Netlist, Inc. v. Micron Technology, Inc.
CourtCourt of Appeals for the Federal Circuit
Date FiledSeptember 2, 2026
Docket24-1707
StatusPublished
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Full Opinion
Case: 24-1707 Document: 72 Page: 1 Filed: 09/02/2026
United States Court of Appeals
for the Federal Circuit
______________________
NETLIST, INC.,
Appellant
v.
MICRON TECHNOLOGY, INC., MICRON
SEMICONDUCTOR PRODUCTS, INC., MICRON
TECHNOLOGY TEXAS, LLC,
Appellees
______________________
2024-1707
______________________
Appeal from the United States Patent and Trademark
Office, Patent Trial and Appeal Board in Nos. IPR2022-
00639, IPR2023-00204.
______________________
Decided: September 2, 2026
______________________
JENNIFER ELIZABETH FISCHELL, MoloLamken LLP,
Washington, DC, argued for appellant. Also represented
by KAYVON GHAYOUMI, RAYINER HASHEM, JEFFREY A.
LAMKEN, LIDIYA MISHCHENKO; ELIZABETH KATHLEEN
CLARKE, Chicago, IL; CATHERINE MARTINEZ, New York,
NY; JASON SHEASBY, HONG ANNITA ZHONG, Irell & Manella
LLP, Los Angeles, CA; BLAIR A. SILVER, Washington, DC.
MICHAEL RUECKHEIM, King & Spalding LLP, San
Case: 24-1707 Document: 72 Page: 2 Filed: 09/02/2026
2 NETLIST, INC. v. MICRON TECHNOLOGY, INC.
Francisco, CA, for appellees. Also represented by JUAN C.
YAQUIAN, Houston, TX.
______________________
Before REYNA, LINN, and STARK, Circuit Judges.
REYNA, Circuit Judge.
Netlist, Inc. (“Netlist”) appeals a final written decision
of the Patent Trial and Appeal Board (“Board”) determin-
ing all challenged claims of U.S. Patent No. 10,949,339 are
unpatentable as obvious. For the following reasons, we af-
firm.
BACKGROUND
Netlist owns U.S. Patent No. 10,949,339 (the “’339 pa-
tent”). The ’339 patent is directed to computer memory sys-
tems, and more specifically to “improving the performance
and the memory capacity of . . . memory boards that in-
clude dual in-line memory modules.” J.A. 109 at 1:18–23.
The specification describes adding to memory modules a
plurality of “buffers” between a memory controller and dy-
namic random access memory (“DRAM”) devices. The buff-
ers include data paths that are ordinarily disabled, thereby
electrically isolating the DRAM devices from the memory
controller by default. During read or write operations,
however, the buffers are selectively enabled to “drive[] the
data signal” from the memory controller to the DRAM de-
vices. J.A. 117 at 17:14–22.
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NETLIST, INC. v. MICRON TECHNOLOGY, INC. 3
Figure 3C of the ’339 patent, reproduced below, depicts
one embodiment of the invention. In that embodiment,
buffer circuits 416′ are “operatively coupled” between
memory controller 420′ and memory devices 412′.
J.A. 104 at Fig. 3C.
Samsung Electronics Co., Ltd. (“Samsung”) filed a pe-
tition for inter partes review challenging claims 1–35 of the
’339 patent as obvious over the combination of U.S. Patent
Application Publication No. 2006/0277355 (“Ellsberry”;
J.A. 1831–56) and U.S. Patent No. 7,024,518 (“Halbert”;
J.A. 1857–76). 1 The Board treated independent claim 1 of
the ’339 patent as representative in its final written deci-
sion. The parties do the same on appeal, as do we in our
1 Micron Technology, Inc., Micron Semiconductor
Products, Inc., and Micron Technology Texas, LLC (collec-
tively, “Micron”) filed a petition for inter partes review in
IPR2023-00204 challenging the same claims over the same
prior art and were joined as petitioners with Samsung in
IPR2022-00639. Although Samsung and Micron were both
originally parties to this appeal, Samsung has since settled
with Netlist and withdrawn its participation from this ap-
peal. We therefore refer to Micron alone as “Appellees.”
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4 NETLIST, INC. v. MICRON TECHNOLOGY, INC.
review. Claim 1, reproduced below, recites a memory mod-
ule having various components.
