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LM239ADR2 数据表(PDF) 4 Page - ON Semiconductor

部件名 LM239ADR2
功能描述  Quad Single Supply Comparators
PDF  8 Pages
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制造商  ONSEMI [ON Semiconductor]
网页  http://www.onsemi.com
标志 ONSEMI - ON Semiconductor

LM239ADR2 数据表(HTML) 4 Page - ON Semiconductor

  LM239ADR2 Datasheet HTML 1Page - ON Semiconductor LM239ADR2 Datasheet HTML 2Page - ON Semiconductor LM239ADR2 Datasheet HTML 3Page - ON Semiconductor LM239ADR2 Datasheet HTML 4Page - ON Semiconductor LM239ADR2 Datasheet HTML 5Page - ON Semiconductor LM239ADR2 Datasheet HTML 6Page - ON Semiconductor LM239ADR2 Datasheet HTML 7Page - ON Semiconductor LM239ADR2 Datasheet HTML 8Page - ON Semiconductor  
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LM339, LM339A, LM239, LM239A, LM2901, M2901V, MC3302
http://onsemi.com
4
Figure 7. Driving Logic
Figure 8. Squarewave Oscillator
Logic
Device
VCC
(V)
RL
k
CMOS
TTL
1/4 MC14001
1/4 MC7400
+15
+5.0
100
10
RS = Source Resistance
R1
] RS
T1 = T2 = 0.69 RC
f
[
7.2
C(
µF)
R2 = R3 = R4
R1
[ R2 // R3 // R4
+
+
VCC
Vin
Vref
VCC ≥ 4.0 V
VCC
+
C
330 k
R4
330 k
R3
R1
100 k
10 k
R1
T1
T2
VCC
VO
RS
RL
R2
330 k
APPLICATIONS INFORMATION
These quad comparators feature high gain, wide
bandwidth characteristics. This gives the device oscillation
tendencies if the outputs are capacitively coupled to the
inputs via stray capacitance. This oscillation manifests itself
during output transitions (VOL to VOH). To alleviate this
situation input resistors < 10 k
Ω should be used. The
addition of positive feedback (< 10 mV) is also
recommended. It is good design practice to ground all
unused input pins.
Differential input voltages may be larger than supply
voltages without damaging the comparator’s inputs.
Voltages more negative than –300 mV should not be used.
10
Figure 9. Zero Crossing Detector
(Single Supply)
Figure 10. Zero Crossing Detector
(Split Supplies)
Vin(min) ≈ 0.4 V peak for 1% phase distortion (∆Θ).
D1 prevents input from going negative by more than 0.6 V.
R1 + R2 = R3
R3
R5
for small error in zero crossing
Vin
10 k
D1
R1
8.2 k
6.8 k
R2
15 k
R3
+15 V
*
Θ
VCC
10 k
Vin
VEE
Vin
Vin(min)
VCC
VO
VEE
∆Θ
Θ
*
)
10 M
R5
220 k
R4
220 k
VO
VO
+



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