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Número de pieza | LM2904D | |
Descripción | DUAL DIFFERENTIAL INPUT OPERATIONAL AMPLIFIERS | |
Fabricantes | Motorola Inc | |
Logotipo | ||
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Dual Low Power
Operational Amplifiers
Utilizing the circuit designs perfected for recently introduced Quad
Operational Amplifiers, these dual operational amplifiers feature 1) low
power drain, 2) a common mode input voltage range extending to
ground/VEE, 3) single supply or split supply operation and 4) pinouts
compatible with the popular MC1558 dual operational amplifier. The LM158
series is equivalent to one–half of an LM124.
These amplifiers have several distinct advantages over standard
operational amplifier types in single supply applications. They can operate at
supply voltages as low as 3.0 V or as high as 32 V, with quiescent currents
about one–fifth of those associated with the MC1741 (on a per amplifier
basis). The common mode input range includes the negative supply, thereby
eliminating the necessity for external biasing components in many
applications. The output voltage range also includes the negative power
supply voltage.
• Short Circuit Protected Outputs
• True Differential Input Stage
• Single Supply Operation: 3.0 V to 32 V
• Low Input Bias Currents
• Internally Compensated
• Common Mode Range Extends to Negative Supply
• Single and Split Supply Operation
• Similar Performance to the Popular MC1558
• ESD Clamps on the Inputs Increase Ruggedness of the Device without
Affecting Operation
LM358, LM258,
LM2904, LM2904V
DUAL DIFFERENTIAL INPUT
OPERATIONAL AMPLIFIERS
SEMICONDUCTOR
TECHNICAL DATA
8
1
N SUFFIX
PLASTIC PACKAGE
CASE 626
8
1
D SUFFIX
PLASTIC PACKAGE
CASE 751
(SO–8)
MAXIMUM RATINGS (TA = +25°C, unless otherwise noted.)
Rating
Symbol
LM258
LM358
LM2904
LM2904V
Unit
Power Supply Voltages
Single Supply
Split Supplies
Input Differential Voltage
Range (Note 1)
VCC
VCC, VEE
VIDR
32
±16
±32
Vdc
26
±13
±26 Vdc
Input Common Mode Voltage
Range (Note 2)
VICR
–0.3 to 32 –0.3 to 26 Vdc
Output Short Circuit Duration
Junction Temperature
Storage Temperature Range
Operating Ambient Temperature
Range
LM258
LM358
LM2904
LM2904V
tSC Continuous
TJ 150 °C
Tstg
–55 to +125
°C
TA °C
–25 to +85
0 to +70
–
–
–
–
–40 to +105
–40 to +125
NOTES: 1. Split Power Supplies.
2. For Supply Voltages less than 32 V for the LM258/358 and 26 V for the LM2904, the
absolute maximum input voltage is equal to the supply voltage.
MOTOROLA ANALOG IC DEVICE DATA
PIN CONNECTIONS
Output A 1
Inputs A
2–
3+
VEE/Gnd 4
8 VCC
7 Output B
–6
+5
Inputs B
(Top View)
ORDERING INFORMATION
Operating
Device Temperature Range
LM2904D
LM2904N
TA = –40° to +105°C
LM2904VD
TA = –40° to +125°C
LM2904VN
LM258D
LM258N
TA = –25° to +85°C
LM358D
LM358N
TA = 0° to +70°C
Package
SO–8
Plastic DIP
SO–8
Plastic DIP
SO–8
Plastic DIP
SO–8
Plastic DIP
© Motorola, Inc. 1996
Rev 2
1
1 page LM358, LM258, LM2904, LM2904V
Figure 7. Voltage Reference
R1
VCC
MC1403
VCC
R2 –
1/2
LM358
+
2.5 V
VO
VO
=
2.5 V (1 +
R1
R2
)
Figure 8. Wien Bridge Oscillator
50 k
Vref
Vref
=
1
2
VCC
10 k
R
5.0 k
– VCC
1/2
LM358
+
RC
C
VO
fo =
1
2 π RC
For: fo = 1.0 kHz
R = 16 kΩ
C = 0.01 µF
Figure 9. High Impedance Differential Amplifier
e1
+
1/2
LM358
–
1
C
R
R
R1 a R1
b R1
–
1/2
LM358
e2 +
–
1/2
LM358
+
1
C
R
R
eo
eo = C (1 + a + b) (e2 – e1)
Figure 10. Comparator with Hysteresis
R1
Vref
Vin
R2
+
1/2
LM358
–
VOH
VO
VO VOL
VinL =
R1
R1 + R2
(VOL
–
Vref)+
Vref
VinH
=
R1
R1 + R2
(VOH
–
Vref)
+
Vref
H=
R1
R1 + R2
(VOH – VOL)
Hysteresis
VinL VinH
Vref
Vin C1
R2
R
–C
1/2
LM358
+
Vref
R2
Figure 11. Bi–Quad Filter
R
100 k
C
R
–
1/2
100 k
–
1
fo = 2 π RC
R1 = QR
R2
=
R1
TBP
R3 = TN R2
Vref =
1
2
VCC
LM358
+
Vref
Bandpass
Output
R1
1/2 C1 = 10 C
LM358
+ For: fo = 1.0 kHz
Vref Q = 10
R3 TBP = 1
TN = 1
– C1
1/2
LM358
+
Notch Output R = 160 kΩ
C = 0.001 µF
R1 = 1.6 MΩ
Vref
Where: TBP = Center Frequency Gain
TN = Passband Notch Gain
R2 = 1.6 MΩ
R3 = 1.6 MΩ
MOTOROLA ANALOG IC DEVICE DATA
5
5 Page |
Páginas | Total 8 Páginas | |
PDF Descargar | [ Datasheet LM2904D.PDF ] |
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