AVX Film Chip Capacitors

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1 AVX Film Chip Capacitors Version 15.9

2 Contents Total Quality Policy Film SMD Capacitors Characteristics of Film SMD Capacitors Typical Selection Guide Applications Guide How to Order, Dimensions and Construction Electrical Properties and Test Conditions CB Series AECQ Documentation CB Series Packaging CB Series CB: PET-HT Dielectric Lead Free Version General Description Values & Nominal Voltages Mounting and Soldering Recommendations Electrical Characteristics versus Temperature and Frequency RMS Voltage and Current versus Frequency RoHS CB: PEN Dielectric Lead Free Version General Description Values & Nominal Voltages Mounting and Soldering Recommendations Electrical Characteristics versus Temperature and Frequency RMS Voltage and Current versus Frequency RoHS CB: PPS Dielectric Lead Free Version General Description Values & Nominal Voltages Mounting and Soldering Recommendations Electrical Characteristics versus Temperature and Frequency RMS Voltage and Current versus Frequency RoHS CL: High Surge Voltage SMD Film Capacitors Lead Free Version ADSL General Description Values & Nominal Voltages Mounting and Soldering Recommendations RoHS

3 Total Quality Policy Film SMD Capacitors ENVIRONMENTAL QUALITY AVX, with AVX Sales and Marketing support, will be recognized by our customers as a preferred supplier for the quality and reliability of our products and services. AVX has adopted a Quality policy based on continuous improvement, the satisfaction of our customers, collaborators, partners and shareholders. The objectives and measures are: To satisfy the customer's needs and requirements by supplying competitive and reliable products with: zero defect, zero claim 1 % on time delivery. To control all processes and improve performance: maximize productivity and yield, reduce non quality cost, monitor process indicators. To manage this policy, AVX promotes: empowerment and responsibility of all the staff, involvement of our suppliers and partners, a Quality Management System meeting ISO 91, ISO/TS standards, customers and AVX requirements Quality is measured by the level of our customer's satisfaction. Protecting the environment is becoming more and more necessary every day. Therefore, this is a duty of the Company to its employees, neighbors customers and the next generations. AVX Policy is implemented with an environmental management system according to ISO 141 standard and international standards for the design of the film chips. RELIABILITY The reliability of film chips components is measured by accelerated testing methods which meet international standards such as CECC, CEI AEC Q2 and all customer specifics requirements. After initial qualification, we perform periodical accelerated tests to assure to our customer and their application the level of reliability required (Failure In Time, lambda). 2

4 Characteristics of Film SMD Capacitors PET-HT PEN PPS NP X7R Tantalum (MKT) (MKN) (MKN) Operating temperature ( C) -55/125-55/125-55/125-55/125-55/125-55/125 C/C with temperature (%) -6/8-2/3 ±1.5 ±1 ±15 ±1 DC voltage coefficient (%) no. no. no. no. -6 no. C aging rate (%/h dec.) negl. negl. negl. negl. 1 n.a. Dissipation factor (%) 1 khz to 6 1 khz khz IR (MΩ. μf) 25 C C Dielectric absorption (%) n.a range from (pf) to (μf) tolerance (±%) Self-healing yes yes yes no no no Typical failure mode open open open short short short Reliability high high high high moderate high Piezoelectric effect no no no no yes no Resistance to thermal and high high high moderate moderate high mechanical shock to low* to low* Non-linear distortion very low very low very low low high n.a. (3 rd harmonic) Polarity no no no no no yes * possible craking in the MLCC body 3

5 Typical Selection Guide Presentation Type Dielectric Size Nominal Voltage VR-(V) Range (C R ) nF. 1µF nF...1.5µF SMD CB PET-HT nF. 2.2µF nF.2.2µF nF.4.7µF nF.22nF nF...1nF nF. 22nF SMD CB PEN nF.. 68nF nF...82nF nF.. 2.2µF nF.. 2.7µF nF.. 4.7µF Tolerance on CR (Series) ±5% ±1% ±5% ±1% nF.39nF ±2% SMD CB PPS nF...1nF ±5% nF 15nF ±1% SMD CL PEN V 6.8nF.18nF V 22nF.33nF ±5% ±1% 4

