LV358G-P08-R [UTC]
GENERAL PURPOSE, LOW VOLTAGE, RAIL-TO-RAIL OUTPUT OPERATIONAL AMPLIFIERS; 通用型,低电压,轨到轨输出运算放大器型号: | LV358G-P08-R |
厂家: | Unisonic Technologies |
描述: | GENERAL PURPOSE, LOW VOLTAGE, RAIL-TO-RAIL OUTPUT OPERATIONAL AMPLIFIERS |
文件: | 总12页 (文件大小:407K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
UNISONIC TECHNOLOGIES CO., LTD
LV358
CMOS IC
GENERAL PURPOSE, LOW
VOLTAGE, RAIL-TO-RAIL
OUTPUT OPERATIONAL
AMPLIFIERS
SOP-8
TSSOP-8
MSOP-8
DESCRIPTION
The UTC LV358 is a dual op amp with low supply current and
low voltage (2.7-5.5V). It brings nice performance to low voltage and
low power systems. With a 1MHz unity-gain frequency. The UTC
LV358 has a guaranteed 1 V/µs slew rate and low supply current. It
provides heavy rail-to-rail (R-to-R) output swing loads and the input
common-mode voltage range including ground. Besides, it is also
capable for comfortably driving large capacitive loads.
Lead-free:
Halogen-free:LV358G
LV358L
The UTC LV358 has bipolar input and CMOS output for
improved noise performance and higher output current drive. It’s the
most cost effective solution for the applications where low voltage
operation, space saving and low price are required.
FEATURES
* 2.7V and 5V Performance Guaranteed
* No Crossover Distortion
* 210µA Low Supply Current
* Rail-to-Rail Output Swing
@10kΩ Load V+ -10mV
V-+65mV
*VCM From -0.2V to V+ -0.8V
ORDERING INFORMATION
Ordering Number
Package
Packing
Normal
Lead Free Plating
LV358L-S08-R
LV358L-SM1-R
LV358L-P08-R
Halogen Free
LV358G-S08-R
LV358G-SM1-R
LV358G-P08-R
LV358-S08-R
LV358-SM1-R
LV358-P08-R
SOP-8
MSOP-8
TSSOP-8
Tape Reel
Tape Reel
Tape Reel
LV358L-S08-R
(1) R: Tape Reel
(1) Packing Type
(2) Package Type
(3) Lead Plating
(2) S08: SOP-8, P08: TSSOP-8, SM1: MSOP-8
(3) G: Halogen Free, L: Lead Free, Blank: Pb/Sn
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Copyright © 2009 Unisonic Technologies Co., Ltd
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LV358
CMOS IC
PIN CONFIGURATION
OUT A
IN A-
IN A+
V-
V+
1
2
3
4
8
7
6
5
OUT B
IN B-
IN B+
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LV358
CMOS IC
BLOCK DIAGRAM
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LV358
CMOS IC
INTERNAL SIMPLE CIRCUIT
VCC
IN-
OUT
IN+
TEST CIRCUIT FOR STABILITY VS CAPACITIVE LOAD
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LV358
CMOS IC
ABSOLUTE MAXIMUM RATINGS
PARAMETER
SYMBOL
VSS
RATINGS
2.7 ~ 5.5
UNIT
V
Supply Voltage
Supply Voltage (V+- V-)
Differential Input Voltage
VSS
5.5
V
±Supply Voltage
VI(DIFF)
V+
V-
(Note 2)
(Note 3)
215
Output Short Circuit
IO(SC)
Infrared (15 sec)
°C
°C
°C
°C
Junction Temperature
Operation Temperature
Storage Temperature
TJ
+150
TOPR
TSTG
-40~+85
-65~+150
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
THERMAL DATA
PARAMETER
SYMBOL
RATINGS
190
UNIT
°C/W
°C/W
°C/W
SOP-8
Thermal Resistance (Note 1)
θJA
MSOP-8
TSSOP-8
235
155
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
DC CHARACTERISTICS
Input Offset Voltage
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNIT
VOS
VCM
1.7
-0.2
1.9
7
mV
V
0
Input Common Mode Voltage Range
Output Swing
For CMRR≥50dB
1.7
180
V
V+-100 V+-10
mV
mV
µV/°C
nA
VOUT
RL=10kΩ to 1.35V
60
5
Input Offset Voltage Average Drift
Input Bias Current
TCVos
II(BIAS)
II(OFF)
CMRR
PSRR
ISS
11
5
250
50
Input Offset Current
nA
Common Mode Rejection Ratio
Power Supply Rejection Ratio
Supply Current
0V≤VCM≤1.7V
50
50
63
60
dB
2.7V≤V+ ≤5V, VOUT =1V
Both amplifiers
dB
140
340
µA
AC CHARACTERISTICS
Gain Bandwidth Product
Phase Margin
GBWP CL=200pF
Φm
Gm
1
60
10
MHz
Deg
dB
Gain Margin
nV
√ Hz
pA
Input Referred Voltage Noise
Input Referred Current Noise
eN
in
F=1kHz
F=1kHz
46
0.17
√ Hz
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LV358
CMOS IC
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
DC CHARACTERISTICS
Input Offset Voltage
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNIT
VOS
VCM
1.7
-0.2
4.2
7
mV
V
0
Input Common-Mode Voltage Range
For CMRR≥50dB
RL=2kΩ to2.5V
4
V
VOH V+-300 V+-40
mV
mV
mV
mV
µV/°C
nA
VOL
120
300
180
Output Swing
VOUT
VOH V+-100 V+-10
RL=10kΩ to 2.5V
VOL
65
5
Input Offset Voltage Average Drift
Input Bias Current
TCVos
II(BIAS)
II(OFF)
15
5
300
50
Input Offset Current
nA
Common Mode Rejection Ratio
CMRR 0V≤VCM≤4V
50
50
65
dB
2.7V≤V+≤5V
Power Supply Rejection Ratio
Large Signal Voltage Gain(Note 1)
Output Short Circuit Current
PSRR
60
dB
VOUT=1V, VCM=1V
GV
IOUT
ISS
RL=2kΩ
15
5
100
230
160
210
V/mV
mA
Sourcing, VOUT =0V
Sinking, VOUT =5V
Both Amplifiers
10
mA
Supply Current
440
µA
AC CHARACTERISTICS
Slew Rate
SR
(Note 2)
