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參數(shù)資料
型號: MC68HC916X1
廠商: Motorola, Inc.
英文描述: 16-Bit Modular Microcontroller(16位模塊化微控制器)
中文描述: 16位微控制器模塊(16位模塊化微控制器)
文件頁數(shù): 165/172頁
文件大小: 1035K
代理商: MC68HC916X1
MC68HC916X1
MC68HC916X1TS/D
MOTOROLA
165
1. At V
RH
– V
RL
= 5.12 V, one 10-bit count = 5 mV and one 8-bit count = 20 mV.
2. 8-bit absolute error of 1 count (20 mV) includes 1/2 count (10 mV) inherent quantization error and 1/2 count (10
mV) circuit (differential, integral, and offset) error.
3. Conversion accuracy varies with f
ADCLK
rate. Reduced conversion accuracy occurs at maximum f
ADCLK
. As-
sumes that minimum sample time (2 ADC Clocks) is selected.
4. 10-bit absolute error of 2.5 counts (12.5 mV) includes 1/2 count (2.5 mV) inherent quantization error and 2 counts
(10 mV) circuit (differential, integral, and offset) error.
5. Maximum source impedance is application-dependent. Error resulting from pin leakage depends on junction
leakage into the pin and on leakage due to charge-sharing with internal capacitance.
Error from junction leakage is a function of external source impedance and input leakage current. Expected error
in result value due to junction leakage is expressed in voltage (V
ERRJ
):
V
ERRJ
= R
S
X
I
OFF
where I
OFF
is a function of operating temperature, as shown in
Table 83
.
Charge-sharing leakage is a function of input source impedance, conversion rate, change in voltage between
successive conversions, and the size of the decoupling capacitor used. Error levels are best determined empir-
ically. In general, continuous conversion of the same channel may not be compatible with high source imped-
ance.
Table 85 ADC Conversion Characteristics (Operating)
(V
DD
and
V
DDA
= 5.0 Vdc
±
5%, V
SS
= 0 Vdc, T
A
= T
L
to T
H
,
0.5 MHz
f
ADCLK
1.0 MHz, 2 Clock Input Sample Time)
Num
1
Parameter
Symbol
Min
Typ
Max
Unit
8-bit Resolution
1
8-bit Differential Nonlinearity
8-bit Integral Nonlinearity
1 Count
20
mV
2
3
4
DNL
INL
–0.5
–1
–0.5
1
Counts
Counts
8-bit Absolute Error
2
AE
–1
1
Counts
5
10-bit Resolution
1
1 Count
5
mV
6
10-bit Differential Nonlinearity
3
DNL
–0.5
–0.5
Counts
7
10-bit Integral Nonlinearity
3
INL
–2.0
2.0
Counts
8
10-bit Absolute Error
3,4
AE
–2.5
2.5
Counts
9
Source Impedance at Input
5
R
S
20
k
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