1 x 10 4 M (mean value: 5 x 10 4 M ) Measuring time: 1 min. Dissipation factors at +20) C: tan d U 250 VDC 100 V

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1 IMA SM-PEN Metallize Polyethylene-Naphthalate (PEN) SM Film Capacitors with Box Encapsulation Special Features Size coes 1812, 2220, 2824, 4030, 5040 an 6054 with PEN an encapsulate Operating temperature up to 125 C Self-healing Suitable for lea-free solering Accoring to RoHS 2002/95/EC Typical Applications For general C-applications e.g. By-pass Blocking Coupling an ecoupling Timing Construction ielectric: Polyethylene-Naphthalate (PEN) film Capacitor electroes: Vacuum-eposite Internal construction: Plastic film Vacuum-eposite electroe Metal contact layer (schoopage) Terminating plate Encapsulation: Solvent-resistant, flame-retarant plastic case, UL 94 V-0 Terminations: Tinne plates. Marking: Box colour: Black. Electrical ata Capacitance range: 0.01 mf to 4.7 mf Rate voltages: 63 VC, 100 VC, 250 VC, 400 VC, 630 VC, 1000 VC Capacitance tolerances: ±20%, ±10% (±5% available subject to special enquiry) Operating temperature range: 55+ C to C Climatic test category: 55/125/21 accoring to IEC for size coes 1812 to /125/56 accoring to IEC for size coes 4030 to 6054 Insulation resistance at +20+ C: U r U test C 0.33 mf 0.33 mf < C T 4.7 mf 63 VC 50 V 3.75 x 10 3 M 1250 sec (M x mf) 100 VC 100 V (mean value: 1 x 10 4 M ) (mean value: 3000 sec) U 250 VC 100 V 1 x 10 4 M (mean value: 5 x 10 4 M ) Measuring time: 1 min. issipation factors at +20) C: tan 3000 sec (M x mf) (mean value: sec) at f C 0.1 mf 0.1 mf < C T 1.0 mf C > 1.0 mf 1 khz 8 x x x khz 15 x x khz 30 x 10-3 Maximum pulse rise time: for pulses equal to the rate voltage Capacitance mf Test voltage: 1.6 U r, 2 sec. Voltage erating: A voltage erating factor of 1.25 % per K must be applie from +100) C for C voltages an from +90) C for AC voltages Reliability: Operational life hours Failure rate 2 fit (0.5 x U r an 40+ C) Pulse rise time V/msec max. operation/test 63 VC 100 VC 250 VC 400 VC 630 VC 1000 VC /300 35/350 40/400 35/350 40/400 50/ /200 20/200 40/400 21/210 25/250 32/ /100 10/100 12/120 14/140 17/ /80 6/60 9/90 10/ /35 4/40 7/ /30 3/30 ip Soler Test/Processing Resistance to solering heat: Test Tb in accorance with IN IEC /IN EN Solering bath temperature max C. Solering uration max. 5 sec. Change in capacitance C/C 5 %. Solering process: ave solering an re-flow solering (see temperature/time graphs page 14). Packing Available tape an reele in 12 mm blister pack. etaile taping information an graphs at the en of the catalogue. For further etails an graphs please refer to Technical Information. 21

2 IMA SM-PEN Continuation General ata 63 VC/40 VAC* 100 VC/63 VAC* 250 VC/160 VAC* Capacitance coe ± 0.3 coe ± 0.3 coe ± mf SMNC02100X SMN02100X SMNF02100Y SMNC02100Y SMN02100Y SMNF02100T SMNC02100T SMN02100T SMNC02150X SMN02150X SMNF02150Y SMNC02150Y SMN02150Y SMNF02150T SMNC02150T SMN02150T SMNC02220X SMN02220X SMNF02220Y SMNC02220Y SMN02220Y SMNF02220T SMNC02220T SMN02220T SMNC02330X SMN02330X SMNF02330Y SMNC02330Y SMN02330Y SMNF02330T SMNC02330T SMN02330T SMNC02470X SMN02470X SMNF02470Y SMNC02470Y SMN02470Y SMNF02470T SMNC02470T SMN02470T SMNC02680X SMN02680X