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Merkki
MurataInductance
160 nH
Maximum dc Current
1A
Package/Case
0603 (1608M)
Length
1.6mm
Depth
0.8mm
Height
0.8mm
Dimensions
1.6 x 0.8 x 0.8mm
Shielded
No
Tolerance
±5%
Maximum DC Resistance
100mΩ
Series
LQW18CN_00
Core Material
Ferrite
Maximum Self Resonant Frequency
900MHz
Inductor Construction
Wire-Wound
Maximum Operating Temperature
+85°C
Moulded
Yes
Minimum Operating Temperature
-40°C
Alkuperämaa
Japan
Tuotetiedot
LQW18CN 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.
Murata Non Standard SMT Inductors (Chokes)
Varastotiedot eivät ole tilapäisesti saatavilla.
Tarkista myöhemmin uudelleen.
€ 788,00
€ 0,197 1 kpl (4000 kpl/kela) (ilman ALV)
€ 988,94
€ 0,247 1 kpl (4000 kpl/kela) (Sis ALV:n)
4000
€ 788,00
€ 0,197 1 kpl (4000 kpl/kela) (ilman ALV)
€ 988,94
€ 0,247 1 kpl (4000 kpl/kela) (Sis ALV:n)
4000
Tekninen dokumentti
Tekniset tiedot
Merkki
MurataInductance
160 nH
Maximum dc Current
1A
Package/Case
0603 (1608M)
Length
1.6mm
Depth
0.8mm
Height
0.8mm
Dimensions
1.6 x 0.8 x 0.8mm
Shielded
No
Tolerance
±5%
Maximum DC Resistance
100mΩ
Series
LQW18CN_00
Core Material
Ferrite
Maximum Self Resonant Frequency
900MHz
Inductor Construction
Wire-Wound
Maximum Operating Temperature
+85°C
Moulded
Yes
Minimum Operating Temperature
-40°C
Alkuperämaa
Japan
Tuotetiedot
LQW18CN 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.