SAK-TC1197-256F180E AC Infineon Technologies, SAK-TC1197-256F180E AC Datasheet - Page 140

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SAK-TC1197-256F180E AC

Manufacturer Part Number
SAK-TC1197-256F180E AC
Description
IC MCU 32BIT 2MB FLASH BGA416-10
Manufacturer
Infineon Technologies
Series
TC11xxr
Datasheet

Specifications of SAK-TC1197-256F180E AC

Core Processor
TriCore
Core Size
32-Bit
Speed
180MHz
Connectivity
ASC, CAN, EBI/EMI, MLI, MSC, SSC
Peripherals
DMA, POR, WDT
Number Of I /o
219
Program Memory Size
2MB (2M x 8)
Program Memory Type
FLASH
Ram Size
224K x 8
Voltage - Supply (vcc/vdd)
1.42 V ~ 1.58 V
Data Converters
A/D 48x12b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 125°C
Package / Case
416-BGA
Packages
PG-BGA-416
Max Clock Frequency
180.0 MHz
Sram (incl. Cache)
224.0 KByte
Can Nodes
4
A / D Input Lines (incl. Fadc)
48
Program Memory
2.0 MB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
12) Only one of these parameters is tested, the other is verified by design characterization.
13) The leakage current decreases typically 30% for junction temperature decrease of 10oC.
14)
15) For the definition of the parameters see also
16) Applies to AINx, when used as auxiliary reference inputs.
17) This represents an equivalent switched capacitance. This capacitance is not switched to the reference voltage
18) The sampling capacity of the conversion C-Network is pre-charged to
19) RAIN7T = 1400 Ohm maximum and 830 Ohm typical in the
20) The DC current at the pin is limited to 3 mA for the operational lifetime.
Figure 17
Table 12
Parameter
Conversion
time with
post-calibration
Conversion
time without
post-calibration
Data Sheet
I
with a duration of up to
needs a total charge of
All ADC conversions with a duration longer than
at once. Instead of this smaller capacitances are successively switched to the reference voltage.
Because of the parasitic elements the voltage measured at AINx deviates from
AREF_MAX
is valid for the minimum specified conversion time. The current flowing during an ADC conversion
ADC kernel
ADC0/ADC1 Clock Circuit
Conversion Time (Operating Conditions apply)
interrupts,
Symbol Value
t
registers
C
etc.
t
Q
C
CC 2 ×
CONV
= 25 µs can be calculated with the formula
= 150 pC from
2 ×
T
T
ADC
ADC
+ (4 + STC + n) ×
+ (2 + STC + n) ×
Figure
analog part
V
generation
divider for
AREF
t
C
clock
f
136
ADCI
= 25µs consume an
.
18.
f
analog clock
f
ADC
ADCI
V
DDM
= 3.3 V ± 5% range.
T
T
I
divider for
AREF_MAX
ADCI
ADCI
V
AREF
I
arbiter
AREF_MAX
f
ADCD
/ 2 before the sampling moment.
Unit Note
μs
digital clock
f
ADCD
V
=
ADC_clocking
Electrical Parameters
AREF
Q
= 6µA.
CONV
/2, and is typically 1.35 V.
n = 8, 10, 12 for
n - bit conversion
T
T
ADC
ADCI
/
t
C
. Every conversion
= 1 /
= 1 /
V1.1, 2009-05
TC1197
f
f
ADC
ADCI

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