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Never stop thinking

Les Connaissances de base en électrique et électronique. Électronique de carrosserie. Infineon. Patrick Leteinturier Senior Principal Automotive Systems Infineon Technologies. Never stop thinking. Plan de la présentation. Body Applications Overview. Lighting Applications. Sub1.

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Never stop thinking

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  1. Les Connaissances de base en électrique et électronique Électronique de carrosserie Infineon Patrick Leteinturier Senior Principal Automotive Systems Infineon Technologies Never stop thinking

  2. Plan de la présentation Body Applications Overview Lighting Applications Sub1 Door Applications Sub2 Sub3 Heating, Ventilation, Air Conditioning Sub4 Motor Control in Body Applications Future Body Architectures, Trends

  3. Plan de la présentation Body Applications Overview Lighting Applications Sub1 Door Applications Sub2 Sub3 Heating, Ventilation, Air Conditioning Sub4 Motor Control in Body Applications Future Body Architectures, Trends

  4. Body overview Seats Wiping Doors + Mirror HVAC Sunroof + CC Light int. + ext.

  5. Plan de la présentation Body Applications Overview Lighting Applications Sub1 Door Applications Sub2 Sub3 Heating, Ventilation, Air Conditioning Sub4 Motor Control in Body Applications Future Body Architectures, Trends

  6. Light Control ModuleOverview • Switching all Lamps of a Car • Diagnosis with Warning Lamps at the dashboard via Serial Interface • Substitution of Lights in case of failing lamps • Country Specific Light Features • Head Light Beam Adjust • Self Check Functionality

  7. Light Control ModuleSystem Cost Reduction due to use of Semiconductor • System Costs Reduction with less wires and fuses • System Cost Reduction with optimized assembly methods • Flexibilty for Country Specific Features • Diagnosis of Failure Detection and Short Term Corrective Action Wires Fuses 100% Weight System Costs 80% 60% 40% 20% 0% Past 1 2 3 Future

  8. "Old" 7 Series "Old" 7 Series 108 Cables 108 Cables 13 Fuses 13 Fuses "New" 7 Series "New" 7 Series 56 Cables 56 Cables 2 Fuses 2 Fuses Light Control ModuleSystem Cost Reduction due to use of Semiconductor

  9. Light Control Module 5/7 series new 3 series “old BMW“

  10. BTS134 60mW TLE 6225 4x1,7W TLE 4268 5V LDO TLE 6252 CAN TLE 6258 LIN BTS6143 10mW BTS6143 10mW BTS6143 10mW BTS6143 10mW BTS6143 10mW BTS6143 10mW BTS443 16mW BTS724 4x90mW BTS716 4x140mW BTS724 4x90mW BTS724 4x90mW BTS724 4x90mW XC164 System Solution for Light ApplicationIFX Light Control Module : Block diagram SwitchedPower: 650W DissipatedPower: 7W Park Indicator High Low Fog Interior (dim) Relays Fog Low High Indicator Park Indicator Indicator To Vbat Spare 5A Footwell License Plate Brake Indicator Tail Reverse Reverse Tail Indicator Brake Fog To rest of car CHMSL(LED) To rest of car

  11. IFX Light Control Module: Technical Description •  High switching power (650W) •  Low power dissipation (< 7W) •  PWM for lifetime extension of bulbs* •  Reduction of fuses to a minimum (2) •  Operation at high ambient temperatures • Diagnosis capability • Failure management

  12. IFX Light Control Module : Devices BTS6143High Current 2 x BTS7244 x 90mOhm TLE42685V LDO TLE62254 foldLowSide TLE6258LIN BTS6143 BTS443 XC164 Scale 1:1 BTS6143 BTS6143 TLE6252Dual wire CAN BTS7164 x 140mOhm BTS724 BTS13450mOhm

  13. LED LIGHT POWERED BY Automotive Constant Current Source Constant Brightness Extended Lifetime Diagnosis

  14. LED Driver Application TLE 4240/41 LED Damaged ! Current 40 80 120mA 0 3 6 9 12 15 18 21 24 30V Supply Voltage LED Protected Current 40 80 120mA 0 3 6 9 12 15 18 21 24 30V Supply Voltage ST Diagnosis TLE 4240 / Q TLE 4241 I LED 1 GND 13.5 V LED 2 LED 3

