Applications. Size. Alternative model 6SL33M. Applicable model 10SL33M 6SL47M 10SL47M 16SH1M 16SH10M 6SVP15M 10SVP15M 4SVP22M 6SVP22M 10SVP22M

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1 OS-ON is an aluminum solid capacitor with high conductive polymer or organic semiconductor electrolyte material. OS-ON acquires low quivalent Resistance (SR), excellent noise reduction capability and frequency characteristics. In addition, OS-ON has a long life span and its SR has little change even at low temperatures since the electrolyte is solid. eatures ow SR obtained by using conductive polymer electrolyte Superior temperature characteristics Suitable as a decoupling capacitor, because its impedance has ideal frequency characteristics. Suitable as a smoothing capacitor, enabling miniaturizing switching power supplies, because it allows large ripple current. Suitable as a backup capacitor for the circuits that consume large current at a high speed. Pb-free ompliant ll the models are completely Pb-free and RoHS compliant products. ong life Some special series can be expected 0,000h life at, suitable for long-operating industrial equipments. Its SR has stable characteristics at a temperature from to (partly ), suitable for applications used at low temperatures (under 0 ). Wide capacitance range from μ to 00μ n array of various series covers wide capacitance range. High voltage, high reliability High reliability products have achieved the highest rated voltage V and the guarantee of x%rh ( series), suitable for automotive and industrial equipments. pplications s a smoothing, backup, and bypass capacitor used in various fields such as digital equipments, household appliances, computer-related hardware, and industrial equipments. onductive Polymer / integration Since the following models of the S, S,,, and SVQP series have been integrated into models with a higher voltage rating, please consider these higher voltage rating models for new adoption or model changes. ode S S pplicable model lternative model SM SM SRM SRM SM SM SM SM SM SM S4M S4M SM SM S0M S0M ' M M ' M M ode ' pplicable model lternative model M M 4M 4M M ode pplicable model lternative model 4M M M M M 0M 0M RM RM 0M 0MX M M M 0MX M M 4M M M M M M M M SVQP 4M MX 4M MX SVQP0M SVQP0M 4SVQPM SVQPM Production of the SG, SV, SM and SN series has been discontinued. Therefore, customers using these series at present are kindly requested to substitute the series for the SG series, and the series for the SV, SM and SN series. bout OS-ON Guidelines and Precautions for Use Product ine-up Table System iagram Sketch of ase Products ist Packing Specifications / SM Packing Specifications / Radial ead onductive Polymer Surface Mount S SVQP Radial ead SQP 4 Radial ead S 0 S S 4

2 bout the electronic part capacitor Guidelines and Precautions for Use Please take note of the following points in order to make the best use of SNYO capacitor's performance. Please use the capacitor within the range of specified performance after confirming each capacitor's usage environment and circuit condition. Please choose the capacitor that matches the lifetime of the intended circuit design. The performance of the capacitor the temperature or frequency. Therefore, please consider these variations when designing the circuit. Please buy SNYO capacitors from our official distributors. Otherwise there is no SNYO warranty. ine-up luminum lectrolytic apacitor (-P) onductive Polymer/ luminum lectrolytic apacitors with Hybrid onductive Polymer Tantalum Solid apacitors with onductive Polymer OS-ON P-cap POSP onsiderations when using in industrial equipment To when capacitor is used in industrial equipment, allow wider margin of capacitance, impedance and other characteristics. Polarity SNYO capacitors have polarity. Please confirm the polarity prior to use.if it is used with the polarities reverse in leakage current or a short circuit may result. i-polar capacitors should be used in circuit where polarity is occasionally reversed, or where polarity is unknown. However bi-polar capacitors cannot be used for circuit, too. There is no bi-polar model of OS-ON, P-cap and POSP. Operating temperature and ripple current Set the operating temperature so that it falls within the range stipulated in this delivery specification. o not apply current that exceeds the allowable ripple current.when excessive ripple current is applied, internal heat increases and reduces the life span. In case the capacitor is used under the condition out of the specified frequency, ripple current shall not exceed the value revised by the frequency coefficient. POSP bout TQ series please contact us. pplied voltage for designing o not apply voltages exceeding the full rated voltage. If such voltage is applied, it may cause short circuit even though it is just a moment. 90% and below of the rated voltage or category voltage of POSP is recommended. If the rated voltage is V or over, 0% and below of the rated voltage or category voltage is recommended. Please refer to the following table for rated voltage of OS-ON. The sum of the voltage plus the peak voltage shall not exceed the rated voltage or category voltage. The sum of the voltage plus the negative peak voltage shall not allow reverse voltage. o not apply reverse voltage. Operating environmental Temperature pplied voltage V products except for below ess than the rated voltage above pplied the voltage shown right figure ll except for the above ー ess than the rated voltage pplied voltage V Please contact us when there is a concern that circuit operation may cause reverse voltage Temperature 3

3 bout the electronic part capacitor Guidelines and Precautions for Use Parallel connection Ripple current may be flowed to the capacitor that has lower impedance when different kind of capacitors are used in parallel. Please be very careful of choosing models. Please consider the balance of electric current when more than two capacitors are connected in parallel. Operating environment restrictions o not use the capacitor in the following environments. Places where water, salt water or oil can directly fall on it and pleces where condensation may form Places with noxious gas (hydrogen sulfide, sulfurous acid, nitrous acid, chlorine, ammonia, etc) Places susceptible to ozone, ultraviolet rays and radiation Where vibration or shock exceeds the allowable value as specified in the catalog or specification sheet Places the capacitor under direct sunlight and pattern Please design capacitor SM type and hole space and hole diameter of circuit board for capacitor radial lead type, or land patterns with consideration of the product dimension specified in the catalog or specificaion sheet and the size torelance. void locating heat-generating components around the capacitor and on the underside of the P board. When capacitor is mounted to the double sided circuit board, avoid placing through holes under capacitors. void having the printed wire under the capacitor. apacitor insulation (-P. OS-ON. P-cap) e sure to completely separate the case, negative lead terminal, positive lead terminal and P board patterns with each other due to the following reasons. Insulation in the marking sleeve and the laminate resin is not guaranteed. The space between the case and the negative electrode terminal is not insulated and has some resistance. Storage conditions It is necessary to maintain a good storage environment in order to prevent the problem when soldering due to the degradation of solderability or moisturization of molding resin.. When storing the reel in the storage bag, please ensure that the storage bag is fully sealed.. o not store in high temperature and high humidity environment. 3. or duration of storage, refer to the respective "Guidelines and Precautions for Use" of each capacitor. 4. o not store in damp conditions such as with water, salt water, or oil, and dew condensation.. o not store in places filled with noxious gas (hydrogen sulfide, sulfurous acid, nitrous acid, chlorine, ammonia, etc).. o not store in places susceptible to ozone, ultraviolet rays and radiation.. Please unseal storage bag just before mounting and be conscious that not remain. Refer to the respective "Guidelines and Precautions for Use" of each capacitor when some remain by necessity. 4 Only for capacitors packed by laminate bag.

