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  • 型号: ETQ-P5M470YFM
  • 制造商: Panasonic Corporation
  • 库位|库存: xxxx|xxxx
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ETQ-P5M470YFM产品简介:

ICGOO电子元器件商城为您提供ETQ-P5M470YFM由Panasonic Corporation设计生产,在icgoo商城现货销售,并且可以通过原厂、代理商等渠道进行代购。 ETQ-P5M470YFM价格参考。Panasonic CorporationETQ-P5M470YFM封装/规格:固定值电感器, 48µH 屏蔽 电感器 2.9A 172 毫欧最大 2-SMD,J 形引线 。您可以下载ETQ-P5M470YFM参考资料、Datasheet数据手册功能说明书,资料中有ETQ-P5M470YFM 详细功能的应用电路图电压和使用方法及教程。

产品参数 图文手册 常见问题
参数 数值
产品目录

电感器,线圈,扼流圈

DC电阻(DCR)

156 毫欧

描述

COIL 47UH 1A CHOKE SMD固定电感器 49uH 20% 156mohm 1A CHOKE

产品分类

固定值电感器

品牌

Panasonic Electronic Components

产品手册

点击此处下载产品Datasheet

产品图片

rohs

符合RoHS无铅 / 符合限制有害物质指令(RoHS)规范要求

产品系列

固定电感器,Panasonic ETQ-P5M470YFMPCC-M0754M

数据手册

点击此处下载产品Datasheet

产品型号

ETQ-P5M470YFM

不同频率时的Q值

-

产品

Choke Coils

产品目录绘图

产品目录页面

点击此处下载产品Datasheet

产品种类

固定电感器

供应商器件封装

-

其它名称

ETQP5M470YFM
PCD2319TR

包装

带卷 (TR)

商标

Panasonic

外壳宽度

7 mm

外壳长度

7.5 mm

外壳高度

5.4 mm

大小/尺寸

0.295" 长 x 0.276" 宽 (7.50mm x 7.00mm)

安装类型

表面贴装

容差

±20%

封装

Reel

封装/外壳

非标准

屏蔽

无屏蔽

工作温度

-40°C ~ 150°C

工作温度范围

- 40 C to + 150 C

工厂包装数量

500

最大直流电流

1 A

最大直流电阻

156 mOhms

材料-磁芯

金属合成物

标准包装

500

测试频率

100 kHz

特色产品

http://www.digikey.com/product-highlights/cn/zh/panasonic-etq-p5-series/874

电感

47µH

电流-饱和值

-

端接类型

SMD/SMT

类型

绕线

系列

ETQ-P

芯体材料

Metal Composite

频率-测试

100kHz

频率-自谐振

-

额定电流

1A

高度-安装(最大值)

0.213"(5.40mm)

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PDF Datasheet 数据手册内容提取

Power Inductors Power Choke Coil (Automotive Grade) Series PCC-M0530M、M0540M PCC-M0854M、M0850M PCC-M0630M、M0645M PCC-M1054M、M1050M PCC-M0754M、M0750M PCC-M1050ML、M1060ML High heat resistance and high reliability using metal composite core (MC) Industrial Property : patents 21 (Registered 2/Pending 19) Features ●High heat resistance : Operation up to 150 °C including self-heating ●Fig.1 ●High-reliability : Inductance v.s. DC current, Temp. High vibration resistance as result of newly developed ETQP5M470YFM (reference) integral construction; under severe reliability conditions 60 of automotive and other strenuous applications ●High bias current : Excellent inductance stability using H) 50 μ ferrous alloy magnetic material (Fig.1) s ( 40 ●Temp. stability : uctor 30 25 °C Excellent inductance stability over broad temp. range (Fig.1) d ●Low audible (buzz) noise : In 20 110205 °°CC A gapless structure achieved with metal composite core 10 150 °C ●High efficiency : 0 0 0.5 1 1.5 2 2.5 3 Low DC resistance of winding and low eddy-current loss of the core DC Bias (A) ●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) ● 1,000 pcs/box (2 reel): PCC - M0645M,M0754M,M0750M,M0854M,M0850M,       M1054M,M1050M,M1050ML,M1060ML ● 2,000 pcs/box (2 reel): PCC - M0530M,M0540M,M0630M Explanation of Part Numbers 1 2 3 4 5 6 7 8 9 10 11 12 E T Q P M Y Product Code Classification Height Winding Inductance Core Suffix Size 4R7 → 4.7 μH Code Size 220 → 22 μH P □ 5 mm 101 → 100 μH N □ 6 mm M □ 7 mm K □ 8 mm C □ 10 mm Temperature rating Operating temperature range Tc : -40 ℃ to +150 ℃ (Including self-temperature rise) After PWB mounting Storage condition Before PWB mounting Ta : -5 ℃ to +35 ℃ 85%RH max. 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. 1-Feb-20

