Agenda Business Update Kemet Design Registration Program Update High Temp Ceramics and Ultra Stable X8R / X8L Products Q&A
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1 Kemet News Network Webcast February 22, 2010 Agenda Business Update Kemet Design Registration Program Update High Temp Ceramics and Ultra Stable X8R / X8L Products Q&A Al Houghtaling Distribution Sales Jim Bruorton V.P. Global Distribution Scot Chamberlin Sr. Director Sales Global Distribution Corey Antoniades Technical Marketing Manger Ceramics
2 Design Registration Update
3 Design Registration Program
4 Design Registration Program
5 Design Registration Products Screw Terminal Electrolytics ALS 30\31, 32\33, 34\35: MS\MD Series: PEH169, PEH200 Power Film: Power Factor Correction; C93,C20,C91,C9B/C9BS, C94 Power Electronics: C4C, C4H, C4G, C4M - Axial Types; C4AS, C4AT Box Types, wire terminals, C4AE - Box Types, wire terminal high capacitance C4BS, C4BT - Box Type Lug Terminals; C4D - GTO Types; C4DE - Flat Execution, stud terminals, high capacitance, DC Link C44A - Aluminum can types general purpose; C44B Snubber; C44E Stub terminals AC Filter C44H Fast-on terminals AC Filter; C44P\C20A Plastic Isolators, AC Filter C44U male / female terminal, high capacitance DC Link; C93 - Aluminum can type Fast-on terminals, PFC & AC Filter; C9T Aluminum can type 3 phase, PFC & AC Filter Paper Capacitors: PME - EMI Suppression; PZB, PMZ - Customized PMR, PMZ - RC Circuits
6 Design Registration Program- Ceramic Additions Ceramic X8L Dielectric SMD High Voltage Goldmax (C6XX series) 200 C COG Dielectric SMD High Temperature Ceramics HT/HP Standard Series HV High Temperature series SCR/SCA Axial & Radial ACR/ACA, ARR/ARA, TCR/TCA,TRR/TRA Series Axial & Radial VCR/VRR C3 Series High Temperature/High Voltage (+260 C) High Voltage Ceramics HV Series & MIL-PRF Equivalent HS Series Space Quality Radial SM Series High Voltage SMD
7 Design Registration Program- Tantalum Additions Tantalum T521 Polymer SMD Series (35 volt product only) T521V156M035AT T521X336M035AT T521X476M035AT Specialty Tantalum Products High Temperature M39003 Series (H,D,E,F Designations) CECC (European Military Spec) T110, T140, & T493 versions MnO2 T498 and T499 Series
8 High Temperature MLCCs
9 Topics to cover Today High Temperature Ceramic Capacitors How KEMET defines High Temperature The need for High Temperature MLCCs Dielectric Classification X8L, Ultra Stable X8R & 200ºC C0G Dielectric MLCCs Features, benefits, and capabilities Markets & Applications Competitors Potential customers Questions you need to ask. Q&A
10 How KEMET defines High Temperature Application Temperatures Greater Than 125ºC
11 Why High Temperature? There is a growing requirement for a multilayer ceramic capacitor (MLCC) capable of continuous and reliable operation at temperatures that exceed 125 C. Emerging trends in industries such as automotive and downhole are leading to the placement of integrated electronics in high temperature, harsh environments.