4 Guidelines and Precautions for Use onsiderations when soldering The soldering conditions as soldering iron, flow soldering, reflow soldering should be under the range prescribed in specifications. If the specifications are not followed, there is a possibility of the cosmetic defection, the intensive increase of leakage current or the capacitance reduction. Guidelines and Precautions for Use bout the electronic part capacitor Soldering heat stress to capacitor varies depending on temperature, duration time, mounting condition as size, material and component population of P board. Please check the heat durability in your actual soldering condition. Things to be noted before mounting o not reuse capacitors that have been assembled in a set and energized. eakage current may increase when capacitors are stored for long term. In this case, we recommend you to apply the rated voltage for hour at 0 to 0 with a resistor load of kω. In case the capacitor has re-striking-voltage, please apply the rated voltage to the capacitor through kω resistor. Mounting Please mount capacitor after confirming the polarity. Please mount capacitor after confirming its rated capacitance and rated voltage. When mounting capacitors to the circuit board, please use capacitors with the lead space matching the hole space of the circuit board. o not drop capacitor or use capacitor dropped beforehand. e careful not to deform the capacitor during installation. The space specified in the catalog or specitication sheet is needed over the pressure relieve vent of -P or P-cap. void having the prented wire over the pressure relieve vent of -P or P-cap. If the space between the top of -P or P-cap and the circuit board is not enough, the hole where gas can escape is needed when the pressure relieve vent operates. Mounting When an automatic inserter is used to clinch the capacitor lead terminal, make sure it is not set too strongly. e careful to the shock force that can be produced by absorbers, product chckers and centers on automatic inserters and installers. o not apply excessive external force to the lead terminal or the capacitor itself. When mounting snap-in type capacitors, please ensure it is snug fit to the circuit board. Maintenance / Inspection or industrial use, please periodically check the capacitor. When checking, inspect the following points. Outside appearance.(opened vent, leakage electrolyte, etc.) lectrical performance.(eakage current, apacitance, Tangent of loss angle, etc.) isposal of capacitors apacitor comprises solid organic compounds, various metals, resin, rubber, etc. Treat it as industrial waste when disposing of it. In case of disposing a large amount of SNYO capacitor, SNYO can dispose on your behalf.

5 nvironmental concerns of SNYO capacitors bout the electronic part capacitor nvironmental concerns of SNYO capacitors SNYO lectric ompany o.,td. aims at "nvironment. nergy eading Manufacturer " under the brand vision '' Think GI ''. arth-conscious activities are promoted for SNYO capacitors, too. ll SNYO capacitors comply with RoHS directive (0/9/). Restricted Substance Restricted substances of RoHS directive admium(d) and it's compounds ead(pb) and it's compounds Mercury(Hg) and it's compounds Hexavalent chromium(r+) Polybrominated biphenyls(ps) Polybromineted diphenyl ethers(ps) ead-ree Stance ll complete parts and homogenous materials of SNYO capacitors are lead-free.(jit, PHS3) Halogen-ree Stance lmost all SNYO capacitors already comply with halogen-free requirements. Please contact us for details. The difinition of halogen-free for SNYO capacitors is about element or compound of chlorine(i) and bromine(r) out of halogen family except fluorine, iodine and astatine, and satisfy the following conditions as homogeneous materials. The content percentage of chlorine(i) The content percentage of bromine(r) The total content percentage of chlorine(i) and bromine(r) 0.09wt% (900ppm) below 0.09wt% (900ppm) below 0.wt% (00ppm) below It means a homogeneous material or the material that cannot be mechanically decomposed. (xample) plastic composed of homogeneous material, adhesives, metallic material, ink, glass, paper, alloyed metal, etc. ink layer printed or coated on plastic material, coating layer or film of paint thin metallic film formed on the surface of plastic material or metallic material

