Type SLPX 85 C Snap-In Aluminum Electrolytic Best Value 85 C Snap-In Type
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1 Type SLPX is the best value package snap-in series for 85 ºC, 3000 h operation. This series is the most cost-effective choice for DC fltering and power supply applications where long life and high ripple capability are needed. Specifcations Highlights h ripple load life at rated voltage - 85 ºC rated - Small case size with high capacitance - Best for switching power supplies - 22 mm to 35 mm diameter, 0 mm lead spacing - Great value snap-in type - High ripple current Temperature Range to +85 ºC 250 Vdc 25 ºC to +85 ºC 35 Vdc Rated Voltage Range 0 Vdc to 450 Vdc acitance Range 68 µf to 82,000 µf acitance Tolerance ±20% Leakage Current Ripple Current Multipliers 3 CV µa at 5 minutes Ambient Temperature 20 ºC - 45 ºC 55 ºC 65 ºC - 75 ºC 85 ºC Frequency Low Temperature Characteristics Impedance ratio: Z Z 20⁰C +25⁰C 0 (0 Vdc) 8 (6 50 Vdc) 4 (63 00 Vdc) 3 ( Vdc) Endurance Life 3,000 full 85 ºC Δ acitance ±20% ESR 200% of limit DCL 00 % of limit Shelf Life, ºC Δ acitance ±5% ESR 50% of limit DCL 00 % of limit Vibration 0 khz & 60 Hz 20 Hz khz Voltage Up 0-00 Vdc Vdc To apply multipliers, see ratings tables for ripple current values 0 Hz to 55 Hz 0.06 and 0g max 2 h in each plane RoHS Compliant
2 ing System SLPX 562 M 025 A P 3 A Case Insulating Type Tolerance Voltage Code Polarity Sleeve Pin Style SLPX 82 = 820 µf M = ±20% 025 = 25 Vdc P = Polarized 3 = PVC Blank = 2 pins 332 = 3300 µf 250 = 250 Vdc snap-in 6.3 mm L Diameter Length mm (in) 03 = 0,000 µf A = 2 pins snap-in mm L mm (in) (.00) (.8) (.38) (.57) (.77) (2.00) 22 (0.87) A A3 A5 A7 A4 A9 25 (.00) C C3 C5 C7 C4 C9 30 (.8) E E3 E5 E7 E4 E9 Outline Drawing 35 (.38) H H3 H5 H7 H4 H9 0.0 Vent / / / Ratings L±2 6.3± D+ max. 2 x Ø2.0±0. PC Board Mounting Holes 4.0 mm pin length option (add A to end of part #) Additional Voltages and Sizes available at 0 Vdc (3 Vdc Surge) 0 Vdc (3 Vdc Surge) 2000 SLPX23M00AP x SLPX683M00E9P x SLPX53M00A3P SLPX683M00H7P SLPX53M00CP SLPX823M00H9P SLPX83M00A5P x 35 6 Vdc (20 Vdc Surge) 8000 SLPX83M00C3P SLPX822M06AP x SLPX223M00A7P SLPX03M06A3P SLPX223M00C3P SLPX23M06A3P SLPX223M00EP SLPX23M06CP SLPX273M00A4P x SLPX53M06A5P x SLPX273M00C5P x SLPX53M06C3P SLPX273M00E3P SLPX53M06EP SLPX333M00A9P x SLPX83M06A7P SLPX333M00C7P x SLPX83M06C5P x SLPX333M00E3P SLPX83M06E3P SLPX393M00C4P x SLPX223M06A9P x SLPX393M00E5P x SLPX223M06C7P x SLPX393M00H3P x SLPX223M06E3P SLPX473M00C9P x SLPX273M06C4P x SLPX473M00E7P x SLPX273M06E5P x SLPX473M00H5P x SLPX273M06H3P x SLPX563M00E4P x SLPX333M06C9P x SLPX563M00H5P x SLPX333M06E7P x 40