6 Applications Guide Marlet Selector C O N S U M E R T E L E C O M A U T O M O T I V E I N D U S T R I A L & E D P Application ADSL (XDSL) Network devices Modem - Gateway ADSL Phone, DECT Handset, fax Wireless Communication (GSM, Bluetooth systems ) Base station Electronic Fuel Injection Calculator (ECU/EMU) HID Headlamp system Safety Airbag/SB tensioners DC motors noise suppression Car Audio systems Infotainment applications DC/DC convertor Electronic Ballast Industrial switch Smoke detector Industrial circuit breaker LCD Monitor Display Backlight Inverter (notebooks, PDA) Multimedia set top boxes Short Description Regarding Broadband Access systems (DSLAM, Access Hub ), for filtering stage and/or splitters, due to high speed communication, telecom standards require very accurate filters and even surge voltage pulse capability Due to high speed communication, telecom standards require very accurate filters. Film chip is the most convenient solution. Film chips used in ringing circuits as a tip & ring device PPS Film chip is a convenient alternative to NP ceramic for time constant, filtering or oscillation and resonance function within the PLL circuit Film chips can be used as an interesting solution for filtering device Film chips used in differential amplifier which processes information from the engine speed sensors For integration reason, Film caps in SMD version are preferred to be used in HID modules at 2 different stages : Ballast (DC/DC convertor) and Lamp Ignition Film chip can be part of the control circuit of the ignition system Film chip can be integrated into DC motors modules for wipers or window winder for high frequency noise suppression Usually, Film caps technology is well appreciated in audio systems for filtering and especially when it comes to automotive applications For integration reason, Film caps in SMD version could be used in different application stages as backlight circuits, car amplifiers or PLL for navigation systems Film chips used in the input filtering stage for high density modular power supplies Where miniaturization is required SMD version of Film capacitors can be used for usual interference suppression and filtering functions Film chip could be the suitable solution for interference suppression function as it could survive peak voltage requirement without protection device. Where miniaturization is required SMD version of Film capacitors can be used for usual filtering functions PPS Film chip is a convenient alternative to NP ceramic for filtering circuit stage PPS Film chip is a convenient alternative to NP ceramic in the inverter stage to drive the LCD display PPS Film chip is a convenient alternative to NP ceramic in the inverter stage to drive the LCD display Where miniaturization is required SMD version of Film capacitors can be used for usual interference suppression and filtering functions Selection Criteria Good filtering capability (Low ESR&ESL) Trend is SMD preferred Specific size can be offered Surge voltage capability (CT) Good filtering capability (Low ESR&ESL) stability SMD preferred Specific size can be offered stability Good filtering capability (Low ESR&ESL) SMD version stability Tight tolerance (2%) Good filtering capability (Low ESR&ESL) SMD version needed stability Good filtering capability (Low ESR&ESL) SMD version stability Open failure mode Tight Tol and low DF Harsh conditions SMD required Good filtering capability (Low ESR&ESL) Trend is SMD preferred Specific size can be offered Surge voltage capability (CT) stability Open failure mode Specific size can be offered Harsh conditions SMD required stability Open failure mode Good filtering capability (Low ESR&ESL) Harsh conditions SMD required stability Tight Tol and low DF SMD required Good filtering capability (Low ESR&ESL) stability Specific size can be offered SMD preferred Open failure mode No piezoelectric effect stability Open failure mode Good filtering capability (Low ESR&ESL) SMD version stability Open failure mode Good filtering capability (Low ESR&ESL) SMD version stability Open failure mode Good filtering capability (Low ESR&ESL) SMD version Good filtering capability (Low ESR&ESL) stability Specific size can be offered SMD preferred stability Tight tolerance (2%) Good filtering capability (Low ESR&ESL SMD version needed stability Tight tolerance (2%) Good filtering capability (Low ESR&ESL) SMD version needed stability Tight tolerance (2%) Good filtering capability (Low ESR&ESL) SMD version needed Good filtering capability (Low ESR&ESL) stability Specific size can be offered SMD preferred Typical AVX SMD Film Solution CB or CL Series in Polyester 1nF to 1nF 25 to 63Vdc CB Series in Polyester 1nF to 47nF / 63Vdc to 4Vdc in PPS 1nF to 1 nf / 16Vdc to 5Vdc CB Series in Polyester 47nF to 1 μf / 63Vdc to 25Vdc CB Series in PPS 1.5nF to 33nF 16Vdc CB Series in Polyester 1nF to 47nF 63Vdc to 25Vdc CB Series in Polyester 1nF to 1μF 63Vdc CB or CL Series in Polyester 7nF to 1.5μF 25 to 63Vdc CB Series in Polyester 33nF to 68nF 63Vdc CB Series in Polyester 1nF to 2.2μF 63Vdc CB Series in Polyester 1nF to 1μF 63Vdc CB Series in Polyester 1nF to 47nF /63Vdc to 4Vdc in PPS 1nF to 1nF / 16Vdc to 5Vdc CB Series in Polyester 1μF to 4.7μF 1Vdc CB Series in Polyester 1nF to 1μF 63Vdc to 4Vdc CB Series in Polyester 47nF to 47nF 25Vdc to 63Vdc CB Series in Polyester 1nF to 2.2μF 63Vdc to 25Vdc CB Series in PPS 1.nF to 15nF 16Vdc to 5Vdc CB Series in PPS 1.nF to 15nF 16Vdc to 5Vdc CB Series in PPS or Polyester 47nF to 1nF 5Vdc CB Series in Polyester 1nF to 47nF / 63Vdc to 4Vdc in PPS 1nF to 1nF / 16Vdc to 5Vdc 5

7 How to Order, Dimensions and Construction HOW TO ORDER CB 4 2 G 14 K -- Type CB: SMD Lead Free CL: ADSL SMD leadfree Size 1: 126 2: 121 3: : 222 5: : : 43 17: 54 18: 654 Dielectric 2 = PET-HT 8 = PPS 7 = PEN Voltage B = 16V C = 25V D = 5/63V E = 1V G = 25V I = 4V K = 63V 1st digit: 2nd & 3rd: the 2nd significant figures of the capacitance value. 4th digit: the number of zeros to be added to the capacitance value. Tolerance EIA Code G (1) = 2% J = 5% K = 1% Suffix Packaging -- = bulk BA = tape & reel diameter: 18mm BC = tape & reel diameter: 33mm Example of an order: How to order a chip film PET-HT 1nF ±1% 25V bulk packaging. (1) : Tolerance G available only for PPS Series. W H L T CASE DIMENSIONS: millimeters (inches) Size Code Equivalent size Length (L) Width (W) Termination Return ±.3 (.13±.12) 1.6±.3 (.63±.12).5±.3 (.2±.12) ±.3 (.13±.12) 2.5±.3 (.98±.12).5±.3 (.2±.12) (1) 4.5±.5 (.177±.2) 3.2±.5 (.126±.2).6±.4 (.24±.157) ±.5 (.228±.2) 5.±.5 (.197±.2).8±.6 (.32±.24) (2) 7.2±.5 (.283±.2) 6.1±.5 (.24±.2).8±.6 (.32±.24) ±.5 (.283±.2) 1.±.8 (.343±.31).8±.6 (.32±.24) ±.6 (.413±.24) 7.6±.8 (.299±.31).8±.6 (.32±.24) ±.6 (.54±.24) 1.2±.8 (.41±.31).8±.6 (.32±.24) ±.6 (.62±.24) 13.7±.8 (.539±.31).8±.6 (.32±.24) (1) size 1812 for PEN dielectric L = 4.7 ±.5 mm (2) size 2824 for PEN dielectric & voltage 5 & 1V L = 7.3 +,7/-,3 mm STACKED FILM CONSTRUCTION Our SMD Film capacitors (CB series) are using stacked technology with metallized plastic film, which forms the basis for the capacitive element. Combined with the naked design choice, it gives our products an again better self-healing capability as well as a very good capacitance per volume ratio. This also means that internal construction of the multilayer stack, usually hidden in encapsulated film capacitors design, is visible at the cut edges in the surface mount configuration. In a typical film capacitor stack, hundreds of film layers are compacted during manufacturing. Under a magnifying glass these have the appearance of pages in a book. Sometimes, microgaps can be visible between film layers due to structure and process. Subsequent manufacturing and pcb assembly processes allow a small amount of relaxation in these layers. In some cases, small gaps between layers may become bigger. These are referred to as microgaps, and their occurrence is a standard feature of this technology. Even if it can be considered an cosmetic issue, presence of these gaps has no effect at all on mechanical or electrical performance or reliability. (Detailed report is available upon request.) 6