[1pre] A N-bit-wide memory module mountable in
a memory socket of a computer system and config-
urable to communicate with a memory controller of
the computer system via address and control signal
lines and N-bit wide data signal lines, the N-bit
wide data signal lines including a plurality of sets
of data signal lines, each set of data signal lines is
a byte wide, the memory module comprising:
[1a] a printed circuit board (PCB) having an edge
connector comprising a plurality of electrical con-
tacts which are positioned on an edge of the PCB
and configured to be releasably coupled to corre-
sponding contacts of the memory socket;
[1b] double data rate dynamic random access
memory (DDR DRAM) devices coupled to the PCB
and arranged in multiple N-bit-wide ranks;
[1c1] a module controller coupled to the PCB and
operatively coupled to the DDR DRAM devices,
wherein the module controller is configurable to re-
ceive from the memory controller via the address
and control signal lines input address and control
signals for a memory write operation to write N-
bit-wide write data from the memory controller
into a first N-bit-wide rank of the multiple N-bit-
wide ranks, and to output registered address and
control signals in response to receiving the input
address and control signals,
[1c2] wherein the registered address and control
signals cause the first N-bit-wide rank to perform
the memory write operation by receiving the N-bit-
wide write data, wherein the module controller is
further configurable to output module control
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NETLIST, INC. v. MICRON TECHNOLOGY, INC. 5
signals in response to at least some of the input ad-
dress and control signals; and
[1d1] a plurality of byte-wise buffers coupled to the
PCB and configured to receive the module control
signals,
[1d2] wherein each respective byte-wise buffer of
the plurality of byte-wise buffers has a first side
configured to be operatively coupled to a respective
set of data signal lines, a second side that is opera-
tively coupled to at least one respective DDR
DRAM device in each of the multiple N-bit-wide
ranks via respective module data lines, and a byte-
wise data path between the first side and the sec-
ond side,
[1d3] wherein the each respective byte-wise buffer
is disposed on the PCB at a respective position cor-
responding to the respective set of the plurality of
sets of data signal lines;
[1e] wherein the each respective byte-wise buffer
further includes logic configurable to control the
byte-wise data path in response to the module con-
trol signals, wherein the byte-wise data path is en-
abled for a first time period in accordance with a
latency parameter to actively drive a respective
byte-wise section of the N-bit wide write data asso-
ciated with the memory operation from the first
side to the second side during the first time period;
and
[1f] wherein the byte-wise data path includes first
tristate buffers, and the logic in response to the
module control signals is configured to enable the
first tristate buffers to drive the respective byte-
wise section of the N-bit wise write data to the re-
spective module data lines during the first time pe-
riod.
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6 NETLIST, INC. v. MICRON TECHNOLOGY, INC.
J.A. 118 at 19:9–67.
Two limitations of claim 1 are disputed on appeal.
First, limitations [1e] and [1f] require that a “data path”
through the buffer is “enabled” so that a memory controller
can drive write data through the buffer to the DRAM de-
vice. Second, limitation [1e] separately requires that the
data path is enabled at a certain time (i.e., “in accordance
with a latency parameter”) for a certain duration (i.e., a
“first time period”).
The Board instituted review and determined that Sam-
sung established by a preponderance of the evidence that
all challenged claims of the ’339 patent were obvious over
Ellsberry and/or Halbert. The Board found that “Ellsberry
alone or in combination with Halbert, when viewed with
the general knowledge of a person of ordinary skill in the
art, teaches enabling and disabling data paths through the
data buffer.” J.A. 42. The Board further found that Appel-
lees “established that Ellsberry’s switch ASICs use Posted
CAS latency (AL) bits to control timing of the enablement
of the data path across its switch ASICs,” i.e., that enable-
ment of the buffer data path occurs for a first time period
in accordance with a latency parameter. J.A. 47.
Netlist appealed from the Board’s final written deci-
sion. We have jurisdiction under 28 U.S.C. § 1295(a)(4)(A).
STANDARD OF REVIEW
We review the Board’s ultimate obviousness determi-
nation de novo and its underlying factual findings for sub-
stantial evidence. Incept LLC v. Palette Life Scis., Inc.,
77 F.4th 1366, 1371 (Fed. Cir. 2023). Substantial evidence
is “such relevant evidence as a reasonable mind might ac-
cept as adequate to support a conclusion. Id. (citation mod-
ified).
