EP3C55F484C7N Altera, EP3C55F484C7N Datasheet - Page 88
EP3C55F484C7N
Manufacturer Part Number
EP3C55F484C7N
Description
IC CYCLONE III FPGA 55K 484FBGA
Manufacturer
Altera
Series
Cyclone® IIIr
Datasheets
1.EP3C5F256C8N.pdf
(5 pages)
2.EP3C5F256C8N.pdf
(34 pages)
3.EP3C5F256C8N.pdf
(66 pages)
4.EP3C5F256C8N.pdf
(14 pages)
5.EP3C5F256C8N.pdf
(76 pages)
6.EP3C10M164C8N.pdf
(350 pages)
7.EP3C55F484C7N.pdf
(274 pages)
Specifications of EP3C55F484C7N
Number Of Logic Elements/cells
55856
Number Of Labs/clbs
3491
Total Ram Bits
2396160
Number Of I /o
327
Voltage - Supply
1.15 V ~ 1.25 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
484-FBGA
Family Name
Cyclone III
Number Of Logic Blocks/elements
55856
# I/os (max)
327
Frequency (max)
437.5MHz
Process Technology
65nm
Operating Supply Voltage (typ)
1.2V
Logic Cells
55856
Ram Bits
2396160
Operating Supply Voltage (min)
1.15V
Operating Supply Voltage (max)
1.25V
Operating Temp Range
0C to 85C
Operating Temperature Classification
Commercial
Mounting
Surface Mount
Pin Count
484
Package Type
FBGA
No. Of Logic Blocks
3491
Family Type
Cyclone III
No. Of I/o's
327
I/o Supply Voltage
3.3V
Operating Frequency Max
437.5MHz
Operating Temperature Range
0°C To +85°C
Rohs Compliant
Yes
For Use With
544-2601 - KIT DEV CYCLONE III LS EP3CLS200544-2411 - KIT DEV NIOS II CYCLONE III ED.
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Number Of Gates
-
Lead Free Status / Rohs Status
Compliant
Other names
544-2509
Available stocks
Company
Part Number
Manufacturer
Quantity
Price
- EP3C5F256C8N PDF datasheet
- EP3C5F256C8N PDF datasheet #2
- EP3C5F256C8N PDF datasheet #3
- EP3C5F256C8N PDF datasheet #4
- EP3C5F256C8N PDF datasheet #5
- EP3C10M164C8N PDF datasheet #6
- EP3C55F484C7N PDF datasheet #7
- Current page: 88 of 274
- Download datasheet (6Mb)
5–24
PLL Cascading
Figure 5–19. PLL Cascading Using GCLK
PLL Reconfiguration
Cyclone III Device Handbook, Volume 1
Output from PLL
Control Blocks
Five Clock
from two Clock
pins at adjacent
edge of device
Remote clock
CLK[0..3]
Two PLLs are cascaded to each other through the clock network. If your design
cascades PLLs, the source (upstream) PLL must have a low-bandwidth setting, while
the destination (downstream) PLL must have a high-bandwidth setting.
Figure 5–19
PLLs use several divide counters and different VCO phase taps to perform frequency
synthesis and phase shifts. In Cyclone III device family PLLs, you can reconfigure
both counter settings and phase shift the PLL output clock in real time. You can also
change the charge pump and loop filter components, which dynamically affects PLL
bandwidth. You can use these PLL components to update the output clock frequency,
PLL bandwidth, and phase shift in real time, without reconfiguring the entire FPGA.
2
PLL
PLL
2
3
1
5
1
Output from PLL
GCLK[0..4]
shows using GCLK while cascading PLLs.
20
GCLK[0:19]
Input to PLL
5
2
2
GCLK[15..19]
Control Blocks
GCLK[0:19]
Five Clock
CLK[8..11]
CLK[12..15]
1
20
4
GCLK[10..14]
20
1
Control Blocks
GCLK[0:19]
Chapter 5: Clock Networks and PLLs in the Cyclone III Device Family
Five Clock
GCLK[0:19]
2
2
Output from PLL
GCLK[5..9]
5
20
1
© December 2009 Altera Corporation
PLL
PLL
2
5
4
2
2
CLK[4..7]
4
Output from PLL
Five Clock
Control Blocks
PLL Cascading
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