Storing multiple instances of content

Information

  • Patent Grant
  • 10659837
  • Patent Number
    10,659,837
  • Date Filed
    Thursday, December 21, 2017
    6 years ago
  • Date Issued
    Tuesday, May 19, 2020
    3 years ago
Abstract
Content receivers may simultaneously record multiple instances of content for multiple programming channels based on content provider instructions. Systems and methods utilize the content receivers to record these multiple instances from at least a single transponder. In some instances, multiple transponders may have a common control word so that content carried on each such transponder may be simultaneously received, decoded and recorded. Further, a single demodulator may be associated with multiple tuners, so that the single demodulator processes all content received from transponders with common control words and/or other encryption mechanisms.
Description
FIELD OF THE INVENTION

This disclosure relates generally to utilizing content receivers to view multiple instances of content, often recorded simultaneously.


SUMMARY

The present disclosure discloses systems and methods for storing multiple instances of content utilizing a content receiver. One embodiment takes the form of a method for recording multiple instances of content, comprising: receiving, at a content receiver, an instruction to initiate recording; in response to the instruction, setting a first tuner to a first carrier frequency; further in response to the instruction, setting a second tuner to a second carrier frequency; receiving a first set of content at the first tuner, the first set of content encrypted with a control word; receiving a second set of content at the second tuner, the second set of content encrypted with the control word; and recording the first and second sets of content on a storage medium.


Another embodiment may take the form of an apparatus for receiving multiple instances of content, comprising: a first communications unit operative to receive a first set of instances of content transmitted on a first transponder; a second communications unit operative to receive a second set of instances of content transmitted on a second transponder; a processing unit operatively connected to the first and second communications unit, the processing unit operative to control the first and second communications unit; a descrambler operative to descramble the first and second instances of content; and a data storage unit operative to receive and store the first and second instances of content.


Still another embodiment may take the form of a method for decrypting content, comprising: receiving a first set of encrypted content modulated with a first carrier frequency; substantially simultaneously, receiving a second set of encrypted content modulated with a second carrier frequency; and decrypting both the first and second sets of encrypted content with a common control word, thereby producing a first and second set of decrypted content.


It is to be understood that both the foregoing general description and the following detailed description are for purposes of example and explanation and do not necessarily limit the present disclosure. The accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate subject matter of the disclosure. Together, the descriptions and the drawings serve to explain the principles of the disclosure.





BRIEF DESCRIPTION OF THE DRAWINGS


FIG. 1 is a block diagram illustrating a system for automatically recording multiple instances of content from one or more programming providers.



FIG. 2 is a block diagram illustrating a system for storing multiple instances of content.





DETAILED DESCRIPTION OF THE EMBODIMENTS

The description that follows includes sample systems, methods, and computer program products that embody various elements of the present disclosure. However, it should be understood that the described disclosure may be practiced in a variety of forms in addition to those described herein.


Users of content receivers may desire to access different instances of content that are broadcast simultaneously and/or substantially contemporaneously by content providers. For example, many television programming viewers wish to watch different television programs that occupy the same broadcast time slot, such as the different television programs associated with the major television programs that are broadcast between seven PM and ten PM mountain time. Content receivers may attempt to address this issue by utilizing multiple tuners that can each separately present and/or record different, simultaneously broadcast instances of content. However, a separate tuner may still be required for each simultaneous or substantially contemporaneous instance of broadcast or otherwise received content that a content receiver user wishes to view and/or record. Further, in addition to separate tuners required for each instance of content, the content receiver may require sufficient resources to descramble, demodulate and store each of the instances of content desired by the user.



FIG. 1 is a block diagram illustrating a system 100 for automatically recording multiple instances of content from one or more programming providers. The automatic recording of multiple instances of content provided by the system 100 may enable users of content receivers to access different instances of content that are broadcast simultaneously and/or substantially contemporaneously by content providers. “Multiple instances of content” may be, for example, different programs, movies, program episodes, and so on. Thus, multiple instances of content may be different episodes of a program, or different programs. It should be appreciated that the multiple instances of content may be recorded simultaneously by the embodiments described herein.


Further, it should be appreciated that a first group of multiple instances of content may occupy a first time slot, while a second group of multiple instances of content may occupy a second time slot. Embodiments described herein may record the first group at the first time and the second group at the second time.


In various broadcast systems, content providers may broadcast content to a plurality of different content receivers via one or more frequency bands utilizing one or more satellites. Each multiplexed signal contained in the frequency band (sometimes referred to as a transponder) may be configured to include data related to one or more instances of content, such as one or more television programming channels. The data related to each of the instances of content included in each frequency may be scrambled utilizing one or more CWs (control words), which may then be encrypted to generate one or more ECMs (entitlement control messages) which may in turn be included with the data. A content receiver may typically tune to one or more of the frequency bands to receive the multiplexed signal that contains data for a particular programming channel, or group of channels, utilizing one or more tuners. The content receiver may process only a subset of the programming channels by keeping the data associated with the particular programming channel and discarding data received via the tuned frequency band and multiplexed signal associated with other programming channels. The content receiver may decrypt the ECM included with the data associated with the particular programming channel to obtain the CW, descramble the data utilizing the CW, and store and/or transmit the data (e.g., decompressed, reconstructed audio and video data) to one or more presentation devices.


As illustrated in FIG. 1, in this implementation, one or more content providers may select multiple instances of content 101 to be automatically recorded such as by utilizing predefined recording parameters. For example, a content provider may select all of the television events defined as “primetime events” associated with all channels defined as “primetime television channels” for a particular period of time defined as “prime time” to be automatically recorded. In other examples, the content provider may select television events associated with programming channels for a particular time period (such as a half hour, multiple hours, and/or an entire programming day) in response to user selections. After the content provider selects the multiple instances of content, the multiple instances of content may be multiplexed utilizing a multiplexer 102. The multiplexed signal (which includes the multiplexed selected multiple instances of content) may then be scrambled by a scrambler 105 utilizing one or more CWs 103. The CW may be encrypted to generate an ECM, which may be included with the multiplexed signal. The scrambled multiplexed signal may then be included in a broadcast on a frequency band (e.g., cable, satellite), which may then be transmitted to one or more satellites 106 for broadcast. The satellite 106 may receive the frequency band (uplink frequency band) and then broadcast the multiplexed signal to a number of content receivers on a translated frequency band (downlink frequency band), such as a content receiver that includes a tuner 107.


The tuner 107 may tune to the frequency band that includes the multiple instances of content (which may be performed in response to one or more recording instructions received by the content receiver that includes the tuner from the content provider). The data received via the tuned frequency may be demultiplexed by a demultiplexer 109 and then descrambled by a descrambler 110 (e.g., decoder) utilizing the CW before being stored in a non-transitory storage medium 111 (which may take the form of, but is not limited to: a magnetic storage medium; optical storage medium; magneto-optical storage medium; random access memory; erasable programmable memory; flash memory; and so on) based on recording parameters, such as predefined recording parameters. The demultiplexer 109 may obtain the included ECM 104, and the ECM may be provided to a smart card 108 that may decrypt the ECM 104 to obtain the CW 103 for the descrambler 110. Hence, the multiple instances of content may subsequently all be available to a user of the content receiver (until such time as they are removed from the non-transitory storage medium) without requiring multiple tuners to receive each of the multiple instances of content, without requiring the smart card to decrypt multiple ECMs. In some implementations, the multiple instances of content may be stored in a single file. It should be appreciated that the tuner 107, smart card 108, demultiplexer 109, descrambler 110 and/or storage medium 111 may all be resident in a single enclosure or other housing. One example of a device that may incorporate such elements is the content receiver 202, discussed below with respect to FIG. 2.


Although the system 100 is illustrated in FIG. 1 and is described above as including a number of specific components configured in a specific arrangement, it is understood that this is for the purposes of example and other arrangements involving fewer and/or additional components are possible without departing from the scope of the present disclosure. For example, in various implementations, the multiple instances of content may be individually scrambled utilizing the code word prior to multiplexing. In another example, in some implementations, the data received via the tuned frequency may be demultiplexed before being individually descrambled utilizing the code word.


In some implementations of the system of FIG. 1, multiple instances of content may be recorded simultaneously from a single transponder and stored in the non-transitory storage medium 111 of the content receiver as a single file of multiple recorded instances of content. Upon playing of one instance of content from the single file of the multiple recorded instances of content, the content receiver may read the file incrementally so as to play the one instance of content while filtering out the other file contents (e.g., the other instance of content within the file). For example, five instances of content may be received at a transponder and simultaneously recorded by the content receiver based on predefined recording parameters, and each of the instances of content may record at an average variable bit rate. More specifically, one instance of content may be received by the transponder and be recorded by the content receiver at an average of 1 Mb/sec (Megabits per second), a second instance of content at an average of 2 Mb/sec, a third at 3 Mb/sec, a fourth instance of content at an average of 4 Mb/sec, and a fifth instance of content at 5 Mb/sec. In this example, the transponder receives and the content receiver records the five instances of content at an aggregate bit rate of 15 Mb/sec (e.g., the aggregate of 1 Mb/sec, 2 Mb/sec, 3 Mb/sec, 4 Mb/sec, and 5 Mb/sec). Thus, playing one of the five instances of content involves utilizing the content receiver to read the full file at 15 Mb/sec but discarding all but the one instance of content that is desired. In alternative embodiments, each instance of content being simultaneously recorded may be written as a separate file in the storage medium 111.


In some implementations, the aggregate recording bit rate may be less than the maximum available recording bit rate. Thus, the aggregate bit rate of 15 Mb/sec for a transponder may be less than the maximum available bit rate of, for example, up to 40 Mb/sec. Accordingly, playing an instance of recorded content involves the content receiver determining the aggregate recording bit rate for the file of the simultaneously recorded multiple instances of content and playing the instance of content based on the aggregate recording bit rate.


