INA145UA/2K5E4 [TI]

OP-AMP, 1000uV OFFSET-MAX, 0.5MHz BAND WIDTH, PDSO8, GREEN, SOIC-8;
INA145UA/2K5E4
型号: INA145UA/2K5E4
厂家: TEXAS INSTRUMENTS    TEXAS INSTRUMENTS
描述:

OP-AMP, 1000uV OFFSET-MAX, 0.5MHz BAND WIDTH, PDSO8, GREEN, SOIC-8

放大器 光电二极管
文件: 总15页 (文件大小:319K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
®
INA145  
INA145  
For most current data sheet and other product  
information, visit www.burr-brown.com  
Programmable Gain  
DIFFERENCE AMPLIFIER  
FEATURES  
DESCRIPTION  
DIFFERENTIAL GAIN = 1V/V TO 1000V/V:  
The INA145 is a precision, unity-gain difference  
amplifier consisting of a precision op amp and on-  
chip precision resistor network. Two external resistors  
set the gain from 1V/V to 1000V/V. The input com-  
mon-mode voltage range extends beyond the positive  
and negative rails.  
Set with External Resistors  
LOW QUIESCENT CURRENT: 570µA  
WIDE SUPPLY RANGE:  
Single Supply: 4.5V to 36V  
Dual Supplies: ±2.25V to ±18V  
On-chip precision resistors are laser-trimmed to achieve  
accurate gain and high common-mode rejection. Ex-  
cellent TCR tracking of these resistors assures contin-  
ued high precision over temperature.  
HIGH COMMON-MODE VOLTAGE:  
+8V at VS = +5V  
±28V at VS = ±15V  
LOW GAIN ERROR: 0.01%  
HIGH CMR: 86dB  
The INA145 is available in the SO-8 surface-mount  
package specified for the extended industrial tempera-  
ture range, –40°C to +85°C.  
SO-8 PACKAGE  
APPLICATIONS  
CURRENT SHUNT MEASUREMENTS  
SENSOR AMPLIFIER  
DIFFERENTIAL LINE RECEIVER  
BATTERY POWERED SYSTEMS  
RG1  
RG2  
V+  
RG  
7
5
R1  
R2  
40kΩ  
40kΩ  
2
VIN–  
R5  
10kΩ  
A2  
(1%)  
VO  
6
G = 1  
R3  
A1  
V
O = (VI+N – VIN)(1 + RG2/RG1  
)
R4  
40kΩ  
40kΩ  
3
VIN+  
INA145  
4
1
8
V–  
Ref  
V01  
International Airport Industrial Park • Mailing Address: PO Box 11400, Tucson, AZ 85734 • Street Address: 6730 S. Tucson Blvd., Tucson, AZ 85706 • Tel: (520) 746-1111  
Twx: 910-952-1111 • Internet: http://www.burr-brown.com/ • Cable: BBRCORP • Telex: 066-6491 • FAX: (520) 889-1510 • Immediate Product Info: (800) 548-6132  
©1999 Burr-Brown Corporation  
PDS-1567B  
Printed in U.S.A. March, 2000  
SBOS120  
SPECIFICATIONS: VS = ±2.25V to ±18V  
Boldface limits apply over the specified temperature range, TA = –40°C to +85°C  
At TA = +25°C, G = 1, RL = 10kconnected to ground and ref pin connected to ground unless otherwise noted.  
INA145UA  
PARAMETER  
CONDITION  
MIN  
TYP  
MAX  
UNITS  
OFFSET VOLTAGE, VO  
Input Offset Voltage  
vs Temperature  
vs Power Supply  
vs Time  
RTI(1, 2)  
VCM = VO = 0V  
VOS  
VOS /T  
PSRR  
±0.2  
±1  
mV  
See Typical Curve  
VS = ±1.35V to ±18V  
±20  
±0.3  
±0.4  
±60  
µV/V  
µV/mo  
mV  
Offset Voltage, V01  
RTI(1, 2)  
INPUT VOLTAGE RANGE  
Common-Mode Voltage Range  
Common-Mode Rejection  
Over Temperature  
VCM  
CMRR  
(VIN+) – (VIN–) = 0V, VO = 0V  
VCM = 2(V–) to 2(V+) – 2V, RS = 0Ω  
VS = ±15V  
2(V–)  
76  
70  
2(V+) –2  
V
dB  
dB  
86  
80  
INPUT BIAS CURRENT(2)  
Bias Current  
Offset Current  
VCM = VS/2  
IB  
IOS  
±50  
±5  
nA  
nA  
INPUT IMPEDANCE  
Differential (non-inverting input)  
Differential (inverting input)  
Common-Mode  
80  
27  
40  
kΩ  
kΩ  
kΩ  
NOISE  
RTI(1, 3)  
Voltage Noise, f = 0.1Hz to 10Hz  
Voltage Noise Density, f = 1kHz  
2
90  
µVp-p  
nV/Hz  
en  
GAIN  
G = 1 to 1000  
Gain Equation  
Initial(1)  
Gain Error  
vs Temperature  
G = 1 + RG2 /RG1  
V/V  
V/V  
%
ppm/°C  
%
ppm/°C  
% of FS  
1
±0.01  
±2  
±0.01  
±2  
RL = 100k, VO = (V–)+0.15 to (V+)–1, G = 1  
RL = 100k, VO = (V–)+0.25 to (V+)–1, G = 1  
RL = 10k, VO = (V–)+0.3 to (V+)–1.25, G = 1  
RL = 10k, VO = (V–)+0.5 to (V+)–1.25, G = 1  
RL = 10k, VO = (V–)+0.3 to (V+)–1.25, G = 1  
±0.1  
±10  
±0.1  
±10  
±0.005  
vs Temperature  
Nonlinearity  
±0.0002  
FREQUENCY RESPONSE  
Small Signal Bandwidth  
G = 1  
G = 10  
500  
50  
