ETQP3M4R7KVP
Power Inductor (SMD), 4.7 µH, 4.1 A, Shielded, 6.7 A, PCC-M0530M-LP Series
- Manufacturer: PANASONIC
- Product type: SMD Power Inductors
- Inductance:4.7µH; RMS Current (Irms):3.4A; Inductor Construction:-; Saturation Current (Isat):6.7A; Product Range:ETQP Series; Power Inductor Case:5.5mm x 5mm x 3mm; DC Resistance M
- SVHC: No SVHC (25-Jun-2025)
- Inductance: 4.7µH
- Product Range: PCC-M0530M-LP Series
- Product Width: 5mm
- Product Height: 3mm
- Product Length: 5.5mm
- DC Resistance Max: 0.05016ohm
- RMS Current (Irms): 4.1A
- Inductance Tolerance: ± 20%
- Inductor Construction: Shielded
- Inductor Case / Package: -
- Saturation Current (Isat): 6.7A
| Delivery and price | |
|---|---|
| Units per pack | 4000 |
| Price | 0.27 € |
| Current stock | 1000+ |
| Lead time | 30 days |
## **UPDATE Power Inductors** INDUSTRY [ Power Choke Coil (Automotive Grade) **PCC-M0530M-LP, PCC-M0630M-LP** series **PCC-M0840M-LP, PCC-M1040M-LP** series
High heat resistance and high reliability using metal composite core (MC)
Industrial property : Patents 3 (Registered 2 / Pending 1)
## ~~a~~ **Features**
- ●High heat resistance : Operation up to 155 ℃ including self-heating. (180 ℃ short time*) * Please contact for possible to use over 155 ℃ condition. Temperature up to 180 ℃ may possibly be used.
- ●Low profile : 3mm max. height (PCC-M0530M-LP, PCC-M0630M-LP) 4mm max. height (PCC-M0840M-LP, PCC-M1040M-LP)
- ●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 : A gapless structure achieved with metal composite core ●High efficiency : Low DC resistance of winding and low eddy-current loss of the core
- ●Shielded construction
- ●AEC-Q200 compliant
- ●RoHS compliant
## **Recommended applications**
●Noise filter for various drive circuitry requiring high temp. operation and peak current handling capability
●Boost-Converter, Buck-Converter DC/DC
## **Standard packing quantity (Minimum quantity/Packing unit)**
●4,000 pcs/box (2 reel) : PCC-M0530M-LP, M0630M-LP ●1,000 pcs/box (2 reel) : PCC-M0840M-LP, M1040M-LP
|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|**Explanation of part numbers**<br>~~a~~|
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|1<br>2<br>3|||4<br>5|||6||7||||8<br>9||10||11|||12|||||
|**E**<br>**T**<br>**Q**<br>**P**<br>**M**<br>**K**<br>**V**<br>Product code<br>Height<br>Winding<br>Inductance<br>Suffix<br>Size<br>Core<br>Classification<br>~~OE~~<br>~~a a~~||||||||||||||||||||||||
|||||||||(Example)||||||||||||||||||
|||||||||Code||||Inductance||||||Code|||||Size|
|||||||||4R7||||4.7μH|||||||P|||□5 mm|5 mm|
|||||||||220||||22μH|||||||N|||□6 mm|6 mm|
|||||||||R68||||0.68μH|||||||K|||□8 mm|8 mm|
||||||||||||||||||||C|||□10 mm|10 mm|
|**Temperature rating**||||||||||||||||||||||||
|After PWB mounting<br>Storage condition<br>Operating temperature range<br>Before PWB mounting||||||||Ta : -5<br>Tc : -55|Ta : -5℃to +35℃85%RH max.<br>Tc : -55℃to +155℃(Including self-temperature rise)|||||||||||||||
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **1. PCC-M0530M-LP series (ETQP3M□□□KVP)**
|Part No.|Inductance*1|Inductance*1|DCR (at 20℃)<br>(mΩ)|DCR (at 20℃)<br>(mΩ)|Rated current (A) Typ.<br>resistance|Rated current (A) Typ.<br>resistance|Vibration<br>resistance<br>(G)|MSL|Series<br>[Size L×W×H]<br>(mm)|
|---|---|---|---|---|---|---|---|---|---|
||L0<br>(μH)<br>~~||~~|Tolerance<br>(%)<br>~~||~~<br>~~[|~~|Typ. (max.)<br>~~[|~~|Tolerance<br>(%)|△T= 40 K*2<br>( )*3<br>~~ee~~|△L=<br>–30 %*4<br>~~ee~~|*5<br>(G)|*6||
|ETQP3M220KVP<br>~~[|~~|22.0<br>~~||~~<br>~~[|~~<br>~~1=[==]]~~|±20<br>~~||~~<br>~~[|~~<br>~~[~~<br>~~[~~<br>~~[~~<br>~~[~~<br>~~[~~<br>~~[~~<br>~~[~~<br>~~[~~<br>~~1=[==]]~~<br>~~Ll~~|165.0(181.5)<br>~~[|~~<br>~~[~~<br>~~1=[==]]~~|±10<br>~~1=[==]]~~|2.2(1.8)<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|2.8<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|30.0<br>~~1=[==]]~~|1<br>~~1=[==]]~~|PCC-M0530M-LP<br>[5.0×5.5×3.0]|
|ETQP3M100KVP<br>~~[|~~<br>~~[|~~|10.0<br>~~||~~<br>~~[|~~<br>~~[|~~<br>~~1=[==]]~~||96.0(105.60)<br>~~[|~~<br>~~[~~<br>~~[~~<br>~~1=[==]]~~||2.9(2.4)<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|4.2<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~||||
|ETQP3M6R8KVP<br>~~[|~~<br>~~[|~~<br>~~[|~~|6.8<br>~~[|~~<br>~~[|~~<br>~~[|~~<br>~~1=[==]]~~||65.7(72.27)<br>~~[~~<br>~~[~~<br>~~[~~<br>~~1=[==]]~~||3.5(2.9)<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|6.1<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~||||
|ETQP3M4R7KVP<br>~~[|~~<br>~~[|~~<br>~~[|~~|4.7<br>~~[|~~<br>~~[|~~<br>~~[|~~<br>~~1=[==]]~~||45.6(50.16)<br>~~[~~<br>~~[~~<br>~~[~~<br>~~1=[==]]~~||4.1(3.4)<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|6.7<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~||||
