STM32F103ZGH6 STMicroelectronics, STM32F103ZGH6 Datasheet - Page 58

MCU 32BIT 1MB FLASH 144LQFP

STM32F103ZGH6

Manufacturer Part Number
STM32F103ZGH6
Description
MCU 32BIT 1MB FLASH 144LQFP
Manufacturer
STMicroelectronics
Series
STM32r
Datasheet

Specifications of STM32F103ZGH6

Core Processor
ARM® Cortex-M3™
Core Size
32-Bit
Speed
72MHz
Connectivity
CAN, I²C, IrDA, LIN, MMC, SPI, UART/USART, USB
Peripherals
DMA, I²S, LCD, POR, PWM, WDT
Number Of I /o
112
Program Memory Size
1MB (1M x 8)
Program Memory Type
FLASH
Ram Size
96K x 8
Voltage - Supply (vcc/vdd)
2 V ~ 3.6 V
Data Converters
A/D 21x12b; D/A 2x12b
Oscillator Type
Internal
Operating Temperature
-40°C ~ 85°C
Package / Case
*
Processor Series
STM32F101xG
Core
ARM Cortex M3
Data Bus Width
32 bit
Data Ram Size
80 KB
Interface Type
I2C, SPI, UART
Maximum Clock Frequency
36 MHz
Number Of Programmable I/os
112
Number Of Timers
15
Operating Supply Voltage
2 V to 3.6 V
Maximum Operating Temperature
+ 85 C
Mounting Style
SMD/SMT
Operating Temperature Range
- 40 C to + 105 C
Processor To Be Evaluated
STM32F103ZG
Supply Current (max)
28 mA
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-
Lead Free Status / Rohs Status
 Details
Other names
497-11115

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Electrical characteristics
Table 24.
1. Based on characterization, not tested in production.
2. Refer to the note and caution paragraphs below the table, and to the application note AN2867 “Oscillator design guide for
3.
Note:
Caution:
58/120
t
C
SU(LSE)
Symbol
L1
ST microcontrollers”.
reached. This value is measured for a standard crystal and it can vary significantly with the crystal manufacturer
t
R
g
SU(LSE)
I
, C
2
m
F
L2
(3)
is the startup time measured from the moment it is enabled (by software) to a stabilized 32.768 kHz oscillation is
Feedback resistor
Recommended load capacitance
versus equivalent serial
resistance of the crystal (R
LSE driving current
Oscillator transconductance
Startup time
Low-speed external clock generated from a crystal/ceramic resonator
The low-speed external (LSE) clock can be supplied with a 32.768 kHz crystal/ceramic
resonator oscillator. All the information given in this paragraph are based on characterization
results obtained with typical external components specified in
the resonator and the load capacitors have to be placed as close as possible to the oscillator
pins in order to minimize output distortion and startup stabilization time. Refer to the crystal
resonator manufacturer for more details on the resonator characteristics (frequency,
package, accuracy).
LSE oscillator characteristics (f
For C
15 pF range selected to match the requirements of the crystal or resonator (see
C
capacitance which is the series combination of C
Load capacitance C
C
between 2 pF and 7 pF.
To avoid exceeding the maximum value of C
to use a resonator with a load capacitance C
capacitance of 12.5 pF.
Example: if you choose a resonator with a load capacitance of C
then C
L1
stray
and C
L1
is the pin capacitance and board or trace PCB-related capacitance. Typically, it is
L1
and C
Parameter
= C
L2,
L2
are usually the same size. The crystal manufacturer typically specifies a load
L2
= 8 pF.
, it is recommended to use high-quality ceramic capacitors in the 5 pF to
L
has the following formula: C
S
)
Doc ID 16554 Rev 2
stabilized
V
LSE
DD
V
is
= 32.768 kHz)
DD
= 3.3 V, V
Conditions
R
S
L1
= 30 k
L
and C
T
T
T
T
T
T
T
7 pF. Never use a resonator with a load
L1
T
A
A
A
A
IN
L
A
A
A
A
= -10 °C
= -20 °C
= -30 °C
= -40 °C
= C
= 50 °C
= 25 °C
= 10 °C
= V
and C
= 0 °C
(1) (2)
L2
SS
L1
(15 pF) it is strongly recommended
x C
L2
.
STM32F103xF, STM32F103xG
L2
Table
/ (C
L
Min
= 6 pF, and C
5
L1
24. In the application,
+ C
Typ
1.5
2.5
10
17
32
60
L2
5
4
6
) + C
Max
1.4
stray
15
Figure
stray
= 2 pF,
where
µA/V
Unit
M
pF
µA
21).
s

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