0.45  
40  
kHz  
kHz  
V/µs  
µs  
Slew Rate  
Settling Time, 0.1%  
0.01%  
G = 1, 10V Step  
G = 1, 10V Step  
90  
µs  
Overload Recovery  
50% Input Overload  
40  
µs  
OUTPUT, VO  
Voltage Output  
Over Temperature  
RL = 100k, G = 1  
RL = 100k, G = 1  
RL = 10k, G = 1  
RL = 10k, G = 1  
Continuous to Common  
Stable Operation  
(V–) + 0.15  
(V–) + 0.25  
(V–) + 0.3  
(V–) + 0.5  
(V+) – 1  
(V+) – 1  
(V+) – 1.25  
(V+) – 1.25  
V
V
V
V
mA  
pF  
Over Temperature  
Short-Circuit Current  
Capacitive Load  
±15  
1000  
POWER SUPPLY  
Specified Voltage Range, Dual Supplies  
Operating Voltage Range  
Quiescent Current  
±2.25  
±1.35  
±18  
±18  
±700  
±800  
V
V
µA  
µA  
VIN = 0, IO = 0  
±570  
Over Temperature  
TEMPERATURE RANGE  
Specified Range  
Operating Range  
Storage Range  
–40  
–55  
–55  
+85  
+125  
+125  
°C  
°C  
°C  
Thermal Resistance  
θJA  
150  
°C/W  
NOTES: (1) Referred to input pins (VIN+ and VIN–), Gain = 1V/V. Specified with 10kin feedback of A2. (2) Input offset voltage specification includes effects of amplifier’s  
input bias and offset currents. (3) Includes effects of input bias current noise and thermal noise contribution of resistor network.  
The information provided herein is believed to be reliable; however, BURR-BROWN assumes no responsibility for inaccuracies or omissions. BURR-BROWN assumes  
no responsibility for the use of this information, and all use of such information shall be entirely at the user’s own risk. Prices and specifications are subject to change  
without notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. BURR-BROWN does not authorize or warrant  
any BURR-BROWN product for use in life support devices and/or systems.  
®
2
INA145  
SPECIFICATIONS: VS = +5V Single Supply  
Boldface limits apply over the specified temperature range, TA = –40°C to +85°C  
At TA = +25°C, G = 1, RL = 10kconnected to ground and ref pin connected to 2.5V unless otherwise noted.  
INA145UA  
PARAMETER  
CONDITION  
MIN  
TYP  
MAX  
UNITS  
OFFSET VOLTAGE, VO  
Input Offset Voltage  
vs Temperature  
vs Power Supply Rejection Ratio  
vs Time  
RTI(1, 2)  
VCM = VO = 2.5V  
VOS  
VOS /T  
PSRR  
±0.35  
See Typical Curve  
±1  
mV  
VS = ±1.35V to ±18V  
±20  
±0.3  
±0.55  
±60  
µV/°C  
µV/mo  
mV  
Offset Voltage, V01  
RTI(1, 2)  
INPUT VOLTAGE RANGE  
Common-Mode Voltage Range(3)  
Common-Mode Rejection Ratio  
Over Temperature  
VCM  
CMRR  
VIN+ – VIN– = 0V, VO = 2.5V  
VCM = –2.5V to +5.5V, RS = 0Ω  
–2.5  
76  
5.5  
V
dB  
dB  
86  
80  
INPUT BIAS CURRENT(2)  
Bias Current  
Offset Current  
IB  
IOS  
±50  
±5  
nA  
nA  
INPUT IMPEDANCE  
Differential (non-inverting input)  
Differential (inverting input)  
Common-Mode  
80  
27  
40  
kΩ  
kΩ  
kΩ  
NOISE  
RTI(1, 4)  
Voltage Noise, f = 0.1Hz to 10Hz  
Voltage Noise Density, f = 1kHz  
2
90  
µVp-p  
nV/Hz  
en  
GAIN  
Gain Equation  
Initial(1)  
G = 1 to 1000  
G = 1 + RG2 /RG1  
V/V  
V/V  
V/V  
1
Gain Error  
vs Temperature  
RL = 100k, VO = 0.15V to 4V, G = 1  
RL = 100k, VO = 0.25V to 4V, G = 1  
RL = 10k, VO = 0.3V to 3.75V, G = 1  
RL = 10k, VO = 0.5V to 3.75V, G = 1  
RL = 10k, VO = +0.3 to +3.75, G = 1  
±0.01  
±2  
±0.01  
±2  
±0.001  
±0.1  
±10  
±0.1  
±10  
±0.005  
%
ppm/°C  
%
ppm/°C  
% of FS  
vs Temperature  
Nonlinearity  
FREQUENCY RESPONSE  
Small Signal Bandwidth  
G = 0.1  
G = 1  
500  
50  
0.45  
40  
kHz  
kHz  
V/µs  
µs  
Slew Rate  
Settling Time, 0.1%  
0.01%  
G = 1, 10V Step  
G = 1, 10V Step  
90  
µs  
Overload Recovery  
50% Input Overload  
40  
µs  
OUTPUT, VO  
Voltage Output  
Over Temperature  
RL = 100k, G = 1  
RL = 100k, G = 1  
RL = 10k, G = 1  
RL = 10k, G = 1  
Continuous to Common  
Stable Operation  
0.15  
0.25  
0.3  
4
4
3.75  
3.75  
V
V
V
V
mA  
pF  
Over Temperature  
Short-Circuit Current  
Capacitive Load  
0.5  
±15  
1000  
