Patent · US2009215394A1 · A1 · US
Wireless translation device
- (11) Publication number
- US2009215394A1
- (21) Application number
- 12/037,826
- (22) Filing date
- 2008-02-26
- (30) Priority date
- 2008-02-26
- (43) Publication date
- 2009-08-27
- (51) IPC
- G06Q 20/00; H04B 7/00
- (52) CPC
- H04W Wireless communication networks: 4/18, 84/18
- G06Q Information and communication technology [ICT] specially adapted for administrative, commercial, financial, managerial or supervisory purposes; systems or methods specially adapted for administrative, commercial, financial, managerial or supervisory purposes, not otherwise provided for: 20/202, 20/204, 20/32, 20/3223, 20/3265, 20/327, 20/352, 20/353
- (73) Assignee
- First Data Corp
- (72) Inventors
- Sunil Dewan
- (54) Title
- Wireless translation device
- (57) Abstract
A translator for translating wireless communications. The translator includes a first antenna configured to carry signals between the wireless translator and a contactless payment reader, and a second antenna configured to carry signals between the wireless translator and a Bluetooth-enabled device. Circuitry operably coupled to both antennas establishes wireless communication with the contactless payment reader via the first antenna and receives from the contactless payment reader a signal comprising a request for information. The circuitry establishes wireless communication with the Bluetooth-enabled device via the second antenna, and requests the information from the Bluetooth-enabled device. The circuitry receives the information from the Bluetooth-enabled device, and relays the information to the contactless payment reader.
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Claims (1)
- A wireless translator for translating wireless communications, the translator comprising: a first antenna configured to carry signals between the wireless translator and a contactless reader; a second antenna configured to carry signals between the wireless translator and a Bluetooth-enabled device; and circuitry operably coupled to both antennas, the circuitry configured to establish wireless communication with the contactless reader via the first antenna; receive from the contactless reader a signal comprising a request for information; establish wireless communication with the Bluetooth-enabled device via the second antenna; request the information from the Bluetooth-enabled device; receive the information from the Bluetooth-enabled device; and relay the information to the contactless reader. 2. The wireless translator of claim 1, wherein the circuitry is powered by energy derived from the signal from the contactless reader. 3. The wireless translator of claim 1, further comprising a battery, and wherein the circuitry is powered by the battery. 4. The wireless translator of claim 3, further comprising a switch having first and second positions such that the circuitry does not draw power from the battery when the switch is in the first position, and the circuitry draws power from the battery when the switch is in the second position. 5. The wireless translator of claim 1, wherein the circuitry is further configured to authenticate the translator to the Bluetooth-enabled device. 6. The wireless translator of claim 5, wherein authenticating the translator comprises validating a digital certificate stored on the translator with a digital certificate stored on the Bluetooth-enabled device. 7. The wireless translator of claim 5, wherein authenticating the translator comprises comparing an identification string supplied to the Bluetooth-enabled device with an identification string stored in the wireless translator. 8. The wireless translator of claim 1, wherein the circuitry is further configured to communicate with the contactless reader using an ISO 14443 protocol or an ISO 15693 protocol. 9. The wireless translator of claim 1, wherein the contactless reader is a contactless payment reader, and the relayed information is payment information used in a contactless payment transaction. 10. The wireless translator of claim 1, further comprising: a generally flat carrier that holds the first and second antennas and the circuitry; and an adhesive on one side of the generally flat carrier. 11. The wireless translator of claim 10, wherein the carrier, antennas, and circuitry are comprised in a sticker configured to adhere to the Bluetooth-enabled device. 12. The wireless translator of claim 1, wherein the Bluetooth-enabled device is a cellular telephone, a personal digital assistant, or a portable music player. 13. A method of translating a signal, comprising: receiving a radio signal from a contactless reader, the signal comprising a request for information; establishing contact with a Bluetooth-enabled device via a Bluetooth interface; requesting from the Bluetooth-enabled device via the Bluetooth interface the information requested by the contactless reader; receiving the information from the Bluetooth-enabled device via the Bluetooth interface; and relaying the information to the contactless reader. 14. The method of claim 13, wherein the information is payment information requested at a point of sale. 15. The method of claim 13, wherein the information is identification information requested by an access control system. 