8 Electrical Properties and Test Conditions CB Series STANDARDIZATION Reference Standard is CECC 3221 Test Description Performance C Measurement frequency 1 KHz 2 C Shall be within tolerance of the rated value Dissipation Factor DF Measurement frequency 1 KHz 2 C DF < Insulation Resistance IR Voltage applied 6 sec.: IR > 1 Mohms for C < =.33μF 1V for Vr < 1V IR x C > 4 sec. For C >.33μF 1V for Vr > = 1V Dielectric Strength Surge Voltage = 1.4Vr applied There shall be no direct breakdown for 1 minute between terminals Mounting Board = 1.6mm (.63") thick epoxy C = within ± 2% of initial value glass laminated or alumina substrate Delta DF = < = at 1 KHz IR = within initial limit Adhesion Force of 5 N applied for 1 secs. No visible damage Board Bending Test Bending of 1 mm(.39") C = within ± 2% of initial value for 9 mm (3.543") length No visible damage Thermal Shock 5 cycles 55/+125 C C = within ± 5% of initial value ESR = no more than 3 times initial value IR = not less than 5% of the initial limit Damp Heat 4 C 93% RH / no voltage / 56 days C = within ± 7% of initial value Steady State Delta DF = < at 1 KHz IR = not less than 5% of the initial limit Accelerated Damp Heat 85ºC 85% RH 1.5V-5H C = within ± 7% of initial value (Load Humidity) Delta DF = < = at 1 KHz IR = not less than 5% of the initial limit Life Test 85ºC / 1.25Vr / 1H C = within ± 8% of initial value measuring 2 hours after test conclusion Delta DF = < at 1 KHz IR = not less than 5% of the initial limit Life Test 15 C / Vr/1, Hours C = within ± 7% of initial value 125 C / Vr/1, Hours Delta DF = < at 1 KHz measuring 2 hours after test conclusion IR = not less than 5% of the initial limit Charge/Discharge 1, cycle / Vr C = within ± 5% of initial value Delta DF = < at 1 KHz IR = not less than 5% of the initial limit 7

9 AECQ Documentation CB Series AECQ 2 Test Page # Reference Sample size Tests Description Criterion per lot High Temperature Exposure 3 Mil-std h at rated operating temperature (125 C) C = within ± 7% of initial value (Storage) method 18 Unpowered Delta DF < or = at 1kHz * Measurement 24h after test conclusion IR = not less than 5% of initial limit Temperature Cycling 4 JESD cycles (-55 C to +125 C) C = within ± 5% of initial value method JA-14 1 cycles per hour - gradient 15 C/minute Delta DF < or = at 1kHz * Measurement after 24h at 1 C IR = not less than 5% of initial limit Moisture resistance 6 Mil-std t=24 hours/cycle. C = within ± 8% of initial value method 16 Note Steps 7A and 7B not required - Unpowered Delta DF < or = at 1kHz * Measurement after 24h at 1 C IR = not less than 5% of initial limit Biased humidity 7 Mil-std hours 4 C/93%RH C = within ± 8% of initial value method 13.5 Un or 48V max Delta DF < or = at 1kHz * Measurement after 24h at 1 C IR = not less than 5% of initial limit Operational Life 8 Mil-std hours at 125 C C = within ± 7% of initial value method 18 1% of Rated Voltage Delta DF < or = at 1kHz * Measurement 24h after test conclusion IR = not less than 5% of initial limit Resistance to solvents 12 Mil-std-22 5 OKEM clean or equivalent No visible damage method 215 Mechanical shock 13 Mil-std shocks Condition C C = within ± 2% of initial value method 213 1/2 sinusoid Delta DF < or = at 1kHz * 6 msec. 1g s IR = not less than 5% of initial limit Vibration 14 Mil-std cycles each of 3 orientations C = within ± 2% of initial value method 24 5g s for 2 minutes Delta DF < or = at 1kHz * Test from 1-2 Hz IR = not less than 5% of initial limit Resistance to soldering heat 15 Mil-std-22 3 for SMD use Procedure 2 C = within ± 5% of initial value method 21 (235 C / 3 sec.) Delta DF < or = at 1kHz * 3 times IR = not less than 5% of initial limit Thermal Shock 16 Mil-std C/+125 C 3 cycles - transfert 2 sec. max C= within ± 5% of initial value method 17 Dwell Time =15minutes Delta DF < or = at 1kHz * Measurement 24h after test conclusion IR = not less than 5% of initial limit ESD 17 AEC-Q Ongoing Solderability 18 J-STD-2 15 dipping in solder bath 95% solder coverage minimum replaced by: SnPb at 235 C JESD22-B12D during 3 or 5 sec. depending on case size Electrical Characterization 19 User spec. 3 Electrical characteristics measured at : Summary to show Min, Max, Mean -55 C / +25 C / +125 C and standard deviation at room, Min and Max operating temperatures. Flammability 2 UL mm vertical burning test V-, V-1 or V-2 V- or V-1 are acceptable Electrical Test not required Board Flex 21 AEC-Q mm minimum C = within ± 2% of initial value No visible damage Terminal Strength 22 AEC-Q2-6 3 a force of 1.8 kg for 6s sec. No visible damage * For PPS: Delta DF= 1 x 1-4 8

