Documentos Técnicos
Especificações
Brand
MurataPackage Type
1806
Product Type
Ferrite Bead
Impedance at 100 MHz
180Ω
Current Rating
3.5 A
Sub Type
Chip Ferrite Bead
Mount Type
Surface
Minimum Operating Temperature
-55°C
Maximum Operating Temperature
125°C
Height
1.6mm
Depth
1.6mm
Maximum DC Resistance
20mΩ
Length
4.5mm
Standards/Approvals
RoHS, REACH
Series
BLM41PG
Automotive Standard
No
Application
EMI Suppression, Power Supplies
Material
Ferrite
País de Origem
Japan
Detalhes do produto
SMD 1806 Ferrite Filters- BLM41P Series
BLM series ferrite beads from Murata do not require a ground connection and are ideal for use in circuits with unstable ground lines. The nickel barrier construction of the external electrodes provides excellent resistance to solder heat. These ferrite beads are designed to function nearly as resistors at noise frequencies, leaving signal wave forms undistorted and reducing the possibility of resonance.
Informações de estoque temporariamente indisponíveis.
P.O.A.
Each (Supplied on a Reel) (Sem VAT)
Embalagem de Produção (Bobina)
25
P.O.A.
Each (Supplied on a Reel) (Sem VAT)
Informações de estoque temporariamente indisponíveis.
Embalagem de Produção (Bobina)
25
Documentos Técnicos
Especificações
Brand
MurataPackage Type
1806
Product Type
Ferrite Bead
Impedance at 100 MHz
180Ω
Current Rating
3.5 A
Sub Type
Chip Ferrite Bead
Mount Type
Surface
Minimum Operating Temperature
-55°C
Maximum Operating Temperature
125°C
Height
1.6mm
Depth
1.6mm
Maximum DC Resistance
20mΩ
Length
4.5mm
Standards/Approvals
RoHS, REACH
Series
BLM41PG
Automotive Standard
No
Application
EMI Suppression, Power Supplies
Material
Ferrite
País de Origem
Japan
Detalhes do produto
SMD 1806 Ferrite Filters- BLM41P Series
BLM series ferrite beads from Murata do not require a ground connection and are ideal for use in circuits with unstable ground lines. The nickel barrier construction of the external electrodes provides excellent resistance to solder heat. These ferrite beads are designed to function nearly as resistors at noise frequencies, leaving signal wave forms undistorted and reducing the possibility of resonance.


