http://www.murata.com/
Data Sheet
!
Note:
1. This datasheet is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our
products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
2. This datasheet has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product
specifications or transact the approval sheet for product specifications before ordering.
1
o This data sheet is applied for CHIP INDUCTORS (CHIP COILS) used for General Electronics equipment for your design.
2011.5.12
Inductors (Coils) > Chip Inductor (Chip Coil) > Power Inductor (Wire Wound Type)
2.7±0.2
3.0±0.2
0.9±0.2 0.9±0.2
1.2±0.2 (in mm)
3.0±0.2
0.90±0.1
Polarity Marking
Chip Inductor (Chip Coil) Power Inductor (Wire Wound Type)
LQH3NP_G0 Series (1212 Size)
Dimensions Packaging
Code Packaging Minimum Quantity
L180mm Embossed Tape 1500
K330mm Embossed Tape 6000
Rated Value (p: packaging code)
Part Number Inductance Rated Current
(Based on Inductance Change) Rated Current
(Based on Temperature Rise) DC Resistance Self Resonance
Frequency (min.)
LQH3NPN1R0NG0p
1.0µH±30% 1650mA 1525mA 0.08ohm ±20% 160MHz
LQH3NPN1R5NG0p
1.5µH±30% 1300mA 1470mA 0.10ohm ±20% 130MHz
LQH3NPN2R2NG0p
2.2µH±30% 1250mA 1270mA 0.14ohm ±20% 100MHz
LQH3NPN3R3NG0p
3.3µH±30% 850mA 1130mA 0.18ohm ±20% 75MHz
LQH3NPN4R7NG0p
4.7µH±30% 800mA 925mA 0.26ohm ±20% 60MHz
LQH3NPN6R8NG0p
6.8µH±30% 650mA 710mA 0.45ohm ±20% 48MHz
LQH3NPN100MG0p
10µH±20% 500mA 630mA 0.57ohm ±20% 45MHz
LQH3NPN100NG0p
10µH±30% 500mA 630mA 0.57ohm ±20% 45MHz
LQH3NPN150NG0p
15µH±30% 370mA 475mA 0.91ohm ±20% 35MHz
LQH3NPN220MG0p
22µH±20% 340mA 430mA 1.1ohm ±20% 25MHz
LQH3NPN220NG0p
22µH±30% 340mA 430mA 1.1ohm ±20% 25MHz
LQH3NPN330MG0p
33µH±20% 250mA 345mA 2.1ohm ±20% 24MHz
LQH3NPN330NG0p
33µH±30% 250mA 345mA 2.1ohm ±20% 24MHz
LQH3NPN470MG0p
47µH±20% 170mA 270mA 3.0ohm ±20% 19MHz
LQH3NPN470NG0p
47µH±30% 170mA 270mA 3.0ohm ±20% 19MHz
LQH3NPN680MG0p
68µH±20% 150mA 235mA 4.2ohm ±20% 16MHz
LQH3NPN680NG0p
68µH±30% 150mA 235mA 4.2ohm ±20% 16MHz
LQH3NPN101MG0p
100µH±20% 140mA 165mA 8.0ohm ±20% 10MHz
LQH3NPN101NG0p
100µH±30% 140mA 165mA 8.0ohm ±20% 10MHz
LQH3NPN151MG0p
150µH±20% 110mA 145mA 11.0ohm ±20% 10MHz
LQH3NPN151NG0p
150µH±30% 110mA 145mA 11.0ohm ±20% 10MHz
Test Frequency: 1MHz Class of Magnetic Shield: Magnetic shield of magnetic powder in resin
Operating Temperature Range (Self-temperature rise is not included): -40 to +85°C
Only for reflow soldering.
*1 When Rated Current is applied to the Products, Inductance will be within ±30% of nominal Inductance value.
*2 When Rated Current is applied to the Products, self-generation of heat will rise to 40°C or less.
Continued on the following page.
Continued from the preceding page.
http://www.murata.com/
Data Sheet
!
Note:
1. This datasheet is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our
products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
2. This datasheet has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product
specifications or transact the approval sheet for product specifications before ordering.
2
o This data sheet is applied for CHIP INDUCTORS (CHIP COILS) used for General Electronics equipment for your design.
2011.5.12
Inductors (Coils) > Chip Inductor (Chip Coil) > Power Inductor (Wire Wound Type)
Part Number Inductance Rated Current
(Based on Inductance Change) Rated Current
(Based on Temperature Rise) DC Resistance Self Resonance
Frequency (min.)
LQH3NPN221MG0p
220µH±20% 100mA 130mA 14.0ohm ±20% 8.5MHz
LQH3NPN221NG0p
220µH±30% 100mA 130mA 14.0ohm ±20% 8.5MHz
LQH3NPN251MG0p
250µH±20% 80mA 130mA 15.0ohm ±20% 8.0MHz
LQH3NPN251NG0p
250µH±30% 80mA 130mA 15.0ohm ±20% 8.0MHz
Frequency (MHz)
Inductance (µH)
0.1
1
10
100
1000
0.1 1 10 100
1.0µH
4.7µH
47µH
100µH
250µH
10µH
Current (mA)
Inductance (µH)
0.1
1
10
100
1000
10 100 1000 10000
1.0µH
4.7µH
10µH
47µH
100µH
250µH
Test Frequency: 1MHz Class of Magnetic Shield: Magnetic shield of magnetic powder in resin
Operating Temperature Range (Self-temperature rise is not included): -40 to +85°C
Only for reflow soldering.
*1 When Rated Current is applied to the Products, Inductance will be within ±30% of nominal Inductance value.
*2 When Rated Current is applied to the Products, self-generation of heat will rise to 40°C or less.
<Rated Current>
(Based on Inductance Change)
When Rated Current is applied to the Products,
Inductance will be within +-30% of nominal
Inductance value.
<Rated Current>
(Based on Temperature Rise)
When Rated Current is applied to the Products,
self-generation of heat will rise to 40°C or less.
Notice (Rated Current)
Inductance-Frequency Characteristics (Typ.) Inductance-Current Characteristics (Typ.)
Continued on the following page.
Continued from the preceding page.
http://www.murata.com/
Data Sheet
!
Note:
1. This datasheet is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it’s specifications are subject to change or our
products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.
2. This datasheet has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product
specifications or transact the approval sheet for product specifications before ordering.
3
o This data sheet is applied for CHIP INDUCTORS (CHIP COILS) used for General Electronics equipment for your design.
2011.5.12
Current (mA)
Temperature Rise (°C)
50
40
30
20
10
00 500 1000 1500 2000
100µH
47µH10µH4.7µH1.0µH
250µH
Inductors (Coils) > Chip Inductor (Chip Coil) > Power Inductor (Wire Wound Type)
Temperature Rise Characteristics (Typ.)
!Caution (Rating)
Do not use products beyond the rated current as
this may create excessive heat.
Notice
Solderability of Tin plating termination chip might be
deteriorated when low temperature soldering profile
where peak solder temperature is below the Tin melting
point is used. Please confirm the solderability of Tin
plating termination chip before use.
!Caution/Notice