We review de novo the Board’s compliance with its ob-
ligations under the Administrative Procedure Act (“APA”),
5 U.S.C. § 706. Axonics, Inc. v. Medtronic, Inc., 75 F.4th
Case: 24-1707 Document: 72 Page: 7 Filed: 09/02/2026
NETLIST, INC. v. MICRON TECHNOLOGY, INC. 7
1374, 1380 (Fed. Cir. 2023). The APA requires the Board
to identify the reasons and bases in the record for reaching
its conclusions. Alacritech, Inc. v. Intel Corp., 966 F.3d
1367, 1370 (Fed. Cir. 2020). “We do not require perfect ex-
planations, and we will uphold a decision of less than ideal
clarity if the agency’s path may reasonably be discerned.”
Id. (citation modified).
An inter partes review must proceed “in accordance
with or in conformance to the petition.” SAS Inst., Inc.
v. Iancu, 584 U.S. 357, 365 (2018) (citation modified). The
Board may not “depart from the petition and institute a
different inter partes review of [its] own design.” Id. (em-
phasis in original); see also id. at 364 (“[R]ather than create
(another) agency-led, inquisitorial process for reconsider-
ing patents, Congress opted for a party-directed, adversar-
ial process.”). Thus, we have found error where the Board
held claims unpatentable based on a ground “absent from
the petition.” Int’l Bus. Machs. Corp. v. Zillow Grp, Inc.,
160 F.4th 1360, 1366 (Fed. Cir. 2025) (citing Koninklijke
Philips N.V. v. Google LLC, 948 F.3d 1330, 1337 (Fed. Cir.
2020)).
DISCUSSION
Netlist makes two primary arguments on appeal.
First, Netlist argues that the Board erred by determining
that Ellsberry teaches data paths that are enabled “in ac-
cordance with a latency parameter,” as recited in limita-
tion [1e]. Appellant Br. 37–51. Second, Netlist argues the
Board erred by determining that Ellsberry teaches “en-
abl[ing]” a “data path,” as recited by limitations [1e] and
[1f]. Id. at 51–62. We address each argument in turn. Ad-
ditionally, Netlist raises various other APA related argu-
ments which we address below.
I.
Netlist argues the Board erred by finding that Ells-
berry teaches data paths that are enabled at the required
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8 NETLIST, INC. v. MICRON TECHNOLOGY, INC.
time using a latency parameter, as required by limita-
tion [1e]. Netlist argues the Board’s finding that Ellsberry
teaches buffers, i.e., “switch ASICs,” that use a latency pa-
rameter, i.e., “Posted CAS_n,” to control timing of enabling
the buffer data paths, was based on “unsubstantiated spec-
ulation about Ellsberry’s operation.” Appellant Br. 38–39.
Netlist contends that the Board merely assumed that Ells-
berry’s switch ASICs use the Posted CAS_n command to
control enabling data paths. More specifically, Netlist ar-
gues that, in Ellsberry, Posted CAS_n is simply passed
through the switch ASIC to the DRAM devices instead of
being used by the switch ASICs. We are unpersuaded by
Netlist’s arguments and determine that the Board’s finding
was supported by substantial evidence.
The Board, relying on the opinion of Samsung’s expert,
Dr. Subramanian, found that Ellsberry teaches certain
memory module embodiments having a control unit that
controls switch ASICs to enable or disable data paths, i.e.,
Ellsberry’s Ports A and B. 2 J.A. 40 (citing Ellsberry,
Figs. 2, 4, ¶¶30–31, 40; Subramanian Decl.
[J.A. 1302–1830], ¶¶231, 358). And as to enabling the data
paths in accordance with a latency parameter, the Board
pointed to Ellsberry’s teaching that initialization com-
mands, including a “Posted CAS_n parameter,” are sent to
and stored in Ellsberry’s memory bank switch (i.e., switch
ASIC). J.A. 44 (citing Ellsberry, ¶44, Fig. 9). The Board
rejected Netlist’s argument that Ellsberry’s memory bank
switch “merely passes the Posted CAS_n latency parame-
ter (AL) to the memory devices along with the burst length
(BL) and CAS latency parameter (CL),” because, of those
three parameters, Ellsberry’s Paragraph 44 refers
2 Netlist also argues that the Board erred by finding
enablement of Ellsberry’s Ports A and B constitutes ena-
blement of the claimed “data paths.” We address that con-
tention in Section II below.
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NETLIST, INC. v. MICRON TECHNOLOGY, INC. 9
specifically to storing Posted CAS_n in the memory bank
switch. Id. Paragraph 44 discloses that certain commands
are sent to Ellsberry’s memory bank switch instead of be-
ing passed directly to the memory devices, including those
shown in Figure 9, i.e., Posted CAS_n. Ellsberry, ¶44, Fig.
