IN THE UNITED STATES DIST
RICT COURT
FOR THE EASTERN DISTRICT
OF TEXAS
MARSHALL DIVISION
POWER-ONE, INC., § §
Plaintiff §
§ CIVIL ACTION NO. 2:05¢v
463 VS. § §
ARTESYN TECHNOLOGIES, I
NC., § §
Defendant, § §
MEMORANDUM OPINION AND
ORDER
This claim construction opinion construe

s terms in U.S. Patent Nos. 6,936,999 (“t
he *999
patent”), 6,949,916 (“the ‘916 patent”),
7,000,125 (“the ‘125 patent), and 7,049
,798 (“the ‘798
patent). Plaintiff Power-One, Inc. (“
Power-One”) accuses Defendant Artes
yn (“Artesyn’’)
Technologies, Inc. of infringing various
claims contained in these patents. |
The Patents
Each of the patents-in-suit describes a syst
em and method for supplying power to com
ponents
and/or devices in an electronic system. Th
e system and method disclosed in the ‘999
patent involves
the use of one or more point-of-load (
“POL”) regulators that convert power fr
om one level to
another level. For example, a POL regula
tor may take, as an input, a voltage of 12 v
olts and provide
an output of 3 volts or 5 volts. The POL reg
ulator may be coupled to a power supply con
troller by
way of a synchronous or asynchronous d
ata bus. The claims in the ‘916 patent ar
e directed more
specifically to a serial data bus that facilitate
s communication between the various POL r
egulators
and a controller connected to the bus.
Claims 1-15 of the ‘125 patent address, am
ong other things, the transfer of programm
ing and

2Case 2:05-cv-00463-JDL Document155 ~~ Filed 03/22/07 Page 2 of 88 PagelD #:
monitoring information between
the POL regulators and the contro
ller via a serjal data bus. Claims
16 through 22 are method claims th
at call for transmitting programming
data to a plurality of POL
regulators over a serial data bus and
receiving performance monitoring d
ata from the POL regulators
over the serial data bus. The rem
aining claims 23-31 call for a cont
roller, as a part of the POL
regulator, that determines the op
erating parameters for the POL r
egulator responsive to the
programming information and gen
erates the monitoring information
responsive to operational
characteristics of the POL regulato
r. The claims of the ‘798 patent in
clude system and method
claims, The “power control system
” claims call for a power supply con
troller that provides initial
configuration data and receives fau
lt-monitoring data. A serial data bu
s communicates the initial
configuration data and the fault-mo
nitoring data. The system includes
at least one POL regulator
connected to the data bus. The metho
d claims generally address the storage
and transfer of initial
configuration data and fault-monito
ring data between a POL regulator a
nd a controller.
Applicable Law
“It is a ‘bedrock principle’ of patent la
w that ‘the claims of a patent define th
e invention to
which the patentee is entitled the righ
t to exclude.” Phillips v. AWH Corp.
, 415 F.3d 1303, 1312
(Fed. Cir. 2005) (en banc) (quoting I
nnova/Pure Water Inc. v. Safari Wa
ter Filtration Sys., Inc., 381
F.3d 1111, 1115 (Fed. Cir. 2004)). I
n claim construction, courts examine
the patent’s intrinsic
evidence to define the patented inven
tion’s scope. See id.; CR. Bard, Inc. v
. U.S. Surgical Corp.,
388 F.3d 858, 861 (Fed. Cir. 2004); Bell A
tl. Network Servs., Inc. v. Covad Commun
ications Group,
Lne., 262 F.3d 1258, 1267 (Fed. Cir. 2001
). This intrinsic evidence includes the cla
ims themselves,
_ the specification, and the prosecution histo
ry. See Phillips, 415 F.3d at 1314; C.R. Bard
, Inc., 388
F.3d at 861. Courts give claim terms the
ir ordinary and accustomed meaning as un
derstood by one

3of ordinary skill in the art at the time of the invention in the conte
xt of the entire patent. Phillips,
415 F.3d at 1312-13; Alloc, Inc. v. Int'l Trade Comm’n, 342 F.3d
1361, 1368 (Fed. Cir. 2003).
The claims themselves provide substantial guidance in determining
the meaning of particular
claim terms. Phillips, 415 F.3d at 1314. First, a term’s context in
the asserted claim can be very
instructive. Jd. Other asserted or unasserted claims can also aid in d
etermining the claim’s meaning
because claim terms are typically used consistently throughout the
patent. Id. Differences among
the claim terms can also assist in understanding a term’s mean
ing. Jd. For example, when a
dependent claim adds a limitation to an independent claim, it is presumed that
the independent claim
does not include the limitation. Jd. at 1314-15.
Claims “must be read in view of the specification, of which they are a part
.” Jd. (quoting
Markman v. Westview Instruments, Inc., 52 F.3d 967, 978 (Fed. Cir. 1995)
). “{TJhe specification
‘is always highly relevant to the claim construction analysis. Usually, it is dis
positive; it is the single
best guide to the meaning of a disputed term.” Jd. (quoting Vitron
ics Corp. y. Conceptronic, Inc.,
90 F.3d 1576, 1582 (Fed. Cir. 1996)); Teleflex, Inc. v. Ficosa N. Am, Corp.
, 299 F.3d 1313, 1325
(Fed. Cir. 2002). This is true because a patentee may define his own term
s, give a claim term a
different meaning than the term would otherwise possess, or disclaim or dis
avow the claim scope.
Phillips, 415 F.3d at 1316. In these situations, the inventor’s lexicography
governs. Jd. Also, the
specification may resolve ambiguous claim terms “where the ordinary and a
ccustomed meaning of
the words used in the claims lack sufficient clarity to permit the scope of the
claim to be ascertained
from the words alone.” Teleflex, Inc., 299 F.3d at 1325. But, “although the specificatio
n may aid
the court in interpreting the meaning of disputed claim language, particular embodim
ents and
examples appearing in the specification will not generally be read into the claims.”
Comark

4Communications, Inc. v. Harris Corp., 156 F.3d 1182, 1187
(Fed. Cir. 1998); see also Phillips, 415
F.3d at 1323. The prosecution history is another tool t
- o supply the proper context for claim
construction because a patent applicant may also define a
term in prosecuting the patent. Home
Diagnostics, Inc., v. Lifescan, Inc., 381 F.3d 1352, 1356 (
Fed. Cir. 2004) (“As in the case of the
specification, a patent applicant may define a term in prose
cuting a patent.”).
Although extrinsic evidence can be useful, it is “less significant th
an the intrinsic record in
determining ‘the legally operative meaning of claim langua
ge.” Phillips, 415 F.3d at 1317 (quoting
C.R. Bard, Inc., 388 F.3d at 862). Technical dictionaries and treati
ses may help a court understand
the underlying technology and the manner in which one skilled in t
he art might use claim terms, but
technical dictionaries and treatises may provide definitions that
are too broad or may not be
indicative of how the term is used in the patent. Jd. at 131
8. Similarly, expert testimony may aid
a court in understanding the underlying technology and dete
rmining the particular meaning ofaterm
in the pertinent field, but an expert’s conclusory, unsupport
ed assertions as to a term’s definition is
entirely unhelpful to a court. 7d. Generally, extrinsic evide
nce is “less reliable than the patent and
its prosecution history in determining how to read claim te
rms.” Jd.
‘The Terms
The terms at issue are:' “POL regulator,” “[output] voltage set poin
t data,” “output current
set point data,” “foutput voltage] slew rate data,” “initial con
figuration data,” “control . . .
information,” “control data,” “monitoring information,” “monitorin
g data,” “address set,” command
set,” “data set,” “communication of control and monitoring data the
rebetween,” “determine,” “fault
'At the hearing the parties agreed to define “programming .. . information” as “
data used to configure the one or more POL regulators in the power system” and “connecting” and “connected” a
s “joined together to allow communication.”

5Case 2:05-cv-00463-JDL Document155_ Filed 03/22/07 Page 5 of 88 PagelD #:
protection data,” “controller,” “power supply contr
oller,” “system controller,” “fault-monitoring
data,” “output data,” “performance monitoring information
,” “sequencing data,” “at least one of .
-.» ‘turn-on data,” “turn-off data,” “turn-on period
,” “turn-off period,” “turn-on delay period,”
“turn-off delay period,” and “synchronizing sign
al.”
1. “POL regulator”
The first term at issue is “POL regulator,” which is found in
every asserted claim of each of
the four patents-in-suit. Power-One argues that this term sh
ould be construed as a “de/de switching
voltage regulator designed to receive power from a volta
ge bus on a printed circuit board and
adapted to power a portion of the devices on the board and to
be placed near the one or more devices
being powered as part of a distributed board-level power sy
stem.” Artesyn contends that this term
is indefinite and cannot be properly construed.
Power-One asserts that “POL regulator” had an ordinary me
aning in the art at the time of the
invention and cites, among other things, Artesyn’s own l
iterature in support of this contention.
Artesyn argues that “POL regulator’ is not defined in the spe
cification and that the intrinsic evidence
provides no objective criteria to determine a proper definitio
n of the term. Further, Artesyn contends
that the extrinsic evidence cited by Power-One fails to conve
y an ordinary meaning. More
specifically, Artesyn contends that Power-One’s use of the term “ne
ar” in its proposed construction
is problematic and unhelpful because it fails to convey any objectiv
e standard by which one would
determine “nearness” in the context of “POL regulator.”
In Datamize v. Plumtree Software, LLC, 417 F.3d 1342 (Fed. Cir. 2
005), the Federal Circuit
set forth the following principles pertaining to indefin
iteness.

6According to the Supreme Court, “[t]he statuto
ry requirement [35 U.S.C. § 112, ¥ 2] of particularity and distinctness in claims is m
et only when [the claims] clearly distinguis
h what is claimed from what went before in the art an
d clearly circumscribe what is foreclosed fro
m future enterprise.” The definiteness requirement, howe
ver, does not compel absolute clarity. Only claim
s “not amenable to construction” or “insolubly am
biguous” are indefinite. Thus, the definiteness o
f claim terms depends on whether those terms can
be given any reasonable meaning. Furthermore , a difficult issue of claim construction does not i
pso facto result in a holding of indefiniteness, “
If the meaning of the claim is discernible, even
though the task may be formidable and the co
nclusion may be one over which reasonable persons will
disagree, we have held the claim sufficiently cle
ar to avoid invalidity on indefiniteness grounds.”
In this regard it is important to note that an issue
d patent is entitled to a statutory presumption o
f validity. “By finding claims indefinite only
if reasonable efforts at claim construction prove fu
tile, we accord respect to the statutory presumptio
n of validity and we protect the inventive con
tribution of patentees, even when the draftin
g of their patents has been less than ideal.” In this wa
y we also follow the requirement that clear an
d convincing evidence be shown to invalidate
a patent.
Id. at 1347 (citations omitted). Turning first to the s
pecification of the ‘999 patent, it is important
that the POL regulator is discussed in terms sho
wing its familiarity to those skilled in the art. Se
e
‘999 Patent, col. 1:12-14 (Point-of-load (“POL”
) regulators, which are also referred to as voltag
e
regulators or DC/DC converters, are commonly us
ed in conjunction with electronic circuits.”); 34-3
5
(“Traditionally, POL regulators operate in conjun
ction with at least one power supply controller.”’
);
Col. 2:12-14 (POL regulators are traditionally
adapted to receive. . .”). The specification of th
e
‘125 patent identifies problems facing complex
electronic systems and how POL regulators he
lp
alleviate these problems.
With the increasing complexity of electronic systems,
it is common for an electronic system to require power provided at several different dis
crete voltage and current levels. . . It is undesirab
le to deliver relatively high current at low voltages o
ver a relatively long distance through an electroni
c device for number of reasons. First, the relative
ly long physical run of low voltage, high curren
t lines consumes significant circuit board area and con
gests the routing of signal lines on the circuit board. Second, the impedance of the lines carryi
ng the high current tends to dissipate a lot of pow
er and complicate load regulation. Third, it is difficult
to tailor the voltage/current characteristics to accommodate changes in load requirements .
In order to satisfy these power requirements, it
is known to distribute an intermediate bus voltage throughout the electronic system, and include a
n individual point-of-load (“POL”) regulator, i.e., DC/DC converter, at the point of power consump
tion within the electronic system... Ideally,

7the POL regulator would be physically located adjacent to the corre
sponding electronic circuit so as to minimize the length of the low voltage, high current lines through the e
lectronic system. The intermediate bus voltage can be delivered to the multiple POL regul
ators using low current lines that minimize loss.
Col. 1: 13-15, 19-35, 42-47. Further, Figure 1 of the ‘125 patent shows a
prior art power system
where POLs 22, 24 and 26 are at the point of power consumption. The
‘125 specification also
describes the functions and uses of POLs: “Each circuit has an associated
point-of-load (“POL”)
regulator located closely thereby, such as POLs 22, 24, and 26. Each POL
regulator converts the
intermediate bus voltage to a low voltage, high current level demanded by the
electronic circuit, such
as 1.8 volts, 2.5 volts, and 3.3 volts provided by POLs 22, 24 and 26.” Col.
3:22-27. “By locating
the POLs 22, 24, and 26 close to their corresponding electronic circuits, the length o
f the low
voltage, high current lines on the printed circuit board are minimized.” Col. 3:32-35.
The ‘798
specification again describes POL regulators in terms of the problems th
e POL is designed to
address:
Similarly, some electronic devices include circuits that require low voltage (e.g. 1 v), hi
gh current (e.g., 100 A) power supplies. This is problematic in that it is impr
actical to deliver high current at low voltage levels over a relatively long distance and still meet desired r
egulation performances. A common solution is to use a high voltage, low current power supply a
nd design a POL regulator near the internal circuit. This allows low current to travel throughout t
he device, and provides a low voltage, high current power supply (i.e., using the POL regulator
) near the internal circuit.
See col. 1:25-35,
One problem with Artesyn’s approach is that it ignores the intrinsic record’s repeat
ed
acknowledgment of a known prior art POL device. The term “POL” is not a coined te
rm in the
patents-in-suit; rather, a “POL” was a known device in the art. Artesyn also ignores
numerous
statements in the intrinsic record concerning the function and purpose of a POL regul
ator. The

8specification of the ‘999 patent explains that “POL regulators”
are also referred to as “voltage
regulators” or “DC/DC converters.” It describes a prior art system t
hat utilized POL regulators. See
“999 patent, col. 1:12-14; col. 3:4-11; Figure 1. The specification goe
s on to say that “the
voltage/current requirements of electronic circuits typically differ from the
voltage that is readily
available or the current that can practically be delivered. For example, some
electronic devices only
include a single voltage input (e.g., 12v), but require different voltages for cir
cuits contained within
(e.g., 3v, Sv, Sv, etc.). A common solution is to design multiple POL regula
tors within the device
for converting the single input voltage into multiple voltage levels.” See ‘99
9 patent, col. 1:14-22.
The intrinsic record also explains that prior art POL regulators were placed
“near” the load to be
serviced by the POL so high currents would not be delivered over “relativ
ely long distance[s].”
Locating the POL regulator near the load to be serviced “allows low current t
- o travel throughout the
device, and provides a low voltage, high power supply (i.e., using the PO
L regulator) near the
internal circuit.” See ‘999 patent, col. 1:25-33. Therefore, the intrinsic recor
d makes clear that one
skilled in the art would know that a POL regulator should be placed in such
a way to accomplish
certain objectives.”
The Court sees nothing problematic in describing the POL regulator as being “
near” the load.
his is simply a way of saying that the POL regulator should be located s sie i, o as to alleviate Lic
*Dennis Roark (“Roark”), Power-One’s Chief Technical Officer, testified that to this point
in his deposition:
Q. And how close to the load does a regulator have to be a point-load-reg
ulator?
A. It has to be close enough to fulfill the need to manage transients and regulate the voltage in a tig
ht fashion such that there is no disturbance to the load as a result of changes in load, changes in line, changes in the environmental conditions which it is. So those requirements define the requirement for the nearness.
See Ex.G to Power-One’s Claim Construction Brief, p, 86, line 9-17.

