User plane location services over session initiation protocol (SIP)

Abstract
A method and mechanism to allow a location server to initiate a user plane location service (e.g., SUPL defined by OMA) procedure to a user plane enabled device via Instant Messaging, or alternatively, via an existing SIP session if a multimedia session is already established. The location request is signaled to the user plane enabled device via a SIP INFO message. The location request uses SIP messaging to overcome firewall and other network security issues. Location using SUPL over SIP may be provided about a caller making an E911 emergency call. An Instant Message may be sent to the user plane enabled device, e.g., a VoIP wireless phone.
Description
BACKGROUND OF THE INVENTION

1. Field of the Invention


This invention relates generally to wireless and long distance carriers, Internet Service Providers (ISPs), and information content delivery services/providers and long distance carriers. More particularly, it relates to location services for the wireless industry.


2. Background of Related Art


Location information regarding subscribers is becoming increasingly available in a wireless network. Location information relates to absolute coordinates of a wireless device.



FIG. 4 shows a conventional LoCation Services (LCS) request.


In particular, as shown in FIG. 4, a location server 106 requests location information regarding a particular mobile subscriber (MS) from a core network node, e.g., from a Mobile Switch Center (MSC) 110. Requested information regarding a particular wireless device (MS) may include, e.g., attach, detach, and location area update. The location server 106 may also request information regarding the wireless device such as attach, detach and/or location area update from a Packet Data Node (e.g., SGSN, GGSN, or PDSN), or help the device calculate x/y direction. Typically, location information regarding a particular wireless device is requested of a home location register (HLR).


As shown in step 1 of FIG. 4, a locations services client 104 sends a message to a location server 106.


In step 2, the location server 106 sends a Provide Subscriber Info message to a Home Location Register 108, requesting subscriber information regarding a particular subscriber.


In step 3, the carrier's Home Location Register (HLR) 108 provides the subscriber information for the requested subscriber back to the location server 106.


In step 4, location information regarding the requested subscriber is requested to either an MSC or Packet Data node 110. The MSC or Packet Data Node preferably provides precise location information using, e.g., a global positioning satellite (GPS), triangulation techniques, or other relevant locating technology, or helps the device calculate X/Y direction.


In step 5, the location request is forwarded to the Radio Access Network (RAN) 112 if needed.


In step 6, precise, updated location information regarding the requested subscriber is sent to the location server (LS) 106.


In step 7, an ultimate response to the original location request is sent to the LCS client 104 that initially requested the location information.


Secure User Plane for Location (SUPL) is a standards-based protocol that has been developed to allow a mobile handset client to communicate with a location server, e.g., as shown in step 1 of FIG. 4. The SUPL specification is defined by the Open Mobile Alliance (OMA) standards working group. Refer to OMA Secure User Plane Location Architecture document, OMA-AD-SUPL-V10-20060127-C for more details on OMA SUPL call flows; and OMA User Plane Location Protocol document, OMA-TS-ULP-V10-20060127-C. The OMA SUPL Version 1 specifies two basic types call flows: (1) a SUPL network initiated (NI) call flow, and (2) a SUPL set initiated (SI) call flow. According to the SUPL standard, a session ID has a unique value consisting of server and handset portions.



FIG. 5 shows typical OMA mobile terminated call flow for a SUPL location request initiated by a SUPL agent.


In particular, as shown in FIG. 5, messages are passed between a SUPL agent 802 residing in the network, a sat reference server 804, a SUPL server 806, a PPG 808, and a SUPL terminal (SET) 812.


The SUPL server (or SUPL location platform (SLP)) 806 comprises a SUPL location center (SLC) and SUPL positioning center (SPC). A mobile device is generalized in FIG. 5 as a SUPL enabled terminal (SET) 812. The SLC coordinates operations of SUPL communications in the network, and controls the SPC component. The SPC Provides global positioning system (GPS) assistance data to the SUPL enabled terminal (SET) 812, and performs precise position calculation of a SET 812.


Network initiated location requests 820 arrive at the SUPL server 806 via an MLP interface. The SUPL server 806 processing this network initiated request is required to send a trigger message (SUPL INIT message) 822 to the SET 812 for validating and initiating a SUPL positioning session 828. The trigger message 822 is sent to the SET 812 as a push message 824 from the PPG 808 (or as an SMS message from an SMSC/MC). At that point, the SET 812 needs to establish a secure TCP/IP connection to the SUPL server 806 to respond to the SUPL positioning request.


For network initiated end-to-end IP based location services, when a location server needs to find out contact information (e.g. an IP address) of a given target, the location server sends a trigger to the target to allow the target to establish a session with the location server. Conventional IP based user plane location services (e.g., OMA SUPL) are built upon WAP Push/SMS messaging and TCP as a transport protocol for initiating a mobile terminating positioning procedure.


There are some scenarios where conventional use of User Plane Location Services does not work or does not work well.


For example, in one scenario where a target device has Internet access via, e.g. WLAN, LAN, or DSL, it may not be possible for the location server to initiate location by use of an SMS, WAP Push. This is particularly true if the location server cannot determine the IP address of the target device, and the network to which the target device attaches does not support correct inter-working with SMS or WAP Push messaging.


A second example relates to Voice over IP (VoIP) based emergency calling (there are some variances in the wireless industry, e.g., IMS emergency in the 3GPP standard and MMD emergency in the 3GPP2 standard, referred to generally as a SIP call by the IETF.) This scenario depicts an emergency call which has already established a SIP session with the serving network. During the emergency call, the appropriate Public Safety Answering Point (PSAP) may require updated location information relating to the emergency caller.


The present inventors appreciate that the existing mechanism of using WAP Push/SMS messaging may not be efficient and reliable, as WAP Push/SMS messaging is built upon store-and-forward mechanisms. In other words, there is no guarantee that the trigger of a location service request will be delivered to a target before the emergency call ends.


SUMMARY OF THE INVENTION

The present invention introduces a method and a mechanism that allows a location server to initiate a user plane location service (e.g., SUPL) procedure to a user plane enabled device via Instant Messaging, or alternatively, via an existing SIP session if a multimedia session is already established.


In accordance with one aspect of the invention, a method and apparatus for obtaining a location of a caller comprises initiating a user plane location service procedure. If a session initiation protocol (SIP) session already exists, a location request is signaled to a user plane enabled caller device via session initiation protocol (SIP).


A method and apparatus for obtaining a location of a caller in accordance with another aspect of the invention comprises determining if a multimedia session is already established with a caller. If a multimedia session is already established with the caller, updated location information of the caller is obtained via an existing session initiation protocol (SIP) session.





BRIEF DESCRIPTION OF THE DRAWINGS

Features and advantages of the present invention will become apparent to those skilled in the art from the following description with reference to the drawings, in which:



FIG. 1 illustrates a high level message flow where User Plane Location Service uses SIP based signaling as the transport, in accordance with the principles of the present invention.



FIG. 2 illustrates a variance of the User Plane Location Service procedure where a location server acts as a watcher of the location service and initiates a location retrieval procedure only when the target device is on-line, in accordance with the principles of the present invention.



FIG. 3 illustrates another use case where the solution of User Plane Location Service over SIP is used to retrieve the updated location of a VoIP emergency caller, in accordance with the principles of the present invention.



FIG. 4 shows a conventional LoCation Services (LCS) request.



FIG. 5 shows typical OMA mobile terminated call flow for a SUPL location request initiated by a SUPL agent.





DETAILED DESCRIPTION OF ILLUSTRATIVE EMBODIMENTS

The present invention introduces a method and a mechanism that allows a location server to initiate the user plane location service procedure to a user plane enabled device via Instant Messaging, or alternatively, via an existing SIP session if a multimedia session is already established.


