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LM393D 데이터시트(PDF) 5 Page - Motorola, Inc

부품명 LM393D
상세설명  SINGLE SUPPLY, LOW POWER DUAL COMPARATORS
PDF  6 Pages
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제조업체  MOTOROLA [Motorola, Inc]
홈페이지  http://www.freescale.com
Logo MOTOROLA - Motorola, Inc

LM393D 데이터시트(HTML) 5 Page - Motorola, Inc

  LM393D Datasheet HTML 1Page - Motorola, Inc LM393D Datasheet HTML 2Page - Motorola, Inc LM393D Datasheet HTML 3Page - Motorola, Inc LM393D Datasheet HTML 4Page - Motorola, Inc LM393D Datasheet HTML 5Page - Motorola, Inc LM393D Datasheet HTML 6Page - Motorola, Inc  
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LM393, LM393A, LM293, LM2903, LM2903V
5
MOTOROLA ANALOG IC DEVICE DATA
APPLICATIONS INFORMATION
These dual 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 pins.
Differential input voltages may be larger than supply
voltage without damaging the comparator’s inputs. Voltages
more negative than –0.3 V should not be used.
Figure 7. Zero Crossing Detector
(Single Supply)
Figure 8. Zero Crossing Detector
(Split Supply)
Figure 9. Free–Running Square–Wave Oscillator
Figure 10. Time Delay Generator
Figure 11. Comparator with Hysteresis
10
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
10 M
R5
220 k
R4
220 k
LM393
Vin(min) [ 0.4 V peak for 1% phase distortion (∆Θ).
*
Θ
+VCC
10 k
Vin
–VEE
Vin
Vin(min)
VCC
VO
– VEE
∆Θ
Θ
LM393
+
LM393
51 k
51 k
51 k
RL
10 k
VCC
VCC
VCC
VO
VO
t
0
1.0 M
0.001
µF
+
LM393
VCC
VCC
VO
Vin
VO
+ Vref
Vref
Vref
0
0
0
VC
tO
t
‘‘ON’’ for t
­ tO + ∆t
where:
∆t = RC n (
Vref
VCC
)
R
RL
VC
C
LM393
+
RS
VCC
RL
Vref
R1
R2
RS = R1 | | R2
Vth1 = Vref +
(VCC –Vref) R1
R1 + R2 + RL
Vth2 = Vref –
(Vref –VO Low) R1
R1 + R2
R1
t
+
LM393
)
*
)



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