9problems associated with complex power systems that
require “several different discrete voltage and
current levels.” See ‘125 patent, col. 1:15. The intrinsic
record shows that there is no “one size
fits all” approach to electronic systems and therefore, the te
rm “near” is as precise as this particular
subject matter permits. See, e.g., BJ Services, Co. v. Halli
burton Energy Services, Inc. 338 F.3d
1368, 1373 (Fed. Cir. 2003) (upholding jury’s verdict rejecti
ng indefiniteness defense because those
skilled in the art would understand a “C* value of about 0.
06"); Exxon Research Engineering Co.
¥. United States, 265 F.3d 1371, 1379-81 (Fed. Cir. 2001) (
finding “for a period sufficient” definite
because the limitation was expressed in terms that are re
asonably precise in light of the subject
matter); Orthokinetics, Ine. v. Safety Travel Chairs, Inc.,
806 F.2d 1565, 1576 (Fed. Cir. 1986)
(construing “so dimensioned” as definite and stating that
the term “is as accurate as the subject
matter permits, automobiles being of various sizes”); Seattle
Box Co., Inc. v. Industrial Crating and
Packing, Inc., 731 F.2d 818, 826 (Fed. Cir. 1984) (rejecting
claim that “substantially equal to” was
indefinite and noting that the fact “some claim language may
be imprecise . . . does not automatically
render a claim invalid’).
Artesyn relies on Halliburton Energy Services, Inc. v. MI, LLC, 4
56 F.Supp.2d 811 (E.D.
additional reasons why the Court rejects Artesysn’s indefiniteness argument. Firs tS eet t, Artesyn initially proposed a construction of “POL regulator” indicating that the meaning of this term
can be discerned, See Joint Claim Construction Statement. Not only did Artesyn propose a construction,
but it did so describing a POL as being “placed near the one or more devices being powered.” Second, Artesyn’s own literat
ure uses the term “point of load” and describes “POLs” as being near the load, See Ex. B to Power-One’s Reply Brief,
showing , at the very least, that the term has meaning to those skilled in the art. Third, when asked about “POLs,” Trey
Burns, Artesysn’s 30(b)(6) witness on claim construction, did not testify that he was unaware of or unable to understand
the term. Rather, Burns testified that, with a couple of caveats, Power-One’s proposed definition of a “POL” is “a reas
onable statement.” See Ex. I to Power-One’s Claim Construction Brief, p. 100, lines 3-11. Burns also discussed “poin
t-of-load converters” as being part of a “distributed power architecture where we move the regulation function closer t
- o the load” to “eliminate the effects of distribution resistances and distribution inductances.” Jd. at p. 26, li
ne 11 - p. 27, line 3. Finally, nothing in the prosecution history shows that the patent examiner had any trouble understan
ding the term. This evidence plainly suggests that POLs were well known devices whose locations and functio
ns relative to other components was understood by those of ordinary skill in the art.

10Tex. 2006) (Davis, J.) to support its indefinit
eness contention. In that case, however, the
patentees
relied upon the term “fragile gel” to distin
guish their invention from the prior art tend
ing to show
that the characteristics of “fragile gel” were nov
el and a basis for patentability. /d. at 816. Havin
g
presented “fragile gel” in that fashion, the C
ourt found that the patentees had failed to p
rovide an
objective standard for its definition. Jd. at 817.
Here, on the other hand, the specifications an
d
prosecution history treat POL regulators as a kn
own device in the art. See, ¢. g., “999 Patent, co
l.
1:12-14. And, while the specifications may
describe new features for POL regulators, th
e
specifications use the term “POL regulator” in its
“traditional” sense (see ‘999 patent, col. 1: 34-35 )
to refer to a device in a system for supplying
power to components in an electronic system .
Accordingly, the Court adopts Plaintiff’s constr
uction and construes “POL regulator” to mean
“a
de/de switching voltage regulator designed to re
ceive power from a voltage bus ona printed circu
it
board and adapted to power a portion of the devices
on the board and to be placed near the one or
more devices being powered as part of a distributed b
oard-level power system.”
2. “[output] voltage set point data,” “output curr
ent set point data,” and “foutput voltage] slew
rate data”
Artesyn contends that the claimed “data” actually spec
ifies somethin g, 1.e., the desired output
voltage level, the desired output current level, and the
desired slew rate respectively, while Power-
One contends that this “data” is simply something “
used to specify” these components. In other
words, Power-One contends that, for example, “voltag
e set point data” is the collection of data used
to specify the voltage set point.
i) “[output] voltage set point data”
Power-One proposes “data used to specify the comm
anded output voltage

11level of the POL regulator,” while Artesyn proposes “data provided to a POL regulator s
pecifying
the desired output voltage level for the POL regulator.” Beginning with the claim language, claims
2 and 26 of the ‘999 patent refer to “voltage set point data providing a desired output voltage of the
corresponding POL regulator.” Claim 3 of the ‘798 patent provides for the “power control system
of claim 1, wherein said initial configuration data includes at least output voltage set point data
corresponding to a desired voltage level of said output.” Thus, the claims appear to equate the
voltage set point data with a “desired output voltage.” The ‘798 specification calls for the following:
... the controller is adapted to provide initial-configuration data to each POL regulator. The initial configuration data, which may include output-voltage-set-point-data (i.e., a desired output voltage), output-current-set point data (i.e., the highest desired output current), low-voltage-limit data (i.e., the lowest desired output voltage), high-voltage-limit data (i.c., the highest desired output voltage), output-voltage-slew-rate data (i.e., the desired output slew rate) . . .
“798 patent, col. 2:10-17. The ‘999 specification further provides:
For example, a POL regulator might generate a one volt output five milliseconds after receiving activation data if it received voltage set-point data and sequencing data corresponding to one volt and five milliseconds, respectively. Alternatively, a POL regulator might generate a one volt output one millisecond after receiving activation data if it received voltage set point data, slew-rat
e data and turn-on data corresponding to two volts, one volt per millisecond and three milliseconds, respectively.
‘999 patent, col. 4: 33-41. These excerpts show that the POL regulator receives specified types or
categories of “data.” More specifically, the examples in the latter excerpt show that the “voltage-set-
point data” has a specified numerical value, i.e. one or two volts.
to cap or limit its output voltage can also be “voltage set point data.” The ‘798 specification,
however, is clear that such data is categorized as “high-voltage-limit data,” not “output-voltage-set-
point-data.” ‘798 patent, col. 2:10-17 Power-One offers an example of a situation where, a POL
Ii

12Case 2:05-cv-00463-JDL Document155 ~~ Filed 03/22/07 Page 12 of 88 PagelD #:
regulator receives voltage set point data of seven volts, but the POL has an upper voltage limit of
five volts. Thus, because the upper limit is five, the actual output voltage would be five. Power-One
contends that the upper voltage limit data should be considered as part of the data determining the
voltage set point. While the upper voltage limit data may affect the actual voltage level at the output,
that does not change the fact that the “output voltage set point data” specifies the “desired” output
voltage and that the intrinsic record shows that the voltage set point data is a distinct category of
data, rather than a collection of data from which a set poinits derived. See Applied Med. Res. Corp.
v. U.S. Surgical Corp., 448 F.3d 1324, 1333 n.3 (Fed. Cir. 2006) (“in the absence of any evidence
to the contrary, we must presume that the use of . . . different terms in the claims connotes different
meanings”). Accordingly, the Court adopts Artesyn’s proposed construction and construes “[output]
voltage set point data” as “data provided to a POL regulator specifying the desired output voltage
level for the POL regulator.”
li) “output current set point data”
Power-One proposes this term means “data used to specify an output current
level,” while Artesyn proposes this term means “data provided to a POL regulator specifying the
desired output current level for the POL regulator.” Much of the analysis above applies here. Claim
4 of the ‘798 patent provides for the “power control system of claim 1, wherein said initial
configuration data includes at least output current set point data corresponding to a desired maximum
current level of said output.” The ‘798 specification equates “output-current-set point data” with the
“highest desired output current.” See ‘798 patent, col. 2:13-14. Accordingly, the Court adopts
Artesyn’s proposed construction and construes “output current set point data” as “data provided to
a POL regulator specifying the desired output current level for the POL regulator.”

13iii) “output voltage] slew rate data”
Power-One proposes a construction of “data concerning the
rate of change of
the output of the device,” while Artesyn proposes “data provided t
- o a POL regulator specifying the
desired slew rate (i.e., rate of change of output voltage) for the PO
L regulator.” Claims 2 and 26 of
the ‘999 patent describe “output data” transmitted by the c
ontroller comprising:
at least one of turn-on data providing a command to turn-on the
corresponding POL regulator, voltage set-point data providing a desired output voltage of the corr
esponding POL regulator, slew-rate data providing a rate of change of output voltage of the cor
responding POL regulator, and sequencing data providing a delay period between either a turn-on
or turn-off command and actual generation of a corresponding output.
This claim language demonstrates that “slew-rate data” is distinct
from the other “data” referenced
in the claim and specifies a particular type of information. See
Allied, 448 F.3d at 1333 n3.
Dependent Claim 7 of the ‘798 patent specifies that the initial config
uration data includes “slew rate
data corresponding to a desired slew rate of said output” again s
howing the distinctness of this
category of data and what information it represents. The ‘798 specifi
cation also provides for distinct
categories of data, including “output-voltage-slew-rate data,”
and states what each category
represents. See “798 patent, col. 2:10-21. Similarly, the ‘999 spe
cification provides for the POL
receiving activation data including “voltage set point data, sl
ew-rate data and turm-on data
corresponding to two volts, one volt per millisecond, and three millis
econds, respectively.” See ‘999
patent, col. 4:33-41. The specifications show that the slew rate da
ta provided to the POL regulator
is distinct from other categories of data and specifies a desired sle
w rate.
Plaintiffargues that the output of the POL need not be specified by th
e received data, but only
in accordance with that data, citing, for example, column 5, lines 29
-38 of the ‘999 patent and claim
11 of the ‘999 patent. First, Plaintiff's position would blur the di
stinctions between the different

14categories of data provided to the POL, whereas
the patent specifications and claims clearly
distinguish between them. Moreover, the fact that the
POL produces an output “in accordance with”
the provided data does not mean that the “slew rate
data” need not specify a slew rate. Thus, the
Court construes “[output voltage] slew rate data” as “data
provided to a POL regulator specifying
the desired slew rate (i.c., rate of change of output vo
ltage) for the POL regulator.”
3. “initial configuration data”
Having considered the parties’ competing proposals on t
his term, the Court adopts the
following compromise construction: “programming inform
ation received by a POL regulator after
power-up but prior to the first generation of an output volta
ge.” See ‘798 patent, col. 2:10-23; col.
4:31 - col. 5:49; col. 6:43-54; Figure 6,
4. “control .. . information,” “control data ”
Having considered the parties’ proposals, the Court disagree
s with both proposals. Thus, the
Court construes these terms as “data specifying a desired operation
by a POL regulator.” See ‘125
patent, col.6:44-55.
5. “monitoring information,” “monitoring data”
The Court finds Power-One’s proposal to be correct and, therefor
e, construes this term as
“data concerning the status of the one or more POL regulators in
the power system.” See ‘12
patent, col.6:44-55
6. “address set,” “command set,” “data set”
The dispute with regard to these terms is whether a “set” can conta
in a single bit, as Power-
One proposes, or, as Artesyn suggests, whether it must c
ontain two or more bits. Power-One
concedes that the examples of sets given in the specification
are multi-bit sets. See, e.g.,‘916 patent,

15col. 4:19-25, However,t he ‘916 specification provides that “
communication cycles containing more
or less information and/or bits is within the spirit and scop
e of the present invention.” Id. at col.
4:30-33. Although the ‘916 specification provides examp
les of multi-bit sets, this does not mean
that a “set” referred to in the claims must contain more than one bit
. See, e. g., Varco, L.P. v. Pason
Systems USA, Corp., 436 F.3d 1368, 1373 (Fed. Cir. 2006) (“In
examining the specification for
proper context . . . this court will not at any time import limitation
s from the specification into the
claims.’”). Accordingly, the Court declines to narrow the definition
of set and construes these terms
as follows:
Address set: A set of one or more bits in a message specifying the
address of one or more
devices connected to a bus.
Command set: A set of one or more bits in a message specif
ying a given command
operation.
Data set: A set of one or more bits in a message reflecting data tha
t is read from or written
to a device.
7. “communication of control and monitoring data the
rebetween”
Power-One proposes this phrase refers to “sending control and mon
itoring data between the
POL regulator and the data bus,” while Artesyn proposes the phras
e refers to “sending control and
monitoring data between the POL regulators.” The dispute here
is whether the communication
recited by the claims is between a POL regulator and the serial
bus (Power-One’s position) or
between multiple POL regulators (Artesyn’s position).
Claim | of the ‘916 patent describes
a plurality of point-of-load regulators . . . and

16a bi-directional, serial data bus connected to each of said plu
rality of point-of-load regulators to permit communication of control and monitoring data the
rebetween, each one of said plurality of point-of-load regulators being adapted to initiate a c
ommunication cycle by providing a synchronizing signal onto said serial data bus followed by a
multi-bit data message that includes at least one of an address set, a command set, and a dat
a set.
The claim language calling for communication “therebetw
een” seems to refer to communication
between the immediately preceding items, i.e. “said
plurality of point-of-load regulators.”
Unasserted Claim 14 of the ‘916 patent provides for a “point-of lo
ad regulator having a serial data
interface adapted to communicate control and monitoring data
with other like point-of load
regulators via a serial data bus. ..” Clearly, claim 14 contemplate
s communication of control and
monitoring data between point-of-load regulators. See Phillips, 41
5 F.3d at 1314 (“Other claims of
the patent, both asserted and unasserted, can also be valuable sou
rces of enlightenment as to the
meaning of a claim term . . . Because claim terms are normally u
sed consistently throughout the
patent, the usage of a term in one claim can often illuminate the m
eaning of the same term in other
claims.”).
Further, the larger context of claim 1 also supports communication b
etween POL regulators.
Claim 1 provides for POL regulators “being adapted to initiate a co
mmunication cycle by initiating
a synchronization signal onto said serial data bus followed by a mu
lti-bit data message that includes
at least one of an address set, a command set and a data set.” The ad
dress set can be used to identify
the POL regulator that is providing the information or the POL that
is being written to or read, while
the command set can identify what the POL regulator is providing
. See ‘916 patent, col. 4:43-48,
Thus, the communication at issue is between the devices connect
ed to the serial bus, rather than
between a device and the serial bus to which it is connected
. While the devices certainly
communicate by way of the serial bus, they communicate with, or
between, themselves.