9.
The Board then turned to Ellsberry’s disclosure that its
memory modules are compatible with Joint Electron De-
vice Engineering Council (“JEDEC”) standards. J.A. 44
(citing Ellsberry, ¶¶27, 44, 50, Fig. 9). And specifically,
that Figure 21 from the JEDEC standards provides read
and write latencies that depend upon “Posted CAS latency
(or additive latency).” J.A. 45 (citing J.A. 2130; Subrama-
nian Decl., ¶352). The Board’s reliance on Ellsberry’s
teachings, as supported by the JEDEC standards, consti-
tutes substantial evidence that Ellsberry teaches enabling
data paths in accordance with a latency parameter.
Netlist further argues that, even if the Board had sub-
stantial evidence to find that Ellsberry uses latency infor-
mation to control data paths, the Board erred by using the
’537 patent, 3 which was not part of Samsung’s petition
ground, to supply the missing limitation of enabling the
data paths at the required time to account for the buffer.
Netlist argues that Ellsberry’s “‘Posted CAS_n,’ the Peti-
tion’s putative latency parameter, did not reflect timing in-
formation for the module and had nothing to do with a data
buffer.” Id. at 44–45 (emphasis omitted). Thus, Netlist ar-
gues, the Board improperly used Netlist’s own ’537 patent
to fill that limitation gap.
Samsung did not assert the ’537 patent as a reference
in its sole petition ground. Yet the Board relied on the ’537
3 The ’537 patent refers to U.S. Patent No. 7,532,537
(J.A. 2531–78) which issued May 12, 2009 and is assigned
to Netlist.
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10 NETLIST, INC. v. MICRON TECHNOLOGY, INC.
patent’s “teaching” of “add[ing] one clock cycle to account
for propagation delay through a data buffer.” J.A. 46 (em-
phasis added) (citing ’537 patent at 21:28–53). The Board
continued that, “[p]rimed with this teaching, a person of
ordinary skill in the art would have implemented Ellsberry
to budget one clock cycle to account for delay through the
data buffer.” Id. According to Netlist, the Board’s expla-
nation shows that it impermissibly expanded the role of the
’537 patent from mere evidence of the general skill in the
art to that of a prior art reference. This would violate the
restriction that the Board may not depart from the petition
and find claims invalid on grounds “of [its] own design.”
SAS Inst., 584 U.S. at 365; see also Koninklijke Philips, 948
F.3d at 1335 (noting that the Board may not rely on a “com-
bination of prior art references not advanced in . . . [the]
petition”). Netlist further contends that even if the Board
had not elevated the role of the ’537 patent to a prior art
reference, and instead had used it merely as evidence of
general knowledge in the art, the Board’s treatment of the
’537 patent was still improper.
However, any potential error was harmless because the
Board alternatively found that Ellsberry alone, without re-
lying on the ’537 patent, teaches adding one clock cycle to
account for propagation delay through its switch ASICs.
The Board pointed to Samsung’s argument that the Posted
CAS latency accounts for the time needed for data to trav-
erse a buffer, i.e., one clock cycle. And it cited Dr. Subra-
manian’s deposition testimony that Ellsberry’s note under
Figure 8B—“if cl_mode. = subtract; cl = cl – 1 to
DDRs”—would have been understood “as meaning that one
cycle has been added to account for propagation delay
through the data buffer” so that “one cycle should be sub-
tracted from the overall latency so that the system memory
controller encounters the same delay it would have in the
absence of the data buffer.” J.A. 46 (citing Subramanian
Dep. Tr. [J.A. 9000–356] at 182:16–22). The Board’s deter-
mination that Ellsberry teaches that Posted CAS_n adds
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NETLIST, INC. v. MICRON TECHNOLOGY, INC. 11
one clock cycle of latency to account for the buffers is sup-
ported by substantial evidence and comports with the
ground presented in the petition. Thus, we need not con-
sider whether the Board improperly relied on the ’537 pa-
tent.
II.
Netlist argues the Board erred by determining that
Ellsberry teaches “enabl[ing]” a “data path,” as recited by
limitations [1e] and [1f]. Appellant Br. 51–62. Those limi-
tations require that, during a write operation, the buffer’s
data path is enabled to drive data from the memory con-
troller to the DRAM devices. Netlist argues those limita-
tions require “connecting and disconnecting data paths”
within the buffer “to isolate DRAM devices.” Appellant
Br. 52. Netlist argues that Ellsberry operates differently.
