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MCP3204-CI/P 数据表(PDF) 14 Page - Microchip Technology

部件名 MCP3204-CI/P
功能描述  2.7V 4-Channel/8-Channel 12-Bit A/D Converters with SPI??Serial Interface
PDF  34 Pages
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制造商  MICROCHIP [Microchip Technology]
网页  http://www.microchip.com
标志 MICROCHIP - Microchip Technology

MCP3204-CI/P 数据表(HTML) 14 Page - Microchip Technology

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MCP3204/3208
DS21298D-page 14
© 2007 Microchip Technology Inc.
This diagram illustrates that the source impedance (RS)
adds to the internal sampling switch (RSS) impedance,
directly effecting the time that is required to charge the
capacitor (Csample). Consequently, larger source
impedances increase the offset, gain and integral
linearity errors of the conversion (see Figure 4-2).
4.2
Reference Input
For each device in the family, the reference input
(VREF) determines the analog input voltage range. As
the reference input is reduced, the LSB size is reduced
accordingly. The theoretical digital output code pro-
duced by the A/D converter is a function of the analog
input signal and the reference input, as shown below.
EQUATION
When using an external voltage reference device, the
system designer should always refer to the manufac-
turer’s recommendations for circuit layout. Any instabil-
ity in the operation of the reference device will have a
direct effect on the operation of the A/D converter.
FIGURE 4-1:
Analog Input Model.
FIGURE 4-2:
Maximum Clock Frequency
vs. Input resistance (RS) to maintain less than a
0.1 LSB deviation in INL from nominal
conditions.
Digital Output Code
4096
V
IN
×
V
REF
---------------------------
=
VIN = analog input voltage
VREF = reference voltage
C
PIN
VA
R
SS
CHx
7pF
V
T = 0.6V
V
T = 0.6V
I
LEAKAGE
Sampling
Switch
SS
R
S = 1 kΩ
C
SAMPLE
= DAC capacitance
V
SS
V
DD
= 20 pF
±1 nA
Legend
VA
=
Signal Source
Ileakage
=
Leakage Current At The Pin
Due To Various Junctions
Rss
=
Source Impedance
SS
=
Sampling switch
CHx
=
Input Channel Pad
Rs
=
Sampling switch resistor
Cpin
=
Input Pin Capacitance
Csample
=
Sample/hold capacitance
Vt
=
Threshold Voltage
0.0
0.5
1.0
1.5
2.0
2.5
100
1000
10000
Input Resistance (Ohms)
VDD = 5 V
VDD = 2.7 V



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