17Power-One cites to the statement in the ‘916 specification that
the “present invention
provides a system and method for using a serial bus to passively
or actively communicate with a
point-of-load regulator.” Col. 2:55-57. Power-One also cites to
Figures 2 and 3 which show,
according to Power-One, control and monitoring information flow
ing between the POLs and the
controller across the data bus. However, simply because a data bus is us
ed to communicate or
permits communication does not mean that communication is between the
bus and the POLs or a
controller. The specification of the ‘916 patent regularly speaks of commun
ication “via,” “by way
of,” or “over” the serial bus, rather than “between”” the serial bus and a d
evice. See, e.g., ‘916
patent, col. 3:42-44; col. 3:53-61; col. 3:66-67; col. 4:8-15. While a person
can communicate over
a telephone line, one does not typically refer to communication occurring b
etween a person and a
telephone line. Indeed, Figure 2 is discussed in terms of a controller commun
icating with a plurality
of POL regulators (i.e., 220, 230, 230, and 250) via a serial bus 200. Col. 3:42
-44 (emphasis added).
Likewise, Figure 4 is described as a “method of communicating over a sing
le-wire serial bus” and
Figure 5 shows “how information can be transmitted over a serial bus.” Col.
3:66-67; Col. 4:29-31.
Finally, the specification discusses how POL regulators determine priority of communicat
ion where
multiple POL regulators initiate a communication cycle simultaneously. Co
l, 4, line 59-63 (“Thus,
a POL regulator can determine, by reading the start sequence 510 and
address set 520 of a
communication cycle 50 as it is being sent, whether another POL regulator is also attempti
ng to send
a communication cycle 50 at the same time. If multiple devices .. .”). Thus, the bus is th
e vehicle
that allows communication between multiple POL regulators or other devices. For the foregoing
reasons, the Court construes this term as “sending control and monitoring data between
the POL
regulators.”

18Case 2:05-cv-00463-JDL Document155 ~~ Filed 03/22/07 Page 18 of 88 PagelD #:
8. “controller,” “power supply controller,” “syst
em controller’
As to “controller,”t he parties have agreed to Power-One’s proposal o
f “circuitry that controls
the operation of one or more devices.” As to the other t
erms, Power-One argues for the same
construction, while Artesyn proposes “part of a distributed power c
ontrol system that activates and
at least partially programs and monitors a regulator and all
ows the output of the POL regulator to
be transmitted to an external load circuit.” The Court notes that
a “power supply controller” is
discussed in the ‘999 patent as follows:
Traditionally, POL regulators operate in conjunction with at l
east one power supply controller. The controller (1) activates and partially programs the POL regu
lator by providing data directly to the POL regulator, (2) monitors the output of the PO
L regulator by measuring data external to the POL regulator, and (3) allows the output of the POL regulator
to be transmitted to an external load circuit by controlling an external switch.
Col. 1:34-42; see also ‘798 patent, col. 1:37-42. The Court finds that t
his language supports
Artesyn’s proposal and therefore, construes “power supply controller” and
“system controller” as
“part of a distributed power control system that activates and at least
partially programs and monitors
a regulator and allows the output of the POL regulator to be transm
itted to an external load circuit.”
9, “determine”
Power-One seeks no construction of this term, while Artesyn pro
poses that the term be
construed as “calculate.” The Court agrees with Power-One that
the term needs no construction.
The parties have agreed that the term “calculate” as used in the pa
tents means “ascertain based on
calculations.” Artesyn fails to adequately explain why the term “d
etermine” should have the same
definition as “calculate.” Further, the passages from the ‘999 patent Artesyn
cites, col. 2:28-34 and
col. 4:23-33, do not support narrowing the meaning of “determin
e.” See Lieble-Flarsheim Co. v.
Medrad, Inc., 358 F.3d 898, 906 (Fed. Cir. 2004) (noting that co
urts will not impose additional

19limitations from the specification onto the claims). Bo
th passages actually use the term “calculate”
showing that “calculate” means something different t
han “determine.”
10. “fault protection data” |
Power-One suggests this term should be construed to mean
“data concerning identification
of or response to faults,” while Artesyn proposes a const
ruction of “a form of monitoring data
provided by a POL regulator in which each datum is a valu
e reflecting a characteristic of the POL
regulator sending the message, such as the temperature, o
utput voltage, or output current of the
sending POL regulator.” To support its proposal, Artesy
n relies on column 2, lines 20-28 and
column 5, lines 20-23 of the ‘916 patent. However, to con
strue these terms as Artesyn advocates
would suggest that the term is limited to examples provided in t
he specification. Indeed, these
passages use “e.g.” showing that types of fault protection data dis
cussed are exemplary only. See
Varco, 436 F.3d at 1375. Artesyn’s proposal also include
s limitations, i.e., “form of monitoring
data” and “each datum is a value reflecting a characte
ristic of the POL regulator,” that are
unnecessarily vague and find no support in the cited pass
ages. Thus, the Court construes “fault
protection data” as “data concerning identification of or response
to faults.”
ll. “fault monitoring data”
Power-One proposes this term be construed as “data concerning t
he status of one or more
POL regulators in a distributed power system or surroundi
ng conditions,” while Artesyn suggests
“information about a possible fault of the POL regulator or
its output obtained through systematic
measurements using an external device or sensor circuit.” Ag
ain, the Court finds Artesyn’s proposal
too limiting and not justified in view of the specification. T
he ‘798 specification is clear that “fault
monitoring data” is not limited to data “about a possible faul
t” as Artesyn proposes. See ‘798 patent,

20Case 2:05-cv-00463-JDL Document155 ~~ Filed 03/22/07 Page 20 of 88 PagelD #:
col. 5:40-46. Further, there is nothing in the ‘798 specification requiring that data be
obtained
through “systematic measurements.” Concerning Power-One’s proposal, the Court find
s that the
phrase “surrounding conditions” is not supported by the specification. The Court constru
es “fault-
monitoring data” as “data concerning the status or operating condition of one or more POL regulators
used to determine if there is a fault.”
12. “output data”
Power-One proposes “data reflecting information affecting the provision of power to the
load,” while Artesyn proposes “real-time generated data reflecting information affecting the
provision of power to a load.” The dispute with respect to this term is whether the ‘999 patent’s
prosecution history shows that the data must be “real-time generated.” A prosecution history
disclaimer must be clear and unambiguous. See Sorensen v. International Trade Com’n, 427 F.3d
1375, 1378 (Fed. Cir. 2005) (“in order to disavow claim scope, a patent applicant must clearly and
unambiguously express surrender of subject matter during prosecution.”). Artesyn contends that
during prosecution of the application that originally issued as the ‘999 patent, the cla
ims were
rejected over a prior art reference that disclosed a system including a “power-supply regu
lator 211”
and a “look-up table 213" described by the patent examiner as “storage device 213.” See Office
Action, Mailed Jun. 3, 2004, for U.S. Patent Application No. 10/388,831. Artesyn argues that the
applicant distinguished the claimed subject matter from the prior art on grounds that the “output
data” in the “storage device” recited in the claim must be “real-time” data (as opposed to the type
of data stored in the prior art device):
Since it is clear that the power supply controller 211 does not transmit output data, as discussed above, it further follows that there is no “storage device adapted to store said output data.” The look-up table 213 cannot perform this function because, inter alia, it is not in comm
unication

21with any device providing a “power supply cont
roller.” Further, a look up table generally contain
s an index of predetermined data and is not us
ed to store real-time generated output data.
Id. Power-One contends that nothing in this
passage concerning look-up tables can be fair
ly
interpreted as a disclaimer of all but “real-time” outpu
t data in all the claims. The Court agrees. In
the cited passage from the prosecution history, the a
pplicant distinguished the prior art reference
because it “does not transmit output data” and be
cause it does not include a “storage device” that
is
in communication with any device providing a power
supply controller. While the applicant further
argued that a “look up table generally” is not used to
store “real-time generated output data,” the
Court cannot conclude that this passage constitutes a
clear and unambiguous disclaimer of all but
“real-time generated data.” Thus, the Court construes
“output data” as “data reflecting information
affecting the provision of power to the lo
ad.”
13. “performance monitoring informa
tion”
Power-One proposes no construction or, in the altern
ative, “information concerning one or
more performance characteristics of the device.” Arte
syn proposes “information obtained through
systematic measurements that tracks one or more perf
ormance characteristics of a device.” Artesyn
advocates a dictionary definition of “monitoring
” to arrive at its proposal of “systematic
measurements.” However, it is unclear what “system
atic measurements” means and, therefore, the
phrase would not appear to provide any additional cla
rity to the term at issue. Moreover, the patent
specification does not support “systematic measurem
ents” as being a requirement of “performance
monitoring information.” The Court finds that Power-One’s
proposal would assist the jury and, thus,
construes this term as “information concerning one or m
ore performance characteristics of the
device.”
al

22Case 2:05-cv-00463-JDL Document155 ~~ Filed 03/22/07 Page 22 of 88 PagelD #:
14. “sequencing data”
Power-One advocates two proposals. The first is “data used to control the order of operation
of multiple POL regulators.” The Court finds this proposal to be incorrect because this term is used
in relation to a single POL regulator. See, e.g., ‘999 patent, claims 2, 15, and 17. Power One’s
second proposed construction is “data used to determine a delay period between some event and the
generation or termination of an output.” Artesyn proposes “data specifying the duration of a delay
period between the POL’s receipt of a turn-on or turn-off command and generation or termination
of a desired output.”
This term is found in several claims of the ‘999 patent. For example, claim 2 recites
“sequencing data providing a delay period between either a turn-on or turn-off command and actual
generation of a corresponding output.” Claim 10 calls for “sequencing data” and recites “using said
sequencing data to determine when said output should be generated.” Claim 15 also calls for
“sequencing data” and recites “using said sequencing data and said enable data to determine when
said output should be generated.” Thus, from the claims, “sequencing data” is information related
to the timing of the generation of an output. The specification of the ‘999 patent states that “the
delay period can either be provided by the controller 210 (e.g., sequencing data) or calculated using
data that has been provided by the controller 210 (e.g., turn-on data).” From the specification, the
“sequencing data” specifies a delay period between some event (e.g., activation) and the generation
of an output. ‘999 patent, col. 4:23-32. In this example, the event from which the generation of an
output is delayed is the activation of the POL. However, the Court sees no basis in the claims or the
patent specification for limiting the event or events from which the delay can be measured.
Accordingly, the Court will construe “sequencing data” to mean “data specifying a delay

23period between some event and the generation or termination of an output.”
15. “at least one of . . .” followed by an enumerated list
For illustration sake, the Court will consider this phrase as “at least one of X, Y, and Z.”
Essentially, Artesyn contends that this phrase means “at least one X, at least one Y, and at least one
Z.” Power-One, on the other hand, argues that the listing of “X, Y, and Z” composes a group (i.e.,
the group includes X, Y, and Z) from at least one is selected. The Court finds Artesyn’s position to
be inconsistent with the specification. For example, Artesyn contends that in the sole example in
the ‘999 patent specification where a control unit in a POL regulator calculates the period of time
recited in the claim, the calculation is made using data from all three of the relevant data categories
(turn-on data, slew rate data, voltage set-point data) in claims 3, 4, 27 and 30:
Alternatively, a POL regulator may generate a one volt output one millisecond after receiving
activation data ifi t received voltage set-point data, slew rate data and turn-on data corresponding to
two volts, one volt per millisecond and three milliseconds respectively.
See Col. 4:37-41. However,t he passage immediately preceding describes a scenario where a turn-on
period is determined without turn-on data or slew rate data.
For example, a POL regulator might generate a one volt output for five milliseconds after
receiving activation data if it received voltage set-point data and sequencing data corresponding to
one volt andfi ve milliseconds, respectively.
ee Col 4:33-36. aA Annoo ttehinser embodiment in the specification only mentions voltage set-point data and
enable data when it speaks of output data, ‘999 patent, col. 3:63-65, while another includes output
timing data as output data, col. 4:16-19. Further, claim 2 of the ‘999 patent describes “a control unit
adapted to determine at least one timing parameter of said output in accordance with said output data
wherein said output data further comprises at least one of turn-on data . . . and turn-off data.”
Artesyn’s proposal would require the output data to include both “turn-on” data and “turn-off” data

24Case 2:05-cv-00463-JDL Document155 ~~ Filed 03/22/07 Page 24 of 88 PagelD #:
even though the control unit need only determine “at least one timing parameter.” Finally,
Artesyn’s
proposed construction would require “slew rate data” and “sequencing data,” even though the
specification makes clear that these types of data are optional:
the POL control unit receives output timing data, which may include slew-rate data, sequencing data, termination data, etc.
see “999 patent, col. 7:1-3.
Artesyn cites Superguide Corp. v. Direct TV Enterprises, Inc., 358 F.3d 870, 886-87 (Fed.
Cir. 2004), arguing that Superguide requires an “at least one of X, Y, and Z” term be construed “at
least one X, at least one Y, and at least one Z.” However, even if the Court were to agree that
Superguide holds that the ordinary meaning of “at least one” is as Artesyn suggests, nothing in
Superguide dictates that this term must be construed in this manner no matter what the specification
teaches. In Superguide, the specification taught that the user must choose a value for each
designated category. Jd. at 887. Here, as noted above, the specification teaches embodiments that
do not require each category of the enumerated set. Thus, the Court holds that although one of each
of the enumerated data categories may be used, the “at least one” language only requires that one of
the categories be selected. See Orion IP, LLC v. Staples, Inc., 406 F.Supp.2d 717, 726 (E.D. Tex
2005).
16. “turn-on data,” “turn-off data,” “turn-on period,” “turn-off period,” “turn-on delay period,”
“turn-off delay period”
As to the terms “turn-on period,” “turn-off period,” “turn-on delay period,” “turn-off delay
period,” the Court sees little substantive difference between the parties’ constructions and, therefore,
adopts Power-One’s proposals as the more helpful to the jury. The specification of the ‘999 patent

25Case 2:05-cv-00463-JDL Document155 ~~ Filed 03/22/07 Page 25 of 88 PagelD #:
states that a “delay period” is a “period of time to wait,” which would comp
ort with the plain and
ordinary meaning of the term. ‘999 patent, col. 2:31-32. Both parties include this aspe
ct in their
proposed constructions. Thus, the Court construes these terms as “the time to wait from
an event
before turning on an output,” “the time to wait from an event before turning off an output,”
“the time
to wait from an event before turning on an output,” and “the time to wait from an eve
nt before
turning off an output,” respectively.
As to the terms “turn-on data” and “turn-off data,” the ‘999 patent specification discusses
turn-on and turn-off data at col. 2:14-24. In particular, the specification states “[e]xamples
of output
timing parameters include when to generate the output (e.g., sequencing data, turn-on data), when
to stop generating the output (e. g., termination data, turn-off data), the slew rate of the output (e.g.,
slew rate data), etc.” At col. 4:33-52, the ‘999 patent specification recites and discusses exemplary
values of “turn-on data” and other data. In these cases, the “turn-on data” specifies when the output
is to be generated. The Court finds that Power One’s proposed construction is too broad, while
Artesyn’s proposed construction is unnecessarily limiting. Accordingly, the Court will construe
“turn-on data” to mean “data indicating when to generate an output,” and the Court will construe
“turn-off data” to mean “data indicating when to stop generating an output.”
17. “synchronizing signal”
Power-One proposes “a signal that identifies the start of a communication cycle,” while
Artesyn proposes “a clock signal that synchronizes the timing of multiple devices with one another
for purposes of communication.” Claim 1 of the ‘916 patent requires a POL regulator be adapted
“to initiate a communication cycle by providing a synchronizing signal onto a serial data bus
followed by a multi-bit data message that includes at least one of an address set, a command set, and

26Case 2:05-cv-00463-JDL Document155 ~~ Filed 03/22/07 Page 26 of 88 PagelD #:
a data set.” Claim 5, which depends from claim 1, recites that “said synchronizing signal further
comprises a clock pulse that pulls said serial data bus to a low state.” Thus, from the broad claims
in the ‘916 patent, a “synchronizing signal” “initiate[s] a communication cycle” and is “followed by
a multi-bit data message” that includes an address set, a command set and/or a data set.
The “synchronizing signal” of the claims corresponds to the “start sequence” described in
the patent specification, as the start sequence in the specification is at the beginning of a
communication cycle and is followed by the sets recited in the claims. ‘916 patent, col. 4:18-25, Fig.
5.
Artesyn uses the term “clock signal” in its proposal. The ‘916 patent specification describes
a “clock signal” that synchronizes the various communicating devices and creates a series of clock
cycles, each one including a data bit. ‘916 patent, col. 4:4-7. This “clock signal” is not described
as initiating a communication cycle and it is not followed by a multi-bit message. Artesyn’s
proposed construction for the “synchronizing signal” of the claims appear to be more descriptive of
the “clock signal” described in the specification that is used to transmit the data bits that comprise
the address set, the command set and the data set. As the claims recite, these aspects follow the
“synchronizing signal.”
Power One’s proposed construction accurately describes the start sequence described in the
specification, which performs the function of the “synchronizing signal” in the claims. Accordingly,
the Court construes this term as “a signal that identifies the start of a communication cycle.”