In another example, a file of ten simultaneously recorded instances of content may be recorded at a bit rate of 40 Mb/sec (e.g., a maximum aggregate bit rate for the transponder), having a recording bit rate (or an average bit rate) of 4 Mb/sec playing one of the ten instances of content involves utilizing the content receiver to incrementally read the file in increments of 4 Mb/sec of the total 40 Mb/sec recorded. A first show may be associated with the content recorded at the first 4 Mb/sec (e.g., Mb 1-4) of the total 40 Mb/sec, a second show may be associated with the content recorded at the second 4 Mb/sec (e.g., Mb 5-8), and so on.


In the examples above, it will be appreciated that the multiple instances of content may be recorded based on statistical multiplexing utilizing communicatively coupled video compressors that determine the bandwidth of data needed for compressing the instance of content to be recorded. This enables the recording (and replay) bit rate of an instance of content to be variable within the recording stream, and accordingly the multiple instances of content may be recorded each at varying bitrates. For a given transponder, as the percentage of the transport stream that is being recorded increases, the variability of the recording data drops. That is, if 100 percent of the stream is being recorded (e.g. at the maximum aggregate bit rate for the transponder), then the variability is zero. As a result, the average recording bit rate of many varying streams may be less noisy. In the examples above, it will also be appreciated that the aggregate recording bit rate may be calculated periodically or in real time.



FIG. 2 is a block diagram illustrating a system 200, potentially including a content provider 204 and a content receiver 202. The system 200 may be at least partly incorporated into the system of FIG. 1. The content receiver 202 (such as a set top box) may receive and, in some instances, transmit content (such as television programming and on screen display content) to other receivers to a remote viewer, and the like. The content provider 204 generally is as a satellite or cable programming service provider and transmits content to the receiver across a network, one example of which is the satellite(s) 106 shown in FIG. 1. Alternate networks may include a wired network, such as a cable network, a wireless network, such as a terrestrial broadcast network, the Internet, an Ethernet or other local network, combinations of any of the foregoing, and the like. It should be appreciated that the content receiver 202 may incorporate various elements of FIG. 1, such as the tuner 107, demultiplexer 109, smart card 108, multiplexer 110 and/or storage 111. Such elements may not be shown specifically in FIG. 2, insofar as they were discussed with respect to FIG. 1. These elements may be controlled, for example, by the processing unit 224 of FIG. 2. Likewise, the data storage unit 226 may be the same as the storage device 111 of FIG. 1.


The system may also include, or be coupled to, a content display device 206 for receiving and displaying the content (such as a television), and a controller 208 (such as a remote control) for transmitting data such as control signals to the content receiver 202.


The content receiver 202 generally receives content from the content provider 204 and, optionally, from other external sources such as other content receivers and servers accessed across a network. The content receiver 202 may process and/or decode the content, as well as transmit the content to the content display device 206. The content receiver 202 may be, for example, a set top box, a television receiver, a digital video recorder, a computing device, a gaming device, or a television, which is generally located at a user's location (such as a user's residence or business). The content receiver 202 is operable to receive content from the content provider 204 (and/or another external source) by way of the transmission link 210. Such content is received by the communications unit 220 of the content receiver 202; the communications unit 220 may be analogous to or include one or more of the tuner 107, demultiplexer 109, descrambler 110 and/or smart card 108. The processing unit 224 may execute instructions for causing the data storage unit 226 (such as the non-transitory storage medium 111) to record multiple instances of content for a plurality of programming channels simultaneously within a single file described above in connection with FIG. 1, and/or to play one of the stored instances of content. The transmission unit 228 may be communicatively coupled to the content display device 206 by way of transmission link 211.


The content provider 204 (such as a satellite programming company, a cable company, an Internet service provider, e.g., an online video service or Internet video provider, and the like) is generally remotely located from the content receiver 202. The content provider transmits content to the communications unit 220 of the content receiver 202 via the transmission link 210. The content transmitted may include metadata specifying recording instructions for the content receiver 202 to automatically record multiple instances of content simultaneously for multiple programming channels as described elsewhere herein.


The content display device 206 is generally communicatively coupled to the content receiver 202 and displays content transmitted by the content receiver 202. While the content display device 206 and the content receiver 202 are depicted as separate components in FIG. 2, the content receiver 202 may be incorporated with the content display device 206. The content display device 206 is, for example, a television, a computer screen, a video screen, or any other display device for displaying content. The content display device 206 is communicatively coupled to the content receiver 202 by way of the transmission link 211.


The controller 208 is generally provided in an area proximate the content receiver 202 and is communicatively coupled to the content display device 206 by way of the transmission link 212, and to the content receiver 202 by way of the transmission link 213. The controller 208 is, for example, a remote control, such as a universal remote control, a dedicated remote control, or a computing device programmed to send command signals (such as selection signals) to the content receiver 202. The controller 208 may be utilized to provide command signals instructing the content receiver 202 to record and/or reply one or more instances of content.


Returning to the content receiver 202, the processing unit 224 may be programmed to manage, initiate or otherwise facilitate recording and/or playback of one (or more) instances of content received from a number of programming channels carried on a single transponder. For example, four programming channels and the corresponding four instances of content may be recorded simultaneously and stored in the data storage unit 226. Upon receipt of the appropriate command or commands, which may be transmitted from the controller 208, the processing unit 224 may retrieve data from the data storage unit 226 and format it for display on the content display device 206. It should be appreciated that such formatting and display may involve demodulating, decrypting, and/or other operations executed by one or more hardware, software and/or firmware elements (not necessarily shown) generally controlled by the processing unit 224. Accordingly, actions ascribed to the processing unit may be carried out by other portions of the content receiver 202 at the processing unit's direction.


Recording and playing back one or more of the multiple instances of content may involve the processing unit 224 reading metadata associated with an initial frame of the instance of content, such as a packet identifier (“PID”) and a presentation timestamp (“PTS”). For example, while playing the instance of content, the processing unit 224 may select only the PID for the instance of content to be played, while ignoring other PIDs within the file of the plurality of simultaneously recorded instances of content. PIDs are generally identifiers associated with data streams, such as content streams and supplemental data streams, which identify a channel for the data stream. Several PIDs may be associated with one transponder controlled by the content provider 204 and simultaneously recorded utilizing the system of FIG. 1. By identifying or selecting the correct PID for the instance of content being played back from the file, the content receiver 202 may navigate correctly determine which instance of the simultaneously recorded multiple instances of content is to be displayed.


Generally, the content receiver 202 may include multiple tuners 107, demultiplexers 109, descramblers 110 and/or other decoders. In some cases, content may be demodulated from a carrier wave or other signal in order to be reconstructed, recorded, and/or viewed. In many instances, demodulation occurs prior to descrambling. Demultiplexing and descrambling may be considered examples of decoding.


In some embodiments, a single decoder (such as a demultiplexer 109 and/or descrambler 110), or one decoder of any given type, (e.g., one demodulator and one descrambler) may be associated with multiple tuners 107. Each tuner may be adjusted to receive a specific frequency band or transponder. Thus, each tuner may receive a different transponder and thus a variety of instances of content on that transponder.


In such an embodiment, the transponders to which each tuner 107 is tuned may be encoded with a common control word. In this manner, each separate tuner may transmit the multiple instances of content received on the corresponding transponder to a single decoder for processing. Because content associated with the various transponders is commonly encoded, the descrambler 110 may descramble all such content relatively efficiently. These multiple instances of content may then be recorded, as detailed previously. In this manner, multiple tuners may be associated with a single descrambler in order to receive and record multiple instances of content from more than one transponder/frequency band. Accordingly, multiple tuners may be used to receive a greater amount of content than may be carried on a single transponder and all such content may be demultiplexed and/or descrambled by elements common to, and shared by, the tuners. Since a common control word is used to encrypt the content carried on different transponders, a single decoder may handle it all. Thus, the multiple instances of content may be thought of as a first content set and a second content set, each commonly scrambled with a control word but carried on different carrier frequencies.


It should be appreciated that multiple transponders may use the same control word (or other decryption key) even if a single descrambler is not used. That is, multiple transponders may be scrambled with a single control word and one tuner 107 or communications unit 220 may receive corresponding data from each such transponder. Each tuner or unit may transmit the received signal to a descrambler dedicated to that tuner for descrambling, at which point each set of multiple instances of content may be recorded to a storage medium (either separately or in one or more aggregated files).


In alternative embodiments, the multiple instances of content received from multiple transponders may be recorded on the storage medium without descrambling or decryption. Descrambling may occur when the content is played back. That is, the entirety of the multiple instances of content received from the transponders may be stored as a single file (or one file per transponder, in some embodiments) on the storage unit 226 that is still encrypted. The descrambler may decrypt the content only upon playback. In such an embodiment, the scrambled content may be retrieved from the storage medium 226, sent to a single descrambler and descrambled before the operations of identifying and displaying particular content are performed, as described above.


In some embodiments, the system may check to see if content on multiple transponders is scrambled using the same control word. This may be indicated, for example, in metadata corresponding to one or more of the instances of content, or one or more of the transponders. The metadata may identify all content and/or all transponders scrambled with the same control word. Accordingly, the processing unit 224 may receive this metadata and, in response to it, instruct the communications unit 222 to receive data from each of the transponders. The communications unit 222 may have multiple tuners 107 in such an embodiment. Received content may then be stored and replayed as described elsewhere herein. It should also be appreciated that certain embodiments may employ a user command in addition to metadata to instruct the communications unit 222 to receive data. Likewise, a command to receive and record instances of content may be initiated by the content provider 204.


It may be useful or desirable to secondarily encode some subset of the multiple instances of content in addition to encoding it with the common control word. For example, this may permit a subset of content to be delivered to certain users. This subset of content may be additional or enhanced content. As one example, the subset of content may be a “behind the scenes” presentation associated with some other portion of the multiple instances of content, and may be provided only to those users who have paid an additional fee. The subset of content may be related to one or more instances of the other multiple instances of content or may be wholly separate. The users that may access the subset of content may be those who have paid a fee, live in or are otherwise associated with a certain geographic area, users corresponding to certain demographics, and so on.


