SH1016TR DUBILIER | Alldatasheet

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Fax: 01371 875075 www.dubilier.co.uk Tel: 01371 875758 CAPACITORS TANTALUM DIPPED SH

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The ‘SH’ is a premium grade tantalum capacitor, exhibiting ultra-low leakage- current and impedance in small case sizes. Applications for this device include:- High density logic boards - where space is a premium Instrumentation - requiring high temperature stability Timing circuits - requiring low leakage current Decoupling circuits - requiring low impedance Product is normally supplied loose on a 5mm pitch, but it is also available with a 2.5mm pitch and also taped & reeled for auto-insertion. All product is manufactured to comply with Dubilier’s stringent quality standards involving quality checks at each stage of processing and production. Temperature -55 to +85˚C (125˚C operation possible with de-rating) Life Time 2000 Hours @ +85°C Tolerance ± 20% (10% available) Leakage Current <0.008CV or 0.05µA whichever larger (>2 mins.) V . 10 1 5 5 50 µF øxl/mm øxl/mm øxl/mm øxl/mm øxl/mm øxl/mm 330 10.0x17 10.0x18.5 All parts supplied with 5mm pitch as standard. 2.5mm pitch also available on parts with 7mm diameter or less. SH 10 1 TR Range Capacitance µF Voltage V Options: TR = Tape/Reel k = 10% Tol 2.5P : 2.5 pitch Blank = 5mm pitch SECTION 1

Fax: 01371 875075 www.dubilier.co.uk Tel: 01371 875758 107 CAPACITORS TANTALUM DIPPED SH Capacitance/µF 0.1 to 1.5 2.2 to 6.8 10 to 68 100 to 220 Tan ∂ 0.04 0.06 0.08 0.1 Test Time/Hr 2000 ± 48 Leakage Current/µA Less than 125% of initial value Capacitance/µF Within ± 10% of initial value Tan ∂ Less than or equal to initial value V . 10 1 5 5 50 µF 0.1 26.0 26.0 0.15 21.0 21.0 0.22 17.0 17.0 0.33 15.0 15.0 0.47 13.0 13.0 0.68 10.0 10.0 1.0 10.0 8.0 8.0 68 1.8 1.3 1.0 0.8 100 1.6 1.0 0.8 150 0.9 0.8 0.6 220 0.9 0.6 0.5 330 0.7 0.5 Impedance measured at 100KHz and 25˚C. Operating Properties It is recommended that the following operating modes are not imposed on the capacitors; Over or reverse voltage Over temperature Power rating exceeded High current surge due to low impedance (we recommend that the circuit impedance should be 3Ω/V minimum). Material Content Tantalum capacitors contain no material normally considered as hazardous. Materials include: Epoxy Resin, Graphite, Manganese Dioxide, Tantalum, Tantalum Oxide. Noxious fumes may be emitted if incinerated. Stability at -55˚C Capacitance within ± 12% max Temperature Extremes (better than -5% typ) +85˚C Capacitance within ± 12% max (better than +5% typ). Leakage current within 10% initial value. Humidity 0˚C, Capacitance within 10% of initial value. 0-5% RH 1 days Leakage current within 125% of initial value.Tan ∂ less than or equal to initial value. Shelf Life Capacitance within 10% of initial value. 000Hr @ 5˚C; no Leakage current within125% of initial voltage applied value. Tan ∂ less than or equal to initial value. Surge Voltage 1000 Capacitance within 5% of initial value. cycles @ 5˚C Leakage current less than or equal to initial value. Tan ∂ less than or equal to initial value. Rated Voltage/V 6.3 10 16 25 35 50 Surge Voltage/V 8 13 20 32 44 63 Temperature - Voltage 6.3 10 16 25 35 50 de-rating @ 15˚C 4 6.3 10 16 23 33 TAN ∂ IMPEDANCE (ohms MAX.) SAFETY ENDURANCE ELECTRICAL SECTION 1

Fax: 01371 875075 www.dubilier.co.uk Tel: 01371 875758 CHARACTERISTICS CAPACITORS TANTALUM DIPPED SH DIMENSIONS (mm) OUTLINE DRAWING Code Description Dimensions/mm Po Feed hole pitch 12.7 ± 0.3 P Hole centre to component centre 6.35 ± 0.4 S Lead pitch 5.0 + 0.8/-0.2 (2.5 + 0.4/-0.1 option) H Height to seating plane 16.0 ± 0.5 Do Feed hole diameter 4.0 ± 0.2 W Tape width 18.0 + 1.0/-0.5 Capacitance typically changes with temperatur e according to the curve +20 +10 -10 -20 Capacitance Value -80 -60 -40 -20 0 +20 +40 +60 +80 +100 +120 Operating Temperature ˚C DC leakage current (DCL) increases with increasing Typical Effect of Temperature upon DC Leakage Current temperature according to the typical curve Multiplier of DC Leakage Current 10.0 1.0 0.1 Operating Temperature –˚C -60 -40 -20 0 +20 +40 +60 +80 +100 +125 Reference 1.0 at + 25 ˚C Free Air Cool 0 1 2 3 4 5 6 100 125 150 175 200 225 250 Entrance to Solder Wave Exit from Solder Wave (Time in Wave – 2 to 4 Secs.) Hot Air Debridgin g Preheat ZoneFlux Zone Entrance to Solder Machine Time (Minutes) Degrees – C° 80°C to 120 °C Solder Wave Peak Temperature 260 °C Exit from In-Line Cleaner (time in cleaner may be less) Immersion in Cleaning Vapor Top Side Nominal 150°C Max. Free Air Cool Entrance to In-Line Cleaner Exit from Solder Machine Bottom Side Temperature Range Optimum Solder Wave Profile SECTION 1