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STIPN2M50T-H Datasheet(PDF) 15 Page - STMicroelectronics

Part # STIPN2M50T-H
Description  3-phase inverters for small power motor drives
PDF  25 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

STIPN2M50T-H Datasheet(HTML) 15 Page - STMicroelectronics

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STIPN2M50T-H
Smart shutdown function
DocID028651 Rev 5
15/25
4
Smart shutdown function
The device integrates a comparator for fault sensing purposes. The comparator has an
internal voltage reference VREF connected to the inverting input, while the non-inverting
input on pin (CIN) can be connected to an external shunt resistor for the overcurrent
protection.
When the comparator triggers, the device is set to the shutdown state and both of its
outputs are set to low level, causing the half-bridge to enter a tri-state.
In common overcurrent protection architectures, the comparator output is usually
connected to the shutdown input through an RC network so to provide a mono-stable
circuit which implements a protection time following to a fault condition.
Our smart shutdown architecture immediately turns off the output gate driver in case of
overcurrent through a preferential path for the fault signal which directly switches off the
outputs. The time delay between the fault and output shutdown no longer depends on the
RC values of the external network connected to the shutdown pin. At the same time, the
DMOS connected to the open-drain output (pin T/
SD
̅̅̅̅/OD) is turned on by the internal logic,
which holds it on until the shutdown voltage is well below the minimum value of logic input
threshold (Vil).
Besides, the smart shutdown function allows the real disable time to be increased without
rising the constant time of the external RC network.
An NTC thermistor for temperature monitoring is internally connected in parallel to the
SD
̅̅̅̅
pin. To avoid undesired shutdown, keep the voltage
��������/��������
̅̅̅̅/�������� higher than the high-level
logic threshold by setting the pull-up resistor
������������
̅̅̅̅ to 1 kΩ or 2.2 kΩ for 3.3 V or 5 V MCU
power supplies, respectively.



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