The subset of content may be scrambled twice—once with the control word common to the multiple instances of content and/or transponders, and once with a specific sub-key. Thus, the subset of content may be received and initially descrambled in accordance with other portions of this disclosure, but may remain scrambled by the sub-key although all other instances of content may be fully descrambled. The subset may be recorded along with the rest of the multiple instances of content. It should be appreciated that the descrambling of any or all content may occur either before or after recording the content to the data storage unit 226, as appropriate for the embodiment in question.


In one embodiment, the subset of content may not be played back by anyone other than an authorized user. The subset of content may be received and stored by all but inaccessible to unauthorized users. Unauthorized users may be prevented from playing the recorded subset of content, but may be able to see it in a list of recorded content. The unauthorized user may be presented with an option to unlock the content, such as purchasing it or performing some other action.


In alternative embodiments, the subset of content may be stored with the remainder of the multiple instances of content (either as separate files or in a single file, as appropriate), and be undetectable to unauthorized users. Thus, only authorized users may perceive and/or retrieve the subset of content.


In the present disclosure, the methods disclosed may be implemented as sets of instructions or software readable by a device. Further, it is understood that the specific order or hierarchy of steps in the methods disclosed are examples of sample approaches. In other embodiments, the specific order or hierarchy of steps in the method can be rearranged while remaining within the disclosed subject matter. The accompanying method claims present elements of the various steps in a sample order, and are not necessarily meant to be limited to the specific order or hierarchy presented.


The described disclosure may be provided as a computer program product, or software, that may include a non-transitory machine-readable medium having stored thereon instructions, which may be used to program a computer system (or other electronic devices) to perform a process according to the present disclosure. A non-transitory machine-readable medium includes any mechanism for storing information in a form (e.g., software, processing application) readable by a machine (e.g., a computer). The non-transitory machine-readable medium may take the form of, but is not limited to, a magnetic storage medium (e.g., floppy diskette, video cassette, and so on); optical storage medium (e.g., CD-ROM); magneto-optical storage medium; read only memory (ROM); random access memory (RAM); erasable programmable memory (e.g., EPROM and EEPROM); flash memory; and so on.


It is believed that the present disclosure and many of its attendant advantages will be understood by the foregoing description, and it will be apparent that various changes may be made in the form, construction and arrangement of the components without departing from the disclosed subject matter or without sacrificing all of its material advantages. The form described is merely explanatory, and it is the intention of the following claims to encompass and include such changes.


While the present disclosure has been described with reference to various embodiments, it will be understood that these embodiments are illustrative and that the scope of the disclosure is not limited to them. Many variations, modifications, additions, and improvements are possible. More generally, embodiments in accordance with the present disclosure have been described in the context or particular embodiments. Functionality may be separated or combined in blocks differently in various embodiments of the disclosure or described with different terminology. These and other variations, modifications, additions, and improvements may fall within the scope of the disclosure as defined in the claims that follow.

Claims
  • 1. A method for recording content, comprising: receiving, by a content receiver, an instruction to initiate recording;in response to the instruction, setting a tuner of one or more tuners to a carrier frequency;receiving, via the tuner of the content receiver, a first set of content and a second set of content, wherein: the first set of content and the second set of content are received as part of a single transponder stream by the tuner of the one or more tuners;the first set of content and the second set of content are scrambled using a key; andthe second set of content is further scrambled using a sub-key;decrypting, by the content receiver, a message to obtain the key;descrambling, using a descrambler of the content receiver and the decrypted key, the first set of content and the second set of content; andrecording the descrambled first set of content and the scrambled second set of content on a storage medium, wherein: when recorded, the scrambled second set of content has been descrambled using the key, but remains scrambled using the sub-key; anda presence of the scrambled second set of content on the storage medium is made visible in an interface to only authorized users.
  • 2. The method for recording content of claim 1, further comprising: after recording the scrambled second set of content on the storage medium, further descrambling the second set of content using the sub-key.
  • 3. The method for recording content of claim 1, wherein the key is a control word.
  • 4. The method for recording content of claim 1, wherein the scrambled second set of content is accessible for playback by only an authorized user.
  • 5. The method for recording content of claim 4, wherein the scrambled second set of content is output for presentation as part of a list of recorded content to all users, but can only be accessed for playback by the authorized user.
  • 6. The method for recording content of claim 1, further comprising outputting, for presentation, an option to unlock at least a portion of the second set of content.
  • 7. The method for recording content of claim 6, wherein the option comprises purchasing at least the portion of the second set of content.
  • 8. A content receiver device, comprising: a tuner operative to receive a first set of content and a second set of content, wherein: the first set of content and the second set of content are scrambled using a key;the first set of content and the second set of content are received as part of a single transponder stream by the tuner; andthe second set of content is further scrambled using a sub-keya smartcard configured to decrypt a message to obtain the key;a processing unit operatively connected to the tuner and the smartcard;a descrambler operative to descramble the first and second instances of content wherein the descrambler is operative to use the key to descramble both the first and second instances of content; anda data storage unit operative to receive and store the descrambled first instance of content and the descrambled second instance of content, wherein: the scrambled second set of content has been descrambled using the key, but remains scrambled using the sub-key when recorded; anda presence of the scrambled second set of content on the storage medium is made visible in an interface to only authorized users.
  • 9. The content receiver device of claim 8, wherein the descrambler is further operative to descramble the second set of content using the sub-key after the second set of content is stored to the data storage unit.
  • 10. The content receiver device of claim 8, wherein the key is a control word.
  • 11. The content receiver device of claim 8, wherein the scrambled second set of content is accessible for playback by only an authorized user.
  • 12. The content receiver device of claim 11, wherein the scrambled second set of content is output for presentation to a display device as part of a list of recorded content viewable to all users, but can only be accessed for playback by the authorized user.
  • 13. The content receiver device of claim 11, further comprising the processing unit being operatively configured to output, for presentation to a display device, an option to unlock at least a portion of the second set of content.
CROSS REFERENCE TO RELATED APPLICATION

This application is a continuation of U.S. patent application Ser. No. 14/860,366, filed Sep. 21, 2015, which is a continuation of U.S. patent application Ser. No. 13/302,852, filed Nov. 22, 2011, which claims the benefit of U.S. Provisional Application No. 61/526,665, filed Aug. 23, 2011. Each of these applications are hereby incorporated by reference for all purposes.

