USRE46679E1 - Method of transmitting and receiving radio access information in a wireless mobile communications system - Google Patents
Method of transmitting and receiving radio access information in a wireless mobile communications system Download PDFInfo
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- USRE46679E1 USRE46679E1 US14/326,637 US201414326637A USRE46679E US RE46679 E1 USRE46679 E1 US RE46679E1 US 201414326637 A US201414326637 A US 201414326637A US RE46679 E USRE46679 E US RE46679E
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0055—Transmission or use of information for re-establishing the radio link
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L17/00—Apparatus or local circuits for transmitting or receiving codes wherein each character is represented by the same number of equal-length code elements, e.g. Baudot code
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L7/00—Arrangements for synchronising receiver with transmitter
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W36/00—Hand-off or reselection arrangements
- H04W36/0005—Control or signalling for completing the hand-off
- H04W36/0055—Transmission or use of information for re-establishing the radio link
- H04W36/0058—Transmission of hand-off measurement information, e.g. measurement reports
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/002—Transmission of channel access control information
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W74/00—Wireless channel access
- H04W74/002—Transmission of channel access control information
- H04W74/006—Transmission of channel access control information in the downlink, i.e. towards the terminal
Definitions
- the universal mobile telecommunications system is a third-generation mobile communications system evolving from the global system for mobile communications system (GSM), which is the European standard.
- GSM global system for mobile communications system
- the UMTS is aimed at providing enhanced mobile communications services based on the GSM core network and wideband code-division multiple-access (W-CDMA) technologies.
- W-CDMA wideband code-division multiple-access
- FIG. 1 shows an exemplary diagram illustrating an Universal Mobile Telecommunication System (UMTS) network of a conventional mobile communication system.
- the UMTS is comprised of, largely, a user equipment (UE) or terminal, a UMTS Terrestrial Radio Access Network (UTRAN), and a core network (CN).
- the UTRAN comprises at least one Radio Network Su-bsystem (RNS), and each RNS is comprised of one Radio Network Controller (RNC) and at least one base station (Node B) which is controlled by the RNC.
- RNC Radio Network Controller
- Node B base station
- the MAC layer of the second layer provides an upper layer called a radio link control (RLC) layer with a service through a logical channel.
- RLC radio link control
- the RLC layer of the second layer supports reliable data transfer and performs segmentation and concatenation of a service data unit (SDU) received from an upper layer.
- SDU service data unit
- a radio resource control (RRC) layer at a lower portion of the L 3 layer is defined in the control plane and controls logical channels, transport channels, and physical channels for configuration, re-configuration and release of radio bearers (RBs).
- RRC radio resource control
- a RB is a service provided by the second layer for data transfer between the terminal and the UTRAN.
- the configuration of the RBs includes defining characteristics of protocol layers and channels required to provide a specific service, and configuring respective specific parameters and operation methods.
- a terminal In order to perform communications, a terminal needs to have a RRC connection with the UTRAN and a signaling connection with the Core Network (CN).
- the terminal transmits and/or receives a terminal's control information with the UTRAN or the CN via the RRC connection and the signaling connection.
- FIG. 3 shows an exemplary diagram for explaining how a RRC connection is established.
- the terminal transmits a RRC Connection Request Message to the RNC, and then the RNC transmits a RRC Connection Setup Message to the terminal in response to the RRC Connection Request Message. After receiving the RRC Connection Setup Message by the terminal, the terminal transmits a RRC Connection Setup Complete Message to the RNC. If the above steps are successfully completed, the terminal establishes the RRC connection with the RNC. After the RRC connection is established, the terminal transmits an Initial Direct Transfer (IDT) message to the RNC for initializing a process of the signaling connection.
- IDT Initial Direct Transfer
- a Random Access Channel of a WCDMA will be described in more detail as follows.
- the Random Access Channel is used to transfer a short length data on an uplink, and some of the RRC message (i.e., RRC Connection Request Message, Cell Update Message, URA Update Message) is transmitted via the RACH.
- the RACH is mapped to a Common Control Channel (CCCH), a Dedicated Control Channel (DCCH) and a Dedicated Traffic Channel (DTCH), and then the RACH is mapped to a Physical Random Access Channel.
- CCCH Common Control Channel
- DCCH Dedicated Control Channel
- DTCH Dedicated Traffic Channel
- FIG. 4 shows how the physical random access channel (PRACH) power ramping and message transmission may be performed.
- PRACH physical random access channel
- the physical layer of the terminal When the MAC of the terminal instructs a PRACH transmission to the physical layer of the terminal, the physical layer of the terminal first selects one access slot and one (preamble) signature, and transmits the preamble on the PRACH to an uplink.
