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LMV358S8-XX-TR30

Dual Low Voltage Operational Amplifier

厂商名称:TAITRON Components

厂商官网:http://www.taitroncomponents.com/

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Dual Low Voltage
Operational Amplifier
LMV358
Dual Low Voltage Operational Amplifier
General Description
The LMV358 are low voltage (2.7-5.5V) versions of the dual
and quad commodity op amps.
The LMV358 are the most cost effective solutions for the
applications where low voltage operation, space saving and
low price are needed.
SOP-8
DIP-8
The LMV358 have rail-to-rail output swing capability and the
input common-mode voltage range includes ground. They all
exhibit excellent speed-power ratio, achieving 1MHz of bandwidth
MSOP-8
and 1V/µs of slew rate with low supply current.
The LMV358 have bipolar input and output stages for improved noise
performance and higher output current drive.
The LMV358 is available in SOP-8, DIP-8, TSSOP-8 and MSOP-8 packages
TSSOP-8
Features
(For V
=5V and V+ =0V. Typical Unless Otherwise Noted)
Guaranteed 2.7V and 5V performance
No crossover distortion, space saving package
Industrial temp. range, V
CM
-0.2V to V
-0.8V
Gain-Bandwidth product; Low supply current: 210µA
Rail-to-Rail output swing @10KΩ load (V
10mV, V+ 65mV)
RoHS Compliance
Applications
Battery Charger
Cordless Telephone
Switching Power Supply
Ordering Information
TAITRON COMPONENTS INCORPORATED
www.taitroncomponents.com
Tel:
Fax:
(800)-TAITRON (800)-824-8766
(800)-TAITFAX (800)-824-8329
(661)-257-6060
(661)-257-6415
Rev. A/DX 2007-06-04
Page 1 of 18
Dual Low Voltage Operational Amplifier
LMV358
Internal Block Diagram
Absolute Maximum Ratings
Symbol
V
CC
V
I(DIFF)
V
IO
-
-
Rth
JA
-
T
J
T
OPR
T
STG
Description
Supply Voltage
Differential Input Voltage
Max. Input Offset Voltage
Output Short Circuit to V
Output Short Circuit to V+
Typical Thermal Resistance (Note3)
Infrared (15 sec)
Junction Temperature (Note4)
Operating Temperature Range
Storage Temperature Range
Ratings
2.7 to 5.5
±Supply Voltage
7
Note1
Note2
235
-
150
-40 ~ +85
-65~ +150
° C/W
-
°C
°C
°C
Unit
V
V
mV
Note:
1. Shorting output to V
will adversely after reliability.
2. Shorting output to V+ will adversely affect reliability.
3. All numbers are typical, and apply for packages soldered directly note a PC board is still air.
4. The max. power dissipation is a function of T
J
(max)
θ
JA
and T
A
. The max. allowable power
dissipation at any ambient temperature is PD=(T
J
(max) – T
A
)/
θ
JA.
All numbers apply for
packages soldered directly into a PC board.
Rev. A/DX 2007-06-04
www.taitroncomponents.com
Page 2 of 18
Dual Low Voltage Operational Amplifier
LMV358
2.7V DC Electrical Characteristics
(V
=2.7V, V
+
=0V, V
CM
=1.0V, V
OUT
=V⎯/2 and R
L
=1MΩ, T
J
=25ºC unless otherwise specified)
Symbol
V
IO
TCVos
I
BIAS
I
IO
CMRR
PSRR
V
CM
Description
Input Offset Voltage
Input Offset Current Average
Drift
Input Bias Current
Input Offset Current
