STM32F100C4 STMicroelectronics, STM32F100C4 Datasheet - Page 50
STM32F100C4
Manufacturer Part Number
STM32F100C4
Description
Mainstream Value line, ARM Cortex-M3 MCU with 16 Kbytes Flash, 24 MHz CPU, motor control and CEC functions
Manufacturer
STMicroelectronics
Datasheet
1.STM32F100RB.pdf
(87 pages)
Specifications of STM32F100C4
Peripherals Supported
timers, ADC, SPIs, I2Cs, USARTs and DACs
Conversion Range
0 to 3.6 V
16-bit, 6-channel Advanced-control Timer
up to 6 channels for PWM output, dead time generation and emergency stop
Systick Timer
24-bit downcounter
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Electrical characteristics
50/87
Low-speed internal (LSI) RC oscillator
Table 24.
1. V
2. Based on characterization, not tested in production.
3. Guaranteed by design, not tested in production.
Wakeup time from low-power mode
The wakeup times given in
RC oscillator. The clock source used to wake up the device depends from the current
operating mode:
●
●
All timings are derived from tests performed under the ambient temperature and V
voltage conditions summarized in
Table 25.
1. The wakeup times are measured from the wakeup event to the point at which the user application code
I
t
Symbol
DD(LSI)
su(LSI)
Δf
reads the first instruction.
t
t
t
WUSLEEP
WUSTDBY
DD
f
WUSTOP
LSI(T)
Stop or Standby mode: the clock source is the RC oscillator
Sleep mode: the clock source is the clock that was set before entering Sleep mode.
LSI
Symbol
= 3 V, T
(3)
(3)
(1)
(1)
(1)
LSI oscillator characteristics
Low-power mode wakeup timings
Frequency
Temperature-related frequency drift
LSI oscillator startup time
LSI oscillator power consumption
A
= –40 to 105 °C °C unless otherwise specified.
Wakeup from Sleep mode
Wakeup from Stop mode (regulator in run mode)
Wakeup from Stop mode (regulator in low-power mode)
Wakeup from Standby mode
Parameter
Table 25
STM32F100x4, STM32F100x6, STM32F100x8, STM32F100xB
Doc ID 16455 Rev 6
Table
are measured on a wakeup phase with an 8-MHz HSI
Parameter
8.
(1)
(2)
Min
30
-9
0.65
Typ
40
Max
1.2
60
85
Typ
1.8
3.6
5.4
9
50
DD
Unit
supply
kHz
Unit
µA
µs
%
µs
µs
µs