6 Guidelines and Precautions for Use onductive Polymer Precautions for circuit designing rucial precautions Important. Prohibited circuits (a) OS-ON leakage current may become larger as the following conditions. () Soldering () High temperature no-load test, high temperature and high humidity no-load test, rapidly changing temperature test, etc. (b) void the use of OS-ON in the following type of circuits because leakage current may increase. () High-impedance circuits () oupling circuits (3) Time constant circuits (4) Other circuits that are significantly affected by leakage current If you plan to use or more OS-ONs in a series connection, please contact us before use.. ailure and life-span The failure rate is % / 00h (with a 0% reliability standard) based on JIS 3. The mainly failure modes are as follows. -. ontingency failure The main causes of failure are thermal stresses cause by the soldering or thermal use environment, along with heat stresses, electrical stresses or mechanical stresses. The most common failure mode is a short circuit. (a) Phenomenon after a short circuit () Organic semiconductive type (resin sealing) Guidelines and Precautions for Use In case of a short circuit, if the pass-through current is 3 or less onφ and or less onφ, the OS-ON becomes heated but no effects are visible even when the current is continuously carried. If the short circuit currents exceed the mentioned value above. The temperature inside will increase and the internal press raise. The liquefied organic semiconductor and odorous gas are released from the space of sealant. In this case, keep your face and hands away from the area. () onductive polymer type (rubber sealing) In case of a short circuit, if the pass-through current is or less onφ, or less onφ and 0. or less on φ, the OS-ON becomes heated, but no effects are visible even when the current is continuously carried. If the short circuit currents exceed the mentioned value above. The temperature inside the OS-ON will increase. The rubber sealing is turned over and odorous gas is released. In this case, keep your face and hands away from the area. (b) In case a short circuit occurs, ensure safety by fully considering the followings. () If odorous gas is released, turn off the main power of the equipment. () It may take a few seconds to a few minutes before the organic semiconductor liquefies and an odorous gas produces by the situation. Increase safety by using in conjunction with a protective circuit. (3) If the gas comes in contact with eyes, rinse immediately. If the gas is inhaled, gargle immediately. (4) o not lick the electrolyte. If the electrolyte comes in contact with skin, wash it off with soap immediately. () OS-ON contains combustible substances. In case a large current continues to flow after a short circuit, in the worst case, the shorted-out section may ignite. or safety, install a redundant circuit or a protective circuit, etc. -. Wear-out failure (life-span) When life span exceeded the specified guarantee time of ndurance and amp heat, electrolyte might insulate and cause electric characteristic changed. This is called an open circuit. The electric characteristics of capacitance and SR may possibly change within the specified range in specifications when it is used under the condition of the rated voltage, electric and mechanical performance. Please note it when design.

7 Guidelines and Precautions for Use. eakage current Mechanical stress may cause OS-ON leakage current increased. In such a case, leakage current will gradually decrease by applying voltage within the category voltage and the upper category temperature. Then, self-healing speed of leakage current is faster when it is near to the upper category temperature and the category voltage OS-ON leakage current restoration characteristics μ/v (mbient temperature: ) (Measured voltage:v) eakage current (μ) eakage current (μ) OS-ON leakage current restoration characteristics μ/v (V applied) 00 sample that had stress intentionally applied to make the leakage current larger was used to make leakage current recovery easy to understand. 0 V applied V applied V applied 0. onductive Polymer Other precautions (Hrs.) 0 00 (Hrs.). Soldering with a soldering iron (a) Soldering condition should be under the following ranges. Soldering condition time 0± within s. Refer to page onsiderations when soldering (b) When the lead terminal for radial lead type must be processed because the lead pitch and the P holes in spacing do not match, process it without any stresses to OS-ON before soldering. (c) Solder without any excessive stresses to OS-ON itself. (d) When an OS-ON has been soldered once and needs to be removed, remove it after the solder has been completely melted. (e) o not let the tip of the soldering iron touch the OS-ON itself. 3. low soldering (a) Soldering condition should be under the following ranges. Guidelines and Precautions for Use Soldering iron temperature Recommended flow soldering condition Temperature Time low number Preheating 0 or less (ambient temperature) 0 sec. or less time Soldering condition 0 + or less + sec. or less times or less. When soldering times, immersion time should be + sec. or less. Refer to page onsiderations when soldering (b) o not apply flow soldering to SM type. (c) o not solder OS-ON itself by submerging it in melted solder. Solder the opposite side that the OS-ON is mounted on. (d) Note that flux does not adhere to anywhere expect the lead terminal. (e) Note that other components do not fall over and touch the OS-ON when soldering. 3

8 Guidelines and Precautions for Use (a) Soldering condition should be under the following ranges. Recommended reflow soldering condition Recommended reflow profile Surface of extemal case/terminal [ ] onductive Polymer 4. Reflow soldering uration at or higher 0 uration at or higher Peak temperature 0 Item Preheat 0 uration at 0 or higher 0 0 Preheating 0 to Peak temperature (max) (Seconds) to 0 90 ± sec. 0 over time (max) 0 sec. 0 sec. over time (max) 0 sec. 0 sec. over time (max) sec. sec. Reflow number 0 SVQP S twice or less Only time ll temperatures are measured on the topside of the l-can and terminal surface. (b) o not apply reflow soldering to Radial ead type. (c) Please contact SNYO for setting VPS condition.. Handling after soldering o not subject the OS-ON to excessive stress as follows. (a) o not tilt, bend or twist OS-ON. (b) o not move the P with catching OS-ON itself. (c) o not dump the OS-ON with objects. (d) When stacking Ps, make sure that the OS-ON does not touch other Ps or components.. leaning P heck the following items before washing P board with these detergents: high quality alcohol-based cleaning fluid such as Pine-α ST-0S, clean thru 0H, 0, M, 0K or Techno are RW 4 through or detergents including substitute freon as K-S or IP. Guidelines and Precautions for Use (a) Use immersion or ultrasonic waves to clean within minutes on Polymer conductive type and within minutes on Organic semiconductive type. (b) The temperature of the cleaning fluid should be less than 0. (c) Watch the contamination of the detergent as conductivity, ph, specific gravity, water content, etc. (d) o not store the OS-ON in a location subject to gases from the cleaning fluid or in an airtight container after cleaning. (e) ry the P or OS-ON with hot air that should be less than the maximum operating temperature. (f) Please note that Indication may disappear when rubbing print side after washing as a cleaner. (g) Please contact SNYO for details about detergents, cleaning methods and about detergents other than those listed above.. ixatives and coating materials (a) Select the appropriate covering and sealant materials for OS-ONs. In particular, make sure the fixative, coating and thinner do not contain acetone. (b) efore applying a fixative or coating, completely remove any flux residue and foreign matter from the area where the board and OS-ON will be jointed together. (c) llow any detergent to dry before applying the fixative or coating. (d) Please contact SNYO for fixative and coating heat curing conditions.. Storage conditions Open the bags just befor mouting and use up all products once opend, or keeping a good solderability, store the OS-ON as follows. efore Unsealing fter Unsealing Within 4 month after shipment Within days from opening (packaged with carrier tape) ag packing product Within month after shipment Radial ead type Taping product Within 4 month after shipment Within days from opening SM type 4 The J J-ST-0 Rev. Standard is not applicable. Please contact SNYO for Organic Semiconductor type.

