Technical Document
Specifications
Brand
KYOCERA AVXSeries
NOS
Capacitance
22µF
Tolerance
±20%
Voltage
6.3V dc
Package/Case
3528-21
Mounting Type
Surface Mount
Equivalent Series Resistance
0.6Ω
Dissipation Factor
6%
Leakage Current
2.6 μA
Dimensions
3.5 x 2.8 x 1.9mm
Depth
2.8mm
Height
1.9mm
Tolerance Plus
+20%
Terminal Type
Surface Mount
Tolerance Minus
-20%
Length
3.5mm
Dielectric Material Family
Niobium
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-55°C
Product details
NOS Series
Niobium Oxide Low ESR SMD capacitors
Non-burn technology
Capacitance tolerance ±20%
Temperature range -55°C to +125°C
OxiCap™
OxiCap™ is a solid electrolyte capacitor available in standard EIA case sizes as a cost effective high performance alternative to aluminium and tantalum surface mount technologies. The OxiCap™ non-burn technology is based on the widely available NbO niobium oxide ceramic material. They are processed through the same manufacturing process as tantalum capacitors, and have electrical parameters similar to general tantalum specifications.
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€ 0.523
Each (Supplied on a Reel) (Exc. VAT)
Production pack (Reel)
25
€ 0.523
Each (Supplied on a Reel) (Exc. VAT)
Production pack (Reel)
25
Technical Document
Specifications
Brand
KYOCERA AVXSeries
NOS
Capacitance
22µF
Tolerance
±20%
Voltage
6.3V dc
Package/Case
3528-21
Mounting Type
Surface Mount
Equivalent Series Resistance
0.6Ω
Dissipation Factor
6%
Leakage Current
2.6 μA
Dimensions
3.5 x 2.8 x 1.9mm
Depth
2.8mm
Height
1.9mm
Tolerance Plus
+20%
Terminal Type
Surface Mount
Tolerance Minus
-20%
Length
3.5mm
Dielectric Material Family
Niobium
Maximum Operating Temperature
+125°C
Minimum Operating Temperature
-55°C
Product details
NOS Series
Niobium Oxide Low ESR SMD capacitors
Non-burn technology
Capacitance tolerance ±20%
Temperature range -55°C to +125°C
OxiCap™
OxiCap™ is a solid electrolyte capacitor available in standard EIA case sizes as a cost effective high performance alternative to aluminium and tantalum surface mount technologies. The OxiCap™ non-burn technology is based on the widely available NbO niobium oxide ceramic material. They are processed through the same manufacturing process as tantalum capacitors, and have electrical parameters similar to general tantalum specifications.