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PDF ( 数据手册 , 数据表 ) MC33074

零件编号 MC33074
描述 (MC33071 / MC33072 / MC33074) HIGH BANDWIDTH SINGLE SUPPLY OPERATIONAL AMPLIFIERS
制造商 Motorola Semiconductors
LOGO Motorola Semiconductors LOGO 


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MC33074 数据手册, 描述, 功能
Order this document by MC34071/D
High Slew Rate, Wide
Bandwidth, Single Supply
Operational Amplifiers
Quality bipolar fabrication with innovative design concepts are employed
for the MC33071/72/74, MC34071/72/74 series of monolithic operational
amplifiers. This series of operational amplifiers offer 4.5 MHz of gain
bandwidth product, 13 V/µs slew rate and fast setting time without the use of
JFET device technology. Although this series can be operated from split
supplies, it is particularly suited for single supply operation, since the
common mode input voltage range includes ground potential (VEE). With A
Darlington input stage, this series exhibits high input resistance, low input
offset voltage and high gain. The all NPN output stage, characterized by no
deadband crossover distortion and large output voltage swing, provides high
capacitance drive capability, excellent phase and gain margins, low open
loop high frequency output impedance and symmetrical source/sink AC
frequency response.
The MC33071/72/74, MC34071/72/73 series of devices are available in
standard or prime performance (A Suffix) grades and are specified over the
commercial, industrial/vehicular or military temperature ranges. The
complete series of single, dual and quad operational amplifiers are available
in plastic DIP and SOIC surface mount packages.
Wide Bandwidth: 4.5 MHz
High Slew Rate: 13 V/µs
Fast Settling Time: 1.1 µs to 0.1%
Wide Single Supply Operation: 3.0 V to 44 V
Wide Input Common Mode Voltage Range: Includes Ground (VEE)
Low Input Offset Voltage: 3.0 mV Maximum (A Suffix)
Large Output Voltage Swing: –14.7 V to +14 V (with ±15 V Supplies)
Large Capacitance Drive Capability: 0 pF to 10,000 pF
Low Total Harmonic Distortion: 0.02%
Excellent Phase Margin: 60°
Excellent Gain Margin: 12 dB
Output Short Circuit Protection
ESD Diodes/Clamps Provide Input Protection for Dual and Quad
Op Amp
Function
Single
Dual
Quad
ORDERING INFORMATION
Device
Operating
Temperature Range
MC34071P, AP
MC34071D, AD
TA = 0° to +70°C
MC33071P, AP
MC33071D, AD
TA = –40° to +85°C
MC34072P, AP
MC34072D, AD
TA = 0° to +70°C
MC33072P, AP
MC33072D, AD
TA = –40° to +85°C
MC34074P, AP
MC34074D, AD
TA = 0° to +70°C
MC33074P, AP
MC33074D, AD
TA = –40° to +85°C
Package
Plastic DIP
SO–8
Plastic DIP
SO–8
Plastic DIP
SO–8
Plastic DIP
SO–8
Plastic DIP
SO–14
Plastic DIP
SO–14
MC34071,2,4,A
MC33071,2,4,A
HIGH BANDWIDTH
SINGLE SUPPLY
OPERATIONAL AMPLIFIERS
8
1
P SUFFIX
PLASTIC PACKAGE
CASE 626
8
1
D SUFFIX
PLASTIC PACKAGE
CASE 751
(SO–8)
PIN CONNECTIONS
Offset Null 1
8 NC
Inputs
2
3
VEE 4
+
7 VCC
6 Output
5 Offset Null
(Single, Top View)
Output 1 1
2–
Inputs 1 +
3
VEE 4
8 VCC
7 Output 2
–6
+
Inputs 2
5
(Dual, Top View)
14
1
14
1
P SUFFIX
PLASTIC PACKAGE
CASE 646
D SUFFIX
PLASTIC PACKAGE
CASE 751A
(SO–14)
PIN CONNECTIONS
Output 1 1
Inputs 1
2
+
1
3
VCC 4
Inputs 2
5
6
+2
Output 2 7
14 Output 4
4
13
+
12
Inputs 4
11 VEE
3 + 10
–9
Inputs 3
8 Output 3
(Quad, Top View)
MOTOROLA ANALOG IC DEVICE DATA
© Motorola, Inc. 1996
Rev 0
1







MC33074 pdf, 数据表
MC34071,2,4,A MC33071,2,4,A
Figure 21. Percent Overshoot versus
Load Capacitance
100
VCC = +15 V
80 VEE = –15 V
RL = 2.0 k
VO = –10 V to +10 V
60 TA = 25°C
40
20
0
10 100 1.0 k 10 k
CL, LOAD CAPACITANCE (pF)
Figure 22. Phase Margin versus
Load Capacitance
70
60 VCC = +15 V
VEE = –15 V
R50
AV = +1.0
RL = 2.0 k to
40
VO = –10 V to +10 V
TA = 25°C
30
20
10
0
10 100 1.0 k 10 k
CL, LOAD CAPACITANCE (pF)
Figure 23. Gain Margin versus Load Capacitance
14
12 VCC = +15 V
VEE = –15 V
10
AV = +1.0
RL = 2.0 k to
8.0
VO = –10 V to +10 V
TA = 25°C
6.0
4.0
2.0
0
10 100 1.0 k 10 k
CL, LOAD CAPACITANCE (pF)
Figure 24. Phase Margin versus Temperature
80
CL = 10 pF
60 CL = 100 pF
40
20
0
–55
CL = 1,000 pF
VCC = +15 V
VEE = –15 V
AV = +1.0
RL = 2.0 k to
VO = –10 V to +10 V
CL = 10,000 pF
–25 0 25 50 75 100 125
TA, AMBIENT TEMPERATURE (°C)
Figure 25. Gain Margin versus Temperature
16
VCC = +15 V
12 VEE = –15 V
AV = +1.0
RL = 2.0 k to
8.0 VO = –10 V to +10 V
CL = 10 pF
CL = 100 pF
4.0 CL = 1,000 pF
CL = 10,000 pF
0
–55 –25
0
25 50
75 100
TA, AMBIENT TEMPERATURE (°C)
125
Figure 26. Phase Margin and Gain Margin
versus Differential Source Resistance
12 70
10 Gain
8.0
R1
VO
6.0 +
R2
4.0 VCC = +15 V
2.0
VEE = –15 V
RT = R1 + R2
0
AV = +100
VO = 0 V
TA = 25°C
Phase
1.0 10 100 1.0 k 10 k
RT, DIFFERENTIAL SOURCE RESISTANCE ()
60
50
40
30
20
10
0
100 k
8 MOTOROLA ANALOG IC DEVICE DATA







MC33074 equivalent, schematic
MC34071,2,4,A MC33071,2,4,A
Figure 61. High Impedance Differential Amplifier
+
MC34074
R
RE
R
MC34074
+
RR
MC34074
+
VO
R Example:
Let: R = RE = 12 k
R
R
Then: AV = 3.0
BW = 1.5 MHz
AV =
1+2
RE
Figure 62. Dual Voltage Doubler
220 pF
100 k
+10
MC34074
+
–10
RL +VO –VO
18.93 –18.78
10 k 18
–18
5.0 k 15.4 –15.4
100 k
100 k
+
MC34074
+
10
+
MC34074
+
10
+VO
+
10
RL
+
10
RL
–VO
16 MOTOROLA ANALOG IC DEVICE DATA










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