10 Packaging CB Series TAPE & REEL DIMENSIONS 2. (.79) ±.5 (.2) 4. (.157) ±.1 (.4) (.59) (.69) ±.15 (.6) K W P 1 Direction of unreeling W (.512) ±.5 (.2) A W 1 MARKING ON PACKAGING ONLY Example of a label for chip film PET-HT 1nF ±1% 25V BULK packaging TAPE & REEL CHARACTERISTICS In accordance with IEC 286 and EIA 481, the material used: Carrier tape: Antistatic Material Cover tape: Polyester Reel: Recyclable Material Parts in bulk or on reel are packed in hermetically sealed plastic bags. RECOMMENDATIONS Once the sealed bag is opened, the capacitors must be stored in a dry atmosphere until soldering. Recommended storage conditions are: PET & PEN: < 3 C and R.H.<6% for a maximum of 168 hours PPS: < 3 C and R.H.<6% for a maximum of 4 weeks The use-by date is 3 years if kept in origin plastic bags. In case of storage outside the conditions recommended above the capacitors must be dried prior to soldering. Recommended drying conditions are: 96 hours minimum at 6 C and RH < 1%. MSL: PEN & PET-HT = 3 PPS = 2a Standard IPC/JEDEC J-STD-33 9

11 PET-HT DIELECTRIC CB Series APPLICATIONS General purpose function in low voltage applications where miniaturization and SMD is required. Typical applications would be: Automotive (Airbag, Fuel injection calculator...) Telecom (Public switching systems, modems, telephone set, cordless, mobile) Industrial (SMPS, Power convertor module...) GENERAL DESCRIPTION Film chip capacitor using a naked and stacked construction with metallized High Temperature PET (polyethylene terephtalate). ADVANTAGES Use of high temperature dielectric films makes these capacitors suitable for IR or vapor phase reflow processes. This chip is built without specific encapsulation. The intrinsic elasticity of the dielectric film allows an excellent compatibility of the capacitor with all types of material for printed circuit boards. The self-healing property of film technology results to a safety open failure mode and better overall reliability. Excellent thermal shock resistance. Low dissipation factor ESR & ESL. No piezoelectric effect. Available in tape and reel suitable for automatic placement. Non-polar construction. Outer Layer Termination Plating : 1% matte Sn Ni Barrier Under Termination Silver Epoxy Resin Brass Active Layers : PET dielectric PERFORMANCE CHARACTERISTICS Climatic Category 55/125/56 Range 1nF to 4.7μF Tolerance on C R ±5%, ±1% Nominal Voltages 63Vdc to 63Vdc Test Voltage 1.4Vr 2 sec. at 25 C Soldering methods IR or vapor phase reflow (not suitable for wave soldering) Tangent of Loss Angle at 1kHz (DF) < 1 x 1-4 Insulation resistance minimum : IR for C.33μF IR > 1 MΩ at 2 C for 1 min. charge at 1Vdc for VR < 1Vdc and 1Vdc for VR 1Vdc for C >.33μF IR C > 4 sec. at 2 C for 1 min. charge at 1Vdc for VR < 1Vdc and 1Vdc for VR 1Vdc Temperature range -55 C to 125 C with voltage derating of 1.25%/ C between 15 C and 125 C A.C. applications for high frequency A.C. application please check with AVX 1

12 PET-HT DIELECTRIC CB Series CAPACITANCE VALUES (CR) AND NOMINAL VOLTAGES (VR) W H L millimeters (inches) VOLTAGE Vdc: 63V Vac: 4V Chip Dimensions Reel Range Ordering *Tolerances Tape Dimensions Reel Dimensions Packaging Unit Pkg (CR) Code (page 6) Code L W H max T W P1 K A W1 W2 max Bulk Reel.27μF CB42D BC (.228) (.195) (.11) (.32) (.472) (.315) (.122) (12.99) (.488) (.724).33μF CB42D BC (.228) (.195) (.13) (.32) (.472) (.315) (.136) (12.99) (.488) (.724).39 CB42D BC (.228) (.195) (.134) (.32) (.472) (.315) (.136) (12.99) (.488) (.724).47 CB42D BC (.228) (.195) (.138) (.32) (.472) (.315) (.162) (12.99) (.488) (.724).56 CB42D BC (.228) (.195) (.138) (.32) (.472) (.315) (.162) (12.99) (.488) (.724).68 CB42D BC (.228) (.195) (.158) (.32) (.472) (.315) (.162) (12.99) (.488) (.724).82 CB52D BC (.283) (.24) (.146) (.32) (.944) (.472) (.149) (12.99) (.96) (1.196) 1μF CB52D BC (.283) (.24) (.146) (.32) (.944) (.472) (.149) (12.99) (.96) (1.196) 1.5 CB52D BC (.283) (.24) (.29) (.32) (.629) (.472) (.216) (12.99) (.645) (.881) 2.2 CB162D BC (.413) (.299) (.229) (.32) (.944) (.472) (.244) (12.99) (.96) (1.196) 3.3 CB172D BC (.53) (.41) (.216) (.32) (.944) (.629) (.224) (12.99) (.961) (1.196) 4.7μF CB182D BC (.61) (.539) (.193) (.32) (.944) (.944) (.216) (12.99) (.961) (1.196) VOLTAGE Vdc: 1V Vac: 63V.18μF CB42E BC (.228) (.195) (.91) (.32) (.472) (.315) (.96) (12.99) (.488) (.724).22μF CB42E BC (.228) (.195) (.13) (.32) (.472) (.315) (.136) (12.99) (.488) (.724).27μF CB42E BC (.228) (.195) (.134) (.32) (.472) (.315) (.136) (12.99) (.488) (.724).33 CB42E BC (.228) (.195) (.158) (.32) (.472) (.315) (.161) (12.99) (.488) (.724).39 CB42E BC (.228) (.195) (.154) (.32) (.472) (.315) (.161) (12.99) (.488) (.724).47 CB42E BC (.228) (.195) (.169) (.32) (.472) (.315) (.177) (12.99) (.488) (.724).56 CB52E BC (.283) (.24) (.165) (.32) (.629) (.472) (.189) (12.99) (.645) (.881).68 CB52E BC (.283) (.24) (.197) (.32) (.629) (.472) (.26) (12.99) (.645) (.881).82 CB52E BC (.283) (.24) (.185) (.32) (.629) (.472) (.189) (12.99) (.645) (.881) 1μF CB52E BC (.283) (.24) (.224) (.32) (.629) (.472) (.232) (12.99) (.645) (.881) 1.5 CB162E BC (.413) (.299) (.24) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196) T Replace the + by the tolerance code: J = 5% or K = 1% Replace the -- by the packaging suffix: -- = bulk BC = tape & reel 11

