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EL5281CS 参数 Datasheet PDF下载

EL5281CS图片预览
型号: EL5281CS
PDF下载: 下载PDF文件 查看货源
内容描述: 双8ns的高速比较器 [Dual 8ns High-Speed Comparator]
分类和应用: 比较器放大器放大器电路光电二极管局域网
文件页数/大小: 11 页 / 109 K
品牌: ELANTEC [ ELANTEC SEMICONDUCTOR ]
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EL5281C
EL5281C
Dual 8ns High-Speed Comparator
R
3
adds a portion of the output to the threshold set by R
1
and R
2
. The calculation of the resistor values are as
follows:
Select the threshold voltage V
TH
and calculate R
1
and
R
2
. The current through R
1
/R
2
bias string must be many
times greater than the input bias current of the
comparator:
R
1
V
T H
= V
R E F
×
-------------------
R +R
1
2
Check the current through R
3
and make sure that it is
much greater than the input bias current as follows:
0.5V
S D
– V
R E F
I = ---------------------------------------
-
R
3
The above two methods will generate hysteresis of up to
a few hundred millivolts. Beyond that, the impedance of
R
3
is low enough to affect the bias string and adjustment
of R
1
may be required.
Let the hysteresis be V
H
, and calculate R
3
:
V
O
R
3
= --------
× (
R
1
||
R
2
)
V
H
Power Dissipation
When switching at high speeds, the comparator's drive
capability is limited by the rise in junction temperature
caused by the internal power dissipation. For reliable
operation, the junction temperature must be kept below
T
JMAX
(125°C).
An approximate equation for the device power dissipa-
tion is as follows. Assume the power dissipation in the
load is very small:
P
DISS
=
(
V
S
×
I
S
+ V
SD
×
I
S D
) ×
N
where:
V
O
=V
SD
-0.8V (swing of the output)
Recalculate R
2
to maintain the same value of V
TH
:
V
T H
V
T H
– 0.5V
SD
R
2
1 =
(
V
REF
– V
TH
) ÷ 
----------- + -------------------------------------
R
3
R
1
Non inverting comparator with hysteresis:
where:
R
3
V
IN
R
1
V
REF
+
-
V
S
is the analog supply voltage from V
S
+ to V
S
-
I
S
is the analog quiescent supply current per comparator
V
SD
is the digital supply voltage from V
SD
to ground
I
SD
is the digital supply current per comparator
N is the number of comparators in the package
I
SD
strongly depends on the input switching frequency.
Please refer to the performance curve to choose the input
driving frequency. Having obtained the power dissipa-
tion, the maximum junction temperature can be
determined as follows:
T
J M A X
= T
M A X
+
Θ
J A
×
P
D I S S
R
3
adds a portion of the output to the positive input.
Note that the current through R
3
should be much greater
than the input bias current in order to minimize errors.
The calculation of the resistor values as follows:
Pick the value of R
1
. R
1
should be small (less than 1kΩ)
in order to minimize the propagation delay time.
Choose the hysteresis V
H
and calculate R
3
:
R
1
R
3
=
(
V
S D
– 0.8
) ×
--------
V
H
where:
T
MAX
is the maximum ambient temperature
θ
JA
is the thermal resistance of the package
9