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MCP47DA1 датащи(PDF) 68 Page - Microchip Technology

номер детали MCP47DA1
подробное описание детали  6-Bit Windowed Volatile DAC with Command Code
PDF  76 Pages
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производитель  MICROCHIP [Microchip Technology]
домашняя страница  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP47DA1 датащи(HTML) 68 Page - Microchip Technology

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MCP47DA1
DS25118D-page 68
 2012-2013 Microchip Technology Inc.
APPENDIX B: TERMINOLOGY
B.1
Resolution
The resolution is the number of DAC output states that
divide the full-scale range. For the 6-bit DAC, the
resolution is 26, meaning the DAC code ranges from 0
to 64.
B.2
Least Significant Bit (LSb)
Normally, this is thought of as the ideal voltage
difference between two successive codes. This bit has
the smallest value or weight of all bits in the register.
For a given output voltage range, which is typically the
voltage between the full-scale voltage and the zero-
scale voltage (VOUT(FS) - VOUT(ZS)), it is divided by the
resolution of the device (Equation B-1).
EQUATION B-1:
LSb VOLTAGE
CALCULATION
B.3
Monotonic Operation
Monotonic operation means that the device’s output
voltage (VOUT) increases with every one code step
(LSb) change (from terminal B to terminal A). The VOUT
voltage (VW voltage) is the sum of all the Step voltages
plus the voltage at zero scale (VZS). The zero-scale
voltage is dependent on the resistance between the tap
0 point and the B Terminal.
FIGURE B-1:
VW (VOUT).
B.4
Full-Scale Error (FSE)
The Full-Scale Error (FSE) is the difference between
the ideal and measured DAC output voltage with the
wiper’s position is set to its maximum (wiper code =
40h); see Figure B-3. Full-scale error may also be
thought of as the sum of the offset error plus gain error.
See Figure 2-23 through Figure 2-33 for FSE
characterization graphs.
EQUATION B-2:
FULL-SCALE ERROR
B.5
Zero-Scale Error (ZSE)
The Zero-Scale Error (ZSE) is the difference between
the ideal and measured VOUT voltage with the wiper
position set to its minimum (wiper code = 00h); see
Figure B-3. The zero-scale error is the same as the off-
set error for this case (wiper code = 00h).
See Figure 2-34 through Figure 2-44 for ZSE
characterization graphs.
EQUATION B-3:
ZERO-SCALE ERROR
B.6
Total Unadjusted Error
The total unadjusted error is the difference between the
ideal and measured VOUT voltage. Typically, calibration
of the output voltage is implemented to improve system
performance.
See Figure 2-45 through Figure 2-55 and Figure 2-75
through Figure 2-78 for total unadjusted error
characterization graphs.
VLSb =
VOUT(FS) - VOUT(ZS)
2N
2N = 64 (MCP47DA1)
0x40
0x3F
0x3E
0x03
0x02
0x01
0x00
Voltage (VW ~= VOUT)
VW
(@ tap)
VS0
VS1
VS3
VS63
VS64
VW =
VSn + VZS(@ Tap 0)
n = 0
n = ?
FSE =
VOUT(@FS) - VIDEAL(@FS)
VLSb
Where:
FSE is expressed in LSb
VOUT(@FS) is the VOUT voltage when the DAC
register code is at Full Scale.
VIDEAL(@FS) is the ideal output voltage when the
DAC register code is at Full Scale.
VLSb is the delta voltage of one DAC register code
step (such as code 20h to code 21h).
ZSE =
VOUT(@ZS)
VLSb
Where:
FSE is expressed in LSb
VOUT(@ZS) is the VOUT voltage when the DAC
register code is at Zero Scale.
VLSb is the delta voltage of one DAC register code
step (such as code 20h to code 21h).



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