Apple Inc. v. Samsung Electronics Co. Ltd. et al
Filing
663
EXHIBITS re #660 Administrative Motion to File Under Seal Apple Inc.'s Notice of Motion and Motion for Partial Summary Judgment Exhibits to Mueller Declaration ISO Apple's Motion for Partial Summary Judgment [660-9] filed byApple Inc.(a California corporation). (Attachments: #1 Exhibit Mueller Decl Exhibit 43, #2 Exhibit Mueller Decl Exhibit 44, #3 Exhibit Mueller Decl Exhibit 45, #4 Exhibit Mueller Decl Exhibit 46, #5 Exhibit Mueller Decl Exhibit 47, #6 Exhibit Mueller Decl Exhibit 48, #7 Exhibit Mueller Decl Exhibit 49, #8 Exhibit Mueller Decl Exhibit 50, #9 Exhibit Mueller Decl Exhibit 51, #10 Exhibit Mueller Decl Exhibit 52, #11 Exhibit Mueller Decl Exhibit 53, #12 Exhibit Mueller Decl Exhibit 54, #13 Exhibit Mueller Decl Exhibit 55, #14 Exhibit Mueller Decl Exhibit 56, #15 Exhibit Mueller Decl Exhibit 57, #16 Exhibit Mueller Decl Exhibit 58, #17 Exhibit Mueller Decl Exhibit 59, #18 Exhibit Mueller Decl Exhibit 60, #19 Exhibit Mueller Decl Exhibit 61, #20 Exhibit Mueller Decl Exhibit 62, #21 Exhibit Mueller Decl Exhibit 63, #22 Exhibit Mueller Decl Exhibit 64, #23 Exhibit Mueller Decl Exhibit 65)(Related document(s) #660 ) (Selwyn, Mark) (Filed on 1/25/2012)
Mueller Exhibit 57
EXHIBIT A
SAMSUNG’S PATENT L.R. 3-1(A)-(D) DISCLOSURES FOR
U.S. PATENT NO. 6,928,604
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ASSERTED CLAIM
(PATENT L.R. 3-1(A))
ACCUSED INSTRUMENTALITY AND HOW EACH ELEMENT IS MET BY ACCUSED
INSTRUMENTALITY
(PATENT L.R. 3-1(B)-(D))
1. A mobile communication system having Apple’s 3G Products1 contain a mobile communication system having input data frames of variable
input data frames of variable size, size. See, e.g.,
comprising:
Apple iPhone user guide re iOS 3.1: (iPhone 3G or later, p. 21):
http://www.apple.com/iphone/specs.html (iPhone 4)
1
“Apple’s 3G Products” include iPhone 3G, iPhone 3GS, iPhone4, iPad 3G, iPad2 3G and any other products compliant with
3GPP UMTS standard.
03498.51845/4323151.1
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iPad iOS 3.2 user guide: (iPad)
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http://www.apple.com/ipad/specs/ (iPad 2)
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3GPP Technical Specification 25.212 v6.0.0 (“TS 25.212 v6.0.0”) §4.2 Figure 1:
Given the range of applications for Apple 3G products, the input data frames are not all of the same
size.
TS 25.212 v6.0.0 §4.2.1.1:
[a] a processor for determining the number Apple’s 3G Products include a processor for determining the number of input data frames to
of input data frames to concatenate to concatenate to compose a super frame. See, e.g.,
compose a super frame; and
TS 25.212 v6.0.0 §4.2.2:
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http://www.tgdaily.com/hardware-features/50344-the-real-iphone-4-teardown
TS 25.212 v6.0.0 § 4.2.2.2:
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[b] a turbo encoder for turbo encoding the Apple’s 3G Products include a turbo encoder for turbo encoding the super frame consisting of more
super frame consisting of more than one than one input data frame. See, e.g.,
input data frame.
TS 25.212 v6.0.0 §4.2.2:
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TS 25.212 v6.0.0 §4.2.3, Table 1:
2. The mobile communication system as See claim 1.
claimed in claim 1, wherein the turbo
encoder comprises:
[a] a first constituent encoder for encoding Apple’s 3G Products include a first constituent encoder for encoding data of the super frame. See,
data of the super frame;
e.g.,
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TS 25.212 v6.0.0 §4.2.3.2.1, Figure 4:
[b] an interleaver for interleaving the data of Apple’s 3G products include an interleaver for interleaving the data of the super frame. See, e.g.,
the super frame; and
TS 25.212 v6.0.0 §4.2.3.2.1, Figure 4:
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[c] a second constituent encoder, operably Apple’s 3G Products include a second constituent encoder, operably connected to said interleaver,
connected to said interleaver, for encoding for encoding the interleaved data of the super frame. See, e.g.,
the interleaved data of the super frame.
TS 25.212 v6.0.0 §4.2.3.2.1, Figure 4:
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3. The mobile communication system as See claim 1.
claimed in claim 1,
wherein said interleaver includes an The interleaver contained in Apple’s 3G Products include an interleaving address mapper for
interleaving address mapper for interleaving interleaving the data of the super frame.
the data of the super frame.