|ETQP3M3R3KVP<br>~~[|~~<br>~~[|~~<br>~~[|~~|3.3<br>~~[|~~<br>~~[|~~<br>~~[|~~<br>~~1=[==]]~~||27.3(30.03)<br>~~[~~<br>~~[~~<br>~~[~~<br>~~1=[==]]~~||5.4(4.4)<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|8.0<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~||||
|ETQP3M2R2KVP<br>~~[|~~<br>~~[|~~<br>~~[|~~|2.2<br>~~[|~~<br>~~[|~~<br>~~[|~~<br>~~1=[==]]~~||20.0(22.00)<br>~~[~~<br>~~[~~<br>~~[~~<br>~~1=[==]]~~||6.3(5.2)<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|10.1<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~||||
|ETQP3M1R5KVP<br>~~[|~~<br>~~[|~~<br>~~[|~~|1.5<br>~~[|~~<br>~~[|~~<br>~~[|~~<br>~~1=[==]]~~||12.0(13.20)<br>~~[~~<br>~~[~~<br>~~[~~<br>~~1=[==]]~~||8.1(6.7)<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|12.0<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~||||
|ETQP3M1R0KVP<br>~~[|~~<br>~~[|~~<br>~~[|~~|1.0<br>~~[|~~<br>~~[|~~<br>~~[|~~<br>~~1=[==]]~~||9.6(10.56)<br>~~[~~<br>~~[~~<br>~~[~~<br>~~1=[==]]~~||9.0(7.5)<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|14.1<br>~~ee~~<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~||||
|ETQP3MR68KVP<br>~~[|~~<br>~~[|~~|0.68<br>~~[|~~<br>~~[|~~<br>~~1=[==]]~~||7.6(8.36)<br>~~[~~<br>~~[~~<br>~~1=[==]]~~||10.2(8.4)<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~|15.9<br>~~ee~~<br>~~ee~~<br>~~1=[==]]~~||||
|ETQP3MR47KVP<br>~~[|~~|0.47<br>~~[|~~<br>~~1=[==]]~~<br>~~|~~||5.8(6.38)<br>~~[~~<br>~~1=[==]]~~<br>~~Ll~~||11.6(9.6)<br>~~ee~~<br>~~1=[==]]~~<br>~~ee~~|17.9<br>~~ee~~<br>~~1=[==]]~~<br>~~ee~~||||
|ETQP3MR33KVP|0.33<br>~~1=[==]]~~<br>~~|~~||4.85(5.34)<br>~~1=[==]]~~<br>~~Ll~~||12.7(10.6)<br>~~1=[==]]~~<br>~~ee~~|21.8<br>~~1=[==]]~~<br>~~ee~~||||
- *3: The proved current value for making the overall temperature rise of 40K, when mounted on a 4-layer circuit board of FR4 t=1.6 mm and DC current is applied.
- *4: Saturation rated current : DC current which causes L(0) drop –30 %.
- *5: Vibration resistance conditions : Amplitude: 5 mm or less, sweep speed: 1 oct / min, frequency 5-2000 Hz, 3 directions / 4 hours each, total 12 hours
- *6: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used.
- 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 +155°C should not be exceeded. Please contact for possible to use over 155 ℃ condition. Temperature up to 180 ℃ may possibly be used.
~~|~~ **Performance characteristics (Reference①-1)**
**==> picture [501 x 389] intentionally omitted <==**
**----- Start of picture text -----**<br>
● Inductance vs DC Current<br>[ ETQP3M220KVP ] [ ETQP3M100KVP ] [ ETQP3M6R8KVP ]<br>25 12 8<br>20<br>jf ft 8 mt 6 PTBERET| tt ey ty yl<br>15<br>est<br>4<br>10 P| ff FR SSce Sees -S800<br>4<br>5 PF | PR TS 2 Fee ess<br>0 0 | [| 1 | 2 || 3 [ 4 || 5 0 0 PPTEE PEE 2 4 6 8 0 0 PFCEEL 2 4 E 6 LEEL 8 10<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP3M4R7KVP ] [ ETQP3M3R3KVP ] [ ETQP3M2R2KVP ]<br>5 2.5<br>3.0<br>4 2.0<br>Pre TTT TT me | ET TT<br>3 2.0 1.5<br>ETT PPT TT FOP SSC PT PALE<br>2 PEELE CTS 1.0 yA<br>1.0<br>1 PLT pt ttt ttt 0.5 Py<br>0 PLT PEELE ELLE 0 T CEOE EE, 0 FE L E ELL LET tL<br>0 2 4 6 8 10 12 0 4 8 12 16 0 4 8 12 16<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP3M1R5KVP ] [ ETQP3M1R0KVP ] [ ETQP3MR68KVP ]<br>1.52.0 ELL LLL 1.2 Pt tT [Ty] 0.80.6<br>0.8<br>1.0 0.4<br>oe Se<br>0.4<br>0.5 PEL EL | | | ft 0.2<br>0 Hee 0 rT fT tid 0<br>0 4 8 12 16 20 0 10 20 0 10 20 30<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>(μH) (μH) (μH)<br>Inductors Inductors Inductors<br>Inductors (μH) Inductors (μH) Inductors (μH)<br>Inductors (μH) Inductors (μH) Inductors (μH)<br>**----- End of picture text -----**<br>
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
**==> picture [523 x 15] intentionally omitted <==**
**----- Start of picture text -----**<br>
a Performance characteristics (Reference①-2)<br>**----- End of picture text -----**<br>
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● Inductance vs DC Current<br>[ ETQP3MR47KVP ] [ ETQP3MR33KVP ]<br>0.5 0.4<br>0.4<br>ee 0.3 TOOT TTT<br>0.3<br>| — 0.2 CCAR EEE<br>0.2 a iiss<br>0.1 0.1<br>0 0<br>0 10 20 30 40 0 4 8 12 16 20<br>DC Bias (A) DC Bias (A)<br> Performance characteristics (Reference②)<br>● Case Temperature vs DC Current<br>PWB condition A : Four-layer PWB (1.6 mm FR4). [*3]<br>PWB condition B : Multilayer PWB with hig h heat dissipation performance. [*2]<br>[ ETQP3M220KVP ] [ ETQP3M100KVP ] [ ETQP3M6R8KVP ]<br>80 me ae 80 a ee ee ee 80 ee eeee<br>60 pot | | ZL 60 ee eee 60 a A<br>40 P|me| | hv Vyeee 40 aeaee ee Ae 40 aeeeeee<br>| ee eee<br>| Ye | ee) 4 ee a ee<br>20 P| | Ae | | 20 a eae 20 ee 44A<br>0 0 0<br>0 1 2 3 0 1 2 3 4 5 0 1 2 3 4 