27Case 2:05-cv-00463-JDL Document155_ Filed 03/22/07 Page 27 of 88 PagelD #:
Conclusion
For the foregoing reasons, the Court interprets the claim language in this case in the manner
set forth above. For ease of reference, the Court’s claim interpretations are set forth in a table
attached to this opinion.
So ORDERED and SIGNED this 22nd day of March, 2007.
febP Fre UNITED STATES MAGISTRATE JUDGE28 TON t o oa : u u a gena oua reg sa (" a sua t4 c C

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30TON: t ge tu pse co p Po seco p c w ner rn-o erque rresp rov Out t-prresp rov om he comsarea sua traa co2
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34B Jo TON t p r s a a tu i o4 : o at a rn s
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36TON: t pd u araete s ongen POst conre rega le9
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37f 88 Pagel
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g g nger r t . B : le R u P a . ou fust s O s
tp rte in s t u hep g L to o t r d ra ne 4 a ge A 0- t sa o 215( a s i n 927d o sa r d e ,00) f eqid s eg Om 00 uen aa ula Out ufpe 2: sd cin tid to put co ut-th
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t -tim tp :
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‘9 ‘9 99 9 para t 9 met imc er ind
g P at
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d nt at , a
da . ta .
cl . ai cl m aire mgul
. ato
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[T PDa SimOaOu[Ge einLt tSner boph egi ac pueateobDsc arowedeavodAP ha t e/genu tetwehe d-leerearvinltes oint
n eraperatio ved cedagign -of-ge tingutenen a l s eed load : , ta d ‘9 r n e/ 9 eguus ‘9 a de 9 lated 9 t da or 9 s h pt
p pec e ed aram t ifyi et im cng
Perin in* oo b a tgP si ann u SW te o at omn se stitc nt t sen e ohi , h t e t ng
dee , o pp h te r owa e ore rm errto tnace occurine o Dte r o ive s.ut da ermi b pu t ve anat moapo . c t a nion oorrw . la clm t .a e d erpnt . im ai f ri
sya ed vr
ste oegu de m. pltalat la di owgeor pro aay stridea er 1 wvid nnd butvicna
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of b omula in r to
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38fom
TON; t ra sled s re tim wh pa de a o ge d co re r a l te w-at a ce er ram term n ne ne a nt ce egu ea 1
rata id ivin in ein ete in d rat ta rol ivi la t s 1 e g g r e ing ler; ng tor t .
le P as .R o f s us PO t . f urt te in L in o he p g ne
s r d A ai at a o 4 d a s ne 02 -5 o ai r P m 1927. (d da sle d eg O O outp eth 00002 ) t f w-r a sa ula L utpu c ut- od : a ate t id tor st t-tim om timi
ou c u fu o ; a or ing pri p ng tp om s rth n in sing oint ut pr in er s f le g : -of-. ises g te a load t p s st s Cla o ai outp o tor im d ut-t u ag imin tp e
det g ut o erm s o o ine ai n s f
d com f ou e a d p tp id d a rise re ut; ete Con ta s cei rmi 11 struc vin nin 3212 tion u out g tim de g 6v1 si put- i o vic ou
n timi ng f e tput d par g ng ; -tim a ame
a ing ta ter n sa d id ("P th OL es f ") ai ro d o d a m s utp at t le ut a w - l a
ea C s t h t a o ar t f t o
[ATim [AOu [AG Gener [S {Ou [ Poi GR GRtp Rate/g e tput S nt-of EEin EEu EE enera e -volt e -load Dg Dt D] ting age} e ] }
‘9 ‘9 99 9 9 par ti am m eter in g Pa Pa
ten te t, nt
,
. da . ta cl c .
ai st lai re m ew- m gu rate lat or
an 2 1
- o ] ] ut pu t
da ta
-1 1 -
[AGTim [AOu [A Gene [S [Ou [ Po Ri GRt GR rate/g e tpu S int-o EEDng EEpu EE ener e t-vol e f-loa ] Dt D] ating tage e d
] ]
‘9 ‘9 99 9 9 par tim ame i ter ng
Pa Pa
ten te t, nt
,
. da . t . a c
la cla im slew im reg -ra ula te tor
an 2 1
- o ] ] ut pu t
da ta
[S Tim [SOu [S Gene th ra sp Da [O le pone de a vo d A Po e etp e rate/g e te eci t utpu v wear vi n lt esi int-o e in eu e ener fyi a t-vol el re ces d ag gn f-lo g t ating ng tage d e ed ad
] de P /d O o ad e “9 9 ‘9 L f p p th ap 9 9 9 rov ow e te 9 9 9 ide er d
ch d p t an o b ara im r ge o n u sw met i eg ane s t itc P er Png P ula s o hi at at at to t ng en en en r. h t t, t, t, e s p h o r
ys aro e t n ece
tem. t r o ive
- o de t b a . d sire o m oa po ata f d oore rd wer p . c c c ou a f rin . lai lai lai tp s te m m m ut P lew a d vo reg O -rat lt ula
L e po ag to dis we e r
tribde an r a s utevic d a n le d es 1 9 1 w p
vo re or c ] ] ] lta gu tio irc ‘9 ou ge lato to n ui 99 tp ) r t r u fr eg
t ra b om ula
te tor da b e P ta ei ate ng p nt ( la o bo
i. bo ce a a fe ar d f rd o., d-r th
e

39TO t ou pe o d s rec tim wh par de us o ge P st co re re a le 1 N: tp ri ff at ai ei er am term in ne ner O or ntr ce gu t a
ut od a d vin in ein ete ine g ati L in oll ivin lat s 2 g g r ng g er; g or t ,
le d as P. at P t R a fu st O . rth e L sto on
er p sa ra e i co d id ge A s rres a s o 4 pon t ta s ai ne -5 t ding o o a d m 0219 (d o tu id reg o out e 27.00 ) f rn a o ula utpu put- tho 002: cal -off utp to a t-ti com tim d
b cul u fu o t ut-ti r; n min pr p ing e ate co s rt min ou g isin oin
mp in he s f le g d tput g: t-of rise g r t a e -tim -loa
s ep s st ou vic ing d Cl tur a tp e; aim ne id ut d
- o o sa o f i d c f o ne d a om ut a
ta pri r pu n det C a ses ece t; d o erm onstr o t ivi inin 1132 uctio ff o t u ou ng ti f g 126v n . urn s tpu m 1 -o in t-tim in s par
w ff g ing a g a da am h n id t ete en d d a r a da ("
ta t PO a L" s a f ) ai t ro s d o m a d ut le id e pu t a in la t- o st y a tu a t C rn a o ha -rt f
[A Ti [A Ou [A Gene [A ou fr I N Tu [S Tu [ Poi GR m GR tp GR rate/g GR tp om n o rn- e rn- S nt-of EE in EE u EE ener EE ut off e off e -load D g D t D] ating D] . e ] ] th
e cons truct
a ion ‘9 “9 n a 99 9 ltern 9 ative
par ti ev : ame m en ter in t d d g e Pa a Pa
la te ta te y nt nt
, ,
be for . da e p . ta nece er ssar io c c .
T y. d la la r h im im eg e ula
tor tur
a nin t n g im e 2
1
- o ] ] ut pu t t
o
o ff w ai
t
an -
1 2 .
[A Tim [A Ou [AG Gener [AG Cal ac seq reg somDa Tur [S Tur [ Poi GR i GR tp RE ate/g R cula tiv uen ul et n-o e n-o Se nt-o EE ng EE u ED enera EED te e cin ato a ff e ff e f-loa D D t ] ting } g r d ] ]
sp ‘9 9
- o eveec 9 9 u nifyi 9 9 tp t ng p t ut. ara im met in s er g ho d Pda P
ul el at t a
d d, a en a ten a a y t, t, t t a, w
hic . d h a a pe . ta ce ri as in t od c c .
e im lai la r e m im egu t lat h t or e h e
an p
to a er
bs io 2 1
enc POd
- o p e ] ] u ro L tp vi ut de
af te r
o f
an
[S Tim [S Ou [S Gene T Ca tu T Tu gen Da Tu le po ne de a vo de A Po e i e tp e rate/ o lcul rn h rn- er t rn- v we ar vi n lt si int-o e ng e u e gener ate in e off atin a off el re ces d ag gn f-loa t ating g g d e ed d
de
asc /d erta t ad e “ ‘9 “ in im i p th ap 99 9 99 e ndi o te 9 9 9 cat we e d ing r p o o b ara tim ff o n u s me i t an s wit ter ng o d d se to ch Pa Pa Pa e a ing te te te a la a ta t nt nt nt n w y n p h , , , b a sy a e t on rec
a i ste ro o eiv se t o m t r e d ou ut .
tpu pu bo p a . d t. p t. w mo ar ow . a f er he ore d er p c c ta c ro io n f ri . la la la m d n t im im im ed v re
- o a olt gu n d pow age lator
istride a er c a to butevic n a an alculatio n d es d 1 9 1 ns. po
st r t ci ] ] ] o ev o t ion rc
u en p o uit tp t f re ut ro gu
b m lato e r be in p be g la o b for bo ce oa a e ar d f rd
d-
th e

40Page 40 of 88 PagelD #:
i
TON t o pd for tw p d u o g P : ut era urt ece imhe araete s n en Osto corec rea le1
pu iota hefiv inre merm in e era Lr ntrei gut a3 t d r ing gin terine g tin in ollevin lat st
u g g r;g or . s le P in as .R t g P t . o O s o s L to n
a rag e sh cca co d id e A ou orrelcu m a sa o 4- ld spolat pris s tas i ne 02 5 ndine es a a d 1927.0 (d g idtu id reg oume 0002 ) rn a o ul outp tputh : -on utp ato ut-t com t-timod
ot ut-ti r; imin pr ing
min a ou g isinpoin
- o furs fle g n dtput g:t-of utpu thte a e-tim -loa C b t-ti erp sst vicing d la e min a o e; im g id u tp
ge a ut ner u o o ated s d on f . tu in a f oue
rn- g ta c tp a d on omre ut n ete Con prce ; d rm 11 struc iseivin ini 3212 tion t sg ti ng 6v1 o m o
s a in f d par w ai n g d a am h d d a ta eter en ta sa id da ("P d da ta O e tu tsa L" la rn ai fr ) y -on d t o
ou o a m sa tp t i id ut- n
st le a C e as a t h p t a o ar t f
{ATim[AOu [A Gene [A Ca oufr I N Tu [ Tu [ P GRiGRtp GR rate/g GR lcul tpo n rn- S rn S oint EEngEEu EE ener EE ate utm o on e -on e -of-lo D Dt D] ating D] . e e ad } ] th
e cons truct
a ion ‘9 “ n a 9 99 ltern 9 9 ativ par ti e e: am m ve ete in nt d d r g e P a
la at ta Pa
y en ten
t, t,
be for . da e p t ne er . a cess io
T ary d cl c . h , ai la r e m im egu la
tor tu
a rn t n ing im e 2
1
- o ] ] ut pu t t
o
on w
ai
a t n
~1 3-
[ATim[AOu [A Gene [A Ca loev re A Tu [ T P GR GRtp GR rate/ GR lcu aen gu rn S urn [S oint EEinEu EE gene EE late d.t lat -on e -o e -of-l Dg EDt D] rating D] or p e n e oad ] ] e
rio d
b “9 9 ef 99 9 ore 9 p ara tim met i o er ng wa d d
it f el Pa at P
s ay te a ate t nt nt t im , , ran e sfer ring . d af p at te er .. a r th io a d c c
t lai la r m im eg
ula a tor th
a par e n ticu lar 2
1
- o po PO ] u we L ] tp r ut
to a
[STim[SOu [S Gene T Ca tu T Tu oD T l pnd a v dA e etp e rate o lcu rn h rn utpa urn ev oweaev n o es Poin eineu e /gene late in e -o uta -o e err ice d lta ig t-of-g t ratin g n t. n l ed s ge ne load
g d d
asc e/ ert t a de ‘9 ‘9 ‘ ain im t d 9 9 99 e in p h ap 9 9 9 dicati ower e ted
- o ng par ti n o b ame m on u sw ter in t d d ane s titc Pa Pag Pa o e a s ohin te te te a la ta g nt nt nt n y th , , , w s p e o re
ba ai yst aro t n ce se o t em tr o ive d utp . d ut. bo p a . a pe w moar ow ta f ri he ored er . c c c ro od n pr lai la la m f int . m im im o ed v re n a ol gu
potag lat
d we or istrdea er a cal a to ibutvin a n cula n ed cesd 1 9 1 tion
s. g po ] ] ] ene rti ci *9 o ev rat t on rc 9 ut en e o uit 9 pu t fre
t rogu
b mlato be r Pa ei ten b ngp t efo la o bo
re bo ce a a
a ar d f rd n d-
th e