US Referenced Citations (388)
Number Name Date Kind
4706121 Young Nov 1987 A
4723246 Weldon, Jr. Feb 1988 A
4802215 Mason Jan 1989 A
5187589 Kono et al. Feb 1993 A
5335277 Harvey et al. Aug 1994 A
5483277 Granger Jan 1996 A
5488658 Hirashima Jan 1996 A
5541738 Mankovitz Jul 1996 A
5608652 Astle Mar 1997 A
5642153 Chaney et al. Jun 1997 A
5682597 Ganek et al. Oct 1997 A
5684969 Ishida Nov 1997 A
5724646 Ganek et al. Mar 1998 A
5805763 Lawler et al. Sep 1998 A
5974218 Nagasaka et al. Oct 1999 A
6049333 LaJoie et al. Apr 2000 A
6263504 Ebisawa Jul 2001 B1
6351474 Robinett Feb 2002 B1
6453115 Boyle Sep 2002 B1
6628891 Vantalon et al. Sep 2003 B1
6687296 Sato et al. Feb 2004 B1
6701528 Arsenault et al. Mar 2004 B1
6728883 Kohashi et al. Apr 2004 B1
6766523 Herley Jul 2004 B2
6771703 Oguz et al. Aug 2004 B1
6798971 Potrebic Sep 2004 B2
6938208 Reichardt Aug 2005 B2
7024676 Klopfenstein Apr 2006 B1
7062048 Livaditis Jun 2006 B2
7409140 Rodriguez et al. Aug 2008 B2
7487529 Orlick Feb 2009 B1
7490169 Ogdon et al. Feb 2009 B1
7493312 Liu et al. Feb 2009 B2
7505081 Eshleman Mar 2009 B2
7533402 Demas May 2009 B2
7542656 Cho et al. Jun 2009 B2
7577751 Vinson et al. Aug 2009 B2
7590993 Hendricks et al. Sep 2009 B1
7684672 Matoba Mar 2010 B2
7715552 Pinder May 2010 B2
7730517 Rey et al. Jun 2010 B1
7739711 Finseth et al. Jun 2010 B2
7760986 Beuque Jul 2010 B2
7804861 Kim Sep 2010 B2
7848618 Potrebic et al. Dec 2010 B2
7856557 Beuque Dec 2010 B2
7925141 Geer et al. Apr 2011 B2
7926078 Arsenault et al. Apr 2011 B2
7929697 McNeely Apr 2011 B2
7962937 Cho et al. Jun 2011 B2
8006268 Sloo Aug 2011 B2
8201194 Wijnands et al. Jun 2012 B2
8321466 Black et al. Nov 2012 B2
8364671 Sinton et al. Jan 2013 B1
8437622 Casagrande May 2013 B2
8447170 Casagrande May 2013 B2
8566873 Sie et al. Oct 2013 B2
8584167 Vanduyn Nov 2013 B2
8606088 Kummer et al. Dec 2013 B2
8627349 Kirby et al. Jan 2014 B2
8660412 Kummer et al. Feb 2014 B2
8763027 Martch Jun 2014 B2
8774608 Kummer et al. Jul 2014 B2
8819722 Kummer et al. Aug 2014 B2
8819761 Minnick Aug 2014 B2
8850476 VanDuyn et al. Sep 2014 B2
8867893 Kirby Oct 2014 B2
8959544 Kummer et al. Feb 2015 B2
8959566 Kummer Feb 2015 B2
8989562 Kummer et al. Mar 2015 B2
8997153 Templeman Mar 2015 B2
9031385 Casagrande et al. May 2015 B2
9043827 Rapoport May 2015 B1
9043843 Templeman et al. May 2015 B2
9055274 Casagrande Jun 2015 B2
9088763 Martch et al. Jul 2015 B2
9113222 VanDuyn Aug 2015 B2
9177605 Minnick et al. Nov 2015 B2
9177606 Kirby Nov 2015 B2
9185331 Martch et al. Nov 2015 B2
9191694 Casagrande Nov 2015 B2
9202524 Martch et al. Dec 2015 B2
9264779 Kirby et al. Feb 2016 B2
9269397 Casagrande et al. Feb 2016 B2
9349412 Templeman May 2016 B2
9350937 Kummer et al. May 2016 B2
9357159 Martch et al. May 2016 B2
9361940 Minnick Jun 2016 B2
9412413 Martch Aug 2016 B2
9489981 Templeman et al. Nov 2016 B2
9489982 Casagrande et al. Nov 2016 B2
9521440 Kummer et al. Dec 2016 B2
9549213 Templeman et al. Jan 2017 B2
9621946 Kennedy Apr 2017 B2
9628838 Kummer et al. Apr 2017 B2
9635436 Casagrande Apr 2017 B2
9756378 Hardy Sep 2017 B2
9781464 Templeman Oct 2017 B2
9854291 Minnick Dec 2017 B2
9894406 Martch et al. Feb 2018 B2
9918116 Robinson Mar 2018 B2
20010028782 Ohno et al. Oct 2001 A1
20010033736 Yap et al. Oct 2001 A1
20010034787 Takao et al. Oct 2001 A1
20010049820 Barton Dec 2001 A1
20020044658 Wasilewski et al. Apr 2002 A1
20020048367 Maillard Apr 2002 A1
20020054752 Wood et al. May 2002 A1
20020055343 Stetzler et al. May 2002 A1
20020083438 So Jun 2002 A1
20020087979 Dudkiewicz et al. Jul 2002 A1
20020087983 Son et al. Jul 2002 A1
20020092021 Yap et al. Jul 2002 A1
20020095510 Sie Jul 2002 A1
20020097340 Takagi et al. Jul 2002 A1
20020116705 Perlman Aug 2002 A1
20020120925 Logan Aug 2002 A1
20020126221 Link Sep 2002 A1
20020141431 Tripathy Oct 2002 A1
20020144259 Gutta et al. Oct 2002 A1
20020144266 Goldman et al. Oct 2002 A1
20020152299 Traversat et al. Oct 2002 A1
20020164147 Suda Nov 2002 A1
20020168178 Rodriguez et al. Nov 2002 A1
20020174430 Ellis et al. Nov 2002 A1
20020184638 Agnihotri et al. Dec 2002 A1
20020188567 Candelore Dec 2002 A1
20020188943 Freeman et al. Dec 2002 A1
20030005454 Rodriguez et al. Jan 2003 A1
20030026423 Unger et al. Feb 2003 A1
20030078930 Surcouf et al. Apr 2003 A1
20030097659 Goldman May 2003 A1
20030110514 West et al. Jun 2003 A1
20030149988 Ellis et al. Aug 2003 A1
20030152360 Mukai et al. Aug 2003 A1
20030156826 Sonoda et al. Aug 2003 A1
20030177492 Kanou Sep 2003 A1
20030177495 Needham et al. Sep 2003 A1
20030200548 Baran et al. Oct 2003 A1
20030206631 Candelore Nov 2003 A1
20030208763 McElhatten et al. Nov 2003 A1
20030208767 Williamson et al. Nov 2003 A1
20030226150 Berberet et al. Dec 2003 A1
20040001087 Warmus et al. Jan 2004 A1
20040003118 Brown et al. Jan 2004 A1
20040015992 Hasegawa et al. Jan 2004 A1
20040015999 Carlucci et al. Jan 2004 A1
20040078829 Patel et al. Apr 2004 A1
20040080672 Kessler et al. Apr 2004 A1
20040103428 Seok et al. May 2004 A1
20040128682 Liga et al. Jul 2004 A1
20040133923 Watson et al. Jul 2004 A1
20040148501 Livaditis Jul 2004 A1
20040162871 Pabla et al. Aug 2004 A1
20040218905 Green Nov 2004 A1
20040242150 Wright et al. Dec 2004 A1
20040268387 Wendling Dec 2004 A1
20050002640 Putterman et al. Jan 2005 A1
20050034171 Benya Feb 2005 A1
20050071877 Navarro Mar 2005 A1
20050083865 Ashley et al. Apr 2005 A1
20050105732 Hutchings May 2005 A1
20050120049 Kanegae et al. Jun 2005 A1
20050125683 Matsuyama et al. Jun 2005 A1
20050144646 Lecrom Jun 2005 A1
20050147383 Ihara Jul 2005 A1
20050180568 Krause Aug 2005 A1
20050229213 Ellis et al. Oct 2005 A1
20050237435 Potrebic et al. Oct 2005 A1
20050267656 Dabrowski Dec 2005 A1
20050271365 Hisatomi Dec 2005 A1
20050273819 Knudson et al. Dec 2005 A1
20050281531 Unmehopa Dec 2005 A1
20060010464 Azami Jan 2006 A1
20060020962 Stark et al. Jan 2006 A1
20060056800 Shimagami et al. Mar 2006 A1
20060075434 Chaney et al. Apr 2006 A1
20060078055 Kanazawa Apr 2006 A1
20060080716 Nishikawa et al. Apr 2006 A1
20060085828 Dureau et al. Apr 2006 A1
20060109982 Puiatti May 2006 A1
20060120523 Kurotaki Jun 2006 A1
20060136718 Moreillon Jun 2006 A1
20060206819 Tsuji et al. Sep 2006 A1
20060212900 Ismail et al. Sep 2006 A1
20060215993 Yamada Sep 2006 A1
20060257099 Potrebic et al. Nov 2006 A1
20060274208 Pedlow, Jr. Dec 2006 A1
20070016546 De Vorchik et al. Jan 2007 A1
20070019930 Kim Jan 2007 A1
20070039032 Goldey et al. Feb 2007 A1
20070055991 Choi et al. Mar 2007 A1
20070061378 Lee et al. Mar 2007 A1
20070124602 Wald May 2007 A1
20070154163 Cordray Jul 2007 A1
20070157248 Ellis Jul 2007 A1
20070157253 Ellis et al. Jul 2007 A1
20070165855 Inui Jul 2007 A1
20070183745 White Aug 2007 A1
20070192586 McNeely Aug 2007 A1
20070204288 Candelore Aug 2007 A1
20070234395 Dureau et al. Oct 2007 A1
20070250856 Leavens et al. Oct 2007 A1
20070258596 Kahn et al. Nov 2007 A1
20070299976 Zafar et al. Dec 2007 A1
20070300250 Smith et al. Dec 2007 A1
20080022347 Cohen Jan 2008 A1
20080044158 Kido Feb 2008 A1
20080046929 Cho et al. Feb 2008 A1
20080052743 Moore Feb 2008 A1
20080074547 Ida Mar 2008 A1
20080092164 Agarwal et al. Apr 2008 A1
20080092181 Britt Apr 2008 A1
20080101760 Waller May 2008 A1
20080104534 Park et al. May 2008 A1
20080127253 Zhang et al. May 2008 A1
20080137850 Mamidwar Jun 2008 A1
20080141322 Jang et al. Jun 2008 A1
20080144747 Tomizawa Jun 2008 A1
20080152039 Shah et al. Jun 2008 A1
20080184327 Ellis et al. Jul 2008 A1
20080216119 Pfeffer et al. Sep 2008 A1
20080216136 Pfeffer Sep 2008 A1
20080222678 Burke et al. Sep 2008 A1
20080222681 Kwon Sep 2008 A1
20080271077 Kim et al. Oct 2008 A1
20080273698 Manders et al. Nov 2008 A1
20080273856 Bumgardner Nov 2008 A1
20080276284 Bumgardner et al. Nov 2008 A1
20080288461 Glennon et al. Nov 2008 A1
20080291206 Uchimura et al. Nov 2008 A1