5<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP3M4R7KVP ] [ ETQP3M3R3KVP ] [ ETQP3M2R2KVP ]<br>80 | | | | [ J Yi] 80 ee eee ee 80 | | | tt Tt Ve<br>60 P| ff TA |e 60 | | | | | LY 60 | | | | | | iY<br>| | | | YH ee ee Pt} TT | eV le<br>40 || || || [fe]Vf | 40 PEPt || |ET LY)Yr | 40 eAeee eee<br>20 |me| |Aegl]Aree| | 20 |P|| |lATARTT 20 ||| | TT | eweyer |TTTe<br>0 Lees] | | TC 0 Lae | Tf ct lt 0 Let T | | | | dC<br>0 1 2 3 4 5 6 0 2 4 6 8 0 2 4 6 8<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP3M1R5KVP ] [ ETQP3M1R0KVP ] [ ETQP3MR68KVP ]<br>80 | | | | hu YJ | 80 [| | | [| | YY fF 80 fT | | | | TY<br>60 | | | | Ye 60 | | | | TA 60 Pot | |Ae<br>40 |PFRe|| || Te| aelv [|Ze | 40 ||ee|| || lf| ft|ee“ | 40 |ee| || || | | feAe/\ ae|<br>20 || || we[Ae| || | 20 || || |wrfe]| || | | 20 || || | AeYar Tt| Tt<br>0 Loe] | UT CT 0 Lit | | hd] ht 0 Lieto | | | | df<br>0 2 4 6 8 10 12 0 4 8 12 0 4 8 12 16<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP3MR47KVP ] [ ETQP3MR33KVP ]<br>80 Pt | | tT ct AE 80 /<br>60 Rn|| | | | dv [ALYaA| 60 to|| | | tT TV ey4<br>40 40<br>FERR| ARAA<br>20 20<br>PEGA Fe<br>0 T Lam TT dT rT 0 [ eer T [| | dt |<br>0 4 8 12 16 0 4 8 12 16<br>DC Bias (A) DC Bias (A)<br>Inductors (μH) Inductors (μH)<br>Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K)<br>Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K)<br>**----- End of picture text -----**<br>
## Ce
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **2. PCC-M0630M-LP series (ETQP3M□□□KVN)**
## **Standard parts**
|Part No.|Inductance*1|Inductance*1|DCR (at 20℃)<br>(mΩ)|DCR (at 20℃)<br>(mΩ)|Rated current (A) Typ.|Rated current (A) Typ.|Vibration<br>resistance<br>(G)|MSL|Series<br>[Size L×W×H]<br>(mm)|
|---|---|---|---|---|---|---|---|---|---|
||L0<br>(μH)|Tolerance<br>(%)|Typ. (max.)|Tolerance<br>(%)|△T= 40 K*2<br>( )*3|△L=<br>–30 %*4|*5<br>|*6||
|ETQP3M330KVN|33.0|±20|206.0 (226.60)|±10|2.1(1.7)|3.0|30.0|1|PCC-M0630M-LP<br>[6.0×6.4×3.0]|
|ETQP3M220KVN|22.0||128.0 (140.80)||2.7(2.2)|4.3||||
|ETQP3M150KVN|15.0||99.2(109.12)||3.0(2.5)|5.1||||
|ETQP3M100KVN|10.0||71.0 (78.10)||3.6(2.9)|5.8||||
|ETQP3M6R8KVN|6.8||45.6 (50.16)||4.5(3.6)|8.1||||
|ETQP3M4R7KVN|4.7||29.0 (31.90)||5.6(4.6)|9.8||||
|ETQP3M3R3KVN|3.3||24.1(26.51)||6.1(5.0)|11.5||||
|ETQP3M2R2KVN|2.2||14.5 (15.95)||7.9(6.5)|12.8||||
|ETQP3M1R5KVN|1.5||11.0 (12.10)||9.1(7.4)|14.2||||
|ETQP3M1R0KVN|1.0||6.2(6.82)||12.1(9.9)|16.0||||
|ETQP3MR68KVN|0.68||5.2 (5.72)||13.2(10.8)|20.2||||
- *1: Measured at 100 kHz
- *2: The proved current value for making the overall temperature rise of 40K, when mounted on a multi-layer board with high-heat dissipation (heat dissipation constant 6.5 x 6.0 x 3.0 mm : approx. 44 K/W).
- *3: The proved current value for making the overall temperature rise of 40K, when mounted on a 4-layer circuit board of FR4 t=1.6 mm and DC current is applied.
- *4: Saturation rated current : DC current which causes L(0) drop –30 %.
- *5: Vibration resistance conditions : Amplitude: 5 mm or less, sweep speed: 1 oct / min, frequency 5-2000 Hz, 3 directions / 4 hours each, total 12 hours
- *6: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used.
- 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 +155°C
should not be exceeded. Please contact for possible to use over 155 ℃ condition. Temperature up to 180 ℃ may possibly be used.
## **Performance characteristics (Reference①)**
**==> picture [517 x 378] intentionally omitted <==**
**----- Start of picture text -----**<br>
● Inductance vs DC Current<br>[ ETQP3M330KVN ] [ ETQP3M220KVN ] [ ETQP3M150KVN ] [ ETQP3M100KVN ]<br>25 20 12<br>30<br>20<br>15<br>8<br>20 15<br>10<br>10<br>4<br>10 5<br>5<br>0 0 0 0<br>0 1 2 3 4 5 0 2 4 6 8 0 2 4 6 8 0 2 4 6 8 10 12<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP3M6R8KVN ] [ ETQP3M4R7KVN ] [ ETQP3M3R3KVN ] [ ETQP3M2R2KVN ]<br>8 5 2.5<br>3.0<br>4 2.0<br>6<br>3 2.0 1.5<br>4<br>2 1.0<br>1.0<br>2<br>1 0.5<br>0 0 0 0<br>0 4 8 12 16 0 4 8 12 16 20 0 4 8 12 16 20 0 4 8 12 16 20 24<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>2.0[ ETQP3M1R5KVN ] 1.2[ ETQP3M1R0KVN ] 0.8[ ETQP3MR68KVN ]<br>1.5 0.6<br>0.8<br>1.0 0.4<br>0.4<br>0.5 0.2<br>0 0 0<br>0 4 8 12 16 20 24 0 10 20 30 0 10 20 30 40<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>(μH)Inductors Inductors (μH) (μH)Inductors (μH)Inductors<br>(μH)Inductors Inductors (μH) (μH)Inductors (μH)Inductors<br>(μH)Inductors Inductors (μH) (μH)Inductors<br>**----- End of picture text -----**<br>
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **Performance characteristics (Reference②)**
## ● Case Temperature vs DC Current
PWB condition A : Four-layer PWB (1.6 mm FR4).[*3]
PWB condition B : Multilayer PWB with high heat dissipation performance.[*2]
