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EP3C16F484I7N 参数 Datasheet PDF下载

EP3C16F484I7N图片预览
型号: EP3C16F484I7N
PDF下载: 下载PDF文件 查看货源
内容描述: [Field Programmable Gate Array, 15408 CLBs, 472.5MHz, 15408-Cell, CMOS, PBGA484, 23 X 23 MM, 2.60 MM HEIGHT, 1 MM PITCH, LEAD FREE, FBGA-484]
分类和应用: 时钟可编程逻辑
文件页数/大小: 34 页 / 836 K
品牌: INTEL [ INTEL CORPORATION ]
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Chapter 1: Cyclone III Device Datasheet
Electrical Characteristics
1–5
DC Characteristics
This section lists the I/O leakage current, pin capacitance, on-chip termination (OCT)
tolerance, and bus hold specifications for Cyclone III devices.
Supply Current
Standby current is the current the device draws after the device is configured with no
inputs or outputs toggling and no activity in the device. Use the Excel-based early
power estimator (EPE) to get the supply current estimates for your design because
these currents vary largely with the resources used.
lists I/O pin leakage
current for Cyclone III devices.
f
For more information about power estimation tools, refer to the
and the
chapter in the
Quartus II
Handbook.
Table 1–4. Cyclone III Devices I/O Pin Leakage Current
Symbol
I
I
I
OZ
Parameter
Input pin leakage current
Tristated I/O pin leakage
current
Conditions
V
I
= 0 V to V
CCIOMAX
V
O
= 0 V to V
CCIOMAX
Min
–10
–10
Typ
Max
10
10
Unit
A
A
Notes to
(1) This value is specified for normal device operation. The value varies during device power-up. This applies for all
V
CCIO
settings (3.3, 3.0, 2.5, 1.8, 1.5, and 1.2 V).
(2) 10
A
I/O leakage current limit is applicable when the internal clamping diode is off. A higher current can be the
observed when the diode is on.
Bus Hold
Bus hold retains the last valid logic state after the source driving it either enters the
high impedance state or is removed. Each I/O pin has an option to enable bus hold in
user mode. Bus hold is always disabled in configuration mode.
lists bus hold specifications for Cyclone III devices.
Table 1–5. Cyclone III Devices Bus Hold Parameter
(Part 1 of 2)
V
CCIO
(V)
Parameter
Condition
Min
Bus-hold
low,
sustaining
current
Bus-hold
high,
sustaining
current
V
IN
> V
IL
(maximum)
1.2
Max
Min
1.5
Max
Min
1.8
Max
Min
2.5
Max
3.0
Min
Max
3.3
Min
Max
A
Unit
8
12
30
50
70
70
V
IN
< V
IL
(minimum)
–8
–12
–30
–50
–70
–70
A
July 2012
Altera Corporation