STM32F103C6 STMicroelectronics, STM32F103C6 Datasheet - Page 56
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STM32F103C6
Manufacturer Part Number
STM32F103C6
Description
Mainstream Performance line, ARM Cortex-M3 MCU with 32 Kbytes Flash, 72 MHz CPU, motor control, USB and CAN
Manufacturer
STMicroelectronics
Datasheet
1.STM32F103T4.pdf
(87 pages)
Specifications of STM32F103C6
Conversion Range
0 to 3.6 V
Peripherals Supported
timers, ADC, SPIs, I2Cs and USARTs
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Electrical characteristics
5.3.13
Table 35.
1. FT = Five-volt tolerant. In order to sustain a voltage higher than V
2. Hysteresis voltage between Schmitt trigger switching levels. Based on characterization, not tested in production.
3. With a minimum of 100 mV.
4. Leakage could be higher than max. if negative current is injected on adjacent pins.
5. Pull-up and pull-down resistors are designed with a true resistance in series with a switchable PMOS/NMOS. This
56/87
Symbol
V
R
R
C
V
V
I
disabled.
PMOS/NMOS contribution
lkg
hys
PU
PD
IH
IO
IL
Standard IO input low
level voltage
IO FT
voltage
Standard IO input high
level voltage
IO FT
voltage
Standard IO Schmitt
trigger voltage
hysteresis
IO FT Schmitt trigger
voltage hysteresis
Input leakage current
Weak pull-up equivalent
resistor
Weak pull-down
equivalent resistor
I/O pin capacitance
I/O port characteristics
General input/output characteristics
Unless otherwise specified, the parameters given in
performed under the conditions summarized in
compliant.
I/O static characteristics
(1)
(1)
Parameter
(5)
input low level
input high level
(2)
to the series resistance is minimum
(2)
(5)
(4)
V
V
V
DD
DD
Standard I/Os
SS
Conditions
V
V
> 2 V
≤
V
≤
I/O FT
IN
IN
IN
2 V
V
=
=
= 5 V
IN
V
V
≤
DD
SS
Doc ID 15060 Rev 5
V
DD
(~10% order)
0.41*(V
0.42*(V
5% V
DD
DD
+0.3 the internal pull-up/pull-down resistors must be
DD
–0.3
–0.3
Min
200
30
30
-2 V)+1.3 V
Table
-2 V)+1 V
DD
.
(3)
Table 35
9. All I/Os are CMOS and TTL
Typ
40
40
5
STM32F103x4, STM32F103x6
are derived from tests
0.32*(V
0.28*(V
V
DD
DD
DD
Max
5.5
5.2
50
50
±1
-2V)+0.75 V
-2 V)+0.8 V
3
+0.3
Unit
mV
mV
µA
kΩ
kΩ
pF
V
V
V
V