**==> picture [509 x 437] intentionally omitted <==**
**----- Start of picture text -----**<br>
[ ETQP3M330KVN ] [ ETQP3M220KVN ] [ ETQP3M150KVN ] [ ETQP3M100KVN ]<br>80 80 80 80<br>60 60 60 60<br>40 40 40 40<br>20 20 20 20<br>0 0 0 0<br>0 1 2 3 0 1 2 3 4 0 1 2 3 4 5 0 2 4 6<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP3M6R8KVN ] [ ETQP3M4R7KVN ] [ ETQP3M3R3KVN ] [ ETQP3M2R2KVN ]<br>80 80 80 80<br>60 60 60 60<br>40 40 40 40<br>20 20 20 20<br>0 0 0 0<br>0 2 4 6 0 2 4 6 8 0 2 4 6 8 0 4 8 12<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP3M1R5KVN ] [ ETQP3M1R0KVN ] [ ETQP3MR68KVN ]<br>80 80 80<br>60 60 60<br>40 40 40<br>20 20 20<br>0 0 0<br>0 4 8 12 0 5 10 15 20 0 5 10 15 20<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>**----- End of picture text -----**<br>
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **3. PCC-M0840M-LP series (ETQP4M□□□KVK)**
## **Standard parts**
|Part No.|Inductance*1|Inductance*1|DCR (at 20℃)<br>(mΩ)|DCR (at 20℃)<br>(mΩ)|Rated current (A) Typ.|Rated current (A) Typ.|Vibration<br>resistance<br>(G)|MSL|Series<br>[Size L×W×H]<br>(mm)|
|---|---|---|---|---|---|---|---|---|---|
||L0<br>(μH)|Tolerance<br>(%)|Typ. (max.)|Tolerance<br>(%)|△T= 40 K*2<br>( )*3|△L=<br>–30 %*4|*5|*6||
|ETQP4M330KVK|33.0|±20|118.0(129.80)|±10|3.1(2.6)|4.7|5.0|1|PCC-M0840M-LP<br>[8.0×8.4×4.0]|
|ETQP4M220KVK|22.0||78.4(86.24)||3.8(3.2)|6.7||||
|ETQP4M150KVK|15.0||55.0(60.50)||4.5(3.8)|7.7||||
|ETQP4M100KVK|10.0||41.6(45.76)||5.2(4.4)|9.1||||
|ETQP4M6R8KVK|6.8||23.5(25.85)||6.9(5.9)|11.0||||
|ETQP4M4R7KVK|4.7||16.1(17.71)||8.3(7.1)|15.1||||
|ETQP4M3R3KVK|3.3||14.1(15.51)||8.9(7.6)|17.4||||
|ETQP4M2R2KVK|2.2||8.5(9.35)||11.4(9.8)|20.4||||
|ETQP4M1R5KVK|1.5||4.9(5.39)||15.1(12.8)|22.5||||
|ETQP4M1R0KVK|1.0||3.7(4.07)||17.3(14.8)|24.4||||
|ETQP4MR68KVK|0.68||2.92(3.21)||19.5(16.6)|29.0||||
- *1: Measured at 100 kHz
- *2: The proved current value for making the overall temperature rise of 40K, when mounted on a multi-layer board with high-heat dissipation (heat dissipation constant 8.5×8.0×4.0 mm : approx. 36 K/W).
- *3: The proved current value for making the overall temperature rise of 40K, when mounted on a 4-layer circuit board of FR4 t=1.6 mm and DC current is applied.
- *4: Saturation rated current : DC current which causes L(0) drop –30 %.
- *5: Vibration resistance conditions : Amplitude: 5 mm or less, sweep speed: 1 oct / min, frequency 5-2000 Hz, 3 directions / 4 hours each, total 12 hours
- *6: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used.
- 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 +155°C should not be exceeded. Please contact for possible to use over 155 ℃ condition. Temperature up to 180 ℃ may possibly be used.
## **Performance characteristics (Reference①)**
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● Inductance vs DC Current<br>[ ETQP4M330KVK ] [ ETQP4M220KVK ] [ ETQP4M150KVK ] [ ETQP4M100KVK ]<br>25 20 12<br>30<br>20<br>15<br>8<br>20 15<br>10<br>10<br>4<br>10 5<br>5<br>0 0 0 0<br>0 2 4 6 8 0 4 8 12 0 4 8 12 0 4 8 12 16<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M6R8KVK ] [ ETQP4M4R7KVK ] [ ETQP4M3R3KVK ] [ ETQP4M2R2KVK ]<br>8 5 2.5<br>3.0<br>6 4 2.0<br>3 2.0 1.5<br>4<br>2 1.0<br>2 1.0<br>1 0.5<br>0 0 0 0<br>0 5 10 15 20 0 10 20 30 0 10 20 30 0 10 20 30 40<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M1R5KVK ] [ ETQP4M1R0KVK ] [ ETQP4MR68KVK ]<br>2.0 1.2 0.8<br>1.5 0.6<br>0.8<br>1.0 0.4<br>0.4<br>0.5 0.2<br>0 0 0<br>0 10 20 30 40 0 10 20 30 40 0 10 20 30 40 50<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>(μH)Inductors Inductors (μH) (μH)Inductors Inductors (μH)<br>(μH) (μH)<br>Inductors Inductors (μH) Inductors (μH) Inductors<br>Inductors (μH) (μH)Inductors Inductors (μH)<br>**----- End of picture text -----**<br>
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **Performance characteristics (Reference②)**
## ● Case Temperature vs DC Current
PWB condition A : Four-layer PWB (1.6 mm FR4).[*3]
PWB condition B : Multilayer PWB with high heat dissipation performance.[*2]
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[ ETQP4M330KVK ] [ ETQP4M220KVK ] [ ETQP4M150KVK ] [ ETQP4M100KVK ]<br>80 80 80 80<br>60 60 60 60<br>40 40 40 40<br>20 20 20 20<br>0 0 0 0<br>0 1 2 3 4 5 0 1 2 3 4 5 6 0 2 4 6 0 2 4 6 8<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M6R8KVK ] [ ETQP4M4R7KVK ] [ ETQP4M3R3KVK ] [ ETQP4M2R2KVK ]<br>80 80 80 80<br>60 60 60 60<br>40 40 40 40<br>20 20 20 20<br>0 0 0 0<br>0 2 4 6 8 10 0 4 8 12 0 4 8 12 0 4 8 12 16<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M1R5KVK ] [ ETQP4M1R0KVK ] [ ETQP4MR68KVK ]<br>80 80 80<br>60 60 60<br>40 40 40<br>20 20 20<br>0 0 0<br>0 5 10 15 20 25 0 5 10 15 20 25 0 10 20 30<br>DC Bias (A) DC Bias (A) DC Bias (A)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise (ΔTK)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>**----- End of picture text -----**<br>
