This datasheet describes the electrical characteristics, switching characteristics, configuration specifications, and I/O timing for Arria
®
10 devices.
Arria 10 devices are offered in extended and industrial grades. Extended devices are offered in –E1 (fastest), –E2, and –E3 speed grades. Industrial
grade devices are offered in the –I1, –I2, and –I3 speed grades.
The suffix after the speed grade denotes the power options offered in Arria 10 devices.
•
•
•
•
L—Low static power
S—Standard power
M—Enabled with the V
CC
PowerManager feature (you can power V
CC
and V
CCP
at nominal voltage of 0.90 V or lower voltage of 0.83 V)
V—Supported with the SmartVID feature (lowest static power)
Related Information
Arria 10 Device Overview
Provides more information about the densities and packages of devices in the Arria 10 family.
Electrical Characteristics
The following sections describe the operating conditions and power consumption of Arria 10 devices.
Operating Conditions
Arria 10 devices are rated according to a set of defined parameters. To maintain the highest possible performance and reliability of the Arria 10
devices, you must consider the operating requirements described in this section.
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2
Absolute Maximum Ratings
A10-DATASHEET
2015.12.31
Absolute Maximum Ratings
This section defines the maximum operating conditions for Arria 10 devices. The values are based on experiments conducted with the devices and
theoretical modeling of breakdown and damage mechanisms. The functional operation of the device is not implied for these conditions.
Caution:
Conditions outside the range listed in the following table may cause permanent damage to the device. Additionally, device operation at
the absolute maximum ratings for extended periods of time may have adverse effects on the device.
Table 1: Absolute Maximum Ratings for Arria 10 Devices—Preliminary
Symbol
Description
Condition
Minimum
Maximum
Unit
V
CC
V
CCP
V
CCERAM
V
CCPT
V
CCBAT
V
CCPGM
V
CCIO
V
CCA_PLL
V
CCT_GXB
V
CCR_GXB
V
CCH_GXB
V
CCL_HPS
V
CCIO_HPS
(1)
Core voltage power supply
Periphery circuitry and transceiver fabric interface power
supply
Embedded memory power supply
Power supply for programmable power technology and I/O
pre-driver
Battery back-up power supply for design security volatile key
register
Configuration pins power supply
I/O buffers power supply
Phase-locked loop (PLL) analog power supply
Transmitter power
Receiver power
Transmitter output buffer power
HPS core voltage and periphery circuitry power supply
HPS I/O buffers power supply
—
—
—
—
—
(1)
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
–0.50
1.21
1.21
1.36
2.46
2.46
2.46
4.10
2.46
2.46
1.34
1.34
2.46
1.27
4.10
2.46
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
3 V I/O
LVDS I/O
—
—
—
—
—
3 V I/O
LVDS I/O
The LVDS I/O values are applicable to all dedicated and dual-function configuration I/Os.
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Maximum Allowed Overshoot and Undershoot Voltage
3
Symbol
Description
Condition
Minimum
Maximum
Unit
V
CCIOREF_HPS
V
CCPLL_HPS
I
OUT
T
J
T
STG
HPS I/O pre-driver power supply
HPS PLL power supply
DC output current per pin
Operating junction temperature
Storage temperature (no bias)
—
—
—
—
—
–0.50
–0.50
–25
–55
–65
2.46
2.46
25
125
150
V
V
mA
°C
°C
Maximum Allowed Overshoot and Undershoot Voltage
During transitions, input signals may overshoot to the voltage listed in the following table and undershoot to –2.0 V for input currents less than
100 mA and periods shorter than 20 ns.
The maximum allowed overshoot duration is specified as a percentage of high time over the lifetime of the device. A DC signal is equivalent to
100% duty cycle.
For example, a signal that overshoots to 2.70 V for LVDS I/O can only be at 2.70 V for ~4% over the lifetime of the device.
Table 2: Maximum Allowed Overshoot During Transitions for Arria 10 Devices—Preliminary
This table lists the maximum allowed input overshoot voltage and the duration of the overshoot voltage as a percentage of device lifetime. The LVDS I/O
values are applicable to the
VREFP_ADC
and
VREFN_ADC
I/O pins.
Symbol
Description
Condition (V)
LVDS I/O
(2)
3 V I/O
Overshoot Duration as % at T
J
= 100°C
Unit
2.50
2.55
Vi (AC)
AC input voltage
2.60
2.65
2.70
> 2.70
3.80
3.85
3.90
3.95
4.00
> 4.00
100
42
18
9
4
No overshoot allowed
%
%
%
%
%
%
(2)
The LVDS I/O values are applicable to all dedicated and dual-function configuration I/Os.