13 PET-HT DIELECTRIC CB Series CAPACITANCE VALUES (CR) AND NOMINAL VOLTAGES (VR) W H VOLTAGE Vdc: 1V Vac: 63V Chip Dimensions Reel Range Ordering *Tolerances Tape Dimensions Reel Dimensions Packaging Unit Pkg (CR) Code (page 6) Code L W H max T W P1 K A W1 W2 max Bulk Reel 2.2 CB172E BC (.53) (.41) (.216) (.32) (.944) (.629) (.224) (12.99) (.961) (1.196) 3.3 CB182E BC (.61) (.539) (.24) (.32) (.944) (.944) (.216) (12.99) (.961) (1.196) 4.7μF CB182E BC (.61) (.539) (.279) (.32) (.944) (.944) (.299) (12.99) (.961) (1.196) VOLTAGE Vdc: 25V Vac: 16V.47μF CB42G BC (.228) (.195) (.118) (.32) (.472) (.315) (.122) (12.99) (.488) (.724).56 CB42G BC (.228) (.195) (.142) (.32) (.472) (.315) (.161) (12.99) (.488) (.724).68 CB42G BC (.228) (.195) (.158) (.32) (.472) (.315) (.161) (12.99) (.488) (.724).82 CB42G BC (.228) (.195) (.158) (.32) (.472) (.315) (.161) (12.99) (.488) (.724).1μF CB42G BC (.228) (.195) (.158) (.32) (.472) (.315) (.161) (12.99) (.448) (.724).12 CB52G BC (.283) (.24) (.169) (.32) (.629) (.472) (.189) (12.99) (.645) (.881).15 CB52G BC (.283) (.24) (.169) (.32) (.629) (.472) (.189) (12.99) (.645) (.881).18 CB52G BC (.283) (.24) (.2) (.32) (.629) (.472) (.26) (12.99) (.645) (.881).22 CB52G BC (.283) (.24) (.193) (.32) (.629) (.472) (.26) (12.99) (.645) (.881).27 CB162G BC (.413) (.299) (.189) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196).33 CB162G BC (.413) (.299) (.22) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196).39 CB162G BC (.413) (.299) (.213) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196).47 CB162G BC (.413) (.299) (.241) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196).56 CB172G BC (.53) (.42) (.22) (.32) (.944) (.629) (.225) (12.99) (.961) (1.196).68 CB172G BC (.53) (.42) (.255) (.32) (.944) (.629) (.275) (12.99) (.961) (1.196).82 CB182G BC (.61) (.539) (.21) (.32) (.944) (.944) (.217) (12.99) (.961) (1.196) 1μF CB182G BC (.61) (.539) (.236) (.32) (.944) (.944) (.248) (12.99) (.961) (1.196) 1.5 CB182G BC (.61) (.539) (.276) (.315) (.944) (.944) (.299) (12.99) (.961) (1.196) Replace the + by the tolerance code: J = 5% or K = 1% Replace the -- by the packaging suffix: -- = bulk BC = tape & reel L T millimeters (inches) 12

14 PET-HT DIELECTRIC CB Series CAPACITANCE VALUES (CR) AND NOMINAL VOLTAGES (VR) W H VOLTAGE Vdc: 4V Vac: 2V Chip Dimensions Reel Range Ordering *Tolerances Tape Dimensions Reel Dimensions Packaging Unit Pkg (CR) Code (page 6) Code L W H max T W P1 K A W1 W2 max Bulk Reel.1μF CB42I BC (.228) (.195) (.17) (.32) (.472) (.315) (.122) (12.99) (.488) (.724).12 CB42I BC (.228) (.195) (.95) (.32) (.472) (.315) (.96) (12.99) (.488) (.724).15 CB42I BC (.228) (.195) (.158) (.32) (.472) (.315) (.161) (12.99) (.488) (.724).18 CB52I BC (.283) (.24) (.11) (.32) (.629) (.472) (.15) (12.99) (.645) (.881).22 CB52I BC (.283) (.24) (.138) (.32) (.629) (.472) (.15) (12.99) (.645) (.881).27 CB52I BC (.283) (.24) (.11) (.32) (.629) (.472) (.15) (12.99) (.645) (.881).33 CB52I BC (.283) (.24) (.13) (.32) (.629) (.472) (.15) (12.99) (.645) (.881).47 CB52I BC (.283) (.24) (.177) (.32) (.629) (.472) (.189) (12.99) (.645) (.881).56 CB162I BC (.413) (.299) (.122) (.32) (.944) (.472) (.155) (12.99) (.961) (1.196).68 CB162I BC (.413) (.299) (.141) (.32) (.944) (.472) (.155) (12.99) (.961) (1.196).82 CB162I BC (.413) (.299) (.165) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196).1μF CB162I BC (.413) (.299) (.185) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196).12 CB172I BC (.53) (.42) (.154) (.32) (.944) (.629) (.157) (12.99) (.961) (1.196).15 CB172I BC (.53) (.42) (.181) (.32) (.944) (.629) (.185) (12.99) (.961) (1.196).18 CB172I BC (.53) (.42) (.22) (.32) (.944) (.629) (.274) (12.99) (.961) (1.196).22 CB172I BC (.53) (.42) (.265) (.32) (.944) (.629) (.274) (12.99) (.961) (1.196).27 CB172I BC (.53) (.42) (.265) (.32) (.944) (.629) (.274) (12.99) (.961) (1.196).33 CB182I BC (.61) (.539) (.22) (.32) (.944) (.944) (.248) (12.99) (.961) (1.196).47μF CB182I BC (.61) (.539) (.244) (.32) (.944) (.944) (.248) (12.99) (.961) (1.196) VOLTAGE Vdc: 63V Vac: 25V.1μF CB42K BC (.228) (.195) (.11) (.32) (.472) (.315) (.122) (12.99) (.488) (.724).12 CB42K BC (.228) (.195) (.13) (.32) (.472) (.315) (.122) (12.99) (.488) (.724).15 CB42K BC (.228) (.195) (.158) (.32) (.472) (.315) (.161) (12.99) (.488) (.724).18 CB52K BC (.228) (.24) (.11) (.32) (.944) (.472) (.149) (12.99) (.961) (1.196) Replace the + by the tolerance code: J = 5% or K = 1% Replace the -- by the packaging suffix: -- = bulk BC = tape & reel L T millimeters (inches) 13

