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GD32A50x User Manual
97
shows the relationship between the supply voltage and the BOR reset signal. V
BOR
,
which defined in the BOR_TH bits in option bytes, indicates the threshold of BOR on reset.
The hysteresis voltage (V
hyst
) is 40mV.
Figure 3-3. Waveform of the BOR
V
DD
/ V
DDA
V
BOR
BOR Reset (Active Low)
t
40mV
V
hyst
V
DDA
domain
The LVD is used to detect whether the V
DD
/ V
DDA
supply voltage is lower than a programmed
threshold selected by the LVDT[2:0] bits in the Power control register (PMU_CTL). The LVD
is enabled by setting the LVDEN bit in the PMU_CTL register. And LVDF bit, which is in the
Power control and status register (PMU_CS), indicates if V
DD
/ V
DDA
is higher or lower than
the LVD threshold. This event is internally connected to the EXTI line 16 and can generate
an interrupt if it is enabled through the EXTI registers.
Figure 3-4. Waveform of the LVD
shows the relationship between the LVD threshold and the LVD output (LVD
interrupt signal depends on EXTI line 16 rising or falling edge configuration). The following
figure also shows the relationship between the supply voltage and the LVD signal. The
hysteresis voltage (V
hyst
) is 100mV.
The OVD is used to detect whether the VDD / VDDA supply voltage is over than a
programmed threshold selected by the OVDT bits in the Power control register (PMU_CTL).
The OVD is enabled by setting the OVDEN bit in the PMU_CTL register. And OVDF bit
indicates if VDD / VDDA is higher or lower than the OVD threshold. This event is internally
connected to the EXTI line 24 and can generate an interrupt if it is enabled through the EXTI
registers.
Figure 3-5. Waveform of the OVD threshold
shows the relationship between the
OVD threshold and the OVD output (OVD interrupt signal depends on EXTI line 24 rising or
falling edge configuration). The following figure also shows the relationship between the
supply voltage and the OVD signal. The hysteresis voltage (V
hyst
) is 25mV.