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MCP1525I/TT датащи(PDF) 10 Page - Microchip Technology

номер детали MCP1525I/TT
подробное описание детали  2.5V and 4.096V Voltage References
PDF  20 Pages
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производитель  MICROCHIP [Microchip Technology]
домашняя страница  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP1525I/TT датащи(HTML) 10 Page - Microchip Technology

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MCP1525/41
DS21653C-page 10
 2001-2012 Microchip Technology Inc.
4.2
Typical Application Circuits
4.2.1
NEGATIVE VOLTAGE REFERENCE
A negative precision voltage reference can be
generated by using the MCP1525 or MCP1541 in the
configuration shown in Figure 4-3.
FIGURE 4-3:
Negative Voltage
Reference.
In this circuit, the voltage inversion is implemented
using the MCP606 and two equal resistors. The voltage
at the output of the MCP1525 or MCP1541 voltage
reference drives R1, which is connected to the inverting
input of the MCP606 amplifier. Since the non-inverting
input of the amplifier is biased to ground, the inverting
input will also be close to ground potential. The second
10 k
 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
MCP1525 and -4.1V for the MCP1541.
4.2.2
A/D CONVERTER REFERENCE
The MCP1525 and MCP1541 were carefully designed
to provide a voltage reference for Microchip’s 10-bit
and 12-bit families of ADCs. The circuit shown in
Figure 4-4 shows a MCP1541 configured to provide the
reference to the MCP3201, a 12-bit ADC.
FIGURE 4-4:
ADC Reference Circuit.
VSS
VOUT
VIN
CL
R1
MCP1525
MCP1541
10 µF
10 k
VDD =5.0V
VREF
MCP606
VSS =- 5.0V
0.1%
R2
10 k
0.1%
VREF =-2.5V, MCP1525
VREF = -4.096V, MCP1541
VSS
VOUT
VIN
VDD =5.0V
CIN
0.1 µF
MCP3201
CL
10 µF
VREF
IN+
IN–
VIN
10 µF
0.1 µF
to PIC®
Microcontroller
3
21653C.book Page 10 Thursday, January 10, 2013 12:55 PM



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