20080298585 Maillard et al. Dec 2008 A1
20080301740 Tsutsui Dec 2008 A1
20080307217 Yukimatsu et al. Dec 2008 A1
20090025027 Craner Jan 2009 A1
20090051579 Inaba et al. Feb 2009 A1
20090067621 Wajs Mar 2009 A9
20090080930 Shinotsuka et al. Mar 2009 A1
20090100466 Migos Apr 2009 A1
20090110367 Fukui Apr 2009 A1
20090129741 Kim May 2009 A1
20090129749 Oyamatsu et al. May 2009 A1
20090136028 Card, II May 2009 A1
20090136206 Aisu et al. May 2009 A1
20090150941 Riedl et al. Jun 2009 A1
20090158370 Li et al. Jun 2009 A1
20090165057 Miller et al. Jun 2009 A1
20090172722 Kahn et al. Jul 2009 A1
20090178098 Westbrook et al. Jul 2009 A1
20090210912 Cholas Aug 2009 A1
20090235298 Carlberg et al. Sep 2009 A1
20090254962 Hendricks et al. Oct 2009 A1
20090260038 Acton et al. Oct 2009 A1
20090320073 Reisman Dec 2009 A1
20090320084 Azam et al. Dec 2009 A1
20090324203 Wiklof Dec 2009 A1
20100020794 Cholas et al. Jan 2010 A1
20100037282 Iwata et al. Feb 2010 A1
20100043022 Kaftan Feb 2010 A1
20100050225 Bennett Feb 2010 A1
20100086277 Craner Apr 2010 A1
20100095323 Williamson et al. Apr 2010 A1
20100100899 Bradbury et al. Apr 2010 A1
20100115121 Roos et al. May 2010 A1
20100135639 Ellis et al. Jun 2010 A1
20100138865 Rai et al. Jun 2010 A1
20100146581 Erk Jun 2010 A1
20100158479 Craner Jun 2010 A1
20100158480 Jung et al. Jun 2010 A1
20100162285 Cohen et al. Jun 2010 A1
20100169926 Westberg et al. Jul 2010 A1
20100192175 Bachet Jul 2010 A1
20100195827 Lee et al. Aug 2010 A1
20100217613 Kelly Aug 2010 A1
20100218208 Holden Aug 2010 A1
20100232604 Eklund, II Sep 2010 A1
20100235862 Adachi Sep 2010 A1
20100239228 Sano Sep 2010 A1
20100242079 Riedl et al. Sep 2010 A1
20100246582 Salinger et al. Sep 2010 A1
20100247067 Gratton Sep 2010 A1
20100251304 Donoghue et al. Sep 2010 A1
20100251305 Kimble et al. Sep 2010 A1
20100254386 Salinger et al. Oct 2010 A1
20100265391 Muramatsu et al. Oct 2010 A1
20100272419 Wang et al. Oct 2010 A1
20100284537 Inbar Nov 2010 A1
20100293583 Loebig et al. Nov 2010 A1
20100299528 Le Floch Nov 2010 A1
20100306401 Gilson Dec 2010 A1
20100313222 Lee et al. Dec 2010 A1
20100319037 Kim Dec 2010 A1
20100329645 Sakamoto Dec 2010 A1
20110001879 Goldey et al. Jan 2011 A1
20110007218 Moran et al. Jan 2011 A1
20110008024 Sasaki et al. Jan 2011 A1
20110043652 King et al. Feb 2011 A1
20110078750 Tam et al. Mar 2011 A1
20110080529 Wong Apr 2011 A1
20110099364 Robyr et al. Apr 2011 A1
20110106744 Becker et al. May 2011 A1
20110131413 Moon et al. Jun 2011 A1
20110138169 Michel Jun 2011 A1
20110138424 Vlot Jun 2011 A1
20110145854 Bacon et al. Jun 2011 A1
20110150429 Kaneko Jun 2011 A1
20110162011 Hassell et al. Jun 2011 A1
20110179453 Poniatowski Jul 2011 A1
20110225616 Ellis Sep 2011 A1
20110235701 Kim Sep 2011 A1
20110239249 Murison et al. Sep 2011 A1
20110255002 Witheiler Oct 2011 A1
20110286719 Woods Nov 2011 A1
20110311045 Candelore Dec 2011 A1
20120183276 Quan et al. Jul 2012 A1
20120195433 Eppolito et al. Aug 2012 A1
20120198317 Eppolito et al. Aug 2012 A1
20120198501 Ruan et al. Aug 2012 A1
20120236933 Saitoh Sep 2012 A1
20120278837 Curtis et al. Nov 2012 A1
20120296745 Harper et al. Nov 2012 A1
20120301104 Dove Nov 2012 A1
20120311534 Fox et al. Dec 2012 A1
20120311634 Van Duyn Dec 2012 A1
20120331494 Pontual et al. Dec 2012 A1
20120331505 Chun et al. Dec 2012 A1
20130014146 Bhatia et al. Jan 2013 A1
20130014159 Wiser et al. Jan 2013 A1
20130051555 Martch et al. Feb 2013 A1
20130051758 Kummer et al. Feb 2013 A1
20130051764 Casagrande Feb 2013 A1
20130051766 Martch et al. Feb 2013 A1
20130051773 Casagrande Feb 2013 A1
20130054579 Kennedy Feb 2013 A1
20130055304 Kirby et al. Feb 2013 A1
20130055305 Martch et al. Feb 2013 A1
20130055310 VanDuyn et al. Feb 2013 A1
20130055311 Kirby et al. Feb 2013 A1
20130055314 Martch Feb 2013 A1
20130055333 Kummer Feb 2013 A1
20130081098 Klughart Mar 2013 A1
20130216208 Kummer et al. Aug 2013 A1
20130223814 Casagrande Aug 2013 A1
20130243397 Minnick et al. Sep 2013 A1
20130243398 Templeman et al. Sep 2013 A1
20130243399 Casagrande et al. Sep 2013 A1
20130243401 Casagrande Sep 2013 A1
20130243402 Kummer et al. Sep 2013 A1
20130243403 Martch Sep 2013 A1
20130243405 Templeman et al. Sep 2013 A1
20130243406 Kirby Sep 2013 A1
20130247089 Kummer et al. Sep 2013 A1
20130247090 Kummer et al. Sep 2013 A1
20130247106 Martch et al. Sep 2013 A1
20130247107 Templeman Sep 2013 A1
20130247111 Templeman et al. Sep 2013 A1
20130247115 Minnick Sep 2013 A1
20130298166 Herrington et al. Nov 2013 A1
20130347037 Soroushian Dec 2013 A1
20140047477 VanDuyn Feb 2014 A1
20140050462 Kummer et al. Feb 2014 A1
20140115636 Stuckman Apr 2014 A1
20140126889 Kummer et al. May 2014 A1
20140130094 Kirby et al. May 2014 A1
20140147102 Shartzer et al. May 2014 A1
20140201767 Seiden et al. Jul 2014 A1
20140341377 Kummer et al. Nov 2014 A1
20140344858 Minnick Nov 2014 A1
20140363139 Kirby Dec 2014 A1
20140376884 Lovell Dec 2014 A1
20150040166 Tamura et al. Feb 2015 A1
20150095948 Kummer et al. Apr 2015 A1
20150104146 Higuchi et al. Apr 2015 A1
20150121430 Templeman Apr 2015 A1
20150208119 Casagrande et al. Jul 2015 A1
20150208125 Robinson Jul 2015 A1
20150228305 Templeman et al. Aug 2015 A1
20150245089 Protrebic Aug 2015 A1
20150245113 Casagrande Aug 2015 A1
20150319400 Golyshko Nov 2015 A1
20160073144 Robinson Mar 2016 A1
20160080800 Casagrande Mar 2016 A1
20160105711 Martch et al. Apr 2016 A1
20160134926 Casagrande et al. May 2016 A1
20160198215 Hardy Jul 2016 A1
20160234543 Templeman Aug 2016 A1
20160249089 Minnick Aug 2016 A1
20160323632 Martch et al. Nov 2016 A1
Foreign Referenced Citations (51)
Number Date Country
1595975 Mar 2005 CN
1615017 May 2005 CN
1926793 Mar 2007 CN
101174946 May 2008 CN
101202600 Jun 2008 CN
101310532 Nov 2008 CN
101 404 780 Apr 2009 CN
101969538 Nov 2010 CN
101978690 Feb 2011 CN
0 903 743 Mar 1999 EP
0 973 333 Jan 2000 EP
1 001 631 May 2000 EP
1 168 347 Feb 2002 EP
1372339 Dec 2003 EP
1 447 983 Aug 2004 EP
1 667 452 Jul 2006 EP
1 742 467 Jan 2007 EP
2 018 059 Jan 2009 EP
2 317 767 May 2011 EP
2 357 563 Aug 2011 EP
2 541 929 Jan 2013 EP
2 826 197 Jan 2015 EP
2 826 238 Jan 2015 EP
2 459 705 Nov 2009 GB
9740CHENP2013 Sep 2014 IN
7408CHENP2014 Jan 2016 IN
9493CHENP2013 Jun 2016 IN
2007 116525 May 2007 JP
2010165058 Jul 2010 JP
9812872 Mar 1998 WO
0124532 Apr 2001 WO
0241625 May 2002 WO
2004057610 Aug 2004 WO
2007047410 Apr 2007 WO
2008010118 Jan 2008 WO
2008010689 Jan 2008 WO
2008060486 May 2008 WO
2011081729 Jul 2011 WO
2011027236 Oct 2011 WO
2012003693 Jan 2012 WO
2013028824 Feb 2013 WO
2013028829 Feb 2013 WO
2013028835 Feb 2013 WO
2013138606 Sep 2013 WO
2013138608 Sep 2013 WO
2013138610 Sep 2013 WO
2013138638 Sep 2013 WO
2013138689 Sep 2013 WO
2013138740 Sep 2013 WO
2016066443 May 2016 WO
2016111817 Jul 2016 WO
Non-Patent Literature Citations (228)
Entry
Office Action for CA 2,865,746, all pages.
Office Action for CA 2,865,852, all pages.
Office Action for CA 2,838,264, all pages.
Office Action for CA 2,837,733, all pages.
Office Action for IN 9740/CHENP/2013 dated Nov. 5, 2018, all pages.
U.S. Appl. No. 14/880,934, filed Oct. 12, 2015, Non-Final Rejection dated Mar. 7, 2018, all pages.
U.S. Appl. No. 14/880,934, filed Oct. 12, 2015, Notice of Allowance dated Jul. 2, 2018, all pages.
Office action for Canadian Appln No. 2865746, all pages.
Office Action for EP 13761427 dated Mar. 2, 2018, all pages.
Publication of Brazil appln No. BR 11 2013 031100-2 dated Jun. 6, 2017, 1 page.
Supplementary European Search Report for EP 13761427 dated Oct. 19, 2015, all pages.
First Office Action and Search Report from the State Intellectual Property Office (SIPO) for CN 201280031434.7, dated Jul. 17, 2015, 12 pages.
First Office Action and Search Report from the State Intellectual Property Office (SIPO) for CN 201280031150.8, dated Aug. 3, 2016, 10 pages.
