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MLCC Automotive Trends
EMV 2018
Trends in automotive
• Basics
• Trend of downsizing
• Example low voltage eCar
• ESD
• Flexterm for VW/AUDI applications
• KC-LINK
BASICS
Typical Multilayer Ceramic Capacitor
Silver/Copper
Nickel
Tin
Ceramic Body
Electrode
Plate Layers
Silver-Palladium-Alloy/Nickel
End
Termination
C = Capacitance
k = Dielectric constant
A = area
n = number of layers
PME = precious metal
electrode
BME = base metal electrode
HALT 175°C/400V 40pcs
Ur=50V IR_limit 3,89MΩ
distinguish between PME and BME
• The Nickel electrode is ferromagnetic
TREND OF DOWNSIZING
MLCC Process Flow
High Purity Ceramic
Raw Material
Dielectric Slip (Paste) Dielectric Sheet Electrode Printing
Stacking / LaminatingDicingThermal ProcessingCorner Rounding
Ag or Cu Termination Plating Testing / Reeling
Sheets
• Smaller case size give more chips per pad
• K is constant between 2700 .. 3200
KEMET MLCC Manufacturing video on Youtube
Case size effect
• Downsizing (0603,0402,0201) requires thinner dielectric
• Lower breakdown voltages
• lowers capacitance at typical DC-Bias levels (VCC)
E-CAR DC-LINK 12V
eCar - DC-Link
• Requirement 120µF, 14V @85°C Ripple 12Arms @ 180kHz
• minimum Space
• consider VCC
• Compare with
customers point of view
• Requirement 120µF, 14V @85°C
• Ripple12Arms @ 180kHz
Type Part Number U Ceff/1 RC/1 ESR / Part n Ceff/n RC A
space
mm²
Price/1 Price/n
KPS C1210C106M5R2C 50V 9,1 6,53
1
4
127,7 91,4 214,9 1,29 € 18,06 €
KPS C2220C226M5R2C 50V 17,7 9,44 1,57E-03 7 123,9 66,1 323,4 1,74 € 12,18 €
KPS C2220C476M3R2C 25V 36,9 11,03 1,15E-03 4 147,6 44,1 184,8 1,79 € 7,16 €
FT C1210X475K5RAC 50V 4,3 21,61 2,25E-03
2
9
123,5 626,7 445,2 0,74 € 21,49 €
FT C1210X106K3RAC 25V 7,8 31,21 1,70E-03
1
6
125,3 499,4 245,6 1,01 € 16,16 €
FT C2220X106K5RAC 50V 7,8 23,14 1,70E-03
1
6
125,3 370,2 739,2 1,63 € 26,10 €
C1210X106K3RACAUTO
• Net capacitance @ 85°C , 14VDC and 180kHz
ESD
Simulation ESD Test acc AEC-Q200
voltage across the CUT
AEC-
Q200
Machine IEC-801 HBM
CAP 330pF 200pF 150pF 100pF
U CUT U_CUT U_CUT U_CUT U_CUT
2.000 1nF 496 333 261 182
8.000 1nF 1985 1333 1043 727
16.000 1nF 3970 2667 2087 1455
25.000 1nF 6203 4167 3261 2273
2.000 4,7nF 131 82 62 42
8.000 4,7nF 525 327 247 167
16.000 4,7nF 1050 653 495 333
25.000 4,7nF 1640 1020 773 521
• the charge depends from the capacitance
• capacitance decrease due VCC
• Voltage across the CUT INCREASE
• X7R gets worse under multiple pulses
Charge and VCC
FLEXTERM
Flex Cracks
In Customer Complaint failure analysis
IR Failure due to Flex Cracks is the #1 failure mode
Flex Cracks have a very distinct, 45 degree angle that always starts inside the
termination.
Tightened Screws
flex mitigation designs
Flexterm acc VW80808
VW80808 X7R MLCC Range
• This is a subset of the family portfolio
• Mainly the corner value are missing
KC-LINK
H-Bridge - Ripplecurrent DC-Link
How much capacitance we need?
