STM32F103ZFH6TR STMicroelectronics, STM32F103ZFH6TR Datasheet - Page 106

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STM32F103ZFH6TR

Manufacturer Part Number
STM32F103ZFH6TR
Description
ARM Microcontrollers - MCU STM32F103 Perf Line M3 768kB 72 MHz MCU
Manufacturer
STMicroelectronics
Datasheet

Specifications of STM32F103ZFH6TR

Product Category
ARM Microcontrollers - MCU
Core
ARM Cortex M3
Data Bus Width
32 bit

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Electrical characteristics
5.3.20
Table 66.
106/120
V
V
V
R
R
C
DAC_OUT
min
DAC_OUT
max
DAC_OUT
min
DAC_OUT
max
I
I
DNL
DDVREF+
DDA
DDA
REF+
SSA
O
LOAD
LOAD
Symbol
(1)
(1)
(1)
(1)
(1)
(2)
(1)
(1)
Analog supply voltage
Reference supply voltage
Ground
Resistive load vs. V
buffer ON
Resistive load vs. V
buffer ON
Impedance output with buffer
OFF
Capacitive load
Lower DAC_OUT voltage
with buffer ON
Higher DAC_OUT voltage
with buffer ON
Lower DAC_OUT voltage
with buffer OFF
Higher DAC_OUT voltage
with buffer OFF
DAC DC current
consumption in quiescent
mode (Standby mode)
DAC DC current
consumption in quiescent
mode (Standby mode)
Differential non linearity
Difference between two
consecutive code-1LSB)
DAC electrical specifications
DAC characteristics
Parameter
SSA
DDA
with
with
Min
2.4
2.4
0.2
15
0
5
-
-
-
-
-
-
-
-
-
-
Doc ID 16554 Rev 3
Typ
0.5
-
-
-
-
-
-
-
-
-
V
DDA
V
10 mV
REF+
Max
±0.5
380
380
480
3.6
3.6
15
50
±3
0
-
-
-
– 0.2
Unit
LSB
LSB
mV
µA
µA
µA
pF
V
V
V
V
V
V
V
When the buffer is OFF, the Minimum
resistive load between DAC_OUT
and V
1.5 MΩ
Maximum capacitive load at
DAC_OUT pin (when the buffer is
ON).
It gives the maximum output
excursion of the DAC.
It corresponds to 12-bit input code
(0x0E0) to (0xF1C) at V
and (0x155) and (0xEAB) at V
2.4 V
It gives the maximum output
excursion of the DAC.
With no load, worst code (0x0E4) at
V
consumption on the inputs
With no load, middle code (0x800) on
the inputs
With no load, worst code (0xF1C) at
V
consumption on the inputs
Given for the DAC in 10-bit
configuration
Given for the DAC in 12-bit
configuration
REF+
REF+
REF+
STM32F103xF, STM32F103xG
SS
must always be below V
= 3.6 V in terms of DC
= 3.6 V in terms of DC
to have a 1% accuracy is
Comments
REF+
= 3.6 V
REF+
DDA
=

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