- the preamble is transmitted within a particular the length of access slot duration (e.g., 1.33 ms).
- One signature is selected among the 16 different signatures within a first certain length of the access slot, and it is transmitted.
- the terminal transmits a 10 ms or 20 ms length of the message part using an OVSF code that correspond with the transmitted signature. If the NACK response is received, the MAC of the terminal instructs the PRACH transmission again to the physical layer of the terminal after a certain time period. Also, if no AICH is received with respect to the transmitted preamble, the terminal transmits a new preamble with a higher power compared to that used for the previous preamble after a predetermined access slot.
- FIG. 5 illustrates an exemplary structure of an Acquisition Indicator Channel (AICH).
- AICH Acquisition Indicator Channel
- the terminal may select any arbitrary signature (Si) from S 0 signature to S 15 signature, and then transmits the selected signature during the first 4096 chips length.
- the remaining 1024 chips length is set as a transmission power off period during which no symbol is transmitted.
- FIG. 6 shows an exemplary structure of an Evolved Universal Mobile Telecommunications System (E-UMTS).
- E-UMTS Evolved Universal Mobile Telecommunications System
- the E-UMTS system is a system that has evolved from the UMTS system, and its standardization work is currently being performed by the 3GPP standards organization.
- the E-UMTS network generally comprises at least one mobile terminal (i.e., user equipment: UE), base stations (i.e., Node Bs), a control plane server (CPS) that performs radio (wireless) control functions, a radio resource management (RRM) entity that performs radio resource management functions, a mobility management entity (MME) that performs mobility management functions for a mobile terminal, and an access gateway (AG) that is located at an end of the E-UMTS network and connects with one or more external networks.
- UE user equipment
- base stations i.e., Node Bs
- CPS control plane server
- RRM radio resource management
- MME mobility management entity
- AG access gateway
- the various layers of the radio interface protocol between the mobile terminal and the network may be divided into L 1 (Layer 1 ), L 2 (Layer 2 ), and L 3 (Layer 3 ) based upon the lower three layers of the Open System Interconnection (OSI) standard model that is known the field of communication systems.
- OSI Open System Interconnection
- a physical layer that is part of Layer 1 provides an information transfer service using a physical channel
- a Radio Resource Control (RRC) layer located in Layer 3 performs the function of controlling radio resources between the mobile terminal and the network.
- RRC Radio Resource Control
- the functions of the RRC layer may be distributed among and performed within the Node B, the CPS/RRM and/or the MME.
- FIG. 7 shows an exemplary architecture of the radio interface protocol between the mobile terminal and the UTRAN (UMTS Terrestrial Radio Access Network).
- the radio interface protocol of FIG. 7 is horizontally comprised of a physical layer, a data link layer, and a network layer, and vertically comprised of a user plane for transmitting user data and a control plane for transferring control signaling.
- the radio interface protocol layer of FIG. 2 may be divided into L 1 (Layer 1 ), L 2 (Layer 2 ), and L 3 (Layer 3 ) based upon the lower three layers of the Open System Interconnection (OSI) standards model that is known the field of communication systems.
- OSI Open System Interconnection
- the physical layer uses a physical channel to provide an information transfer service to a higher layer.
- the physical layer is connected with a medium access control (MAC) layer located thereabove via a transport channel, and data is transferred between the physical layer and the MAC layer via the transport channel.
- MAC medium access control
- data is transferred via a physical channel.
- the MAC layer of Layer 2 provides services to a radio link control (RLC) layer (which is a higher layer) via a logical channel,
- RLC radio link control
- the RLC layer of Layer 2 supports the transmission of data with reliability.
- the PDCP layer of Layer 2 performs a header compression function that reduces unnecessary control information such that data being transmitted by employing Internet protocol (IP) packets, such as IPv4 or IPv6, can be efficiently sent over a radio (wireless) interface that has a relatively small bandwidth.
- IP Internet protocol
- the radio resource control (RRC) layer located at the lowermost portion of Layer 3 is only defined in the control plane, and handles the control of logical channels, transport channels, and physical channels with respect to the configuration, re-configuration and release of radio bearers (RB).
- the RB refers to a service that is provided by Layer 2 for data transfer between the mobile terminal and the UTRAN.
- channels used in downlink transmission for transmitting data from the network to the mobile terminal there is a broadcast channel (BCH) used for transmitting system information, and a shared channel (SCH) used for transmitting user traffic or control messages.
- BCH broadcast channel
- SCH shared channel
- SCCH downlink Shared Control Channel
- the downlink SCCH transmission includes information regarding a data variation, a data channel coding technique, and a data size where the data is transmitted to the downlink SCH.
