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MC33201 데이터시트 PDF




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부품번호 MC33201 기능
기능 (MC33201 - MC33204) Rail-to-Rail Operational Amplifiers
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MC33201 데이터시트, 핀배열, 회로
MC33201, MC33202,
MC33204, NCV33202,
NCV33204
Low Voltage, Rail-to-Rail
Operational Amplifiers
The MC33201/2/4 family of operational amplifiers provide
rail−to−rail operation on both the input and output. The inputs can be
driven as high as 200 mV beyond the supply rails without phase
reversal on the outputs, and the output can swing within 50 mV of each
rail. This rail−to−rail operation enables the user to make full use of the
supply voltage range available. It is designed to work at very low
supply voltages (± 0.9 V) yet can operate with a supply of up to +12 V
and ground. Output current boosting techniques provide a high output
current capability while keeping the drain current of the amplifier to a
minimum. Also, the combination of low noise and distortion with a
high slew rate and drive capability make this an ideal amplifier for
audio applications.
Features
Low Voltage, Single Supply Operation
(+1.8 V and Ground to +12 V and Ground)
Input Voltage Range Includes both Supply Rails
Output Voltage Swings within 50 mV of both Rails
No Phase Reversal on the Output for Over−driven Input Signals
High Output Current (ISC = 80 mA, Typ)
Low Supply Current (ID = 0.9 mA, Typ)
600 W Output Drive Capability
Extended Operating Temperature Ranges
(−40° to +105°C and −55° to +125°C)
Typical Gain Bandwidth Product = 2.2 MHz
NCV Prefix for Automotive and Other Applications Requiring
Unique Site and Control Change Requirements; AEC−Q100
Qualified and PPAP Capable
These are Pb−Free Devices
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8
1
8
1
8
1
PDIP−8
P, VP SUFFIX
CASE 626
SOIC−8
D, VD SUFFIX
CASE 751
Micro8]
DM SUFFIX
CASE 846A
14
1
14
1
PDIP−14
P, VP SUFFIX
CASE 646
SOIC−14
D, VD SUFFIX
CASE 751A
14
1
TSSOP−14
DTB SUFFIX
CASE 948G
ORDERING INFORMATION
See detailed ordering and shipping information in the package
dimensions section on page 10 of this data sheet.
DEVICE MARKING INFORMATION
See general marking information in the device marking
section on page 11 of this data sheet.
© Semiconductor Components Industries, LLC, 2014
April, 2014 − Rev. 17
1
Publication Order Number:
MC33201/D




MC33201 pdf, 반도체, 판매, 대치품
MC33201, MC33202, MC33204, NCV33202, NCV33204
DC ELECTRICAL CHARACTERISTICS (cont.) (VCC = + 5.0 V, VEE = Ground, TA = 25°C, unless otherwise noted.)
Characteristic
Figure Symbol Min Typ Max
Input Offset Current (VCM = 0 V to 0.5 V, VCM = 1.0 V to 5.0 V)
TA = + 25°C
TA = − 40° to +105°C
TA = − 55° to +125°C
Common Mode Input Voltage Range
Large Signal Voltage Gain (VCC = + 5.0 V, VEE = − 5.0 V)
RL = 10 kW
RL = 600 W
Output Voltage Swing (VID = ± 0.2 V)
RL = 10 kW
RL = 10 kW
RL = 600 W
RL = 600 W
Common Mode Rejection (Vin = 0 V to 5.0 V)
Power Supply Rejection Ratio
VCC/VEE = 5.0 V/GND to 3.0 V/GND
Output Short Circuit Current (Source and Sink)
Power Supply Current per Amplifier (VO = 0 V)
TA = − 40° to +105°C
TA = − 55° to +125°C
IIO
− VICR
7 AVOL
8, 9, 10
11
12
13, 14
15
VOH
VOL
VOH
VOL
CMR
PSRR
ISC
ID
− 5.0 50
− 10 100
− − 200
VEE − VCC
50 300
25 250
4.85 4.95
− 0.05 0.15
4.75 4.85
− 0.15 0.25
60 90
500 25
50 80
− 0.9 1.125
− 0.9 1.125
AC ELECTRICAL CHARACTERISTICS (VCC = + 5.0 V, VEE = Ground, TA = 25°C, unless otherwise noted.)