Power Inductors 1. Series PCC-M0530M/PCC-M0540M (ETQP3M□□□YFP/ETQP4M□□□YFP) Standard Parts Inductance *1 DCR (at 20 ℃) Rated Current (Typ. : A) MSL (mΩ) Level △T=40K △L=–30% Part No. Series L0 Tolerance Tolerance Typ. (max.) *2 *3 *4 *5 (μH) (%) (%) ETQP3M2R2YFP 2.2 22.6 ( 24.8) 4.8 5.8 10.9 1 PCC-M0530M ETQP3M3R3YFP 3.3 31.3 ( 34.4) 4.1 5.0 8.6 1 [5.5×5.0×3.0(mm)] ±20 ±10 ETQP4M4R7YFP 4.6 36.0 ( 39.6) 4.0 4.8 7.7 1 PCC-M0540M ETQP4M220YFP 22 163.0 (179.0) 1.9 2.3 3.1 1 [5.5×5.0×4.0(mm)] *1: Measured at 100 kHz *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. 52 K/W measured on 5.5×5.0×3.0 mm case size and approx. 48 K/W measured on 5.5×5.0×4.0 mm case size. See also (✽5) *4: Saturation rated current : DC current which causes L(0) drop –30 %. *5: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used. *6: 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. For higher operating temperature conditions, please contact Panasonic representative in your area. Performance Characteristics (Reference 1) ● Inductance vs DC Current [ ETQP3M2R2YFP ] [ETQP3M3R3YFP ] 2.5 5 ) ) H H μ 2.0 μ 4 ( ( s 1.5 s 3 or or ct 1.0 ct 2 u u nd 0.5 nd 1 I I 0.0 0 0 2 4 6 8 10 12 14 0 2 4 6 8 10 12 14 DC Bias (A) DC Bias (A) [ETQP4M4R7YFP ] [ETQP4M220YFP ] 5 30 uctors (μH) 432 uctors(μH) 12125500 d 1 d 5 n n I 0 I 0 0 2 4 6 8 10 12 14 0 1 2 3 4 5 DC Bias (A) DC Bias(A) 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. 1-Feb-20

