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VN920PEP-E(2013) View Datasheet(PDF) - STMicroelectronics

Part Name
Description
Manufacturer
VN920PEP-E
(Rev.:2013)
ST-Microelectronics
STMicroelectronics ST-Microelectronics
VN920PEP-E Datasheet PDF : 26 Pages
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Application information
VN920PEP-E
3.1.2
Solution 2: diode (DGND) in the ground line
A resistor (RGND = 1kshould be inserted in parallel to DGND if the device drives an
inductive load.
This small signal diode can be safely shared amongst several different HSDs. Also in this
case, the presence of the ground network will produce a shift (600mV) in the input
threshold and in the status output values if the microprocessor ground is not common to the
device ground. This shift will not vary if more than one HSD shares the same diode/resistor
network.
Series resistor in INPUT and STATUS lines are also required to prevent that, during battery
voltage transient, the current exceeds the absolute maximum rating.
Safest configuration for unused INPUT pin is to leave it unconnected, while unused SENSE
) pin has to be connected to ground pin.
uct(s 3.2
Load dump protection
rod Dld is necessary (voltage transient suppressor) if the load dump peak voltage exceeds the
P VCC max DC rating. The same applies if the device is subject to transients on the VCC line
that are greater than the ones shown in the ISO 7637-2: 2004(E) table.
solete 3.3
MCU I/Os protection
b If a ground protection network is used and negative transient are present on the VCC line,
- O the control pins will be pulled negative. ST suggests to insert a resistor (Rprot) in line to
) prevent the µC I/Os pins to latch-up.
t(s The value of these resistors is a compromise between the leakage current of C and the
c current required by the HSD I/Os (Input levels compatibility) with the latch-up limit of C
u I/Os.
rod -VCCpeak/Ilatchup Rprot (VOHµC-VIH-VGND) / IIHmax
P Calculation example:
teFor VCCpeak= - 100V and Ilatchup 20mA; VOHµC 4.5V
ole5k  Rprot 65k.
Obs Recommended values: Rprot =10k.
18/26
Doc ID 10874 Rev 7

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