- the mobile terminal when the mobile terminal moves from a source cell to a target cell, the mobile terminal uses a RACH to transmit a cell update message to the target cell. Namely, in order to transmit the cell update message, the terminal uses the RACH for an uplink time synchronization with the target cell and for an uplink resource allocation.
- the message transmission my be delayed, and a handover processing time is increased because of the possibility of RACH collision.
- the present invention has been developed in order to solve the above described problems of the related art. As a result, the present invention provides a method of transmitting and receiving control radio connection information that allows a faster and an efficient way of accessing a terminal to a target base station while performing a handover for the terminal to a cell of the target base station.
- FIG. 2 shows an exemplary diagram illustrating a structure of a Radio Interface Protocol (RIP) between a UE and the UTRAN.
- RIP Radio Interface Protocol
- FIG. 6 shows an overview of an E-UMTS network architecture.
- One aspect of the present invention is the recognition by the present inventors regarding the problems and drawbacks of the related art described above and explained in more detail hereafter. Based upon such recognition, the features of the present invention have been developed.
- the mobile terminal when the mobile terminal moves from a source cell to a target cell, the mobile terminal uses a RACH to transmit a cell update message to the target cell.
- the processing time for the handover process may be delayed.
- the features of the present invention provide that the terminal receives necessary information from a source cell in advance (i.e., before the terminal transmits a RACH setup request to a network) in order to utilize the RACH in a later step.
- the terminal can connect with the target cell with minimal delays.
- a source enhanced Node B may manage the source cell described above and a target enhanced Node B (eNB) may manage the target cell.
- FIG. 9 shows an exemplary diagram for transmitting and receiving radio connection information according to an exemplary embodiment of the present invention.
- the UE (or terminal) ( 10 ) may transmit a measurement report to the source eNB ( 12 ) by measuring a condition of a downlink physical channel for other cells periodically or upon the occurrence of event (i.e., user command, setting information, etc) (S 10 ).
- the eNB may determine which cell, that the UE will be moved to, has a better channel condition compared to the current cell.
- the source eNB ( 12 ) may determine whether to perform a handover for the UE ( 10 ) from a current cell to the other cell, or whether to keep the UE in current cell ( 811 ).
- the source eNB ( 12 ) may transmit a handover request message to the target eNB ( 14 ) in order to request a handover for the UE to the target eNB.
- the handover request message may include a UE identification (ID) and/or a buffer state of the UE.
- the target eNB ( 14 ) may transmit a handover confirm message to the source eNB ( 12 ) (S 13 ).
- the handover confirm message may include information that may be necessary in the course of connecting the UE ( 10 ) to the target cell. Namely, the necessary information may include information used in the RACH which is used for performing a radio access procedure from the UE to the target eNB. For example, when the RACH is being used while the UE accesses to the target eNB, the UE may utilize a preamble which is selected from signatures contained in the UE.
- the target eNB may acknowledge the mapping relationship between an UE's ID and the signature, where the UE's ID is transmitted from the Handover Request Message. Therefore, when the UE transmits the preamble to the target eNB for establishing a radio connection to the target cell, the target eNB may determine an ID of the UE using the preamble. Also, the Handover Confirm message may include a transmission characteristic of the preamble that is transmitted from the UE ( 10 ) to the target eNB ( 14 ). The transmission characteristic may relate to frequency and time used in transmitting the preamble information.
- the source eNB ( 12 ) may transmit a Handover Command message to the UE ( 10 ).
- the Handover Command message may include necessary information which comes from the target eNB, for establishing the radio connection to the target eNB. Also, the Handover Command message may include information of the signature and the preamble which is to be used in the access procedure to the target eNB.
- the target eNB ( 14 ) may receive the preamble of the UE. Since the target eNB ( 14 ) already allocates a signature used in the preamble to the UE in the use of handover, the UE can be identified by the preamble. The target eNB ( 14 ) may allocate the uplink radio resource to the UE ( 10 ) for the UE to access the target eNB and to transmit the handover complete message to the target eNB. (S 16 ) Also, the allocated radio resources information may be transmitted to the UE ( 10 ) via a downlink SCH. Alternatively, the allocated radio resources information may be transmitted via a downlink SCCH. Further, the allocated radio resources may be transmitted within an ACK/NACK signaling.