Session Initiation Protocol (SIP) is an Internet Engineering Task Force (IETF) standard protocol for initiating an interactive user session that involves multimedia elements such as video, voice, chat, gaming, virtual reality, etc. SIP is specified in IETF Request for Comments (RFC) 3261 (replacing 2543). Like HTTP or SMTP, SIP works in the application layer of the open systems interconnection (OSI) communications model. SIP can also be used to invite participants to sessions that do not necessarily involve the initiator. Because SIP supports name mapping and redirection services, it makes it possible for users to initiate and receive communications and services from any location, and for networks to identify the users wherever they are. SIP is a request-response protocol dealing with requests from clients and responses from servers. Participants are identified by SIP universal resource locators (URLs). Requests can be sent through any transport protocol, such as UDP, SCTP, or TCP. SIP determines the end system to be used for the session, the communication media and media partners, and the called party's desire to engage in the communication. Once these are assured, SIP establishes call parameters at either end of the communication, and handles call transfer and termination.



FIG. 1 illustrates a high level message flow where User Plane Location Service uses SIP based signaling as the transport, in accordance with the principles of the present invention.


In particular, as shown in FIG. 1, the general service description is described as follows:


In step 1 of FIG. 1, a location service enabled device 200 has successfully granted Internet access from an Internet Service Access Provider 202, via either fixed lined access (e.g., dial-up, DSL, cable or LAN) or wireless access using one of the following (but not limited): Wireless LAN (MAN) that is built based on IEEE 802.11x; Wireless personal area network (WPAN) that is built based on IEEE 802.15 (also referred to as BLUETOOTH™); Worldwide Interoperability for Microwave Access (WiMAX) or Wireless metropolitan area network (WMAN), which is built based on IEEE 802.16; Third generation (3G) packet data access technologies based on UMTS or 1xEVDO, or the enhanced technologies, e.g. High Speed Downlink Packet Access (HSDPA); packet data access over satellite; or High speed packet data access over speed point-to-point optical link, e.g. built based on IEEE 802.17.


The location service enabled device 200 then initiates the necessary registration of presence service per RFC2778, 2779 and 3856. Upon registration to the presence service, the device contact information including networking information (e.g. IP address) etc. is stored in a presence server 204.


In step 2, a request for location information of the location service enabled device 200 is generated by a location service provider 206. The location request may be generated by an application in the network that uses the location information, e.g., a weather report based on location; or by an application that resides in the end user terminal.


In step 3, the corresponding location service client 208 sends a location request to a location server 210 for the target device 200 specified by one of the following identifiers, together with other criteria: MSISDN; IMSI; MSN; MIN; IP address; SIP URI; TEL URI; or XMPP URI.


In step 4, upon receiving the location request, the location server 210 examines the identifier(s) of the target device 200 and determines that the target device 200 is not in a conventional mobile network (e.g., packet data enabled cellular network). The location server 210 then initiates an Instant Message containing the information needed to trigger the user plane location service procedure to the presence/Instant Message server 204. The location server 210 may retrieve the SIP URI, XMPP URI or TEL URI of the target device 200 based on the received identifier other than SIP URI, XMPP URI or TEL URI from other network entities, e.g., HLR/HSS in the cellular networks.


In step 5, based on the registration information, the presence/Instant Message server 204 forwards the Instant Message to the target device 200 via SIP. In the disclosed embodiments, the Instant Message can be sent over the existing SIP session if there is an existing SIP session established between the target device 200 and the presence/Instant Message server 204.


In step 6, upon receipt of the Instant Message containing information necessary for trigging the User Plane Location Service procedure, the target device 200 initiates a User Plane Location Service session with the location server 210. The User Plane Location Service signaling can either use standard TCP/IP or UDP/IP, or use standard SIP signaling as the transport. Using SIP signaling as the transport has some advantage when there are security entities (e.g. firewalls) involved in the networks, where direct IP connectivity with certain ports is not accessible. Upon completion of the User Plane Location Service procedure, the location server 210 retrieves a location fix of the target device 200.


In step 7, the location server 210 returns the retrieved location fix to the location service client 208.


In step 8, the location service client 208 sends the location information back to the location service application.



FIG. 2 illustrates a variance of the User Plane Location Service procedure where a location server 210 acts as a watcher of the Presence Service 210 and initiates a location retrieval procedure only when the target device 200 is on-line, in accordance with the principles of the present invention.


The procedure shown and described with respect to FIG. 2 may be implemented as the primary procedure for a User Plane Location Service. Alternatively, it can be implemented as a fallback procedure to the call flow shown and described with respect to FIG. 1.


The general service description shown in FIG. 2 is described as follows:


In step 1, a request for location information of the location service enabled device 200 is generated by a location service provider 206. The location request may be generated by an application in the network that uses the location information, e.g., a weather report based on location; or by an application that resides in the end user terminal.


In step 2, the corresponding location service client 208 sends a location request to a location server 210 for the target device 200 specified by one of the following identifiers, together with other criteria: MSISDN; IMSI; MSN; MIN; IP address; SIP URI; TEL URI; or XMPP URI.


In step 3, upon receipt of the location request message, the location server 210 examines the identifier(s) of the target device 200 and determines that the target device 200 is not being served by a conventional mobile network (e.g., packet data enabled cellular network). The location server 210 then initiates a request to the presence/Instant Message server 204, to obtain presence related information of the target device 200. Alternatively the location server 210 may try a conventional mobile network path using the existing WAP Push/SMS mechanism and the inventive mechanisms disclosed herein either in parallel or in an order. For example, the target device supports multiple access technologies and networks.


In step 4, the target device 200 becomes available and sends a status update to the presence/Instant Message server 204.


In step 5, the presence/Instant Message server 204 sends a notification containing the contact information for the target device 200. The contact information may include, e.g., an IP address of the target device 200.


In step 6, optionally, the location server 210 initiates an Instant Message containing the information needed to trigger the user plane location service procedure to the presence/Instant Message server 204.


In step 7, based on the registration information, the presence/Instant Message server 204 forwards the Instant Message to the target device 200 via SIP. In the disclosed embodiments, the Instant Message can be sent over the existing SIP session if there is an existing SIP session established between the target device 200 and the presence/Instant Message server 204.


In step 8, upon receipt of the Instant Message containing information necessary for trigging the User Plane Location Service procedure, the target device 200 initiates a User Plane Location Service session with the location server 210. The User Plane Location Service signaling can either use standard TCP/IP or UDP/IP, or use standard SIP signaling as the transport. Using SIP signaling as the transport has some advantage when there are security entities (e.g. firewalls) involved in the networks, where direct IP connectivity with certain ports is not accessible. Upon completion of the User Plane Location Service procedure, the location server 210 retrieves a location fix of the target device 200.


In step 9, the location server 210 returns the retrieved location fix to the location service client 208.


In step 10, the location service client 208 sends the location information back to the location service application.



FIG. 3 illustrates another use case where a User Plane Location Service over SIP is used to retrieve updated location information regarding a voice over Internet protocol (VoIP) emergency caller, in accordance with the principles of the present invention.