15 PET-HT DIELECTRIC CB Series CAPACITANCE VALUES (CR) AND NOMINAL VOLTAGES (VR) W H VOLTAGE Vdc: 63V Vac: 25V Chip Dimensions Reel Range Ordering *Tolerances Tape Dimensions Reel Dimensions Packaging Unit Pkg (CR) Code (page 6) Code L W H max T W P1 K A W1 W2 max Bulk Reel.22 CB52K BC (.283) (.24) (.138) (.32) (.944) (.472) (.149) (12.99) (.961) (1.196).27 CB52K BC (.283) (.24) (.161) (.32) (.629) (.472) (.189) (12.99) (.645) (.881).33 CB52K BC (.283) (.24) (.197) (.32) (.629) (.472) (.189) (12.99) (.645) (.881).47 CB162K BC (.413) (.299) (.141) (.32) (.944) (.472) (.155) (12.99) (.961) (1.196).56 CB162K BC (.413) (.299) (.169) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196).68 CB162K BC (.413) (.299) (.25) (.32) (.944) (.472) (.244) (12.99) (.961) (1.196).82 CB172K BC (.53) (.42) (.169) (.32) (.944) (.629) (.185) (12.99) (.961) (1.196).1μF CB172K BC (.53) (.42) (.197) (.32) (.944) (.629) (.225) (12.99) (.961) (1.196).12 CB172K BC (.53) (.42) (.22) (.32) (.944) (.629) (.225) (12.99 ) (.961) (1.196 ).15 CB172K BC (.53) (.42) (.271) (.32) (.944) (.629) (.275) (12.99 ) (.961) (1.196 ).18 CB182K BC (.61) (.539) (.197) (.32) (.944) (.944) (.217) (12.99) (.961) (1.196).22 CB182K BC (.61) (.539) (.229) (.32) (.944) (.944) (.248) (12.99) (.961) (1.196).27μF CB182K BC (.61) (.539) (.284) (.32) (.944) (.944) (.299) (12.99) (.961) (1.196) Replace the + by the tolerance code: J = 5% or K = 1% Replace the -- by the packaging suffix: -- = bulk BC = tape & reel L T millimeters (inches) 14

16 PET-HT DIELECTRIC CB Series MOUNTING AND SOLDERING RECOMMENDATIONS SOLDERING PROFILE The capacitors can be mounted using infrared and vapor phase soldering following recommended below. They are NOT suitable for wave soldering. All temperature refer to topside of the package, measured on the package body surface. Profile Feature 222 to to 654 Ramp-Up (T s max to T p) 3 C / second max 3 C / second max Preheat - Temperature Min (T s min) 15 C 15 C - Temperature Min (T s max) 2 C 2 C - Time (t s min to t s max) 18 sec. max 18 sec. max Time maintained above - Temperature (T L) 217 C 217 C - Time (t L) 6 sec. max 75 sec. max Peak temperature (T p) 24 C 245 C Time within 5 C of peak temperature (t p) 1 sec. 1 sec. Ramp-Down 6 C / sec. 6 C / sec. Temperature (ºC) T p T p - 5ºC T L T s max T s min 3 t S Ramp up Time (seconds) *Reflow soldering referring to JEDEC Standard with some limitations *JEDEC J-Std 2C t p t L Ramp down RECOMMENDED SOLDER PASTE THICKNESS For optimum solderability, the recommended soldering paste thickness: 222 to 2824 :15 to 2μm 43 to 654 :2 to 3μm In case of hand soldering, the temperature of the soldering iron should not be above 25 C. Special care must be taken to avoid touching the capacitor body with the iron tip. A C B PAD DIMENSIONS: millimeters (inches) Size Code Case Size A B C (.195) 1.9 (.75) 4.5 (.178) (.234) 2.5 (.98) 5.7 (.224) (.295) 3. (.118) 8. (.315) (.441) 3.5 (.137) 1.3 (.46) (.575) 3.6 (.147) 12.6 (.496) RECOMMENDED CLEANING To clean flux from the PC board assembly, the recommended products are: ethanol, isopropyl alcohol, and deionized water wash. The cleaning products to avoid are: Toluene, Xylene, Trichloroethylene, Terpene Cleaner EC-7, surface active agent. In case of using another solvent, please contact us. OTHER CAUTIONS Flame retardancy: the dielectric film is not a flame retardant material. Environment: contact us when chips are used in humid or gas atmosphere and /or when using resin. Recommended handling: do not use edged tools, so not to damage the capacitors. TIN WHISKERS TESTS : JEDEC STANDARD NO 22A121 Stress Type Ref. Spec. Test Conditions Analysis Results Temperature cycling JESD22-A14-55 C +85(+1/-) C air 5 to 1 minutes soak 3 cycles/hour SEM x 1 Pass Ambient Temperature / Humidity Storage 3+/-2 C - 6+/-3% RH -2H SEM x 1 Pass High Temperature / Humidity Storage 7+/-5 C /-2% RH -1H SEM x 1 Pass 15