3 6 Vdc (20 Vdc Surge) 35 Vdc (44 Vdc Surge) SLPX333M06H3P x SLPX03M035C7P SLPX393M06E4P x SLPX03M035E3P SLPX393M06H5P x SLPX23M035C4P SLPX473M06E9P x SLPX23M035E5P SLPX473M06H7P SLPX23M035H3P SLPX563M06H4P x SLPX53M035C9P Vdc (32 Vdc Surge) 5000 SLPX53M035E7P SLPX562M025AP x SLPX53M035H5P SLPX682M025A3P SLPX83M035E4P SLPX822M025A5P x SLPX83M035H7P SLPX822M025CP SLPX223M035H4P SLPX03M025A5P x SLPX273M035H9P SLPX03M025C3P Vdc (63 Vdc Surge) 0000 SLPX03M025EP SLPX222M050AP SLPX23M025A7P SLPX272M050A3P SLPX23M025C5P x SLPX332M050A3P SLPX23M025EP SLPX332M050CP SLPX53M025A9P x SLPX392M050A5P SLPX53M025C7P x SLPX392M050C3P SLPX53M025E3P SLPX472M050A7P SLPX83M025C4P x SLPX472M050C3P SLPX83M025E5P x SLPX472M050EP SLPX83M025H3P x SLPX562M050A7P SLPX223M025C9P x SLPX562M050A4P SLPX223M025E7P x SLPX562M050C5P SLPX223M025H5P x SLPX562M050E3P SLPX273M025E4P x SLPX682M050A9P SLPX273M025H7P SLPX682M050C7P SLPX333M025E9P x SLPX682M050E5P SLPX333M025H4P x SLPX822M050C4P SLPX393M025H9P SLPX822M050E5P Vdc (44 Vdc Surge) 8200 SLPX822M050H3P SLPX392M035AP x SLPX03M050E7P SLPX472M035A3P SLPX03M050H5P SLPX472M035CP SLPX23M050E9P SLPX562M035A3P SLPX23M050H7P SLPX562M035A5P x SLPX53M050H4P SLPX562M035C3P SLPX83M050H9P SLPX682M035A7P SLPX223M050H9P SLPX682M035C3P Vdc (79 Vdc Surge) 6800 SLPX682M035EP SLPX82M063AP SLPX822M035A4P x SLPX222M063A3P SLPX822M035C5P x SLPX222M063CP SLPX822M035E3P SLPX272M063A5P SLPX03M035A9P x SLPX272M063C3P x x x x x x x x x x x x x x x x x x x x x x x x x 35
4 63 Vdc (79 Vdc Surge) 80 Vdc (00 Vdc Surge) 3300 SLPX332M063A7P SLPX822M080H4P x SLPX332M063C3P SLPX03M080H9P SLPX332M063EP Vdc (25 Vdc Surge) 3900 SLPX392M063A4P x SLPX82M00AP x SLPX392M063C5P x SLPX02M00A3P SLPX392M063E3P SLPX22M00A3P SLPX472M063A9P x SLPX22M00CP SLPX472M063C7P x SLPX52M00A5P x SLPX472M063E3P SLPX52M00C3P SLPX562M063C4P x SLPX82M00A7P SLPX562M063E5P x SLPX82M00C5P x SLPX562M063H3P x SLPX82M00EP SLPX682M063C9P x SLPX222M00A4P x SLPX682M063E7P x SLPX222M00C7P x SLPX682M063H3P x SLPX222M00E3P SLPX822M063E4P x SLPX272M00C4P x SLPX822M063H5P x SLPX272M00E5P x SLPX03M063E9P x SLPX272M00H3P x SLPX03M063H7P SLPX332M00C9P x SLPX23M063E9P x SLPX332M00E7P x SLPX23M063H4P x SLPX332M00H5P x SLPX23M063H9P SLPX392M00E4P x Vdc (00 Vdc Surge) 3900 SLPX392M00H5P x SLPX22M080AP x SLPX472M00H7P SLPX52M080A3P SLPX472M00E9P x SLPX82M080A3P SLPX562M00H4P x SLPX82M080CP SLPX682M00H9P SLPX222M080A7P Vdc (200 Vdc Surge) 2200 SLPX222M080C3P SLPX39M60AP x SLPX222M080EP SLPX47M60A3P SLPX272M080A4P x SLPX47M60CP SLPX272M080C5P x SLPX56M60A3P SLPX272M080E3P SLPX56M60C3P SLPX332M080A9P x SLPX68M60A7P SLPX332M080C7P x SLPX68M60C3P SLPX332M080E3P SLPX68M60EP SLPX392M080C4P x SLPX82M60A4P x SLPX392M080E5P x SLPX82M60C5P x SLPX472M080C9P x SLPX82M60E3P SLPX472M080E7P x SLPX02M60A9P x SLPX472M080H3P x SLPX02M60C7P x SLPX562M080E4P x SLPX02M60E3P SLPX562M080H5P x SLPX22M60C4P x SLPX682M080E9P x SLPX22M60E5P x SLPX682M080H7P SLPX22M60H3P x 30