12 EIA Class I, II & III Dielectric Classification
13 MLCC by Dielectric Code Y5V Z5U K Magnitude X5R X7R & X8L X8R C0G (NP0) Temperature Room Ambient
14 EIA Designations for Class 1 Defines Temperature Characteristics Significant Figure of Temperature Coefficient Multiplier added to Temperature Coefficient Tolerance of Temperature Coefficient PPM/ C Symbol Multiplier Symbol PPM/ C Symbol 0.0 C -1 0 ± 30 G 0.3 B ± 60 H 0.9 A ± 120 J 1.0 M -1,000 3 ± 250 K 1.5 P -10,000 4 ± 500 L 2.2 R +1 5 ± 1000 M 3.3 S ± 2500 N 4.7 T U +1, ,000 9 NP0 not shown - old designation style 1 PPM is 1/1,000,000 = which would be % So you would divide by 10, ppm = 10/10000 = 0.003%
15 EIA Designation for Class 2 & 3 Defines Temperature Characteristics Low Temperature High Temperature Maximum Capacitance Change C Symbol C Symbol C Symbol 10 Z 45 2 ±1.0% A -30 Y 65 4 ±1.5% B -55 X 85 5 ±2.2% C ±3.3% D ±4.7% E ±7.5% F ±10.0% P ±15.0% R ± 22.0% S +22%,-33% T +22%,-56% U +22%,-82% V Class 3
16 High Temperature SMD Portfolio
17 High Temperature Options Recently Released X8L SMD 150 C Use in higher temperature applications that require TCC +15% / -40% Release Date: Released/ Available Ultra Stable X8R SMD 150 C Use in higher temperature applications that require TCC ±15% No capacitance change with applied voltage. Release Date: Released/ Available High Temperature SMD 200 C Use in extreme temperature applications. Available in C0G dielectric Release Date: Released/ Available
18 X8L Dielectric SMD 150 C Released/Available Target Markets Automotive (Under The Hood) applications Includes standard & hybrid models Down-hole oil exploration General high temperature market segments 150ºC Flexible Termination option available Q3CY10 Features Operating Temperature Range: -55 to150ºc Capacitance shift: ±15% (-55 to 125ºC) +15, -40% (125 to 150ºC) BME Dielectric System: RoHS Compliant, Pb-free reflow capable Form Factor Voltage Dielectric Surface Mount 10V, 25V, 50V X8L Cap Range Up to 10µF Case Size Part Number C1210C106J8NAC
19 X8L EIA Dielectric Classification (Class III) Temperature Characteristic TC Codes and Permissible capacitance change for class II, III, & IV ceramic dielectrics Minimum Temperature X Y Z -55 C -30 C -10 C Maximum Temperature C C C C C C The L is not currently defined in the EIA Classification Tables Dielectric Maximum Capacitance shift Temperature Range X8L = +15%/-40% (-55ºC to 150ºC) Max Capacitance Change Permitted A ±1.0% B ±1.5% C ±2.2% D ±3.3% E ±4.7% F ±7.5% P ±10% R ±15% S ±22% T +22% / -33% U +22% / -56% V +22% / -82% L +15% / -40%
20 X8L EIA Dielectric Classification (Class III) Temperature Characteristic Capacitance Shift Limited to (murata): +15, -40% (-55ºC to 150ºC) Capacitance Shift Limited to (KEMET): ±15% (-55ºC to 125ºC) +15, -40% (125ºC to 150ºC)
21 X8L Dielectric Voltage Characteristic Capacitance Change vs. DC Bias(Typical) : X8L vs. X7R Capacitance Change 10% 0% -10% -20% -30% -40% -50% -60% -70% -80% Applied DC Bias (VDC) (VDC%) X8L Dielectric exhibits improved VCC performance.
22 Ultra Stable X8R SMD 150 C Released/Available Target Markets Automotive (Under The Hood) applications Includes standard & hybrid models Down-hole oil exploration General high temperature market segments 150ºC Flexible Termination option available Q3CY10 Features Operating Temperature Range: -55 to 150ºC Temperature Coefficient of Capacitance : ±15% (-55 to 150ºC) No capacitance change with respect to applied rated DC voltage. BME Dielectric System: RoHS Compliant, Pb-free reflow capable Form Factor Voltage Dielectrics Cap Range Surface Mount 25V, 50V, 100V X8R Up to 0.22µF Case Size Part Number C1812C224J5HAC
23 EIA Class II,III & IV Dielectric Classification Temperature Characteristic TC Codes and Permissible capacitance change for class II, III, & IV ceramic dielectrics Minimum Temperature X Y Z Dielectric -55 C -30 C -10 C Maximum Capacitance shift Maximum Temperature C C C C C C Temperature Range X8R = ±15% (-55ºC to 150ºC) Max Capacitance Change Permitted A ±1.0% B ±1.5% C ±2.2% D ±3.3% E ±4.7% F ±7.5% P ±10% R ±15% S ±22% T +22% / -33% U +22% / -56% V +22% / -82%
24 X8L Dielectric Classification Temperature Characteristic Typical X8R TCC Perecent Delta C 25 C) Temperature (ºC) X8R Dielectric Classification: Capacitance shift limited to: ±15% (-55ºC to 150ºC)
25 Ultra Stable X8R Dielectric Voltage Characteristic Capacitance Change Capacitance Change vs. DC Bias(Typical) : Ultra Stable X8R vs. X8R 10% 0% -10% -20% -30% -40% -50% -60% -70% -80% Applied DC DC Bias Bias (VDC%) (VDC) Ultra Slable X8R X8R Ultra Stable X8R exhibits no capacitance change with respect to applied DC voltage.