16. The method of claim 13, further comprising requiring and receiving authorization from a user of the Bluetooth-enabled device before divulging the information from the Bluetooth-enabled device. 17. A system for providing information to a contactless reader, comprising: a Bluetooth-enabled device; and a wireless translator, the wireless translator configured to receive a radio signal from a contactless reader wherein the radio signal comprises a request for information, to request the information from the Bluetooth-enabled device via a Bluetooth interface, to receive the information from the Bluetooth-enabled device, and to relay the information to the contactless reader. 18. The system of claim 17, wherein the wireless translator is affixed to the Bluetooth-enabled device. 19. The system of claim 17, wherein the wireless translator is inside of the Bluetooth-enabled device. 20. The system of claim 17, wherein the wireless translator comprises circuitry for performing radio communication, and a battery electrically connected to the circuitry and supplying power to the circuitry. 21. The system of claim 17, wherein the wireless translator comprises circuitry for performing radio communication, a battery, and a switch having two positions, and wherein when the switch is in the first position the circuitry does not draw power from the battery and when the switch is in the second position the circuitry draws power from the battery. 22. A system, comprising: a contactless reader; a Bluetooth-enabled device; and a wireless translator, the wireless translator comprising a first antenna configured for communication with the contactless reader, a second antenna configured for communication with the Bluetooth-enabled device via a Bluetooth interface, and circuitry operably coupled to both antennas, the circuitry configured to translate an information request from the contactless payment reader to the Bluetooth-enabled device, to receive the requested information from the Bluetooth-enabled device via the Bluetooth interface, and to relay the information to the contactless reader. 23. The system of claim 22, wherein the contactless reader is comprised in an access control system, and the requested information is identification information enabling access. 24. A method of making a contactless payment at a point of sale, the method comprising: obtaining a Bluetooth-enabled device; provisioning the Bluetooth-enabled device with purchasing credentials; obtaining a wireless translator, the wireless translator comprising a first antenna configured for communication with a contactless payment reader, a second antenna configured for communication with the Bluetooth-enabled device via a Bluetooth interface, and circuitry operably coupled to both antennas, the circuitry configured to translate information requests from the contactless payment reader to the Bluetooth-enabled device; bringing the wireless translator within Bluetooth communication range of the Bluetooth-enabled device; and bringing the wireless translator within operating range of the contactless payment reader. 25. The method of claim 24, wherein the Bluetooth-enabled device comprises a mobile wallet holding purchasing credentials for more than one account, the method further comprising selecting, using a user interface on the Bluetooth-enabled device, an account from which to make the payment. 26. The method of claim 24, further comprising authorizing the payment.
Description
Wireless communication and devices for communicating wirelessly are becoming increasingly popular. Different applications of wireless communication require different wireless communication interfaces, protocols, frequencies, specifications, and standards, so that different devices are required. For example, contactless payment systems allow a user to effect payment for some purchases by tapping or waving a card (or other payment instrument) near a contactless payment reader at a merchant point of sale. These systems provide an alternative to “swiping” a card through a point of sale terminal to read information from a magnetic strip on the card. In a contactless payment system, a microcontroller embedded in the card typically securely holds identifying or payment information, such as the number of an account from which payments are to be made, in a memory. In some systems, when the card is brought within range of the reader, an antenna in the card derives power from a radio signal emanating from the reader, and uses the power to operate an electronic chip on the card. A financial application residing in the microcontroller initiates a sequence of commands to exchange transactional data between the contactless card and the contactless reader. Once the information is verified, a purchase can be approved and finalized very quickly. Some contactless payment systems operate on a carrier frequency of 13.56 MHz.
Another example of a wireless communication application is the interconnection of electronic devices according to the Bluetooth communication standard promulgated by Bluetooth SIG, Inc.