41V=.7 A
v )
TON t b t seq fu s re ti coparede u oge Pst co recreleo1dfu 1 : e o ue rth te ce m nramceiterm si nene Oor nt etvguane art
nci er p ivin in troetevinine ng rat Lin ro inglatst 5tahe 4
ng g g ller g ing g ller or . r , g det r; ; en erm
P era ine P o .R ted o O _ utp . . L st onut-t f f s or eimin ro
ai ag g Am co u da d e s me c mp si t a tho om 4 ris n a id d p
0 -5 es g r po ris Th 21927 (d seq en egu out int in e .00002 ) ue aba ou lat put-co-of-l sg : ncin let tput or timimpoad a
d g fu o -tim ; a o ng risin id at rth f ing n utp g: w a s er c deut-ti m he a a vmin e n id sa iceg tho Cla id o ; c d im s ut ont a dt pu roll
n a t deer. d u ou ta ter si tput o . parmin sa n -tim com ou aming rec id g ing pr tpn eter eiv s ise ut; ing Co a d s e
1 nstru id a frs o 1321 ction ta om o f 26v1 o m
u s f (" c tp ai d PO la ut e d a s d L im na n ta a at ") ble a a id da a n nsa t
d i a d
t o en
- o a fa ab s s fr t le 9 ho a t i o uld d id n m a , d a l tle a ta ea as ta s a t Ch t a rt a
| | Tim[AOu [A Gener [SPoin | En iGtp GR ate/ge et- of- A G ab ngRu E nerat eload R le Et ED ing EE E ] D]
D
]
‘9 99 par ti da ame m ta ter in g Pa
ten t,
... da ta cla
imreg ula tor
an 1 ou ] tp ut -
1 4 .
Tim[AOu [A Gener [SPoin [A En iGtp GR ate/ge et-of- G ab ngRu EE nera eload R le Et D ting EE ED } D
] ]
‘9 99 par ti da ame m ta ter in g Pa
ten t,
.. da ta . cl
- - aimre gul ato r
an 1 ou ] tp ut
Tim[SO [S Gene lepo ne de avodeAPoinprD ieut e rate/ vewe ar vic nltasig t-ofodat i ngepu e gener lred es d gne -loaduca m t ating e d d e ab
c le
. /d a e ‘ t da 99 9 po h pte th 9 9 we e d a 9 r t p o b d ara tim on n u sw a a met i a e stitc n ta erPng P s ohin all at at g ow en en p th os t, t, sya e orec utp
st.r o to nei u emt r ve t.
bo pa .. d mo ar ow at o re d er p a a ri . cl cl f nt ai aim ed vre P m a olgu O potaglato L
d wer ist de a er rib vi n a a ute ces d n d 9 1 po re
r tici gu ] ] . t onrcu lato *9 ou o it r 99 tp frre ut ogu
b mlato b e r ei Pa ng p ten la ob t bo .ce oaa
ar d frd d- t
t o h e

42TON t le t u co re st st re re le le ; a h si ntr ce or or ce gu a a 1
st e ng olle ivin ag in ivi lat s s 6 r; g e g ng or t t . P slew .R -rat . on e on o
e sa e ne i A
d d s 4 ev ai -5 P ice d m 02192 (d O e ; s poin ou et 7.0000 ) L s na lew c t-of tp ho 2: lew a ble -rat om -loa ut d
-rat n e pris d e d slew ing
- o -ra : te C re f la gul im ato a r. n d tim
a i o
ta ng f ou tp d d de ut a a ter Con ta ta min 11 struc fr d ing 321 tion om at 26v1 a p
(" aram t PO ete
- o f L r
- o ro ") f in m de sa a s term id a ine id P
O a L a a t Ch t o art f
a t
[S [Out [S Poin e put-v e t-of-e olta e load ge]
‘9 “9 99 9 9
Pa Pa ten te t, nt ,
. . c c . lai s la r m lew im eg -rat ula e tor
2 1 ] ]
da ta
-1 5 -
[S {Ou [S Poin e tput- e t-of e volta e -load ge]
‘9 “9 99 9 9
Pa Pa ten te t, nt
,
. .. cla cl im sle ai re w-r m gu ate lato r
2 1 ] ]
da ta
fo(i spe Da [Ou le pone de a vo de A Poi .e cif t tput ve wear vic n lt sig nt-o r . yin a -volt l red es d ag ne f-loa , g age] e d d
de th /d
a e er p t da at ro po h pt e vid we e ed P ed r O b L o on u s
- o ane s wit s to ch f t ing h t c e p h o r regh sys ao e t n ece ulan tem rtr o iv atoge . e r. de t b .
sir o m oa po a . ed o rd w ore er p a f ri
nt . sle ed v re PO w-r a olt gu
- o Late po ag lato f d w e r istride a er s butevic n a ou le d es d tp w ut r po
eg rti cir ula t on cu tor o it
fr reg ra om ula te b to
d b e r vo at e lta a in ge g p ) lac o bo
bo e a a ard- d f rd
th e

43TON t de pr re aco s sew 1 prd u P s cr lt u r : term od cei ftm a quhe odeter s O to onec eh s con ec sto st co re rele le 1
ine uce ved erpris id encrei 8 ucemin in L ri troleiv ase in tro eiv ra or ntro cei gua a 7 d d, es ingn . d,e g ng lering t g lle in ge in lle vin latst st ; r; g g r; g or . P. sle R ou w-r . sa tp st o ate o o
id ut s or ne s n n T ai ag a e e
h d e s id A 4 e a d sa -5 b sa id ev id 02192 (d efo e id P ice p m 7.000 ) s re na seq O en ; sl oin ou eth 02: a blwa wh seq ue L sle ab ew ct-of tp od
b id e it i me e ue nci w- le -rat om-loa ut in s d th n nci s ng rat e prid y g a od ng equ e sle sing
tast deenc o w-r : to e viing ate C s p p ce re f lai ai e ; gu m d rio sa b lato a d i d sa r: n d ti
d ata e too id at min o
a f o a g f seq pro o u ue p vi deu f tp d d d C nci ou er de ters o a ut a a eter onst ng tp hio d minin u n ta t mi 113 ruct o ut ad e g cla tp d d d fr d a nin 2126 ion s im ut a a om at g v1 f ta ta a p
da (" ara ti t t P met m b a o OL er e ee s o fro ") n a t i m i o id o f f d sa n s 1 i ro ete i
f fu 7 s i m s rmi d b rt n ai ne e ti he , t d a d in m r w o P a g e he sa O a ta n i L . b d s a
e ai a t Ch d t o ar f t
a t
[S Seq [S Seq [ {O [ P e uen e ue Se utpu S oint-e cin e ncin e t-vo e of-lo g g ltage e ad
]
‘9 “9 “9 ‘9 99 9 9 9 9 9 9
Pa Pa P P te te ate at nt nt n en , d , t, t,
a d ta a
ta
. . cla cl cl c . im aim ai sl la r m ew- im egu
rate la
tor
2 2 2
1 ] ] ]
]
da ta
[S Seq [S Seq [ [O [ P e uen e ue Se utpu S oint e cin e nci e t-vo e -of-lo g ng ltage e ad
]
“9 ‘9 ‘9 ‘9 99 99 9 9 9 9
Pa Pa P P te te ate at nt nt n en , d , t, t,
a da ta ta
. . cla cla cl c . im im aim sl la r ew- im egu
rate lat or
2 2 2
1 } ] ]
]
da ta
gen betDa Seq gen beD Se f( spD [O le pon d a v d A P era wet ue era tweat que o.¢ eca utp v wea ev n ol es oint tion en a ncin tion ena nc r. ifyita ut-vo e erer ice d ta ign -of-lo g ing , ng ltage] l d s ge ed d ad
t e/ h de e ad sp sp ra pr p th ap eci eci te ov ow e te fyin fyin ide er d g g PO d
s L o b s om som aon n u w e e o e s t itch
s o in
- o o f th t g r r e p h d d rech sy a e o re
a a guan ste ro t n cei term ta ter ta latg m t r o ve ina e min e or.e d . tion ve ation ve est bo p a . nt a nt ireo m a o
a d oore rd wer p . de de a s f rinte . la la P lew a d vo reg y y o O -rat p lta ula a a L e ow ge tor n n f distd a er d d ribuev n
- o s ted ice d a ut le s pe pe pu w p tri tri t reg or c “ hod hod ul tio irc 9 o e o e ato to n u 99 f f r it r r fr eg
a b om ula an a te tor n v da b e P olt ta e at ag in en ou ou e) g pl t tp tp b ac o bo a
ut. ut. oard ed f ard
- - t h e

44TON t wo s u s s c r : hn a s to to on ec leth us con rec st st co re rele le
en id in ra ri tro eiv ase in tro ei ora or ntr ce gua a 1 g ge ng ller in t g lle vin ge in olle ivin lats s 9
; g r; g g r; g or t t . P de . l slew Ray sle -r . w-r onate o o
sa ate a e s n n i t a e e d s id A 4 l de a d sa -5 ea vi id ev id 02192 (d p s ce P ice m 7,000 ) er t ; tu O en ; s poin ou et 02: ouio rn- L sl a tew ct-o tp ho
tpd on ew ble -rat omf-loa u d ut t -rat e prd t urn e sle isin
s -on o w-r g: d a ate Cl a id ref aim ta an gulato a
co d r;n d tim i rresp a o s ond tur d ta in ing t n-o a o g f t o n ta ut
- o da pu d d de Con ta t at a term 11 struc ca a f d ta in 3212 tion b lcu ro a ing 6vI e late m t
f a pa
ro ("P ram p in m t O ete rod d o o f L r uce a ro ") d. ta s f s in m
ai dete a
d s rm id s a ine
a id a a id P a n O a to d P L tu O a rn L a t Ch - t o ar t f
a t
[S Tur [S Tu [ [ P e n- e rn- S Ou [S oint e on e on e tp e -of-lo e ut e ad
“9 ‘9 ‘9 ‘ 99 9 9 99 9 9 9
d d vo
Pa el Pa at P lta te a te a at ge Pa nt y n en ] te , t, t, nt
,
p . er . iod cla cl cl c . im aim ai sle la m w- im reg
rate ula tor
1 2 2 3 1 ] ] ] ]
da ta
~1 7-
[S Tur [ Tu [ { e n- S rn S Ou [S Poin e on e -on e tp e t-of-e e ut e ioad
“9 ‘9 ‘9 “ 99 99 99 99 9
d d vo
Pa el Pa a P lta P te a te ta at ge a nt, y nt en ] te , t, nt
,
p . er . iod cla cl cl c . im aim ai sle la r m w-rate im egula
to
r
1 2 2 3 1 ] ] ]
]
da ta
tu Th Tu geD Tu f( spD [ l pnd a v rn e rn- nera rn oL eca Ou ev oweaev n o deA Poin ing on atita -on re ifyta tp e err ice d lta sig t-of-ng ., ing u l ed s ge ne load
t d d t e/ t h de im e ad e in ra pr p th ap dic te ov ow e te
atin ide er d
- o g PO d n L o b t d v onn u sw
- o e d o ol ae s titc a l at tag s ohin n ay a a f th e g w n ] p th a rch e s a e o re it egua yst ro t n ce
- o latng em tr o ive utp ou ore . u tp . det b . t. p ut.w siro mo po a .
e h ed oar w fr rio e ore d er p
- o d n r . m a f int slew ed v r
P -ra a o egu
- o O te plta la L d owge tor f istda e a t ribuevn r n o ou sl tediced a tp e s
u w p st t re or c
- * ev o gu tio ir 99 en p lato t n cu 9 t r o it r r freg
ate d b om ulator v a be Pa olt ta e te b ag in nt ef e) gpl
or b ac o bo e oa ed f ar a
rd d -
th e

45OUS in o p r u s s c rec l t u r s s r re l l 2 TON t u e a s to to on ei ea h s ece tor to ece gu ea ea 0 : tp ri te in ra ri trol vin s e in iv ag rin iv la s s
ut od g ge ng ler; g t g ing e g ing tor t t .
slew
P. d -r R at on ate on o . a s e s e ne
a a A i cor id s id s s resp d a de a ond ev id v id 4- t ing t ice P ice po o me 021 5( o o ; tu O en ; sle int- ut tho 927.00 d) tu rn- L sl ab w-r co of-l pu d 002: rn off ew le ate mp oad t
b ca -off t -rat s risin e lcul urn e lew g: ate -o o -ra
ff te te re f
Cl rmi a gu aim nate n lato a t . d r; n d im o
a in
ta g f d d ou at at tp de a d a u d da ter a a t at t min Con t ta a fr d a ing 1 struc o o a 1321 tion tu m ta p 26v1 rn- a (" ara
w off n fr P met h d i om t OL er en n o o fr ") i om
f s n s s dete ai a ai s rmi d id d a ne a sa id
s id P a ai d O d e L la sl PO a y ew L a t
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t
[ Tu Tu [S [O [S Poin S rn- rn- e u e t-of-l e off off e tp e oad e ut
‘9 “9 “9 99 99 99
vo
P d da P lta P at el t at ge at en ay a en ] en t, t, t,
. p . er . c io cl cl la d ai sle ai re im m w-r m gu ate lat
or
1 2 1 2 ] ] ]
da ta ~
1 8 -
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‘9 ‘9 ‘9 “9 99 9 99 9 9 9
vo
P d P d P lta P at e at at at ge at en la en a en ] en t, y t, t, t,
.. pe rio c c . cla d cla la s la im im im lew im reg -rat ula
e tor
1 2 2 1 2 } ] ] ]
da ta
tu T Tu ge D Tu f (i sp D [O le po ne de a vo de A Poin rn h rn- ner at rn- o .e eci at u ve we ar vic n lta sig t-of-in e off atin a off r . fyin a tp l red es d g ne . load g g , g ut e d d
e/ th de t e ad im i ra p p th ap e nd t rov ow e te ica e id e d
tin P ed r
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L o on u sw ff v a ne s it t d d o olt s to chi
- o e a ag ng la a ta f th e] t an y n e p h o r w re ch sy a o e t n ece ai gu an ste rt o iv t o lat g m. r e ou ut or. e de t b a . tpu pu sir o m oa po t. p t. w ed or rd we .
e he o e r p from riod n a s f ri nte . r P lew a d vo eg
O -rat p lta ula
- o L e ow ge tor f dist d a er t ribu ev n a a o o s ted ice d n ut le s pu w po
st t re rt c e o gu t ion irc ve p lato o uit nt r f re
r ro gu at b m lat e d e or vo at be lta a in b ge g pl ef ) b ac o bo or oa ed ar a e rd f d
-
th e

46TON t tim accge a sa le a s o a a co 2 : ordaner n i as ai ut mp 1
in nceate d t c d pu risin . g on t sto se g:
- o tro rag ria Put l e l . pu R t ou o se . tput ne rial
A para d d 4 met at at 0 -5 er. t a d a poi 21927 (d a im u e nt-o .00002 ) n bu in n d vic f-lo : ild g it a e ad
w er d ta itho a u ta rec b tp ; eive u C ut a d s la da b im p pte u s aram d s ad
ai et ap in d a er te ter a n d fac
da d int e; pte er vo d fac Cons alta e;
113 truct t g e 2126 ion e t xte v1 l o rna re
ea lly gu st t lat c o or
alcu t ba late
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on v Ch ia art
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] ] ]
b ‘9 ‘9 u 99 9 s 9 bu u da ilde n t
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,
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or
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] } ]
b ‘9 “9 u 99 9 s 9 bu da ild un t
e er i a xt t Pa Pa ern te te all nt, nt y ,
. . cl cl . aim ai re m gu
lat or
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PO Rec Rec [S Ou [S Gener [S Da [S Co [S Ca th D O le po ne de a vo de A Poi eiv eiv e tp e ate/g e t e ntr e lcu at ut v we ar vic n lt sig nt-o L ed ed e u e ener e a e ol e la e a pu el re es d ag n f-loa
t ating te t d e ed d
de pr /d ovi ad e r ‘9 “ “ ‘9 ‘9 sio r t ap egu 9 99 99 b 9 9 n efl po h te lat 9 9 9 u 9 9 ect we e d or. s ing r
- o b bu u da o n u sw ilde n t a ne s t itc fr e P r P P P i P a s o hin om xte at at at at t at g rn en en en en en t ally t, t, t, t, t, p h o r
sys a o e t n ece
te rt r o ive
- o m. a f bo p a .
infor mo ar ow . po mat o re d er sou we ion pr . rce cla cla cl cl cl r f int im im aim ai ai ed v re
m m a p olta gula
ow ge tor dist d a er ribu ev n a ted ice d a n t s e 1 1 1 1 o p xte 1 or c rna ] ] ] 2 tio ir l o ] ] t t n cu
ut h o it r pu e fr eg t a b om ula
ffe tor l ctin b e oa g e d in p . g la b
b c o o a t oa ed f ar
- o rd d -
th th e e