1
1
V/µs
MHz
Deg
dB
Gain Bandwidth Product
Phase Margin
GBWP CL=200pF
Φm
60
10
Gm
Gain Margin
nV
√ Hz
pA
eN
Input Referred Voltage Noise
f=1kHz
f=1kHz
39
in
Input Referred Current Noise
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
3. All numbers are typical, and apply for packages soldered directly note a PC board is still air.
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LV358
CMOS IC
TYPICAL CHARACTERISTICS
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LV358
CMOS IC
TYPICAL CHARACTERISTICS(Cont.)
ΔVOS vs CMR
VSS = ±1.35V
ΔVOS vs CMR
1.0
0.8
1.0
0.8
VSS = ±2.5V
0.6
0.6
0.4
0.4
0.2
0.2
0.0
0.0
-0.2
-0.4
-0.6
-0.8
-1.0
-0.2
-0.4
-0.6
-0.8
-1.0
-1
Input Common Mode Voltage Range,
CM (V)
-0.5
0
-1.5
0.5
1
1.5
-3
-2
Input Common Mode Voltage Range,
CM (V)
-1
0
1
2
3
V
V
Gain and Phase vs. Capacitive Load
Gain and Phase vs. Capacitive Load
50
40
100
100
80
50
40
80
PHASE
PHASE
GAIN
30
20
30
20
60
40
20
60
40
20
GAIN
10
0
10
0
0
0
-10
-20
-10
-20
-20
-20
Vs=+5V, RL=600Ω, single
supply, TA=25°С,CL=100pF
Vs=+5V, RL=600Ω, single
supply, TA=25°С,CL=0
-40
-40
10k
10k
1M
100k
Frequency(Hz)
10M
1M
100k
Frequency(Hz)
10M
Gain and Phase vs. Capacitive Load
Gain and Phase vs. Capacitive Load
50
40
100
80
100
80
50
40
PHASE
GAIN
PHASE
GAIN
30
20
30
20
60
40
20
60
40
20
10
0
10
0
0
0
-10
-20
-10
-20
-20
-20
Vs=+5V, RL=600Ω, single
supply, TA=25°С, CL=1000pF
Vs=+5V, RL=600Ω, single
supply, TA=25°С, CL=500pF
-40
-40
10k
1M
100k
Frequency(Hz)
10M
10k
1M
100k
Frequency(Hz)
10M
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LV358
CMOS IC
TYPICAL CHARACTERISTICS(Cont.)
Stability vs Capacitive Load
VSS = ±2.5V
25% Overshoot
AV = +10
RL = 2kΩ
VOUT = 100mVPP
Stability vs Capacitive Load
VSS = ±2.5V
25% Overshoot
AV = +10
10000
1000
100
10000
1000
100
RL = 1MΩ
VOUT = 100mVPP
10
10
-2 -1.5 -1 -0.5
0
0.5
1
1.5
2
-2 -1.5 -1 -0.5
0
0.5
1
1.5
2
Output Voltage, VOUT (V)
Output Voltage,VOUT (V)
Short Circuit Current vs Temperature
(Sinking)
Short Circuit Current vs Temperature
(Sourcing)
240
210
200
180
160
140
120
100
80
VSS = 5V
180
150
120
90
VSS = 5V
VSS = 2.7V
60
60
40
30
0
20
VSS = 2.7V
0
-40
-40 -20
0
20
40
60
80
-20
0
20
40
60
80
Temperature (°С)
Temperature (°С)
Slew Rate vs Supply Voltage
Vs=+5V, RL=10kΩ,
AV=+1, VIN=1Vpp,
single supply, TA=25°С
1.5
1.4
1.3
1.2
1.1
1.0
0.9
0.8
0.7
0.6
0.5
Rising Edge
Failing Edge
2.5
3.0
3.5
Supply Voltage (V)
4.0
4.5
5.0
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LV358
CMOS IC
TYPICAL CHARACTERISTICS(Cont.)
Non-Inverting Large Signal Pulse
Response
Non-Inverting Large Signal Pulse
Response
TA = 25°С
TA = 85°С
Time (1µs/div)
Time (1µs/div)
Non-Inverting Large Signal Pulse
Response
Non-Inverting Small Signal Pulse
Response
TA = -40°С
TA = 25°С
Time (1µs/div)
Time (1µs/div)
Non-Inverting Small Signal Pulse
Response
Non-Inverting Small Signal Pulse
Response
TA = 85°С
TA = -40°С
Time (1µs/div)
Time (1µs/div)
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LV358
CMOS IC
TYPICAL CHARACTERISTICS(Cont.)
Inverting Large Signal Pulse Response
TA = 85°С
Inverting Large Signal Pulse Response
TA = 25°С
Time (1µs/div)
Time (1µs/div)
Inverting Large Signal Pulse Response
Inverting Small Signal Pulse Response
TA = -40°С
TA = 25°С
Time (1µs/div)
Time (1µs/div)
Inverting Small Signal Pulse Response
Inverting Small Signal Pulse Response
TA = 85°С
TA = -40°С
Time (1µs/div)
Time (1µs/div)
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LV358
CMOS IC
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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