5 60 Vdc (200 Vdc Surge) 500 SLPX52M60E7P x SLPX82M200C7P x SLPX52M60H5P x SLPX82M200E3P SLPX82M60E4P x SLPX02M200C4P x SLPX82M60H5P x SLPX02M200E5P x SLPX222M60H7P SLPX02M200H3P x SLPX272M60H9P SLPX22M200C9P x Vdc (225 Vdc Surge) 200 SLPX22M200E7P x SLPX33M80AP x SLPX22M200E4P x SLPX39M80AP x SLPX22M200H5P x SLPX47M80A3P SLPX52M200E4P x SLPX47M80CP SLPX52M200H5P x SLPX56M80A5P x SLPX52M200H7P SLPX56M80CP SLPX52M200H4P x SLPX68M80A5P x SLPX82M200H4P x SLPX68M80C3P SLPX222M200H9P SLPX68M80EP Vdc (270 Vdc Surge) 820 SLPX82M80A7P SLPX22M220AP x SLPX82M80C5P x SLPX27M220AP x SLPX82M80EP SLPX33M220A3P SLPX02M80C7P x SLPX33M220CP SLPX02M80E3P SLPX39M220A5P x SLPX22M80C4P x SLPX39M220CP SLPX22M80E5P x SLPX47M220A5P x SLPX22M80H3P x SLPX47M220C3P SLPX52M80E7P x SLPX47M220EP SLPX52M80H5P x SLPX56M220A7P SLPX82M80E4P x SLPX56M220C5P x SLPX82M80H5P x SLPX56M220EP SLPX222M80H7P SLPX68M220A4P x SLPX272M80H9P SLPX68M220C7P x Vdc (250 Vdc Surge) 680 SLPX68M220E3P SLPX27M200AP x SLPX82M220C4P x SLPX33M200A3P SLPX82M220E5P x SLPX33M200AP x SLPX82M220H3P x SLPX39M200A3P SLPX02M220C9P x SLPX39M200CP SLPX02M220E7P x SLPX47M200A3P SLPX02M220H3P x SLPX47M200C3P SLPX22M220E7P x SLPX56M200A7P SLPX22M220E4P x SLPX56M200C3P SLPX22M220H5P x SLPX56M200EP SLPX52M220H7P SLPX68M200A4P x SLPX82M220H4P x SLPX68M200C5P x Vdc (300 Vdc Surge) 680 SLPX68M200E3P SLPX22M250AP x SLPX82M200A9P x SLPX27M250A3P Vdc (250 Vdc Surge)
6 250 Vdc (300 Vdc Surge) 35 Vdc (365 Vdc Surge) 330 SLPX33M250A3P SLPX02M35H9P SLPX33M250CP Vdc (400 Vdc Surge) 390 SLPX39M250A5P x SLPX2M350AP x SLPX39M250C3P SLPX5M350A3P SLPX47M250A7P SLPX5M350CP SLPX47M250C5P x SLPX8M350A3P SLPX47M250EP SLPX8M350CP SLPX56M250A4P x SLPX22M350A5P x SLPX56M250C5P x SLPX22M350C3P SLPX56M250E3P SLPX22M350EP SLPX68M250C7P x SLPX27M350A7P SLPX68M250E5P x SLPX27M350C5P x SLPX82M250C9P x SLPX27M350EP SLPX82M250E5P x SLPX33M350A4P x SLPX82M250H3P x SLPX33M350C7P x SLPX02M250E5P x SLPX33M350E3P SLPX02M250E4P x SLPX39M350C7P x SLPX02M250E9P x SLPX39M350E5P x SLPX02M250H5P x SLPX39M350H3P x SLPX22M250E9P x SLPX47M350E5P x SLPX22M250H7P SLPX47M350H3P x SLPX52M250H4P x SLPX56M350E7P x SLPX82M250H9P SLPX56M350H5P x Vdc (365 Vdc Surge) 680 SLPX68M350H7P SLPX8M35A3P SLPX82M350H4P x SLPX8M35CP SLPX02M350H9P SLPX22M35A5P x Vdc (435 Vdc Surge) 220 SLPX22M35C3P SLPX27M35A7P SLPX27M35C3P SLPX33M35A4P x SLPX33M35C5P x SLPX33M35E3P SLPX39M35A9P x SLPX39M35C7P x SLPX39M35E3P SLPX47M35C4P x SLPX47M35E5P x SLPX47M35H3P x SLPX56M35E7P x SLPX56M35H5P x SLPX68M35E4P x SLPX68M35H7P SLPX82M35E9P x SLPX82M35H4P x SLPX820M385AP x SLPX0M385A3P SLPX2M385A3P SLPX2M385CP SLPX5M385A5P x SLPX5M385C3P SLPX8M385A7P SLPX8M385C5P x SLPX8M385EP SLPX22M385A4P x SLPX22M385C5P x SLPX22M385E3P SLPX27M385C7P x SLPX27M385E5P x SLPX33M385C9P x SLPX33M385E7P x SLPX33M385H3P x SLPX39M385E7P x 40