  15. Automotive LED Lighting – Exterior • General • Car design is a main selling argument. Hence, a distinctive night design becomes very important. • LEDs allow unique styling options for exterior car lighting. • Roadmap: • General: Trend to less, but brighter LEDs, necessary for cost effective optical lamp design. • HMSL: 1994 (U.S.) • Turn lights: 1998. Mirror turn: 1999 • Stop-Tail-Turn: 1999 (Europe), 2003 (JP) • Daytime Running Light: 2004 • Fog lamp: 2006 • Low beam: 2007

  16. Plan de la présentation Body Applications Overview Lighting Applications Sub1 Door Applications Sub2 Sub3 Heating, Ventilation, Air Conditioning Sub4 Motor Control in Body Applications Future Body Architectures, Trends

  17. M M M M M µC Door Module Power ICDoor-Module Power Loads - Future Mainstream BUS 12 V Power window CAN-Transceiver Window control Mirror Heating Power Supply IP = 30A; IN = 10A; I = 3A Mirror x IP = 1A; IN = 0.3A Door lock Mirror control unit IP = 6A; IN = 2.5A; Door control Mirror y IP = 1A; IN = 0.3A Deadbolt IP = 1A; IN = 0.6A; Lamp Drivers Turn Signal 5W Door-Lamp 10W Mirror-Lamp 5W

  18. For internal use only! Door Electronic Architecture LIN Slaves - Mechatorinc Window Lift with LIN • Window Lift with LIN • Lock With LIN

  19. Embedded Flash Chip-by-Chip Chip-on-Chip Smart Power „Embedded Power – Adding brain to power“ Utilize Infineon‘s wafer and package technology portfolio µC Chip CMOS logic (0.22µm, 0.13µm) Embedded Flash/E²PROM Power Package PDSO, MQFP, VQFN Power Companion SPT5 (0.5µm, 60V) AI AP Dr. T. Gutheit 13-Nov- 2003 Page 25

  20. 3 x M M M M eP eP CAN eP Gateway Decentralized system architecture requires smart LIN slaves –Target application for ePower Example Door – Alternate System Architecture • Barriers • Overhead for Ctrl • More ECU  packaging • Benefits • Simplified wiring • High flexibility • Separated systems Target application for lead product TLE 7810 Demonstrate cost benefit on system level !!

  21. MON Embedded Power Lead Product – Relay DriverTLE 7810 – Pinning, Interconnects, and Modules 8KB ROM Hall supply ADC VR WD eVR JTAG Sense unit Ubat, Temp 768B RAM SPI SPI 16kB Flash/E² CC6 LS 1&2 OSC LIN P-DSO 28

  22. Plan de la présentation Body Applications Overview Lighting Applications Sub1 Door Applications Sub2 Sub3 Heating, Ventilation, Air Conditioning Sub4 Motor Control in Body Applications Future Body Architectures, Trends

  23. HVAC Actuators System Overview AC-unit Sensors Flaps Control Panel Heating Elements Fans ECU

  24. HVAC Auxiliary Heater Application Basics • new diesel and gasoline combustion engines achieve such a good overall efficiency, that the needed, dissipated heat to warm up the inside of a car is far too less • auxiliary heater systems generate additional heat by either:1) heating the cooling water of the engine, or2) heating the incoming air • today are electrical and combustion systems available • the future trend points clearly towards electrical heater systems since they offer the following advantages:1) less weight2) smaller size3) higher reliability

  25. Plan de la présentation Body Applications Overview Lighting Applications Sub1 Door Applications Sub2 Sub3 Heating, Ventilation, Air Conditioning Sub4 Motor Control in Body Applications Future Body Architectures, Trends