The general service description shown in FIG. 3 is described as follows:


In step 1 of FIG. 3, a VoIP based emergency call is initiated from a VoIP terminal 300, via either fixed line access (e.g., dial-up, digital subscriber loop (DSL), cable or local area network (LAN)), or wireless access using one of the following (but not limited): Wireless LAN (WLAN) that is built based on IEEE 802.11x; Wireless personal area network (WPAN) that is built based on IEEE 802.15 (also referred to as BLUETOOTH™); Worldwide Interoperability for Microwave Access (WiMAX) or Wireless metropolitan area network (WMAN), which is built based on IEEE 802.16; Third generation (3G) packet data access technologies based on UMTS or 1xEVDO, or the enhanced technologies, e.g. High Speed Downlink Packet Access (HSDPA); packet data access over satellite; or High speed packet data access over speed point-to-point optical link, e.g. built based on IEEE 802.17.


The VoIP emergency call is established with an appropriate Public Safety Answering Point (PSAP) 310 through the public switched telephone network (PSTN) 320, selective router network 330, or direct session Internet Protocol (SIP) based network from the emergency 911 call server 304.


In step 2, during the VoIP emergency call, the PSAP 310 requests an updated location of the VoIP emergency caller 300.


In step 3, if the location server 210 is in the SIP call signaling path, it initiates a trigger message using the User Plane Location Service embedded in a SIP INFO message to the E911 call server 304.


In step 4, the SIP INFO message is forwarded to the VoIP emergency caller 300.


In step 5, upon receipt of the trigger message using a User Plane Location Service, the VoIP terminal 300 from which the VoIP emergency call was initiated starts a User Plane Location Service procedure with the location server 306.


In step 6, the location server 306 returns retrieved location information to the PSAP 310.


While the invention has been described with reference to the exemplary embodiments thereof, those skilled in the art will be able to make various modifications to the described embodiments of the invention without departing from the true spirit and scope of the invention.

Claims
  • 1. A method for obtaining a location of a subscriber, comprising: signaling, at a location server, an instant message location request to a target device via an instant message server; andretrieving, via a user plane location service session, location information associated with said target device.
  • 2. A method for obtaining a location of a subscriber according to claim 1, further comprising: initiating said user plane location service session via Extensible Messaging and Presence Protocol (XMPP) protocol.
  • 3. The method for obtaining a location of a subscriber according to claim 1, wherein: said instant message location request is signaled to said target device via a SIP INFO message.
  • 4. The method for obtaining a location of a subscriber according to claim 1, wherein: using SIP messaging, for said instant message location request, as a transport message of said user plane location service procedure to overcome an issue otherwise introduced by network security.
  • 5. The method for obtaining a location of a subscriber according to claim 4, wherein: said issue otherwise introduced by network security is a firewall.
  • 6. The method for obtaining a location of a caller according to claim 1, wherein: a call relating to said caller is an emergency call.
  • 7. The method for obtaining a location of a subscriber according to claim 1, wherein: said target device is a voice over Internet Protocol (VoIP) phone.
  • 8. The method for obtaining a location of a subscriber according to claim 7, wherein: said VoIP phone is a wireless VoIP phone.
  • 9. The method for obtaining a location of a subscriber according to claim 1, wherein: said user plane location service session complies with a secure user plane for location (SUPL) standard defined by Open Mobile Alliance (OMA).
Parent Case Info

The present application is a continuation of U.S. application Ser. No. 11/638,548 entitled “User Plane Location Services Over Session Initiation Protocol (SIP)”, filed Dec. 14, 2006; which claims priority from U.S. Provisional Application No. 60/861,267, entitled “User Plane Location Service over Session Initiation Protocol (SIP)”, filed Nov. 28, 2006, the entirety of both of which are expressly incorporated herein by reference. The present application is also a continuation-in-part of U.S. application Ser. No. 13/775,670, entitled “Solutions for Voice Over Internet Protocol (VoIP) 911Location Services”, filed on Feb. 25, 2013; which in turn is a continuation of U.S. application Ser. No. 13/064,203, entitled “Solutions for Voice Over Internet Protocol (VoIP) 911 Location Services”, filed on Mar. 10, 2011, now U.S. Pat. No. 8,385,881; which in turn in is a continuation of U.S. application Ser. No. 11/819,262, entitled “Solutions for Voice Over Internet Protocol (VoIP) 911 Location Services” filed on Jun. 26, 2007, now U.S. Pat. No. 7,912,446; which in turn is a continuation of U.S. application Ser. No. 10/836,330, entitled “Solutions for Voice Over Internet Protocol (VoIP) 911 Location Services” filed on May 3, 2004, now U.S. Pat. No. 7,260,186; which claims priority from U.S. Provisional Appl. No. 60/555,305, entitled “Solutions For VoIP 911 Location Services” filed on Mar. 23, 2004, and U.S. application Ser. No. 10/739,292, entitled “Enhanced E911 Location Information Using Voice Over Internet Protocol (VoIP)” filed on Dec. 19, 2003, now U.S. Pat. No. 6,940,950, the entirety of all of which are explicitly incorporated herein by reference.