SMNF02680Y SMNC02680Y SMN02680Y SMNF02680T SMNC02680T SMN02680T mf SMNC03100X SMN03100X SMNF03100Y SMNC03100Y SMN03100Y SMNF03100T SMNC03100T SMN03100T SMNF03100K SMNC03150X SMN03150X SMNF03150T SMNC03150Y SMN03150Y SMNF03150K SMNC03150T SMN03150T SMNC03220Y SMN03220Y SMNF03220K SMNC03220T SMN03220T SMNF03220V SMNC03220K SMN03220K SMNC03330Y SMN03330Y SMNF03330K SMNC03330T SMN03330T SMNF03330V SMNC03330K SMN03330K SMNC03470Y SMN03470Y SMNF03470K SMNC03470T SMN03470T SMNF03470V SMNC03470K SMN03470K SMNC03680T SMN03680T SMNF03680V SMNC03680K SMN03680K SMNF03680Q SMNC03680V SMN03680V mf SMNC04100T SMN04100T SMNF04100Q SMNC04100K SMN04100K SMNC04100V SMN04100V SMNC04150K SMN04150K SMNC04150V SMN04150V SMNC04220V SMN04220V SMNC04330Q SMN04330Q SMNC04470Q SMN04470Q100 completion: Tolerance: 20 % = M 10 % = K 5 % = J Packing: = S Lea length: none = 00 Tape version see page 139. * AC voltage: f = 50 Hz; 1.4 x U rms + UC U r ims. in mm. Rights reserve to amen esign ata without prior notification. 22 Continuation page 23

3 IMA SM-PEN Continuation General ata 400 VC/200 VAC* 630 VC/300 VAC* 1000 VC/400 VAC* Capacitance coe ± 0.3 coe ± 0.3 coe ± mf SMNG02100T SMNJ02100K SMNO12100V SMNG02100K SMNG02150T SMNJ02150K SMNO12150V SMNG02150K SMNG02220T SMNJ02220V SMNO12220V SMNG02220K SMNG02330T SMNJ02330V SMNO12330Q SMNG02330K SMNG02470T SMNJ02470V SMNO12470Q SMNG02470K SMNG02680K SMNJ02680Q SMNG02680V mf SMNG03100K SMNJ03100Q SMNG03100V SMNG03150V SMNG03220V SMNG03330V SMNG03470Q100 * AC voltage: f = 50 Hz; 1.4 x U rms + UC U r ims. in mm. Soler pa recommenation b H a L c Boning slit completion: Tolerance: 20 % = M 10 % = K 5 % = J Packing: = S Lea length: none = 00 Tape version see page 139. Size L a b c coe ±0.3 ±0.3 min. min. max Rights reserve to amen esign ata without prior notification. 23

4 Recommenation for Processing an Application of SM Capacitors Layout Form The components can generally be positione on the carrier material as esire. In orer to prevent solering shaows or ensure regular temperature istribution, extreme concentration of the components shoul be avoie. In practice, it has proven best to keep a minimum istance of the solering surfaces between two IMA SMs of twice the height of the components. Solering Process Re-flow solering Soler Pa Recommenation H b a L c Boning slit Size L a b c coe ± 0.3 ± 0.3 min. min. max The soler pa size recommenations given for each iniviual series are to be unerstoo as minimum imensions which can at any time be ajuste to the layout form. Processing The processing of SM components assembling solering washing electrical final inspection/ calibrating must be regare as a complete process. The solering of the printe circuit boar, for example, can constitute consierable stress on all the electronic components. The manufacturer s instructions on the processing of the components are manatory. Temperature/time graph for the permissible processing temperature of the IMA SM film capacitor for typical convection solering processes. ue to the iverse proceures an the varying heat requirements of the ifferent types of components, an exact processing temperature for re-flow solering processes cannot be specifie. The graph shows the upper limits of