UTC LMV358-S08-R General purpose, low voltage, rail-to-rail output operational amplifier Datasheet

UNISONIC TECHNOLOGIES CO., LTD
LMV358
LINEAR INTEGRATED CIRCUIT
GENERAL PURPOSE, LOW
VOLTAGE, RAIL-TO-RAIL
OUTPUT OPERATIONAL
AMPLIFIERS
„
DESCRIPTION
The UTC LMV358 is the dual commodity op amp with low
voltage (2.7-5.5V) versions, LM358, which operate at 5-30V. The
UTC LMV358 offers specifications that meet or exceed the familiar
LM358 and is the most cost effective solution for the applications
where low voltage operation, space saving and low price are
needed. The UTC LMV358 has rail-to-rail output swing capability
and the input common-mode voltage range includes ground.
Besides, it exhibits excellent speed-power ratio, achieving 1MHz of
bandwidth and 1V/μs of slew rate.
The UTC LMV358 has bipolar input and output stages for
improved noise performance and higher output current drive.
„
Lead-free:
LMV358L
Halogen-free:LMV358G
FEATURES
(For V+ =5V and V-=0V. Typical Unless Otherwise Noted)
*Guaranteed 2.7V and 5V Performance
*No Crossover Distortion
*Gain-Bandwidth Product: 1MHz
*Rail-to-Rail Output Swing
@10kΩ Load
V+-10mV
V- +65mV
+
*VCM -0.2V to V –0.8V
„
ORDERING INFORMATION
Normal
LMV358-D08-T
LMV358-S08-R
LMV358-SM1-R
LMV358-P08-R
Ordering Number
Lead Free Plating
LMV358L-D08-T
LMV358L-S08-R
LMV358L-SM1-R
LMV358L-P08-R
Halogen Free
LMV358G-D08-T
LMV358G-S08-R
LMV358G-SM1-R
LMV358G-P08-R
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Copyright © 2009 Unisonic Technologies Co., Ltd
Package
Packing
DIP-8
SOP-8
MSOP-8
TSSOP-8
Tube
Tape Reel
Tape Reel
Tape Reel
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QW-R105-010,F
LMV358
„
LINEAR INTEGRATED CIRCUIT
PIN CONFIGURATION
OUT A
1
IN A-
2
IN A+
3
V-
4
A
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B
8
V+
7
OUT B
6
IN B-
5
IN B+
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LMV358
„
LINEAR INTEGRATED CIRCUIT
ABSOLUTE MAXIMUM RATINGS
PARAMETER
SYMBOL
RATINGS
UNIT
2.7 ~ 5.5
Supply Voltage
VSS
V
Supply Voltage (V+- V-)
VSS
5.5
V
±Supply Voltage
Differential Input Voltage
VI(DIFF)
Output Short Circuit to V+
(Note 2)
Output Short Circuit to V(Note 3)
Infrared (15 sec)
215
°C
Junction Temperature (Note 4)
TJ
+150
°C
Operation Temperature
TOPR
-40~+85
°C
Storage Temperature
TSTG
-65~+150
°C
Notes: 1. Absolute maximum ratings are those values beyond which the device could be permanently damaged.
Absolute maximum ratings are stress ratings only and functional device operation is not implied.
2. Shorting output to V+ will adversely affect reliability
3. Shorting output to V- will adversely affect reliability
4. The maximum power dissipation is a function of TJ(max) θJA and TA. The maximum allowable power
dissipation at any ambient temperature is PD=(TJ(max)-TA)/ θJA. All numbers apply for packages soldered
directly into a PC board.
„
THERMAL DATA
PARAMETER
SYMBOL
RATINGS
DIP-8
130
SOP-8
190
Thermal Resistance (Note)
θJA
MSOP-8
235
TSSOP-8
155
Note: All numbers are typical, and apply for packages soldered directly note a PC board is still air.
„
UNIT
°C/W
°C/W
°C/W
°C/W
2.7V ELECTRICAL CHARACTERISTICS
All limits guaranteed for TJ =25°C, V+=2.7V, V-=0V, VCM=1.0V, VOUT =V+/2 and RL>1MΩ, unless otherwise specified.