US Referenced Citations (818)
Number Name Date Kind
1103073 O'Connell Jul 1914 A
4445118 Taylor et al. Apr 1984 A
4494119 Wimbush Jan 1985 A
4651156 Martinez Mar 1987 A
4706275 Kamil Nov 1987 A
4737916 Ogawa Apr 1988 A
4891638 Davis Jan 1990 A
4891650 Sheffer Jan 1990 A
4939662 Nimura Jul 1990 A
4952928 Carroll Aug 1990 A
4972484 Theile Nov 1990 A
5014206 Scribner May 1991 A
5043736 Darnell Aug 1991 A
5055851 Sheffer Oct 1991 A
5068656 Sutherland Nov 1991 A
5068891 Marshall Nov 1991 A
5070329 Jasimaki Dec 1991 A
5081667 Drori Jan 1992 A
5119104 Heller Jun 1992 A
5126722 Kamis Jun 1992 A
5144283 Arens Sep 1992 A
5161180 Chavous Nov 1992 A
5166972 Smith Nov 1992 A
5177478 Wagai Jan 1993 A
5193215 Olmer Mar 1993 A
5208756 Song May 1993 A
5214789 George May 1993 A
5218367 Sheffer Jun 1993 A
5223844 Mansell Jun 1993 A
5239570 Koster Aug 1993 A
5265630 Hartmann Nov 1993 A
5266944 Carroll Nov 1993 A
5283570 DeLuca Feb 1994 A
5289527 Tiedemann Feb 1994 A
5293642 Lo Mar 1994 A
5299132 Wortham Mar 1994 A
5301354 Schwendeman Apr 1994 A
5311516 Kuznicke May 1994 A
5325302 Izidon Jun 1994 A
5327529 Fults Jul 1994 A
5334974 Simms Aug 1994 A
5335246 Yokev Aug 1994 A
5343493 Karimulah Aug 1994 A
5347568 Moody Sep 1994 A
5351235 Lahtinen Sep 1994 A
5361212 Class Nov 1994 A
5363425 Mufti Nov 1994 A
5365451 Wang Nov 1994 A
5374936 Feng Dec 1994 A
5379451 Nakagoshi Jan 1995 A
5381338 Wysocki Jan 1995 A
5387993 Heller Feb 1995 A
5388147 Grimes Feb 1995 A
5389934 Kass Feb 1995 A
5390339 Bruckery Feb 1995 A
5394158 Chia Feb 1995 A
5396227 Carroll Mar 1995 A
5398190 Wortham Mar 1995 A
5406614 Hara Apr 1995 A
5418537 Bird May 1995 A
5422813 Schuchman Jun 1995 A
5423076 Westergren Jun 1995 A
5434789 Fraker Jul 1995 A
5454024 Lebowitz Sep 1995 A
5461390 Hosher Oct 1995 A
5470233 Fruchterman Nov 1995 A
5479408 Will Dec 1995 A
5479482 Grimes Dec 1995 A
5485161 Vaugh Jan 1996 A
5485163 Singer et al. Jan 1996 A
5488563 Chazelle Jan 1996 A
5494091 Freeman Feb 1996 A
5497149 Fast Mar 1996 A
5504491 Chapman Apr 1996 A
5506886 Maine Apr 1996 A
5508931 Snider Apr 1996 A
5513243 Kage Apr 1996 A
5515287 Hakoyama May 1996 A
5517199 DiMattei May 1996 A
5519403 Bickley May 1996 A
5530655 Lokhoff Jun 1996 A
5530914 Dennison Jun 1996 A
5532690 Hertel Jul 1996 A
5535434 Siddoway Jul 1996 A
5539395 Buss Jul 1996 A
5539398 Hall Jul 1996 A
5539829 Lokhoff Jul 1996 A
5543776 L'Esperance Aug 1996 A
5546445 Dennison Aug 1996 A
5552772 Janky Sep 1996 A
5555286 Tendler Sep 1996 A
5557254 Johnson Sep 1996 A
5568119 Schipper Oct 1996 A
5568153 Beliveau Oct 1996 A
5574648 Pilley Nov 1996 A
5579372 Angstrom Nov 1996 A
5588009 Will Dec 1996 A
5592535 Klotz Jan 1997 A
5594780 Wiedeman Jan 1997 A
5604486 Lauro Feb 1997 A
5606313 Allen Feb 1997 A
5606618 Lokhoff Feb 1997 A
5606850 Nakamura Mar 1997 A
5610815 Gudat Mar 1997 A
5614890 Fox Mar 1997 A
5615116 Gudat Mar 1997 A
5621793 Bednarek Apr 1997 A
5628051 Salin May 1997 A
5629693 Janky May 1997 A
5633912 Tsoi May 1997 A
5636122 Shah Jun 1997 A
5636276 Brugger Jun 1997 A
5661652 Sprague Aug 1997 A
5661755 Van de Kerkhof Aug 1997 A
5682600 Salin Oct 1997 A
5684951 Goldman Nov 1997 A
5689245 Noreen Nov 1997 A
5689269 Norris Nov 1997 A
5689809 Grube Nov 1997 A
5699053 Jonsson Dec 1997 A
5727057 Emery Mar 1998 A
5731785 Lemelson Mar 1998 A
5740534 Ayerst Apr 1998 A
5761618 Lynch Jun 1998 A
5765152 Erickson Jun 1998 A
5767795 Schaphorst Jun 1998 A
5768509 Gunluk Jun 1998 A
5771353 Eggleston Jun 1998 A
5774533 Patel Jun 1998 A
5774670 Montulli Jun 1998 A
5774824 Streit Jun 1998 A
5787357 Salin Jul 1998 A
5794142 Vantilla Aug 1998 A
5797094 Houde Aug 1998 A
5797096 Lupien Aug 1998 A
5801700 Ferguson Sep 1998 A
5802492 DeLorme Sep 1998 A
5806000 Vo Sep 1998 A
5809415 Rossman Sep 1998 A
5812086 Bertiger Sep 1998 A
5812087 Krasner Sep 1998 A
5822700 Hult Oct 1998 A
5828740 Khue Oct 1998 A
5841396 Krasner Nov 1998 A
5857201 Wright, Jr. Jan 1999 A
5864667 Barkam Jan 1999 A
5874914 Krasner Feb 1999 A
5896369 Warsta Apr 1999 A
5920821 Seaholtz Jul 1999 A
5922074 Richard Jul 1999 A
5926118 Hayashida Jul 1999 A
5930250 Klok Jul 1999 A
5944768 Ito Aug 1999 A
5953398 Hill Sep 1999 A
5960362 Grob Sep 1999 A
5974054 Couts Oct 1999 A
5978685 Laiho Nov 1999 A
5982301 Ohta Nov 1999 A
5983099 Yao Nov 1999 A
5983109 Montoya Nov 1999 A
5987323 Huotari Nov 1999 A
5998111 Abe Dec 1999 A
5999124 Sheynblat Dec 1999 A
6002936 Roel-Ng Dec 1999 A
6014602 Kithol Jan 2000 A
6032051 Hall Feb 2000 A
6035025 Hanson Mar 2000 A
6035253 Hayahi Mar 2000 A
6049710 Nilsson Apr 2000 A
6052081 Krasner Apr 2000 A
6058300 Hanson May 2000 A
6061018 Sheynblat May 2000 A
6061346 Nordman May 2000 A
6064336 Krasner May 2000 A
6064875 Morgan May 2000 A
6067045 Castelloe May 2000 A
6070067 Nguyen May 2000 A
6075982 Donovan Jun 2000 A
6081229 Soliman Jun 2000 A
6081508 West Jun 2000 A
6085320 Kaliski, Jr. Jul 2000 A
6091957 Larkins Jul 2000 A
6101378 Barabash Aug 2000 A
6108533 Brohoff Aug 2000 A
6115611 Kimoto Sep 2000 A
6122503 Daly Sep 2000 A
6122520 Want Sep 2000 A
6124810 Segal Sep 2000 A
6131067 Girerd Oct 2000 A
6133874 Krasner Oct 2000 A
6134316 Kallioniemi Oct 2000 A
6134483 Vayanos Oct 2000 A
6138003 Kingdon Oct 2000 A
6148197 Bridges Nov 2000 A
6148198 Anderson Nov 2000 A
6149353 Nilsson Nov 2000 A
6150980 Krasner Nov 2000 A
6154172 Piccionelli Nov 2000 A
