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quality conductive polymer aluminum electrolytic capacitors huawei group PE0J501M5090B25CR0 for electronic applications factory
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quality conductive polymer aluminum electrolytic capacitors huawei group PE0J501M5090B25CR0 for electronic applications factory
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Specifications
Voltage Rating:
6.3V
Capacitance:
500uF
Tolerance:
±20%
Height - Seated (Max):
9mm
Equivalent Series Resistance(ESR):
20mΩ@100kHz
Operating Temperature:
-55℃~+105℃
Diameter:
5.45mm
Ripple Current:
3.7A@100kHz
Mfr. Part #:
PE0J501M5090B25CR0
Package:
Through Hole,D5.45xL9mm
Key Attributes
Model Number: PE0J501M5090B25CR0
Product Description

Product Specification: Conductive Polymer Aluminum Electrolytic Capacitors

Product Description: This product specification applies to the PE series Conductive Polymer Aluminum Electrolytic Capacitors manufactured by CHANGZHOU HUAWEI ELECTRONICS CO., LTD. These capacitors are designed for reliable performance in various electronic applications.

Product Attributes:

  • Brand: HUAWEI ()
  • Origin: China ()
  • Certifications: RoHS Directive (2011/65/EU)

Technical Specifications

Part Number Rated Voltage (VDC) Capacitance (F) Dimension (DL, mm) Tangent (max) Leakage Current (A) ESR @ 100KHz, 20 (m) Ripple Current @ 100KHz, 105 (mA)
PE0J501M5090B25CR0 6.3 500 5.459 0.08 630 20 3700

General Specifications

Parameter Specification
Series PE SERIES
Rated Voltage Range 2.5V~25V
Operating Temperature Range -55~+105
Capacitance Tolerance 20% MAX
Tangent Measurement Conditions 20, 120Hz, 0.5Vrms
Leakage Current Measurement Conditions Rated voltage applied for 2 minutes with 1000100 protective resistor. LC 0.2CV or 200A (whichever is greater).
ESR Measurement Conditions 20, 100KHz, 0.5Vrms
Ripple Current Condition (DC voltage + peak ripple voltage) rated voltage

Tests and Requirements

Test Item Conditions Specification
Surge Test 1000 cycles (305s charge, 5min30s discharge) Capacitance change: 10% of initial value; tan: initial specified value; ESR: initial specified value; Leakage current: initial specified value.
Terminal Strength (Tensile) 0.3 No breaking or loosening of terminal.
Terminal Strength (Bending) 0.3 No breaking or loosening of terminal.
Solderability Solder: H60A/H60S/H63A; Temp: 2452; Time: 20.5s; Depth: 1.5~2mm from body. Flux: 25% rosin in ethanol. 95% coverage with new solder.
Resistance to Soldering Heat Solder: H60A/H60S/H63A; Temp: 2605 (or 35010); Time: 101s (or 3.50.5s); Heat shunt thickness: 1.6mm. Capacitance change: 10% of initial value; tan: initial specified value; ESR: initial specified value; Leakage current: initial specified value.
Solvent Resistance (Marking) Reagent: Isopropyl alcohol; Temp: 20~25; Time: 305s. Marking should be clearly visible.
Damp Heat, Steady State Temp: 602; Humidity: 90-95%; Time: 2408 hours. Stabilize for 1-2 hours under standard conditions. Capacitance change: 10% of initial value; tan: 150% of initial value; ESR: 150% of initial value; Leakage current: initial specified value.
Shelf Life Temp: +105; Time: 1000 hours (no voltage applied). Stabilize for 1-2 hours under standard conditions. Capacitance change: 20% of initial value; tan: 150% of initial value; ESR: 150% of initial value; Leakage current: initial specified value.
Load Life Rated voltage applied for 2000 hours at 1052. Stabilize at 20. Capacitance change: 20% of initial value; tan: 150% of initial value; ESR: 150% of initial value; Leakage current: initial specified value.
Rapid Temperature Change 5 cycles as per Figure 1. Stabilize for 1-2 hours under standard conditions. Capacitance change: 10% of initial value; tan: initial specified value; ESR: initial specified value; Leakage current: initial specified value.
Low Temperature Test Temp: -55; Time: 722 hours. Stabilize for 1-2 hours under standard conditions. Capacitance change: 10% of initial value; tan: initial specified value; ESR: initial specified value; Leakage current: initial specified value.

Marking

Example: 500 6.3V PEM22. 500 represents rated capacitance (F), 6.3V represents rated voltage (V), PEM22 represents series/DC. Cathode is on the left side of the red area.

Guidelines For Using Aluminum Electrolytic Capacitors

  1. Polarity: DC electrolytic capacitors are polarized. Ensure correct polarity to prevent short circuits or damage. Use bipolar capacitors if polarity is uncertain. DC electrolytic capacitors are not suitable for AC applications.
  2. Voltage: Do not exceed the rated voltage. Exceeding the rated voltage increases leakage current and may damage the capacitor. Recommended working voltage is 70-80% of the rated voltage for extended life.

2410121316_huawei-group-PE0J501M5090B25CR0_C7527445.pdf
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