Power Inductors Performance Characteristics (Reference 2) ● 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 [ ETQP3M2R2YFP ] [ETQP3M3R3YFP ] K) 80 K) 80 T( T( Δ 60 Δ 60 e e e ris 40 e ris 40 ur ur at 20 at 20 er er p p Tem 0 0 1 2 3 4 5 6 7 8 Tem 0 0 1 2 3 4 5 6 7 DC Bias(A) DC Bias(A) [ETQP4M4R7YFP ] [ETQP4M220YFP ] K) 80 K) 80 T( T( Δ 60 Δ 60 e e s s e ri 40 e ri 40 ur ur at 20 at 20 er er p p m 0 m 0 e 0 1 2 3 4 5 6 7 e 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 T T DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors 2. Series PCC-M0630M/PCC-M0645M (ETQP3M□□□YFN/ETQP4M□□□YFN) Standard Parts Inductance *1 DCR (at 20 ℃) Rated Current (Typ. : A) MSL (mΩ) △T=40K △L=–30% Level Part No. Series L0 Tolerance Tolerance Typ. (max.) *2 *3 *4 *5 (μH) (%) (%) ETQP3MR68YFN 0.68 6.30 (6.90) 9.8 12.0 24.0 1 PCC-M0630M ETQP3M1R0YFN 1.0 7.90 (8.70) 8.8 10.7 20.0 1 [6.5×6.0×3.0(mm)] ETQP4M2R2YFN 2.2 10.40 (11.44) 8.0 10.2 14.4 1 ETQP4M3R3YFN 3.3 16.10 (17.71) 6.4 8.2 13.3 1 ETQP4M6R8YFN 6.8 ±20 39.30 (43.20) ±10 4.1 5.2 10.0 1 PCC-M0645M ETQP4M100YFN 10 54.20 (59.60) 3.5 4.5 8.3 1 [6.5×6.0×4.5(mm)] ETQP4M220YFN 22 126.00 (138.60) 2.3 2.9 6.0 1 ETQP4M330YFN 33 172.00 (189.20) 2.0 2.5 4.1 3 ETQP4M470YFN 47 210.00 (231.00) 1.8 2.2 3.8 1 *1: Measured at 100 kHz *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. 44 K/W measured on 6.5×6.0×3.0 mm case size and approx. 37 K/W measured on 6.5×6.0×4.5 mm case size. See also (✽5) *4: Saturation rated current : DC current which causes L(0) drop –30 %. *5: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used. *6: 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. For higher operating temperature conditions, please contact Panasonic representative in your area. Performance Characteristics (Reference 1) ● Inductance vs DC Current [ETQP3MR68YFN ] [ETQP3M1R0YFN ] [ETQP4M2R2YFN ] 0.7 3 1.0 0.6 μH)0.5 μH) 0.8 μH) 2 s(0.4 s( 0.6 s( ductor00..23 ductor 0.4 ductor 1 In0.1 In 0.2 In 0 0.0 0 4 8 12 16 20 24 0.0 0 5 10 15 20 0 5 10 15 20 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP4M3R3YFN ] [ETQP4M6R8YFN ] [ETQP4M100YFN ] 4 8 12 7 H) 3 H) 6 H) 10 μ μ μ ( ( 5 ( 8 s s s or 2 or 4 or 6 ct ct 3 ct u u u 4 nd 1 nd 2 nd I I 1 I 2 0 0 0 0 2 4 6 8 10 12 14161820 0 1 2 3 4 5 6 7 8 9 10 0 1 2 3 4 5 6 7 8 9 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP4M220YFN ] [ETQP4M330YFN ] [ETQP4M470YFN ] 30 40 50 H) 25 H) H) 40 μ μ 30 μ ( 20 ( ( s s s 30 or 15 or 20 or duct 10 duct duct 20 n n 10 n I 5 I I 10 0 0 0 0 2 4 6 8 10 12 0 0.5 1 1.5 2 2.5 33.5 4 4.5 5 0 0.5 1 1.5 2 2.53 3.5 4 4.55 DC Bias(A) DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors Performance Characteristics (Reference 2) ● 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 [ETQP3MR68YFN ] [ETQP3M1R0YFN] [ETQP4M2R2YFN ] K)80 K) 80 K) 80 ( ( ( T T T Δ Δ Δ e 60 e 60 e 60 s s s ri ri ri e 40 e 40 e 40 ur ur ur at at at er20 er 20 er 20 p p p m m m Te 0 Te 0 Te 0 0 2 4 6 8 10 1214 16 18 0 2 4 6 8 10 12 14 16 18 0 2 4 6 8 10 12 14 16 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP4M3R3YFN ] [ETQP4M6R8YFN ] [ETQP4M100YFN ] mperature rise ΔT(K)24860000 mperature rise ΔT(K) 24860000 mperature rise ΔT(K) 24680000 Te 0 Te 0 Te 0 0 2 4 6 8 10 12 0 1 2 3 4 5 6 7 0 1 2 3 4 5 6 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP4M220YFN ] [ETQP4M330YFN ] [ETQP4M470YFN ] K)80 K) 80 K) 80 T( T( T( Δ Δ Δ ure rise 4600 ure rise 4600 ure rise 4600 perat20 perat 20 perat 20 m m m Te 0 Te 0 Te 0 0 1 2 3 4 0 0.5 1 1.5 2 2.5 3 0 0.5 1 1.5 2 2.5 3 DC Bias(A) DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors 3. Series PCC-M0754M/PCC-M750M (ETQP5M□□□YFM/ETQP5M□□□YGM) Standard Parts Inductance *1 DCR (at 20 ℃) Rated Current (Typ. : A) MSL (mΩ) △T=40K △L=–30% Level Part No. Series L0 Tolerance Tolerance Typ. (max.) *2 *3 *4 *5 (μH) (%) (%) ETQP5M3R3YFM 3.3 11.90 (13.09) 8.3 10.4 14.4 1 ETQP5M4R7YFM 4.7 20.40 (22.50) 6.3 8.0 13.1 1 ETQP5M6R8YFM 6.8 26.70 (29.40) 5.5 6.9 12.1 1 ETQP5M100YFM 10 37.60 (41.30) 4.7 5.7 10.6 1 PCC-M0754M ETQP5M220YFM 22 92.00 (102.00) 3.0 3.7 5.8 1 [7.5×7.0×5.4(mm)] ±20 ±10 ETQP5M330YFM 33 120.00 (132.00) 2.6 3.3 4.8 1 ETQP5M470YFM 48 156.00 (172.00) 2.3 2.9 4.1 1 ETQP5M680YFM 66 251.00 (276.10) 1.8 2.3 3.9 1 PCC-M0750M ETQP5M101YGM 95 348.00 (382.80) 1.4 1.9 3.1 3 [7.5×7.0×5.0(mm)] *1: Measured at 100 kHz *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 is approx. 31 K/W measured on 7.5×7.0×5.4 mm case size and approx.  29 K/W measured on 7.5×7.0×5.0 mm case size. See also (✽5) *4: Saturation rated current : DC current which causes L(0) drop –30 %. *5: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used. *6: 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. For higher operating temperature conditions, please contact Panasonic representative in your area. Performance Characteristics (Reference 1) ● Inductance vs DC Current [ETQP5M3R3YFM ] [ETQP5M4R7YFM ] [ETQP5M6R8YFM] 4 6 8 7 5 H) 3 H) H) 6 (μ (μ 4 (μ 5 ors 2 ors 3 ors 4 uct uct 2 uct 3 nd 1 nd nd 2 I I 1 I 1 0 0 0 0 5 10 15 20 0 5 10 15 20 0 2 4 6 8 10 12 14 16 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M100YFM ] [ETQP5M220YFM ] [ETQP5M330YFM ] 12 25 40 H) 10 μH) 20 μH) 30 μ 8 ( ( uctors( 46 ductors 1105 ductors 20 nd In 5 In 10 I 2 0 0 0 0 2 4 6 8 10 12 14 16 0 2 4 6 8 10 0 2 4 6 8 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M470YFM ] [ETQP5M680YFM ] [ETQP5M101YGM ] 80 100 60 nductors(μH) 23450000 Inductors(μH) 246000 Inductors(μH) 24860000 I 10 0 0 0 1 2 3 4 5 6 0 1 2 3 4 5 6 7 8 0 0 