POWER SUPPLY  
Specified Voltage Range, Single Supply  
Operating Voltage Range  
Quiescent Current  
+4.5  
+2.7  
+36  
+36  
700  
800  
V
V
µA  
µA  
VIN = 0, IO = 0  
550  
Over Temperature  
TEMPERATURE RANGE  
Specified Range  
Operating Range  
Storage Range  
–40  
–55  
–55  
+85  
+125  
+125  
°C  
°C  
°C  
Thermal Resistance  
θJA  
150  
°C/W  
NOTES: (1) Referred to input pins (VIN+ and VIN–), Gain = 1V/V. Specified with 10kin feedback of A2. (2) Input offset voltage specification includes effects of  
amplifier’s input bias and offset currents. (3) Common-mode voltage range with single supply is 2(V+) – 2V – VREF to –VREF. (4) Includes effects of input current  
noise and thermal noise contribution of resistor network.  
®
3
INA145  
AMPLIFIER A1, A2 PERFORMANCE  
Boldface limits apply over the specified temperature range, TA = –40°C to +85°C  
At TA = +25°C, G = 1, RL = 10kconnected to ground and ref pin connected to ground unless otherwise noted.  
INA145UA  
PARAMETER  
CONDITION  
MIN  
TYP  
MAX  
UNITS  
OFFSET VOLTAGE, VO  
Input Offset Voltage  
vs Temperature  
RTI(1, 2)  
VS = ±15V, VCM = VO = 0V  
VOS  
VOS /T  
±0.5  
±1  
mV  
µV/°C  
INPUT VOLTAGE RANGE  
Common-Mode Voltage Range  
Common-Mode Rejection Ratio  
VCM  
CMRR  
VIN+ – VIN– = 0V, VO = 0V  
VCM = (V–) to (V+) –1  
(V–) to (V+) –1  
90  
V
dB  
OPEN-LOOP GAIN  
Open Loop Gain  
AOL  
110  
dB  
INPUT BIAS CURRENT(2)  
Bias Current  
Offset Current  
IB  
IOS  
±50  
±5  
nA  
nA  
RESISTOR AT A1 OUTPUT, VO1  
Initial  
Error  
10  
±0.2  
±50  
kΩ  
%
ppm/°C  
Temperature Drift Coefficient  
PIN CONFIGURATION  
ELECTROSTATIC  
DISCHARGE SENSITIVITY  
Top View  
SO-8  
This integrated circuit can be damaged by ESD. Burr-Brown  
recommends that all integrated circuits be handled with  
appropriate precautions. Failure to observe proper handling  
and installation procedures can cause damage.  
Ref  
VIN  
VI+N  
V–  
1
2
3
4
8
7
6
5
VO1  
V+  
VO  
RG  
ESD damage can range from subtle performance degradation  
to complete device failure. Precision integrated circuits may  
be more susceptible to damage because very small parametric  
changes could cause the device not to meet its published  
specifications.  
ABSOLUTE MAXIMUM RATINGS(1)  
Supply Voltage, V+ to V– .................................................................... 36V  
Signal Input Terminals, Voltage ........................................................ ±80V  
Current ....................................................... ±1mA  
Output Short Circuit (to ground).............................................. Continuous  
Operating Temperature .................................................. –55°C to +125°C  
Storage Temperature .....................................................55°C to +150°C  
Junction Temperature .................................................................... +150°C  
Lead Temperature (soldering, 10s)............................................... +240°C  
NOTE: (1) Stresses above these ratings may cause permanent damage.  
Exposure to absolute maximum conditions for extended periods may degrade  
device reliability.  
PACKAGE/ORDERING INFORMATION  
PACKAGE  
SPECIFIED  
DRAWING  
NUMBER  
TEMPERATURE  
RANGE  
PACKAGE  
MARKING  
ORDERING  
NUMBER(1)  
TRANSPORT  
MEDIA  
PRODUCT  
PACKAGE  
INA145UA  
SO-8  
182  
–40°C to +85°C  
INA145UA  
INA145UA  
Rails  
"
"
"
"
"
INA145UA/2K5  
Tape and Reel  
NOTE: (1) Models with a slash (/) are available only in Tape and Reel in the quantities indicated (e.g., /2K5 indicates 2500 devices per reel). Ordering 2500 pieces  
of “INA145UA/2K5” will get a single 2500-piece Tape and Reel.  
®
4
INA145  
TYPICAL PERFORMANCE CURVES  
At TA = +25°C, VS = ±15V, G = 1, RL = 10kconnected to ground and Ref pin connected to ground, unless otherwise noted.  
GAIN vs FREQUENCY  
G = 100  
