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MAX4194(1999) 查看數據表(PDF) - Maxim Integrated

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MAX4194 Datasheet PDF : 12 Pages
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Micropower, Single-Supply, Rail-to-Rail,
Precision Instrumentation Amplifiers
MAX4196
OUT
AC-COUPLED
(VDIFF = 200mV,
G = +10V/V)
(500mV/div)
50µs/div
Figure 5b. MAX4196 Shutdown Mode
SHDN
(5V/div)
VCC
IN+
RISO
IN-
VOUT
VEE
RG =
(MAX4194)
(INTERNAL, MAX4195)
RL
CL
VREF
VREF
Figure 6a. Using a Resistor to Isolate a Capacitive Load from
the Instrumentation Amplifier (G = +1V/V)
MAX4197
OUT
AC-COUPLED
(VDIFF = 20mV,
G = +100V/V)
(500mV/div)
INPUT
(50mV/div)
SHDN
(5V/div)
50µs/div
Figure 5c. MAX4197 Shutdown Mode
The accuracy and temperature drift of the RG resistors
also influence the IC’s precision and gain drift, and can
be derived from the equation above. With low RG val-
ues, which are required for high-gain operation, para-
sitic resistances may significantly increase the gain
error.
Capacitive Load Stability
The MAX4194–MAX4197 are stable for capacitive loads
up to 300pF (Figure 6a). Applications that require
greater capacitive-load driving capability can use an
isolation resistor (Figure 6b) between the output and
the capacitive load to reduce ringing on the output sig-
nal. However, this alternative reduces gain accuracy
because RISO (Figure 6c) forms a potential divider with
the load resistor.
OUTPUT
(50mV/div)
50µs/div
Figure 6b. Small-Signal Pulse Response with Excessive
Capacitive Load (RL = 25k, CL = 1000pF)
INPUT
(50mV/div)
50µs/div
OUTPUT
(50mV/div)
Figure 6c. Small-Signal Pulse Response with Excessive
Capacitive Load and Isolating Resistor (RISO = 75, RL =
25k, CL = 1000pF)
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