7 μf Max ESR 25 C 385 Vdc (435 Vdc Surge) Max Ripple 85 C 390 SLPX39M385H5P SLPX47M385E9P SLPX47M385H7P SLPX56M385H4P SLPX68M385H9P Vdc (450 Vdc Surge) 82 SLPX820M400AP SLPX0M400A3P SLPX2M400CP SLPX2M400A3P SLPX5M400A5P SLPX5M400C3P SLPX8M400A7P SLPX8M400C3P SLPX8M400EP SLPX22M400A4P SLPX22M400C3P SLPX22M400C5P SLPX22M400E3P SLPX27M400C7P SLPX27M400E3P SLPX33M400E3P SLPX33M400H3P SLPX33M400C4P SLPX39M400E7P SLPX39M400H5P SLPX47M400E4P SLPX47M400H7P SLPX56M400H9P SLPX56M400H7P SLPX68M400H9P SLPX82M400H9P Vdc (470 Vdc Surge) 82 SLPX820M420AP SLPX0M420A3P SLPX0M420CP SLPX2M420A3P SLPX2M420CP SLPX5M420A5P SLPX5M420C3P SLPX5M420EP SLPX8M420A7P x x x x x x x x x x x x x x x 35 Max ESR Max Ripple 25 C 85 C μf 420 Vdc (470 Vdc Surge) 80 SLPX8M420C5P x SLPX8M420EP SLPX22M420A4P x SLPX22M420C5P x SLPX22M420E3P SLPX27M420C7P x SLPX27M420E5P x SLPX27M420H3P x SLPX33M420C9P x SLPX33M420E5P x SLPX33M420H5P x SLPX39M420E7P x SLPX39M420H5P x SLPX47M420E4P x SLPX47M420H7P SLPX56M420H4P x Vdc (500 Vdc Surge) 68 SLPX680M450AP x SLPX820M450AP x SLPX0M450CP SLPX2M450A3P SLPX2M450C3P SLPX2M450EP SLPX5M450A7P SLPX5M450C3P SLPX5M450EP SLPX8M450EP SLPX8M450A4P SLPX8M450C5P x x SLPX22M450C7P x SLPX22M450E3P SLPX22M450H3P x SLPX27M450C4P x SLPX27M450E3P SLPX27M450E5P x SLPX27M450H3P x SLPX33M450H5P x SLPX33M450E7P x SLPX39M450E4P x SLPX39M450H7P SLPX47M450H9P SLPX47M450H4P x 45
8 Typical Performance Curves Type SLPX acitance vs Frequency at Temperatures 470 µf 450 V.2.2 Type SLPX acitance vs Frequency at Temperatures 2200 µf 50 V ESR Ratio to 25 C, 20 Hz Value Ratio to 25 ºC, 20 Hz Value ºC 65 ºC 45 ºC 25 ºC 20 ºC 0 ºC Ratio to 25 ºC, 20 Hz Value ºC 65 ºC 45 ºC 25 ºC 20 ºC 0 ºC Type SLPX ESR vs Frequency at Temperatures 470µF 450V 20 ºC 0 ºC 25 ºC 45 ºC 65 ºC 85 ºC Ratio to 25 ºC, 20 Hz Value Type SLPX ESR vs Frequency at Temperatures 2200 µf 50 V 20 ºC 0 ºC 25 ºC 45 ºC 65 ºC 85 ºC Type SLPX Impedance vs Frequency at Temperatures 470 µf 450 V 00 Type SLPX Impedance vs Frequency at Temperatures 2200 µf 50 V Ratio to 25 ºC, 20 Hz Value ºC 0 ºC 25 ºC 45 ºC Ratio to 25 ºC, 20 Hz Value ºC 0 ºC 25 ºC 45 ºC 65 ºC 85 ºC ºC 85 ºC
