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MCP47FVB01 데이터시트(PDF) 83 Page - Microchip Technology

부품명 MCP47FVB01
상세설명  8- /10- /12-Bit Single/Dual Voltage Output Volatile Digital-to-Analog Converters with I짼C??Interface
PDF  92 Pages
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제조업체  MICROCHIP [Microchip Technology]
홈페이지  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

MCP47FVB01 데이터시트(HTML) 83 Page - Microchip Technology

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 2015 Microchip Technology Inc.
DS20005405A-page 83
MCP47FVBXX
APPENDIX C:
TERMINOLOGY
C.1
Resolution
The resolution is the number of DAC output states that
divide the full-scale range. For the 12-bit DAC, the
resolution is 212, meaning the DAC code ranges from
0 to 4095.
C.2
Least Significant Bit (LSb)
This is the voltage difference between two successive
codes. For a given output voltage range, it is divided by
the resolution of the device (Equation C-1). The range
may be VDD (or VREF) to VSS (ideal), the DAC register
codes across the linear range of the output driver
(Measured 1), or full-scale to zero-scale (Measured 2).
EQUATION C-1:
LSb VOLTAGE
CALCULATION
C.3
Monotonic Operation
Monotonic operation means that the device’s output
voltage (VOUT) increases with every 1 code step (LSb)
increment (from VSS to the DAC’s reference voltage
(VDD or VREF)).
FIGURE C-1:
VW (VOUT).
Note:
When there are 2N resistors in the resistor
ladder and 2N tap points, the full scale
DAC register code is resistor element
(1 LSb) from the source reference voltage
(VDD or VREF).
VLSb(Measured) =
VOUT(@4000) - VOUT(@100)
(4000 - 100)
2N = 4096 (MCP47FVB2x)
= 1024 (MCP47FVB1x)
= 256 (MCP47FVB0x)
Ideal
VLSb(IDEAL) =
or
VDD
2N
VREF
2N
Measured 1
VLSb =
VOUT(@FS) - VOUT(@ZS)
2N - 1
Measured 2
40h
3Fh
3Eh
03h
02h
01h
00h
Voltage (VW ~= VOUT)
VW (@ tap)
VS0
VS1
VS3
VS63
VS64
VW =
VSn + VZS(@ Tap 0)
n = 0
n = ?



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