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Description
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NOSD157M006R0050 NOSD157M006R0050 20581 KYOCERA AVX CAP NIOB OXI 150UF 20% 6.3V 2917 2917 (7343 Metric)
NOJW476M004RWJ NOJW476M004RWJ 13263 KYOCERA AVX CAP NIOB OXIDE 47UF 20% 4V 2312 2312 (6032 Metric)
NOSE477M004R0100 NOSE477M004R0100 34383 KYOCERA AVX CAP NIOB OXIDE 470UF 20% 4V 2917 2917 (7343 Metric)
NOSE477M002R0100 NOSE477M002R0100 35870 KYOCERA AVX CAP NIOB OXI 470UF 20% 2.5V 2917 2917 (7343 Metric)
NOSE687M002S0060 NOSE687M002S0060 10651 KYOCERA AVX OXICAP 2917 (7343 Metric)
NOSV687M004S0075 NOSV687M004S0075 15191 KYOCERA AVX CAP NIOB OXIDE 680UF 20% 4V 2924 2924 (7361 Metric)
NOME227M006S0040 NOME227M006S0040 6655 KYOCERA AVX CAP NIOB OXI 220UF 20% 6.3V 2917 2917 (7343 Metric)
NOSD107M008R0400 NOSD107M008R0400 28588 KYOCERA AVX OXICAP 2917 (7343 Metric)
NOME337M006S0035 NOME337M006S0035 35241 KYOCERA AVX OXICAP 2917 (7343 Metric)
NOJT156M002RWJ NOJT156M002RWJ 11135 KYOCERA AVX CAP NIOB OXID 15UF 20% 2.5V 1210 1411 (3528 Metric), 1210
NOME337M004R0035 NOME337M004R0035 7824 KYOCERA AVX CAP NIOB OXIDE 330UF 20% 4V 2917 2917 (7343 Metric)
NOSC476M006R0300 NOSC476M006R0300 21739 KYOCERA AVX CAP NIOB OXID 47UF 20% 6.3V 2312 2312 (6032 Metric)
NOJC157M002SWJ NOJC157M002SWJ 20872 KYOCERA AVX CAP NIOB OXI 150UF 20% 2.5V 2312 2312 (6032 Metric)
NOJC226M010SWJ NOJC226M010SWJ 39481 KYOCERA AVX CAP NIOB OXID 3.3UF 20% 10V 0805 2312 (6032 Metric)
NOJW686M002RWJ NOJW686M002RWJ 28468 KYOCERA AVX CAP NIOB OXID 68UF 20% 2.5V 2312 2312 (6032 Metric)
NOSY107M006R0400 NOSY107M006R0400 4850 KYOCERA AVX OXICAP 2917 (7343 Metric)
NLJP226M004R4000 NLJP226M004R4000 13743 KYOCERA AVX CAP NIOB OXIDE 22UF 20% 4V 0805 0805 (2012 Metric)
NOJT336M004RWJ NOJT336M004RWJ 26816 KYOCERA AVX CAP NIOB OXIDE 33UF 20% 4V 1210 1411 (3528 Metric), 1210
NOJS226M001RWJ NOJS226M001RWJ 37685 KYOCERA AVX CAP NIOB OXID 22UF 20% 1.8V 1206 1206 (3216 Metric)
NOJT476M002RWJ NOJT476M002RWJ 39680 KYOCERA AVX CAP NIOB OXID 47UF 20% 2.5V 1210 1411 (3528 Metric), 1210

Niobium Oxide Capacitors

Niobium oxide capacitors are solid electrolytic capacitors based on niobium oxide (NbO) anode materials. They are mainly used to replace traditional tantalum capacitors and have the following characteristics and applications:

 

I. What are the Basic Characteristics of Niobium Oxide Capacitors?

1) ‌Material Structure‌

The anode material uses niobium oxide (NbO) instead of traditional tantalum metal, and the dielectric is niobium pentoxide (Nb₂O₅).

 

It is a non-tantalum material solution with a better raw material supply chain and cost advantages.

 

2) ‌Performance Advantages‌

‌High Safety‌: The ignition energy of niobium oxide is higher than that of tantalum metal, and the thermal damage impedance is significantly improved after dielectric breakdown, reducing the risk of failure by 95%.

‌Stability‌: The leakage current stability is better than that of traditional niobium metal capacitors.

‌Lightweight‌: The density of niobium oxide powder is only half of that of tantalum powder, and the weight of capacitors of the same size is reduced by about 25%.

 

2. Where are Niobium Oxide Capacitors Used?

‌Consumer Electronics‌: portable devices such as laptops, digital cameras, PDAs, 3G mobile phones, etc., suitable for flat design requirements.

‌Industry and Automotive‌: In medical, automotive electronics, and military equipment, it is used for power filtering, signal processing, and other scenarios.

‌Energy Storage and Tuning‌: It can be applied to pulse power supply energy storage, high-frequency circuit tuning, noise reduction, and voltage stabilization circuits.

 

3. Comparison of Technical Advantages

1) ‌Comparison with Tantalum Capacitors‌:

‌Cost‌: Niobium ore reserves are more abundant and the cost of raw materials is lower.

‌Reliability‌: There is no microphonic effect of ceramic capacitors, and the ability to resist short-circuit failure is stronger.

‌Frequency Response‌: High-frequency response speed is fast, and suitable for complex signal processing requirements.

2) ‌Comparison with Traditional Electrolytic Capacitors‌: Smaller size, the capacitance value can reach thousands of microfarads, taking into account high capacity and miniaturization.

 

Niobium oxide capacitors are gradually becoming an ideal alternative to tantalum capacitors due to their high safety, lightweight, and stable performance.