Decision to Grant from the State Intellectual Property Office (SIPO) for CN 201280031150.8 dated Apr. 18, 2018, all pages.
Decision to Grant from the State Intellectual Property Office (SIPO) for CN 201280031434.7, dated May 12, 2016, all pages. (in Chinese language).
First Office Action issued by State Intellectual Property Office (SIPO) for CN 201280028697.2, dated Dec. 16, 2015, 11 pages.
Office Action for Canadian Appln No. 2,838,750 dated Apr. 16, 2018, all pages.
Office Action for EP 128254745 dated Aug. 4, 2017, all pages.
Wikipedia: “MPEG-2 Transmission”, Internet Citation, Jan. 31, 2001, pp. 1-9, XP002715999, Retrieved from the Internet: URL: http://www.erg.abdn.ac.uk/future-net/digital-video/mpeg2-trans.html [retrieved on Nov. 7, 2013].
International Search Report and Written Opinion of PCT/US2012/51992 dated Nov. 2, 2012, 15 pages.
International Search Report and Written Opinion of PCT/US2012/51987 dated Oct. 23, 2012, 20 pages.
International Search Report and Written Opinion of PCT/US2012/051984 dated Nov. 5, 2012, 13 pages.
International Search Report and Written Opinion of PCT/US2012/52002 dated Oct. 16, 2012, 17 pages.
International Search Report and Written Opinion of PCT/US2013/031432 dated May 28, 2013, 10 pages.
International Preliminary Report on Patentability for PCT/US2013/031432 dated Sep. 16, 2014, 9 pages.
International Search Report and Written Opinion of PCT/US2013/031445 dated May 24, 2013, 11 pages.
International Preliminary Report on Patentability for PCT/US2013/031445 dated Sep. 16, 2014, 10 pages.
International Preliminary Report on Patentability for PCT/US2012/052002 dated Apr. 17, 2014, 10 pages.
International Search Report and Written Opinion of PCT/US2012/51964 dated Nov. 2, 2012, 13 pages.
International Search Report and Written Opinion of PCT/US2015/065934 dated Apr. 8, 2016, all pages.
International Prelminary Report on Patentability for PCT/US2015/065934 dated Jul. 11, 2017, all pages.
International Search Report and Written Opinion of PCT/EP2015/073937 dated Apr. 15, 2016, all pages.
International Search Report and Written Opinion of PCT/US2012/052011 dated Dec. 17, 2012, 44 pages.
International Preliminary Report on Patentability, PCT/US2012/052011, dated Mar. 6, 2014, 6 pages.
International Preliminary Report on Patentability, PCT/US2012/051984, dated Mar. 6, 2014, 8 pages.
International Preliminary Report on Patentability, PCT/US2012/051964, dated Apr. 10, 2014, 7 pages.
International Preliminary Report on Patentability, PCT/US2012/051992, dated Apr. 3, 2014, 7 pages.
International Preliminary Report on Patentability, PCT/US2012/051987, dated Mar. 6, 2014, 7 pages.
Hee-Yong Kim et al., “DCT Domain Filter for ATV Down Conversion”, Consumer Electronics, 1997. Digest of Technical Papers. ICCE., International Conference on, IEEE, Jun. 11, 1997, pp. 142-143, XP032381904, DOI: 10.1109/ICCE. 1997.625904, ISBN: 978-0-7803-3734-3.
Author Unknown, “Move Networks is Delivering the Next Generation of Television,” Move Networks, 2010, obtained online at http://movenetworks.com/, 2 pages.
Design and implementation of a multi-stream cableCARD with a high-speed DVB-common descrambler; Joonyoung Jung, Ohyung Kwon, Sooin Lee; in proceeding of: Proceedings of the 14th ACM International Conference on Multimedia, Santa Barbara, CA, USA, Oct. 23-27, 2006, 4 pages.
Anonymous: “The Angry Technician's Guide to streaming Freeview via VLC, you Idiots / The Angry Technician”, Jun. 24, 2010, XP055388589, Retrieved from the internet: URL: https://angrytechnician.wordpress.com/2010/06/24/the-angry-technicians-guide-to-streaming-freeview-via-vlc-you-idiots/ [retrieved on Jul. 6, 2017], 14 pages.
Anonymous: “Documentation: Playback—VideoLAN Wiki”, Dec. 25, 2010, XP055388595, Retrieved from the Internet: URL:https://wiki.videolan.org/index.php?Title=Documentation: Playback&oldid=18460 [retrieved on Jul. 6, 2017], 3 pages.
Anonymous: “How to Watch DVB-T With VLC Media Player”, Jan. 25, 2009, XP055388602, Retrieved from the Internet: URL: http://www.izitips.com/software/how-to-watch-dvb-t-with-vlc-media-player/ [retrieved on Jul. 6, 2017], 3 pages.
Anonymous: “News—VideoLAN”, Jul. 15, 2011, XP055388604, Retreived from the Internet: URL: http://www.videolan.org/news.html#news-2011-07-15 [retrieved on Jul. 6, 2017], 69 pages.
Office Action for EP 12825147.7, 7 pages.
Office Action for EP 13 192 169.4 dated Mar. 29, 2016, all pages.
U.S. Appl. No. 13/786,915, filed Mar. 6, 2013, Non Final Rejection dated Oct. 15, 2015, 59 pages.
U.S. Appl. No. 13/786,915, filed Mar. 6, 2013, Final Rejection dated May 12, 2016, 27 pages.
U.S. Appl. No. 13/786,915, filed Mar. 6, 2013, Notice of Allowance dated Jul. 19, 2016, all pages.
U.S. Appl. No. 14/757,606, filed Dec. 23, 2015, Non Final Rejection dated Mar. 24, 2016, 33 pages.
U.S. Appl. No. 14/757,606, filed Dec. 23, 2015, Notice of Allowance dated Jul. 18, 2016, all pages.
U.S. Appl. No. 14/340,190, filed Jul. 24, 2014, Non-Final Rejection dated Aug. 31, 2015, 74 pages.
U.S. Appl. No. 14/340,190, filed Jul. 24, 2014, Final Rejection dated Feb. 19, 2016, 54 pages.
U.S. Appl. No. 14/340,190, filed Jul. 24, 2014, Notice of Allowance dated Aug. 22, 2016, all pages.
U.S. Appl. No. 14/154,887, filed Jan. 14, 2014 Non-Final Rejection dated Jul. 17, 2015, 33 pages.
U.S. Appl. No. 14/154,887, filed Jan. 14, 2014 Notice of Allowance dated Jan. 21, 2016, 26 pages.
U.S. Appl. No. 14/467,959, filed Aug. 25, 2014 Notice of Allowance dated Jun. 22, 2015, 36 pages.
U.S. Appl. No. 13/888,012, filed May 6, 2013 Non-Final Rejection dated Apr. 6, 2015, 36 pages.
U.S. Appl. No. 13/888,012, filed May 6, 2013 Notice of Allowance dated Jul. 14, 2015, 18 pages.
U.S. Appl. No. 13/856,752, filed Apr. 4, 2013 Non Final Office Action dated Nov. 5, 2014, 34 pages.
U.S. Appl. No. 13/856,752, filed Apr. 4, 2013 Notice of Allowance dated Feb. 10, 2015, 20 pages.
U.S. Appl. No. 13/757,168, filed Feb. 1, 2013 Notice of Allowance dated Oct. 14, 2014, 28 pages.
U.S. Appl. No. 13/757,168, filed Feb. 1, 2013, Non Final Office Action dated Jun. 4, 2014, 23 pages.
U.S. Appl. No. 13/799,604, filed Mar. 13, 2013, Notice of Allowance dated Jul. 24, 2015, 34 pages.
U.S. Appl. No. 13/799,604, filed Mar. 13, 2013, Notice of Allowance dated May 29, 2015, 46 pages.
U.S. Appl. No. 13/799,604, filed Mar. 13, 2013, Final Office Action dated Jan. 14, 2015, 36 pages.
U.S. Appl. No. 13/799,604, filed Mar. 13, 2013, Non Final Office Action dated Jun. 6, 2014, 24 pages.
U.S. Appl. No. 13/149,852, filed May 31, 2011, Non-Final Office Action dated Dec. 12, 2012, 9 pages.
U.S. Appl. No. 13/149,852, filed May 31, 2011, Final Office Action dated Mar. 26, 2013, 13 pages.
U.S. Appl. No. 13/149,852, filed May 31, 2011, Notice of Allowance dated Jul. 11, 2013, 13 pages.
U.S. Appl. No. 13/286,157, filed Oct. 31, 2011, Non-Final Office Action dated Jan. 17, 2013, 20 pages.
U.S. Appl. No. 13/286,157, filed Oct. 31, 2011, Non-Final Office Action dated Jul. 25, 2013, 49 pages.
U.S. Appl. No. 13/286,157, filed Oct. 31, 2011, Notice of Allowance dated Feb. 3, 2014, 81 pages.
U.S. Appl. No. 13/215,702, filed Aug. 23, 2011, Notice of Allowance dated Feb. 11, 2013, 13 pages.
U.S. Appl. No. 13/288,002, filed Nov. 2, 2011, Non-final Office Action dated Sep. 26, 2013, 15 pages.
U.S. Appl. No. 13/288,002, filed Nov. 2, 2011, Final Office Action dated Mar. 27, 2014, 20 pages.
U.S. Appl. No. 13/288,002, filed Nov. 2, 2011 Non Final Rejection dated Jul. 28, 2015, 29 pages.
U.S. Appl. No. 13/288,002, filed Nov. 2, 2011 Final Rejection dated Jan. 13, 2016, 22 pages.
U.S. Appl. No. 13/302,852, filed Nov. 22, 2011 Non-Final Rejection dated May 23, 2013, 19 pages.
U.S. Appl. No. 13/302,852, filed Nov. 22, 2011, Notice of Allowance dated Jun. 19, 2015, 26 pages.
U.S. Appl. No. 13/302,852, filed Nov. 22, 2011, Final Rejection dated Dec. 9, 2013, 23 pages.