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Input Common Mode Voltage
LMV358
Min.
Typ.
Max.
Unit
mV
µV/° C
nA
nA
dB
dB
V
V
mV
mV
µA
Conditions
-
-
-
-
50
50
0
-
V⎯-100
1.7
5
11
5
63
60
-0.2
1.9
V⎯-100
60
140
7
-
250
30
-
-
-
1.7
-
180
340
-
-
-
0V≤
V
CM
≤1.7V
2.7V≤
V⎯≤5V,V
OUT
=1V
For CMRR≥50dB
V
OUT
I
CC
Output Voltage Swing
Power Supply Current
-
-
R
L
=10KΩ to 1.35V
Both amplifiers
2.7V AC Electrical Characteristics
(V
=2.7V, V
+
=0V, V
CM
=1.0V, V
OUT
=V⎯/2 and R
L
>1MΩ, T
J
=25ºC unless otherwise specified)
Symbol
Description
LMV358
Min.
Typ.
Max.
Unit
Conditions
GBWP
Ф(T)
G
θr1
Ir1
Gain-Bandwidth Product
Phase Margin
Gain Margin
Input-Referred Voltage Noise
Input-Referred Current Noise
-
-
-
-
-
1
60
10
46
0.17
-
-
-
-
-
MHz
Deg
dB
nV/sq(Hz)
nV/sq(Hz)
C
L
=200pF
-
-
f=1KHz
f=1KHz
Rev. A/DX 2007-06-04
www.taitroncomponents.com
Page 3 of 18
Dual Low Voltage Operational Amplifier
LMV358
5V DC Electrical Characteristics
(V
=5V, V
+
=0V, V
CM
=2.0V, V
OUT
=V⎯/2 and R
L
>1MΩ, T
J
=25ºC unless otherwise specified)
LMV358
Symbol
Description
Unit
Conditions
Min.
Typ.
Max.
V
IO
TCVos
I
BIAS
I
IO
CMRR
PSRR
V
CM
Av
Input Offset Voltage
Input Offset Current Average
Drift
Input Bias Current
Input Offset Current
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Input Common Mode Voltage
Large Signal Voltage Gain
7
-
250
50
50
50
0
-
10
V+-400
1.7
5
15
5
65
60
-0.2
4.2
100
V⎯-40
120
V⎯-10
65
60
160
210
9
-
500
150
-
-
-
4
15
V⎯-300
400
V⎯-10
280
-
-
615
mV
µV/° C
nA
nA
dB
dB
V
V
V/mV
-
-
-
-
0V≤
V
CM
≤4V
2.7V≤
V⎯≤5V,V
OUT
=1V,V
CM
=1V
For CMRR≥50dB
R
L
=2KΩ (Note5)
R
L
=2KΩ to 2.5V
V
OUT
Output Voltage Swing
300
V+-200
180
5
10
440
mV
R
L
=10KΩ to 1.35V
mA
mA
µA
Sourcing, V
OUT
=0V
Sinking, V
OUT
=5V
Both amplifiers
I
OUT
I
CC
Output Short Circuit Current
Power Supply Current
5V AC Electrical Characteristics
(V
=5V, V
+
=0V, V
CM
=2.0V, V
OUT
=V⎯/2 and R
L
>1MΩ, T
J
=25ºC unless otherwise specified)
Symbol
Description
LMV358
Min.
Typ.
Max.
Unit
Conditions
SR
GBWP
Ф(T)
θr1
Ir1
Slew Rate
Gain-Bandwidth Product
Phase Margin
Gain Margin
Input-Referred Voltage Noise
Input-Referred Current Noise
-
-
-
-
-
-
1
1
60
10
39
0.21
-
-
-
-
-
-
V/µs
MHz
C
L
=200pF
Deg
-
dB
-
nV/sq(Hz) f=1KHz
nV/sq(Hz) f=1KHz
Note:
5. R
L
is connected to V. The output voltage is 0.5V≤V
OUT
≤4.5V
Rev. A/DX 2007-06-04
www.taitroncomponents.com
Page 4 of 18
Dual Low Voltage Operational Amplifier
LMV358
Typical Characteristics Curves
(VE= +5V, single supply. TA=25° C, unless otherwise specified)
Fig.1- Input Current vs. Temperature
Fig.2- Sourcing Current vs Output Voltage
Input Current (nA
)
Temperature (° C)
I
SOURCT
(mA
)
Output Voltage Referenced V+ (V)
Fig.3- Sourcing Current vs Output Voltage
Fig.4- Sinking Current vs Output Voltage
I
SOURCT
(mA
)
Output Voltage Referenced V+ (V)
I
SINK
(mA
)
Output Voltage Referenced to GND (V)
Rev. A/DX 2007-06-04
www.taitroncomponents.com
Page 5 of 18
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