EP1S10F484I6 Altera, EP1S10F484I6 Datasheet - Page 121

IC STRATIX FPGA 10K LE 484-FBGA

EP1S10F484I6

Manufacturer Part Number
EP1S10F484I6
Description
IC STRATIX FPGA 10K LE 484-FBGA
Manufacturer
Altera
Series
Stratix®r
Datasheets

Specifications of EP1S10F484I6

Number Of Logic Elements/cells
10570
Number Of Labs/clbs
1057
Total Ram Bits
920448
Number Of I /o
335
Voltage - Supply
1.425 V ~ 1.575 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
484-FBGA
Family Name
Stratix
Number Of Logic Blocks/elements
10570
# I/os (max)
335
Frequency (max)
450.05MHz
Process Technology
0.13um (CMOS)
Operating Supply Voltage (typ)
1.5V
Logic Cells
10570
Ram Bits
920448
Operating Supply Voltage (min)
1.425V
Operating Supply Voltage (max)
1.575V
Operating Temp Range
-40C to 100C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
484
Package Type
FC-FBGA
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Number Of Gates
-
Lead Free Status / Rohs Status
Not Compliant

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Altera Corporation
July 2005
VCO period from up to eight taps for individual fine step selection. Also,
each clock output counter can use a unique initial count setting to achieve
individual coarse shift selection in steps of one VCO period. The
combination of coarse and fine shifts allows phase shifting for the entire
input clock period.
The equation to determine the precision of the phase shifting in degrees
is: 45
45 , and smaller steps are possible depending on the multiplication and
division ratio necessary on the output counter port.
This type of phase shift provides the highest precision since it is the least
sensitive to process, supply, and temperature variation.
Clock Delay
In addition to the phase shift feature, the ability to fine tune the t clock
delay provides advanced time delay shift control on each of the four PLL
outputs. There are time delays for each post-scale counter (e, g, or l) from
the PLL, the n counter, and m counter. Each of these can shift in 250-ps
increments for a range of 3.0 ns. The m delay shifts all outputs earlier in
time, while n delay shifts all outputs later in time. Individual delays on
post-scale counters (e, g, and l) provide positive delay for each output.
Table 2–21
delay buffer mode where t
The t
delay shift difference between any two PLL outputs, however, must be
less than 3 ns. For example, shifts on two outputs of –1 and +2 ns is
allowed, but not –1 and +2.5 ns because these shifts would result in a
difference of 3.5 ns. If the design uses external feedback, the t
remove delay from outputs, represented by a negative sign (see
Table
feedback loop.
Note to
(1)
Table 2–21. Output Clock Delay for Enhanced PLLs
t
t
t
Normal or Zero Delay Buffer Mode
eOUTPUT
gOUTPUT
lOUTPUT
OUTPUT
2–21). This effect occurs because the t
t
e
Table
removes delay from outputs in external feedback mode.
post-scale counter value. Therefore, the maximum step size is
= t
= t
= t
shows the combined delay for each output for normal or zero
for a single output can range from –3 ns to +6 ns. The total
n
2–21:
n
n
t
t
t
m
m
m
+ t
+ t
+ t
l
e
g
e
, t
g
, or t
t
t
t
l
eOUTPUT
gOUTPUT
lOUTPUT
Stratix Device Handbook, Volume 1
is unique for each PLL output.
External Feedback Mode
e
= t
delay is then part of the
= t
= t
n
n
n
t
t
t
m
m
m
Stratix Architecture
+ t
+ t
t
e
l
g
(1)
e
delay will
2–97

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