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **4. PCC-M1040M-LP series (ETQP4M□□□KVC)**
|Part No.|Inductance*1<br>~~a~~|Inductance*1<br>~~a~~|DCR (at 20℃)<br>(mΩ)<br>~~ee~~|DCR (at 20℃)<br>(mΩ)<br>~~ee~~|Rated current (A) Typ.<br>~~eeee~~|Rated current (A) Typ.<br>~~eeee~~|Vibration<br>resistance<br>(G)<br>~~eee~~|MSL<br>~~eee~~|Series<br>[Size L×W×H]<br>(mm)|
|---|---|---|---|---|---|---|---|---|---|
||L0<br>(μH)<br>~~a~~|Tolerance<br>(%)|Typ. (max.)<br>~~ee~~|Tolerance<br>(%)<br>~~ee~~|△T= 40 K*2<br>( )*3<br>~~ee~~|△L=<br>–30 %*4<br>~~ee~~|*5<br>(G)<br>~~eee~~|*6<br>~~eee~~||
|ETQP4M101KVC|100.0<br>~~a~~<br>~~|~~<br>~~f=l==1)~~|±20<br>~~|~~<br>~~|~~<br>~~[|~~<br>~~[~~<br>~~|~~<br>~~|~~<br>~~[|~~<br>~~|~~<br>~~|~~<br>~~[|~~<br>~~[~~<br>~~|~~<br>~~|~~<br>~~[|~~<br>~~|~~<br>~~|~~<br>~~[|~~<br>~~[~~<br>~~f=l==1)~~<br>~~|~~<br>~~Ll~~|242.0(266.20)<br>~~ee~~<br>~~|~~<br>~~f=l==1)~~|±10<br>~~ee~~<br>~~sY~~<br>~~sd~~<br>~~f=l==1)~~<br>~~Ll~~|2.5(2.0)<br>~~ee ~~<br>~~ee~~<br>~~f=l==1)~~|3.5<br> ~~ee ~~<br>~~ee~~<br>~~f=l==1)~~|5.0<br> ~~eee~~<br>~~f=l==1)~~|1<br>~~eee~~<br>~~f=l==1)~~|PCC-M1040M-LP<br>[10.0×10.7×4.0]|
|ETQP4M680KVC|68.0<br>~~|~~<br>~~[|~~<br>~~f=l==1)~~||178.4(196.24)<br>~~|~~<br>~~[~~<br>~~f=l==1)~~||2.9(2.4)<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~|4.7<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~||||
|ETQP4M470KVC|47.0<br>~~|~~<br>~~[|~~<br>~~|~~<br>~~f=l==1)~~||132.0(145.20)<br>~~|~~<br>~~[~~<br>~~|~~<br>~~sY~~<br>~~f=l==1)~~||3.4(2.8)<br>~~ee~~<br>~~es~~<br>~~ee~~<br>~~f=l==1)~~|4.7<br>~~ee~~<br>~~es~~<br>~~ee~~<br>~~f=l==1)~~||||
|ETQP4M330KVC|33.0<br>~~[|~~<br>~~|~~<br>~~[|~~<br>~~f=l==1)~~||84.6(93.06)<br>~~[~~<br>~~|~~<br>~~sY~~<br>~~f=l==1)~~||4.2(3.4)<br>~~es~~<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~|5.6<br>~~es~~<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~||||
|ETQP4M220KVC|22.0<br>~~|~~<br>~~[|~~<br>~~|~~<br>~~f=l==1)~~||60.0(66.00)<br>~~|~~<br>~~sY~~<br>~~|~~<br>~~sd~~<br>~~f=l==1)~~||5.0(4.1)<br>~~ee~~<br>~~es~~<br>~~ee~~<br>~~f=l==1)~~|7.4<br>~~ee~~<br>~~es~~<br>~~ee~~<br>~~f=l==1)~~||||
|ETQP4M150KVC|15.0<br>~~[|~~<br>~~|~~<br>~~[|~~<br>~~f=l==1)~~||37.0(40.70)<br>~~|~~<br>~~sd~~<br>~~[~~<br>~~f=l==1)~~||6.3(5.2)<br>~~es~~<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~|9.2<br>~~es~~<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~||||
|ETQP4M100KVC|10.0<br>~~|~~<br>~~[|~~<br>~~|~~<br>~~f=l==1)~~||25.4(27.94)<br>~~|~~<br>~~sd~~<br>~~[~~<br>~~|~~<br>~~f=l==1)~~||7.6(6.3)<br>~~ee~~<br>~~es~~<br>~~ee~~<br>~~f=l==1)~~|10.8<br>~~ee~~<br>~~es~~<br>~~ee~~<br>~~f=l==1)~~||||
|ETQP4M6R8KVC|6.8<br>~~[|~~<br>~~|~~<br>~~[|~~<br>~~f=l==1)~~||18.5(20.35)<br>~~[~~<br>~~|~~<br>~~f=l==1)~~||8.9(7.4)<br>~~es~~<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~|12.1<br>~~es~~<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~||||
|ETQP4M4R7KVC|4.7<br>~~|~~<br>~~[|~~<br>~~|~~<br>~~f=l==1)~~||12.3(13.53)<br>~~|~~<br>~~|~~<br>~~f=l==1)~~||11.2(9.2)<br>~~ee~~<br>~~es~~<br>~~ee~~<br>~~f=l==1)~~|13.9<br>~~ee~~<br>~~es~~<br>~~ee~~<br>~~f=l==1)~~||||
|ETQP4M3R3KVC|3.3<br>~~[|~~<br>~~|~~<br>~~[|~~<br>~~f=l==1)~~||9.4(10.34)<br>~~|~~<br>~~[~~<br>~~f=l==1)~~||12.6(10.3)<br>~~es~~<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~|17.1<br>~~es~~<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~||||
|ETQP4M2R2KVC|2.2<br>~~|~~<br>~~[|~~<br>~~f=l==1)~~||6.8(7.48)<br>~~|~~<br>~~[~~<br>~~f=l==1)~~||14.8(12.1)<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~|21.0<br>~~ee~~<br>~~es~~<br>~~f=l==1)~~||||
|ETQP4M1R5KVC|1.5<br>~~[|~~<br>~~f=l==1)~~<br>~~|~~||4.9(5.39)<br>~~[~~<br>~~f=l==1)~~<br>~~Ll~~||17.4(14.3)<br>~~es~~<br>~~f=l==1)~~<br>~~ee~~|25.0<br>~~es~~<br>~~f=l==1)~~<br>~~ee~~||||
|ETQP4M1R0KVC|1.0<br>~~f=l==1)~~<br>~~|~~||2.6 (2.86)<br>~~f=l==1)~~<br>~~Ll~~||23.9 (19.6)<br>~~f=l==1)~~<br>~~ee~~|34.6<br>~~f=l==1)~~<br>~~ee~~||||
- *3: The proved current value for making the overall temperature rise of 40K, when mounted on a 4-layer circuit board of FR4 t=1.6 mm and DC current is applied.
- *4: Saturation rated current : DC current which causes L(0) drop –30 %.
- *5: Vibration resistance conditions : Amplitude: 5 mm or less, sweep speed: 1 oct / min, frequency 5-2000 Hz, 3 directions / 4 hours each, total 12 hours
- *6: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used.
- 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 +155°C
should not be exceeded. Please contact for possible to use over 155 ℃ condition. Temperature up to 180 ℃ may possibly be used.