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNIT
DC CHARACTERISTICS
Input Offset Voltage
VOS
1.7
7
mV
Input Offset Voltage Average Drift
TCVos
5
μV/°C
Input Bias Current
II(BIAS)
11
250
nA
Input Offset Current
II(OFF)
5
50
nA
Common Mode Rejection Ratio
CMRR 0V≤VCM≤1.7V
50
63
dB
2.7V≤V+ ≤5V
50
60
dB
Power Supply Rejection Ratio
PSRR
VOUT =1V
0
-0.2
V
Input Common-Mode Voltage Range
VCM
For CMRR≥50dB
1.9
1.7
V
V+-100
V+-10
mV
Output Swing
VOUT
RL=10kΩ to 1.35V
60
180
mV
Supply Current
ISS
Both amplifiers
1.2
1.7
mA
AC CHARACTERISTICS
Gain-Bandwidth Product
GBWP CL=200pF
1
MHz
Phase Margin
Φm
60
Deg
Gain Margin
Gm
10
dB
nV
Input-Referred Voltage Noise
eN
F=1kHz
46
√ Hz
pA
Input-referred Current Noise
in
F=1kHz
0.17
√ Hz
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„
LINEAR INTEGRATED CIRCUIT
5V ELECTRICAL CHARACTERISTICS
All limits guaranteed for TJ =25°C, V+=5V, V-=0V, VCM=2.0V, VOUT=V+/2 and RL>1MΩ, unless otherwise specified.
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNIT
DC CHARACTERISTICS
Input Offset Voltage
VOS
1.7
7
mV
Input Offset Voltage Average Drift
TCVos
5
μV/°C
Input Bias Current
II(BIAS)
15
250
nA
Input Offset Current
II(OFF)
5
50
nA
Common Mode Rejection Ratio
CMRR 0V≤VCM≤4V
50
65
dB
2.7V≤V+≤5V
50
60
dB
Power Supply Rejection Ratio
PSRR
VOUT=1V VCM=1V
0
-0.2
V
Input Common-Mode Voltage Range
VCM
For CMRR≥50dB
4
4.2
V
Large Signal Voltage Gain(Note 1)
GV
RL=2kΩ
15
100
V/mV
VOH V+-300
V+-40
mV
RL=2kΩ~2.5V
VOL
120
300
mV
Output Swing
VOUT
VOH V+-100
V+-10
mV
RL=10kΩ~2.5V
VOL
65
180
mV
Sourcing, VOUT =0V
5
60
mA
Output Short Circuit Current
IOUT
Sinking, VOUT =5V
10
160
mA
Supply Current
ISS
Both amplifiers
1.5
2.0
mA
AC CHARACTERISTICS
Slew Rate
SR
(Note 2)
1
V/μs
Gain-Bandwidth Product
GBWP CL=200pF
1
MHz
Φm
Phase Margin
60
Deg
Gm
Gain Margin
10
dB
nV
eN
Input-Referred Voltage Noise
f=1kHz
39
√ Hz
pA
in
Input-referred Current Noise
f=1kHz
0.21
√ Hz
Notes: 1. RL is connected to V-. The output voltage is 0.5V≤VOUT≤4.5V.
2. Connected as voltage follower with 3V step input. Number specified is these lower of the positive and
negative slew rates.
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LINEAR INTEGRATED CIRCUIT
TYPICAL CHARACTERISTICS
(Unless otherwise specified, VE=+5V, single supply. TA=25°C)
Input Current vs Temperature
Supply Current vs Supply Voltage
275
-10
250
-12
225
200
T
175
5
=8
-14
T=
150
25
T=
125
VSS = 5V
VIN = VSS/2
-16
40
-18
100
0
0
1
2
3
4
Supply Voltage (V)
-20
-40 -20
5
100
100
10
10
VSS = 2.7V
1
0.1
0.1
0.01
0.01
0.001
0.001 0.01
0.1
1
10
+
Output Voltage Referenced V (V)
Sinking Current vs Output Voltage
1000
10
100
0.1
0.01
ISINK (mA)
ISINK (mA)
Sinking Current vs Output Voltage
VSS = 2.7V
VSS = 5V
0.001
0.001 0.01
0.1
1
10
+
Output Voltage Referenced V (V)
100
1
80
Sourcing Current vs Output Voltage
Sourcing Current vs Output Voltage
1
0 20 40 60
Temperature (℃)
VSS = 5V
10
1
0.1
0.01
0.001
0.01
0.1
1
10
Output Voltage Referenced to GND (V)
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0.001
0.01
0.1
1
10
Output Voltage Referenced to GND (V)
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TYPICAL CHARACTERISTICS(Cont.)
