EP3C40F780I7 Altera, EP3C40F780I7 Datasheet - Page 77

IC CYCLONE III FPGA 40K 780 FBGA

EP3C40F780I7

Manufacturer Part Number
EP3C40F780I7
Description
IC CYCLONE III FPGA 40K 780 FBGA
Manufacturer
Altera
Series
Cyclone® IIIr

Specifications of EP3C40F780I7

Number Of Logic Elements/cells
39600
Number Of Labs/clbs
2475
Total Ram Bits
1161216
Number Of I /o
535
Voltage - Supply
1.15 V ~ 1.25 V
Mounting Type
Surface Mount
Operating Temperature
-40°C ~ 100°C
Package / Case
780-FBGA
Family Name
Cyclone III
Number Of Logic Blocks/elements
39600
# I/os (max)
535
Frequency (max)
437.5MHz
Process Technology
65nm
Operating Supply Voltage (typ)
1.2V
Logic Cells
39600
Ram Bits
1161216
Operating Supply Voltage (min)
1.15V
Operating Supply Voltage (max)
1.25V
Operating Temp Range
-40C to 100C
Operating Temperature Classification
Industrial
Mounting
Surface Mount
Pin Count
780
Package Type
FBGA
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Number Of Gates
-
Lead Free Status / Rohs Status
Not Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
EP3C40F780I7
Manufacturer:
Altera
Quantity:
10 000
Part Number:
EP3C40F780I7
Manufacturer:
ALTERA
0
Part Number:
EP3C40F780I7N
Manufacturer:
MINGTEK
Quantity:
2 300
Part Number:
EP3C40F780I7N
Manufacturer:
ALTERA20
Quantity:
576
Part Number:
EP3C40F780I7N
Manufacturer:
Altera
Quantity:
10 000
Part Number:
EP3C40F780I7N
Manufacturer:
ALTERA
0
Part Number:
EP3C40F780I7N
Manufacturer:
ALTERA/阿尔特拉
Quantity:
20 000
Part Number:
EP3C40F780I7N
0
Chapter 5: Clock Networks and PLLs in the Cyclone III Device Family
Clock Feedback Modes
No Compensation Mode
Normal Mode
© December 2009
1
Altera Corporation
Set the input pin to the register delay chain in the I/O element to zero in the
Quartus II software for all data pins clocked by a source-synchronous mode PLL.
Also, all data pins must use the PLL COMPENSATED logic option in the Quartus II
software.
In no compensation mode, the PLL does not compensate for any clock networks. This
provides better jitter performance because clock feedback into the PFD does not pass
through as much circuitry. Both the PLL internal and external clock outputs are
phase-shifted with respect to the PLL clock input.
Figure 5–9
this mode.
Figure 5–9. Phase Relationship Between PLL Clocks in No Compensation Mode
Notes to
(1) Internal clocks fed by the PLL are phase-aligned to each other.
(2) The PLL clock outputs can lead or lag the PLL input clocks.
An internal clock in normal mode is phase-aligned to the input clock pin. The external
clock output pin has a phase delay relative to the clock input pin if connected in this
mode. The Quartus II software timing analyzer reports any phase difference between
the two. In normal mode, the PLL fully compensates the delay introduced by the
GCLK network.
Figure
shows a waveform example of the phase relationship of the PLL clock in
5–9:
PLL Reference
Clock at the Input Pin
PLL Clock at the
Register Clock Port
(1),
External PLL Clock
Outputs
(2)
(2)
Phase Aligned
Cyclone III Device Handbook, Volume 1
5–13

Related parts for EP3C40F780I7