## ee **Performance characteristics (Reference①)**
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● Inductance vs DC Current<br>[ ETQP4M101KVC ] [ ETQP4M680KVC ] [ ETQP4M470KVC ] [ ETQP4M330KVC ]<br>120 80 50<br>100 70 30<br>40<br>60<br>PS Tooooco.—ClCi éY SOTO<br>80<br>50 30 20<br>60 PTT 40 FRR A) PS<br>NTT CCCCREC TTR POCECE PSS<br>30 20<br>40 PCC RS COCs ane PEELE<br>20 10<br>20 CCE S e 10 FEE<br>10<br>0 PEELE 0 Jip pepe 0 PELE 0 PCECEELELE<br>0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 7 8 0 2 4 6 8 0 2 4 6 8 10<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M220KVC ] [ ETQP4M150KVC ] [ ETQP4M100KVC ] [ ETQP4M6R8KVC ]<br>25 20 12 TOOL 8 ey<br>20 15 6<br>8<br>PANO eee<br>15<br>10 Pt tT PSA TT 4 ee<br>10 4<br>2<br>5 5 PeH E ES<br>0 0 4 8 12 0 0 4 8 12 16 0 0 PTL 4 ETE 8 12 EEL 16 20 0 0 ;ee | 5 10 | [| 15 | 20 | 25<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M4R7KVC ] [ ETQP4M3R3KVC ] [ ETQP4M2R2KVC ] [ ETQP4M1R5KVC ]<br>5 2.5 2.0<br>3.0<br>4 2.0<br>PACH ST 1.5 LT<br>3 2.0 a 1.5 eg<br>1.0<br>2 1.0<br>1.0 FEPSREE EEE SSEED 0.5 EPR EEH<br>1 LtFee{tt tt 0.5 PPTL A<br>0 0 HCE EE 0 Proper SC 0 LELLELLELL<br>0 10 20 30 0 10 20 30 0 10 20 30 40 0 10 20 30 40 50<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>Inductors (μH) Inductors (μH) Inductors (μH) Inductors (μH)<br>Inductors (μH) Inductors (μH) Inductors (μH) Inductors (μH)<br>Inductors (μH) Inductors (μH) Inductors (μH) Inductors (μH)<br>**----- End of picture text -----**<br>
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## ~~Ps~~ **Performance characteristics (Reference①)**
● Inductance vs DC Current
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[ ETQP4M1R0KVC ]<br>1.2<br>SRRRORRERROE<br>0.8<br>PA<br>HTT PRA<br>0.4 ETTPEELE ELLE<br>ETT<br>0<br>0 10 20 30 40 50 60<br>DC Bias (A)<br>Inductors (μH)<br>**----- End of picture text -----**<br>
## ~~Ps~~ **Performance characteristics (Reference②)**
● Case Temperature vs DC Current
PWB condition A : Four-layer PWB (1.6 mm FR4).[*3] PWB condition B : Multilayer PWB with high heat dissipation performance.[*2]
**==> picture [513 x 500] intentionally omitted <==**
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[ ETQP4M101KVC ] [ ETQP4M680KVC ] [ ETQP4M470KVC ] [ ETQP4M330KVC ]<br>80 80 80 80<br>60 eeee eeeeee a 60 T_T.[ft _T7V7_7171 60 $4 AA 60 eeeyee eA<br>r_t_t 7 rf _t7qa_ Fo, a a<br>40 | | CUE ZL 40 | [| | /{ | 40 r | | Zvi | 40 | |[sel<br>T_T _ zt _ T_T Ay t_ ey 4a a oe<br>20 20 20 20<br>H+A+4 0 Ee SET ft aAe<br>0 0 = 1 ae 2 eee 3 4 0 0 eee 1 2 3 4 0 0 Le 1 2 3 4 5 0 0 4 1 2 3 4 5 6<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M220KVC ] [ ETQP4M150KVC ] [ ETQP4M100KVC ] [ ETQP4M6R8KVC ]<br>80 80 80 80<br>60 HHHree TAHAH 60 TTFEEL]FLEES LELLIY 11 60 a eeey eeoo 60 [LLLrt.FLEE VFL<br>40 EEEan VFL,on 40 FEEPLEA 40 LLLa ee 40 ryeTEER<br>20 P| 20 SAj 20 EEZo" 20<br>0 PTT 0 pe 4m 0 AT |od 0 TP Tee<br>0 2 4 6 8 0 2 4 6 8 0 2 4 6 8 10 12 0 4 8 12<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M4R7KVC ] [ ETQP4M3R3KVC ] [ ETQP4M2R2KVC ] [ ETQP4M1R5KVC ]<br>806040 anneyeeFLATT LLL VTFT 806040 rLELLIYEEA(LELLLLTFT 806040 aaee a 408060 Foaaaas<br>PTC VET een PCELEELA eoLE a ) 2sa aAaa<br>20 Ae 20 PEE EEL 20 on ce 20 Zt<br>PE nap Acneen Aa |lea<br>0 rat TT Cod 0 panne 0 Lae | | | | 0 Lae| ft TTtt<br>0 4 8 12 16 0 4 8 12 16 0 10 20 0 10 20<br>DC Bias (A) DC Bias (A) DC Bias (A) DC Bias (A)<br>[ ETQP4M1R0KVC ]<br>80 [LLL]<br>60 PTrT [ELLE] Ae<br>40 PLLPT AeFT<br>TVA<br>20 nA<br>PPT<br>0<br>0 10 20 30<br>DC Bias (A)<br>Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K) Temperature rise ΔT(K)<br>Temperature rise ΔT(K)<br>**----- End of picture text -----**<br>
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **Dimensions in mm (not to scale)**
Dimensional tolerance unless noted : ±0.5
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Series PCC-M0530M-LP<br>(ETQP3M□□□KVP)<br>**----- End of picture text -----**<br>
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Inductance<br>Suffix<br>5.5±0.4<br>Date Code Polarity<br>1.0±0.4 1.0±0.4<br>0.05 min.<br>0.4 0.3<br>± ±<br>5.0 2.54<br>3.0 max.<br>**----- End of picture text -----**<br>
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Series PCC-M0840M-LP<br>(ETQP4M□□□KVK)<br>**----- End of picture text -----**<br>
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Inductance<br>Suffix<br>8.5±0.4<br>Date Code Polarity<br>1.3±0.4 1.3±0.4<br>0.05 min.<br>Series PCC-M1040M-LP<br>(ETQP4M1R0KVC)<br>Inductance<br>Suffix<br>10.7±0.4<br>Date Code Polarity<br>2.15±0.5 2.15±0.5<br>0.05 min.<br>0.4 0.3<br>± ±<br>8.0 5.08<br>4.0 max.<br>0.4 0.3<br>± ±<br>10.0 4.7<br>4.0 max.<br>**----- End of picture text -----**<br>
**Series PCC-M0630M-LP** (ETQP3M□□□KVN)
**==> picture [232 x 151] intentionally omitted <==**
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Inductance<br>Suffix<br>6.4±0.4<br>Date Code Polarity<br>1.04±0.4 1.04±0.4<br>0.05 min.<br>0.4 0.3<br>± ±<br>6.0 3.18<br>3.0 max.<br>**----- End of picture text -----**<br>
**Series PCC-M1040M-LP** (ETQP4M□□□✽KVC) ✽Exemption 1R0
**==> picture [233 x 151] intentionally omitted <==**
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Inductance<br>Suffix<br>10.7±0.4<br>Date Code Polarity<br>2.08±0.4 2.08±0.4<br>0.05 min.<br>0.4 0.3<br>± ±<br>10.0 3.0<br>4.0 max.<br>**----- End of picture text -----**<br>
Unit : mm
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **Recommended land pattern in mm (not to scale)**
Dimensional tolerance unless noted : ±0.5
**==> picture [494 x 204] intentionally omitted <==**
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Series PCC-M0530M-LP Series PCC-M0630M-LP Series PCC-M0840M-LP<br>(ETQP3M□□□KVP) (ETQP3M□□□KVN) (ETQP4M□□□KVK)<br>9.5<br>7.4<br>6.5<br>2.946<br>3.429<br>6.756<br>4.826<br>8.255<br>9.652<br>2.79 6.0 3.429 7.0 5.334 9.0<br>**----- End of picture text -----**<br>
**Series PCC-M1040M-LP Series PCC-M1040M-LP** (ETQP4M□□□✽KVC)✽Exemption 1R0 (ETQP4M1R0KVC)
**==> picture [414 x 190] intentionally omitted <==**
**----- Start of picture text -----**<br>
11.7<br>11.7<br>5.187 5.842<br>12.065 12.192<br>3.251 11.0 4.953 11.0<br>**----- End of picture text -----**<br>
※Don't wire on the pattern on shaded portion the PWB.
