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XC164GM Datasheet(PDF) 56 Page - Infineon Technologies AG

Part # XC164GM
Description  16-Bit Single-Chip Microcontroller with C166SV2 Core
Download  67 Pages
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Manufacturer  INFINEON [Infineon Technologies AG]
Direct Link  http://www.infineon.com
Logo INFINEON - Infineon Technologies AG

XC164GM Datasheet(HTML) 56 Page - Infineon Technologies AG

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XC164GM
Derivatives
Electrical Parameters
Data Sheet
54
V1.0, 2005-11
4.3
Analog/Digital Converter Parameters
Table 4-6
A/D Converter Characteristics (Operating Conditions apply)
Parameter
Symbol
Limit Values
Unit Test
Condition
Min.
Max.
Analog reference supply
V
AREF
SR 4.5
V
DDP
+ 0.1
V
1)
1) TUE is tested at
V
AREF = VDDP + 0.1 V, VAGND = 0 V. It is verified by design for all other voltages within the
defined voltage range.
If the analog reference supply voltage drops below 4.5 V (i.e.
V
AREF ≥ 4.0 V) or exceeds the power supply
voltage by up to 0.2 V (i.e.
V
AREF = VDDP + 0.2 V) the maximum TUE is increased to ±3 LSB. This range is not
subject to production test.
The specified TUE is guaranteed only, if the absolute sum of input overload currents on Port 5 pins (see
I
OV
specification) does not exceed 10 mA, and if
V
AREF and VAGND remain stable during the respective period of
time. During the reset calibration sequence the maximum TUE may be
±4 LSB.
Analog reference ground
V
AGND
SR
V
SS - 0.1
V
SS + 0.1
V
Analog input voltage range
V
AIN
SR
V
AGND
V
AREF
V
2)
Basic clock frequency
f
BC
0.5
20
MHz
3)
Conversion time for 10-bit
result
4)
t
C10P
CC 52
× t
BC + tS + 6 × tSYS
Post-calibr. on
t
C10
CC 40
× t
BC + tS + 6 × tSYS
Post-calibr. off
Conversion time for 8-bit
result
4)
t
C8P
CC 44
× t
BC + tS + 6 × tSYS
Post-calibr. on
t
C8
CC 32
× t
BC + tS + 6 × tSYS
Post-calibr. off
Calibration time after reset
t
CAL
CC 484
11,696
t
BC
5)
Total unadjusted error
TUE
CC –
±2LSB 1)
Total capacitance
of an analog input
C
AINT
CC –
15
pF
6)
Switched capacitance
of an analog input
C
AINS
CC –
10
pF
6)
Resistance of
the analog input path
R
AIN
CC –
2
k
6)
Total capacitance
of the reference input
C
AREFT
CC –
20
pF
6)
Switched capacitance
of the reference input
C
AREFS
CC –
15
pF
6)
Resistance of
the reference input path
R
AREF
CC –
1
k
6)


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