U.S. Appl. No. 13/302,852, filed Nov. 22, 2011, Non-Final Rejection dated Sep. 2, 2014, 28 pages.
U.S. Appl. No. 13/302,852, filed Nov. 22, 2011, Final Rejection dated Mar. 30, 2015, 29 pages.
The Notice of Allowance by the Mexican Institute of Industrial Property for Mexican Patent Application No. MX/a/2013/014907 dated Feb. 20, 2015 is not translated into English, 1 page.
U.S. Appl. No. 13/324,831, filed Dec. 13, 2011, Non-Final Office Action dated Feb. 28, 2013, 23 pages.
U.S. Appl. No. 13/324,831, filed Dec. 13, 2011, Notice of Allowance dated Sep. 4, 2013, 22 pages.
U.S. Appl. No. 13/292,047, filed Nov. 8, 2011, Non-Final Office Action dated Jan. 18, 2013, 17 pages.
U.S. Appl. No. 13/292,047, filed Nov. 8, 2011, Final Office Action dated Aug. 19, 2013, 17 pages.
U.S. Appl. No. 13/292,047, filed Nov. 8, 2011 Final Office Action dated Jan. 13, 2015, 22 pages.
U.S. Appl. No. 13/292,047, filed Nov. 8, 2011 Non-Final Office Action dated Jul. 7, 2015, 28 pages.
U.S. Appl. No. 13/292,047, filed Nov. 8, 2011 Notice of Allowance dated Jan. 29, 2016, 45 pages.
U.S. Appl. No. 13/614,899, filed Sep. 13, 2012, Non-Final Office Action dated Feb. 5, 2013, 17 pages.
U.S. Appl. No. 13/614,899, filed Sep. 13, 2012, Non-Final Office Action dated May 20, 2014, 25 pages.
U.S. Appl. No. 13/614,899, filed Sep. 13, 2012, Non-Final Office Action dated Sep. 17, 2013, 17 pages.
U.S. Appl. No. 13/614,899, filed Sep. 13, 2012, Final Office Action dated Mar. 17, 2014, 41 pages.
U.S. Appl. No. 13/614,899, filed Sep. 13, 2012, Notice of Allowance dated Mar. 13, 2015, 35 pages.
U.S. Appl. No. 13/291,014, filed Nov. 7, 2011, Non-Final Office Action dated Mar. 29, 2013, 21 pages.
U.S. Appl. No. 13/291,014, filed Nov. 7, 2011, Notice of Allowance dated Aug. 7, 2013, 16 pages.
U.S. Appl. No. 13/215,598, filed Aug. 23, 2011, Non-Final Office Action dated Jun. 20, 2013, 15 pages.
U.S. Appl. No. 13/215,598, filed Aug 23, 2011, Final Office Action dated Nov. 21, 2013, 23 pages.
U.S. Appl. No. 13/215,598, filed Aug 23, 2011, Non-Final Office Action dated Feb. 6, 2014, 12 pages.
U.S. Appl. No. 13/215,598, filed Aug 23, 2011 Non-Final Office Action dated Nov. 25, 2014, 18 pages.
U.S. Appl. No. 13/215,598, filed Aug 23, 2011 Final Office Action dated Jul. 2, 2014, 22 pages.
U.S. Appl. No. 13/215,598, filed Aug 23, 2011 Final Office Action dated May 5, 2015, 17 pages.
U.S. Appl. No. 13/215,598, filed Aug 23, 2011 Non Final Office Action dated Dec. 15, 2015, all pages.
U.S. Appl. No. 13/215,598, filed Aug 23, 2011 Notice of Allowance dated May 24, 2016, all pages.
U.S. Appl. No. 13/215,655, filed Aug. 23, 2011, Non-Final Office Action dated Sep. 6, 2013, 27 pages.
U.S. Appl. No. 13/215,655, filed Aug 23, 2011, Final Office Action dated Dec. 18, 2013, 20 pages.
U.S. Appl. No. 13/215,916, filed Aug. 23, 2011, Notice of Allowance dated Jan. 4, 2013, 10 pages.
U.S. Appl. No. 13/294,005, filed Nov. 11, 2011 Notice of Allowance dated Oct. 31, 2014, 24 pages.
U.S. Appl. No. 13/294,005, filed Nov. 11, 2011 Non-Final Office Action dated May 20, 2014, 33 pages.
U.S. Appl. No. 13/294,005, filed Nov. 11, 2011, Non-Final Office Action dated Aug. 14, 2013, 32 pages.
U.S. Appl. No. 13/294,005, filed Nov. 11, 2011, Final Office Action dated Jan. 3, 2014, 29 pages.
U.S. Appl. No. 13/592,976, filed Aug. 23, 2012, Notice of Allowance dated Oct. 7, 2013, 18 pages.
U.S. Appl. No. 13/797,173, filed Mar. 12, 2013 Notice of Allowance dated Nov. 24, 2014, 37 pages.
U.S. Appl. No. 13/797,173, filed Mar. 12, 2013 Notice of Allowance dated Feb. 26, 2015, 19 pages.
U.S. Appl. No. 13/797,173, filed Mar. 12, 2013, Non Final Office Action dated May 15, 2014, 28 pages.
U.S. Appl. No. 13/799,653, filed Mar. 13, 2013 Notice of Allowance dated Nov. 26, 2014, 32 pages.
U.S. Appl. No. 13/799,653, filed Mar. 13, 2013, Non Final Office Action dated May 8, 2014, 24 pages.
U.S. Appl. No. 13/801,968, filed Mar. 13, 2013 Non Final Office Action dated May 21, 2015, 49 pages.
U.S. Appl. No. 13/801,968, filed Mar. 13, 2013 Final Office Action dated Nov. 19, 2015, all pages.
U.S. Appl. No. 13/801,968, filed Mar. 13, 2013 Notice of Allowance dated Apr. 7, 2016, 33 pages.
U.S. Appl. No. 13/829,350, filed Mar. 14, 2013, Non Final Office Action dated Feb. 28, 2014, 29 pages.
U.S. Appl. No. 13/829,350, filed Mar. 14, 2013 Non Final Office Action dated Jul. 29, 2014, 24 pages.
U.S. Appl. No. 13/829,350, filed Mar. 14, 2013 Final Office Action dated Jan. 23, 2015, 18 pages.
U.S. Appl. No. 13/829,350, filed Mar. 14, 2013 Notice of Allowance dated Jul. 24, 2015, 29 pages.
U.S. Appl. No. 13/828,001, filed Mar. 14, 2013, Notice of Allowance dated Apr. 25, 2014, 43 pages.
U.S. Appl. No. 13/799,719, filed Mar. 13, 2013, Non Final Office Action dated Oct. 25, 2013, 79 pages.
U.S. Appl. No. 13/799,719, filed Mar. 13, 2013, Notice of Allowance dated Apr. 23, 2014, 141 pages.
U.S. Appl. No. 13/801,994, Non Final Office Action dated Oct. 7, 2015, 55 pages.
U.S. Appl. No. 13/801,994, Final Office Action dated May 4, 2016, 37 pages.
U.S. Appl. No. 14/589,090, Notice of Allowance dated Feb. 9, 2016, 47 pages.
U.S. Appl. No. 14/860,366, Non-Final Office Action dated Mar. 24, 2017, all pages.
U.S. Appl. No. 14/944,758, Non-Final Office Action dated Jan. 25, 2017, all pages.
U.S. Appl. No. 15/141,304, Non-Final Office Action dated Feb. 28, 2017, all pages.
U.S. Appl. No. 15/141,304, Final Rejection dated Oct. 18, 2017, all pages.
U.S. Appl. No. 15/141,304, Non-Final Office Action dated Apr. 6, 2018, all pages.
U.S. Appl. No. 15/143,999, filed May 2, 2016, Non-Final Rejection dated Apr. 20, 2017, all pages.
U.S. Appl. No. 15/143,999, filed May 2, 2016, Notice of Allowance dated Aug. 25, 2017, all pages.
U.S. Appl. No. 15/815,452, filed Nov. 16, 2017 Non-Final Rejection dated Mar. 13, 2018, all pages.
U.S. Appl. No. 14/591,549, Non Final Office Action dated Dec. 31, 2015, 19 pages.
U.S. Appl. No. 14/591,549, Final Office Action dated Jun. 30, 2016, all pages.
U.S. Appl. No. 14/591,549, Non Final Office Action dated Dec. 14, 2016, all pages.
U.S. Appl. No. 14/064,423, filed Oct. 28, 2013, Non-Final Office Action dated Dec. 20, 2013, 18 pages.
U.S. Appl. No. 14/064,423, filed Oct. 28, 2013, Notice of Allowance dated Mar. 4, 2013, 37 pages.
U.S. Appl. No. 14/060,388, filed Oct. 22, 2013, Notice of Allowance dated Apr. 13, 2015, 44 pages.
U.S. Appl. No. 13/793,636, filed Mar. 11, 2013, Non-Final Office Action dated Sep. 29, 2014, 27 pages.
U.S. Appl. No. 13/793,636, filed Mar. 11, 2013, Notice of Allowance dated Jan. 28, 2015, 43 pages.
International Search Report of PCT/KR2007/003521 dated Oct. 23, 2007, 22 pages.
International Search Report of PCT/IB2003/005737 dated Mar. 2, 2004, 21 pages.
Jensen, Craig, “Fragmentation: the condition, the cause, the cure” ′Online!, Executive Software International, 1994; ISBN: 0964004909; retrieved from Internet: <URL: www.executive.com/fragbook/fragbook.htm> * Chapter: “How a disk works”, Section: “The original problem”. Retrieved on Jan. 9, 2014, 70 pages.
U.S. Appl. No. 14/095,860, filed Dec. 3, 2013 Non-Final Office Action dated Dec. 26, 2014, 45 pages.
U.S. Appl. No. 14/095,860, filed Dec. 3, 2013 Final Office Action dated May 1, 2015, 18 pages.
U.S. Appl. No. 14/095,860, filed Dec. 3, 2013 Notice of Allowance dated Jul. 13, 2015, 31 pages.
U.S. Appl. No. 14/095,860, filed Dec. 3, 2013 Notice of Allowance dated Oct. 19, 2015, 14 pages.
U.S. Appl. No. 14/695,188 Non Final Office Action dated Dec. 30, 2016, all pages.
U.S. Appl. No. 14/695,188 Final Office Action dated Jul. 28, 2017, all pages.
U.S. Appl. No. 14/338,114, filed Jul. 22, 2014 Non-Final Office Action dated Sep. 30, 2015, all pages.
U.S. Appl. No. 14/338,114, filed Jul. 22, 2014 Notice of Allowance dated Feb. 3, 2016, all pages.
