according to claim 4 , wherein a bit length of the random number is adjusted or reduced, as a function of a progress of the bitwise comparison.

6. The method according to claim 4 , wherein the preselected transponder or sensor transmits the random number and optionally associated check data or CRC data.

7. The method according to claim 1 , wherein, for the purpose of preselection of the transponder or sensor, the identifying bit sequence has a length of n bits, where n≦m.

8. The method according to claim 7 , wherein the identifying bit sequence is extracted from the first bit sequence.

9. The method according to claim 1 , wherein, for the purpose of preselecting a transponder or sensor, a selection bit sequence is transmitted by the reading device to the transponders or sensors in a bitwise manner and is compared bitwise with the identifying bit sequence.

10. The method according to claim 9 , wherein, as determined by the comparison, a transponder or sensor is selected and the selection process is terminated by a control end signal from the reading device.

11. The method according to claim 10 , wherein, before transmitting the selection bit sequence, the reading device transmits header data containing reference symbols for recognizing the control end signal.

12. The method according to claim 10 wherein, before transmitting the selection bit sequence, the reading device transmits header data containing reference symbols for selecting an asynchronous return data link from the transponder or sensor to the reading device.

13. The method according to claim 1 , wherein payload data and optionally additional check symbols are transmitted during the at least one protocol segment.

14. The method according to claim 13 , wherein the check symbols are transmitted together with the payload data within individual data bits of the latter.

15. The method according to claim 1 , wherein the at least one protocol segment is terminated by an additional control signal from the reading device.

16. The method according to claim 1 , wherein the at least one protocol segment is followed by an acknowledgement segment by means of which a preliminary selection of a transponder or sensor is confirmed or rejected by the reading device.

17. The method according to claim 16 , wherein the reading device or the preselected transponder or sensor transmits check data, such as CRC data, which are compared with complementary check data in a respective receiver to confirm or discard the preliminary selection.

18. The method according to claim 16 , wherein the check data are independent from optional check symbols of the asynchronous protocol segment.

19. The method according to claim 16 , wherein the acknowledgement segment is transmitted in a synchronous mode.

20. The method according to claim 19 , wherein, in order to confirm the preliminary selection, a confirmation signal is transmitted to the transponder or sensor by the reading device in the acknowledgement segment.

21. The method according to claim 19 , wherein, if a confirmation signal is absent, at least within a confirmation period, the transponder or sensor discards its preliminary selection.

22. The method according to claim 1 , wherein, in order to activate at least the data transmission during the at least one protocol segment, a corresponding activation command is transmitted by the reading device to the transponders or sensors.

23. The method according to claim 22 , wherein the activation command is stored in the transponders or sensors, and is executed again upon subsequent reception of a repeat command.

24. The method according to claim 23 , wherein the repeat command is shortened relative to the activation command.

25. The method according to claim 23 , wherein check data of the repeat command are checked before repeated execution of the activation command.

26. The method according to claim 23 , wherein the repeat command contains a control symbol to activate a transmission of check symbols together with payload data within individual data bits of the latter.

27. A method for controlling a data transmission or an anticollision procedure, according to claim 1 , in RFID or remote sensing systems having a plurality of transponders or sensors, wherein a command structure transmitted by a reading device to at least one transponder or sensor for transmission of data by the transponder or sensor is executed and stored by the transponder or sensor with additional parameter and/or address extensions, and wherein the stored command structure is executed again following subsequent reception of a repeat command.

28. The method according to claim 27 , wherein check data of the repeat command are checked before repeated execution of the activation command.

29. The method according to claim 27 , wherein the command structure contains, as an extension, a pointer to a memory block and a bit address of the tag.

30. The method according to claim 27 , wherein the repeat command is shortened relative to the activation command.

31. The method according to claim 27 , wherein reception of the repeat command prevents storage thereof.

32. A method for controlling a data transmission or an anticollision procedure in RFID or remote sensing systems having a plurality of transponders or sensors,

wherein a command structure transmitted by a reading device to at least one transponder or sensor for transmission of data by the transponder or sensor is executed and stored by the transponder or sensor with additional parameter and/or address extensions, and wherein the stored command structure is executed again following subsequent reception of a repeat command, and

wherein the repeat command contains a control symbol to activate a transmission of check symbols together with payload data within individual data bits of the latter, and

wherein the method comprises:

deterministically preselecting individual transponders or sensors by at least one reading device; and

transmitting data for confirming, after preliminary selection of at least one transponder or sensor has taken place, asynchronously from the transponder or sensor to the reading device during at least one protocol segment.