9 UP GR SM type SVQP UP GR to to ow profile ow SR, to large ripple current Guaranteed at S S ong life ow SR to 9 apacitance xternal Marking Range μf ppearance olor to to to 390 Purple to 0 Purple Purple to to ong life 3 super low SR 4 Voltage Range V DC to to. to to to 39 to 00 Purple to to to 0 Purple to to to Purple to to to Purple to Standard to to to 00 Purple to large capacitance, to to 0 to 00 Purple to to 3. to 00 Purple to to. to 00 Purple Super low SR, to 3,000h to mm height max. 9 0 arge capacitance & to low SR for audio to Standard 3 4 arge capacitance, to miniaturization to ow profile to ong life to Miniaturization 9 3 to to 0 to Purple White Product ine-up Table S Radial lead type to 3 miniaturization and low profile 4 Guaranteed at, SQP to high voltage Guaranteed for Organic semiconductor electrolyte 9 Super low SR, to 9 large capacitance Guaranteed at, to rated V max. arge capacitance, Radial lead type onductive polymer electrolyte S High voltage eatures Page ategory Temperature Range onductive Polymer lassification arge capacitance Product ine-up Table to.0 to. to 0 Purple White to to.0 to 4 to to Purple White to 0 Purple White to to.0 to Purple White to to.0 to 3 Purple White to to. to Purple White

10 System iagram onductive Polymer. System iagram SM type luminum solid capacitors with onductive polymer P.4- P.- ow profile ow SR and arge ripple current arge capacitance and Super low SR P.-9 P.- UP GR P.9-9 SVQP Guaranteed at Standard Super low SR and arge capacitance P.0- P.9-99 S Guaranteed at and High voltage resistant ong life Radial lead type luminum solid capacitors with onductive polymer P.4- P.- UP GR P.-3 SQP Guaranteed at and High voltage resistant Guaranteed for 3,000h Super low SR and arge capacitance System iagram Radial lead type luminum solid capacitors with Organic semiconductive electrolyte P.-9 P.4- S ong life arge capacitance and Miniaturization P.-3 P.-3 P.-3 P.0- S Standard arge capacitance and ow SR P.- P.-9 S Miniaturization ow profile mm height (max)

11 Sketch of ase (unit:mm) φ.0 φ φ.0 φ φ φ. φ.0 φ φ.0 ( code) onductive Polymer SM type with conductive polymer electrolyte Radial lead type with conductive polymer electrolyte φ φ.0 φ φ φ.0 φ.0 φ φ φ.0.0 φ 3 3 ( code) Radial lead type with Organic semiconductive electrolyte φ.0 φ.0 φ.0 φ. φ φ. φ... φ.0 Sketch of ase φ 0 G H ( code) ' ' ' ' φ.0.0 φ.0.0 φ.0.0 φ.0 φ φ ' Profile of case size are all expressed in maximum values. Unit:mm ( code)

12 Products ist onductive Polymer SR Matrix ist SM μ V 4. (). (). S () () S (0) (0) S (0) (0) S (0) (0) S (0) (0) (0) 39 S () 4 (0) S () (0) () (4) SVQP (4) () S () (3) () () (4) () () SVQP (4) () 0 0 (0) () () 0 (4) () SVQP () () S () () () SVQP () () () () () () S () () S () () () SVQP () S () () (3) () () SVQP () () () Products ist 0 (4) (9) () (3) 0 3 () S () () () () () () () S () SVQP () () () () () () () () S (4) () () (4) () () () 390 () () () 0 0 () 00 (3) () () () () (3) (9) () (3) S () () () (9) (9) () () S () () () () () () () onductive polymer type How to read the lists in P-9 The name, sizes and SR values of each series are found where the voltage and capacitance (μ) intersect each other. (Refer to the example.) Please confirm the details in the list of each series from P9 to P3. When you find two or more series names in one section, they have different part numbers. Please confirm the number in the haracteristics ist of each series. xample name () SR value (unit:mω)

13 Products ist (0) V μ 4. (0). (0) () (0) (0) (4) (0) (0) S (90) (90). S (0) () S (0) SVQP (0) () (0) (4) (0) () (0) onductive Polymer SR Matrix ist SM () () S (4) (4) () SVQP (0) () (0) (4) (4) 39 (0) () S (4) SVQP (4) () (4) () () () () (4) () SVQP () () () () 4 () S () () () () S () (4) (4) () 0 () () S (9) () 0 () 0 () () Products ist (9) 0 0 () onductive polymer type Standard sizes (onductive polymer type) φ. φ.0.0 φ.0 φ. φ.0 φ.0.0 φ.0.0 φ.0.0 φ.0. 9

14 Products ist onductive Polymer SR Matrix ist Radial ead V μ S. S (0) '(0) (0) S (0) '(0) (0) '(0) S (0) '(0) '(0) '(0) S (0) '(0) SQP S SQP (4) (4) (0) '() (0) () '(3) '(0) () () () () '(4) '(9) S SQP SQP () () () () () () () (0) '(0) (0) S (0) '(0) (0) '(0) S (0) '(0) S (0) (0) 39 4 '(0) () '() SQP () () () '(0) '() 9() 0 SQP (4) '() 0 Products ist 0 () SQP S () () () (3) '() (4) S () '(0) () 0 S () () () () 9() 9() () 9() SQP () () () () 9() 9() 9() (3) 9() 9() 9() 3() 9() () 3() SQP 9() 9() 3() 3() () 3() () () SQP 3() 0() '() '() '(4) SQP (3) (3) (4) () 3() '() () SQP () () () 9() 9() 3() 9() 9() SQP 3() (3) 3() 3() S () () () SQP () () () () SQP 3(3) 3(3) 3() 0() G(9) S H() 3() onductive polymer type Organic semiconductive lectrolyte type Standard sizes (onductive polymer type) 90 () 9 9 φ.0 φ φ φ.0.0 φ.0.0 φ φ φ φ.0 3.0