**==> picture [27 x 6] intentionally omitted <==**
**----- Start of picture text -----**<br>
Unit : mm<br>**----- End of picture text -----**<br>
- **As for soldering conditions and safety precautions (Power choke coils (Automotive grade)), please see data files**
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.
22-Mar-24
**Power Choke Coil (Automotive Grade)**
## **Packaging methods (Taping)**
- Embossed carrier tape dimensions in mm (not to scale)
|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|F<br>E<br>W<br>t1<br>t2<br>P2<br>P0<br>P1<br>A<br>B<br>Tape running direction<br>øD0|
|---|---|---|---|---|---|---|---|---|---|---|---|
|Unit : mm||||||||||||
|Series|A|B|W|E|F|P1|P2|P0|øD0|t1|t2|
|PCC-M0530M-LP|5.6|6.1|12|1.75|5.5|8|2|4|1.5|0.3|3.3|
|PCC-M0630M-LP|6.5|7.1|16|1.75|7.5|8|2|4|1.5|0.3|3.3|
|PCC-M0840M-LP|8.63|9.1|16|1.75|7.5|12|2|4|1.5|0.4|6.0|
|PCC-M1040M-LP|10.65|11.75|24|1.75|11.5|16|2|4|1.5|0.5|6.35|
- Taping reel dimensions in mm (not to scale)
|A<br>E<br>W<br>B<br>C<br>øD||||||||Unit : mm|
|---|---|---|---|---|---|---|---|---|
|||Series|A|B|C|øD|E|W|
|||PCC-M0530M-LP|330|(100)|13|21|2|13.5|
|||PCC-M0630M-LP||||||17.5|
|||PCC-M0840M-LP|||||||
|||PCC-M1040M-LP||||||25.5|
||||||||||
## **Parts mounting (Taping)**
**==> picture [8 x 36] intentionally omitted <==**
**----- Start of picture text -----**<br>
Terminal<br>**----- End of picture text -----**<br>
## **Standard packing quantity / Reel**
|Serise|Part No.|Minimum quantity / Packing unit|Quantity per reel|
|---|---|---|---|
|PCC-M0530M-LP|ETQP3M□□□KVP|4,000 pcs / box (2 reel)|2,000 pcs|
|PCC-M0630M-LP|ETQP3M□□□KVN|||
|PCC-M0840M-LP|ETQP4M□□□KVK|1,000 pcs / box (2 reel)|500 pcs|
|PCC-M1040M-LP|ETQP4M□□□KVC|||
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.
22-Mar-24
**Safety and Legal Matters to Be Observed**
## **Safety and Legal Matters to Be Observed**
## ~~a~~ **Product specifications and applications**
- Please be advised that this product and product specifications are subject to change without notice for improvement purposes. Therefore, please request and confirm the latest delivery specifications that explain the specifications in detail before the final design, or purchase or use of the product, regardless of the application. In addition, do not use this product in any way that deviates from the contents of the company's delivery specifications.
- Unless otherwise specified in this catalog or the product specifications, this product is intended for use in general electronic equipment (AV products, home appliances, commercial equipment, office equipment, information and communication equipment, etc.).
- When this product is used for the following special cases, the specification document suited to each application shall be signed/sealed (with Panasonic Industry and the user) in advance..These include applications requiring special quality and reliability, wherein their failures or malfunctions may directly threaten human life or cause harm to the human body (e.g.: space/aircraft equipment, transportation/traffic equipment, combustion equipment, medical equipment, disaster prevention/crime prevention equipment, safety equipment, etc.).
~~a~~ **Safety design and product evaluation**
- Please ensure safety through protection circuits, redundant circuits, etc., in the customer's system design so that a defect in our company's product will not endanger human life or cause other serious damage.
- This catalog shows the quality and performance of individual parts. The durability of parts varies depending on the usage environment and conditions. Therefore, please ensure to evaluate and confirm the state of each part after it has been mounted in your product in the actual operating environment before use.
- If you have any doubts about the safety of this product, then please notify us immediately, and be sure to conduct a technical review including the above protection circuits and redundant circuits at your company.
## ~~a~~ **Laws / Regulations / Intellectual property**
- The transportation of dangerous goods as designated by UN numbers, UN classifications, etc., does not apply to this product. In addition, when exporting products, product specifications, and technical information described in this catalog, please comply with the laws and regulations of the countries to which the products are exported, especially those concerning security export control.
- Each model of this product complies with the RoHS Directive (Restriction of the use of hazardous substances in electrical and electronic equipment) (2011/65/EU and (EU) 2015/863). The date of compliance with the RoHS Directive and REACH Regulation varies depending on the product model.
- Further, if you are using product models in stock and are not sure whether or not they comply with the RoHS Directive or REACH Regulation, please contact us by selecting "Sales Inquiry" from the inquiry form.