1 2 3 4 5 DC Bias(A) DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors Performance Characteristics (Reference 2) ● 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 [ETQP5M3R3YFM ] [ETQP5M4R7YFM ] [ETQP5M6R8YFM] Temperature rise ΔT(K) 2486000000 2 4 6 8 10 12 14 Temperature rise ΔT(K) 248600000 0 2 4 6 8 10 Temperature rise ΔT(K) 248600000 0 2 4 6 8 10 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M100YFM ] [ETQP5M220YFM ] [ETQP5M330YFM ] ) 80 ) 80 ) 80 K K K ( ( ( T T T Δ 60 Δ 60 Δ 60 e e e s s s e ri 40 e ri 40 e ri 40 ur ur ur erat 20 erat 20 erat 20 p p p m m m e 0 e 0 e 0 T 0 2 4 6 8 T 0 1 2 3 4 5 T 0 1 2 3 4 5 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M470YFM ] [ETQP5M680YFM ] [ETQP5M101YGM ] ) T(K 80 K) 80 K) 80 ature rise Δ 4600 ure rise ΔT( 4600 ure rise ΔT( 4600 mper 20 perat 20 perat 20 Te 00 1 2 3 4 Tem 0 0 1 2 3 4 Tem 0 0 0.5 1 1.5 2 2.5 3 DC Bias(A) DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors 4. Series PCC-M0854M/PCC-M0850M (ETQP5M□□□YFK/ETQP5M□□□YGK) Standard Parts Inductance *1 DCR (at 20 ℃) Rated Current (Typ. : A) MSL (mΩ) △T=40K △L=–30% Level Part No. Series L0 Tolerance Tolerance Typ. (max.) *2 *3 *4 *5 (μH) (%) (%) ETQP5M2R5YFK 2.5 7.60 (8.40) 11.9 14.0 20.1 1 ETQP5M3R3YFK 3.3 9.50 (10.45) 10.7 12.5 17.9 1 ETQP5M100YFK 10 33.40 (36.80) 5.7 6.7 13.0 1 PCC-M0854M ETQP5M150YFK 15 48.20 (53.10) 4.7 5.5 7.2 1 [8.5×8.0×5.4(mm)] ±20 ±10 ETQP5M220YFK 22 63.00 (70.00) 4.1 4.8 6.9 1 ETQP5M470YFK 48 125.00 (138.00) 2.9 3.4 5.4 1 PCC-M0850M ETQP5M101YGK 100 302.00 (333.00) 1.7 2.1 3.0 3 [8.5×8.0×5.0(mm)] *1: Measured at 100 kHz *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. 27 K/W measured on 8.5×8.0×5.4 mm case size and approx. 29 K/W measured on 8.5×8.0×5.0 mm case size. See also (✽5) *4: Saturation rated current : DC current which causes L(0) drop –30 %. *5: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used. *6: 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. For higher operating temperature conditions, please contact Panasonic representative in your area. Performance Characteristics (Reference 1) ● Inductance vs DC Current [ETQP5M2R5YFK ] [ETQP5M3R3YFK ] [ETQP5M100YFK ] 3.0 4 12 (μH) 22..50 (μH) 3 (μH) 180 Inductors 110...505 Inductors 12 Inductors 426 0.0 0 0 0 5 10 15 20 25 30 0 5 10 15 20 25 30 0 2 4 6 8 10 12 14 16 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M150YFK ] [ETQP5M220YFK ] [ETQ5M470YFK ] 20 25 60 H) 15 H) 20 H)50 (μ (μ 15 (μ40 nductors 150 nductors 150 nductors123000 I I I 0 0 0 0 2 4 6 8 10 12 0 2 4 6 8 10 0 2 4 6 8 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M101YGK ] 120 ) 100 H (μ 80 s or 60 uct 40 d n 20 I 0 0 1 2 3 4 5 DC Bias(A) 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. 1-Feb-20

