MAX4126ESA-T Maxim Integrated, MAX4126ESA-T Datasheet - Page 7

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MAX4126ESA-T

Manufacturer Part Number
MAX4126ESA-T
Description
Operational Amplifiers - Op Amps Dual Wide-Bandwdth Single-Supply R-R
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX4126ESA-T

Number Of Channels
2
Common Mode Rejection Ratio (min)
74 dB
Input Offset Voltage
750 uV
Input Bias Current (max)
150 nA
Operating Supply Voltage
2.7 V to 6.5 V, +/- 1.35 V to +/- 3.25 V
Mounting Style
SMD/SMT
Package / Case
SOIC-8 Narrow
Slew Rate
2 V/us
Shutdown
No
Output Current
50 mA
Maximum Operating Temperature
+ 85 C
Amplifier Type
Wideband Amplifier
Gain Bandwidth Product
5 MHz
Maximum Dual Supply Voltage
+/- 3.25 V
Minimum Dual Supply Voltage
+/- 1.35 V
Minimum Operating Temperature
- 40 C
Supply Current
0.65 mA
Voltage Gain Db
106 dB
(V
Single/Dual/Quad, Wide-Bandwidth, Low-Power,
CC
120
115
110
105
100
120
110
100
120
110
100
95
90
85
80
90
80
70
60
90
80
70
60
= +5V, V
-40 -25 -10
0
0
V
V
R
R
CC
OUTPUT VOLTAGE: EITHER SUPPLY (mV)
CC
L
OUTPUT VOLTAGE: EITHER SUPPLY (mV)
L
TO V
TO V
100
100
COMMON-MODE REJECTION
= 2.7V
= 2.7V
EE
CC
EE
vs. OUTPUT VOLTAGE
vs. OUTPUT VOLTAGE
LARGE-SIGNAL GAIN
LARGE-SIGNAL GAIN
vs. TEMPERATURE
V
V
200
200
= 0V, V
TEMPERATURE (°C)
CM
CM
5
= 0.3V TO 5.3V
= 0.2V TO 5.2V
_______________________________________________________________________________________
20
R
300
300
L
= 100k
CM
35
R
V
R
L
CM
R
Single-Supply Rail-to-Rail I/O Op Amps
L
= 500
L
400
= 10k
400
= V
= 2k
50
R
= 0V TO 5.0V
R
L
L
= 500
= 2k
R
CC
65
R
L
L
= 100k
500
500
= 10k
/2, T
80
A
600
600
95
= +25°C, unless otherwise noted.)
250
200
150
100
100
120
110
100
120
110
Typical Operating Characteristics (continued)
50
90
80
70
60
90
80
70
60
0
-40 -25 -10
0
0
R
V
V
R
L
R
OUTPUT VOLTAGE: EITHER SUPPLY (mV)
CC
OUTPUT VOLTAGE: EITHER SUPPLY (mV)
CC
L
L
TO V
TO V
TO V
100
MINIMUM OUTPUT VOLTAGE
100
= 6.5V
= 6.5V
CC
CC
EE
vs. OUTPUT VOLTAGE
vs. OUTPUT VOLTAGE
V
LARGE-SIGNAL GAIN
LARGE-SIGNAL GAIN
vs. TEMPERATURE
CC
V
200
200
CC
TEMPERATURE (°C)
V
5
= 6.5V, R
CC
= 2.7V, R
= 6.5V, R
20
300
300
V
L
CC
R
35
L
= 500
L
R
R
= 2.7V, R
= 10k
= 500
L
L
L
R
= 500
R
= 100k
L
400
= 500
400
R
50
L
= 2k
L
R
= 2k
L
= 100k
= 10k
R
L
65
L
= 100k
500
= 100k
500
80
600
600
95
300
250
200
150
100
125
120
115
110
105
100
125
120
115
110
105
100
50
95
90
85
80
75
95
90
85
80
75
0
-40 -25 -10
-40 -25 -10
-40 -25 -10
R
V
R
V
R
L
OUT
V
V
L
OUT
L
CC
= 500
CC
TO V
= 100k
MAXIMUM OUTPUT VOLTAGE
(p-p) = V
= 6.5V, R
(p-p) = V
= 2.7V, R
EE
V
LARGE-SIGNAL GAIN
LARGE-SIGNAL GAIN
CC
V
vs. TEMPERATURE
vs. TEMPERATURE
V
vs. TEMPERATURE
CC
CC
TEMPERATURE (°C)
CC
TEMPERATURE (°C)
TEMPERATURE (°C)
= 2.7V, R
5
5
5
CC
L
L
= 2.7V, R
V
= 2.7V, R
= 100k (TOP)
- 1V
TO V
CC
- 600mV
20
20
20
= 6.5V, R
V
EE
V
CC
V
L
CC
CC
V
L
= 500
= 6.5V, R
L
35
35
CC
35
= 100k (BOTTOM)
= 2.7V, R
= 6.5V, R
TO V
= 6.5V, R
V
R
L
50
CC
L
50
50
TO V
CC
TO V
= 6.5V,
L
V
R
L
= 500
L
EE
65
65
65
CC
L
EE
TO V
TO V
L
TO V
TO V
= 2.7V,
CC
80
80
80
CC
EE
CC
95
95
95
7

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