temperature an time which SM Hansolering IMA SM capacitors with plastic film ielectric are generally suitable for hansolering with a solering iron where, however, similar to automate solering processes, a certain uration an temperature shoul not be exceee. These parameters are epenent on the physical size of the components an the relevant heat absorption involve. must not be exceee when establishing the soler profile accoring to your actual requirements. A max. temperature of T = 210 C insie the component shoul not be exceee when processing IMA SM capacitors. The below ata are to be regare as guieline values an shoul serve to avoi amage to the ielectric cause by excessive heat uring the solering process. The solering quality epens on the tool use an on the skill an experience of the person with the solering iron in han. Size coe Temperature C / F Time uration / sec plate 1 / 5 sec off / 2 sec plate / sec plate 1 / 5 sec off / 3 sec plate / sec plate 1 / 5 sec off / 3 sec plate / sec plate 1 / 5 sec off / 5 sec plate / sec plate 1 / 5 sec off / 5 sec plate / sec plate 1 / 5 sec off / 5 sec plate 2 14

5 Soler Paste To obtain the best solering performance we suggest the use of following soler paste alloy: Lea free soler paste Sn - Bi Sn - Zn (Bi) Sn - Ag - Cu Soler paste with lea Sn - Pb - Ag (Sn60-Pb40-A, Sn63-Pb37-A) ashing Basically, all plastic encapsule components, irrespective of the bran cannot be consiere as being hermetically seale. They are therefore only suitable for inustrial washing processes to a limite extent. uring the washing process, washing agents can penetrate the interior of the component by capillary action through microcracks which might have occure. This is epenent on a number of parameters e.g - washing agents - viscosity of the washing solvent - temperature/time of the washing process - mechanical washing ais such as ultrasonic water pressure rinsing an spraying pressure The type of washing agent to be use is largely specific to the iniviual user or is often lai own by the manufacturer of the washing equipment. The agressiveness of the washing agent to be use can thus only be juge in appropriate test series relating to each iniviual washing process. By an large, the basic rule is that the washing process shoul be carrie out as gently as possible. rying uring the washing process, aqueous solutions can penetrate the component. This can lea to changes in the electrical parameters. Suitable rying measures shoul ensure that no resiual moisture or traces of washing substances are left in the component. Initial Operation/Calibration ue to the stress which the components are subjecte to uring processing, reversible parameter changes occur in almost all electronic components. The capacitance recovery accuracy to be expecte with careful processing is within a scope of C/C T 5 %. For the initial operation of the evice a minimum storage time of t U 24 hours is to be taken into account. ith calibrate evices or when the application is largely epenent on capacitance it is avisable to prolong the storage time to t U 10 ays In this way ageing effects of the capacitor structure can be anticipate. Parameter changes ue to processing are not to be expecte after this perio