TS 25.212 v6.0.0 §4.2.3.2, Figure 4:
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4. The mobile communication system as See claim 2.
claimed in claim 2, further comprising:
[a] a multiplexer for multiplexing respective Apple’s 3G Products include a multiplexer for multiplexing respective outputs of the first and
outputs of the first and second constituent second constituent encoders. See, e.g.,
encoders; and
TS 25.212 v6.0.0 Figure 1:
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[b] a channel interleaver for interleaving an Apple’s 3G Products include a channel interleaver for interleaving an output of the multiplexer. See,
output of the multiplexer.
e.g.,
TS 25.212 v6.0.0 Figure 1:
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TS 25.212 v6.0.0 §§ 4.2.3.3, 4.2.4:
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TS 25.212 v6.0.0 §4.2.5:
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6. The mobile communication system as See claim 1.
claimed in claim 1, further wherein
the number of input data frames to make the Apple’s 3G Products include the mobile communication system wherein the number of input data
super frame is determined by a data size of a frames to make the super frame is determined by a data size of a frame. See, e.g.,
frame.
TS 25.212 v6.0.0 §4.2.2:
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10. A channel encoding method for a mobile See claim 1. Apple infringes this claim because it has performed each and every step of this claim,
communication system having turbo encoder including but not limited to through testing and use by its employees. Apple also infringes this
input data frames of variable size, claim by selling Apple's 3G Products to customers and encouraging those customers to use the
comprising the steps of:
products in a manner that meets each and every step of this claim.
[a] determining the number of input data See claim 1[a].
frames to construct a super frame;
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[b] concatenating the number of the input See claim 1[a].
data frames into a super frame; and
[c] turbo encoding data of the super frame See claim 1[b].
consisting of more than one input data frame.
11. The channel encoding method as claimed See claim 2.
in claim 10, wherein the turbo encoding step
further comprises the steps of:
encoding data of the super frame;
See claim 2[a].
interleaving data of the super frame; and
See claim 2[b].
encoding data of the interleaved super frame.
See claim 2[c].
12. The channel encoding method as claimed See claim 10.
in claim 10, further comprising
the step of channel interleaving the turbo Apple’s 3G Products channel interleave the turbo encoded data in accordance with the size of the
encoded data in accordance with the size of super frame.
the super frame.
TS 25.212 v6.0.0 Figure 1:
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TS 25.212 v6.0.0 §§ 4.2.3.3, 4.2.4:
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TS 25.212 v6.0.0 §4.2.5:
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17. A mobile communication system having See claim 1.
turbo encoder input data frames of variable
size, comprising:
[a] a decoder for turbo decoding data being See claim 1[b].
received as a super frame including a
plurality of original input data frames; and
[b] a frame reconstructor for segmenting an Apple’s 3G Products include a frame reconstructor for segmenting an output of the turbo decoder
output of the turbo decoder into a number of into a number of original input data frames in accordance with a message information about the
original input data frames in accordance with original input data frames constituting said super frame.
a message information about the original See claim 1[a].
input data frames constituting said super
frame.
See, e.g.,:
TS 25.212 v6.0.0 § 4.3.2:
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TS 25.212 v6.0.0 § 4.6:
18. The mobile communication system as See claim 17.
claimed in claim 17,
further comprising a processor for Apple’s 3G Products include a processor for determining a number and a size of original input data
determining a number and a size of original frames constituting said super frame based upon received message information about the number
input data frames constituting said super and the size of the original input data frames combined into the super frame, and providing the
frame based upon received message determined number and size information to the frame reconstructor.
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information about the number and the size of See claim 1[a].
the original input data frames combined into
the super frame, and providing the See, e.g.,:
determined number and size information to
TS 25.212 v6.0.0 § 4.3.2:
the frame reconstructor.
TS 25.212 v6.0.0 § 4.6:
19. The mobile communication system as See claim 17.
claimed in claim 17,
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wherein said message information is See claim 17[b].
received during a call setup.
20. The mobile communication system as See claim 18.
claimed in claim 17,
further comprising a processor for See claim 18.
determining a number and a size of original
input data frames constituting said super
frame based upon received message
information about the number and the size of
the original input data frames combined into
the super frame, and providing the
determined number and size information to
the frame reconstructor.
21. A channel decoding method for a mobile See claim 17.
communication system having turbo encoder
input data frames of variable size,
comprising the steps of:
turbo decoding data received as a super
See claim 17[a].
frame including a plurality of original input
data frames; and
segmenting an output of the decoder into a See claim 17[b].
number of original input data frames in
accordance with message information about
the original input data frames constituting
said super frame.
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22. A mobile communication system having See claim 1.
turbo encoder input data frames comprising:
[a] a processor for determining to See claim 1[a].
concatenate a number of input data frames to
compose a super frame when a data rate of
the input data frames is less than a
predetermined value;
a first constituent encoder for encoding data See claim 2[a].
of the super frame;
an interleaver for interleaving the data of the
See claim 2[b].
super frame;
a second constituent encoder for encoding See claim 2[c].
output of the interleaver; and
a channel interleaver for interleaving the
See claim 4[b].
output of the turbo encoder.
24. A channel encoding method for a mobile
See claim 10.
communication system having turbo encoder
input data frames of variable size,
comprising the steps of:
comparing a data rate of input data frames to
See claim 22[a].
a turbo encoder with a predetermined value;
deciding to compose a super frame if the data See claim 22[a].
rate is less than the predetermined value; and
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turbo encoding the super frame which is See claim 1[b].
composed of a number of input data frames.
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