15 Products ist S S S (0) '(0) (0) '(0) (0) '(0) '(0) (0) '(0) '(0) '(0) (0) '(0) (0) '(0) (0) '(0) '(0) '(0) S (90) '(0) S '(0) (0) S S SQP S (0) '(0) (0) (0) (4) (0) '(0) '(34) '() (0) () (4) 9() '(3) SQP S SQP () () () () () 9() SQP () () 3() 3() (0) '(0) (0) (0) S () () () () () () () '(0) (90) (90) '(0) SQP S (0) (0) '(0) (4) (4) (0) S SQP (4) (4) '(3) () S SQP () () '(34) S () (3) (3) SQP SQP (4) () (4) (4) 3() 3() () S () () () () (0) (0) '(0) (0) (0) '(40) (0) '(0) (0) '(0) (0) '(0) (0) '(0) (0) '(0) (0) (0) () (90) (0) '() () (0) () '(0) () () () S () (0) S (0) (0) S (0) (0) S (0) (0) S (0) (0) S (0) '(0) (0) S (0) (90) S () 3 V μ.. 4. SQP (0). (0) SQP (0) SQP (0) S (0) 39 () () (0) 4 3() () Products ist SQP S S S S S S S S S S S onductive Polymer SR Matrix ist Radial ead () S G() 0 0 S H() onductive polymer type Organic semiconductive lectrolyte type Standard sizes (Organic semiconductive lectrolyte type) φx. φ.0x. φx. φx. φ.0x. φ.0x. 0 φ.0x.0 G φ.x3.0 H φ.0x.0 ' φx.0 ' φ.0x.0 ' φx.0 ' φ.0x.0 ' φ.0x.0 φ.0x.0 9

16 Packing Specifications onductive Polymer Specifications for SM type. Part number system voltage name capacitance xample volt. ode R 4 SVQP S ap.(μ) ode R3 4R Taping -. arrier tape ±0. 0 φ.± 0..0±0. W t T P Packing Specifications Mounting parts irection of unreeling imension code W P t T ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ± ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ± ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ± ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ± ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ± ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ± ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ± apacitance tolerance ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ± ±0. ±0. ±0.3 ±0. ±0. ±0. ±0. ±0. ap. tolerance ode ± M

17 Packing Specifications irection of unreeling ± φ0±.0 φ3±0. φ± R.0 φ30±.0 ode W W 3.0±.±.0,,,.0±.±.0,,,.0± 9.±.0 onductive Polymer -. Reel W W 3. Minimum Packing Quantity Taping type ode pcs./reel (φ30) Packing Specifications irection of unreeling -3. Polarity 93

18 Packing Specifications onductive Polymer Specifications for radial lead type. Part number system voltage name capacitance apacitance tolerance Taping or forming of terminal code xample volt..0 3 ode R 4 3 S S SQP S ap.(μ) ode R 4R ap. tolerance ode ± M Taping or lead terminal wire process code None suffix for regular Iength lead type products ode is used for V products of 9,,9,9 and 3 size in series.. ead terminal process -. pplications The following table is a standard specification. Please contact us concerning other specifications and +S taping. onductive polymer,sqp S Packing Specifications Organic semiconductor S, S code Not processed ag-packed products (lead terminal cutting) orming cut Straight cut,,,3,9,9, 3 3 ',',,, ', 0,G,,,,, G,H ' ' ',' ' ' ' ',, +,+,+,+,+,+ +,+,+ +,+,+ +,+,+,+,+,+ +,+,+,+,+,+ +,+,+ +,+,+,+,+,+ +,+,+,+,+,+ +,+,+ Taping T +T +T(+S) +TS +T +T,+TS +T,+TS +T +T,+TS +T,+TS +T +T,+TS +T +T,+TS +T,+TS +T,+TS +T +T,+TS +T,+TS +T,+TS +T -. ead terminal cutting ead space : mm forming cut, ' φ4, ' φ ead space : mm forming cut,,,, Straight cut φ4, ' φ, ',, 9, φ, ',, 9,, 3 φ ode, ',, 3 φ imensions ± code (φ) ± ' φ4 ' φ ', φ ' φ ± Process names max ± ± ead terminal cutting code ±.0 3, ',',,9,,',,9,,3, ',,

19 Packing Specifications -3. ead terminal Taping code (φ) Taping +T P h W H H0 P P0 =.0mm P φ0 W P,' (φ4),' (φ),', (φ),' (φ) W0 W Taping code Hold-down Tape arrier Tape P h,',,3 (φ) H W P0 φ0 W W0 W P Hold-down Tape arrier Tape t P P h a,' (φ4),' (φ) φ0 Hold-down Tape P h W P P0 φ0 t W W H,9 (φ),9, (φ) W0 P W0 P W H arrier Tape Hold-down Tape φ0 t =mm =3.mm W W P arrier Tape h,', (φ),',,3 (φ) P0 +T (+S) W0 W P0 P W W H =mm =3.mm +TS P arrier Tape Hold-down Tape 0. P ±.0 ±0. φ4 φ φ φ φ +TS φ4 φ φ φ +T φ (+S) φ T P0 P P h W ± ±.0 ±.0 ± W0 min W ± W max H H0 φ0 t ± ± ±0. ± a max max max Packing Specifications ode Tolerance 3. Minimum Packing Quantity Packing quantities standard Processed type discrete lead terminals ode ase pcs./ag,',',9,',,9,,',,9,,3,,',,3 0 G H φ4 φ φ φ φ φ φ. φ Zig-zag pack taping type ode ase pcs./ox,',',9,',,9,,',,9,,3,,',,3 φ4 φ φ φ φ Ordering information φ(0), φ. and φ are packing type only. 9