Characteristic
Figure Symbol Min Typ
Max
Slew Rate
(VS = ± 2.5 V, VO = − 2.0 V to + 2.0 V, RL = 2.0 kW, AV = +1.0)
Gain Bandwidth Product (f = 100 kHz)
16, 26
17
SR
GBW
0.5 1.0
− 2.2
Gain Margin (RL = 600 W, CL = 0 pF)
Phase Margin (RL = 600 W, CL = 0 pF)
Channel Separation (f = 1.0 Hz to 20 kHz, AV = 100)
Power Bandwidth (VO = 4.0 Vpp, RL = 600 W, THD 1 %)
Total Harmonic Distortion (RL = 600 W, VO = 1.0 Vpp, AV = 1.0)
f = 1.0 kHz
f = 10 kHz
20, 21, 22
20, 21, 22
23
24
AM
OM
CS
BWP
THD
− 12 −
− 65 −
− 90 −
− 28 −
− 0.002 −
− 0.008 −
Open Loop Output Impedance
(VO = 0 V, f = 2.0 MHz, AV = 10)
Differential Input Resistance (VCM = 0 V)
Differential Input Capacitance (VCM = 0 V)
Equivalent Input Noise Voltage (RS = 100 W)
f = 10 Hz
f = 1.0 kHz
ZO
− 100 −
Rin − 200 −
Cin − 8.0 −
25 en
− 25 −
− 20 −
Equivalent Input Noise Current
f = 10 Hz
f = 1.0 kHz
25 in
− 0.8 −
− 0.2 −
Unit
nA
V
kV/V
V
dB
mV/V
mA
mA
Unit
V/ms
MHz
dB
Deg
dB
kHz
%
W
kW
pF
nV/
Hz
pA/
Hz
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MC33201 전자부품, 판매, 대치품
MC33201, MC33202, MC33204, NCV33202, NCV33204
150
VCC = + 5.0 V
125 VEE = Gnd
100
Source
75
Sink
50
25
0
- 55 - 40 - 25
0 25
70 85
TA, AMBIENT TEMPERATURE (°C)
105 125
Figure 14. Output Short Circuit Current
versus Temperature
2.0
1.6
TA = 125°C
1.2
TA = 25°C
0.8
TA = - 55°C
0.4
0
± 0 ±1.0 ± 2.0 ± 3.0 ± 4.0 ± 5.0 ± 6.0
VCC, VEE, SUPPLY VOLTAGE (V)
Figure 15. Supply Current per Amplifier
versus Supply Voltage with No Load
2.0
VCC = + 2.5 V
VEE = - 2.5 V
VO = ± 2.0 V
1.5
1.0
0.5
+Slew Rate
-Slew Rate
0
- 55 - 40 - 25
0 25
70 85
TA, AMBIENT TEMPERATURE (°C)
105 125
Figure 16. Slew Rate
versus Temperature
4.0
VCC = + 2.5 V
VEE = - 2.5 V
f = 100 kHz
3.0
2.0
1.0
0
- 55 - 40 - 25
0 25
70 85
TA, AMBIENT TEMPERATURE (°C)
105 125
Figure 17. Gain Bandwidth Product
versus Temperature
70 40
VS = ± 6.0 V
TA = 25°C
50
RL = 600 W
80
30
10
1A - Phase, CL = 0 pF
-10
1B - Gain, CL = 0 pF
2A - Phase, CL = 300 pF
2B - Gain, CL = 300 pF
- 30
10 k
100 k
1.0 M
f, FREQUENCY (Hz)
120
1A
2A
160
2B
1B 200
240
10 M
Figure 18. Voltage Gain and Phase
versus Frequency
70 40
CL = 0 pF
TA = 25°C
50
RL = 600 W
80
30
10
-10
- 30
10 k
2A
1A - Phase, VS = ± 6.0 V
1B - Gain, VS = ± 6.0 V
2A - Phase, VS = ± 1.0 V
2B - Gain, VS = ± 1.0 V
2B
100 k
1.0 M
f, FREQUENCY (Hz)
1B
1A 120
160
200
240
10 M
Figure 19. Voltage Gain and Phase
versus Frequency
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