EP1S80B956C7N Altera, EP1S80B956C7N Datasheet - Page 863

IC STRATIX FPGA 80K LE 956-BGA

EP1S80B956C7N

Manufacturer Part Number
EP1S80B956C7N
Description
IC STRATIX FPGA 80K LE 956-BGA
Manufacturer
Altera
Series
Stratix®r
Datasheet

Specifications of EP1S80B956C7N

Number Of Logic Elements/cells
79040
Number Of Labs/clbs
7904
Total Ram Bits
7427520
Number Of I /o
683
Voltage - Supply
1.425 V ~ 1.575 V
Mounting Type
Surface Mount
Operating Temperature
0°C ~ 85°C
Package / Case
956-BGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Number Of Gates
-

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EP1S80B956C7N
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0
Figure 14–20. Split Board Layout for 2.5-V Systems With 5.0-V & 1.5-V Devices
Conclusion
Altera Corporation
January 2005
PCB
Device
Device
2.5-V
2.5-V
Device
5.0-V
5.0 V
Split-Plane Method
The split-plane design method reduces the number of planes required by
placing two power supply planes in one plane (see
example, the layout for this method can be structured as follows:
This technique assumes that the majority of devices are 2.5-V. To support
MultiVolt I/O, Altera devices must have access to 1.5-V and 2.5-V planes.
With the proliferation of multiple voltage levels in systems, it is
important to design a voltage system that can support a low-power
device like Cyclone devices. Designers must consider key elements of the
PCB, such as power supplies, regulators, power consumption, and board
layout when successfully designing a system that incorporates the low-
voltage Cyclone family of devices.
One 2.5-V plane, covering the entire board
One plane split between 5.0-V and 1.5-V
Device
Device
5.0-V
2.5-V
Regulator
Device
1.5-V
Stratix Device Handbook, Volume 2
Cyclone
1.5 V
Designing with 1.5-V Devices
(1.5 V)
FPGA
Altera
Figure
Device
Device
1.5-V
2.5-V
14–20). For
14–23

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