of time Humiity Protection Bags Tape IMA SM capacitors are shippe in humiity protection bags accoring to JEEC stanar, level 1 (EMI/static-shieling bags conforming to MIL-B 81705, Type 1, Class 1). Uner controlle conitions the components can be store two years an more in the originally seale bag. Opene packing units shoul be consume instantly or reseale for specific storage uner controlle conitions. Reliability Taking account of the manufacturer s guielines an compatible processing, the IMA SM stan out for the same high quality an reliability as the analogous through-hole IMA series. The technology of metallize film capacitors use e.g. in IMA SM-PET achieves the best values for all fiels of application. The expecte value is about: Û 0 T 2 fit Furthermore the prouction of all IMA components is subject to the regulations lai own by ISO 9001:2000 as well as the guielines for component specifications set out by IEC quality assessment system (IECQ-CECC) for electronic components. Electrical Characteristics an Fiels of Application Basically the IMA SM series have the same electrical characteristics as the analogous through-hole IMA capacitors. Compare to ceramic or tantalum ielectrics IMA SM capacitors have a number of other outstaning qualities : favourable pulse rise time low ESR low ielectric absorption available in high voltage series large capacitance spectrum stan up to high mechanical stress goo long-term stability As regars technical performance as well as quality an reliability, the IMA SM series offer the possibility to cover nearly all applications of conventionally throughhole film capacitors with SM components. Furthermore, the IMA SM series can now be use for all the emaning capacitor applications for which, in the past, the use of through-hole components was manatory: measuring techniques oscillator circuits ifferentiating an integrating circuits A/ or /A transformers sample an hol circuits automotive electronics ith the IMA SM programme available toay, the major part of all plastic film capacitors can be replace by IMA SM components. The fiel of application ranges from stanar coupling capacitors to use in switch-moe power supplies as filter or charging capacitors with high voltage an capacitance values, as well as in telecommunications e.g. the well-known telephone capacitor 1mF/250VC

6 Blister Tape Packaging an Packing Units of the IMA SM Capacitors Tape reel: Tape avance an return: Tape return Tape avance Cover film avan empty compartments empty compartments min. 200 mm N / Unwining irection All ims. in mm. A0 B0 A1 B1 2 max. E G F 0 T Type 2max 1± 2 0 N ± P P0 P2 0 1 K Size Coe 1812 A0 A1 B0 B1 0 1 P P0* P2 E F G 0 K T tape tape ± 0.05 ± 0.05 ± 0.3 ± 0.2 Reel Reel Box size Coe mm P 330 mm P Mini Stanar 4.8 x 3.3 x 3 X P1.5 P x 3.3 x 4 X P1.5 P Size Coe 2220 A0 A1 B0 B1 0 1 P P0* P2 E F G 0 K T tape tape ± 0.05 ± 0.05 ± 0.3 ± 0.2 Reel Reel Box size Coe mm P 330 mm P Mini Stanar 5.7 x 5.1 x 3.5 Y P1.5 P x 5.1 x 4.5 Y P1.5 P Size Coe 2824 A0 A1 B0 B1 0 1 P P0* P2 E F G 0 K T tape ± 0.05 ± 0.05 ± 0.3 ± 0.2 Reel Box size Coe mm P Mini Stanar 7.2 x 6.1 x 3 T P1.5 P x 6.1 x 5 T P1.5 P Coe A0 A1 B0 B P P0* P2 ± 0.05 E F ± 0.05 G ± ± 0.2 K T Packing units tape Reel 330 mm P Size Coe 4030 K P1.5 P Size Coe 5040 V P1.5 P Size Coe 6054 Q P1.5 P Mini Stanar * cumulative after 10 steps p 0.2 mm max. Samples an pre-prouction nees on request or 1 Reel minimum. coes for SM packing (Blister) P in mm Coe P Q R T Bulk Mini Bulk Stanar M S 139