6169516 Watanabe Jan 2001 B1
6169891 Gorham Jan 2001 B1
6169901 Boucher Jan 2001 B1
6169902 Kawamoto Jan 2001 B1
6173181 Losh Jan 2001 B1
6178505 Schnieder Jan 2001 B1
6178506 Quick, Jr. Jan 2001 B1
6181935 Gossman Jan 2001 B1
6181939 Ahvenainen Jan 2001 B1
6182006 Meek Jan 2001 B1
6182227 Blair Jan 2001 B1
6185426 Alperovich Feb 2001 B1
6188354 Soliman Feb 2001 B1
6188752 Lesley Feb 2001 B1
6188909 Alanara Feb 2001 B1
6188957 Bechtolsheim Feb 2001 B1
6189098 Kaliski, Jr. Feb 2001 B1
6195557 Havinis Feb 2001 B1
6198431 Gibson Mar 2001 B1
6199045 Giniger Mar 2001 B1
6199113 Alegre Mar 2001 B1
6204844 Fumarolo Mar 2001 B1
6205330 Windbladh Mar 2001 B1
6208290 Krasner Mar 2001 B1
6208854 Roberts Mar 2001 B1
6215441 Moeglein Apr 2001 B1
6219557 Havinis Apr 2001 B1
6223046 Hamill-Keays Apr 2001 B1
6226529 Bruno May 2001 B1
6239742 Krasner May 2001 B1
6247135 Feaugue Jun 2001 B1
6249680 Wax Jun 2001 B1
6249742 Frriederich Jun 2001 B1
6249744 Morita Jun 2001 B1
6249873 Richard Jun 2001 B1
6253074 Carlsson Jun 2001 B1
6253203 O'Flaherty Jun 2001 B1
6260147 Quick, Jr. Jul 2001 B1
6266614 Alumbaugh Jul 2001 B1
6275692 Skog Aug 2001 B1
6275849 Ludwig Aug 2001 B1
6278701 Ayyagari Aug 2001 B1
6278936 Jones Aug 2001 B1
6289373 Dezonno Sep 2001 B1
6297768 Allen, Jr. Oct 2001 B1
6307504 Sheynblat Oct 2001 B1
6308269 Proidl Oct 2001 B2
6313786 Sheynblat Nov 2001 B1
6317594 Gossman Nov 2001 B1
6317684 Roeseler Nov 2001 B1
6321091 Holland Nov 2001 B1
6321092 Fitch Nov 2001 B1
6321158 DeLorme Nov 2001 B1
6321257 Kotala Nov 2001 B1
6324542 Lent Nov 2001 B1
6327473 Soliman Dec 2001 B1
6327479 Mikkola Dec 2001 B1
6331825 Ladner Dec 2001 B1
6333919 Gaffney Dec 2001 B2
6360093 Ross Mar 2002 B1
6360102 Havinis Mar 2002 B1
6363254 Jones Mar 2002 B1
6366782 Fumarolo Apr 2002 B1
6366856 Johnson Apr 2002 B1
6367019 Ansell Apr 2002 B1
6370389 Isomursu Apr 2002 B1
6377209 Krasner Apr 2002 B1
6397143 Paschke May 2002 B1
6400314 Krasner Jun 2002 B1
6400943 Montoya Jun 2002 B1
6400958 Isomursu Jun 2002 B1
6411254 Moeglein Jun 2002 B1
6415224 Wako Jul 2002 B1
6421002 Krasner Jul 2002 B2
6427001 Contractor Jul 2002 B1
6429808 King Aug 2002 B1
6433734 Krasner Aug 2002 B1
6434381 Moore Aug 2002 B1
6441752 Fomukong Aug 2002 B1
6442384 Shah Aug 2002 B1
6442391 Johansson Aug 2002 B1
6449473 Raivisto Sep 2002 B1
6449476 Hutchinson, IV Sep 2002 B1
6456852 Bar Sep 2002 B2
6463272 Wallace Oct 2002 B1
6466788 Carlsson Oct 2002 B1
6477150 Maggenti Nov 2002 B1
6504491 Christians Jan 2003 B1
6505049 Dorenbosch Jan 2003 B1
6510387 Fuchs Jan 2003 B2
6512922 Burg Jan 2003 B1
6512930 Sandegren Jan 2003 B2
6515623 Johnson Feb 2003 B2
6519466 Pande Feb 2003 B2
6522682 Kohli Feb 2003 B1
6526026 Menon Feb 2003 B1
6529500 Pandharipande Mar 2003 B1
6529722 Heinrich Mar 2003 B1
6529829 Turetzky Mar 2003 B2
6531982 White Mar 2003 B1
6538757 Sansone Mar 2003 B1
6539200 Schiff Mar 2003 B1
6539232 Hendrey et al. Mar 2003 B2
6539304 Chansarkar Mar 2003 B1
6542464 Takeda Apr 2003 B1
6542734 Abrol Apr 2003 B1
6542743 Soliman Apr 2003 B1
6549522 Flynn Apr 2003 B1
6549776 Joong Apr 2003 B1
6549844 Egberts Apr 2003 B1
6556832 Soliman Apr 2003 B1
6560461 Fomukong May 2003 B1
6560534 Abraham May 2003 B2
6563824 Bhatia May 2003 B1
6564261 Gudjonsson May 2003 B1
6570530 Gaal May 2003 B2
6571095 Koodli May 2003 B1
6571174 Rigazio May 2003 B2
6574558 Kohli Jun 2003 B2
6580390 Hay Jun 2003 B1
6584552 Kuno Jun 2003 B1
6587691 Granstam Jul 2003 B1
6594500 Bender Jul 2003 B2
6597311 Sheynblat Jul 2003 B2
6600927 Hamilton Jul 2003 B2
6603973 Foladare Aug 2003 B1
6606495 Korpi Aug 2003 B1
6606554 Edge Aug 2003 B2
6609004 Morse Aug 2003 B1
6611757 Brodie Aug 2003 B2
6618670 Chansarkar Sep 2003 B1
6621423 Cooper Sep 2003 B1
6621452 Knockeart Sep 2003 B2
6621810 Leung Sep 2003 B1
6628233 Knockeart Sep 2003 B2
6633255 Krasner Oct 2003 B2
6640184 Rabe Oct 2003 B1
6640185 Tokota Oct 2003 B2
6643516 Stewart Nov 2003 B1
6650288 Pitt Nov 2003 B1
6661353 Gopen Dec 2003 B1
6661372 Girerd Dec 2003 B1
6665540 Sih Dec 2003 B2
6665541 Krasner Dec 2003 B1
6665613 Duvall Dec 2003 B2
6665715 Houri Dec 2003 B1
6671620 Garin Dec 2003 B1
6677894 Sheynblat Jan 2004 B2
6680694 Knockheart Jan 2004 B1
6687504 Raith Feb 2004 B1
6691019 Seeley Feb 2004 B2
6694258 Johnson Feb 2004 B2
6697629 Grilli Feb 2004 B1
6698195 Hellinger Mar 2004 B1
6701144 Kirbas Mar 2004 B2
6703971 Pande Mar 2004 B2
6703972 Van Diggelen Mar 2004 B2
6704651 Van Diggelen Mar 2004 B2
6707421 Drury Mar 2004 B1
6714793 Carey Mar 2004 B1
6718174 Vayanos Apr 2004 B2
6720915 Sheynblat Apr 2004 B2
6721578 Minear Apr 2004 B2
6721652 Sanqunetti Apr 2004 B1
6721716 Gross Apr 2004 B1
6721871 Piispanen Apr 2004 B2
6724342 Bloebaum Apr 2004 B2
6725159 Krasner Apr 2004 B2
6728701 Stoica Apr 2004 B1
6731940 Nagendran May 2004 B1
6734821 Van Diggelen May 2004 B2
6738013 Orler May 2004 B2
6738800 Aquilon May 2004 B1
6741842 Goldberg May 2004 B2
6744856 Karnik Jun 2004 B2
6744858 Ryan Jun 2004 B1
6745038 Callaway, Jr. Jun 2004 B2
6747596 Orler Jun 2004 B2
6748195 Phillips Jun 2004 B1
6751464 Burg Jun 2004 B1
6756938 Zhao Jun 2004 B2
6757266 Hundscheidt Jun 2004 B1
6757544 Rangarajan Jun 2004 B2
6757545 Nowak Jun 2004 B2
6766174 Kenyon Jul 2004 B1
6771639 Holden Aug 2004 B1
6771742 McCalmont Aug 2004 B2
6772340 Peinado Aug 2004 B1
6775267 Kung Aug 2004 B1
