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PEH536RDE4100M

Kemet

Snap-In Aluminum Electrolytic Capacitors


PEH536RDE4100M
PEH536RDE4100M

PDF File PEH536RDE4100M PDF File


Description
Snap-In Aluminum Electrolytic Capacitors PEH536 Series, +105ºC Overview Applications Typical applications for KEMET's PEH536 capacitor include switch mode power supplies (SMPS), drives, welding equipment, uninterruptible power supplies (UPS), and other power electronic applications where high current ratings and compact size are important.
KEMET's PEH536 is a long-life electrolytic capacitor designed to offer high ripple current capability and low mounting cost.
Low ESR is the result of a very low resistive paper/electrolyte system.
Low ESR, together with the TDC thermal concept, gives the PEH536 a high ripple current capability.
Benefits • Snap-In • 6,000 hours at +105°C • PCB mounting • Low ESR and ESL • High ripple current Part Number System PEH536 Series Snap-In type Aluminum Electrolytic J Voltage (VDC) J = 35 M = 63 P = 100 R = 200 S = 250 U = 350 V = 400 Y = 450 AD Size Code See Dimension Table 439 Capacitance Code (µF) The second two digits indicate the two most significant digits of the capacitance value.
The first digit indicates the total number digits.
0 Version 0 = Standard M Capacitance Tolerance M = ±20% 2 Termination See Termination Table One world.
One KEMET © KEMET Electronics Corporation • P.
O.
Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.
kemet.
com A4025_PEH536 • 9/9/2013 1 Free Datasheet http://www.
Datasheet4U.
com Snap-In Aluminum Electrolytic Capacitors – PEH536, +105ºC Performance Characteristics Item Capacitance Range Rated Voltage Temperature Range Capacitance Tolerance Operational Lifetime Shelf Life Leakage Current 47 – 18,000 µF 35 – 450 VDC -40 to +105°C ±20% at 100 Hz / +20°C +105°C (hours) 6,000 4 years at +40°C 0 VDC I = 0.
003 CV (µA) C = rated capacitance (µF), V = rated voltage (VDC).
Voltage applied for 5 minutes at +20°C.
Procedure Vibration Test Specifications 0.
75 mm displacement amplitude or 10g maximum acceleration.
Vibration applied for three 2-hour sessions at 10 – 500 Hz (Capacitor clamped by body...



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