Power Inductors Performance Characteristics (Reference 2) ● 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 [ETQP5M2R5YFK ] [ETQP5M3R3YFK ] [ETQP5M100YFK ] ) ) ) T(K 80 T(K 80 T(K80 Δ Δ Δ se 60 se 60 se 60 ri ri ri ure 40 ure 40 ure 40 at at at er 20 er 20 er20 p p p m m m e 0 e 0 e 0 T 0 4 8 12 16 20 T 0 3 6 9 12 15 18 T 0 2 4 6 8 10 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M150YFK ] [ETQP5M220YFK ] [ETQ5M470YFK ] ) ) ) K 80 K 80 K 80 ( ( ( T T T Δ Δ Δ e 60 e 60 e 60 s s s ri ri ri e 40 e 40 e 40 ur ur ur erat 20 erat 20 erat 20 p p p m m m e 0 e 0 e 0 T 0 1 2 3 4 5 6 7 8 T 0 1 2 3 4 5 6 7 T 0 1 2 3 4 5 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M101YGK ] ) K 80 ( T Δ e 60 s ri e 40 ur erat 20 p m 0 e T 0 0.5 1.0 1.5 2.0 2.5 3.0 DC Bias(A) 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. 1-Feb-20

Power Inductors 5. Series PCC-M1054M/PCC-M1050M (ETQP5M□□□YFC/ETQP5M□□□YGC) Standard Parts Inductance *1 DCR (at 20 ℃) Rated Current (Typ. : A) MSL (mΩ) △T=40K △L=–30% Level Part No. Series L0 Tolerance Tolerance Typ. (max.) *2 *3 *4 *5 (μH) (%) (%) ETQP5M1R5YFC 1.45 3.80 (4.20) 17.9 21.4 35.1 1 ETQP5M2R5YFC 2.5 5.30 (5.90) 15.1 18.1 27.2 1 ETQP5M3R3YFC 3.3 7.10 (7.90) 13.1 15.7 22.7 1 ETQP5M4R7YFC 4.7 10.20 (11.30) 10.9 13.1 20.0 1 ETQP5M100YFC 10 23.80 (26.20) 7.1 8.5 10.7 1 PCC-M1054M ETQP5M150YFC 15 35.60 (39.16) 5.8 7.0 12.0 1 [10.7×10.0×5.4(mm)] ETQP5M220YFC 22 ±20 45.00 (50.00) ±10 5.2 6.2 8.8 1 ETQP5M330YFC 32.5 68.50 ( 75.40) 4.2 5.0 7.6 1 ETQP5M470YFC 47 99.00 (108.90) 3.5 4.2 6.8 1 ETQP5M680YFC 66 136.00 (149.60) 3.0 3.6 4.9 1 ETQP5M3R3YGC 3.3 7.10 (7.81) 11.8 14.7 23.4 3 NEW PCC-M1050M ETQP5M101YGC 97 208.00 (229.00) 2.2 2.7 3.0 3 [10.7×10.0×5.0(mm)] *1: Measured at 100 kHz *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. 23 K/W measured on 10.7×10.0×5.4 mm case size and approx. 26 K/W measured on 10.7×10.0×5.0 mm case size. See also (✽5) *4: Saturation rated current : DC current which causes L(0) drop –30 %. *5: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used. *6: 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. For higher operating temperature conditions, please contact Panasonic representative in your area. Performance Characteristics (Reference 1) ● Inductance vs DC Current [ETQP5M1R5YFC ] [ETQP5M2R5YFC ] [ETQP5M3R3YFC ] Inductors(μH) 0101....4286 Inductors(μH) 121023......550500 Inductors(μH) 4312 0.0 0.0 0 0 10 20 30 40 0 10 20 30 40 0 5 10 15 20 25 30 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M4R7YFC ] [ETQP5M100YFC ] [ETQP5M150YFC ] 6 12 20 Inductors(μH) 043125 Inductors(μH) 1042860 Inductors(μH) 110505 0 5 10 15 20 0 2 4 6 8 10 12 14 16 0 2 4 6 8 10 12 14 DC Bias(A) DC Bias(A) DC Bias(A) [ETQP5M220YFC ] [ETQP5M330YFC ] [ ETQP5M470YFC ] 25 40 60 Inductors(μH) 12105005 Inductors(μH) 1230000 Inductors(μH) 41235000000 0 2 4 6 8 10 0 2 4 6 8 10 0 2 4 6 8 10 DC Bias(A) DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors Performance Characteristics (Reference 1) [ETQP5M680YFC ] [ETQP5M3R3YGC ] [ETQP5M101YGC ] Inductors(μH) 24860000 Inductors(μH) 4312 Inductors(μH) 11248620000000 