Open Loop Output Impedance
vs Frequency
700
600
500
400
VSS = 2.7V
300
200
100
0
VSS = 5V
1k
Short Circuit Current vs
Temperature (Sinking)
Short Circuit Current (mA)
Output Impedance (Ω)
1000
900
800
10k
100k
1M
Frequency (Hz)
200
180
160
140
120
VSS = 5V
100
80
60
VSS = 2.7V
40
20
0
-40 -20 0
20 40 60 80
-30 -10 10 30 50 70 90
Output Impedance Iron
Supply Voltage (mV)
Short Circuit Current (mA)
Temperature (℃)
Input Voltage Noise vs Frequency
Input Current Noise vs Frequency
VCM = VS/2
65
60
55
50
VSS = 2.7V
45
VSS = 5V
40
35
30
10
100
1k
10k
Frequency (Hz)
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Input Current Noise (μA/√Hz)
70
Input Voltage Noise (nV/√Hz)
„
LINEAR INTEGRATED CIRCUIT
0.6
0.5
VSS = 2.7V
0.4
0.3
0.2
0.1
0.0
10
100
1k
10k
Frequency (Hz)
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LINEAR INTEGRATED CIRCUIT
TYPICAL CHARACTERISTICS(Cont.)
CMRR (dB)
CMRR (dB)
PSRR (dB)
CMRR (dB)
Crosstalk Rejection (dB)
Input Current Noise (μA/√Hz)
„
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LMV358
LINEAR INTEGRATED CIRCUIT
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Phase Margin (Dog)
Gain (dB)
Gain (dB)
Phase Margin (Dog)
Input Voltage (μV)
AVOS (mV)
Input Voltage (μV)
AVOS (mV)
TYPICAL CHARACTERISTICS(Cont.)
„
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Output Signal Input Signal
(1V/div)
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Sles Rate (V/μs)
Phase Margin (Dog)
Gain (dB)
Phase Margin (Dog)
Gain (dB)
Phase Margin (Dog)
„
Output Signal Input Signal
(1V/div)
Gain (dB)
LMV358
LINEAR INTEGRATED CIRCUIT
TYPICAL CHARACTERISTICS(Cont.)
QW-R105-010,F
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Output Signal Input Signal
(1V/div)
Output Signal Input Signal
(50mV/div)
Output Signal Input Signal
(50mV/div)
Output Signal Input Signal
(50mV/div)
Output Signal Input Signal
(1V/div)
„
Output Signal Input Signal
(1V/div)
LMV358
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LINEAR INTEGRATED CIRCUIT
TYPICAL CHARACTERISTICS(Cont.)
QW-R105-010,F
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Capacitive Load (pF)
Output Signal Input Signal
(50mV/div)
Output Signal Input Signal
(50mV/div)
Output Signal Input Signal
(50mV/div)
Output Signal Input Signal
(1V/div)
„
Capacitive Load (pF)
LMV358
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LINEAR INTEGRATED CIRCUIT
TYPICAL CHARACTERISTICS(Cont.)
QW-R105-010,F
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LMV358
Capacitive Load (pF)
TYPICAL CHARACTERISTICS(Cont.)
Capacitive Load (pF)
„
LINEAR INTEGRATED CIRCUIT
THD vs Frequency
5
0.5
VSS = 2.7V, AV = +10, VOUT = 1VPP
0.05
VSS = 5V, AV = -10, VOUT = 2.5VPP
VSS = 2.7V, AV = +1, VOUT = 1VPP
VSS = 5V, AV = +1, VOUT = 1VPP
0.005
20
100
1k
10k
100k
Frequency (Hz)
UTC assumes no responsibility for equipment failures that result from using products at values that
exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or
other parameters) listed in products specifications of any and all UTC products described or contained
herein. UTC products are not designed for use in life support appliances, devices or systems where
malfunction of these products can be reasonably expected to result in personal injury. Reproduction in
whole or in part is prohibited without the prior written consent of the copyright owner. The information
presented in this document does not form part of any quotation or contract, is believed to be accurate
and reliable and may be changed without notice.
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