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LMP8100 Datasheet(PDF) 4 Page - Texas Instruments

Part # LMP8100
Description  LMP8100 Programmable Gain Amplifierv
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

LMP8100 Datasheet(HTML) 4 Page - Texas Instruments

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LMP8100
SNOSAO1B – JULY 2007 – REVISED APRIL 2008
www.ti.com
5V Electrical Characteristics
Unless otherwise specified, all limits are guaranteed for TA = 25°C. V
+ = 5V , V= 0V, DGND = 0V, +IN = GRT = V+/2, R
L =
10 k
Ω to V
+/2; Gain = 1 V/V. Boldface limits apply at the temperature extremes.
Symbol
Parameter
Conditions
Min
Typ
Max
Units
(1)
(2)
(1)
Gain Error
LMP8100A
0V < +IN (DC) < 3.5V,
0.015
0.03
1 V/V
≤ Gain ≤ 16 V/V, 0.5V < VOUT
0.03
%
< 4.5V
Gain Error
LMP8100
0.015
0.075
0.075
LMP8100 Gain Error (Gain = 1 V/V)
+IN > 3.5V,
0.1
%
Extended +IN Range
0.3V < VOUT < 4.7V
0.2
TCGE
Gain Drift
LMP8100A
Gain = 16
0.5
2.2
ppm/°C
LMP8100
Gain = 16
0.8
4.8
VOS
Input Offset Voltage
LMP8100A
±50
±250
±450
µV
LMP8100
±50
±400
±600
TCVOS
Input Offset Temp Coefficient
(3)
1.5
5
µV/°C
IB
Input Bias Current
0.1
5
pA
100
en
Input-Referred Noise Voltage
f = 10 kHz, 1 V/V
≤ Gain ≤ 16 V/V
12
nV/
√Hz
f = 0.1 Hz to 10 Hz, 1 V/V
≤ Gain ≤
3.8
µVPP
16 V/V
BW
Bandwidth
C1 = C0 = 0, Gain = 1 V/V
33
C1 = C0 = 0, Gain = 2 V/V
15.5
MHz
C1 = C0 = 1, Gain = 16 V/V
9.5
SR
Slew Rate
(4)
12
V/µs
PSRR
Power Supply Rejection Ratio
2.7V < V+ < 5.5V
90
100
dB
85
VO
Output Swing
+IN = 5V
4.9
4.95
V
High
4.85
Output Swing
+IN = 0V
50
100
mV
Low
150
IO
Output Current
Sourcing and Sinking
15
20
mA
VIN
Input Voltage Range
–0.2
5.2
V
0
5.0
IS
Supply Current
5.3
6.0
mA
7.2
IPD
Supply Current, Power Down
3.5
20
µA
40
Feedback Resistance
5.6
k
RIN
Input Impedance
f = 10 Hz
>10
G
(1)
All limits are guaranteed by testing or statistical analysis.
(2)
Typical Values indicate the most likely parametric norm as determined at the time of characterization. Actual typical values may vary
over time and will also depend on the application and configuration. The typical values are not tested and are not guaranteed on
shipped production material.
(3)
The offset voltage average drift is determined by dividing the value of VOS at the temperature extremes by the total temperature change.
(4)
Slew rate is the average of the rising and falling slew rates.
4
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Copyright © 2007–2008, Texas Instruments Incorporated
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