GAIN vs FREQUENCY  
60  
40  
20  
0
60  
40  
20  
0
VS = ±15V  
L = 1000pF  
VS = ±15V  
C
CL = 200pF 10kΩ  
G = 100  
G = 10  
G = 10  
G = 1  
G = 1  
–20  
–20  
100  
1K  
10K  
100K  
1M  
10M  
10M  
100k  
100  
1K  
10K  
100K  
1M  
10M  
Frequency (Hz)  
Frequency (Hz)  
POWER SUPPLY REJECTION vs FREQUENCY  
COMMON-MODE REJECTION vs FREQUENCY  
100  
80  
60  
40  
20  
0
100  
80  
60  
40  
20  
0
PSR+  
(VS = ±15V)  
PSR+  
(VS = +5V)  
PSR–  
(VS = ±15V)  
1
10  
100  
1k  
10k  
100k  
10  
100  
1k  
10k  
100k  
1M  
Frequency (Hz)  
Frequency (Hz)  
0.1Hz to 10Hz VOLTAGE NOISE (RTI)  
INPUT VOLTAGE NOISE DENSITY  
1k  
100  
10  
G = 1  
G = 100  
G = 10  
0.1  
1
10  
100  
1k  
10k  
500ms/div  
Frequency (Hz)  
®
5
INA145  
TYPICAL PERFORMANCE CURVES (Cont.)  
At TA = +25°C, VS = ±15V, G = 1, RL = 10kconnected to ground and Ref pin connected to ground, unless otherwise noted.  
QUIESCENT CURRENT AND  
SHORT-CIRCUIT CURRENT vs TEMPERATURE  
SLEW RATE vs TEMPERATURE  
670  
650  
630  
610  
590  
570  
550  
530  
510  
490  
470  
20  
18  
16  
14  
12  
10  
8
0.6  
0.55  
0.5  
G = 1  
G = 1  
ISC  
0.45  
0.4  
IQ  
0.35  
0.3  
6
4
0.25  
0.2  
2
0
–60 –40 –20  
0
20  
40  
60 80 100  
140  
120  
–60 –40 –20  
0
20  
40  
60 80 100  
140  
120  
Temperature (°C)  
Temperature (°C)  
GAIN AND PHASE vs FREQUENCY  
Op Amp A1 and A2  
SETTLING TIME vs LOAD CAPACITANCE  
110  
100  
90  
80  
70  
60  
50  
40  
30  
20  
10  
0
160  
140  
120  
100  
80  
G
RL = 10k|| 200pF  
G = 1  
0.01%  
G = 10  
0.01%  
Φ
–90  
RL = 1nF  
G = 10  
0.1%  
G = 1  
0.1%  
60  
–135  
–180  
40  
20  
–10  
0
1
10  
100  
1k  
Frequency (Hz)  
10k  
100k  
1M  
1
10  
100  
Load Capacitance (nF)  
MAXIMUM OUTPUT VOLTAGE SWING  
vs OUTPUT CURRENT  
OFFSET VOLTAGE  
PRODUCTION DISTRIBUTION  
15  
10  
5
Typical Production  
Distribution of  
Packaged Units.  
VS = ±2.25V  
–25°C  
+25°C  
+125°C  
+85°C  
–55°C  
0
–55°C  
+125°C  
–5  
–10  
–15  
+25°C  
–25°C  
+85°C  
0
2
4
6
8
10  
12  
14  
16  
Output Current (mA)  
Offset Voltage, RTI (mV)  
®
6
INA145  
TYPICAL PERFORMANCE CURVES (Cont.)  
At TA = +25°C, VS = ±15V, G = 1, RL = 10kconnected to ground and Ref pin connected to ground, unless otherwise noted.  
OFFSET VOLTAGE DRIFT  
OFFSET VOLTAGE  
PRODUCTION DISTRIBUTION  
PRODUCTION DISTRIBUTION  
20  
15  
10  
5
Typical Production  
Distribution of  
Packaged Devices  
VS = ±15V  
VS = ±15V  
0
Offset Voltage Drift, RTI (µV/°C)  
Offset Voltage, RTI (mV)  
SMALL-SIGNAL STEP RESPONSE  
SMALL-SIGNAL STEP RESPONSE  
(G = 1, CL = 1000pF)  
(G = 1, RL = 10k, CL = 200pF)  
5µs/div  
5µs/div  
LARGE-SIGNAL STEP RESPONSE  
SMALL-SIGNAL STEP RESPONSE  
(G = 10, CL = 1000pF)  
(G = 10, RL = 10k, CL = 200pF)  
50µs/div  
5µs/div  
®
7
INA145  
SETTING THE GAIN  
APPLICATION INFORMATION  
The gain of the INA145 is set by using two external  
resistors, RG1 and RG2, according to the equation:  
The INA145 is a programmable gain difference amplifier  
consisting of a gain of 1 difference amplifier and a program-  
mable-gain output buffer stage. Basic circuit connections are  
shown in Figure 1. Power supply bypass capacitors should  
be connected close to pins 4 and 7, as shown. The amplifier  
is programmable in the range of G = 1 to G = 1000 with two  
external resistors.  
G = 1 + RG2 /RG1  
For a total gain of 1, A2 is connected as a buffer amplifier  
with no RG1. A feedback resistor, RG2 = 10k, should be  
used in the buffer connection. This provides bias current  
cancellation (in combination with internal R5) to assure  
specified offset voltage performance. Commonly used val-  
ues are shown in the table of Figure 1. Resistor values for  
other gains should be chosen to provide a 10kparallel  
resistance.  
The output of A1 is connected to the noninverting input of  
