SAK-XC167CI-32F40FBB-A Infineon Technologies, SAK-XC167CI-32F40FBB-A Datasheet - Page 67

Microcontrollers (MCU) 256KB FLASH 12KB RAM 2xASC 2xSSC I2C

SAK-XC167CI-32F40FBB-A

Manufacturer Part Number
SAK-XC167CI-32F40FBB-A
Description
Microcontrollers (MCU) 256KB FLASH 12KB RAM 2xASC 2xSSC I2C
Manufacturer
Infineon Technologies
Datasheet

Specifications of SAK-XC167CI-32F40FBB-A

Data Bus Width
16 bit
Program Memory Type
Flash
Program Memory Size
256 KB
Data Ram Size
12 KB
Interface Type
2xASC, 2xSSC, 1xI2C
Maximum Clock Frequency
40 MHz
Number Of Programmable I/os
103
Number Of Timers
11
Operating Supply Voltage
5 V
Maximum Operating Temperature
+ 125 C
Mounting Style
SMD/SMT
Package / Case
PG-TQFP-144
Minimum Operating Temperature
- 40 C
On-chip Adc
10 bit, 16 Channel
Lead Free Status / Rohs Status
 Details
Other names
KX167CI32F40FBBAXT

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SAK-XC167CI-32F40FBB-A
0
4.3
Table 14
Parameter
Analog reference supply
Analog reference ground
Analog input voltage range
Basic clock frequency
Conversion time for 10-bit
result
Conversion time for 8-bit
result
Calibration time after reset
Total unadjusted error
Total capacitance
of an analog input
Switched capacitance
of an analog input
Resistance of
the analog input path
Total capacitance
of the reference input
Switched capacitance
of the reference input
Resistance of
the reference input path
1) TUE is tested at
2)
Data Sheet
defined voltage range.
If the analog reference supply voltage drops below 4.5 V (i.e.
voltage by up to 0.2 V (i.e.
subject to production test.
The specified TUE is guaranteed only, if the absolute sum of input overload currents on Port 5 pins (see
specification) does not exceed 10 mA, and if
time. During the reset calibration sequence the maximum TUE may be ±4 LSB.
V
cases will be X000
AIN
4)
4)
may exceed
Analog/Digital Converter Parameters
A/D Converter Characteristics (Operating Conditions apply)
V
V
AGND
H
AREF
or X3FF
=
or
V
V
V
DDP
AREF
AREF
H
, respectively.
+ 0.1 V,
Symbol
V
V
V
f
t
t
t
t
t
TUE
C
C
R
C
C
R
up to the absolute maximum ratings. However, the conversion result in these
=
BC
C10P
C10
C8P
C8
CAL
AREF
AGND
AIN
AIN
AREF
AINT
AINS
AREFT
AREFS
V
DDP
V
+ 0.2 V) the maximum TUE is increased to ±3 LSB. This range is not
AGND
SR 4.5
SR
SR
CC 52 ×
CC 40 ×
CC 44 ×
CC 32 ×
CC 484
CC –
CC –
CC –
CC –
CC –
CC –
CC –
V
= 0 V. It is verified by design for all other voltages within the
AREF
Min.
V
V
0.5
65
SS
AGND
and
- 0.1
Limit Values
t
t
t
t
V
BC
BC
BC
BC
AGND
+
+
+
+
t
t
t
t
remain stable during the respective period of
V
S
S
S
S
V
+ 0.1
V
V
20
11,696
±2
15
10
2
20
15
1
Max.
AREF
+ 6 ×
+ 6 ×
+ 6 ×
+ 6 ×
DDP
SS
AREF
≥ 4.0 V) or exceeds the power supply
+ 0.1
t
t
t
t
SYS
SYS
SYS
SYS
Electrical Parameters
pF
pF
kΩ
pF
pF
kΩ
Unit Test
V
V
V
MHz
t
LSB
BC
XC167CI-32F
Condition
1)
2)
3)
Post-calibr. on
Post-calibr. off
Post-calibr. on
Post-calibr. off
5)
1)
6)
6)
6)
6)
6)
6)
Derivatives
V1.1, 2006-08
I
OV

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