9 Notice and Disclaimer: All product drawings, descriptions, specifcations, statements, information and data (collectively, the Information ) in this datasheet or other publication are subject to change. The customer is responsible for checking, confrming and verifying the extent to which the Information contained in this datasheet or other publication is applicable to an order at the time the order is placed. All Information given herein is believed to be accurate and reliable, but it is presented without any guarantee, warranty, representation or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on the knowledge that the Cornell Dubilier company providing such statements ( Cornell Dubilier ) has of operating conditions that such Cornell Dubilier company regards as typical for such applications, but are not intended to constitute any guarantee, warranty or representation regarding any such matter and Cornell Dubilier specifcally and expressly disclaims any guarantee, warranty or representation concerning the suitability for a specifc customer application, use, storage, transportation, or operating environment. The Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by Cornell Dubilier with reference to the use of any Cornell Dubilier products is given gratis (unless otherwise specifed by Cornell Dubilier), and Cornell Dubilier assumes no obligation or liability for the advice given or results obtained. Although Cornell Dubilier strives to apply the most stringent quality and safety standards regarding the design and manufacturing of its products, in light of the current state of the art, isolated component failures may still occur. Accordingly, customer applications which require a high degree of reliability or safety should employ suitable designs or other safeguards (such as installation of protective circuitry or redundancies or other appropriate protective measures) in order to ensure that the failure of an electrical component does not result in a risk of personal injury or property damage. Although all product-related warnings, cautions and notes must be observed, the customer should not assume that all safety measures are indicated in such warnings, cautions and notes, or that other safety measures may not be required.
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Features EIA standard colour-coding Non-Flame type available Low noise and voltage coefficient Low temperature coefficient range Wide precision range in small package Too low or too high ohmic value can
Διαβάστε περισσότερα+85 C Screw Terminal Aluminum Electrolytic Capacitors. For filtering applications. Capacitance change Dissipation factor Leakage current
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Common Common Vibration Test:... Conforms to JIS C 60068-2-6, Amplitude: 1.5mm, Frequency 10 to 55 Hz, 1 hour in each of the X, Y and Z directions. Shock Test:...Conforms to JIS C 60068-2-27, Acceleration
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