MFS2623AMDA0AD Product Information|NXP

MFS2623AMDA0AD

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MFS2623AMDA0AD

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Features


Safety System Basis Chip with Low Power for ASIL D, LQFP-48 tray

Package


HLQFP48: HLQFP48, plastic, thermal enhanced low profile quad flat package; 48 terminals; 0.5 mm pitch; 7 mm x 7 mm x 1.5 mm body; 4.4 mm x 4.4 mm exposed pad

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Operating Features

ParameterValue
MCU Supported
RH850, S32K3, TC2xx, TC3xx, Traveo
Supply Voltage [Min to Max] (V)
3.2 to 36
Output Current (A)
1.5
Number of Buck Regulators
2
Number of LDO
2
Number of Boost Regulators
1
Number of Channels
10
Battery Charger
No battery charger
ParameterValue
Ambient Operating Temperature (Min to Max) (℃)
-40 to 125
Safety Level
up to ASIL D
Device Function
system basis chip
Interface and Input Control
SPI
Additional Features - Analog
2 GPIO, 2 Wake-up inputs, AMUX, Frequency Tuning, LDT, Spread Spectrum, Voltage Monitoring
Junction Temperature (Min to Max) (℃)
-40 to 150
Development Tools
KITFS26AEEVM

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More about FS26

The FS26 family of automotive safety system basis chip (SBC) devices offer multiple power supply options designed to support entry and mid-range safety microcontrollers like the S32K3 series. FS26 devices also enable other microcontrollers targeting automotive electrification such as powertrain, chassis, safety and low-end gateway applications.

The FS26 features multiple switch mode regulators as well as LDO voltage regulators to supply the microcontroller, sensors, peripheral ICs and communication interface. FS26 offers a high-precision voltage reference available to the system and a reference voltage for 2 independent voltage-tracking regulators. In addition, various functionalities are available for system control and diagnostics such as analog multiplexer, GPIOS and selectable wake up events from I/O, long duration timer or SPI communication.

The FS26 is ISO 26262 compliant, covering ASIL B and ASIL D safety integrity levels. It features multiple fail-safe outputs, becoming a full part of a safety-oriented system partitioning, along with the latest on-demand latent fault monitoring.

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