7 IMA Part Number System A IMA part number consists of 18 igits an is compose as follows: Fiel 1-4: Type escription Fiel 5-6: Rate voltage Fiel 7-10: Capacitance Fiel 11-12: Size an PCM Fiel 13-14: Special features (e.g. Snubber versions) Fiel 15: Capacitance tolerance Fiel 16: Packing Fiel 17-18: Lea length (untape) M K S 2 C A 0 0 M S S MKS 2 63 VC 0.01 mf 2.5 x 6.5 x % 6-2 Type escription: Rate voltage: Capacitance: Size: Tolerance: SM-PET = SMT 16 VC = A0 22 pf = x 3.3 x 3 Size 1812 = X1 20 % = M SM-PEN = SMN 2.5 VC = A1 47 pf = x 3.3 x 4 Size 1812 = X2 10 % = K SM-PPS = SMI 4 VC = A2 100 pf = x 5.1 x 3.5 Size 2220 = Y1 5 % = J FKP 02 = FKP0 14 VC = A3 150 pf = x 5.1 x 4.5 Size 2220 = Y2 2.5 % = H MKS 02 = MKS0 28 VC = A4 220 pf = x 6.1 x 3 Size 2824 = T1 1 % = E FKS 2 = FKS2 40 VC = A5 330 pf = x 6.1 x 5 Size 2824 = T2... FKM 2 = FKM2 5 VC = A6 470 pf = x 7.6 x 5 Size 4030 = K1 FKP 2 = FKP2 50 VC = B0 680 pf = x 10.2 x 6 Size 5040 = V1 MKS 2 = MKS2 63 VC = C pf = x 13.7 x 7 Size 6054 = Q1 Packing: MKP 2 = MKP2 100 VC = pf = x 7 x 4.6 PCM 2.5 = 0B AMMO H x 340 = A MKI 2 = MKI2 160 VC = E pf = x 7.5 x 4.6 PCM 2.5 = 0C AMMO H x 370 = B FKS 3 = FKS3 250 VC = F pf = x 6.5 x 7.2 PCM 5 = 1A AMMO H x 340 = C FKM 3 = FKM3 400 VC = G pf = x 7.5 x 7.2 PCM 5 = 1B AMMO H x 370 = FKP 3 = FKP3 450 VC = H pf = x 7 x 10 PCM 7.5 = 2A REEL H = F MKS 4 = MKS4 600 VC = I mf = x 8.5 x 10 PCM 7.5 = 2B REEL H = H MKM 4 = MKM4 630 VC = J mf = x 9 x 13 PCM 10 = 3A REEL H = I MKP 4 = MKP4 700 VC = K mf = x 9 x 13 PCM 10 = 3C REEL H = J MKP 10 = MKP1 800 VC = L0 0.1 mf = x 11 x 18 PCM 15 = 4B ROLL H16.5 = N FKP 4 = FKP4 850 VC = M mf = x 12.5 x 18 PCM 15 = 4C ROLL H18.5 = O FKP 1 = FKP1 900 VC = N mf = x 14 x 26.5 PCM 22.5 = 5A BLISTER = P MKP-X2 = MKX VC = O1 1 mf = x 15 x 26.5 PCM 22.5 = 5B BLISTER = Q MKP-X2 R = MKXR 1100 VC = P0 2.2 mf = x 19 x 31.5 PCM 27.5 = 6A BLISTER = R MKP-Y2 = MKY VC = Q0 4.7 mf = x21 x 31.5 PCM 27.5 = 6B BLISTER = T MP 3-X2 = MPX VC = R0 10 mf = x 19 x 41.5 PCM 37.5 = 7A Bulk Mini = M MP 3-X1 = MPX VC = S0 22 mf = x 22 x 41.5 PCM 37.5 = 7B Bulk Stanar = S MP 3-Y2 = MPY VC = T0 47 mf = x 49 x 182 CH_ = H0 Bulk Maxi = G MP 3R-Y2 = MPRY 2000 VC = U0 100 mf = x 77 x 182 CH_ = H1 TPS Mini = X Snubber MKP = SNMP 2500 VC = V0 220 mf = TPS Stanar = Y Snubber FKP = SNFP 3000 VC = 0 1 F = A GTO MKP = GTOM 4000 VC = X0 2.5 F = A025 C-LINK MKP 4 = CP VC = Y0 50 F = A500 Special features: C-LINK MKP C = CPC 250 VAC = F = B100 Stanar = 00 Lea length (untape) C-LINK HC = CH_ 275 VAC = F = B110 Version A1 = 1A 3.5 ±0.5 = C9 SuperCap C = SCSC 300 VAC = F = B600 Version A1.1.1 = 1B 6-2 = S SuperCap MC = SCMC 400 VAC = F = C120 Version A1.2 = 1C 16-1 = P4 SuperCap R = SCSR 440 VAC = SuperCap MR = SCMR 500 VAC = 5... The ata on this page is not complete an serves only to explain the part number system. information is liste on the pages of the respective IMA range. 138

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