26 Ultra Stable X8R Dielectric Voltage Characteristic 0.25 Capacitance vs. Vdc : Ultra stable X8R vs. X8R uF/25WVDC KEMET Ultra Stable X8R uF/25WVDC Manuf. A X8R uF/25WVDC Manuf. A X8R Capacitance (µf) Applied Vdc Bias Lower capacitance Ultra Stable X8R part types can replace higher capacitance competitor part types.
27 High Temperature SMD 200 C Released/Available Target Markets Down-Hole Military Aerospace Features Surface mount MLCC with reliable BME C0G dielectrics featuring world class TCVC characteristics and high reliability. C0G SMD s that exceed X7R max cap at application temperatures. Replacement for all existing X7R technology Sn plating for excellent solderability. Voltage Dielectric Cap Range 16V 200V C0G/NPO 0.5pF 0.22µF Case Size KPN C1206H104J3GAC
28 EIA Class I Dielectric Classification Temperature Characteristic TC Codes and Permissible capacitance change for class I ceramic dielectrics Significant figure of TCC (ppm/ºc) C 0 B 0.3 U 0.8 A 0.9 M 1.0 P 1.5 R 2.2 S 3.3 T 4.7 U 7.5 Multiplier of significant figure Tolerance of TC (±ppm/ºc) G 30 H 60 J 120 K 250 L 500 M 1000 N 2500 Dielectric Maximum Capacitance shift Temperature Range C0G = ±30ppm/ºC (-55ºC to 125ºC)
29 High Temperature SMD 200 C Max Capacitance: BME vs. PME PME 25V C0G BME 25V C0G PME 50V C0G BME 50V C0G PME 100V C0G BME 100V C0G BME Max. CAP (nf) 10 1 PME Case Size (EIA)
30 High Temperature SMD 200 C TCC Performance: BME vs. PME 10 No DC Bias % DC Bias (Rated Voltage) C/C (%) ºC BME C0G ºC PME X7R(BX) 150ºC X8R Temperature ( C) C/C (%) ºC BME C0G ºC PME X7R(BX) 150ºC X8R Temperature ( C)
31 High Temperature SMD 200 C IR Performance: BME vs. PME 1.E+08 1.E+07 1.E+06 IR (MOhms) 1.E+05 1.E+04 1.E+03 1.E+02 PME C0G MLCC 1206/10nF BME C0G MLCC 1206/10nF 1.E Temperature ( C)
32 High Temperature SMD 200 C Benefits, Features & Applications Benefits and Features: No Piezoelectric Noise. Extremely low ESR and ESL. High Thermal Stability. High Ripple Current Capability. Preferred capacitance solution at line frequencies and into the MHz range. No capacitance change with respect to applied rated DC voltage. Minimal capacitance change with respect to temperature from -55ºC to +200ºC. No capacitance decay with time. Non-polar device. No oxygen vacancy concerns. Applications: Typical applications include critical timing, tuning, circuits requiring low loss, circuits with pulse, high current, decoupling, by-pass, filtering, transient voltage suppression, blocking and energy storage. For use in extreme environments commonly present in applications such as down-hole exploration, aerospace engine compartments and geophysical probes.