- the present invention may provide a method of transmitting access information in a mobile communications system, the method comprising: receiving, from a source base station, a handover request for performing a handover from the source base station to a target base station; transmitting access information to the source base station upon receiving the handover request, wherein the access information is used to allow a terminal to access the target base station; allocating a radio resource for an uplink and transmitting radio resource allocation information to the terminal; receiving, from the terminal, preamble information of the terminal; and receiving a handover complete message from the terminal, wherein the radio resource allocation information is transmitted to the terminal through at least one of a downlink shared channel (SCH) and a downlink shared control channel (SCCH), an ACK/NACK signal includes the allocated resource information, the preamble information is used to identify the terminal, the handover complete message includes at least one of buffer state information of the terminal and uplink traffic data, and the handover complete message includes uplink traffic data if the radio resource allocation for the uplink is sufficient to transmit the uplink traffic
- the present invention is described in the context of mobile communications, the present invention may also be used in any wireless communication systems using mobile devices, such as PDAs and laptop computers equipped with wireless communication capabilities (i.e. interface). Moreover, the use of certain terms to describe the present invention should not limit the scope of the present invention to a certain type of wireless communication system. the present invention is also applicable to other wireless communication systems using different air interfaces and/or physical layers, for example, TDMA, CDMA, FDMA, WCDMA, OFDM, EVDO, Mobile Wi-Max, Wi-Bro, etc.
- the preferred embodiments may be implemented as a method, apparatus or article of manufacture using standard programming and/or engineering techniques to produce software, firmware, hardware, or any combination thereof.
- article of manufacture refers to code or logic implemented in hardware logic (e.g., an integrated circuit chip, Field Programmable Gate Array (FPGA), Application Specific Integrated Circuit (ASIC), etc.) or a computer readable medium (e.g., magnetic storage medium (e.g., hard disk drives, floppy disks, tape, etc.), optical storage (CD-ROMs, optical disks, etc.), volatile and non-volatile memory devices (e.g., EEPROMs, ROMs, PROMs, RAMs, DRAMs, SRAMs, firmware, programmable logic, etc).
- FPGA Field Programmable Gate Array
- ASIC Application Specific Integrated Circuit
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Priority Applications (3)
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US14/326,637 USRE46679E1 (en) | 2005-10-31 | 2014-07-09 | Method of transmitting and receiving radio access information in a wireless mobile communications system |
US14/723,093 USRE46714E1 (en) | 2005-10-31 | 2015-05-27 | Method of transmitting and receiving radio access information in a wireless mobile communications system |
US15/824,609 USRE48478E1 (en) | 2005-10-31 | 2017-11-28 | Method of transmitting and receiving radio access information in a wireless mobile communications system |
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US11/553,939 US7809373B2 (en) | 2005-10-31 | 2006-10-27 | Method of transmitting and receiving radio access information in a wireless mobile communications system |
US12/870,747 US8219097B2 (en) | 2005-10-31 | 2010-08-27 | Method of transmitting and receiving radio access information in a wireless mobile communications system |
US14/326,637 USRE46679E1 (en) | 2005-10-31 | 2014-07-09 | Method of transmitting and receiving radio access information in a wireless mobile communications system |
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US14/326,637 Division USRE46679E1 (en) | 2005-10-31 | 2014-07-09 | Method of transmitting and receiving radio access information in a wireless mobile communications system |
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US14/723,093 Continuation USRE46714E1 (en) | 2005-10-31 | 2015-05-27 | Method of transmitting and receiving radio access information in a wireless mobile communications system |
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Cited By (1)