47TON t s be vocal co co wh ti accge a s le a s o a a co 2 : ai i ltcul nt mp er m ordne n a a ai ut mp 2
d ng agate rol ris ein in ancerat id st d pu ris . e es g e con t sto se ing
- o tr ra ri : u ol ge al P tp .R seq ut ou se . ue tp on ri ncin de u e al
g term p t A ined u aram d d 4 i n ete a a
- - s it sa r; ta ta
021 5( a id tim d poin 927.00 d) t an u ev t-o 002: o t seq bu in n d ic f-loa
im ue ild g it at e d e i ncin w er d a b s g itho a r e ou ut ta ece b
f tp pu ; ive u C ur ut t a d s la g the da b im d enw r p pt u a erah s ara ed s ad
ta teden a me ap in . i , id a ter te te n a n d rfa
da d in ce; d p te acco a v ted rfa Con rda ta aolt ce;
11 struc nce s ad tag 3212 tion a ap d e ext 6v1 id ted a t ern
ta le o all reg
f as y ula urt t to to he calc r saou r b ulat idtp to as e s ut a i ed to
n on re d ne
to
tim
w e s ith ai o
C d n v ha ia rt a
t
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b ‘9 “9 “9 u 99 99 9 s 9
u da par n t am i P P a Peter t at at a
en en ten t, t, t, da ta
...
cla cla cl im im aim re gu
lato r
an 2 1 1
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|
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b “9 “9 “9 u 99 99 9 s 9
u da par n ta ame it P P P ter ate ate at
n n en t, t, t, da ta
. . cla cla cl . im im aim reg ula
tor
an 2 1 1
- o ] ] ] ut pu t
[S Da Co Cagen betD Se thD O le pone de a vo de A Po [ T S e t S ntS lculer weat que at ut v wea vi n lt si int-o Sim e ren e a e role ateatio ena nc ea pu el rer ces d ag gn . f-loa e in e erate e e n ing t d e ed d e g /gene de rating p /d rov a e “ ‘ “ ‘ isio t da 9 99 b 9 99 spe n refl po h pt “9 99 9 u 99 9 cif ec we e ed 9 s yin tin r 9
g g b
d o on u s pa u som at an s wit ram P P ni e a se t ch ete a a Pa tPa o ing P r te te te te o t at nt nt nt nt r p h o en , , , , d sy a e n rec t,
a ste ro to eiv ter ta o m. t r e min e f b . ation ve i o p a .. nt nfor mo ar ow a pomat ore d er weion pr cl cl cl cl d r f int c ai aim aim aim e ed v r la m la a o eg im y p lta ula
a ow ge tor n distd a er d ribuev n a ted ice d a n t s 1 1 1 1 p o po
2 ter rt c 1 ] ] ] hio t ion irc outp ] o ed the o uit f re ] ut f ro gu
aff b m lat a ect e or n loing b a ei
d. ng p ou lac o bo tp bo e a a ut. ar d f rd
d-
th e

48TON t :
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bu ild ex er ter nal ly
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2 1 * 1 99 ] ] 9
Pa te nt

49te mt
TON: t sl devo de c co w t acg a s l a s o a a ew termlt ter on mp he im corden n a ea a u com 2
-rat ineag min tro ris rei in ancera id s id tp pr 3 e d e, e l es n g e te t co ut st s isin . nt or er g:
ou rol ag ia P tp e l .R ut o s . ut on er
pu e ia t l A u par d d 4 s n s ame a a
0 -5 a it a ter ta ta 2192 (d d id id ; a tim u d poin 7.0000 ) at a n i n ev t-of 2: a. slew bu n it d ice -loa
i -ra w ild g at d n s i te i er d a s le s o th o a r le w u ut ta a ece bu acw f tp pu ; d ive s C cord urt ut t ap d lai anc he te b m e r p d u
s aram s ad ra ai et ap in ra te d a er te ter t a n d fac e da d in e;
d pte ter C d at vo d fa onstr f a a a a lta ce:
1132 uctio b o da ta t g t 126v n e r pt e o ext 1 i ed l ern r
n ea ally egu g s fu s ca t la a rth t lcu o tor w id a er late ith n b d to as s
i ed to
- o n re
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s pu a ai t id d
on v Ch i ar a a t t
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D] t D] ating ED ED te t e ltage e ad
] ] ]
b “9 “9 ‘9 u 99 99 9 s 9 bu da ild t
e er P a xte a Pa Pa rna ten te te lly t, nt nt
, ,
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] ] ]
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e r P a P xte at a Pa rna en te te lly t, nt n
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p t e/ ro h de vis e ad “9 “9 ‘9 ‘9 ‘9 ionre ra pr p th ap 9 9 9 9 b9 fle t ov ow e te 9 9 9 9 u9 cti e ide e d
s ng P d r b d O o b uil a L o n u sw de ta o ane s t itc P ex P r P P P s o hin ate ter at at at at f t g n na en en en en h t t, lly t, t, t, t, c e p h o r
regha sys ao e t n ece
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- o O -ra p lta ula Lte ow g to f disd a e e r tribuev n r a o s tedice d a n t ut le s 2 1 1 1 1 o pu w p 1 2 t re or c ] ] ] ] gu tio irc *9 ou ] th lat to n ui 9 tp or t r 9 u e fr eg
t aff ra b om ula
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50H Jo -TON t tur o un th cal co com wh tim accoge a sa le a sa ou a a com 4 : n- ff i a cul ntr p ere rdaner n i as i tp pr .
off t t ate ol rise in in nceate d t c d u s s isin s g on t to er g:
- o tro rag ia d ut l e l P a t i pu .R ta erm s t ou o se . inat tp n ria es ut e l
to A
u para d d pe b n s me at at 4- ri ei b it a ter; t a a po
0219 5( od ng a id a im u de int-o 27.00 d) e t n b in n d vi f-lo
002: tu urn uil g i a ce ad
rn -o w de t t wa -off i ff i r d a ite s o tho a re b d u ut ta cei u u f tp pu ; ved s C se urt ut t ad la o d sa he ap b im f i r pa te u a d sa ram d s da
i ete p int tim d a r ted erf e b ad n ace . t o ef d d ap d int ;
- o ut or pe at a v te erf Cpu e ri a t aol d ace onst t, od ad a ta ; e
113 ructi calc a tge xte 2126 on ula pte t rn v1 te d le o ally reg
f a ula a ur st t tor n th ca o sa d er b lcul i t as ate
sa d o o ed sto id f oin re sa ne
ti to id
con m
sa t tr e id ur o} v n- o ia
n
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t
[A Gen [A D [A Co [A Ca [ Tu [S Tu [S O [S Poin [A Ti G erate G at G nt G lcu Se rn- e rn- e ut e t-of- GR m RE /gen RE a RE ro RE late e off e off e pu e load EE in ED] erating ED] ED] l ED] t D] g
‘9 ‘9 “9 ‘9 b 9 99 9 99 us 9 9 p
da ara un t me i P p P d P a P ter t a er a at at at
te io ten a en en nt d t, t, t , ,
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or
an 4 2 1 1
} ] ] ] ou tp ut -
2 3 .
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‘9 “9 ‘9 ‘9 b 9 9 99 99 u 9 9 s
da par un t am i p d P a P ete t Pa er Pa a a a r
te io te ta te te nt d nt nt, nt , , ,
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tor
an 4 2 1 1
] ] ] ] ou tp ut
[ Gen [ D [ Co Ca tu T Tu gen D Tu thD Ou le po ne de a vo de A Poin [ Ti S erate S at Se nt S lcu rn h rn- er at rn- at t ve we ar vic n lt sig t-of S m e /gen e a e ro e late in e off ati a off ea pu l re es d ag ne . -load e in e eratin e l e g ng t d e d e g g de
p /d rov a e tim isio t da ‘9 ‘9 b “9 “9 e ind n refl po h pte “9 99 99 u 99 99 ica ect we e d 99 s tin ing r
- o g b ff d o on u sw pa u at a n s it ram n to p d a s e to chi ete P Pa Pa it Pa e a ng Pa r ate te te te a rio a ta t te nt nt nt nt n w d n p h o re nt , , , , a sys a o e t n ce ,
it tem rt r o ive
- o o o . ut utp f b . pu u in m oa po a t. t. w fo or rd we .
he porm o e r p fro n weati ri . cl cl cl cl m r on f nt cl ai ai ai aim ed vo re ai m m m a lt gu m po ag lato
d w e r istr d a er t ibut evi n a a a o ed ces d n n t 1 1 1 1 o po 1
2 st rti ci ] ] ] e o t on rcu ]
- * o ] ven p th o it 99 ut t e f re 9 pu ro gu t aff b m lat
ec e or lotin b ag ei Pa d. ng p ten be la o bo t for bo ce a a
e ar d f rd
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51TON: t
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]
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1 2 1
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52=
TON t tu op ic c cw : rn nrod salc on omh tim accoge a sle a so a a c2
-on uc ula tr prere i rdaner n aia aut om5 es te ol isein ng nce ate dst c idpu pris
t s on t sto se ing. d o o tro ra ri : P at ut l ge al .R a b pu . t ou se
e tpon ri ute al
p A 4 pe b wa un ara d d -5 ri ei ite i s met a a
02192 (d od ngs d t a er; t ta ta p 7.000 ) a a id a im d oin 02: id tu n b i u ev t-of
rn ui ng ni da ice -loa
tur i -on w lde t t d n-o s it r d a n ou hou at re b uso tp tp a cei u Cl o eut b fur u u ; ved s ai dpu ef th t t ad m f t or er ap b e s par te u
t a am d s ad im id eter ap int e a te erf . to p d ad n d ac
e ad ap d int e: C rio taa v te erf onst cvo d ta aolt d ac
1132 ructi alclta s ad ag e; 126v on ulag ai ap t e e 1 te e, d te t xte
d le o rn r
af a ally egu nur st t lat dthe ca o or cono r b lcu trf t as late ol o e sto
s oi d r s tim a nn e a t id e
sid e o ai d
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] ] ] t e d
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t Pa ri Pa at Pa P
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g ] } D] t e d
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t Pa ri Pa at Pa P
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...
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g t e ed ad
de pro /d 9 ‘ “ “ tim vis ad e 9 99 9 b 9 ‘9 in ionre p th a 9 9 99 u 99 9 e dic fle ow pte s 9 at ct e e d
ing ing r b o uil u n d oo b s de n t p at ann u w P r P P P iP o e da a se s titch at at at at tat a rio t oin en en en en en n d a t g t, t, t, t, t, w p h
a sy a e o rec
it ste rto to n ei outp of m. r ve ut. i bo p a .
w pnfor moar ow f he owmat ored er .. c c c c c ro n eion pr lai la la la la m r f in m im im im im te r a d vo eg
plta ula d owge tor t istridea er a a o butvicn a n n t ed esd 1 1 1 1 1 o
g po ] ] 2 ene rt c *9 j ou ] ] ev rat t t ion irc 9 tp en e h o u 9 u t e it r
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53TON: t
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1 2
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54TON t th pr reg fun pe Seq th a reg o pro reg o d com wh sa a a s le a s ou a a co 2 : e ovi ul cti ri uen e ul f vi ul n a p ere i n n ai a ai tp mp 6
din ato ons od cin ato din ato ta rise in d d st c d u risi . g r, g ra r, g r, s on t sto se ng:
te th o tro rag ria e th ou ut l e l P corr corr e tp pu .R espo espo a ut t ou o se . ndin ndin pro t tp n ria
g g vid ut e l
- o corr c in le A be f espo orre g a d d twe ndin spon s s a a 4- en g din a t ta ta p 021 5( ch g id b tim d oin 927,00 d) b a ui i un ev t-of-002: a ng s a v a vo lde n i da ice load
an y e lew olt t lt r g t t d d -r ag on ag d a com a ate de e l o e e a re b ma t ta sir ea ut ta cei u nd h ed s pu ; ved s C e t t ad b lai tu ap m rn a ti pa te u a -off exe m ram d s da
cor cut pr o in ad ete p int resp ion ov com g ap a r ted erf ond idin f ma on in te n ace P ing g P set nd e d d int ; O O o -po da erf C L L ut o int t a ace onst pu da ut a cco ;
113 ructio t t P pu rdan e 2126 n a O t P o ce t xte v1 t L O p o rna re
- o L f aram lly gu d fu et t lat re at re t rth er; t ca o or gul t a gu urn er o lcu ato u lato pro -on ba lat r. rn o r, v vi se e st f o din g d or
a lta g vo t en e
ge lta da o era
- o d g t te th e e a
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P n- w o C O it n v h L h ia ar t o a
f t
[S Tu [S a sle da Th [S Seq [S Ou [S [Ou [S Ou [S Poin e rn- e nd w-r ta e e ue e tp e tput e tp e t-of-e on e ate ... e ncin e u e -volta e u e load g t ge] t]
seq ph ‘ “ ‘ ‘
‘9 ‘9 uen ra 99 9 9 9 ‘9 9 9 cin s 9 99 99 99 9 9 9 g e 9
da
d vo ta vo
P a P d lta P P P P lta P at ta at at ge ate ate ate at ge at en en a. n n n en en t, t, .. t, t, t, t, t,
“a d t at a
. l . d ea
c c ata set s c c c c se c . la la ...” -p t lai lai lai s lai t-p la r im im oin m m m lew m oin im egu tur t -rat t la
n-o e tor ff
on e
2 2 2 1 2 2 1 ] ] ] ] ] } ]
o
da f da
d ta. ta at .. tu da a.. rn- ta
. on
-2 ?7 -
[S Tu [S a sle da Th [S Seq [S Ou [S [Ou [S [O [S Poin e rn- e nd w-r ta e e uen e tp e tput e ut e t-of e on e ate ... e cin e u e -volta e pu e -load g t ge] t]
seq ph ‘ ‘ 9 ‘
‘9 9 uen ra 9 9 9 9 ‘9 9 9 cin s 99 99 9 99 9 9 9 g e 9
da
vo t
da P lta P P a P P vo P Pa t a da g a a a a lt a te a te ta e te te ten ten ag te nt nt ... nt nt t, t, e nt , , “ , d , ,
a a t ta
.. d le
c c at se as c c c c c . la la a... t-p t la la la la s la im im ” oi im im im slew im et- im reg tu nt -ra po ula
rn- te int tor off
on e
2] 2] 2] 1] 2] 2] 1
. ]
o
da f
d ta. d at .. tu d at a. rn at a .. -on a
ouD Tu A a sle da T gen betD Seq th D O fo (i sp D [O le sp D {O le po ne de a vo de A Poi tpat rn- t n w-r ta h er weat ue at ut .e ecif at utpu v ecif at u v we ar vi n lt si nt-o uta on d ate ... e atio ena nci e a pu r . yin a t-vol el yin a tpu el re ces d ag gn f-loa . n ng t , g tage g t] d e ed d
] de le p t /d as rov h a c t seq ph isio e r p t da ind uen ra sp n refl a pro f ro po h pt ica cin se eci ec te vi o vi w e ed tin g fyin tin P de r de er g g g O d d
- o d L o b s n v so a t on n u w d e o m ta o h a e s t itc a d lta e e vo s o hin ta a ge f t t lt g
ta o h h ag th
- o r c e e e s p e o re “a d reg ha P ys ar o t n ce f at o ula ng O tem t r o ive t term a to e L .
ina ev f r. de t de t b . th tion en in sir o sir o m oa po a w ... t a p form ed ed o rd we . he e le o atio o re r p n da s as we n a a f ri . ta. et- t d r re nt
s ..” po e sle gu set ed v re e t int la P w-r lat P -p a olt gu t urn y o O ate or. O oin po ag lat -o a L L t d w e or
ff n f istr d a er t o d ibu evi n a
- o « n ou sl ou ted ces d e t tp e tp
K p o u w ut po ge ter t reg re rt c ner hio ul gu t io irc ate Y o ed t ato lat o n ui
- o h r or t f r d f f e r ro eg , at a a b m ula d a. a ffe te d to a at .. tu n cti d v at b e r n a.. rn lo ng vo at o a e d . -on ad lta a lta in . ge ge g pl
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it ine it r d h d co hou at re b esi nt tp a cei u C s red rol u ; ved s la d a t ad b im at id ap u a a s para te s a
, a me d da i
t id ter pt nte a an ed rfa se le da d in ce; que as pte ter Co a nci t o u vo d fac nstr n ng ut a n alta e;
1132 actio d pu it tg e 126 n t tu e xte vi rn l to rn r
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{S Tur [S Tur [S a sled T {S Se [ O { [O [ Po e n- e n-o e n w-rat h e que Se ut S u S int-o e on e n e d atea e e nc e pu ee tp e f-lo ing t ut] e ad
9 ‘ ‘ seq ph 9 9 9 uen ... r ‘9 “9 ‘9 * 9 99 99 cin as 9 9 9 99 g e 9 9 9 9
v da
pe d olt ta
Pa ri Pa at Pa daag Pa Pa Pa vo P te od te a te tae te te te lta at nt nt nt ... nt nt nt ge en , , , “ , , , t,
a da t ta
... d le
c c c ata se as c c c la la la ... t-p t la la la s cla im im im ” oin im im im et- im reg turt po ula
n- int to of r
on e
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dda f atta. d a.... tu a
. rn ta
-on -
2 9 .
[S Tu [S Tur [S a sleda T [S Seq [ O [ [O [ Po e rn- e n- e n w-rt h e ue Se ut S u S int-o e on e on e d atea e e nci e pu e tp e f-lo ng t e ut] e ad
“ ‘ seq ph 9 9 ‘9 uen ... r ‘9 ‘9 “9 ‘9 9 99 99 cin as 9 9 9 9 9 g e 9 9 9 9
v da
pe d olt ta
Pa ri Pa at Pa daag Pa Pa Pa vo P te od ten a te tae te te te lta at nt t, nt ... nt nt nt ge en , , “ , d , , t,
a a t ta
. le . da s a
cl cl cl ta. et- st cl cl cl c . aim ai ai ..” po ai ai ai se la r
m m int m m m t-p im eg tur oi ula
n-o nt tor f
on e
3 2 3 2 1 2 1 ] ] ] ] ] ] ]
o
dda f atta. d a.... tu a
. rn ta
-on
turTh Tur ouD Tu A a sleda T ge betD Se thD O le sp D {O le pon d a v d A Po ni n- tpat rn- t n w-rta h ner weat que eat ut v eci at u v wea evi n ol es int-nge on ut.a on d at... e atio ena nc a pu el fyi a tp e erer ce d ta ign of-lo e n ing t ng ut l d s ge ed ad
] d le p e/ as ro de tim t seq p visi ad
in ue hr sp onre f p p th ap e dic nci as ec fle o rov ow e te
at ng e ify cti r id e d in ing ng ed r
on g o b n s d o on u s t p d e vo om at th an s wit
- o e a lta e a e v se to ch a rio ta dag ol ing n d tae o th ta t w ... r e ge p h a o “ d P sy a e t o rec it a a O ste ro o n eiv ou f t ter ta o L m t r e tpu min e d . t. t atio ve f es t bo p a .
w h n nt info ire o m a ow h e le a porma d oore rd e . fr en da s a wtion r p
- o ta et st d er r a f rin . m ...” -po e eg se te
se in la ula P t- a d vo reg t tut y tor O po lt ul
rn- . L int po ag ato
of an di we e r t d stride a r a o « on o butvic n a n e u ed es d X to tp
g pe ut po ene , tri reg r t ci
- * ev rat hod t ula t ion rc $ en e o o e h to o uit 99 t Y f e r f re dda f a ro gu
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] D] D] ]Ding ED
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‘9 ‘9 99 9 b 9 u
s u par b n ame uil it P P ter de
at a ext r ent, tent ernal
d , ly at a
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or
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[AG Co [S Seq [ Po [T[R[O G R ntr e ue S int-o AGimAGeceAGu [AG ener[A Da[ACa EE ol e nci ee f-lo REinRiveRtp RE ate/gGR tGlc D] ng ad EgEEd EEu ED eneraE a REula
D] D] Dt ] ting ED EDte ] ] ]
‘9 “9 99 9 b 9 u
s u par b n ame uil it P P ter de
at a ext r en ten ern t, t, ally
da ta
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ato
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[S Cogen betD Seq le poned a v dA Po [T[R O e ntrera weat ue v weaev n olt esi int-o SimSece[Su [S Gene[S D[Ca e ol tio en a nc el rer ice d ag gn f-lo eineiveetp e rate/ge atSlc n ing d s e ed ad eged eu e enere a eula
de t ating ete
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“ s t da 99 pe po h pt 9 ‘9 ‘9 ‘9 ‘ ‘ 9 cif we e ed 9 9 9 9 99 b9 ying r 9 9 9 9 9 us99
- o b p
u so aonn u sw ara bu n me se s titc met ild
Pa it ohin PerPePer te o t g at atxteat Pa Pa Pa nt r p h en enrnaen te te te , d sy a e t o rec t, t,llyt, nt nt nt
a ste rto o n ei , , , termin e ta m. r ve atio ve bo p a . n nt ma ow
a oore rd er pr .
cl d f in . c c ai e te r la la cla cl cl c m la a d vo eg im im im ai ai la y plta ula m m im
a owge tor n distda er d ribuevn tediced a
s a 1 pe po 1 2 n
tri rt c 1 1 1 1 * ] hod t ion irc 1 9 o e o ui ] ] ] ] ] 2 99 f t fr ou ] roegu tp
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‘ ‘ ‘ seq ph 99 99 9 ue .. ra ‘9 ‘9 “ 9 9 99 ncin s 9 9 9 g e 9 9 99
.
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at ri at at at dag Pa Pa o P en od en a en tae te te lta at t, t, t, ... nt nt ge en
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] d
“ ‘ * seq ph 99 99 9 uen .. ra ‘9 “9 ‘ 9 9 99 cin se 9 9 99 g 9 9 9
. u n vo it P pe Pda P lta v
at ri at t at dag Pa Pa o P en od en a en te te te lta at t, t, t, a nt nt ge en
“ , d , t,
a a t ta
.. ... . l
da ea
cl cl c ta set s c c aim ai lai ...” -p t la la s cl
m m oin im im et- ai re turt po m gu
n-of int lator
on
4 e
2 3 2 2
] ] } 1
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- o ] dda f atta. d a.... tu a
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[S Co tu T Tu nerD Tu A a sled T ge beD Se ls D [ l pnd e nt rn h rn- atinat rn- t n w-at h ner twa qu evpec a Ou e owee a vo deA Poi e rol ing e off g a off d ratea e ati eenta enc eify ta tp ve erarvic n lta sig nt-o on ing l ing ut l ed es d g ne f-loa
] e d d d le e t as /d ‘ im t seq p ad e 99 ind ue ... hr sp f p p th ap 9 e ica ncin as ec o rov ow e te tin g e ifyi r ide er d
- o g ng d
u ff on o b n t e vo som th aonn u sw P it o pe d lta e se s titc at ri at dag e vo ohin en a od an a te o th lta g t, n w a r g p th a o “ Pe e s a e o re
it a da O yst ro t n ce
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t turt y tor O po olt gu n-o a . L int poag lat
f n di we or t o d stribdea er a o < n o utevicn a n e ut d esd 1 X p pu
st e t r po ] e o , thrio eg rt ci *9 ve p o d ula t ion rc 9 nt Y o e tor o uit 9 d f fre
da f rogu , atata a d b mlat ...... tu n a e or a rn- vo ta b Pa n on lta ei ten be d ge ngp t fo ou la o b
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‘9 ‘9 “9 ‘9 ‘9 99 99 9 9 9 9 9 9
P pe P Pp at ri at aer Pa Pa en od en tenio te te t, t, t,d nt n d , d t,
at a a ta .
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da d , t at a a
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lat or
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]
tur T Tu gen beDSe tuTTuge beD Se le pn d a v dA P ni h rn- era tweatque rnhrnner twa qu v owea ev n ol es oint ng e off tio enanc ine-offatio eenta enc e err ice d ta ig. -of-l n ing g n ing l ed s ge ne oad
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s e r. pro reg d P gram ula at at 1 ext mab tor a en
ern ou le p re 1 t”) ] al tp ri gu
ut or lat ] or
fa ul to t
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a
Joicomm Con thPO op Da Fau ou pa Pro In bo poned a v d A Po C neunica nec er era t lt-mo tp ri gra it ard waev n olt es int- ou d tion. ted eL tin a nito u o P mm ial -leve erer ice d ag ign of-lo rt
g ring t r O ing l d s e ed ad ’s
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lt diti g on . on fi th
r po pa e o re s we ro t n ce t in r t r o ive
form b .. t u atio m oa po a .
- o se ge n oorerd we d th neraf r pr
e atiote f in al n r te v r lo d sys a d o eg w o at tem p lta ula
st a . ow ge tor to f atu distd a er s po d ribuev n a
- o wer a tedice d dete ne -up ta s po rmin rt c e t io irc “7 o n ui 9 o o re t f re 8 r o ceiv ro gu r ed b m lat
f or m be or a ei Pa e n n p ten g la b t b ce o o a
u d f ar t d i t f h
b e y