20 onductive Polymer / Surface Mount Super low SR The series capacitor has lower SR than series. dopt this series to reduce the size of equipment and circuits. This product can support lead free-reflow. Specifications Items ondition Surge voltage Room temperature apacitance tolerance ( ) eakage current M : ± 0Hz/ voltage applied, after minutes 0kHz/ ased the value at 0kHz, + to. Within ±% SR 0,90 to 9%RH,,000h, No-applied voltage amp heat(steady state) Resistance to soldering heat to. Z/Z Z/Z,,000h, voltage applied ndurance. to 0Hz/ quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. issipation actor () VPS ( X s) Within ±% SR (after voltage processing) Within ±%(±% for V).3 times or less than an initial standard SR.3 times or less than an initial standard (after voltage processing) When measured values are questionable, measure after voltage processing mentioned below. Voltage processing: pply voltage for 0 minutes at. Please refer to page 4 for reflow soldering conditions. and dimensions 0.max Polarity marking athode P capacitance voltage H 003 W ase No. φ Marking 390 ist RV : voltage RV μ Specifications voltage ategory temperature range ( ) SM arge capacitance P onductive Polymer R ± ode φ W ±0. H ±0. ± R P ±0. 0. to.

21 onductive Polymer / Surface Mount ode haracteristics ist Part Number voltage capacitance (μ) Tangent of eakage current SR (mω) (max) (μ)(max) ripple current loss angle fter minutes (% max) 0kHz/ 0kHz/ 0kHz (mrms) at R390M M The SR value at 0kHz is a reference one. Recommended onductive Polymer land pattern dimension of PW c ode a. b 9. c. a b requency coefficient for ripple current requency oefficient 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz SM 9

22 onductive Polymer / Surface Mount onductive Polymer S ong ife The S series has longer lifespan than the series. They are a good choice to extend the life of flat panel television sets and others. ead free-reflow is supported. Specifications Items ondition Specifications voltage Surge voltage Room temperature ategory temperature range ( ) ( ) apacitance tolerance 0Hz/ M : ± 0Hz/ 0kHz to 0kHz/ quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. to voltage applied, after minutes issipation actor () eakage current ased the value at 0kHz, + to. Within ±% SR Within ±% 0, 90 to 9% RH,,000h, No-applied voltage amp heat(steady state) Resistance to soldering heat to. Z/Z,,000h, voltage applied (V V applied) ndurance Z/Z SR (after voltage processing) Within ±%.3 times or less than an initial standard VPS ( X s) SR.3 times or less than an initial standard (after voltage processing) When measured values are questionable, measure after voltage processing mentioned below. Voltage processing: pply voltage for 0 minutes at. The voltage to be applied is the rated voltage for -V products, and V for V products. Please refer to page 4 for reflow soldering conditions. SM Marking and dimensions ± ode φ 0.max 0,,, size is S is S on the side of rated capacitance capacitance voltage R ist RV μ 9 P S ase No. H 003 W φ S Polarity marking athode W ±0. H ±0. ±0. R to 0. to 0. to 0. to 0. to RV : voltage P ±

23 onductive Polymer / Surface Mount ode haracteristics ist Part Number voltage capacitance (μ) llowable SR(mΩ) (max) ripple current 0kHz to 0kHz / 0kHz(mrms) Tangent of loss angle (% max) eakage current (μ)(max) fter minutes SM 00 0 SM SM 0 4SM 0 SM 90 0 SM 0 0 S4M SM 90 0 SM 0 40 S39M SM 0 0 S0M S0M SM 0 00 S4M SM 0 S0MX 0 0 SM 3 4S0M 0 3 S0M S0M S0M 0 0 S3M SM 4 9 4S0M onductive Polymer S The surface temperature of aluminum case top must not exceed. rise in temperature due to self-heating by ripple current should be factored in. Recommended SM land pattern dimension of PW S c a b ode a b c requency coefficient for ripple current requency oefficient 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz 99

24 onductive Polymer / Surface Mount The SVQP series guaranteed high voltage resistance was improved to a rated maximum of V.This product is very reliable, guaranteeing % performance. Suitable for use in smoothing circuits of vehicle-mounted equipment, industrial equipment, etc. This product can support lead free-reflow. Specifications Items ondition Surge voltage.4 9 to 0Hz/ M : ± 0Hz/ voltage applied, after minutes 0kHz to 0kHz/ ( ) apacitance tolerance issipation actor () eakage current quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. ased the value at 0kHz. + Resistance to soldering heat to. to. Within ±% times or less than an initial standard SR times or less than an initial standard, to 9%RH,,000h, voltage applied amp heat(steady state) Z/Z Z/Z,,000h, voltage applied ndurance VPS ( X s) Within ±% times or less than an initial standard SR times or less than an initial standard Within ±%.3 times or less than an initial standard SR.3 times or less than an initial standard (after voltage processing) In case of some problems for measured values, measure after applying rated voltage for 0 minutes at. Please refer to page 4 for reflow soldering conditions max W ase No. size is P,,, size is H Polarity marking athode and dimensions φ Marking 4 capacitance voltage R ist ± ode φ RV : voltage RV μ 0 Specifications voltage ategory temperature range ( ) SM V max. % guaranteed, V P onductive Polymer Guaranteed at W ±0. H ±0. ±0. R P ± to 0. to 0. to to. to

25 onductive Polymer / Surface Mount ode haracteristics ist Part Number voltage SR capacitance (mω) (max) 0kHz to 0kHz/ (μ) ripple current llowable ripple current 0kHz (mrms) Tx Tx Tangent of eakage current loss angle (μ)(max) (% max) fter minutes M M RM M 4 0 M 0 M M M M M M onductive Polymer Tx : mbient temperature Recommended land pattern dimension of PW c a b ode a b c SM requency oefficient 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz requency coefficient for ripple current