17 PET-HT DIELECTRIC CB Series ELECTRICAL CHARACTERISTICS VERSUS TEMPERATURE AND FREQUENCY ELECTRICAL CHARACTERISTICS C/C vs TEMPERATURE -55 C -3 C -5 C +2 C +45 C +7 C +95 C +12 C Temperature FREQUENCY CHARACTERISTICS C/C 2 C (%) FREQUENCY (khz) Dissipation Factor DC/C DF (1kHz) = (temperature) vs TEMPERATURE 4 3 DF 2 C (1-4) Dissipation Factor D.F. (1-4 ) C -3 C -5 C +2 C +45 C +7 C +95 C +12 C FREQUENCY (khz) Temperature 1. Insulation Resistance IR vs TEMPERATURE 1nF Z (mohm) 1. Impedance 1. IR(G.ohm) C -3 C -5 C +2 C +45 C +7 C +95 C +12 C Temperature nf 1 nf 22 nf nf 1µF 4.7µF FREQUENCY (MHz) 16

18 PET-HT DIELECTRIC CB Series RMS VOLTAGE AND CURRENT VERSUS FREQUENCY MAXIMUM VOLTAGE (VRMS) AND CURRENT (IRMS) VS FREQUENCY Typical curves results from measurement carried out at ambient temperature (25ºC) and sinusoidal wave-forms (for size CB4 to CB18) V rms (V) Vdc / 4 Vac 4.7µF 1.5µF.47µF FREQUENCY (khz) I rms (A) Vdc / 4 Vac 4.7µF 1.5µF.47µF FREQUENCY (khz) V rms (V) 7 1 Vdc / 63 Vac 4.7µF 1.5µF.22µF FREQUENCY (khz) I rms (A) 1 Vdc / 63 Vac µF µF µF FREQUENCY (khz) V rms (V) Vdc / 16 Vac 1µF.47µF.1µF FREQUENCY (khz) I rms (A) 25 Vdc / 16 Vac µF µF µF FREQUENCY (khz) 17

19 PET-HT DIELECTRIC CB Series RMS VOLTAGE AND CURRENT VERSUS FREQUENCY MAXIMUM VOLTAGE (VRMS) AND CURRENT (IRMS) VS FREQUENCY Typical curves results from measurement carried out at ambient temperature (25ºC) and sinusoidal wave-forms (for size CB4 to CB18) 4 Vdc / 2 Vac 4 Vdc / 2 Vac V rms (V) 22.47µF.1µF.1µF FREQUENCY (khz) I rms (A) µF.1µF.1µF FREQUENCY (khz) 63 Vdc / 25 Vac 63 Vdc / 25 Vac V rms (V) 28.27µF.1µF.1µF FREQUENCY (khz) I rms (A) µF.1µF.1µF FREQUENCY (khz) MAXIMUM PULSE RISE TIME (DV/DT) Voltage Range Dv/dt max. (V/µsec)

20 PET-HT DIELECTRIC CB Series RoHS MATERIALS CONTROLLED BY ROHS (PPM BY WEIGHT): Mass / unit (g) Lead Mercury Cadmium Hexavalent Chromium PBB PBDE CB range RoHS Limit (ppm) Pass/Fail Pass Pass Pass Pass Pass Pass This product has been tested and found to be compliant with all requirements, provisions, and exemptions of EU Directive 22/95/EC of the European Parliament and Council of January 27, 23. On the Restriction of use of certain Hazardous Substances (RoHS) in electrical and electronic equipment and EU Directive 2/53/EC regarding ELV or End of Life Vehicle. ROHS / ELV STATUS External Plating 1% Matte Sn as standard LEAD-FREE STATUS / MOISTURE SENSITIVITY RANKING Pb Free Reflow Solder compliant, MSL = 3. Reflow soldering referring to Jedec Standard with some limitations. Additional JESD-97 data to be phased in MSL e3 termination. PRODUCT LABELING: (For informational purposes only to be phased in on reel and container.) PRODUCT TRACEABILITY: Full internal material traceability by reference to unique lot number marked on reel and external package. Pb Free: RoHS Compliant: 19

21 PEN DIELECTRIC CB Series APPLICATIONS General purpose function in low voltage applications where miniaturization and SMD is required. Typical applications would be: Automotive (Airbag, Fuel injection calculator...) Telecom (Public switching systems, modems, telephone set, cordless, mobile) Industrial (SMPS, Power convertor module...) GENERAL DESCRIPTION Film chip capacitor using a naked and stacked construction with metallized PEN (polyethylene naphtalate). ADVANTAGES Use of high temperature dielectric films make these capacitors suitable for IR or vapor phase reflow processes. This chip is built without specific encapsulation. The intrinsic elasticity of the dielectric film allows an excellent compatibility of the capacitor with all types of material for printed circuit boards. The self-healing property of film technology results to a safety open failure mode and better overall reliability. Excellent thermal shock resistance. Low dissipation factor ESR & ESL. No piezoelectric effect. Available in tape and reel suitable for automatic placement. Non-polar construction. Outer Layer Termination Plating : 1% matte Sn Ni Barrier Under Termination Silver Epoxy Resin Brass Active Layers : PEN dielectric PERFORMANCE CHARACTERISTICS Climatic Category 55/125/56 Range 1nF to 4.7μF Tolerance on C R ±5%, ±1% Nominal Voltages 25Vdc to 63Vdc Test Voltage 1.4Vr 2 sec. at 25 C Soldering methods IR or vapor phase reflow (not suitable for wave soldering) Tangent of Loss Angle at 1kHz (DF) < 1 x 1-4 Insulation resistance minimum : IR for C.33μF IR > 1 MΩ at 2 C for 1 min. charge at 1Vdc for VR < 1Vdc and 1Vdc for VR 1Vdc for C >.33μF IR C > 4 sec. at 2 C for 1 min. charge at 1Vdc for VR < 1Vdc and 1Vdc for VR 1Vdc Temperature range -55 C to 125 C with voltage derating of 1.25%/ C between 15 C and 125 C A.C. applications For high frequency A.C. application please check with AVX 2

