MAX4492AUD-T Maxim Integrated, MAX4492AUD-T Datasheet - Page 6

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MAX4492AUD-T

Manufacturer Part Number
MAX4492AUD-T
Description
Operational Amplifiers - Op Amps High-Slew-Rate Rail-Rail
Manufacturer
Maxim Integrated
Datasheet

Specifications of MAX4492AUD-T

Number Of Channels
4
Common Mode Rejection Ratio (min)
54 dB
Input Offset Voltage
10 mV
Input Bias Current (max)
2.5 nA
Operating Supply Voltage
2.7 V to 5.5 V, +/- 1.35 V to +/- 2.75 V
Mounting Style
SMD/SMT
Package / Case
TSSOP-14
Slew Rate
10 V/us
Shutdown
No
Output Current
50 mA
Maximum Operating Temperature
+ 125 C
Amplifier Type
General Purpose Amplifier
Gain Bandwidth Product
10 MHz
Maximum Dual Supply Voltage
+/- 2.75 V
Minimum Dual Supply Voltage
+/- 1.35 V
Minimum Operating Temperature
- 40 C
Supply Current
0.8 mA
Technology
CMOS
Voltage Gain Db
110 dB

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MAX4492AUD-T
Manufacturer:
MAXIM/美信
Quantity:
20 000
pole at frequency (2πR′C
combination of the gain-setting resistors for the invert-
ing or noninverting amplifier configuration (Figure 2). If
the pole frequency is less than or comparable to the
unity-gain bandwidth (10MHz), the phase margin will
be reduced, and the amplifier will exhibit degraded
AC performance through either ringing in the step
response or sustained oscillations. The pole frequency is
10MHz when R′ = 3.2kΩ. To maximize stability, R′ <3kΩ
is recommended.
Applications that require rail-to-rail operation with mini-
mal loading (for small V
typically require R′ values >3kΩ. To improve step
response under these conditions, connect a small
Low-Cost, High-Slew-Rate,
Rail-to-Rail I/O Op Amps in SC70
Figure 1a. Output Source Current vs. Temperature
Figure 1b. Output Sink Current vs. Temperature
6
_______________________________________________________________________________________
6
5
4
3
2
1
0
9
8
7
6
5
4
3
2
1
0
-40
-40
-25
-25
V
-10
-10
DD
V
DD
= 2.7V
5 20 35 50 65 80
5 20 35
= 2.7V
TEMPERATURE (°C)
TEMPERATURE (°C)
DD
IN
)
-1
- V
50
, where R′ is the parallel
V
V
V
OH
V
V
V
DD
DD
DD
DD
DD
DD
65
- V
- V
- V
- V
- V
- V
80
and V
OH
OH
OH
V
OH
OH
OH
DD
V
= 200mV
= 100mV
= 50mV
DD
95 110
95
= 200mV
= 100mV
= 50mV
= 5V
= 5V
110
OL
125
125
- V
SS
) will
capacitor C
Choose C
where R
ting resistor (Figure 2).
Figure 3 shows the step response for a noninverting
amplifier subject to R′ = 4kΩ with and without the C
feedback capacitor.
Figure 2. Inverting and Noninverting Amplifier with Feedback
Compensation
f
V
is the feedback resistor and R is the gain-set-
INVERTING
NONINVERTING
IN
f
as follows:
f
between the inverting input and output.
R
R
V
C
IN
f
= 5(R / R
MAX4490
MAX4490
C
R
R
C
f
f
f
f
f
) [pf]
R′ = R || R
R
R′ = R || R
R
f
C
f
C
f
f
= RC
= RC
IN
f
IN
f
V
V
OUT
OUT
f

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