26 onductive Polymer / Surface Mount onductive Polymer argeong capacitance ife Super low SR The series capacitor has larger capacitance than series. dopt this series to reduce the size of equipment and circuits. This product can support lead free-reflow. Specifications Items ondition Specifications voltage Surge voltage Room temperature...4 ategory temperature range ( ) apacitance tolerance ( ) issipation actor () eakage current to M : ± 0Hz/ voltage applied, after minutes 0kHz/ quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. 0Hz/ to. Within ±% SR 0,90 to 9%RH,,000h, No-applied voltage amp heat(steady state) Resistance to soldering heat to. Z/Z,,000h, voltage applied ndurance Z/Z ased the value at 0kHz + VPS ( X s) Within ±% SR (after voltage processing) Within ±% (±% for V V).3 times or less than an initial standard SR.3 times or less than an initial standard (after voltage processing) In case of some problems for measured values, measure after applying rated voltage Please refer to page 4 for reflow soldering conditions. Marking ase No., size is P,,, size is 0 W capacitance voltage R ist RV μ P max H Polarity marking athode and dimensions φ SM ode φ± RV : voltage, for 0 minutes at W ±0. H ±0. ±0. R P ± to 0. to 0. to to. to

27 onductive Polymer / Surface Mount ode haracteristics ist Part Number Tangent of eakage current SR (mω) (max) (μ)(max) ripple current loss angle 0kHz/ 0kHz/ 0kHz (mrms) at (% max) fter minutes MV M 90 0 MV 3 0 0M MY MV M MY MV 0 0 R0M R0MY R0MV M 0 0 MV 4 0 0M M MV M MV 3 0 3M M MY MV R390M R390MV R0M M M 0 3 0M M M R0M M 40MX M M RM 9 30 RM RM 00 0 SM capacitance (μ) 39M 0M voltage onductive Polymer The SR value in 0kHz is a reference one. land pattern dimension of PW c Recommended a b ode a b c requency coefficient for ripple current requency oefficient 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz 3

28 onductive Polymer / Surface Mount onductive Polymer ow profile This is a low profile series based on the series. Suitable for miniaturizing devices and circuits. This product can support lead free-reflow. Specifications Items ondition Specifications voltage Surge voltage Room temperature ategory temperature range ( ) apacitance tolerance ( ) issipation actor () eakage current 0Hz/ M : ± 0Hz/ voltage applied, after minutes 0kHz to 0kHz/ quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. to ased the value at 0kHz,+ to. Within ±%(±% for size) SR 0,90 to 9%RH,,000h, No-applied voltage amp heat(steady state) Resistance to soldering heat to. Z/Z,,000h, voltage applied ndurance Z/Z VPS ( X s) Within ±% SR (after voltage processing) Within ±% (±% for size).3 times or less than an initial standard SR.3 times or less than an initial standard (after voltage processing) In case of some problems for measured values, measure after applying rated voltage for 0 minutes at. Please refer to page 4 for reflow soldering conditions. Marking ± ode φ W ase No. P (P) P capacitance voltage R ist RV μ max H Polarity marking athode and dimensions φ SM RV : voltage W ±0. H ± ±0. R P ± to to.

29 onductive Polymer / Surface Mount ode haracteristics ist Part Number SR (mω) (max) ripple current voltage capacitance 0kHz to 0kHz/ 0kHz (mrms) (μ) at Tangent of loss angle (% max) eakage current (μ)(max) fter minutes M M 0 M 0 4 M 0 40M R0M M onductive Polymer The size is also available upon request as a radial lead type. Please contact us if this type is required. Maximum height for radial lead types is 4. mm. The size is also available upon request as V and V products. Recommended land pattern dimension of PW c a ode a.. b c.. b SM requency coefficient for ripple current 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz requency oefficient

30 onductive Polymer / Surface Mount onductive Polymer ong ow SR ife arge ripple current This is a low SR series based on the series. Suitable for miniaturizing devices and circuits. This product can support lead free-reflow. Specifications Items ondition Specifications voltage Surge voltage Room temperature ategory temperature range ( ) apacitance tolerance to ( ) issipation actor () eakage current M : ± 0Hz/ voltage applied, after minutes 0kHz/ quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. 0Hz/ ased the value at 0kHz,+ to. Within ±% SR 0,90 to 9%RH,,000h, No-applied voltage amp heat(steady state) Resistance to soldering heat to. Z/Z,,000h, voltage applied ndurance Z/Z VPS ( X s) Within ±% SR (after voltage processing) Within ±%.3 times or less than an initial standard SR.3 times or less than an initial standard (after voltage processing) In case of some problems for measured values, measure after applying rated voltage for 0 minutes at. Please refer to page 4 for reflow soldering conditions. Marking Polarity marking athode 0.max W 4, size is P,, size is capacitance voltage P 003 H ase No. R ode φ± ist RV μ and dimensions φ SM W ±0. H ±0. ±0. R P ± to 0. to 0. to 0. to RV : voltage

31 onductive Polymer / Surface Mount ode haracteristics ist voltage Part Number M capacitance (μ) SR (mω) (max) 0kHz/ 0kHz/ ripple current 0kHz (mrms) at Tangent of loss angle (% max) eakage current (μ)(max) fter minutes M M 90 0 RM 90 0 M 3 39M MY M 0 0 0M M R0M M 4 9 M 0 0M 0 0 onductive Polymer M R3M 3 3 0M M M M RM 9 4 The SR value at 0kHz is a reference one. Recommended SM M land pattern dimension of PW c a b ode a b c requency coefficient for ripple current requency oefficient 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz

32 onductive Polymer / Surface Mount This series has advanced characteristics in resistance to heat compared with the series. The SVQP series is best suited for devices that require enhanced reliability. This product can support lead free-reflow. Specifications Items ondition Specifications voltage Surge voltage Room temperature ategory temperature range ( ) apacitance tolerance to 0Hz/ M : ± 0Hz/ voltage applied, after minutes 0kHz to 0kHz/ ( ) issipation actor () eakage current quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. to. Within ±% times or less than an initial standard SR times or less than an initial standard 0,90 to 9%RH,,000h, No-applied voltage Resistance to soldering heat VPS ( X s) Within ±% SR (after voltage processing) Within ±%.3 times or less than an initial standard SR.3 times or less than an initial standard (after voltage processing) In case of some problems for measured values, measure after applying rated voltage for 0 minutes at. Please refer to page 4 for reflow soldering conditions. 003 and dimensions φ ± ode W ase No. (QP) QP 0.max H Polarity marking athode φ SVQP Marking.0 capacitance voltage R ist RV : voltage RV μ to. Z/Z,,000h, voltage applied amp heat(steady state) Z/Z ased the value at 0kHz, + ndurance SM Guaranteed at P onductive Polymer SVQP W ±0. H ±0. ±0. R P ± to 0. to. 3.