22 PEN DIELECTRIC CB Series CAPACITANCE VALUES (CR) AND NOMINAL VOLTAGES (VR) W H L millimeters (inches) VOLTAGE Vdc: 25V Vac: 16V Chip Dimensions Reel Range Ordering *Tolerances Tape Dimensions Reel Dimensions Packaging Unit Pkg (CR) Code (page 6) Code L W H max T W P1 K A W1 W2 max Bulk Reel.1μF CB17C BA.12 CB17C BA.15 CB17C BA.18 CB17C BA.22 CB17C BA.27 CB17C BA.33 CB17C BA.47 CB17C BA.56 CB17C BA.68 CB17C BA.82 CB17C BA.1μF CB17C BA.12 CB17C BA.15 CB17C BA.18 CB17C BA.22 CB17C BA.27 CB27C BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) ( 7.87) (.331) (.567).33 CB27C BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) ( 7.87) (.331) (.567).47 CB27C BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) ( 7.87) (.331) (.567).56 CB27C BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) ( 7.87) (.331) (.567).68 CB27C BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) ( 7.87) (.331) (.567).82 CB27C BA (.13) (.98) (.87) (.2) (.315) (.158) (.92) ( 7.87) (.331) (.567).1μF CB27C BA (.13) (.98) (.91) (.2) (.315) (.158) (.92) ( 7.87) (.331) (.567) For other Values: upon request Replace the + by the tolerance code: J = 5% or K = 1% Replace the -- by the packaging suffix: -- = bulk BA = tape & reel T 21

23 PEN DIELECTRIC CB Series CAPACITANCE VALUES (CR) AND NOMINAL VOLTAGES (VR) W H VOLTAGE Vdc: 5V Vac: 4V Chip Dimensions Reel Range Ordering *Tolerances Tape Dimensions Reel Dimensions Packaging Unit Pkg (CR) Code (page 6) Code L W H max T W P1 K A W1 W2 max Bulk Reel.1μF CB17D BA.12 CB17D BA.15 CB17D BA.18 CB17D BA.22 CB17D BA.27 CB17D BA.33 CB17D BA.47 CB17D BA.56 CB17D BA.68 CB17D BA.82 CB17D BA.1μF CB17D BA.12 CB17D BA.15 CB17D BA.18 CB17D BA.22 CB17D BA.27 CB27D BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) (7.87) (.331) (.567).33 CB27D BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) (7.87) (.331) (.567).47 CB27D BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) (7.87) (.331) (.567).56 CB27D BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) (7.87) (.331) (.567).68 CB27D BA (.13) (.98) (.71) (.2) (.315) (.158) (.75) (7.87) (.331) (.567).82 CB27D BA (.13) (.98) (.87) (.2) (.315) (.158) (.92) (7.87) (.331) (.567).1μF CB27D BA (.13) (.98) (.91) (.2) (.315) (.158) (.92) (7.87) (.331) (.567) For other Values: upon request Replace the + by the tolerance code: J = 5% or K = 1% Replace the -- by the packaging suffix: -- = bulk BA = tape & reel 22 L T millimeters (inches)

24 PEN DIELECTRIC CB Series CAPACITANCE VALUES (CR) AND NOMINAL VOLTAGES (VR) W H L millimeters (inches) VOLTAGE Vdc: 63V Vac: 4V Chip Dimensions Reel Range Ordering *Tolerances Tape Dimensions Reel Dimensions Packaging Unit Pkg (CR) Code (page 6) Code L W H max T W P1 K A W1 W2 max Bulk Reel.1μF CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).12 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).15 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).18 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).22 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).27 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).33 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).47 CB37D BA (.185) (.126) (.79) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) (.185) (.126) (.79) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).56 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).68 CB37D BA (.185) (.126) (.79) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) (.185) (.126) (.79) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).82 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).1μF CB37D BA (.185) (.126) (.79) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) For other Values: upon request Replace the + by the tolerance code: J = 5% or K = 1% Replace the -- by the packaging suffix: -- = bulk BA or BC = tape & reel T 23

25 PEN DIELECTRIC CB Series CAPACITANCE VALUES (CR) AND NOMINAL VOLTAGES (VR) W H VOLTAGE Vdc: 63V Vac: 4V Chip Dimensions Reel Range Ordering *Tolerances Tape Dimensions Reel Dimensions Packaging Unit Pkg (CR) Code (page 6) Code L W H max T W P1 K A W1 W2 max Bulk Reel.1μF CB37D BC (.185) (..126) (.79) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).12 CB37D BA (.185) (.126) (.79) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) (.185) (.126) (.79) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).15 CB37D BA (.185) (.126) (.95) (.24) (.472) (.315) (.12) (7.9) (.488) (.724) BC (.185) (.126) (.95) (.24) (.472) (.315) (.12) (12.99) (.488) (.724).18 CB37D BA (.185) (.126) (.99) (.24) (.472) (.315) (.12) (7.9) (.488) (.724) BC (.185) (.126) (.99) (.24) (.472) (.315) (.12) (12.99) (.488) (.724).22 CB37D BA (.185) (.126) (.79) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) (.185) (.126) (.79) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).27 CB37D BA (.185) (.126) (.75) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) BC (.185) (.126) (.75) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).33 CB37D BA (.185) (.126) (.79) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) (.185) (.126) (.79) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).47 CB37D BA (.185) (.126) (.17) (.24) (.472) (.315) (.122) (7.9) (.488) (.724) BC (.185) (.126) (.17) (.24) (.472) (.315) (.122) (12.99) (.488) (.724).56 CB37D BA (.185) (.126) (.91) (.24) (.472) (.315) (.12) (7.9) (.488) (.724) BC (.185) (.126) (.91) (.24) (.472) (.315) (.12) (12.99) (.488) (.724).68 CB37D BA (.185) (.126) (.79) (.24) (.472) (.315) (.81) (7.9) (.488) (.724) (.185) (.126) (.79) (.24) (.472) (.315) (.81) (12.99) (.488) (.724).82 CB37D BA (.185) (.126) (.99) (.24) (.472) (.315) (.12) (7.9) (.488) (.724) BC (.185) (.126) (.99) (.24) (.472) (.315) (.12) (12.99) (.488) (.724).1μF CB37D BA (.185) (.126) (.111) (.24) (.472) (.315) (.122) (7.9) (.488) (.724) BC (.185) (.126) (.111) (.24) (.472) (.315) (.122) (12.99) (.488) (.724) For other Values: upon request Replace the + by the tolerance code: J = 5% or K = 1% Replace the -- by the packaging suffix: -- = bulk BA or BC = tape & reel 24 L T

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