KEMET 4.7nF Multilayer Ceramic Capacitor MLCC, 100V dc V, ±5% , SMD

RS tootekood: 806-8509Bränd: KEMETTootja Part nr.: C0603H472J1GACT250
brand-logo

Tehnilised dokumendid

Spetsifikatsioonid:

Brand

KEMET

Capacitance

4.7nF

Voltage

100V dc

Package/Case

0603 (1608M)

Mounting Type

Surface Mount

Dielectric

C0G

Tolerance

±5%

Dimensions

1.6 x 0.8 x 0.8mm

Length

1.6mm

Depth

0.8mm

Height

0.8mm

Series

H - 200°C

Maximum Operating Temperature

+200°C

Minimum Operating Temperature

-55°C

Toote üksikasjad

KEMET 0603 High Temperature

KEMET C0603 series high temperature surface mount Multilayer Ceramic Capacitors (MLCCs) feature a robust, base metal dielectric system that offers industry-leading performance relative to capacitance and case size combined with capacitance stability at extreme temperatures.

Lao andmed ajutiselt ei ole saadaval.

Palun kontrollige hiljem uuesti.

Lao andmed ajutiselt ei ole saadaval.

€ 0,578

tk (pakis 10) (ilma käibemaksuta)

€ 0,705

tk (pakis 10) (koos käibemaksuga)

KEMET 4.7nF Multilayer Ceramic Capacitor MLCC, 100V dc V, ±5% , SMD
Valige pakendi tüüp

€ 0,578

tk (pakis 10) (ilma käibemaksuta)

€ 0,705

tk (pakis 10) (koos käibemaksuga)

KEMET 4.7nF Multilayer Ceramic Capacitor MLCC, 100V dc V, ±5% , SMD
Lao andmed ajutiselt ei ole saadaval.
Valige pakendi tüüp

Osta lahtiselt

kogusÜhikuhindPer Pakend
10 - 40€ 0,578€ 5,78
50 - 90€ 0,52€ 5,20
100 - 240€ 0,477€ 4,77
250 - 490€ 0,451€ 4,51
500+€ 0,428€ 4,28

Tehnilised dokumendid

Spetsifikatsioonid:

Brand

KEMET

Capacitance

4.7nF

Voltage

100V dc

Package/Case

0603 (1608M)

Mounting Type

Surface Mount

Dielectric

C0G

Tolerance

±5%

Dimensions

1.6 x 0.8 x 0.8mm

Length

1.6mm

Depth

0.8mm

Height

0.8mm

Series

H - 200°C

Maximum Operating Temperature

+200°C

Minimum Operating Temperature

-55°C

Toote üksikasjad

KEMET 0603 High Temperature

KEMET C0603 series high temperature surface mount Multilayer Ceramic Capacitors (MLCCs) feature a robust, base metal dielectric system that offers industry-leading performance relative to capacitance and case size combined with capacitance stability at extreme temperatures.