MC12XS6FS, 12 V Automotive Lighting Multi-channel Scalable eXtreme Switch - Fact Sheet

Analog
Analog Solutions – Robust Reliable Performance
MC12XS6
12 V Automotive Lighting Multi-channel
Scalable eXtreme Switch
Overview
Target Applications
The fourth generation eXtreme Switch is the latest achievement in automotive lighting drivers.
• Halogen lamps
It belongs to an expanding family to control and diagnose bulbs and also light emitting diodes
(LEDs) with enhanced diagnostic precision. This eXtreme Switch family combines flexibility
through daisy chainable SPI at 5.0 MHz, extended digital and analog feedback, safety and
robustness. Its low Rdson and high integration allows power and space saving at the module
level. This family is packaged in a Pb-free power-enhanced SOIC package with exposed pad,
• Incandescent lamps
• Light-emitting diodes (LEDs)
• HID Xenon ballasts
which is ELV compliant.
Penta Output Simplified Application Drawing
*This image represents one of
the many configurations available
for this MC12XS6 eXtreme
Switch product family
MC12XS6 eXtreme Switch Family
Product
# of outputs
RDSon (mOhm)
Package
Suggested tool
MC07XS6517
Penta
SOIC EP 54
KIT07XS6517EVB
MC08XS6421
Quad
SOIC EP 32
KIT08XS6421EKEVB
MC10XS6200
MC10XS6225
Dual
Dual
SOIC EP 32
SOIC EP 32
KIT10XS6200EKEVB
KIT10XS6225EKEVB
MC10XS6325
Triple
SOIC EP 32
KIT10XS6325EKEVB
MC17XS6400
MC17XS6500
MC25XS6300
MC40XS6500
Quad
Penta
Triple
Penta
3
2
2
2
2
1
1
2
1
4
5
3
5
SOIC
SOIC
SOIC
SOIC
KIT17XS6400EKEVB
KIT17XS6500EVB
KIT25XS6300EKEVB
KIT40XS6500EKEVB
x
x
x
x
x
x
x
x
x
x
x
x
x
7.0
17.0
8.0
21.0
10.0
10.0
25.0
10.0
25.0
17.0
17.0
25.0
40.0
EP
EP
EP
EP
32
32
32
32
eXtreme Switch Product Family Differentiation
Features
Benefits
Low Rdson in thermally enhanced package
Excellent thermal efficiency
5.0 V compatible 16-bit Daisy chainable SPI control
BOM component and cost savings by eliminating series SPI resistors between microcontroller
(MCU) and device
Embedded protection and diagnostic functions
30% module size reduction and module quality longevity. Allows a low power dissipation module
design and very robust solution against repetitive overcurrent stress
Compatible devices and flexible load management
Hardware reuse across multiple applications and quick-turn flexibility for tuning designs with
ambiguous load requirements
Programmable dynamic threshold over-current and overtemperature detection limits
Optimized fault protection
Full programmability and diagnostic capability through SPI
Offloads real-time interrupt fault management from MCU, simplifying system hardware and software
Accurate temperature (±5°C) and synchronous /
asynchronous (±10%) current sensing
Advanced load diagnostics
Selectable slew rate
Optimize EMI vs. efficiency tradeoff
Individually programmable external PWM signals with 3
prescaler per output
Offloads MCU for software design simplicity
Scalable family
Allows last minute device choice in platforms for which the output load is not known or has to be
flexible. Single hardware for multiple applications at a single engineering development cost
SPI Interface
Enables daisy-chaining without resistor between MCU and device for MCU I/O and number of
discrete reduction. BOM cost saving
Analog diagnostics
Software simplification in case of many loads management
• High precision current sensing (down to 19.5 mA) with calibration procedure allowing diagnostic
of both high-current loads or LEDs
• Temperature feedback of the IC
• Supply voltage of the IC
Reverse battery
Protected against any mishandling without any external component
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© 2015 Freescale Semiconductor, Inc.
Document Number: MC12XS6FS REV 1