33 Primary Markets
34 Primary Markets Automotive Down Hole Military Aerospace
35 Questions You Need To Ask
36 High Temperature MLCC: Questions you need to ask.. General Questions: What is your application voltage and temperature? What is your capacitance requirement at application voltage and temperature? Is capacitance stability with respect to temperature and voltage a concern? Are you interested in downsizing your current footprint? Are you currently using any high temperature ceramics in your application? Would you be interested in improved electrical performance over your current X8R solution? High Temperature 200ºC C0G Specific Questions: Are you interested in a highly reliable BME replacement to your current PME technology? Are you interested in replacing your current X7R(BX) dielectric with C0G?
37 Ordering Information
38 X8L Dielectric Ordering Information PART NUMBER AND ORDERING INFORMATION / SMD MLCC / X8L C 1210 C 106 K 8 N A C AUTO Ceramic Case Size (L"x W") Specification/ Series Capacitance Code (pf) Capacitance Tolerance Failure Rate/ Voltage Dielectric Design End Metallization 0402 C = Standard 2 Sig. Digits + J = ±5% 8 = 10V N = X8L A = N/A C = 100% Matte Sn Blank = Bulk Packaging/Grade (C-Spec)* 0603 Number of K = ±10% 3 = 25V L = SnPb (5% min) TU = 7" Reel Unmarked 0805 Zeros. M = ±20% 5 = 50V TM = 7" Reel Marked AUTO = Automotive Grade 7" Reel Unmarked AEC Q200 Qualified
39 Ultra Stable X8R Dielectric Ordering Information PART NUMBER AND ORDERING INFORMATION / SMD MLCC / Ultra-Stable X8R C 1210 C 184 K 3 H A C AUTO Case Size Specification/ Capacitance Capacitance Ceramic (L"x W") Series Code (pf) Tolerance Voltage Dielectric Failure Rate/ Design End Metallization Packaging/Grade (C-Spec) 0402 C = Standard 2 Sig. Digits + F = ±1% 3 = 25V H = Ultra Stable X8R A = N/A C = 100% Matte Sn Blank = Bulk 0603 Number of G = ±2% 5 = 50V L = SnPb (5% min) TU = 7" Reel Unmarked 0805 Zeros. J = ±5% 1 = 100V TM = 7" Reel Marked 1206 K = ±10% 1210 M = ±20% 1812 AUTO = Automotive Grade 7" Reel Unmarked AEC Q200 Qualified
40 High Temp 200ºC SMD C0G MLCC Ordering Information PART NUMBER AND ORDERING INFORMATION / SMD MLCC / High Temp 200ºC C0G C 1210 H 124 J 5 G A C TU Ceramic Case Size (L"x W") Specification/ Series Capacitance Code Capacitance Failure Voltage Dielectric Tolerance Rate/ End Metallization Packaging/Grade (C-Spec)* 0603 H = High Temp (200ºC) 2 Sig. Digits + C = ±0.25pF 8 = 10V G = C0G A = N/A C = 100% Matte Sn Blank = Bulk 0805 Number of D = ±0.5pF 4 = 16V L = SnPb (5% min) TU = 7" Reel Unmarked 1206 Zeros* F = ±1% 3 = 25V TM = 7" Reel Marked 1210 *Use 9 for pF G = ±2% 6 = 35V 1812 *Use 8 for pF J = ±5% 5 = 50V ex. 2.2pF = 229 K = ±10% 1 = 100V ex. 0.5pF = 508 M = ±20% 2 = 200V
41 Upcoming High Temperature Technology
42 High Temperature Commercial Stacks Under Development
43 High Temperature Commercial Stacks Under Development Development focused on single- and double-stack devices for the Specialty marketplace Key Market Focus: Downhole, Aerospace and Military Excellent choice for bulk capacitance in higher temperature applications. Unsurpassed flex robustness. Release Date: CY10 Commercial Stack on Automotive PCB
44 Question & Answer
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