  26. NovalithIC High-Current Half Bridges The High Current Motor Driver Solution BTS 7960 B

  27. BTS 7960B Application Example • Advantages: • Break in High- and Lowside • Only one analog µC input necessary: • Common reading of current sense • Improved layout and thermal capabilities with two small packages compared to one big package

  28. M Application Example: Seat Module Power Loads # 1 Seat Movement front / back # 2 Seat Movement up / down # 3 Seat Length long / short

  29. M M Application Example: Central Door Module Power Loads Power Window 2 # 4 Power Window 3 # 5 Power Window 4 # 6 other loads: e.g. Sun Roof

  30. There is more to come…The NovalithIC Family scaled to your needs BTS 7980B 12 mW 50 A BTS 7960B 16 mW 33 A BTS 7930B BTS 7935B 28 mW 20 A

  31. Plan de la présentation Body Applications Overview Lighting Applications Sub1 Door Applications Sub2 Sub3 Heating, Ventilation, Air Conditioning Sub4 Motor Control in Body Applications Future Body Architectures, Trends

  32. Advantages of Smart Switches Performance Design & Maintenance Strategies for reducing system costs Think about switching possibilities and reliability Relay Replacement • Dimension & Weight • Quality • Relays & 42V

  33. Operating -40…+150C Self heating, P=Rdson x I² Best device at 2.5 m (today) RDS_ON=f(T°) Operating -40…+85C(105 C) Self heating 0.5-3W (coil+contact) Contact resistance 1-3 m when new and 2-8 m at end of life Max. coil temperature 155°C Rcontact=f(lifetime) Temperature considerations Smart Switch Relay

  34. DC to 1kHz depending on device (typ. 40..100..160Hz) Ideal for PWM Optimize EMI by smart switch design Max 50 Hz without load(theory) Not recommended at > 2 Hz with load No PWM possible Counter measure EMI by external components (capacitors / flybackdiode)) Operating Frequency Smart Switch Relay

  35. Strategies for reducing system costs Think about protection and space: Fuse Replacement

  36. Yesterday: one central ECU and power wiring into the doors Advantage: only one ECU no interaction of individual SW behavior no overhead for bus and individual controllers Disadvantage high amnout of wiring limitation of features by door-interface Development of Bordnet Architecture Example:Door Electronics

  37. Today individual door-zone module in each door with CAN connection Advantage reduction of power wiring no limitation of features by door-interface Disadvantage 4 additional ECUs with uC, Supply... bus necessary ensure correct interaction of multiple controllers Development of Bordnet Architecture Example:Door Electronics

  38. Tomorrow Central ECU with intelligece “smart” satellites with LIN Advantage centralization of computing power and SW clear hierarchical system add- and remove features easier high-volume standard parts Disadvantage even more additional ECUs with uC, Supply... Development of Bordnet Architecture Example:Door Electronics

  39. ARL3 Body controler ARL2 3 ARL1 5 3 4 5 Future networkExamples for Function domain: HVAC HVAC as sub-functionality of MMIwith LIN-FLAP Central HVAC ECU ( automated )with LIN-FLAP Next Gen. Today Central HVAC ECU ( manual or semi-automated )with big wire-harness toflap, fan and senors

  40. Lighting Car Architecture: Today Standard HSSwitches µC Car Front SAM Turn Position Fog HighBeam LowBeam

  41. Lighting Car Architecture: Today Advanced HSSwitches µCLIN Car Front LIN/CAN SAM Turn DRLPosition LIN/CAN Fog HIDLControl BiXenon µCLIN AFLStepper Flash

  42. Lighting Car Architecture: Future ?? µCLIN Car Front LEDTurn Driver/Switch Driver/Switch LEDDRL­Pos LIN SAM LEDFog Driver/Switch HIDLControl BiXenon µCLIN AFLStepper LEDFlash Driver/Switch

  43. Intelligent Power management Examples of today’s products IMS Chipstack Battery - IL M starter Connector Vehicles electrics G generator Normal Operation: - 1200A Peak Currents for 500msec - 130A nominal current

  44. 6 x BTS555 & 1 BTS640 for full control

  45. http://www.infineon.com Thank you for your attention Questions? „Never stop Thinking“

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