10kHz 100kHz 1MHz
1kW 6.5µF 657nF 66nF
15kW 10µF 1µF 100nF
50kW 200µF 20µF 2µF
Assume 400V and 10% ripple
Ripple Current ~ 68A/µF
• DC Voltage limits RC at lower frequencies ≤ 100kHz
• Maximum ripple currents are based on not exceeding the
150°C temperature or voltage capability
Ceramic Capacitors design drives
• Ceramic chip based on C0G material
• Extrem stable 30ppm/°C
• 3640 ( 9,6mm x 10,2mm x 2,5mm) 220nF 500V 150°C
• Footprint
• properties
• Capacitance
• Impedance and ESR
• Ripple current and thermal properties
• Leadless stack design
Ceramic Capacitors design drives
• Ceramic chip based on C0G material
• Extrem stable 30ppm/°C
• 3640 ( 9,6mm x 10,2mm x 2,5mm) 220nF 500V 150°C
• Footprint
• properties
• Capacitance
• Impedance and ESR
• Excellent Ripple current and thermal properties
Sum up
• Downsizing Ok but be careful
• KSIM allows you cost optimized designs
• Nose cancellation via KPS
• ESD 0603
• Flexterm for VW/AUDI
• KC-LINK
Thank You!
Axel Schmidt
Field application Engineer
Cell +49 172 89 25 284
email: AxelSchmidt@kemet.com
Hermann-Köhl-Str. 2
86899 Landsberg am Lech
Germany
www.kemet.com
NOISE CANCELATION
Example with 9234
• The fan speed and harmonics are clearly visible
in the unit’s measurements.
Piezo effect
• Caused by voltage
• Elongation in a range of 0.001nm .. 1nm
• depends on
– Dielectric material
– Permittivity ε↑ → ds↑
– Dielectric thickness t↓→ds↑
– Chip size
• Solution
– C0G ( NO piezo effect)
– Higher rated voltage (thicker dielectric)
– bigger chip (thicker dielectric)
– stack solutions
MLCC J-Lead
Output Noise
MLCC Compared to 1210 4.7µF, J-lead for
High Pass Filter Noise
Catalog X7R KEM_C1020_X7R_KPS Catalog C0G KEM_C1032_C0G_KPS_HV
Catalog HV KEM_C1033_X7R_KPS_HV Catalog HT KEM_C1038_X8L_KPS_150C

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MLCC Automotive Trends Webinar

  • 3. Trends in automotive • Basics • Trend of downsizing • Example low voltage eCar • ESD • Flexterm for VW/AUDI applications • KC-LINK
  • 5. Typical Multilayer Ceramic Capacitor Silver/Copper Nickel Tin Ceramic Body Electrode Plate Layers Silver-Palladium-Alloy/Nickel End Termination C = Capacitance k = Dielectric constant A = area n = number of layers PME = precious metal electrode BME = base metal electrode
  • 6. HALT 175°C/400V 40pcs Ur=50V IR_limit 3,89MΩ
  • 7. distinguish between PME and BME • The Nickel electrode is ferromagnetic
  • 9. MLCC Process Flow High Purity Ceramic Raw Material Dielectric Slip (Paste) Dielectric Sheet Electrode Printing Stacking / LaminatingDicingThermal ProcessingCorner Rounding Ag or Cu Termination Plating Testing / Reeling
  • 10. Sheets • Smaller case size give more chips per pad • K is constant between 2700 .. 3200 KEMET MLCC Manufacturing video on Youtube
  • 11. Case size effect • Downsizing (0603,0402,0201) requires thinner dielectric • Lower breakdown voltages • lowers capacitance at typical DC-Bias levels (VCC)
  • 13. eCar - DC-Link • Requirement 120µF, 14V @85°C Ripple 12Arms @ 180kHz • minimum Space • consider VCC • Compare with
