参数资料
型号: EP2AGX260FF35C4N
厂商: Altera
文件页数: 11/90页
文件大小: 0K
描述: IC ARRIAII GX FPGA 260K 1152FBGA
产品培训模块: Three Reasons to Use FPGA's in Industrial Designs
标准包装: 3
系列: Arria II GX
LAB/CLB数: 10260
逻辑元件/单元数: 244188
RAM 位总计: 12038144
输入/输出数: 612
电源电压: 0.87 V ~ 0.93 V
安装类型: 表面贴装
工作温度: 0°C ~ 85°C
封装/外壳: 1152-BBGA
供应商设备封装: 1152-FBGA(27x27)
配用: 568-5095-ND - BOARD DEMO FOR ADC1413D125
其它名称: 544-2698
Chapter 1: Device Datasheet for Arria II Devices
1–11
Electrical Characteristics
December 2013
Altera Corporation
The calibration accuracy for calibrated series and parallel OCTs are applicable at the
moment of calibration. When process, voltage, and temperature (PVT) conditions
change after calibration, the tolerance may change.
Table 1–13 lists the Arria II GZ OCT without calibration resistance tolerance to PVT
changes.
OCT calibration is automatically performed at power up for OCT-enabled I/Os.
When voltage and temperature conditions change after calibration, the resistance may
change. Use Equation 1–1 and Table 1–14 to determine the OCT variation when
voltage and temperature vary after power-up calibration for Arria II GX and GZ
devices.
Table 1–13. OCT Without Calibration Resistance Tolerance Specifications for Arria II GZ Devices
Symbol
Description
Conditions (V)
Resistance Tolerance
Unit
C3,I3
C4,I4
25-
R
S
3.0 and 2.5
25-
internal series
OCT without
calibration
VCCIO = 3.0, 2.5
± 40
%
25-
R
S
1.8 and 1.5
25-
internal series
OCT without
calibration
VCCIO = 1.8, 1.5
± 40
%
25-
R
S
1.2
25-
internal series
OCT without
calibration
VCCIO = 1.2
± 50
%
50-
R
S
3.0 and 2.5
50-
internal series
OCT without
calibration
VCCIO = 3.0, 2.5
± 40
%
50-
R
S
1.8 and 1.5
50-
internal series
OCT without
calibration
VCCIO = 1.8, 1.5
± 40
%
50-
R
S
1.2
50-
internal series
OCT without
calibration
VCCIO = 1.2
± 50
%
100-
R
D
2.5
100-
internal
differential OCT
VCCIO = 2.5
± 25
%
Equation 1–1. OCT Variation (Note 1)
(1) ROCT value calculated from Equation 1–1shows the range of OCT resistance with the variation of temperature and
VCCIO.
ROCT
RSCAL 1
dR
dT
-------
T
dR
dV
-------
V
+
=
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