STMicroelectronics Effektswitch IC, 24 Ben Hög sida Hög sida IPS2050H PowerSSO-24

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47 353,00 kr

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59 191,00 kr

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RS-artikelnummer:
239-5525
Tillv. art.nr:
IPS2050HTR-32
Tillverkare / varumärke:
STMicroelectronics
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Varumärke

STMicroelectronics

Strömbrytartyp

Hög sida

Strömbrytartopologi

Hög sida

Produkttyp

Effektswitch IC

Motstånd vid påslagning RdsOn

30mΩ

Antal utgångar

16

Fästetyp

Yta

Kapseltyp

PowerSSO-24

Minsta matningsspänning

8V

Maximal matningsspänning

60V

Antal ben

24

Driftström

5.6A

Maximal arbetstemperatur

150°C

Minsta arbetsstemperatur

-40°C

Höjd

2.47mm

Bredd

7.6 mm

Standarder/godkännanden

IEC 61000-4-5, IEC 61000-4-4, IEC 61000-4-2

Längd

10.5mm

Serie

IPS2050H

Fordonsstandard

Nej

The STMicroelectronics IPS2050H and IPS2050H-32 are dual high-side switch ICs able to drive capacitive, resistive or inductive loads with one side connected to ground. The very low RDS-ON (≤ 50 mΩ up to TJ = 125 °C) makes the IC suitable for applications with up to 2.4 A / 5.6 A steady state operating current. Each output channel is independently protected against junction over-temperature events by a junction temperature sensor, and a further temperature sensor is included to monitor case temperature, so an overheated output channel can only be turned back ON when the case temperature returns below the reset temperature.

8 V to 60 V operating supply voltage range

Smart driving of capacitive load

Under-voltage lock-out

VCCover-voltage protection

Fast demagnetization of inductive loads

Per-channel overload and over-temperature protection

Case over-temperature protections

Ground disconnection protection

The embedded per-channel overload protection circuit monitors the output current and, on triggering of the activation threshold (IPK-X), starts modulating the impedance of the output switch to limit the output current to ILIM-X, for both IC and load protection. The IC diagnostics is based on two FAULT pins (current source), one for each channel. Each FAULT pin is activated by an overload or an over-temperature event on the related channel.

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