6775534 Lindgren Aug 2004 B2
6775655 Peinado Aug 2004 B1
6775802 Gaal Aug 2004 B2
6778136 Gronemeyer Aug 2004 B2
6778885 Agashe Aug 2004 B2
6781963 Crockett Aug 2004 B2
6788249 Farmer Sep 2004 B1
6795444 Vo Sep 2004 B1
6795699 McGraw Sep 2004 B1
6799049 Zellner Sep 2004 B1
6799050 Krasner Sep 2004 B1
6801159 Swope Oct 2004 B2
6801850 Wolfson Oct 2004 B1
6804524 Vandermaijden Oct 2004 B1
6807534 Erickson Oct 2004 B1
6810323 Bullock Oct 2004 B1
6810405 LaRue Oct 2004 B1
6813264 Vassilovski Nov 2004 B2
6813501 Kinnunen Nov 2004 B2
6813560 Van Diggelen Nov 2004 B2
6816111 Krasner Nov 2004 B2
6816710 Krasner Nov 2004 B2
6816719 Heinonen Nov 2004 B1
6816734 Wong Nov 2004 B2
6816782 Walters Nov 2004 B1
6819919 Tanaka Nov 2004 B1
6820269 Kogan Nov 2004 B2
6829475 Lee Dec 2004 B1
6829532 Obradovich Dec 2004 B2
6832373 O'Neill Dec 2004 B2
6839020 Geier Jan 2005 B2
6839021 Sheynblat Jan 2005 B2
6839417 Weisman Jan 2005 B2
6839630 Sakamoto Jan 2005 B2
6842696 Silvester Jan 2005 B2
6842715 Gaal Jan 2005 B1
6845321 Kerns Jan 2005 B1
6847822 Dennison Jan 2005 B1
6853916 Fuchs Feb 2005 B2
6856282 Mauro Feb 2005 B2
6861980 Rowitch Mar 2005 B1
6865171 Nilsson Mar 2005 B1
6865395 Riley Mar 2005 B2
6867733 Sandhu Mar 2005 B2
6867734 Voor Mar 2005 B2
6873854 Crockett Mar 2005 B2
6882850 McConnell et al. Apr 2005 B2
6885874 Grube Apr 2005 B2
6885940 Brodie Apr 2005 B2
6888497 King May 2005 B2
6888932 Snip May 2005 B2
6895238 Newell May 2005 B2
6895249 Gaal May 2005 B2
6895329 Wolfson May 2005 B1
6898516 Pechatnikov May 2005 B2
6900758 Mann May 2005 B1
6903684 Simic Jun 2005 B1
6904029 Fors Jun 2005 B2
6907224 Younis Jun 2005 B2
6907238 Leung Jun 2005 B2
6910818 McLoone Jun 2005 B2
6912230 Salkini Jun 2005 B1
6912395 Benes Jun 2005 B2
6912545 Lundy Jun 2005 B1
6915208 Garin Jul 2005 B2
6917331 Gronemeyer Jul 2005 B2
6925603 Naito Aug 2005 B1
6930634 Peng Aug 2005 B2
6934705 Tu Aug 2005 B2
6937187 Van Diggelen Aug 2005 B2
6937872 Krasner Aug 2005 B2
6940950 Dickinson et al. Sep 2005 B2
6941144 Stein Sep 2005 B2
6944535 Iwata Sep 2005 B2
6944540 King Sep 2005 B2
6947772 Minear Sep 2005 B2
6950058 Davis Sep 2005 B1
6957068 Hutchison Oct 2005 B2
6957073 Bye Oct 2005 B2
6961562 Ross Nov 2005 B2
6963557 Knox Nov 2005 B2
6963748 Chithambaram Nov 2005 B2
6965754 King Nov 2005 B2
6965767 Maggenti Nov 2005 B2
6968044 Beason Nov 2005 B2
6970871 Rayburn Nov 2005 B1
6970917 Kushwaha Nov 2005 B1
6973320 Brown Dec 2005 B2
6975266 Abraham Dec 2005 B2
6978453 Rao Dec 2005 B2
6980816 Rohler Dec 2005 B2
6985747 Chithambaram Jan 2006 B2
6990081 Schaefer Jan 2006 B2
6993355 Pershan Jan 2006 B1
6996720 DeMello Feb 2006 B1
6999782 Shaughnessy Feb 2006 B2
7024321 Deninger Apr 2006 B1
7024393 Peinado Apr 2006 B1
7047411 DeMello May 2006 B1
7058506 Kawase Jun 2006 B2
7065351 Carter Jun 2006 B2
7065507 Mohammed Jun 2006 B2
7072667 Olrik Jul 2006 B2
7079857 Maggenti Jul 2006 B2
7089110 Pechatnikov Aug 2006 B2
7092385 Gallant Aug 2006 B2
7103018 Hansen Sep 2006 B1
7103574 Peinado Sep 2006 B1
7106717 Rosseau Sep 2006 B2
7110773 Wallace Sep 2006 B1
7136466 Gao Nov 2006 B1
7136838 Peinado Nov 2006 B1
7142163 Connor Nov 2006 B2
7142196 Connor Nov 2006 B1
7142205 Chithambaram Nov 2006 B2
7145900 Nix et al. Dec 2006 B2
7151946 Maggenti Dec 2006 B2
7167187 Scott Jan 2007 B2
7171220 Belcea Jan 2007 B2
7171304 Wako Jan 2007 B2
7177397 Mccalmont Feb 2007 B2
7177398 Meer Feb 2007 B2
7177399 Dawson Feb 2007 B2
7184418 Baba Feb 2007 B1
7200380 Havlark Apr 2007 B2
7202801 Chou Apr 2007 B2
7209758 Moll Apr 2007 B1
7209969 Lahti Apr 2007 B2
7218940 Niemenna May 2007 B2
7221959 Lindquist May 2007 B2
7245900 Lamb Jul 2007 B1
7245910 Osmo Jul 2007 B2
7260186 Zhu Aug 2007 B2
7260384 Bales Aug 2007 B2
7266376 Nakagawa Sep 2007 B2
7286929 Staton Oct 2007 B2
7330899 Wong Feb 2008 B2
7333480 Clarke Feb 2008 B1
7340241 Rhodes Mar 2008 B2
7369508 Parantainen May 2008 B2
7369530 Keagy May 2008 B2
7424293 Zhu Sep 2008 B2
7426380 Hines Sep 2008 B2
7428571 Ichimura Sep 2008 B2
7436785 McMullen Oct 2008 B1
7440442 Grabelsky Oct 2008 B2
7450951 Vimpari Nov 2008 B2
7453990 Welenson Nov 2008 B2
7477903 Wilcock Jan 2009 B2
7495608 Chen Feb 2009 B1
7522581 Acharya Apr 2009 B2
7565157 Ortega Jul 2009 B1
7602886 Beech Oct 2009 B1
7623447 Faccin Nov 2009 B1
7627331 Winterbottom Dec 2009 B2
7653544 Bradley Jan 2010 B2
7660321 Cortes Feb 2010 B2
7702081 Klesper Apr 2010 B1
7711094 Olshansky May 2010 B1
7739033 Murata Jun 2010 B2
7747258 Farmer Jun 2010 B2
7751614 Funakura Jul 2010 B2
7774003 Ortega Aug 2010 B1
7783297 Ishii Aug 2010 B2
7822823 Jhanji Oct 2010 B2
7881233 Bieselin Feb 2011 B2
7881730 Sheha Feb 2011 B2
7895263 Kirchmeier Feb 2011 B1
7937067 Maier May 2011 B2
20010011247 O'Flaherty Aug 2001 A1
20010015756 Wilcock Aug 2001 A1
20010016849 Squibbs Aug 2001 A1
20020032036 Nakajima Mar 2002 A1
20020037735 Maggenti Mar 2002 A1
20020052214 Maggenti May 2002 A1
20020061760 Maggenti May 2002 A1
20020069239 Katada Jun 2002 A1
20020069529 Wieres Jun 2002 A1
20020077083 Zellner Jun 2002 A1
20020077084 Zellner Jun 2002 A1
20020077118 Zellner Jun 2002 A1
20020077897 Zellner Jun 2002 A1
20020085538 Leung Jul 2002 A1
20020086683 Kohar Jul 2002 A1
20020102996 Jenkins Aug 2002 A1
20020102999 Maggenti Aug 2002 A1
20020103898 Moyer Aug 2002 A1
20020111172 DeWolf Aug 2002 A1
20020112047 Kushwaha Aug 2002 A1