A2 through a 10kresistor which is trimmed to ±1%  
absolute accuracy. The A2 input is available for applications  
such as a filter or a precision current source. See application  
figures for examples.  
COMMON-MODE RANGE  
OPERATING VOLTAGE  
The input resistors of the INA145 provides an input com-  
mon-mode range that extends well beyond the power supply  
rails. Exact range depends on the power supply voltage and  
the voltage applied to the Ref terminal (pin 1). To assure  
proper operation, the voltage at the non-inverting input of  
A1 (an internal node) must be within its linear operating  
range. Its voltage is determined by the simple 1:1 voltage  
divider between pin 3 and pin 1. This voltage must be  
between V– and (V+) – 1V.  
The INA145 is fully specified for supply voltages from  
±2.25V to ±18V, with key parameters guaranteed over the  
temperature range –40°C to +85°C. The INA145 can be  
operated with single or dual supplies, with excellent perfor-  
mance. Parameters that vary significantly with operating  
voltage, load conditions, or temperature are shown in the  
typical performance curves.  
+VS  
RG1  
RG2  
0.1µF  
RB  
7
5
R1  
R2  
40kΩ  
40kΩ  
VIN–  
VO = (VI+N – VIN)(1 + RG2/RG1  
)
R5  
2
10kΩ  
(1%)  
A2  
VO  
6
A1  
STANDARD 1% RESISTORS  
R3  
40kΩ  
R4  
40kΩ  
TOTAL GAIN A2 GAIN  
RG1  
(W)  
RG2  
(W)  
RB  
(W)  
(V/V)  
(V/V)  
VI+N  
INA145  
1
2
5
10  
20  
1
2
5
10  
20  
(None)  
20k  
10k  
20k  
9.53k  
10k  
10k  
3
4
1
8
12.4k  
11.0k  
10.5k  
10.2k  
10.2k  
499  
49.9k  
100k  
200k  
499k  
1M  
100k  
49.9k  
100k  
0.1µF  
V01  
50  
50  
–VS  
100  
200  
500  
1000  
100  
200  
500  
1000  
100  
100  
FIGURE 1. Basic Circuit Connections.  
®
8
INA145  
OFFSET TRIM  
INPUT IMPEDANCE  
The INA145 is laser-trimmed for low offset voltage and  
drift. Most applications require no external offset adjust-  
ment. Figure 2 shows an optional circuit for trimming the  
offset voltage. A voltage applied to the Ref terminal will  
be summed with the output signal. This can be used to null  
offset voltage. To maintain good common-mode rejection,  
the source impedance of a signal applied to the Ref  
terminal should be less than 10and a resistor added to  
the positive input terminal should be 10 times that, or  
100. Alternatively, the trim voltage can be buffered with  
an op amp such as the OPA277.  
The input impedance of the INA145 is determined by the  
input resistor network and is approximately 40k. The  
source impedance at the two input terminals must be nearly  
equal to maintain good common-mode rejection. A 5Ω  
mismatch in impedance between the two inputs will cause  
the typical common-mode rejection to be degraded to ap-  
proximately 72dB. Figure 7 shows a common application  
measuring power supply current through a shunt resistor.  
The source impedance of the shunt resistor, RS, is balanced  
by an equal compensation resistor, RC.  
Source impedances greater than 300are not recommended,  
even if they are perfectly matched. Internal resistors are laser  
trimmed for accurate ratios, not to absolute values. Adding  
equal resistors greater than 300can cause a mismatch in  
the total resistor ratios, degrading CMR.  
10kΩ  
5
40kΩ  
40kΩ  
40kΩ  
VIN  
10kΩ  
A2  
VO  
6
A1  
10Ω  
VI+N  
40kΩ  
INA145  
1
+15V  
Offset Adjustment Range = ±15mV, RTI  
(±1.5mV at pin 1)  
VO1  
RT  
100kΩ  
100kΩ  
10Ω  
NOTE: Increasing the trim resistor  
T will decrease the trim range  
–15V  
R
FIGURE 2. Optional Offset Trim Circuit.  
RG1  
10.2kΩ  
RG2  
1MΩ  
V+  
+5V  
5
7
RS  
1  
2
G = 100  
IL  
VB  
10kΩ  
VO = 100 ILRS  
6
Load  
3
INA145  
V+  
Max VB  
+5V  
+7V  
8V  
4
1
8
12V  
18V  
28V  
+10V  
+15V  
FIGURE 3. Measuring Current with Shunt Resistor.  
®
9
INA145  
10kΩ  
Pole at  
106Hz  
G = 1  
1500pF  
5
RG2  
1MΩ  
RG1  
10kΩ  
VIN  
2
6
5
VO  
2
VIN  
3