Specifically, that Ellsberry’s switch ASIC “merely selects
a memory bank to receive data” by “enabling and disabling
memory banks—located outside the buffer—using com-
mands and signals directed to the memory banks them-
selves” instead of “connecting and disconnecting data
paths in the buffer to isolate DRAM devices.” Id. (empha-
ses in original). We disagree.
Netlist challenges the Board’s finding that paragraph 31 of
Ellsberry teaches this limitation. Specifically, the Board
relied on Ellsberry’s teaching that the switch ASIC, which
the Board mapped to the claimed buffer, “caus[es] Port B
to be activated and Port A to be disabled.” Appellant Br. 52
(citing J.A. 40 (quoting Ellsberry, ¶ 31)). Netlist argues
this paragraph does not teach enabling the claimed “data
path” because Ports A and B that it refers to are located
outside of the switch ASIC (i.e., the claimed buffer) instead
of within the switch ASIC, as required by the claims.
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12 NETLIST, INC. v. MICRON TECHNOLOGY, INC.
Netlist’s only support for this argument derives from
its annotated version of Ellsberry’s Figure 2 reproduced be-
low. What Netlist added to Figure 2 are the colored blue,
green, and yellow boxes. Netlist argues that the green
boxed area, which it drew outside of switch ASIC 206,
shows the location of Ports A and B. Therefore, Netlist ar-
gues, Ports A and B cannot be the same thing as the
claimed data paths, which must be within the yellow boxed
area. Netlist also argues that Ellsberry does not truly en-
able “ports,” but instead “refers to enabling and disabling
memory banks associated with the ports.” Appellant
Br. 53; see also id. at 59–62. Memory banks 216 and 218
in Figure 2 are outlined in blue, and also fall outside the
yellow boxed area.
Appellant Br. 53 (Ellsberry, Fig. 2 (annotated)).
The Board considered and rejected Netlist’s arguments
as “manifestly incorrect.” J.A. 71. The Board found that
“Ellsberry clearly shows Ports A and B as parts of the
switch ASICs, not the physical memory banks.” Id. As
shown above, Ports A and B are depicted as components
inside of Netlist’s own yellow boxed area. Moreover, Ells-
berry teaches that “memory bank switch 206 includes
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NETLIST, INC. v. MICRON TECHNOLOGY, INC. 13
Port A and Port B, coupled to data buses 234 & 236 respec-
tively.” Ellsberry, ¶ 30 (emphasis added). And the Board
further found that Ellsberry’s disclosure in paragraph 31
of disabling the ports means disabling data paths through
the switch ASIC, not disabling the memory banks them-
selves. J.A. 72. The Board’s finding aligns with Figure 2,
which shows that the memory banks 216 and 218 are sep-
arate components from Ports A and B. We therefore con-
clude that the Board’s reliance on Ellsberry’s paragraph 31
and associated Figure 2 constitutes substantial evidence
that Ellsberry teaches enabling ports within the claimed
buffer.
Netlist next challenges the Board’s finding that Ells-
berry’s teaching of enabling “ports” correlates to enabling
“data paths.” Netlist argues that data paths and ports are
separate components and can be controlled independently.
Netlist argues both that the Board’s finding that “enabling
a port means that the data path through the port is ena-
bled” is unsupported by substantial evidence and that its
failure to explain its reasoning violates the APA. Appellant
Br. 54–55 (citing J.A. 70). We disagree.
The Board gleaned from Figure 4 of Ellsberry that “the
only elements within the data processing unit 400 (part of
the switch ASIC) that the data paths pass through are bi-
directional drivers 402, 404.” J.A. 40. The Board further
found, relying on the testimony of Dr. Subramanian, that
“this would suggest to one of ordinary skill in the art that
the bidirectional drivers 402, 404 are what enables or dis-
ables data paths,” i.e., Ports A and B. J.A. 40–41; J.A. 40–
42 (citing Subramanian Decl. ¶¶ 159, 239–40). We con-
clude that the Board’s reasoning is sufficient under the
APA and is supported by substantial evidence.
Netlist further argues that Ellsberry is silent as to
whether its bidirectional drivers are even capable of ena-
bling data paths. As we discuss above, the Board credited
Dr. Subramanian’s testimony that Ellsberry’s bidirectional
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14 NETLIST, INC. v. MICRON TECHNOLOGY, INC.
drivers 402 and 404 enable data paths through the switch
ASIC. We conclude this is substantial evidence that Ells-
berry discloses enabling data paths.