Citations (14)
- US5980322A
- US20020025682A1
- US20030055735A1
- US6346346B1
- US6978940B2
- US20050083177A1
- US7020486B2
- US20040235450A1
- US20060208066A1
- US7243840B2
- US20060172701A1
- US20060187052A1
- US20070175972A1
- US20070152035A1
Record as JSON
{
"publication_number": "US2009215394A1",
"country": "US",
"kind": "A1",
"title": "Wireless translation device",
"abstract": "A translator for translating wireless communications. The translator includes a first antenna configured to carry signals between the wireless translator and a contactless payment reader, and a second antenna configured to carry signals between the wireless translator and a Bluetooth-enabled device. Circuitry operably coupled to both antennas establishes wireless communication with the contactless payment reader via the first antenna and receives from the contactless payment reader a signal comprising a request for information. The circuitry establishes wireless communication with the Bluetooth-enabled device via the second antenna, and requests the information from the Bluetooth-enabled device. The circuitry receives the information from the Bluetooth-enabled device, and relays the information to the contactless payment reader.",
"claims": [
"1. A wireless translator for translating wireless communications, the translator comprising: a first antenna configured to carry signals between the wireless translator and a contactless reader; a second antenna configured to carry signals between the wireless translator and a Bluetooth-enabled device; and circuitry operably coupled to both antennas, the circuitry configured to establish wireless communication with the contactless reader via the first antenna; receive from the contactless reader a signal comprising a request for information; establish wireless communication with the Bluetooth-enabled device via the second antenna; request the information from the Bluetooth-enabled device; receive the information from the Bluetooth-enabled device; and relay the information to the contactless reader. 2. The wireless translator of claim 1, wherein the circuitry is powered by energy derived from the signal from the contactless reader. 3. The wireless translator of claim 1, further comprising a battery, and wherein the circuitry is powered by the battery. 4. The wireless translator of claim 3, further comprising a switch having first and second positions such that the circuitry does not draw power from the battery when the switch is in the first position, and the circuitry draws power from the battery when the switch is in the second position. 5. The wireless translator of claim 1, wherein the circuitry is further configured to authenticate the translator to the Bluetooth-enabled device. 6. The wireless translator of claim 5, wherein authenticating the translator comprises validating a digital certificate stored on the translator with a digital certificate stored on the Bluetooth-enabled device. 7. The wireless translator of claim 5, wherein authenticating the translator comprises comparing an identification string supplied to the Bluetooth-enabled device with an identification string stored in the wireless translator. 8. The wireless translator of claim 1, wherein the circuitry is further configured to communicate with the contactless reader using an ISO 14443 protocol or an ISO 15693 protocol. 9. The wireless translator of claim 1, wherein the contactless reader is a contactless payment reader, and the relayed information is payment information used in a contactless payment transaction. 10. The wireless translator of claim 1, further comprising: a generally flat carrier that holds the first and second antennas and the circuitry; and an adhesive on one side of the generally flat carrier. 11. The wireless translator of claim 10, wherein the carrier, antennas, and circuitry are comprised in a sticker configured to adhere to the Bluetooth-enabled device. 12. The wireless translator of claim 1, wherein the Bluetooth-enabled device is a cellular telephone, a personal digital assistant, or a portable music player. 13. A method of translating a signal, comprising: receiving a radio signal from a contactless reader, the signal comprising a request for information; establishing contact with a Bluetooth-enabled device via a Bluetooth interface; requesting from the Bluetooth-enabled device via the Bluetooth interface the information requested by the contactless reader; receiving the information from the Bluetooth-enabled device via the Bluetooth interface; and relaying the information to the contactless reader. 14. The method of claim 13, wherein the information is payment information requested at a point of sale. 15. The method of claim 13, wherein the information is identification information requested by an access control system. 16. The method of claim 13, further comprising requiring and receiving authorization from a user of the Bluetooth-enabled device before divulging the information from the Bluetooth-enabled device. 17. A system for providing information to a contactless reader, comprising: a Bluetooth-enabled device; and a wireless translator, the wireless translator configured to receive a radio signal from a contactless reader wherein the radio signal comprises a request for information, to request the information from the Bluetooth-enabled device via a Bluetooth interface, to receive the information from the Bluetooth-enabled device, and to relay the information to the contactless reader. 