20020118650 Jagadeesan Aug 2002 A1
20020123327 Vataja Sep 2002 A1
20020123354 Nowak Sep 2002 A1
20020126656 Park Sep 2002 A1
20020130906 Miyaki Sep 2002 A1
20020158777 Flick Oct 2002 A1
20020164998 Younis Nov 2002 A1
20020169539 Menard Nov 2002 A1
20020173317 Nykanen Nov 2002 A1
20020191595 Mar Dec 2002 A1
20030009277 Fan Jan 2003 A1
20030009602 Jacobs Jan 2003 A1
20030012148 Peters Jan 2003 A1
20030013449 Hose Jan 2003 A1
20030014487 Iwakawa Jan 2003 A1
20030016804 Sheha Jan 2003 A1
20030026245 Ejzak Feb 2003 A1
20030032448 Bulthius Feb 2003 A1
20030036848 Sheha Feb 2003 A1
20030036949 Kaddeche Feb 2003 A1
20030037163 Kitada Feb 2003 A1
20030040272 Lelievre Feb 2003 A1
20030045327 Kobayashi Mar 2003 A1
20030054835 Gutowski Mar 2003 A1
20030060938 Duvall Mar 2003 A1
20030065788 Salomaki Apr 2003 A1
20030072318 Lam Apr 2003 A1
20030078054 Okuda Apr 2003 A1
20030078064 Chan Apr 2003 A1
20030081557 Mettala May 2003 A1
20030096623 Kim May 2003 A1
20030101329 Lahti May 2003 A1
20030101341 Kettler May 2003 A1
20030103484 Oommen Jun 2003 A1
20030108176 Kung Jun 2003 A1
20030109245 McCalmont Jun 2003 A1
20030114157 Spitz Jun 2003 A1
20030119521 Tipnis Jun 2003 A1
20030119528 Pew Jun 2003 A1
20030125064 Koskinen Jul 2003 A1
20030126250 Jhanji Jul 2003 A1
20030137961 Tsirtsis Jul 2003 A1
20030149526 Zhou Aug 2003 A1
20030151501 Teckchandani Aug 2003 A1
20030153340 Crockett Aug 2003 A1
20030153341 Crockett Aug 2003 A1
20030153342 Crockett Aug 2003 A1
20030153343 Crockett Aug 2003 A1
20030161298 Bergman Aug 2003 A1
20030165254 Chen Sep 2003 A1
20030182053 Swope Sep 2003 A1
20030186709 Rhodes Oct 2003 A1
20030196105 Fineburg Oct 2003 A1
20030201931 Durst et al. Oct 2003 A1
20030204640 Sahineja Oct 2003 A1
20030223381 Schroderus Dec 2003 A1
20030231190 Jawerth Dec 2003 A1
20030236618 Kamikawa Dec 2003 A1
20040002326 Maher Jan 2004 A1
20040002814 Gogic Jan 2004 A1
20040008225 Campbell Jan 2004 A1
20040021567 Dunn Feb 2004 A1
20040032485 Stephens Feb 2004 A1
20040041729 Rowitch Mar 2004 A1
20040043775 Kennedy Mar 2004 A1
20040044623 Wake Mar 2004 A1
20040047342 Gavish Mar 2004 A1
20040047461 Weisman et al. Mar 2004 A1
20040054428 Sheha Mar 2004 A1
20040068724 Gardner Apr 2004 A1
20040076277 Kuusinen Apr 2004 A1
20040098497 Banet May 2004 A1
20040124977 Biffar Jul 2004 A1
20040132465 Mattila Jul 2004 A1
20040146040 Phan-Anh Jul 2004 A1
20040181689 Kiyoto Sep 2004 A1
20040184584 McCalmont Sep 2004 A1
20040186880 Yamamoto Sep 2004 A1
20040190497 Knox Sep 2004 A1
20040198332 Lundsgaard Oct 2004 A1
20040198375 Schwengler Oct 2004 A1
20040198386 Dupray Oct 2004 A1
20040204829 Endo Oct 2004 A1
20040204847 Yanai Oct 2004 A1
20040205151 Sprigg Oct 2004 A1
20040205517 Lampert Oct 2004 A1
20040220957 McDonough Nov 2004 A1
20040229632 Flynn Nov 2004 A1
20040242238 Wang Dec 2004 A1
20040267445 De Luca Dec 2004 A1
20050027445 McDonough Feb 2005 A1
20050028034 Gantman Feb 2005 A1
20050031095 Pietrowics Feb 2005 A1
20050039178 Marolia Feb 2005 A1
20050041578 Huotari Feb 2005 A1
20050043037 Loppe Feb 2005 A1
20050043038 Maanoja Feb 2005 A1
20050053209 D'Evelyn Mar 2005 A1
20050062636 Conway Mar 2005 A1
20050063519 James Mar 2005 A1
20050071671 Karaoguz Mar 2005 A1
20050078612 Lang Apr 2005 A1
20050083911 Grabelsky Apr 2005 A1
20050085999 Onishi Apr 2005 A1
20050086467 Asokan Apr 2005 A1
20050090236 Schwinke Apr 2005 A1
20050101335 Kelly May 2005 A1
20050107637 Ball May 2005 A1
20050107673 Ball May 2005 A1
20050112030 Gaus May 2005 A1
20050119012 Merheb et al. Jun 2005 A1
20050125148 Van Buer Jun 2005 A1
20050134504 Harwood Jun 2005 A1
20050135569 Dickinson Jun 2005 A1
20050136885 Kaltsukis Jun 2005 A1
20050149430 Williams Jul 2005 A1
20050159883 Humphries Jul 2005 A1
20050174991 Keagy Aug 2005 A1
20050190746 Xiong Sep 2005 A1
20050190892 Dawson Sep 2005 A1
20050192822 Hartenstein Sep 2005 A1
20050201528 Meer Sep 2005 A1
20050201529 Nelson Sep 2005 A1
20050209995 Aksu Sep 2005 A1
20050213716 Zhu et al. Sep 2005 A1
20050219067 Chung Oct 2005 A1
20050232252 Hoover Oct 2005 A1
20050239458 Hurtta Oct 2005 A1
20050242168 Tesavis Nov 2005 A1
20050255857 Kim Nov 2005 A1
20050259675 Tuohino Nov 2005 A1
20050261002 Cheng Nov 2005 A1
20050265318 Khartabil Dec 2005 A1
20050271029 Iffland Dec 2005 A1
20050282518 D'Evelyn Dec 2005 A1
20050287979 Rollender Dec 2005 A1
20050289097 Trossen Dec 2005 A1
20060008065 Longman et al. Jan 2006 A1
20060019724 Bahl Jan 2006 A1
20060023747 Koren et al. Feb 2006 A1
20060026288 Acharya Feb 2006 A1
20060041375 Witmer Feb 2006 A1
20060053225 Poikselka Mar 2006 A1
20060058102 Nguyen et al. Mar 2006 A1
20060068753 Karpen Mar 2006 A1
20060069503 Suomela Mar 2006 A1
20060072729 Lee et al. Apr 2006 A1
20060074547 Kaufman Apr 2006 A1
20060077911 Shaffer Apr 2006 A1
20060088152 Green Apr 2006 A1
20060104306 Adamczykk May 2006 A1
20060120517 Moon Jun 2006 A1
20060128395 Muhonen Jun 2006 A1
20060135177 Winterbottom Jun 2006 A1
20060188083 Breen Aug 2006 A1
20060193447 Schwartz Aug 2006 A1
20060200359 Khan Sep 2006 A1
20060212558 Sahinoja Sep 2006 A1
20060212562 Kushwaha Sep 2006 A1
20060224752 Parekh Oct 2006 A1
20060233338 Venkata Oct 2006 A1
20060234639 Kushwaha Oct 2006 A1
20060234698 Fok Oct 2006 A1
20060239205 Warren Oct 2006 A1
20060246919 Park Nov 2006 A1
20060250987 White et al. Nov 2006 A1
20060258380 Liebowitz Nov 2006 A1