U.S. Appl. No. 14/529,989, filed Oct. 31, 2014 Non-Final Office Action dated Nov. 4, 2015, all pages.
U.S. Appl. No. 14/529,989, filed Oct. 31, 2014, Final Rejection dated May 6, 2016, 27 pages.
U.S. Appl. No. 13/795,914, filed Mar. 6, 2013 Notice of Allowance dated Jul. 21, 2014, 13 pages.
U.S. Appl. No. 13/795,914, filed Mar. 6, 2013 Final Office Action dated Apr. 3, 2014, 17 pages.
U.S. Appl. No. 13/795,914, filed Mar. 6, 2013, Non-Final Office Action dated Oct. 11, 2013, 17 pages.
U.S. Appl. No. 13/800,477, filed Mar. 13, 2013 Non-Final Office Action dated Sep. 11, 2014, 34 pages.
U.S. Appl. No. 13/800,477, filed Mar. 13, 2013 Notice of Allowance dated Feb. 18, 2015, 18 pages.
U.S. Appl. No. 14/043,617, filed Oct. 1, 2013 Non-Final Office Action dated Jan. 5, 2015, 45 pages.
U.S. Appl. No. 14/043,617, filed Oct. 1, 2013 Final Office Action dated Jul. 16, 2015, 45 pages.
U.S. Appl. No. 14/043,617, filed Oct. 1, 2013, Final Office Action dated May 6, 2016, 56 pages.
U.S. Appl. No. 14/043,617, filed Oct. 1, 2013, Non-Final Office Action dated Sep. 29, 2016, all pages.
U.S. Appl. No. 14/043,617, filed Oct. 1, 2013, Notice of Allowance dated Dec. 23, 2016, all pages.
U.S. Appl. No. 14/043,617, filed Oct. 1, 2013 Non-Final Office Action dated Oct. 23, 2015, all pages.
U.S. Appl. No. 14/676,137, filed Apr. 1, 2015 Notice of Allowance dated Sep. 28, 2015, 35 pages.
U.S. Appl. No. 15/131,868, filed Apr. 18, 2016 Non-Final Office Action dated Jan. 13, 2017, all pages.
U.S. Appl. No. 15/131,868, filed Apr. 18, 2016 Notice of Allowance dated Jun. 16, 2017, all pages.
International Preliminary Report on Patentability for PCT/US2013/032176 dated Sep. 25, 2014, 7 pages.
International Search Report and Written Opinion of PCT/US2013/32176 dated Jun. 25, 2013, 15 pages.
International Search Report and Written Opinion of PCT/US2013/031565 dated May 31, 2013, 82 pages.
International Preliminary Report on Patentability for PCT/US2013/031565 dated Sep. 16, 2014, 18 pages.
International Preliminary Report on Patentability for PCT/US2013/031915 dated Sep. 16, 2014, 5 pages.
International Search Report and Written Opinion of PCT/US2013/031915 dated Jun. 3, 2013, 7 pages.
International Search Report and Written Opinion of PCT/US2013/031440 dated May 30, 2013, 14 pages.
European Search Report for EP 12825653 dated Mar. 11, 2015, 7 pages.
Extended European Search Report for EP 12825080 dated Sep. 11, 2014, 10 pages.
Extended European Search Report for EP 12825521 dated Nov. 24, 2014, 7 pages.
Extended European Search Report for EP 12825474 dated Jan. 7, 2015, 6 pages.
Extended European Search Report for EP 12825430 dated Feb. 3, 2015, 9 pages.
Supplementary European Search Report for Application No. EP 12825147 dated Mar. 27, 2015, 9 pages.
Notice of Publication for BR 11 2013 032035-4 dated Dec. 20, 2016, 1 page.
Notice of Publication for BR 11 2013 032380-9 dated Jan. 3, 2017, 1 page.
Notice of Publication for BR 11 2013 032860-6 dated Jan. 24, 2017, 1 page.
Notice of Publication for BR 11 2013 032377-9 dated Jan. 3, 2017, 1 page.
Notice of Publication for BR 11 2014 020064-5 A2 dated Jul. 20, 2017, 1 page.
Office Action for European Application No. 12825147 dated Mar. 7, 2016, all pages.
Office Action for European Application No. 12825147 dated Aug. 23, 2016, all pages.
First Office Action and Search Report for CN Appln No. 201380014409.2 dated Oct. 9, 2016, all pages.
Second Office Action for CN Appln No. 201380014409.2 dated Jun. 7, 2017, all pages.
Supplementary European Search Report for EP 13761291.7 dated Jul. 9, 2015, 8 pages.
Office Action dated Nov. 29, 2016 for EP 13 761 291.7, all pages.
Evans, Brent: “GeekTonic: Jan. 25, 2009-Feb. 1, 2009”, Jan. 31, 2009, SP55322053, Retreived from the Internet: URL: http://www.geektonic.com/2009_01_25_archive.html [retrieved on Nov. 23, 2016], 26 pages.
McCann, John, “EE TV set top takes aim at Sky, Virgin Media and YouView,” dated Oct. 8, 2014, 5 pages. Retrieved on Oct. 13, 2014 from http://www.techradar.com/news/televison/ee-tv-set-top-box-takes-aim-at-sky-virgin-media-and-youview-1268223.
Extended European Search Report for EP 13760237.1, 8 pages.
Author Unknown, “EE Launches home TV service in UK,” dated Oct. 8, 2014, 3 pages. Retrieved on Oct. 13, 2014 from http://www.bbc.com/news/technology-29535279.
Author Unknown, Digital Video Broadcasting (DVB); Content Protection and Copy Management (DVB-CPCM); Part 3: CPCM Usage State Information; European Broadcasting Union Union Europa de Radio-Television, ETSI TS 102 825-3 V1.1.1 (Jul. 2008), XP014042034, 28 pages.
First Office Action and Search Report from the State Intellectual Property Office (SIPO) for CN 201280031150.8, dated Aug. 3, 2016, 10 pages. (not translated, see foreign agent's letter).
Author Unknown, “Digital Video Broadcasting (DVB); Specification for Service Information (SI) in DVB systems,” ETSI EN 300 468 V1.1 (Jan. 2013), 172 pages.
Author Unknown, “Digital Video Broadcasting (DVB); Specification for Service Information (SI) in DVB systems,” ETSI EN 300 468 V1.9.1 (Mar. 2009), 116 pages.
Second Office Action issued by State Intellectual Property Office for CN 201280028697.2, dated Jul. 8, 2016, all pages.
Third Office Action issued by State Intellectual Property Office for CN 201280028697.2, dated Dec. 29, 2016, all pages. (entered onto matrix Feb. 2018).
Notice of Allowance received for Mexican Patent Appln. MX/a/2013/014991, dated Dec. 9, 2015, 1 page.
The second Office Action dated Feb. 26, 2015 for Mexican Pat. Appln. No. MX/a/2013/014217 is not translated into English, 3 pages.
The Office Action dated Nov. 7, 2014 for Mexican Patent Application No. MX/a/2013/014907 is not translated into English, 3 pages.
The Office Action dated Jan. 23, 2015 for Mexican Patent Application No. MX/a/2013/014671 is not translated into English, 3 pages.
Notice of Allowance dated Dec. 16, 2015 for Mexican Patent Application No. MX/a/2014/009919, 1 page.
First Office Action and Search Report for CN Appln No. 201280030476.9 dated Aug. 9, 2016, all pages.
The Office Action dated Nov. 6, 2014 for Mexican Patent Application No. MX/a/2013/014677 is not translated into English, 2 pages.
The Notice of Allowance by the Mexican Institute of Industrial Property for Mexican Patent Application No. MX/a/2013/014677 dated Mar. 19, 2015 is not translated into English, 1 page.
Office Action dated May 18, 2015 for Mexican Patent Application No. MX/a/2014/009776, 2 pages.
Williams, Christopher, “EE to launch TV set-top box,” dated Oct. 7, 2014, 2 pages. Retrieved on Oct. 13, 2014 from http://www.telegraph.co.uk/finance/newsbysector/mediatechnologyandtelecoms/telecoms/11147319/EE-to-launch-TV-set-top-box.html (added to matrix Oct. 13, 2014, per Karam's email).
Author Unknown, “EE TV It's simply great television,” Accessed on Oct. 13, 2014, 11 pages. Retrieved from https//ee.co.uk/ee-and-me/ee-tv.
Notice of Allowance dated Jul. 21, 2016 for Mexican Patent Application No. MX/a/2015/10334, 1 page.
Office Action dated Jul. 31, 2015 for Mexican Patent Application No. MX/a/2014/009928, 2 pages.
Notice of Allowance dated Jan. 15, 2016 for Mexican Patent Application No. MX/a/2014/009928, 1 page.
Office Action dated Jul. 31, 2015 for Mexican Patent Application No. MX/a/2014/009919, 2 pages.
Notice of Allowance dated Jun. 3, 2016 for Mexican Patent Application No. MX/a/2015/009985, 1 page.
Notice of Allowance dated Jun. 6, 2016 for Mexican Patent Application No. MX/a/2015/015383, 1 page.
Office Action for Canadian Appln No. 2,838,750 dated Mar. 14, 2019, all pages.
Related Publications (1)
Number Date Country
20180139494 A1 May 2018 US
Provisional Applications (1)
Number Date Country
61526665 Aug 2011 US
Continuations (2)
Number Date Country
Parent 14860366 Sep 2015 US
Child 15851376 US
Parent 13302852 Nov 2011 US
Child 14860366 US