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100μF 450V Aluminum Electrolytic Capacitor

Competitive price 100μF electrolytic capacitor for sale. Aluminum electrolytic capacitor rated voltage 450V, cap. tolerance ±20%, direct plug installation type. Aluminum capacitors in electronic circuits is to pass alternating current and block direct current. High voltage 450V electrolytic capacitors are used in various electronic products with compact structure, small volume and high precision.
SKU: CCHN-EC-100UF450V
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Delivery date: 6-25 days

High quality power capacitor with dissipation factor 17%, 100μF capacity, 450V rated voltage,  operating tempertaure -40~105℃.

Features

  • Endurance: 105℃- 2000 hours up to 5000 hours
  • Low impedance and high ripple current
  • High reliability
  • Wide voltage range

Specification

Model CCHN-EC-KF KF101M450K
Series Low impedance 105°C type
Capacity 100 μF
Rated voltage 450V
Installation Type Direct plug
Size 18*35.5 mm
Operating temperature -40~105℃
Cap. tolerance (C) ±20% (120Hz 20℃)
Dissipation factor (tanδ) 17%
Low temperature characteristic at 120Hz (Z ratio max.) 6 (Z-25℃/ Z+20℃)
Leakage current (Lleak) 0.01*CR*Vor 3  * after 2 minutes
Enduarance (105℃) Test 2000h
∆C 20% of initial measured value
tanδ ≤200% of specified measured value
Lleak ≤ the specified measured value
Shelf life (105℃) Test 1000h
∆C 20% of initial measured value
tanδ ≤200% of specified measured value
Lleak ≤ the specified measured value

Dimension (mm)

Electrolytic capacitor dimension

Model Dimension (mm)
 CCHN-EC- KF101M450K D 18
F 7.5
∅d 0.8
a 1.5

Tips: What is Aluminum Electrolytic Capacitor?

Aluminum electrolytic capacitors are made of an aluminum cylinder as the negative electrode, which is filled with liquid electrolyte and inserted into a bent aluminum strip as the positive electrode. It also needs to be treated with DC voltage to form an oxide film on the positive plate as a medium. It is characterized by large capacity, but large leakage, poor stability, positive and negative polarity, and is suitable for power supply filtering or low-frequency circuits. When using, do not reverse the positive and negative poles.