- During the manufacturing process of this product and any of its components and materials to be used, Panasonic Industry does not intentionally use ozone-depleting substances stipulated in the Montreal Protocol and specific bromine-based flame retardants such as PBBs (Poly-Brominated Biphenyls) / PBDEs (Poly-Brominated Diphenyl Ethers). In addition, the materials used in this product are all listed as existing chemical substances based on the Act on the Regulation of Manufacture and Evaluation of Chemical Substances.
- With regard to the disposal of this product, please confirm the disposal method in each country and region where it is incorporated into your company's product and used.
- The technical information contained in this catalog is intended to show only typical operation and application circuit examples of this product. This catalog does not guarantee that such information does not infringe upon the intellectual property rights of Panasonic Industry or any third party, nor imply that the license of such rights has been granted.
- Design, materials, or process related to technical owned by Panasonic Industry are subject to change without notice.
## **Panasonic Industry will assume no liability whatsoever if the use of our company's products deviates from the contents of this catalog or does not comply with the precautions. Please be advised of these restrictions.**
10-May-24
**Matters to Be Observed When Using This Product**
## **Matters to Be Observed When Using This Product**
(Power inductor for Automotive)
## **Use environments and cleaning conditions**
- This product (inductor) is intended for standard general-purpose use in electronic equipment, and is not designed for use in the specific environments described below. Using the product in such specific environments or service conditions, therefore, may affect the performance of the product.
Please check with us about the performance and reliability of the product first before using the product.
- (1) A product splashed with water, coffee, etc., is in a wet state.
- (2) Used in a place where the product is heavily exposed to sea breeze or a corrosive gas, such as Cl2, H2S, NH3, SO2, or NOX.
- (3) Used in an outdoor environment where the product is exposed to direct sunlight, ozone, radiation, UV-rays, etc., or in a dusty place.
- Sealing the product with a resin may damage the copper wire insulation cover of the product. In such a case, consult us first.
- Immersing the product in a solvent, cleaning agent, or coating agent containing toluene or xylene for a long period may result in a significant drop in the performance of the product. In such a case, consult us first.
## **Response to anomalies and handling conditions**
- The inductor, as a single component, does not have a protective function against a problem such as overloading, short circuit, or open failure. Make sure to provide a circuit set with a protection device or circuit that protects the inductor, and confirm that smoke generation/ignition, weakened dielectric strength, lower insulation resistance, etc., do not occur.
- The temperature rise rate of the inductor changes depending on the state in which the inductor is incorporated in the circuit set. Make sure to confirm that the temperature of the inductor is equal to or lower than the temperature corresponding to the specified insulation class (heat-resistant class) when the inductor is incorporated in the circuit set.
- Applying voltage higher than the specified withstand voltage to the inductor at a dielectric strength test leads to the deterioration of the insulation performance of the inductor. Be careful to avoid this.
- Handle the inductor while protecting it from static electricity with proper electrostatic control measures. (Process/equipment) Applying voltage equal to or higher than 200 V to the inductor may change its characteristics. Keep voltage applied to the inductor lower than 200 V.
- The inductor having received mechanical stress as a result of dropping on the floor, etc., may have formed a crack on its core, etc., and therefore the performance of the inductor may have dropped significantly. Avoid using such an inductor.
- When severe mechanical stress is applied to an inductor, its core may chip or crack.
- There are also some cases where the core already has a chipped or cracked part. However, this chip or crack is negligible and has no effect on the quality of the inductor.
## ~~a~~ **Reliability and product life**
A product conforming to "AEC-Q200" refers to a product having passed some or all of the evaluation test items defined in AEC-Q200. To know the detailed specifications of individual products or specific evaluation test scores, please contact us. We issue a delivery specification sheet for each product ordered. Please confirm with the sheet when you place an order with us.
10-May-24
**Matters to Be Observed When Using This Product / Reference Information**
## ~~ooo~~ **Circuit design and circuit board design**
- When the inductor is used in a different product set among a series of similar product sets, there are times when the inductor will fail to achieve 100% of its capability because of the difference in service conditions, etc. In such a case, consult us first.
- When the inductor is used in an audible frequency range (= about 20 Hz to 20 kHz) or burst mode, it may emit a sound (beat) under certain operation conditions (current waveform conditions). This sound may be heard as noise, depending on circuits/board configurations in which the inductor is incorporated. Check for this problem before using the inductor.
- When there is a possibility that electrostatic noise is applied to circuit components, place an ESD preventing component, such as a capacitor resistant to static electricity, in a preceding stage to the inductor. In such a case, consult us first.
- To ensure insulation between the internal coil of the inductor and the upper surface of the board, avoid forming patterns or vias in which voltage exceeding the guaranteed operating voltage is applied, on the uppermost layer of the board in counter to the inductor bottom. (DUST series)
- Do not form a pattern, via, etc., on the counter to the bottom of the inductor. (MC series/* Fig.1, Dust type / *Fig.2)
- Keep a component placed around the inductor from being in contact with the surface (top face, side face) of the inductor. (MC series/* Fig. 3)
- Different from a ferrite core type with a magnetic energy concentration gap, the inductor described herein has a vertical leakage flux distribution.
Exercise special caution when using a component or a circuit configuration susceptible to leakage flux from an inductor.
**==> picture [475 x 179] intentionally omitted <==**
**----- Start of picture text -----**<br>
Counter to the bottom part<br>Counter to the bottom part 1.9<br>8.4<br>Side face Top face<br>4.4<br>Counter to the<br>bottom part<br>He Beige ——<br>2.8 (PWB) Side face<br>10<br>10.35 10.35<br>Fig.1 Fig.2 Fig.3<br>5<br>3.8 8 20.6<br>8.4<br>**----- End of picture text -----**<br>
## **Reference information** ~~Po~~
## ~~ooo~~ **Labeling on package**
On the inductor package, a product number, the number of components, and the place of origin are indicated. Usually, the place of origin is written in English.
10-May-24
Updated at June 7, 2026
Panasonic Industry is a global leader in the design and manufacture of high-quality electronic components. Renowned for a commitment to continuous innovation, the company provides the essential building blocks that empower modern engineering. From industrial automation to consumer electronics, Panasonic's components are trusted worldwide for their outstanding reliability, efficiency, and long-term performance. The extensive portfolio is anchored by a massive selection of passive components, featuring an industry-leading range of aluminium electrolytic, film, and polymer capacitors. Alongside these advanced capacitance solutions, engineers rely on Panasonic's robust power inductors and a highly versatile array of electromechanical devices, including solid-state, power, and signal relays engineered to excel in demanding environments. Beyond core passives and switching solutions, the offering encompasses critical circuit protection devices such as TVS varistors and NTC thermistors, as well as sophisticated thermal management materials. Panasonic also delivers precision light and motion sensors, highly reliable batteries, and advanced Bluetooth and WLAN connectivity modules, providing a comprehensive ecosystem of components to support next-generation technological design.
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