R5F21133DFP RENESAS [Renesas Technology Corp], R5F21133DFP Datasheet - Page 146

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R5F21133DFP

Manufacturer Part Number
R5F21133DFP
Description
16-BIT SINGLE-CHIP MICROCOMPUTER M16C FAMILY/R8C/Tiny SERIES
Manufacturer
RENESAS [Renesas Technology Corp]
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
R5F21133DFP#U0
Manufacturer:
Renesas Electronics America
Quantity:
10 000
R8C/13 Group
Rev.1.20
REJ09B0111-0120
14.7 Output Impedance of Sensor under A/D Conversion
To carry out A/D conversion properly, charging the internal capacitor C shown in Figure 14.11 has to
be completed within a specified period of time. T (sampling time) as the specified time. Let output
impedance of sensor equivalent circuit be R0, microcomputer’s internal resistance be R, precision
(error) of the A/D converter be X, and the A/D converter’s resolution be Y (Y is 1024 in the 10-bit mode,
and 256 in the 8-bit mode).
Figure 14.11 shows analog input pin and external sensor equivalent circuit. When the difference
between VIN and VC becomes 0.1 LSB, we find impedance R0 when voltage between pins VC
changes from 0 to VIN – (0.1/1024) VIN in time T. (0.1/1024) means that A/D precision drop due to
insufficient capacitor charge is held to 0.1 LSB at time of A/D conversion in the 10-bit mode. Actual
error however is the value of absolute precision added to 0.1 LSB. When f(X
in the A/D conversion mode with sample & hold. Output impedance R0 for sufficiently charging capaci-
tor C within time T is determined as follows.
Thus, the allowable output impedance of the sensor circuit capable of thoroughly driving the A/D
converter turns out to be approximately 7.3 k .
Jan 27, 2006
R0 = –
VC is generally VC = VIN {1 – e
And when t = T,
Hence, R0 = –
T = 0.25 s, R = 2.8 k , C = 1.5 pF, X = 0.1, and Y = 1024 . Hence,
6.0 X 10
page 135 of 205
0.25 X 10
e
C • ln
–12
VC=VIN –
C (R0 +R)
• ln
C (R0 + R)
T
1
–6
1
X
Y
1024
0.1
– R
T
Y
X
T = ln
– 2.8 X 10
=
C (R0 + R)
VIN = VIN(1 –
1
Y
X
Y
X
14.7 Output Impedance of Sensor under A/D Conversion
3
t
}
7.3 X 10
Y
X
)
3
IN
) = 10 MHz, T = 0.25 µs

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