33. A method for controlling a data transmission or an anticollision procedure in RFID or remote sensing systems having a plurality of transponders or sensors,

wherein a command structure transmitted by a reading device to at least one transponder or sensor for transmission of data by the transponder or sensor is executed and stored by the transponder or sensor with additional parameter and/or address extensions, and wherein the stored command structure is executed again following subsequent reception of a repeat command, and

wherein the repeat command contains an acknowledgement bit to confirm or discard the preliminary selection of a transponder or sensor, and

wherein the method comprises:

deterministically preselecting individual transponders or sensors by at least one reading device; and

transmitting data for confirming, after preliminary selection of at least one transponder or sensor has taken place, asynchronously from the transponder or sensor to the reading device during at least one protocol segment.

Assignments (19)
RELEASE OF SECURITY INTEREST Recorded Mar 14, 2022
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
Reel/Frame 060894/0437 →
RELEASE OF SECURITY INTEREST Recorded Mar 11, 2022
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
Reel/Frame 059363/0001 →
RELEASE OF SECURITY INTEREST Recorded Mar 10, 2022
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
Reel/Frame 059863/0400 →
RELEASE OF SECURITY INTEREST Recorded Mar 9, 2022
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
Reel/Frame 059358/0001 →
RELEASE OF SECURITY INTEREST Recorded Feb 28, 2022
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: ATMEL CORPORATION
Reel/Frame 059262/0105 →
RELEASE OF SECURITY INTEREST Recorded Feb 25, 2022
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
Reel/Frame 059333/0222 →
SECURITY INTEREST Recorded Jun 4, 2021
From: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 057935/0474 →
SECURITY INTEREST Recorded Dec 24, 2020
From: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
Reel/Frame 055671/0612 →
SECURITY INTEREST Recorded Jun 5, 2020
From: MICROCHIP TECHNOLOGY INC.; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION
Reel/Frame 053468/0705 →
RELEASE OF SECURITY INTEREST Recorded May 30, 2020
From: JPMORGAN CHASE BANK, N.A, AS ADMINISTRATIVE AGENT
To: MICROCHIP TECHNOLOGY INC.; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
Reel/Frame 053466/0011 →
SECURITY INTEREST Recorded Apr 24, 2020
From: MICROCHIP TECHNOLOGY INC.; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 053311/0305 →
SECURITY INTEREST Recorded Sep 18, 2018
From: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS NOTES COLLATERAL AGENT
Reel/Frame 047103/0206 →
SECURITY INTEREST Recorded Jun 25, 2018
From: MICROCHIP TECHNOLOGY INCORPORATED; SILICON STORAGE TECHNOLOGY, INC.; ATMEL CORPORATION; MICROSEMI CORPORATION; MICROSEMI STORAGE SOLUTIONS, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 046426/0001 →
SECURITY INTEREST Recorded Feb 10, 2017
From: ATMEL CORPORATION
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 041715/0747 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENT COLLATERAL Recorded Apr 7, 2016
From: MORGAN STANLEY SENIOR FUNDING, INC.
To: ATMEL CORPORATION
Reel/Frame 038376/0001 →
PATENT SECURITY AGREEMENT Recorded Jan 3, 2014
From: ATMEL CORPORATION
To: MORGAN STANLEY SENIOR FUNDING, INC. AS ADMINISTRATIVE AGENT
Reel/Frame 031912/0173 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2011
From: ATMEL AUTOMOTIVE GMBH
To: ATMEL CORPORATION
Reel/Frame 025899/0710 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2009
From: ATMEL GERMANY GMBH
To: ATMEL AUTOMOTIVE GMBH
Reel/Frame 023205/0838 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2006
From: FRIEDRICH, ULRICH
To: ATMEL GERMANY GMBH
Reel/Frame 018530/0054 →