參數(shù)資料
型號(hào): FLEX10KA
廠商: Altera Corporation
英文描述: Embedded Programmable Logic Family
中文描述: 嵌入式可編程邏輯系列
文件頁數(shù): 56/114頁
文件大?。?/td> 1422K
代理商: FLEX10KA
56
Altera Corporation
FLEX 10K Embedded Programmable Logic Family Data Sheet
Notes to tables:
(1)
Microparameters are timing delays contributed by individual architectural elements. These parameters cannot be
measured explicitly.
(2)
Operating conditions: V
CCIO
= 5.0 V
±
5
%
for commercial use in FLEX 10K devices.
V
CCIO
= 5.0 V
±
10
%
for industrial use in FLEX 10K devices.
V
CCIO
= 3.3 V
±
10
%
for commercial or industrial use in FLEX 10KA devices.
(3)
Operating conditions: V
CCIO
= 3.3 V
±
10
%
for commercial or industrial use in FLEX 10K devices.
V
CCIO
= 2.5 V
±
0.2 V for commercial or industrial use in FLEX 10KA devices.
(4)
Operating conditions: V
CCIO
= 2.5 V, 3.3 V, or 5.0 V.
(5)
Because the RAM in the EAB is self-timed, this parameter can be ignored when the
WE
signal is registered.
(6)
EAB macroparameters are internal parameters that can simplify predicting the behavior of an EAB at its boundary;
these parameters are calculated by summing selected microparameters.
(7)
These parameters are worst-case values for typical applications. Post-compilation timing simulation and timing
analysis are required to determine actual worst-case performance.
(8)
External reference timing parameters are factory-tested, worst-case values specified by Altera. A representative
subset of signal paths is tested to approximate typical device applications.
(9)
Contact Altera Applications for test circuit specifications and test conditions.
(10) These timing parameters are sample-tested only.
(11) This parameter is a guideline that is sample-tested only and based on extensive device characterization. This
parameter applies for both global and non-global clocking and for LE, EAB, and IOE registers.
Figures 26 and 27 show the asynchronous and synchronous timing
waveforms, respectively, for the EAB macroparameters in Table 16.
Figure 26. EAB Asynchronous Timing Waveforms
EAB Asynchronous Read
EAB Asynchronous Write
WE
a0
d0
d3
t
EABRCCOMB
a1
a2
a3
d2
t
EABAA
d1
Address
Data-Out
WE
a0
din1
dout2
t
EABDD
a1
a2
din1
din0
t
EABWCCOMB
t
EABWASU
t
EABWAH
t
EABWDH
t
EABWDSU
t
EABWP
din0
Data-In
Address
Data-Out
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