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MCP4821 数据表(PDF) 30 Page - Microchip Technology

部件名 MCP4821
功能描述  SPI Interface with 20 MHz Clock Support
PDF  50 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

MCP4821 数据表(HTML) 30 Page - Microchip Technology

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MCP4802/4812/4822
DS20002249B-page 30
 2010-2015 Microchip Technology Inc.
6.8
Designing a Double-Precision
DAC Using a Dual DAC
Example 6-5 illustrates how to design a single-supply
voltage output capable of up to 24-bit resolution from a
dual 12-bit DAC (MCP4822). This design is simply a
voltage divider with a buffered output.
As an example, if an application similar to the one
developed
in
Section 6.6.1
“Design
Example:
Design a Bipolar DAC Using Example 6-3 with 12-
bit MCP4822 or MCP4821” required a resolution of
1 µV instead of 1 mV, and a range of 0V to 4.1V, then
12-bit resolution would not be adequate.
Step 1: Calculate the resolution needed:
4.1V/1 µV = 4.1 x 106. Since 222 =4.2 x 106,
22-bit
resolution
is
desired.
Since
DNL = ±0.75 LSb, this design can be done
with the 12-bit MCP4822 DAC.
Step 2: Since DACB’s VOUTB has a resolution of 1 mV,
its output only needs to be “pulled” 1/1000 to
meet the 1 µV target. Dividing VOUTA by 1000
would allow the application to compensate for
DACB’s DNL error.
Step 3: If R2 is 100, then R1 needs to be 100 k.
Step 4: The resulting transfer function is shown in the
equation of Example 6-5.
EXAMPLE 6-5:
SIMPLE, DOUBLE-PRECISION DAC WITH MCP4822
VDD
R2
VO
VDD
R1
(DACA for Fine Adjustment)
(DACB for Course Adjustment)
SPI
3-wire
R1 >> R2
V
O
V
OUTAR2
V
OUTBR1
+
R
1
R
2
+
------------------------------------------------------
=
0.1 µF
VCC+
VCC
VOUTA
VOUTB
V
OUTA
2.048 G
A
D
A
2
12
-------

=
V
OUTB
2.048 G
B
D
B
2
12
-------

=
MCP4822
MCP4822
Gx = Gain selection (1x or 2x)
Dn = Digital value of DAC (0-4096)



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