T521V157M016ATK070

KEMET
80-T521V157M016ATK70
T521V157M016ATK070

Tillverk:

Beskrivning:
Tantalkondensatorer - Polymer 16Vol 150uF 2912 20% ESR=70mOhms

ECAD-modell:
Ladda ned den kostnadsfria Libary Loader för att omvandla denna fil för ditt ECAD-verktyg. Läs mer om ECAD-modellen.

Tillgänglighet

Lager:
Ej på lager
Fabrikens ledtid:
30 Veckor Uppskattad tillverkningstid i fabriken.
Lång ledtid har rapporterats för denna produkt.
Minst: 1000   Flera: 1000
Enhetspris:
-,-- kr
Ext. pris:
-,-- kr
Est. Pris:
Denna produkt levereras UTAN KOSTNAD

Prissättning (SEK)

Antal Enhetspris
Ext. pris
Komplett Papprulle (beställ i multiplar av 1000)
19,36 kr 19 360,00 kr

Liknande produkter

Produktattribut Attributvärde Välj attribut
KEMET
Produktkategori: Tantalkondensatorer - Polymer
RoHS-direktivet:  
150 uF
16 VDC
20 %
2917
70 mOhms
240 uA
- 55 C
+ 105 C
7343
V Case
T521
Reel
Märke: KEMET
Monteringsland: Not Available
Distributionsland: Not Available
Ursprungsland: CN
Fuktkänsliga: Yes
Produkttyp: Tantalum Capacitors
Fabriksförpackningskvantitet: 1000
Underkategori: Capacitors
Typ: Polymer Electrolytic Capacitor
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Attribut som valts: 0

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TARIC:
8532210000
CNHTS:
8532211000
CAHTS:
8532210010
USHTS:
8532210050
JPHTS:
853221000
KRHTS:
8532210000
MXHTS:
8532210100
ECCN:
EAR99

MLCC Replacement Solutions

KEMET KOCAP Tantalum Polymer Capacitors are ideal for board space savings, a piezo noise-free environment, high capacitance, long stable life performance, and/or lower profile requirements. Tantalum polymer capacitors are selected over other capacitor technologies when application voltages are less than 50V, capacitance needs are between 1µF to 1mF, and application frequencies are below 1MHz. Since replacing ceramic capacitors with tantalum polymer capacitors is not typically one-for-one, designers need to consider several design requirements as outlined in the schematic below.

Polymer Capacitors Cloud & AI Applications

KEMET Organic Capacitors (KO-CAP®) provide an ideal solution for applications requiring power-loss (hold up) protection or maximum power efficiency of a circuit with limited board space. Polymer technology offers high energy density and extended life capabilities, making it a key solution for designers working in cloud infrastructure applications like solid-state drives, 5G, and servers. In addition, with the AI computing edge trend pushing for high power, KEMET KO-CAPs are vital on 12V input and low voltage 1V CPU and I/O 3.3V and 5V power rails. These capacitors offer both long life and high ripple capability.

5G Cellular Products

KEMET Electronics 5G Cellular Products offer a variety of components for 5G applications and cellular networks. The product offering includes high-reliability components that can withstand high temperatures and harsh conditions found in 5G base stations. Capacitors and inductors are available in small case sizes and are ideal for smartphones and handheld 5G devices. Film technology components are designed for high-density 5G power supply requirements. KEMET 5G Cellular Products are suitable for both indoor and outdoor conditions.

Polymer Capacitors Industrial Segment

KEMET Organic Capacitors (KO-CAP®) offer higher voltages in smaller case sizes and are ideal for industrial applications. These capacitors deliver a solution for applications requiring power-loss protection or maximum power efficiency of a circuit when board space is limited. The polymer technology provides these capacitors with extended life capabilities in applications subject to extremely harsh environments. 

Smart Meter Solutions

KEMET Smart Meter Solutions help deliver analytics and intelligence to national infrastructure and smart grid systems. This broad range of capacitors, inductors, and more help utility providers meet demand more efficiently while letting users monitor their usage habits. KEMET Electronics Smart Meter Solutions are ideal for electricity, natural gas, water, and other utilities.

Polymer Capacitors Computer Segment

KEMET Organic Capacitors (KO-CAP®) are solid electrolytic capacitors with a conductive polymer cathode, capable of delivering optimized solutions for today and in the future. The KO-CAPs offer low ESR, improved capacitance retention at high frequencies, and a broad dimension offering, from large case sizes to sizes as small as 2012-10. This KEMET KO-CAP portfolio supports the designers in innovation and technology.

T521 High Voltage Polymer Tantalum Capacitors

KEMET T521 KO-CAP® High Voltage Organic Polymer Tantalum Capacitors feature voltage ratings up to 75V and capacitance values up to 470µF, high ripple current capability, safe failure mode, and low ESR. These T521 capacitors are volumetrically efficient and have stable temperature characteristics. They are lead-free when ordered with 100% Sn termination finish, RoHS compliant, and halogen-free. These components are designed for DC-DC converters, power supply inputs, and higher application voltages such as 12V, 24V, 28V, and 48V input rails. The T521 KO-CAP Series features a Ta anode and Ta₂O₅ dielectric as well as a conductive organic polymer that replaces the traditionally used MnO₂ as the cathode plate of the capacitor. This results in very low ESR and improved capacitance retention at high frequency.

Group DC-DC Converters

YAGEO Group (YAGEO, KEMET, Pulse) strives to support 90% of all the passive technologies required in circuit designs. DC-DC converters saturate the electronics industry and are used to either step or step down the voltage and current requirements of the next stage in the circuit. In every variation of the DC-DC converter, current sense resistors, diodes, inductors, precision voltage resistors, and capacitors are used.

Tantalum Polymer Capacitors

KEMET Tantalum Polymer Capacitors are specially designed as a capacitance solution for applications seeking low ESR, high capacitance, long life, small case size, low profile, and high ripple handling. The use of a solid electrolytic capacitor in combination with a conductive polymer cathode yields the most energy-dense capacitance solution available in the world with the lowest possible ESR.