KEMET 8.2 mH 800 mA Common Mode Choke 640mΩ 250V

Bulkkorting beschikbaar

Subtotaal (1 doos van 60 eenheden)*

€ 67,50

(excl. BTW)

€ 81,66

(incl. BTW)

Add to Basket
selecteer of typ hoeveelheid
Op voorraad
  • Plus verzending 120 stuk(s) vanaf 11 december 2025
Heeft u meer nodig? Klik op 'Controleer leverdata' voor extra voorraad en levertijden.
Aantal stuks
Per stuk
Per Doos*
60 - 60€ 1,125€ 67,50
120 +€ 1,08€ 64,80

*prijsindicatie

RS-stocknr.:
186-0762
Fabrikantnummer:
SSHB10H-08082
Fabrikant:
KEMET
Zoek vergelijkbare producten door een of meer kenmerken te selecteren.
Alles selecteren

Merk

KEMET

Inductance

8.2 mH

Series

SSHB-10H

Test Frequency

10 kHz

DC Resistance

640mΩ

Maximum Current

800 mA

Dimensions

22 x 17 x 15.5mm

Operating Temperature Range

-25°C → +130°C

Mounting Type

Through Hole

Voltage Rating

250V

Termination Style

Solder Pad

Height

15.5mm

Minimum Operating Temperature

-25°C

Depth

17mm

Maximum Operating Temperature

+130°C

Length

22mm

The KEMET SSHB coils are dual mode chokes with a wide variety of characteristics. These hybrid coils combine the two functions of normal mode countermeasure and common mode noise suppression in just one coil. Reducing the number of required products ensures cost savings and space efficiency. Our proprietary core materials provide optimized solutions for high-temperature requirements (standard type) or for high permeability needs (R type). In addition, the specially developed shape is efficient with normal noise suppression.

Proprietary 5HT and 10H ferrite materials and equivalents
Optimization of magnetic circuit and material
One coil to suppress both common and normal noise
Large inductance due to non-divided bobbin
High permeability for R type
Operating temperature range from -25°C to +130°C for standard type
Operating temperature range from -25°C to +120°C for R type
Low leakage magnetic flux to outside
Compact size and low height
Applications
LED lighting
Audio-visual equipment
Office automation equipment
Power supplies

Gerelateerde Links