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Recommended Operating Conditions
A10-DATASHEET
2015.12.31
Recommended Operating Conditions
This section lists the functional operation limits for the AC and DC parameters for Arria 10 devices.
Recommended Operating Conditions
Table 3: Recommended Operating Conditions for Arria 10 Devices—Preliminary
This table lists the steady-state voltage values expected from Arria 10 devices. Power supply ramps must all be strictly monotonic, without plateaus.
Symbol
Description
Condition
Minimum
(3)
Typical
Maximum
(3)
Unit
Standard and low power
V
CC
Core voltage power supply
V
CC
PowerManager
(5)
SmartVID
(6)
V
CCP
Periphery circuitry and transceiver
fabric interface power supply
Standard and low power
V
CC
PowerManager
(5)
SmartVID
(6)
1.8 V
V
CCPGM
V
CCERAM
Configuration pins power supply
Embedded memory power supply
1.5 V
1.2 V
0.9 V
0.87
0.8, 0.87
0.8
0.87
0.8, 0.87
0.8
1.71
1.425
1.14
0.87
0.9
(4)
0.83, 0.9
—
0.9
(4)
0.83, 0.9
—
1.8
1.5
1.2
0.9
(4)
0.93
0.86, 0.93
0.93
0.93
0.86, 0.93
0.93
1.89
1.575
1.26
0.93
V
V
V
V
V
V
V
V
V
V
(3)
(4)
(5)
(6)
This value describes the budget for the DC (static) power supply tolerance and does not include the dynamic tolerance requirements. Refer to the
PDN tool for the additional budget for the dynamic tolerance requirements.
You can operate –1 and –2 speed grade devices at 0.9 V or 0.95 V typical value. You can operate -3 speed grade device at only 0.9 V typical value.
Core performance shown in this datasheet is applicable for the operation at 0.9 V. Operating at 0.95 V results in higher core performance and higher
power consumption. For more information about the performance and power consumption of 0.95 V operation, refer to the Quartus
®
Prime
software timing reports, PowerPlay Power Analyzer report, and Early Power Estimator (EPE).
You can operate V
CC
PowerManager devices at either 0.83 V or 0.9 V. Power V
CC
and V
CCP
at 0.9 V to achieve –1 speed grade performance. Power
V
CC
and V
CCP
at 0.83 V to achieve lower performance using the lowest power.
SmartVID is supported in devices with –2V and –3V speed grades only.
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Recommended Operating Conditions
5
Symbol
Description
Condition
Minimum
(3)
Typical
Maximum
(3)
Unit
V
CCBAT
V
CCPT
(7)
Battery back-up power supply
(For design security volatile key
register)
Power supply for programmable
power technology and I/O pre-driver
1.8 V
1.2 V
1.8 V
3.0 V (for 3 V I/O only)
2.5 V (for 3 V I/O only)
1.8 V
1.71
1.14
1.71
2.85
2.375
1.71
1.425
(8)
1.8
1.2
1.8
3.0
2.5
1.8
1.5
1.35
1.25
1.2
1.8
1.25
—
—
—
—
—
1.89
1.26
1.89
3.15
2.625
1.89
1.575
(8)
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
°C
°C
V
CCIO
I/O buffers power supply
1.5 V
1.35 V
1.25 V
1.2 V
1.19
(8)
1.31
(8)
V
CCA_PLL
V
REFP_ADC
V
I
(9)
PLL analog voltage regulator power
supply
Precision voltage reference for
voltage sensor
DC input voltage
Output voltage
Operating junction temperature
—
—
3 V I/O
LVDS I/O
—
Extended
Industrial
1.71
1.2475
–0.3
–0.3
0
0
–40
1.89
1.2525
3.3
2.19
V
CCIO
100
100
V
O
T
J
(3)
(7)
(8)
(9)
This value describes the budget for the DC (static) power supply tolerance and does not include the dynamic tolerance requirements. Refer to the
PDN tool for the additional budget for the dynamic tolerance requirements.
If you do not use the design security feature in Arria 10 devices, connect V
CCBAT
to a 1.5-V or 1.8-V power supply. Arria 10 power-on reset (POR)
circuitry monitors V
CCBAT
. Arria 10 devices do not exit POR if V
CCBAT
is not powered up.
For minimum and maximum voltage values, refer to the I/O Standard Specifications section.
The LVDS I/O values are applicable to all dedicated and dual-function configuration I/Os.