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USRE48326E1 (en) | 2005-10-31 | 2020-11-24 | Evolved Wireless Llc | Method of transmitting and receiving radio access information in a wireless mobile communications system |
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3GPP TS 36.321 V8.2.0 "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Medium Access Control (MAC) Protocol Specification (Release 8)" May 2008 (33 pages). |
3GPP TS 36.321 V8.3.0 "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Medium Access Control (MAC) Protocol Specification (Release 8)" Sep. 2008 (36 pages). |
3GPP TS 36.331 V8.0.0 (Dec. 2007) "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Radio Resource Control (RRC); Protocol Specification (Release 8)" Dec. 2007 (56 pages). |
3GPP TS 36.331 V8.1.0 (Mar. 2008) "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Radio Resource Control (RRC); Protocol Specification (Release 8)" Mar. 2008 (122 pages). |
3GPP TS 36.331 V8.2.0 (May 2008) "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Radio Resource Control (RRC); Protocol Specification (Release 8)" May 2008 (151 pages). |
3GPP TS 36.331 V8.3.0 (Sep. 2008) "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Radio Resource Control (RRC); Protocol Specification (Release 8)" Sep. 2008 (178 pages). |
3GPP TS 36.331 V8.4.0 (Dec. 2008) "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Radio Resource Control (RRC); Protocol Specification (Release 8)" Dec. 2008 (198 pages). |
3GPP TS 36.331 V8.5.0 (Mar. 2009) "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Radio Resource Control (RRC); Protocol Specification (Release 8)" Mar. 2009 (204 pages). |
3GPP TS 36.331 V8.6.0 (Jun. 2009) "3rd Generation Partnership Project; Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) Radio Resource Control (RRC); Protocol Specification (Release 8)" Jun. 2009 (207 pages). |
3GPP TSG RAN WG1 #42 on LTE "Orthogonal Pilot Channel in the Same Node B in Evolved UTRA Uplink" London, UK; R1-050851; Aug. 29-Sep. 2, 2005; (9 pages). |
3GPP TSG RAN WG1 #44 "Some Consideration for LTE Rach 13.2.3.1" Denver, USA; R1-060531; Feb. 13-17, 2006 (4 pages). |
3GPP TSG RAN WG1 #44-bis "A New Preamble Shape for the Random Access Preamble in E-UTRA" Athens, Greece, Mar. 27-31, 2006; R1-060867; 5 pages. |
3GPP TSG RAN WG1 Ad Hoc on LTE "On Allocation of Uplink Pilot Sub-Channels in EUTRA SC-FDMA" London, UK; R1-050822; Aug. 29-Sep. 2, 2005; (7 pages). |
3GPP TSG RAN WG1 Ad Hoc on LTE "On Uplink Pilot in EUTRA SC-FDMA" San Diego, USA; R1-051062; Oct. 10-14, 2005 (7 pages). |
3GPP TSG RAN WG2 #52 "Mobility in LTE Active" Athens, Greece; Tdoc R2-060915; Mar. 27-31, 2006 (4 pages). |
3GPP TSG RAN WG2 #57 "Uplink Synchronization" R2-070781; St. Louis, USA; Feb. 12-16, 2007 (3 pages). |
3GPP TSG RAN1 #43 "RACH Design for EUTRA" Helsinki, Finland; Jan. 23-25, 2006; R1-060025; 11 pages. |
3GPP TSG RAN1 #44 "RACH Design for EUTRA" Denver, USA; R1-060387; Feb. 13-17, 2006 (11 pages). |
3GPP TSG RAN1 #44 "RACH Design for EUTRA" Denver, USA; R1-060387; MARKED-UP; Feb. 13-17, 2006 (11 pages). |
3GPP TSG RAN2 Meeting #63 "Handling of Received UL Grant in RA Procedure" Jeju, South Korea; Aug. 18-22, 2008; Marked-Up; R2-084388; 4 pages. |
3GPP TSG RANI #44-bis "Random Access Sequence Design" R1-060884; Athens, Greece, Mar. 24-26, 2006 (7 pages). |
3GPP TSG WG1 Meeting #44bis "RACH Design for E-UTRA" R1-060797; Athens, Greece, Mar. 27-31, 2006 (9 pages-. |
3GPP TSG WG1 Meeting #44bis "RACH Design for E-UTRA" R1-060797; Athens, Greece, Mar. 27-31, 2006 (9 pages—. |
3GPP TSG-RAN WG1 Meeting #44bis "Investigations on Random Access Channel Structure for E-UTRA Uplink" Athens, Greece; Mar. 27-31, 2006; R1-060992; 7 pages. |
3GPP TSG-RAN WG1 Meeting #53 "UL Grant for Random Access Message 3" R1-082078; Kansas City, USA; May 5-9, 2008 (4 pages). |
3GPP TSG-RAN WG2 "Access Procedure" Shanghai, China; R2-061201; May 8-12, 2006 (3 pages). |
3GPP TSG-RAN WG2 #50 "Intra-System Mobility" Sophia-Antipolis, France; R2-060013; Jan. 9-13, 2006 (7 pages). |
3GPP TSG-RAN WG2 #61 bis "Control of HARQ for RACH message 3" R2-081764; Shenzhen, China; Mar. 31-Apr. 4, 2008 (5 pages). |
3GPP TSG-RAN WG2 #62 "Update of MAC Random Access Procedure" Tdoc R2-082731; Kansas City, USA; May 5-9, 2008 (7 pages). |
3GPP TSG-RAN WG2 #63 "Handling of Received UL Grant in RA Procedure" Jeju, South Korea; Aug. 18-22, 2008; R2-084387; 3 pages. |
3GPP TSG-RAN WG2 #63 "NDI and Message 3" Jeju Island, Korea; Aug. 18-22, 2008; R2-084156; 5 pages. |