76H J faultinfo le PO cla2 OUS oi -morma as im. TON: nt nitoring tion t L
on r
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] ]
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s s
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1 1 1 ] ] ] -
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] ]
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s s
up u pl P P ni y ate at t Pa n en ten t, t, t,
..
con trol ler cl c . c aim lai re la da m gu im ta lato
r
1 1 1 ] ] ]
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de r
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a e
r t da o ieg con h pt ‘9 ‘9 re sula cer e ed 9 b 9 gu f tor nin 9 u 9 lat as g s or ta
- o b h su onn u sw lo p a pp fa ae s titch un a rog t dis ly u con s oin P P i d a ram trib lt dit g a a t n s ute . ion th te te d d
po p o re nt nt a
w aroe t n ce , , ctiv er tr o ive ate cir a s
b .. cu llo moa po a . it. tw co us orrd we os ntr e t oe r p olle d h f rin r
e te cla cl b d s d vo reg im aim e a yst a lt ul a
- o ta em po ag ato n t sta . di we e r tr d p
- o f tu stribdea r ansmth aow s utevicnd a ittee ner
- o des d d d ne m ete po 1 oni rmin rt ci 1 o tor e t ion rc u s ° o ui ] ] tp a 79 o o t f re ut t 8 r r ro gu c
b m lato lon
e r eatro m be stl P ore in ate gpl nt ac o bo o
ed f ar a t d of a i f th th
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- 77o corr outpu con cl7 vo corr high- con cl6 sa tolow- con cl5 le cor outp co c 3 HO Jo esp t-voltag figu aim lt esp volta figu ai i volt figu ai v resp ut-volt nfig la USTO in f ond e-slew rat , ag ond ge-l rati m, d age- rat m. el ond age-se ura im . N: t ing -rate ion e ing imit on limit ion ing t-poin tion
s a t ai d lo
ou w tpu es o P 1 1 t. t 1 1 .R o Th Th T f T . u ,e l ,e ,h , h tpu w e w we s e
t. he ve he he ai wh
rei l rei re d ere n n in in 02 4- p po d p p 1927. 5( ow w es ow ow 00002 d) er er ire er er : o d ou
tpu t d f t d d t. t
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esi ol ig ta l olt ol es ol red in o he in ag in ire in clu ut st clu e clu d clu
des in pu des in des in de i iti t. iti c iti s nit al- al- orre al- ia 1 Cons spon l-1321 truct ding 26v1 ion
sys sys sys d sy s d te d te l te v a ste le at m esi m ev m ol ta m w a red e ta l ge
a a a a t t t t r le le le le at as as o as as e t o t o f t o t o
f f f f
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cl cla cla cl cl c ai im slew im ai ai la se m -ra m m im t-p te oin
t
da da da da ta ta ta ta 1 2 1 1 1 2 ] ] ] ] ] ]
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]
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cla cla s cla cla cl cl im im lew im im aim ai se -ra m t-p
te oin
t da da da d ta ta t at 1 2 1 1 a a 2
1 ] ] ] ] ] ]
d da at ta a
ou pr a Pro In th ra sp D {O ou pa Pro In ou p a Pro In o pa Pr In lesp D [ tp io gram iti e te eci at ut tp ri gra iti tp ri gra it ut ri ogr it vec a Ou ut r P m al fyin a pu u or P mm al u o P mm ial pu o amm ia eify ta tp O ing g t} t O ing t r O ing t r P ing l l ing ut
L L O ] P L L
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t L f pr t p
- o ovid o to to fo rovid vo re co ch ed vo re co vo re co vo re co r ed lta t gu nfig a lta tgu nfig lta t gu nfig lt gu nfig ge h lat urat ng ge hlat ura ge h lat ura ag thla ura . e or ion reg e . eor tion . e or tion e etor tion t ul v . h
ato o e vo r. th lta t lt fi e ge fi fi fi h ag rst rst rst rst POe e i i L
nfor o de t nfor info info d mat sir o mat rma rma es t ion f ed ion tion tion ire o gen a gena ge a gea d era ft o a eraft ner ft nerf tio e ut tioe atio e atiote r a n r pu slew n r n r n r eg s
t P -ra ula P et-
O te tor O po L . L int pow d pow d pow d po er- a sl er a er a we da o up ta ew -up ta -up ta r-up t utp
a u vo reg t re lta ul gu “ ge ato lat 79 rec ) r rec rec re or 8 o eive r o eiv o eiv o ceiv d at ed ed ed
f e d f f f d a v at a ta a a o a Pate n n n an ltage nt b (i b b b
u f .e u u u t o ., t t t
r
b b b b y y y y