  • 14. customers point of view • Requirement 120µF, 14V @85°C • Ripple12Arms @ 180kHz Type Part Number U Ceff/1 RC/1 ESR / Part n Ceff/n RC A space mm² Price/1 Price/n KPS C1210C106M5R2C 50V 9,1 6,53 1 4 127,7 91,4 214,9 1,29 € 18,06 € KPS C2220C226M5R2C 50V 17,7 9,44 1,57E-03 7 123,9 66,1 323,4 1,74 € 12,18 € KPS C2220C476M3R2C 25V 36,9 11,03 1,15E-03 4 147,6 44,1 184,8 1,79 € 7,16 € FT C1210X475K5RAC 50V 4,3 21,61 2,25E-03 2 9 123,5 626,7 445,2 0,74 € 21,49 € FT C1210X106K3RAC 25V 7,8 31,21 1,70E-03 1 6 125,3 499,4 245,6 1,01 € 16,16 € FT C2220X106K5RAC 50V 7,8 23,14 1,70E-03 1 6 125,3 370,2 739,2 1,63 € 26,10 €
  • 15. C1210X106K3RACAUTO • Net capacitance @ 85°C , 14VDC and 180kHz
  • 16. ESD
  • 17. Simulation ESD Test acc AEC-Q200
  • 18. voltage across the CUT AEC- Q200 Machine IEC-801 HBM CAP 330pF 200pF 150pF 100pF U CUT U_CUT U_CUT U_CUT U_CUT 2.000 1nF 496 333 261 182 8.000 1nF 1985 1333 1043 727 16.000 1nF 3970 2667 2087 1455 25.000 1nF 6203 4167 3261 2273 2.000 4,7nF 131 82 62 42 8.000 4,7nF 525 327 247 167 16.000 4,7nF 1050 653 495 333 25.000 4,7nF 1640 1020 773 521
  • 19. • the charge depends from the capacitance • capacitance decrease due VCC • Voltage across the CUT INCREASE • X7R gets worse under multiple pulses Charge and VCC
  • 20.
  • 21.
  • 23. Flex Cracks In Customer Complaint failure analysis IR Failure due to Flex Cracks is the #1 failure mode Flex Cracks have a very distinct, 45 degree angle that always starts inside the termination.
  • 27. VW80808 X7R MLCC Range • This is a subset of the family portfolio • Mainly the corner value are missing
  • 30. How much capacitance we need? 10kHz 100kHz 1MHz 1kW 6.5µF 657nF 66nF 15kW 10µF 1µF 100nF 50kW 200µF 20µF 2µF Assume 400V and 10% ripple
  • 31. Ripple Current ~ 68A/µF • DC Voltage limits RC at lower frequencies ≤ 100kHz • Maximum ripple currents are based on not exceeding the 150°C temperature or voltage capability
  • 32. Ceramic Capacitors design drives • Ceramic chip based on C0G material • Extrem stable 30ppm/°C • 3640 ( 9,6mm x 10,2mm x 2,5mm) 220nF 500V 150°C • Footprint • properties • Capacitance • Impedance and ESR • Ripple current and thermal properties • Leadless stack design
  • 33. Ceramic Capacitors design drives • Ceramic chip based on C0G material • Extrem stable 30ppm/°C • 3640 ( 9,6mm x 10,2mm x 2,5mm) 220nF 500V 150°C • Footprint • properties • Capacitance • Impedance and ESR • Excellent Ripple current and thermal properties
  • 34. Sum up • Downsizing Ok but be careful • KSIM allows you cost optimized designs • Nose cancellation via KPS • ESD 0603 • Flexterm for VW/AUDI • KC-LINK
  • 35. Thank You! Axel Schmidt Field application Engineer Cell +49 172 89 25 284 email: AxelSchmidt@kemet.com Hermann-Köhl-Str. 2 86899 Landsberg am Lech Germany www.kemet.com
  • 37. Example with 9234 • The fan speed and harmonics are clearly visible in the unit’s measurements.
  • 38. Piezo effect • Caused by voltage • Elongation in a range of 0.001nm .. 1nm • depends on – Dielectric material – Permittivity ε↑ → ds↑ – Dielectric thickness t↓→ds↑ – Chip size • Solution – C0G ( NO piezo effect) – Higher rated voltage (thicker dielectric) – bigger chip (thicker dielectric) – stack solutions
  • 39. MLCC J-Lead Output Noise MLCC Compared to 1210 4.7µF, J-lead for High Pass Filter Noise Catalog X7R KEM_C1020_X7R_KPS Catalog C0G KEM_C1032_C0G_KPS_HV Catalog HV KEM_C1033_X7R_KPS_HV Catalog HT KEM_C1038_X8L_KPS_150C