Notably, Netlist ignores the Board’s alternative deter-
mination that Ellsberry in view of Halbert teaches enabling
data paths. The Board stated: “To the extent there is any
doubt as to what in Ellsberry’s memory bank switch per-
forms these functions, there is no dispute that Halbert’s bi-
directional buffers 122 and bidirectional data registers 126
and 128 have the capability to enable and disable data
paths because they are illustrated in Figure 4 as symbols
recognized in the art as tristate buffers.” J.A. 42. The
Board further included several pages of discussion explain-
ing the motivation to combine Halbert’s tristate buffers
with Ellsberry’s bidirectional drivers. See J.A. 19–26. The
Board’s alternative determination that Ellsberry and Hal-
bert teach enabling data paths is also supported by sub-
stantial evidence.
III.
Netlist raises several other issues with respect to the
APA. First, Netlist includes a two-sentence argument that
the Board violated the APA in addressing “most limitations
of claim 1 and the vast majority of the challenged claims”
by limiting its analysis to “summarizing Samsung’s ‘con-
tentions’ and finding that Netlist ‘does not dispute’ them.”
Appellant Br. 66–67 (citations omitted). But Netlist does
not specify which limitations it challenges or provide any
further substantive argument on this point. We therefore
find that Netlist failed to properly raise this argument for
our consideration. See Monsanto Co. v. Scruggs, 459 F.3d
1328, 1341 (Fed. Cir. 2006) (“In order for this court to reach
the merits of an issue on appeal, it must be adequately de-
veloped.”).
Netlist separately asserts that the Board’s failure to
address its arguments for dependent claims 7, 16, and 21
was in violation of its APA obligations. Specifically, Netlist
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NETLIST, INC. v. MICRON TECHNOLOGY, INC. 15
argues that remand is required for those claims because
the Board did not address its arguments that the prior art
fails to teach the claimed “module control signals.” We dis-
agree.
Dependent claim 7 recites that the module controller
must “use the module control signals to control timing of
the first time period in accordance with the latency param-
eter.” J.A. 118 at 20:40–43. Dependent claims 16 and 21
are substantially similar. Netlist argued in two brief par-
agraphs in its Patent Owner Response that Samsung failed
to demonstrate that the prior art meets these claims for
two reasons. First, Netlist argued that Samsung failed to
demonstrate that Ellsberry’s latency parameter was “in-
cluded as part of the signals sent on bank switch control
210.” J.A. 8554. Second, Netlist argued that “there is no
evidence that [Ellsberry’s] latency parameter are [sic] ever
used to control the operation of the switch ASICs.”
J.A. 8555.
The Board directly addressed both of Netlist’s argu-
ments for claims 7, 16, and 21 in its Final Written Decision.
The Board rejected Netlists arguments, finding instead
that Samsung had shown that Ellsberry teaches that “the
Posted CAS_n (AL) latency parameter is sent to and stored
in the switch ASICs using an EMRS command.” J.A. 59.
The Board also cited back to its prior discussion for limita-
tion [1e]. Id. (citing J.A. 43–50). For limitation [1e], the
Board pointed to and agreed with Samsung’s contention
that Ellsberry’s latency parameters are “set during initial-
ization” and then “every read and write operation is per-
formed in accordance with those latency parameters.”
J.A. 43–44 (internal quotations omitted).
The term “module control signals” first appears in
claim limitation [1c2]. The Board found Ellsberry met that
limitation by teaching control signals passed along bus 210
output from Control ASIC 204 in response to the input ad-
dress and control signals for a “write” operation. J.A. 34.
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16 NETLIST, INC. v. MICRON TECHNOLOGY, INC.
Putting the Board’s findings for limitations [1c2], [1e], and
claim 7 (and 16 and 21) together, the Board accepted that
Ellsberry’s control signals for a write operation are per-
formed in accordance with a latency parameter by virtue of
initialization programming. Claims 7, 16, and 21 do not
require that the “module control signals” include the la-
tency parameter, only that the signal controls “in accord-
ance with the latency parameter.” Thus, we conclude that
the Board’s determination that Ellsberry teaches depend-
ent claims 7, 16, and 21 is supported by substantial evi-
dence. And because we can discern the Board’s path to
reaching its conclusion for these claims, we conclude there
is no APA violation. Alacritech, 966 F.3d at 1370–71.
CONCLUSION
We have considered Netlist’s other arguments but do
not find them persuasive. For these reasons, we affirm.
AFFIRMED
COSTS
Costs against Netlist.