Datasheet

LQH32C
_
53Series (1210 Size)
Wire Wound Magnetic Type for Choke
Inductor for Power Lines (Power Inductor)
LQH32C_53
1210 Size, 1.7mm max. Thickness
Dimensions Packaging
Rated Value (p: packaging code)
Refer to pages from p.80 to p.83 for mounting information.
Impedance-Frequency Characteristics (Typ.) Inductance-Current Characteristics (Typ.)
Code Packaging
Minimum
Quantity
L 180mm Embossed Tape 2000
K 330mm Embossed Tape 7500
Part Number Inductance Test Frequency Rated Current DC Resistance
Self Resonance
Frequency (min.)
LQH32CN1R0M53p 1.0µH±20% 1MHz 1000mA 0.060ohm±30% 100MHz
LQH32CN2R2M53p 2.2µH±20% 1MHz 790mA 0.097ohm±30% 64MHz
LQH32CN3R3M53p 3.3µH±20% 1MHz 710mA 0.12ohm±30% 50MHz
LQH32CN4R7M53p 4.7µH±20% 1MHz 650mA 0.15ohm±30% 43MHz
LQH32CN6R8M53p 6.8µH±20% 1MHz 540mA 0.25ohm±30% 32MHz
LQH32CN100K53p 10µH±10% 1MHz 450mA 0.30ohm±30% 26MHz
LQH32CN150K53p 15µH±10% 1MHz 300mA 0.58ohm±30% 26MHz
LQH32CN220K53p 22µH±10% 1MHz 250mA 0.71ohm±30% 19MHz
LQH32CN330K53p 33µH±10% 1MHz 200mA 1.1ohm±30% 17MHz
LQH32CN470K53p 47µH±10% 1MHz 170mA 1.3ohm±30% 15MHz
LQH32CN680K53p 68µH±10% 1MHz 130mA 2.2ohm±30% 12MHz
LQH32CN101K53p 100µH±10% 1MHz 100mA 3.5ohm±30% 10MHz
Class of Magnetic Shield: No magnetic shield Operating Temperature Range: -40°C to +85°C
1 10 100
10
100
1
0.1
0.01
0.001
1000
10µH
1.0µH
Impedance (k)
Frequency (MHz)
100µH
1 10 100
100
1000
10
1
0.1
1000
100µH
10µH
1.0µH
Current (mA)
Inductance (µH)
2.5±0.2
2.5±0.2
1.55±0.15
2.5±0.2
3.2±0.3
A : 2.8 max.
A
0.9±0.3 1.3±0.2 0.9±0.3
A
(in mm)
71
Wire Wound Magnetic Type for Voltage Conversion
Inductor for Power Lines (Power Inductor)Inductor for Low Frequency CircuitsRF Inductor
!Note
Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please review our product specifications or consult the approval sheet for product specifications before ordering.
O05E.pdf
Oct.13,2011