20060259365 Agarwal et al. Nov 2006 A1
20060268120 Funakura Nov 2006 A1
20060270421 Phillips Nov 2006 A1
20060281437 Cook Dec 2006 A1
20060293024 Benco Dec 2006 A1
20060293066 Edge Dec 2006 A1
20070003024 Olivier Jan 2007 A1
20070004461 Bathina Jan 2007 A1
20070014282 Mitchell Jan 2007 A1
20070019614 Hoffmann Jan 2007 A1
20070021908 Jaugilas Jan 2007 A1
20070022011 Altberg et al. Jan 2007 A1
20070026854 Nath Feb 2007 A1
20070026871 Wager Feb 2007 A1
20070027997 Polk Feb 2007 A1
20070030539 Nath Feb 2007 A1
20070032244 Counts Feb 2007 A1
20070036139 Patel Feb 2007 A1
20070049288 Lamprecht Mar 2007 A1
20070054676 Duan Mar 2007 A1
20070060097 Edge et al. Mar 2007 A1
20070072553 Barbera Mar 2007 A1
20070081635 Croak Apr 2007 A1
20070083911 Madden Apr 2007 A1
20070115941 Patel May 2007 A1
20070121601 Kikinis May 2007 A1
20070139411 Jawerth Jun 2007 A1
20070149166 Turcotte Jun 2007 A1
20070149213 Lamba Jun 2007 A1
20070162228 Mitchell Jul 2007 A1
20070182631 Berlinsky Aug 2007 A1
20070201623 Hines Aug 2007 A1
20070206568 Silver Sep 2007 A1
20070206613 Silver Sep 2007 A1
20070208687 O'Connor Sep 2007 A1
20070242660 Xu Oct 2007 A1
20070253429 James Nov 2007 A1
20070254625 Edge Nov 2007 A1
20070263610 Mitchell Nov 2007 A1
20070270164 Maier Nov 2007 A1
20070291733 Doran Dec 2007 A1
20080032703 Krumm Feb 2008 A1
20080037715 Prozeniuk Feb 2008 A1
20080045250 Hwang Feb 2008 A1
20080063153 Krivorot Mar 2008 A1
20080065775 Polk Mar 2008 A1
20080077324 Hatano Mar 2008 A1
20080117859 Shahidi May 2008 A1
20080129475 Breed Jun 2008 A1
20080162637 Adamczyk Jul 2008 A1
20080176582 Ghai Jul 2008 A1
20080186164 Emigh Aug 2008 A1
20080195314 Green Aug 2008 A1
20080200182 Shim Aug 2008 A1
20080214202 Toomey Sep 2008 A1
20080220747 Ashkenazi Sep 2008 A1
20080288166 Onishi Nov 2008 A1
20090003535 Grabelsky Jan 2009 A1
20090067417 Kalavade Mar 2009 A1
20090097450 Wallis Apr 2009 A1
20090113346 Wickramasuriya Apr 2009 A1
20090128404 Martino May 2009 A1
20090177557 Klein Jul 2009 A1
20090224931 Dietz Sep 2009 A1
20090298488 Snapp Dec 2009 A1
20090328163 Preece Dec 2009 A1
20100003976 Zhu Jan 2010 A1
20100004993 Troy Jan 2010 A1
20100042592 Stolz Feb 2010 A1
20100067444 Faccin Mar 2010 A1
20100167760 Kim Jul 2010 A1
20100188992 Raleigh Jul 2010 A1
20100268848 Maurya Oct 2010 A1
20110113060 Martini May 2011 A1
20110165861 Wilson et al. Jul 2011 A1
Foreign Referenced Citations (6)
Number Date Country
WO9921380 Oct 1998 SE
WO0145342 Jun 2001 WO
WO02011407 Jul 2001 WO
WO2004025941 Mar 2004 WO
WO2007027166 Jun 2005 WO
WO2005051033 Jun 2005 WO
Non-Patent Literature Citations (18)
Entry
Le-Pond Chin, Jyh-Hong Wen, Ting-Way Liu, The Study of the Interconnection of GSM Mobile Communications Systems Over IP Based Network, May 6, 2001, IEEE, Vehicular Technology Conference, vol. 3, pp. 2219-2223.
Qualcomm CDMA Technologies, LBS Control Plane Roaming—80-VD377-1NP A, 2006, pp. 1-10.
Qualcomm CDMA Technologies, MS Resident User Plane LBS Roaming—80-VC718-1 E, 2006, pp. 1-37.
3rd Generation Partnership Project 2, Position Determination Service Standard for Dual Mode Spread Spectrum Systems, Feb. 16, 2001, pp. i-X, 1-1-1-5, 2-1-2-2, 3-1-3-51, 4-1-4-66, A-1-A-2, B-1-B-2, C-1-C-2, D-1-D-2.
Intrado Inc., Qwest Detailed SR/ALI to MPC/GMLC Interface Specification for TCP/IP Implementation of TIA/EIA/J-STD-036 E2 with Phase I Location Description Addition, Intrado Informed Response; Apr. 2004; Issue 1.11; pp. 1-57.
Extended European Search Report from EPO in European Appl. No. 06827172.5 dated Dec. 29, 2009.
Qualcomm CDMA Technologies, LBS Control Plane/User Plane Overview—80-VD378-1NP B, 2006, pp. 1-36.
Bhalla et al, TELUS, Technology Strategy—LBS Roaming Summit, Sep. 19, 2006.
Alfredo Aguirre, Ilusacell, First and Only Carrier in Mexico with a 3G CDMA Network, 2007.
Mike McMullen, Sprint, LBS Roaming Summit, Sep. 19, 2006.
Nars Haran, U.S. Cellular, Packet Data—Roaming and LBS Overview, Nov. 2, 2007, pp. 1-15.
Location Based Services V2 Roaming Support (non proprietary), 80-V8470-2NP A, dated Jan. 27, 2005, pp. 1-56.
Yilin Ahao, Efficient and reliable date transmission for cellular and GPS based mayday systems, Nov. 1997, IEEE, IEEE Conference on Intelligent Transportation System, 1997. ITSC 97, 555-559.
Examiner's Office Letter in Japanese Patent Application No. 2006-542691 dated Sep. 7, 2009.
JP Laid-Open Gazette No. 2004-158947 (English abstract only).
JP Laid-Open Gazette No. 2007-507123 (counterpart English text US Patent Application Publication No. 2007/0054676).
T. Hattori, “Wireless Broadband Textbook,” IDG Japan, Jun. 10, 2002, p. 142-p. 143. (no English text).
Schulzrinne et al., Emergency Services for Internet Telephony Systems draft-schulzrinne-sipping-emergency-arch, IETF Standard Working Draft, Feb. 4, 2004, 1-22.
Related Publications (1)
Number Date Country
20140189112 A1 Jul 2014 US
Provisional Applications (2)
Number Date Country
60861267 Nov 2006 US
60555305 Mar 2004 US
Continuations (5)
Number Date Country
Parent 11638548 Dec 2006 US
Child 14201283 US
Parent 13064203 Mar 2011 US
Child 13775670 US
Parent 11819262 Jun 2007 US
Child 13064203 US
Parent 10836330 May 2004 US
Child 11819262 US
Parent 10739292 Dec 2003 US
Child 10836330 US
Continuation in Parts (1)
Number Date Country
Parent 13775670 Feb 2013 US
Child 11638548 US