VI+N  
10kΩ  
VO  
INA145  
6
1
8
R4  
R3  
VI+N  
3
R3  
INA145  
G =  
R3 + R4  
1
8
G 1  
22nF  
Pole at  
720Hz  
FIGURE 5. Creating Gains Less Than Unity.  
FIGURE 4. Noise Filtering.  
RG2  
10kΩ  
5
R1  
R2  
VIN  
2
0V VO 5V  
Alternate  
Soft Clamp  
10kΩ  
VO  
6
To Pin 8  
R3  
R4  
3
VI+N  
INA145  
8
1
1N4684  
(3.3V)  
1N914  
1N914  
(1)  
5.0V  
or Analog-to-Digital VS  
Voltage  
Reference  
1N914  
(1)  
NOTE: (1) 1/2 OPA2342 with VS connected to +5V and GND.  
FIGURE 6. Clamp Circuits.  
®
10  
INA145  
RG2  
RG1  
100kΩ  
11kΩ  
Power  
Supply  
5
2
For sense resistors (RS)  
greater than 5, use  
G = 10  
VO  
RC  
10Ω  
series  
compensation  
resistor (RC) for good  
common-mode rejection.  
Sense resistors greater  
than 200are not  
recommended.  
6
RS  
10Ω  
3
INA145  
1
8
Load  
VO1  
FIGURE 7. Current Monitor, G = 1.  
+5V  
24V  
8.4kΩ  
Feedback  
7
5
2
8kΩ  
1V  
VO  
10kΩ  
2kΩ  
6
SHUNT  
R-I Lamp/10  
e.g., 0.1for 1A  
1V – 50mV  
3
INA145  
10MΩ  
4
1
8
Lamp  
FIGURE 8. Comparator Output with Optional Hysteresis Application to Sense Lamp Burn-Out.  
RG2  
RG1  
100kΩ  
11kΩ  
RG2  
10kΩ  
5
VIN  
2
5
VIN  
2
6
VO  
6
10kΩ  
VO  
R1  
1MΩ  
3
VI+N  
INA145  
1
8
3
VI+N  
C1  
0.1µF  
INA145  
1
8
Pole at  
1
IOUT = (VI+N – VIN)/10kΩ  
f =  
= 1.6Hz  
OPA277  
2πR1RC  
FIGURE 9. AC Coupling (DC Restoration).  
FIGURE 10. Precision Current Source.  
®
11  
INA145  
PACKAGE OPTION ADDENDUM  
www.ti.com  
16-Feb-2009  
PACKAGING INFORMATION  
Orderable Device  
INA145UA  
Status (1)  
ACTIVE  
ACTIVE  
ACTIVE  
ACTIVE  
Package Package  
Pins Package Eco Plan (2) Lead/Ball Finish MSL Peak Temp (3)  
Qty  
Type  
Drawing  
SOIC  
D
8
8
8
8
75 Green (RoHS & CU NIPDAU Level-3-260C-168 HR  
no Sb/Br)  
INA145UA/2K5  
INA145UA/2K5E4  
INA145UAE4  
SOIC  
SOIC  
SOIC  
D
D
D
2500 Green (RoHS & CU NIPDAU Level-3-260C-168 HR  
no Sb/Br)  
2500 Green (RoHS & CU NIPDAU Level-3-260C-168 HR  
no Sb/Br)  
75 Green (RoHS & CU NIPDAU Level-3-260C-168 HR  
no Sb/Br)  
(1) The marketing status values are defined as follows:  
ACTIVE: Product device recommended for new designs.  
LIFEBUY: TI has announced that the device will be discontinued, and a lifetime-buy period is in effect.  
NRND: Not recommended for new designs. Device is in production to support existing customers, but TI does not recommend using this part in  
a new design.  
PREVIEW: Device has been announced but is not in production. Samples may or may not be available.  
OBSOLETE: TI has discontinued the production of the device.  
(2)  
Eco Plan - The planned eco-friendly classification: Pb-Free (RoHS), Pb-Free (RoHS Exempt), or Green (RoHS & no Sb/Br) - please check  
http://www.ti.com/productcontent for the latest availability information and additional product content details.  
TBD: The Pb-Free/Green conversion plan has not been defined.  
Pb-Free (RoHS): TI's terms "Lead-Free" or "Pb-Free" mean semiconductor products that are compatible with the current RoHS requirements  
for all 6 substances, including the requirement that lead not exceed 0.1% by weight in homogeneous materials. Where designed to be soldered  
at high temperatures, TI Pb-Free products are suitable for use in specified lead-free processes.  
Pb-Free (RoHS Exempt): This component has a RoHS exemption for either 1) lead-based flip-chip solder bumps used between the die and  
package, or 2) lead-based die adhesive used between the die and leadframe. The component is otherwise considered Pb-Free (RoHS  
compatible) as defined above.  
Green (RoHS & no Sb/Br): TI defines "Green" to mean Pb-Free (RoHS compatible), and free of Bromine (Br) and Antimony (Sb) based flame  
retardants (Br or Sb do not exceed 0.1% by weight in homogeneous material)  
(3)  
MSL, Peak Temp. -- The Moisture Sensitivity Level rating according to the JEDEC industry standard classifications, and peak solder  
