Technical Document
Specifications
Brand
MurataPackaging
Paper Tape
Automotive Standard
No
Maximum DC Resistance
30mΩ
Inductance Tolerance
±0.1 nH
Series
LQW15AN_80
Maximum Self Resonant Frequency
14GHz
Minimum Quality Factor
30
Moulded
Yes
Country of Origin
Japan
Product details
LQW15AN Series SMD Chip Inductors
Murata LQW Series wire wound RF inductors incorporates a high Q value giving great attenuation characteristics inside the pass band of the filters. These LQW inductors are used in matching applications of antennas for maintaining the reception and transmission sensitivity of the antennas. The LQW has low Rdc characteristics and can be employed in choke circuits where high current levels flow.
Features
There are two types of structure available for different applications
High Q value
Large currents can be supported
Low DC resistance
Murata Non Standard SMT Inductors (Chokes)
Stock information temporarily unavailable.
SR 8.00
SR 0.40 Each (In a Pack of 20) (ex VAT)
SR 9.20
SR 0.46 Each (In a Pack of 20) (inc. VAT)
Standard
20
SR 8.00
SR 0.40 Each (In a Pack of 20) (ex VAT)
SR 9.20
SR 0.46 Each (In a Pack of 20) (inc. VAT)
Stock information temporarily unavailable.
Standard
20
Technical Document
Specifications
Brand
MurataPackaging
Paper Tape
Automotive Standard
No
Maximum DC Resistance
30mΩ
Inductance Tolerance
±0.1 nH
Series
LQW15AN_80
Maximum Self Resonant Frequency
14GHz
Minimum Quality Factor
30
Moulded
Yes
Country of Origin
Japan
Product details
LQW15AN Series SMD Chip Inductors
Murata LQW Series wire wound RF inductors incorporates a high Q value giving great attenuation characteristics inside the pass band of the filters. These LQW inductors are used in matching applications of antennas for maintaining the reception and transmission sensitivity of the antennas. The LQW has low Rdc characteristics and can be employed in choke circuits where high current levels flow.
Features
There are two types of structure available for different applications
High Q value
Large currents can be supported
Low DC resistance


