MAX492 Maxim, MAX492 Datasheet - Page 14

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MAX492

Manufacturer Part Number
MAX492
Description
The dual MAX492, quad MAX494, and single MAX495 operational amplifiers combine excellent DC accuracy with rail-to-rail operation at the input and output
Manufacturer
Maxim
Datasheet

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The MAX492/MAX494/MAX495 can drive capacitive
loads in excess of 1000pF under certain conditions
(Figure 5). When driving capacitive loads, the greatest
potential for instability occurs when the op amp is
sourcing approximately 100µA. Even in this case, sta-
bility is maintained with up to 400pF of output capaci-
tance. If the output sources either more or less current,
stability is increased. These devices perform well with a
1000pF pure capacitive load (Figure 6). Figure 7 shows
the performance with a 500pF load in parallel with vari-
ous load resistors.
Figure 8. Capacitive-Load Driving Circuit
Figure 9a. Driving a 10,000pF Capacitive Load
V
IN
MAX49_
______________________________________________________________________________________
10 s/div
Single-Supply Rail-to-Rail Op Amps
R
S
C
Single/Dual/Quad, Micropower,
L
V
OUT
V
50mV/div
V
50mV/div
IN
OUT
To increase stability while driving large capacitive
loads, connect a pull-up resistor at the output to
decrease the current that the amplifier must source. If
the amplifier is made to sink current rather than source,
stability is further increased.
Frequency stability can be improved by adding an out-
put isolation resistor (R
(Figure 8). This resistor improves the phase margin of
the circuit by isolating the load capacitor from the op
amp’s output. Figure 9a shows the MAX492 driving
10,000pF (R
isolation resistor.
Figure 9b. Driving a 10,000pF Capacitive Load with a 47 Ω
Isolation Resistor
Figure 10. Power-Up Test Configuration
+5V
L
≥ 100kΩ), while Figure 9b adds a 47Ω
1k
1k
S
10 s/div
) to the voltage-follower circuit
3
2
MAX495
7
4
V
CC
6
V
OUT
V
50mV/div
V
50mV/div
IN
OUT
13

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