temperature.  
Important Information and Disclaimer:The information provided on this page represents TI's knowledge and belief as of the date that it is  
provided. TI bases its knowledge and belief on information provided by third parties, and makes no representation or warranty as to the  
accuracy of such information. Efforts are underway to better integrate information from third parties. TI has taken and continues to take  
reasonable steps to provide representative and accurate information but may not have conducted destructive testing or chemical analysis on  
incoming materials and chemicals. TI and TI suppliers consider certain information to be proprietary, and thus CAS numbers and other limited  
information may not be available for release.  
In no event shall TI's liability arising out of such information exceed the total purchase price of the TI part(s) at issue in this document sold by TI  
to Customer on an annual basis.  
Addendum-Page 1  
PACKAGE MATERIALS INFORMATION  
www.ti.com  
11-Mar-2008  
TAPE AND REEL INFORMATION  
*All dimensions are nominal  
Device  
Package Package Pins  
Type Drawing  
SPQ  
Reel  
Reel  
A0 (mm)  
B0 (mm)  
K0 (mm)  
P1  
W
Pin1  
Diameter Width  
(mm) W1 (mm)  
(mm) (mm) Quadrant  
INA145UA/2K5  
SOIC  
D
8
2500  
330.0  
12.4  
6.4  
5.2  
2.1  
8.0  
12.0  
Q1  
Pack Materials-Page 1  
PACKAGE MATERIALS INFORMATION  
www.ti.com  
11-Mar-2008  
*All dimensions are nominal  
Device  
Package Type Package Drawing Pins  
SOIC  
SPQ  
Length (mm) Width (mm) Height (mm)  
346.0 346.0 29.0  
INA145UA/2K5  
D
8
2500  
Pack Materials-Page 2  
IMPORTANT NOTICE  
Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, modifications, enhancements, improvements,  
and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should  
obtain the latest relevant information before placing orders and should verify that such information is current and complete. All products are  
sold subject to TI’s terms and conditions of sale supplied at the time of order acknowledgment.  
TI warrants performance of its hardware products to the specifications applicable at the time of sale in accordance with TI’s standard  
warranty. Testing and other quality control techniques are used to the extent TI deems necessary to support this warranty. Except where  
mandated by government requirements, testing of all parameters of each product is not necessarily performed.  
TI assumes no liability for applications assistance or customer product design. Customers are responsible for their products and  
applications using TI components. To minimize the risks associated with customer products and applications, customers should provide  
adequate design and operating safeguards.  
TI does not warrant or represent that any license, either express or implied, is granted under any TI patent right, copyright, mask work right,  
or other TI intellectual property right relating to any combination, machine, or process in which TI products or services are used. Information  
published by TI regarding third-party products or services does not constitute a license from TI to use such products or services or a  
warranty or endorsement thereof. Use of such information may require a license from a third party under the patents or other intellectual  
property of the third party, or a license from TI under the patents or other intellectual property of TI.  
Reproduction of TI information in TI data books or data sheets is permissible only if reproduction is without alteration and is accompanied  
by all associated warranties, conditions, limitations, and notices. Reproduction of this information with alteration is an unfair and deceptive  
business practice. TI is not responsible or liable for such altered documentation. Information of third parties may be subject to additional  
restrictions.  
