ETQ-P3MzzzHFx Series Datasheet by Panasonic Electronic Components

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Panasonic 0. DDDDDDDDDDDC \ r—‘ B .
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Power Inductors
E
12
Q
3
PM HF
456789
Product Code
Inductance
Classification
10 11 12
SizeSuffixCore
Winding
Height
T
5 mm size
6 mm size
P
N
2R2
100
2.2 µH
10 µH
Standard Packing Quantity (Minimum Quantity/Packing Unit)
Power Choke Coil (Automotive Grade)
Series:
PCC-M0530M-H(MC)
PCC-M0630M-H(MC)
High heat resistance and high reliability
Using metal composite core (MC)
Noise fi lter for various drive circuitry requiring high temp. operation and peak current handling capability
Boost-Converter, Buck-Converter DC/DC
Reduce core loss in high frequency band (More than 2 MHz)
High heat resistance : Operation up to 150 °C including self-heating
Low profi le : 3 mm max. height
SMD type
High-reliability : High vibration resistance as result of newly developed integral construction; under
severe reliability conditions of automotive and other strenuous applications
High bias current : Excellent inductance stability using ferrous alloy magnetic material
Temp. stability : Excellent inductance stability over broad temp. range
Low audible (buzz) noise : New metal composite core technology
High effi ciency : Low RDC of winding and low eddy-current loss of the core
Shielded construction
AEC-Q200 Automotive qualifi ed
RoHS compliant
2,000 pcs./box (2 reel)
Operating temperature range Tc : –40 °C to +150 °C(Including self-temperature rise)
Storage condition After PWB mounting
Before PWB mounting Ta : –5 °C to +35 °C 85%RH max.
Temperature rating
Explanation of Part Numbers
Recommended Applications
Features
Apr. 201802
Panasonic
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Power Inductors
I
DC
(A)
0.0
0.5
1.0
1.5
2.5
2.0
02468 1210 14
Inductance (µH)
0
5
10
15
25
20
012345 768
I
DC
(A)
Inductance (µH)
I
DC
(A)
0
10
20
30
40
50
60
70
80
01 2 3 4 5 768
PWB condition A
PWB condition B
ΔT(K)
0
10
20
30
40
50
60
70
80
01 2 34
I
DC
(A)
PWB condition A
PWB condition B
ΔT(K)
0
10
20
30
40
50
60
70
80
01 2 34 56
I
DC
(A)
PWB condition A
PWB condition B
ΔT(K)
0
2
4
6
8
12
10
012 3 456 879
I
DC
(A)
Inductance (µH)
Case Temperature vs DC Current PWB condition A : Four-layer PWB (1.6 mm FR4), See also (2)
PWB condition B : Multilayer PWB with high heat dissipation performance. See also (3)
Series Part No.
Inductance 1DCR (at 20 °C) (mΩ) Rated Current (Typ. : A)
L0
(µH)
Tolerance
(%)
Typ.
(max.)
Tolerance
(%)
T=40K L=–30%
(2) (3) (4)
PCC-M0530M-H
[5.5×5.0×3.0(mm)]
ETQP3M2R2HFP 2.2
±20
19.5 (21.45)
±20
5.2 6.3 9.0
PCC-M0630M-H
[6.5×6.0×3.0(mm)]
ETQP3M100HFN 10.0 68.0 (74.8) 3.0 3.7 5.5
ETQP3M220HFN 22.0 144.0 (158.4) 2.1 2.5 4.0
(1) Measured at 100k Hz.
(2) DC current which causes temperature rise of 40K. Parts are soldered by reflow on four-layer PWB (1.6 mm FR4)
and measured at room temperature. See also (5)
(3) DC current which causes temperature rise of 40K. Parts are soldered by reflow on multilayer PWB with high
heat dissipation performance. Note: Heat radiation constant are approx. 20 K/W measured. See also (5)
(4) Saturation rated current : DC current which causes L(0) drop –30 %.
(5) Within a suitable application, the part’s temperature depends on circuit design and certain heat dissipation
conditions. This should be double checked in a worst case operation mode.
In normal case, the max.standard operating temperature of +150 °C should not be exceeded.
For higher operating temperature conditions, please contact Panasonic representative in your area.
Inductance vs DC Current
ETQP3M2R2HFP
ETQP3M2R2HFP
ETQP3M100HFN
ETQP3M100HFN
ETQP3M220HFN
ETQP3M220HFN
Performance Characteristics (Ref er ence)
Standard Parts
Apr. 201802
Panasonic uma Sm clan 65:04 55:04 stcm {2.80 stcm (as: 71 51
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Power Inductors
Date Code Polarity
Inductance Suffix
5.5±0.4
5.0±0.4
3.0±0.3
1.2±0.4 1.2±0.4
3.0 max.
0.05 min.
6.5±0.4
6.0±0.4
3.0±0.3
1.5 1.5
3.0 max.
0.05 min.
Date Code Polarity
Inductance Suffix
Don't wire on the pattern
on shaded portion the PWB.
6.1
2.2
7.2
3.6
6.0
The same as the left.
7.1
2.8
8.8
3.6
7.0
Series PCC-M0530M-H
(ETQP3M□□□HFP)
Series PCC-M0630M-H
(ETQP3M□□□HFN)
Series PCC-M0530M-H
(ETQP3M□□□HFP)
Series PCC-M0630M-H
(ETQP3M□□□HFN)
Dimensional tolerance unless noted : ±0.5
Dimensions in mm (not to scale)
Dimensional tolerance unless noted : ±0.5
Recommended Land Pattern in mm (not to scale)
As for Soldering Conditions and Safety Precautions
(Power Choke Coils (Automotive Grade)),
Please see Data Files
Apr. 201802
Panasonic 4» oooooooo figjw
Design and specifications are each subject to change without notice. Ask factory for the current technical specifications before purchase and/or use.
Should a safety concern arise regarding this product, please be sure to contact us immediately.
Power Inductors
t1t2
P0
A
P2
f
D
0
P1
FE
W
B
Tape running direction
Terminal
Series M0530M-H
Terminal
Series M0630M-H
E
C
D
A
B
W
Embossed Carrier Tape Dimensions in mm (not to scale)
Packaging Methods (Taping)
Component Placement (Taping)
Taping Reel Dimensions in mm (not to scale)
Series Part No. Minimum Quantity / Packing Unit Quantity per reel
PCC-M0530M-H ETQP3M□□□HFP 2,000 pcs. / box (2 reel) 1,000 pcs.
PCC-M0630M-H ETQP3M□□□HFN 2,000 pcs. / box (2 reel) 1,000 pcs.
Series A B W E F P1P2P0fD0t1t2
PCC-M0530M-H 5.6 6.1 16 1.75 7.5 12 2 4 1.5 0.4 3.3
PCC-M0630M-H 7.1 6.6 16 1.75 7.5 12 2 4 1.5 0.4 3.3
Series A B C D E W
PCC-M0530M-H
PCC-M0630M-H 330 (100) 13 21 2 17.5
Standard Packing Quantity/Reel
Apr. 201802
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