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MCP1502 датащи(PDF) 17 Page - Microchip Technology

номер детали MCP1502
подробное описание детали  High-Precision Buffered Voltage Reference
PDF  28 Pages
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производитель  MICROCHIP [Microchip Technology]
домашняя страница  http://www.microchip.com
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MCP1502 датащи(HTML) 17 Page - Microchip Technology

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DS20006593A-page 17
MCP1502
5.1.2
LOAD CAPACITOR
The maximum capacitive load without series resistance
is 10 nF. However, larger capacitors may be imple-
mented if a resistor is used in series with a larger load
capacitor. Refer to Figure 3-29, Figure 3-30 and
Figure 3-31 for the transient response with the series
resistor and capacitive load.
5.1.3
PRINTED CIRCUIT BOARD LAYOUT
CONSIDERATIONS
Mechanical stress due to Printed Circuit Board (PCB)
mounting can cause the output voltage to shift from its
initial value. To reduce stress-related output voltage
shifts, mount the reference on low stress areas of the
PCB (i.e., away from PCB edges, screw holes and
large components).
5.2
Typical Applications Circuits
5.2.1
NEGATIVE VOLTAGE REFERENCE
A negative voltage reference can be generated using any
of the devices in the MCP1502 family. A typical applica-
tion is shown in Figure 5-3. In this circuit, the voltage
inversion is implemented using the MCP6061 and two
equal resistors. The voltage at the output of the
MCP1502 voltage reference drives R1, which is con-
nected to the inverting input of the MCP6061 amplifier.
Since the noninverting input of the amplifier is biased to
ground, the inverting input will also be close to ground
potential. The second 10 kΩ
resistor is placed around the
feedback loop of the amplifier. Since the inverting input of
the amplifier is high-impedance, the current generated
through R1 will also flow through R2. As a consequence,
the output voltage of the amplifier is equal to -2.5V for the
MCP1502-25 and -4.096V for the MCP1502-40.
FIGURE 5-3:
Negative Voltage Reference.
VDD
SHDN
GND
1
2
3
4
5
6
GND
OUT
GND
2.2 μF
2.7-5.5V
-
+
10 k
0.1%
10 k
0.1%
-5V
-2.500V
MCP1502-25
MCP6061
1 nF



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