3GPP TSG-RAN WG2 #63 "PCCH Configuration in SIB1" Jeju, Korea; R2-083882; Aug. 18-22, 2008; (4 pages). |
3GPP TSG-RAN WG2 Meeting #53 "Cell Switching in LTE-Active State" Shanghai, China; R2-061196; May 8-12, 2006 (5 pages). |
3GPP TSG-RAN WG2 Meeting #53 "Intra-LTE Handover Operation" Shanghai, PRC; R2-061135; May 8-13, 20016 (3 pages). |
3GPP TSG-RAN WG2 Meeting #53 "Cell Switching in LTE—Active State" Shanghai, China; R2-061196; May 8-12, 2006 (5 pages). |
3GPP TSG-RAN WG2 Meeting #64bis "Clarification on RA Preambles" Athens, Greece; R2-091523; Jan. 9-13, 2009 (3 pages). |
3GPP TSG-RAN WG2 Meeting #64bis "Clarification on RA Preambles" Athens, Greece; R2-091523; MARKED-UP; Jan. 9-13, 2009 (3 pages). |
3GPP TSG-RAN WG3 #48 bis meeting "On Intra-Access Mobility for LTE-ACTIVE UEs" Cannes, France; R3-051108; Oct. 11-14, 2005 (4 pages). |
3GPP TSG-RAN WG3 #48 bis meeting "On Intra-Access Mobility for LTE—ACTIVE UEs" Cannes, France; R3-051108; Oct. 11-14, 2005 (4 pages). |
3GPP TSG-RAN WG3 #53bis "Intral-LTE Mobility Procedure" Seoul, Korea; R3-061489; Oct. 10-13, 2006 (4 pages). |
3GPP TSG-RAN WG3 #54 "Updates of Intra-LTE Handover in 36.300" Riga, Latvia Nov. 6-10, 2006; R3-061788; 6 pages. |
3GPP TSG-RAN WG3 #54 "Updates of Intra-LTE Handover in 36.300" Riga, Latvia Nov. 6-10, 2006; R3-061945; 10 pages. |
3GPP TSG-RAN Working Group 2 Meeting #52 "Intra-RAT Handover Access Procedure" Shanghai, China; May 8-12, 2006; R2-061229 (4 pages). |
3GPP TSG-RAN2 Meeting #59bis "E-UTRA RRC TP Capturing Current Status on Mobility" Shanghai, P.R. China; Oct. 8-12, 2007; R2-074014 (11 pages). |
3GPP TSG-RAN2 Meeting #62bis "Clarification of DL- and UL-SCH Data Transfer" Warsaw, Poland, R2-083400; MARKED-UP; Jun. 30-Jul. 4, 2008 (7 pages). |
3GPP TSG-RAN2 Meeting #62bis "Clarification of DL- and UL-SCH Data Transfer" Warsaw, Poland, R2-083701 (revision of R2-083400); MARKED-UP; Jun. 30-Jul. 4, 2008 (8 pages). |
3GPP TSG-RAN2 Meeting #62bis "NDI and Msg3" Warsaw, Poland, R2-083703; MARKED-UP; Jun. 30-Jul. 4, 2008 (3 pages). |
3GPP TSG-RAN2 Meeting #63 "Corrections Relating to RACH Partitioning" Jeju, Korea; R2-084788; Aug. 18-22, 2008; (4 pages). |
3rd Generation Partnership Project "Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) and Evolved Universal Terrestrial Radio Access Network (E-UTRAN); Radio Interface Protocol Aspects (Release 7)" 3GPP TR 25.813; V7.0.0 (Jun. 2006). |
3rd Generation Partnership Project" Technical Specification Group Radio Access Network; Evolved Universal Terrestrial Radio Access (E-UTRA) and Evolved Universal Terrestrial Radio Access Network (E-UTRAN); Radio Interface Protocol Aspects (Release 7)" 3GPP TR 25.813; V7.0.0 (Jun. 2006). |
Abramson, Norman "The Aloha System-Another Alternative for Computer Communications" University of Hawaii; Honolulu, Hawaii; Fall Joint Computer Conference, 1970; 6 pages. |
Abramson, Norman "The Aloha System—Another Alternative for Computer Communications" University of Hawaii; Honolulu, Hawaii; Fall Joint Computer Conference, 1970; 6 pages. |
Chu, David C. "Polyphase Codes with Good Periodic Correlation Properties" Information Theory IEEE Transaction on, vol. 18, Issue 4, pp. 531-532, Jul. 1972). |
Communication Pursuant to Rules 70(2) and 70a(2) EPC for European Patent Application No. 06847353.7, dated Jan. 10, 2012. |
Dahlman, Erik "3G Evolution HSPA and LTE for Mobile Broadband" Academic Press; 2007; 18 pages. |
Decision Denying Institution of Inter Partes Review 37 C.F.R. 42.108 for Apple Inc. v. Evolved Wireless, LLC, United States Patent and Trademark. Office-Before the Patent Trial and Appeal Board, Case No. IPR 2016-01185, filed Dec. 19, 2016 (18 pages). |
Decision Denying Institution of Inter Partes Review 37 C.F.R. 42.108 for Apple Inc. v. Evolved Wireless, LLC, United States Patent and Trademark. Office—Before the Patent Trial and Appeal Board, Case No. IPR 2016-01185, filed Dec. 19, 2016 (18 pages). |
Decision Denying Institution of Inter Partes Review 37 C.F.R. 42.108 for Samsung Electronics Co., Ltd. et al., v. Evolved Wireless, LLC, United States Patent and Trademark Office-Before the Patent Trial and Appeal Board, Case No. IPR 2016-01347, submitted Dec. 19, 2016 (19 pages). |
Decision Denying Institution of Inter Partes Review 37 C.F.R. 42.108 for Samsung Electronics Co., Ltd. et al., v. Evolved Wireless, LLC, United States Patent and Trademark Office—Before the Patent Trial and Appeal Board, Case No. IPR 2016-01347, submitted Dec. 19, 2016 (19 pages). |
