STEVAL-IHM021V1 STMicroelectronics, STEVAL-IHM021V1 Datasheet - Page 15

BOARD EVAL L6390/STD5NK52ZD

STEVAL-IHM021V1

Manufacturer Part Number
STEVAL-IHM021V1
Description
BOARD EVAL L6390/STD5NK52ZD
Manufacturer
STMicroelectronics
Type
Motor / Motion Controllers & Driversr

Specifications of STEVAL-IHM021V1

Main Purpose
Power Management, Motor Control
Embedded
Yes, MCU, 32-Bit
Utilized Ic / Part
L6390, STD5NK52ZD-1
Primary Attributes
3-Ph PMSM, 100 W 3-Phase Inverter, 110 ~ 230VAC
Secondary Attributes
Field-Oriented Control (FOC) of Sinusoidal-Shaped Back-EMF
Input Voltage
110 V to 230 V
Product
Power Management Modules
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
L6390, STD5NK52ZD-1
Other names
497-8404
L6390
Smart shut down function
In common over-current protection architectures the comparator output is usually connected
to the SD input and an RC network is connected to this SD/OD line in order to provide a
mono-stable circuit, which implements a protection time that follows the fault condition.
Differently from the common fault detection systems, L6390 Smart shut down architecture
allows to immediately turn-off the outputs gate driver in case of fault, by minimizing the
propagation delay between the fault detection event and the actual outputs switch-off. In fact
the time delay between the fault and the outputs turn off is no more dependent on the RC
value of the external network connected to the pin. In the smart shut down circuitry, the fault
signal has a preferential path which directly switches off the outputs after the comparator
triggering. At the same time the internal logic turns on the open drain output and holds it on
until the SD voltage goes below the SD logic input lower threshold. The Smart shut down
system provides the possibility to increase the time constant of the external RC network
(that is the disable time after the fault event) up to very large values without increasing the
delay time of the protection.
Any external signal provided to the SD pin is not latched and can be used as control signal
in order to perform, for instance, PWM chopping through this pin. In fact when a PWM signal
is applied to the SD input and the logic inputs of the gate driver are stable, the outputs
switch from the low level to the state defined by the logic inputs and vice versa.
Doc ID 14493 Rev 5
15/22

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