18. The system of claim 17, wherein the wireless translator is affixed to the Bluetooth-enabled device. 19. The system of claim 17, wherein the wireless translator is inside of the Bluetooth-enabled device. 20. The system of claim 17, wherein the wireless translator comprises circuitry for performing radio communication, and a battery electrically connected to the circuitry and supplying power to the circuitry. 21. The system of claim 17, wherein the wireless translator comprises circuitry for performing radio communication, a battery, and a switch having two positions, and wherein when the switch is in the first position the circuitry does not draw power from the battery and when the switch is in the second position the circuitry draws power from the battery. 22. A system, comprising: a contactless reader; a Bluetooth-enabled device; and a wireless translator, the wireless translator comprising a first antenna configured for communication with the contactless reader, a second antenna configured for communication with the Bluetooth-enabled device via a Bluetooth interface, and circuitry operably coupled to both antennas, the circuitry configured to translate an information request from the contactless payment reader to the Bluetooth-enabled device, to receive the requested information from the Bluetooth-enabled device via the Bluetooth interface, and to relay the information to the contactless reader. 23. The system of claim 22, wherein the contactless reader is comprised in an access control system, and the requested information is identification information enabling access. 24. A method of making a contactless payment at a point of sale, the method comprising: obtaining a Bluetooth-enabled device; provisioning the Bluetooth-enabled device with purchasing credentials; obtaining a wireless translator, the wireless translator comprising a first antenna configured for communication with a contactless payment reader, a second antenna configured for communication with the Bluetooth-enabled device via a Bluetooth interface, and circuitry operably coupled to both antennas, the circuitry configured to translate information requests from the contactless payment reader to the Bluetooth-enabled device; bringing the wireless translator within Bluetooth communication range of the Bluetooth-enabled device; and bringing the wireless translator within operating range of the contactless payment reader. 25. The method of claim 24, wherein the Bluetooth-enabled device comprises a mobile wallet holding purchasing credentials for more than one account, the method further comprising selecting, using a user interface on the Bluetooth-enabled device, an account from which to make the payment. 26. The method of claim 24, further comprising authorizing the payment."
],
"description_excerpt": "Wireless communication and devices for communicating wirelessly are becoming increasingly popular. Different applications of wireless communication require different wireless communication interfaces, protocols, frequencies, specifications, and standards, so that different devices are required. For example, contactless payment systems allow a user to effect payment for some purchases by tapping or waving a card (or other payment instrument) near a contactless payment reader at a merchant point of sale. These systems provide an alternative to “swiping” a card through a point of sale terminal to read information from a magnetic strip on the card. In a contactless payment system, a microcontroller embedded in the card typically securely holds identifying or payment information, such as the number of an account from which payments are to be made, in a memory. In some systems, when the card is brought within range of the reader, an antenna in the card derives power from a radio signal emanating from the reader, and uses the power to operate an electronic chip on the card. A financial application residing in the microcontroller initiates a sequence of commands to exchange transactional data between the contactless card and the contactless reader. Once the information is verified, a purchase can be approved and finalized very quickly. Some contactless payment systems operate on a carrier frequency of 13.56 MHz.\n\nAnother example of a wireless communication application is the interconnection of electronic devices according to the Bluetooth communication standard promulgated by Bluetooth SIG, Inc.",
"cpc": [
"H04W 4/18",
"G06Q 20/202",
"G06Q 20/204",
"G06Q 20/32",
"G06Q 20/3223",
"G06Q 20/3265",
"G06Q 20/327",
"G06Q 20/352",
"G06Q 20/353",
"H04W 84/18"
],
"ipc": [
"G06Q 20/00",
"H04B 7/00"
],
"assignees": [
"First Data Corp"
],
"inventors": [
"Sunil Dewan"
],
"filing_date": "2008-02-26",
"publication_date": "2009-08-27",
"priority_date": "2008-02-26",
"application_number": "US-3782608-A",
"family_id": "40998806",
"cited_by_count": 47,
"citations": [
"US5980322A",
"US20020025682A1",
"US20030055735A1",
"US6346346B1",
"US6978940B2",
"US20050083177A1",
"US7020486B2",
"US20040235450A1",
"US20060208066A1",
"US7243840B2",
"US20060172701A1",
"US20060187052A1",
"US20070175972A1",
"US20070152035A1"
]
}
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