78ou mea vo cla 1 ouup out mo1cl ti co c9 e
HOU Jo tp sur lta im 1 tpo put- nit0ai m nfig la nabl con cla8 STON in ut ed g . utn volta ori.m in ura im. e/dis figu im : t . e . ge ng g tion able ratio .
n
P a . 1 T T1 1 1 R 0 h m h Th T . d , e eas e, da ,e ,h
at ured w ta w e a he . he wh v wh rei re ere 4 ol er n in in 0219 -5 tag ein po p p 27.00 (d e w ow ow po 002: ) co er der e we
rre a r r spo ta nds d d d
at a d a a ta a ta Cla v s s ta im le c ol incai ac . sa v sa on ta cluond idon idco
e i tro ge detr tr nt l d l tha s ol in ol i rol
t clu ncl fa de in ude i
ul s iti s nit Co o ou t- al ia 113 nstr tp i - l-2126 uctio f ut- s v1 n t le
s o sys v sy sy s a te el ba aste st ys id m se tm em te s d m ai d le a a
as t
- o t t f le le
- o as a s o t o st o f ai f
d f f Ch ar t
[SFault [ATi [ In [A En [ I e-mon GRm Se iti G able/ S ni eitori EEin e al RE disab e tia ng Dg ED le e l
] ]
‘7 ‘7 ‘ 98 9 79 8 c 8
onfi con d gura figu at tion ratio P a n at Pa Pa en te te t, nt n
, t,
da cla cl ta c imd aim la a im ta
da d ta at 1 1 1 a ] ] ]
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] l ]
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con co d fi nfig a gu ura ta ra tion Pa Ptio te atn Pa nt en te , t, nt
,
da cl c ta c ai lai la m da m im t a
da d ta at 1 1 1 a ] ] ]
thPO op D Fau PaDT o paPr In oP pD En o p er era at lt-m O atim utp ri ogra it utpO roa able u raProg In e L tin a onito L cain u o mm ia uL duta /disa tp io ram itia
g ring h g t r Ping l t. ce ble ut rPmi l
an O Ong
ge L L ireg co reg u t re t sula nce ul se o gu h t tor rni ato d v la a o s ng r o reg con tor t vo r c a lta tul figu lt egu onfi da ge hato rat ag thla gur f i t . er ion an e etor atio au co n a da . n lt nd t llo . itio o ws
n t fi fi
h rs r edet t ou st erm tp
- o ine info ut inf ccuo rma fr orm us rs.u tion o atio e t tp gena m d ge n d h ut eraft a at neaf
e tioer a ratite n P on r da O
- o ta p oL t f sta ro r
- o tus p duc
- o pr owe d ing pow d n ov r-u at dis er- a dete e idew p a allor up ta rm d he wseg ine n ula “7 tor 9 o o re 8 o ce rec
r r ived o eive f d m f
- o in Pa re an a ten a n t bti b n b
m u a u ye t t t i o f a
b b y y

79i
H J regsa up tempe mo cl1 ou sd cl 1 cu dc 1 o aou m c vlc v c OUS oi ulaid o rature nit ai6 tp aiat ai 5 rre ala 4 ut tput on la1 olevom o la1 TON nt to n -statu ori m. u da m nt taim pu -curr itor im3 taepar lta im2 : r. s ng t . . t. meent ing . gel iso g .
asu n e red a meco co
P t a asurres rre o . 1 red pon 1 spo1 R l T a ds T nds T 1T f 1 . ea mea ,h n 3 h 3 h h 0T
s sur e d , e le , e ,e v d h t ed wh ve w alsa a , e
ere l he ueid ta 4 in wh wh rei . w 02 - p ere er n he 1927.0 5( o a in po ein po p rep 0002 d o d we we w cu ow in ow : ) ne a r k r er rre d er o e
ta no o nt a ouf cor r
w f ta tp resp
n cu d ut ond rre a sa s po nt sa ta i C int- s id d lai of-lo tem i a t t s m ad per ncl idco o s co o co in aic atur d ud nt a nt sa n clu don sco
e a es rol id ro i tro lt de tro antr ta cu a l sd l evh s l amea idol rre ou a ea nsur
f nt c tpu id l t ded au lom t. fa C lt evpar o o ul
11 ons t - eison utpu utpu t- o 3212 truct h l t-cur t-cu i a utp 6v1 ion at rent merrent os ut
s s asu s t -
ys ys red ys f b sy kn o sy a tem tem te as a ste ow st i t v o m sed t m n em s al a a le ue f id l a . le v ev ba s s as o e se t a t lta l d id ge
- o o up
- o o o o f o f f n
- o f f f Ch f ar t
[S Poin [ Fa e t-of- S ult-m e load e oni e torin
g
‘9 ‘7 99 9 8
Pa P ten at t, en t,
reg ula tor
cla c im lai m d
at a
1 1 ] ] -
5 2 -
[S Poin [ Fa e t-of- S ult-m e load e oni e torin
g
‘9 ‘7 99 9 8
Pa P ten at t, en t,
reg ula tor
cla c im lai m da
t a
1 1 ] ]
boa ponede a vo deA Poi tP oD F rd-l wearvic n lta sig nt-o heO pea ault evel red es d g n f-loa rL rat -mo e ed d e tina nito
de g ring /d
ad e
th ap e ted ireg co sula nce
tor rnin
- o b as g aonn u sw se s titch t o ing faul cond
p p h or t. itio ow a e t nec n er ro o eiv t r e
bo p a reg
moar ow ula
ore d er to us
pr r e f int d th
s ed v e yst a olt d em poag a . dis wee o ta tribdean r t f sta utevicd a o tu des s
p on
or c dete e t tio ir rm
*79 o n cuit r ine 8 freg b om ulator or or
be ei m
Pa ngp or ten la o b e t ce oaa
d f rd
th i e f

80kn poin tem com Stacl 1 le me stc 1
HOU Jo ow t-o per pa tuai 8 a asu atla STO in n f-loa atur riso s m . st red usim 7 N: t d e n .
on P. d1 e d1 R t at6 Th a T . emp a e ta6 h
erat , , e ure
w poin w 4 he t-of tem he
021 -5 correi p -loa pera core p 927.00 (d resn ow d tur rrein o 002: ) l o pon er e spo we ev f ds nds r
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v me id rol i tro al asu d l ue sa red . id
t le
1 Con temp v ttem 1321 stra oerat reg el opera 26v ction ure ul ture 1 an a - ato -
d t a sys r sy te sa ste l m id m ea o a st f
sa id on o e o
f f
a Ch t art
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‘9 ‘9 7 99 9 9 9 8
Pa Pa P te te ate nt nt n , , t,
reg reg ula ula tor to
r cla cl cl im aim ai m d
at a
1 1 1 ] ] ] -
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e d e ad e itorin g
“9 ‘9 ‘7 99 99 9 8
Pa Pa P te te ate nt n n , t, t,
reg re ula gul tor ato
r cla cl cl im aim ai m da
t a
1 1 1 ] ] ]
boa pone de a vo de A Poi bo poned a v dA Po tP o D F rd-l wear vi n lt sig nt-of ard- wearevi n olt es int- heO pe a ault eve red ce d ag n -load leve re ce d ag ign of-lo rL rat ta -mon l s e ed l d s e ed ad e ing itor
do d ing /d e/ a e de t da ad h pt th ap r e ed e ted iegu con slat cer
ors nin
- o b o b a g on n u sw on u sw ae s t itc ane s titc s o hin s ohi fa c
g ng u on th t lt diti po p o re p p h o r . on w ao e t n ce ow aoe t n ec er rtr o ive er rt o eiv r e
b r r m o po a egu bo p a eg
- o ar w la moar ow ula u ore d er p tor ored er to s f ri pr r ed t nt f in t h s ed v s ed v e yst a olt ys a ol d em po ag tem p ta a . d w e . ow ge o ta istride a er distda er t sta butvi n a ribuevn o f tu edce d tediced a s s s o
po p d ne rt c or c eter t ion irc tio ir min ‘ o ui to n cu e 79 t f re it 8 ro gu fr reg o o be m lator b om ulator r r
b be ei e m P n p in ore at g la o b gpl b e ce oa a ac o o a nt d f rd ed f ar
d th t i e h f
e

81}
H le a sa a con faul pr s st ge re ou le cou s ini s b fre r l 2 OU Jo as t i n tro t-mo ovi ai or ner gul tp a nfigs tor tial-co to u roce eg ea STON in t d d ller nito din d in ati ato u st uratin ag nfig rin s miv ula s 4 : t l ring g g ng r; t iong e uratio g ; ing to t .
ea n r st u fa s P
on ult-m in O o
P e onit g L ne a a on .R orin e . o g f o t c A n ault- f d a ontr
e mon le ev t olle P itori ou a ic r m O s v s ng sa tput- st e; l in poi et 4 L a i a tor i param ea itial-c nt-o ho 02192 -5 id a t ag sa d eter s onfig com f-loa d 7.000 (d POL e i t urat pr d 02: ) -par l d ion isin
ame ea g: ter s s da
re a a t a a gu id t ta p a lato t ou or
C r. d tp l tio la le a ut; ea n po o im a ta a de s rti st se vi t t on v f
rial por ce; o ia c
tio d ont d t n de at roll ata a o one termine a a ing 1 Con o 1321 struc po s f se ( 26v1 tion rt da a o ri "P
io t id d i al OL t n a a P sa n f ")
- o ta O o id
- o o L s f f a ai f mo b d nito u s a P d sa r s a n in O at i ; id i iti L a d o n aal- d a
f t a t
ta a
C t ha rt
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b ‘7 ‘9 “7 9 u 98 9 9 9 s 9 8 9
con figu ratio n Pa Pa Pa P te te te at nt nt nt en , , , t,
. . cla cl cl c . im aim ai la r dat m im egula a to
r da ta 1 1 1 1 ] ] ] ] -
5 4 .
[AG Da [S Fau [ Co [ In R t e lt-mo S ntro S it [S Poin EE a e nito e ller e ia e t-of-D] ring e e l e load
b ‘7 ‘9 ‘7 “ u 98 9 9 99 s 9 8 9
con figu ratio n
Pa Pa Pa P ten te te at t, nt nt en , , t,
..
cla cl cl c . im d ai ai la r at m m im egula a tor
da ta
1 1 1 1 ] ] ] ]
[S D thPO op D Fau oCi Co o paPr In bo pnd a v dA e at er era at lt-mo rc ntro ut ri ogr it ard oweaev n o es Poin e a eL tin a nito fuit iler pu o amm ia -lev err ice d lta ig t-of g ring ry t r Pin l el ed s g ne -ioa
- o Og e d d d ne L e/ de ‘9 r ad 9 b ieg con t th ap 9 u sula cer o e te s tor nin o v r d
as g r ol eg con
ta tula figu o b ge htor ratio on u sw fa c mth . e n ane s titc Pa u on orea s ohi te lt. diti t ng n on fi t t, r po p h o r
s w aroe t n ece con t in er t r o ive tro form b . u devls atio mo po a .. se ice g n oar w d t s. eneaf ore d er p cl h ratte f ri ai e ion r nt m d sy ed v
- o at ste a olt re s a m poag gul t f tat . di we ato
- o us p stribdea er r
- o t owe d utevicn a n h r-u at desd 1 det e e p a
erm po ] ine rti cir “ t on cu 79 op r o it 8 o o era ece frre r r tio o ive ogu
n f d b mlat
e or mo be Pa re an in ten gpl t b ac o bo
u ed ar a t f d i f th
b e y

82sa req i mo lewh 2 saai mo lewh 2 ss o a d w 2
HOU Jo i ue s nit asere 8 i s nit aer 7 aiai ut n at her 6 STO in d st orin tin . d r ori stein . dd pu d a ein . N: t pe g eq p ng t
rfo ueerfo rme st rm
fa d f ed s ult- a ault- a enou a mon mon abtp id in
P itori itori le ut clu .R ng po T ng po T de T . f rt h r h f s h
- o ios e tio e ur e r n a n sa the s sa id f id r te id
4 o p
02192 -5 s m r m m 7.060 (d a eth eth di et
02: ) id d od d od atn ho
ind at s si at s a. ini d epe a te ain a te o tial-c nd op d op resp f a onfig ent on co t urati
a f res f se mp on t pon rise gen l
Cla s se s s era ea im to ao a t ao tin s le idf t o id g t
as o f o o t l
sa pro f ea sa pr f f
d id vi ds i ovi a fadin cl at d fdin c e c ta ug ai ta aug la na la Co . a lt- m . lt im t ble im
1132 nstru - o 126v ction c c 1 po ont at on
rt o rolle o trol re gen io r p ler ce er n f o ivi atin
2 rtirec 2 ng g 2 a 4 onei sa
vin 4 id d 4 , g , at , a a a, t t
o f
o
C f ha rt
[S Con [S Faul [S Con [ Fau [A Gen [ In [ G e tro e t-mo e tro Se lt-m GR erate S it AG enera e ller e nito e ller e onito EE /gene e ial RE te/ge ring ring D] rating e ED nerat
] ing
‘9 ‘7 ‘9 “7 ‘7 99 9 99 9 9 8 8 8
con figu ratio n Pa Pa Pa Pa Pa te te te te te nt nt nt nt nt , , , , ,
cla cla cl cla cl im im d aim im ai a da m
t t a a
a da a n ta n 1 1 1 1 1 ] ] ] ] o ]
ut ou pu tp t ut -
5 5 .
[S Con [S Fau [S Con [ Fau [A Gen [ In [ G e tro e lt-mo e tro Se lt-m GR erate S it AG enera e ller e nito e ller e onito EE /gene e ial RE te/ge ring ring D] rating e ED nerat
] ing
‘9 ‘7 ‘9 ‘7 “7 99 9 99 9 9 8 8 8
con figu ratio n Pa Pa Pa Pa P ten te te te at t, nt nt n en , , t, t,
cla cla cla cl cl im im im aim ai da da m
t t a a
a da a n ta n 1 1 1 1 1 ] ] ] ] o ]
ut ou pu tp t ut
oCir Con thPO op Da Faul oCi Co thP op D Fau [ Gen o paPr In G fcu tro er era t t-mo rcu ntro eO er at lt-m S erate utp ri ogr it [S ener itr ller e L tin a nito fit ller reL atin a onito e /gene u o amm ia e ate/g y g ring ry g ring e ratin t r POing l e enera on o g ting e ne L
ireg con ireg co ‘9 t “ sula ce sula nce 9 o 99
- o tor rnin o to rni 9 v 9 r as g r rs ng o reg con a lta tul fig
ge hato urat
mt f mt f . er ion orha au co orh au co P e t lt ndi e a l nd a Pa . tion t t. itio te te
n nt fi n
, rs t, co c t nt ont in drol drol form evs u evs u atio ice se ice s g n s. d t s. ed t enea
h h c ratfte
e e la ion r cl d d im ai at a m
- o s a o ta t f ta t f sta
- o tus o tu p
t t s ow d h on h on an er- a a e de e e de e up ta n term ter 1 1
ine min e ] o ] ‘7 op op u ou 98 era o o era o o tp rec tp tion r r tio r r ut o eive u
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