EP3C10M164C8N Altera, EP3C10M164C8N Datasheet - Page 135

IC CYCLONE III FPGA 402MHZ BGA-164

EP3C10M164C8N

Manufacturer Part Number
EP3C10M164C8N
Description
IC CYCLONE III FPGA 402MHZ BGA-164
Manufacturer
Altera
Series
Cyclone IIIr
Datasheets

Specifications of EP3C10M164C8N

No. Of Logic Blocks
645
Family Type
Cyclone III
No. Of I/o's
106
I/o Supply Voltage
3.3V
Operating Frequency Max
402MHz
Operating Temperature Range
0°C To +85°C
Family Name
Cyclone III
Number Of Logic Blocks/elements
10320
# I/os (max)
106
Frequency (max)
402MHz
Process Technology
65nm
Operating Supply Voltage (typ)
1.2V
Logic Cells
10320
Ram Bits
423936
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
164
Package Type
MBGA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Part Number:
EP3C10M164C8N
Manufacturer:
ALTERA
0
Chapter 7: High-Speed Differential Interfaces in the Cyclone III Device Family
High-Speed I/O Standards Support
Figure 7–6. RSDS, Mini-LVDS, or PPDS Interface with External Resistor Network on the Top and Bottom I/O
Banks
Note to
(1)
© December 2009
R
S
Figure
= 120
(Note 1)
Ω;
7–6:
R
1
P
Altera Corporation
= 170
Cyclone III Device Family
Emulated RSDS,
Mini-LVDS, or PPDS
Transmitter
Ω
Figure 7–6
output buffers and external resistors.
A resistor network is required to attenuate the output voltage swing to meet RSDS,
mini-LVDS, and PPDS specifications when using emulated transmitters. You can
modify the resistor network values to reduce power or improve the noise margin.
The resistor values chosen must satisfy
Equation 7–1.
Altera recommends that you perform simulations using Cyclone III device family IBIS
models to validate that custom resistor values meet the RSDS, mini-LVDS, or PPDS
requirements.
You can use a single external resistor instead of using three resistors in the resistor
network for an RSDS interface, as shown in
solution reduces the external resistor count while still achieving the required
signaling level for RSDS. However, the performance of the single-resistor solution is
lower than the performance with the three-resistor network.
R
------------------- -
R
S
S
×
+
R
----- -
R
----- -
2
2
P
P
=
50 Ω
shows a RSDS, mini-LVDS, or PPDS interface with two singled-ended
Resistor Network
R
R
S
S
R
P
50 Ω
50 Ω
Equation
Figure
100 Ω
7–1.
7–7. The external single-resistor
RSDS, Mini-LVDS,
or PPDS Receiver
Cyclone III Device Handbook, Volume 1
7–11

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