33 onductive Polymer / Surface Mount ode haracteristics ist Part Number ripple current llowable ripple current Tangent of eakage current SR(mΩ) (max) 0kHz (mrms) loss angle voltage capacitance 0kHz to 0kHz/ (μ)(max) (μ) (% max) fter minutes Tx Tx SVQPM SVQP39M SVQPM SVQPM SVQP0M 0 3 4SVQP0M 0 0 SVQP4M SVQPM 0 SVQP0M SVQP0M SVQPM onductive Polymer SVQP Tx : mbient temperature Recommended land pattern dimension of PW c a ode a.. b 9.. c..9 b SM requency coefficient for ripple current 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz SVQP requency oefficient 9

34 onductive Polymer / Surface Mount onductive Polymer Standard SM type Standard SM type product. Use for surface mounted type switching power supplies. This product can support lead free-reflow. Specifications Items ondition Specifications voltage Surge voltage Room temperature ategory temperature range ( ) apacitance tolerance ( ) issipation actor () eakage current 0Hz/ M : ± 0Hz/ voltage applied, after minutes 0kHz to 0kHz/ quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. to to. Within ±% SR 0,90 to 9%RH,,000h, No applied voltage amp heat(steady state) Resistance to soldering heat to. Z/Z,,000h, voltage applied (V V applied) ndurance Z/Z ased the value at 0kHz + VPS ( X s) Within ±% SR (after voltage processing) Within ±%.3 times or less than an initial standard SR.3 times or less than an initial standard (after voltage processing) In case of some problems for measured values, measure after applying rated voltage for to V products or V for V products for 0 minutes at. Please refer to page 4 for reflow soldering conditions. R ist μ W P 0.max ase No.,, size has no marking,,, size is capacitance voltage 003 ode H Polarity marking athode and dimensions RV φ ± W ± H ± R P ±0. 0. to.0 0. to.4 0. to. 0. to to 4. to. 3. to. 4. ± RV : voltage,,,,, Recommended land pattern dimension of PW c Marking φ SM a b ode a b c

35 onductive Polymer / Surface Mount ode haracteristics ist Part Number voltage apacitance (μ) Tangent of eakage current SR(mΩ) (max) (μ)(max) ripple current loss angle 0kHz to 0kHz/ 0kHz (mrms) at fter minutes (% max) SM R3M RM RM 0 00 M 0 M M 0 4M 0 0 M 0 0 M 0 90 M 0 0 M M M M RM 40 0 M 40 0 M M M 00 4 M M 0 0M 0 0 0MV 0 0 MX RM 00 0 M M M M M 0 0 0M MX 0 MX M 00 0 M 4 0 M 0 M M M 0 0MX 0 0 0M 0 0 0M MX 0 M M 9 0 MX M M M 3 0 0M M M M R0M M M M 3 0 0M 4 M M RM The surge voltage of V products is V. Please consider series V products (whose surge voltage is 9V) in placing a new order. onductive Polymer requency coefficient for ripple current requency oefficient 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz

36 onductive Polymer / Radial ead onductive Polymer Miniaturization and ow profile Super low SR arge capacitance This is an even lower SR series based on our series. Suitable for use with motherboards, servers, VG, etc. ead free-flow is supported. Specifications Items ondition Specifications voltage Surge voltage Room temperature...4 ategory temperature range ( ) to 0Hz/ M : ± 0Hz/ voltage applied, after minutes 0kHz to 0kHz/ ( ) apacitance tolerance issipation actor () eakage current quivalent series resistance (SR) haracteristics of impedance ratio at high temp. and low temp. ased the value at 0kHz, + to. Within ±% SR 0,90%RH,,000h, No-applied voltage amp heat(steady state) low method (0± X s) Resistance to soldering heat to. Z/Z,,000h, voltage applied ndurance Z/Z Within ±% SR (after voltage processing) Within ±% SR (after voltage processing) In case of some problems for measured values, measure after applying rated voltage for 0 minutes at. φd 00 capacitance () min voltage ase No. 4min min 9min 4min 9min 9,,9,9 size flat rubber is used. ist RV : voltage RV μ 9,,9,9 φd 003 Radial ead. φ Polarity marking athode and dimensions φ Marking 9 9, 9 9 9, 9, 3 9, 9, 9 9, 9, 3 9, ,9, , 3 ode φ ± M : ±0.0 max ± ± ± 3.± 3.± 3.±.0± φd ±

37 onductive Polymer / Radial ead ode haracteristics ist Part Number voltage capacitance (μ) Tangent of eakage current SR (mω) (max) (μ)(max) loss angle ripple current 0kHz to 0kHz/ 0kHz (mrms) at fter minutes (% max) 0MZ MZ 3 40 MZ 40 0MZ M 390M 0MW 9 MW 9 0MW MW 0 3MW 3 0MW 0 MW 0 0 0MX MX 9 0MX MX 0 0 0MX MX 0 MY 0 00MX 00 0 onductive Polymer 9 0M 0 4 0M M M RM M 3 0M 0 00M M 00M Radial ead M requency coefficient for ripple current requency oefficient 0Hz f khz 0.0 khz f khz 0.3 khz f 0kHz 0. 0kHz f khz 3

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