Decision to Grant (Including Translation) for Korean Application No. 10-2006-0063135, dated Aug. 25, 2010. |
Decision to Grant for Korean Application No. 10-2006-0063135, dated Aug. 25, 2010. |
Decision-Denying Request for Rehearing for Apple Inc. v. Evolved Wireless, LLC, United States Patent and Trademark Office-Before the Patent Trial and Appeal Board, Case No. IPR 2016-01185, filed Apr. 17. 2017 (8 pages). |
Decision—Denying Request for Rehearing for Apple Inc. v. Evolved Wireless, LLC, United States Patent and Trademark Office—Before the Patent Trial and Appeal Board, Case No. IPR 2016-01185, filed Apr. 17. 2017 (8 pages). |
Decision-Denying Request for Rehearing-37 C.F.R. § 42.71(d) for Samsung Electronics Co., Ltd. et al., v. Evolved Wireless, LLC, United States Patent and Trademark Office-Before the Patent Trial and Appeal Board, Case No. IPR 2016-01347, submitted Apr. 17, 2017 (8 pages). |
Decision—Denying Request for Rehearing—37 C.F.R. § 42.71(d) for Samsung Electronics Co., Ltd. et al., v. Evolved Wireless, LLC, United States Patent and Trademark Office—Before the Patent Trial and Appeal Board, Case No. IPR 2016-01347, submitted Apr. 17, 2017 (8 pages). |
Defendants' Initial Invalidity Contentions; In the United States District Court for the District of Delaware; Civil Action Nos. 1:15-cv-00542-SLR-SRF; 1:15-cv-00543-SLR-SRF; 1:15-cv-00544-SLR-SRF, 1:15-cv-00545-SLR-SRF; 1:15-cv-00546-SLR-SRF; 1:15-cv-00547-SLR-SRF;filed Mar. 14, 2016 (1244 pages). |
Defendants' Invalidity Contentions; In the United States District Court for the District of Delaware; Civil Action Nos. 1:15-cv-00542-SLR-SRF; 1:15-cv-00543-SLR-SRF; 1:15-cv-00544-SLR-SRF; 1:15-cv-00545-SLR-SRF; 1:15-cv-00546-SLR-SRF; 1:15-cv-00547-SLR-SRF; filed Feb. 28, 2017 (3,140 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Apple Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Aug. 23, 2016-Nov. 8, 2016 Docket Nos. 77-108; (785 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Apple Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Aug. 31, 2017-Oct. 5, 2017: (307 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Apple Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Aug. 31, 2017—Oct. 5, 2017: (307 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Apple Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; includes documents filed from Dec. 27, 2016-Jan. 17, 2017; Docket Nos. 120-122; (9 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Apple Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Mar. 20, 2017-May 30, 2017; Docket Nos. 146-157; (175 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Apple Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Nov. 9, 2016-Dec. 12, 2016; Docket Nos. 109-119; (212 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Apple Inc.; U.S. District Court, for the District of Delaware Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Jan. 25, 2017-Mar. 17, 2017; Docket Nos. 123-145; (176 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Applie Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Jul. 15, 2016-Aug. 19, 2016-Docket Nos. 68-76; (308 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Applie Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Jul. 15, 2016-Aug. 19, 2016—Docket Nos. 68-76; (308 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Applie Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from Jun. 25, 2015-May 13, 2016, Docket Nos. 1-53; (1259 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Applie Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from May 17, 2016-Jul. 11, 2016-Docket Nos. 54-67; (4,028 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Applie Inc.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00542-SLR-SRF; Includes documents filed from May 17, 2016-Jul. 11, 2016—Docket Nos. 54-67; (4,028 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1 :15-cv-00543-SLR-SRF; Includes documents filed from Aug. 23, 2016-Nov. 8, 2016; Docket Nos. 82-114; (702 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF, Includes documents filed from May 17, 2016-Jul. 11, 2016 Docket Nos. 55-69; (4,029 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF: Includes documents filed from Jun. 25, 2015-May 13, 2016, Docket Nos. 1-54; (1369 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Aug. 31, 2017-Oct. 5, 2017; (352 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Aug. 31, 2017—Oct. 5, 2017; (352 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Dec. 27, 2016-Jan. 17, 2017; Docket Nos. 126-129; (11 