Resale of TI products or services with statements different from or beyond the parameters stated by TI for that product or service voids all  
express and any implied warranties for the associated TI product or service and is an unfair and deceptive business practice. TI is not  
responsible or liable for any such statements.  
TI products are not authorized for use in safety-critical applications (such as life support) where a failure of the TI product would reasonably  
be expected to cause severe personal injury or death, unless officers of the parties have executed an agreement specifically governing  
such use. Buyers represent that they have all necessary expertise in the safety and regulatory ramifications of their applications, and  
acknowledge and agree that they are solely responsible for all legal, regulatory and safety-related requirements concerning their products  
and any use of TI products in such safety-critical applications, notwithstanding any applications-related information or support that may be  
provided by TI. Further, Buyers must fully indemnify TI and its representatives against any damages arising out of the use of TI products in  
such safety-critical applications.  
TI products are neither designed nor intended for use in military/aerospace applications or environments unless the TI products are  
specifically designated by TI as military-grade or "enhanced plastic." Only products designated by TI as military-grade meet military  
specifications. Buyers acknowledge and agree that any such use of TI products which TI has not designated as military-grade is solely at  
the Buyer's risk, and that they are solely responsible for compliance with all legal and regulatory requirements in connection with such use.  
TI products are neither designed nor intended for use in automotive applications or environments unless the specific TI products are  
designated by TI as compliant with ISO/TS 16949 requirements. Buyers acknowledge and agree that, if they use any non-designated  
products in automotive applications, TI will not be responsible for any failure to meet such requirements.  
Following are URLs where you can obtain information on other Texas Instruments products and application solutions:  
Products  
Amplifiers  
Applications  
Audio  
Automotive  
Broadband  
Digital Control  
Medical  
Military  
Optical Networking  
Security  
amplifier.ti.com  
dataconverter.ti.com  
www.dlp.com  
www.ti.com/audio  
Data Converters  
DLP® Products  
DSP  
Clocks and Timers  
Interface  
www.ti.com/automotive  
www.ti.com/broadband  
www.ti.com/digitalcontrol  
www.ti.com/medical  
www.ti.com/military  
www.ti.com/opticalnetwork  
www.ti.com/security  
www.ti.com/telephony  
www.ti.com/video  
dsp.ti.com  
www.ti.com/clocks  
interface.ti.com  
logic.ti.com  
power.ti.com  
microcontroller.ti.com  
www.ti-rfid.com  
Logic  
Power Mgmt  
Microcontrollers  
RFID  
Telephony  
Video & Imaging  
Wireless  
RF/IF and ZigBee® Solutions www.ti.com/lprf  
www.ti.com/wireless  
Mailing Address: Texas Instruments, Post Office Box 655303, Dallas, Texas 75265  
Copyright © 2009, Texas Instruments Incorporated  

相关型号:

INA145UAE4

Programmable Gain DIFFERENCE AMPLIFIER
TI

INA146

High-Voltage, Programmable Gain DIFFERENCE AMPLIFIER
BB

INA146

高电压可编程增益差分放大器
TI

INA146UA

High-Voltage, Programmable Gain DIFFERENCE AMPLIFIER
BB

INA146UA

高电压可编程增益差分放大器 | D | 8 | -40 to 85
TI

INA146UA/2K5

高电压可编程增益差分放大器 | D | 8 | -40 to 85
TI

INA146UA/2K5E4

INSTRUMENTATION AMPLIFIER, 5000uV OFFSET-MAX, 0.05MHz BAND WIDTH, PDSO8, ROHS COMPLIANT, SOP-8
TI

INA146UAE4

高电压可编程增益差分放大器 | D | 8 | -40 to 85
TI

INA148

【200V Common-Mode Voltage DIFFERENCE AMPLIFIER
BB

INA148

+-200V 共模电压差动放大器
TI

INA148-Q1

±200-V COMMON-MODE VOLTAGE DIFFERENCE AMPLIFIER
TI

INA148QDRQ1

±200-V COMMON-MODE VOLTAGE DIFFERENCE AMPLIFIER
TI