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Jan. 25, 2017-Mar. 17, 2017; Docket Nos. 130-151; (161 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Jul. 15, 2016-Aug. 19, 2016-Docket Nos. 70-81; (336 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Jul. 15, 2016-Aug. 19, 2016—Docket Nos. 70-81; (336 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Jun. 5, 2017-Aug. 25, 2017; Docket Nos. 164-201; (278 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Mar. 22, 2017-May 30, 2017; Docket Nos. 152-163; (172 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. HTC Corporation et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00543-SLR-SRF; Includes documents filed from Nov. 9, 2016-Dec. 7, 2016; Docket Nos. 115-125; (212 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al., U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Dec. 27, 2016-Jan. 23, 2017; Docket Nos. 114-117; (11 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al..; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Aug. 23, 2016-Nov. 8, 2016; Docket Nos. 72-102; (740 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al..; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Jul. 15, 2016-Aug. 19, 2016; Docket Nos. 62-71; (310 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al..; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Mar. 20, 2017-May 30, 2017; Docket Nos. 136-147; (179 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al..; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from May 17, 2016-Jul. 11, 2016; Docket Nos. 49-61; (4,026 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Aug. 31, 2017-Oct. 3, 2017; (255 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Aug. 31, 2017—Oct. 3, 2017; (255 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Jan. 25, 2017-Mar. 17, 2017; Docket Nos. 118-135; (103 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Jun. 14, 2017-Aug. 25, 2017; Docket Nos. 148-179; (264 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Jun. 25, 2015-May 13, 2016, Docket Nos. 1-48; (993 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Lenovo Group Ltd., et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00544-SLR-SRF; Includes documents filed from Nov. 9, 2016-Dec. 7, 2016; Docket Nos. 103-113; (212 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1 15-cv-00547-SLR-SRF; Includes documents filed from Aug. 31, 2017-Sep. 28, 2017; (232 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1 15-cv-00547-SLR-SRF; Includes documents filed from Aug. 31, 2017—Sep. 28, 2017; (232 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; includes documents filed from Aug. 24, 2016-Nov. 8, 2016-Docket Nos. 79-113; (796 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; includes documents filed from Aug. 24, 2016-Nov. 8, 2016—Docket Nos. 79-113; (796 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from Dec. 19, 2016-Jan. 17, 2017; Docket Nos. 130-133; (11 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from Jan. 25, 2017-Mar. 17, 2017; Docket Nos. 134-151; (98 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from Jul. 15, 2016-Aug. 19, 2016-Docket Nos. 70-78; (305 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from Jul. 15, 2016-Aug. 19, 2016—Docket Nos. 70-78; (305 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from Jun. 25, 2015-May 17, 2016, Docket Nos. 1-57; (1273 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from Jun. 5, 2017-Aug. 25, 2017; Docket Nos. 166-192; (155 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from Mar. 21, 2017-May 30, 2017; Docket Nos. 151-165; (176 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from May 18, 2016-Jul. 11, 2016-Docket Nos. 58-69; (3,996 pages). |
Documents filed with U.S. District Court Proceedings for Evolved Wireless, LLC v. Microsoft Corporation, et al.; U.S. District Court, for the District of Delaware (Wilmington); Civil Action No. 1:15-cv-00547-SLR-SRF; Includes documents filed from May 18, 2016-Jul. 11, 2016—Docket Nos. 58-69; (3,996 pages). |
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USRE48326E1 (en) | 2005-10-31 | 2020-11-24 | Evolved Wireless Llc | Method of transmitting and receiving radio access information in a wireless mobile communications system |
USRE48478E1 (en) | 2005-10-31 | 2021-03-16 | Evolved Wireless Llc | Method of transmitting and receiving radio access information in a wireless mobile communications system |
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