0 0 0 0 1 2 3 4 5 6 7 8 9 0 5 10 15 20 25 30 35 0 1 2 3 4 5 6 7 DC Bias (A) DC Bias (A) DC Bias(A) Performance Characteristics (Reference 2) ● 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 [ETQP5M1R5YFC ] [ETQP5M2R5YFC] [ETQP5M3R3YFC ] ) ) ) K K K T( 80 T( 80 T( 80 Δ Δ Δ e 60 e 60 e 60 s s s ri ri ri e 40 e 40 e 40 ur ur ur erat 20 erat 20 erat 20 p p p m 0 m 0 m 0 e 0 5 10 15 20 25 30 e 0 5 10 15 20 25 e 0 4 8 12 16 20 24 T T T DCBias (A) DC Bias(A) DC Bias(A) [ETQP5M4R7YFC ] [ETQP5M100YFC ] [ETQP5M150YFC ] ) ) ) (K 80 (K 80 (K 80 T T T Δ Δ Δ e 60 e 60 e 60 s s s ri ri ri e 40 e 40 e 40 ur ur ur at 20 at 20 at 20 er er er emp 0 0 4 8 12 16 20 emp 0 0 2 4 6 8 10 12 emp 0 0 2 4 6 8 10 T DC Bias(A) T DC Bias(A) T DC Bias(A) [ETQP5M220YFC ] [ETQP5M330YFC ] [ETQP5M470YFC ] ) ) ) (K 80 (K 80 (K 80 T T T Δ Δ Δ e 60 e 60 e 60 s s s e ri 40 e ri 40 e ri 40 ur ur ur at 20 at 20 at 20 er er er mp 0 0 2 4 6 8 10 mp 0 0 1 2 3 4 5 6 7 mp 0 0 1 2 3 4 e e e T DC Bias(A) T DC Bias(A) T DC Bias(A) ) [ETQP5M680YFC ] ) [ETQP5M3R3YGC ] ) [ETQP5M101YGC ] K K K ( 80 ( 80 ( 80 T T T Δ Δ Δ e 60 e 60 e 60 s s s ri ri ri e 40 e 40 e 40 ur ur ur at 20 at 20 at 20 er er er mp 0 mp 0 mp 0 e 0 1 2 3 4 5 6 e 0 5 10 15 20 e 0 1 2 3 4 5 T T T DC Bias(A) DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors 6. Series PCC-M1050ML/PCC-M1060ML (ETQP5M□□□YLC/ETQP6M□□□YLC) Standard Parts Inductance *1 DCR (at 20 ℃) Rated Current (Typ. : A) MSL (mΩ) Level △T=40K △L=–30% Part No. Series L0 Tolerance Tolerance Typ. (max.) *2 *3 *4 *5 (μH) (%) (%) ETQP5MR33YLC 0.33 1.10 (1.21) 33.2 39.7 56.7 1 ETQP5MR68YLC 0.68 1.75 (1.93) 26.3 31.5 40.0 1 PCC-M1050ML ETQP5M1R0YLC 1.0 2.30 (2.53) 23.0 27.5 37.8 1 [10.9×10.0×5.0(mm)] ETQP5M2R0YLC 2.0 4.60 (5.06) 16.2 19.4 31.3 1 ±20 ±10 ETQP6M1R5YLC 1.5 3.20 (3.52) 19.5 23.3 32.0 1 ETQP6M2R5YLC 2.5 4.55 (5.00) 16.3 19.6 25.8 1 PCC-M1060ML ETQP6M3R3YLC 3.3 6.00 (6.60) 14.2 17.0 26.3 1 [10.9×10.0×6.0(mm)] ETQP6M4R7YLC 4.7 8.70 (9.57) 11.8 14.1 22.5 1 *1: Measured at 100 kHz *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. 23 K/W measured on 10.9×10.0×5.0 mm case size and approx. 23 K/W measured on 10.9×10.0×6.0 mm case size. See also (✽5) *4: Saturation rated current : DC current which causes L(0) drop –30 %. *5: The solderability is guaranteed for 1 year only. The product out of expiration date shall not be used. *6: 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. For higher operating temperature conditions, please contact Panasonic representative in your area. Performance Characteristics (Reference 1) ● Inductance vs DC Current [ETQP5MR33YLC ] [ETQP5MR68YLC ] 0.4 0.7 H) H) 0.6 (μ 0.3 (μ 0.5 ors 0.2 ors 0.4 ct ct 0.3 du 0.1 du 0.2 In In 0.1 0.0 0.0 0 10 20 30 40 50 60 70 80 0 10 20 30 40 50 60 DC Bias(A) DC Bias(A) [ETQP5M1R0YLC ] [ETQP5M2R0YLC ] 1.2 2.5 H) 1.0 H) 2.0 (μ 0.8 (μ 1.5 ors 0.6 ors ct 0.4 ct 1.0 u u d 0.2 d 0.5 n n I 0.0 I 0.0 0 10 20 30 40 50 60 0 5 10 15 20 25 30 35 40 45 50 DC Bias(A) DC Bias(A) [ETQP6M1R5YLC ] [ETQP6M2R5YLC ] 2.0 3.0 H) H) 2.5 (μ 1.5 (μ 2.0 s s or 1.0 or 1.5 ct ct 1.0 u u nd 0.5 nd 0.5 I I 0.0 0.0 0 5 10 15 20 25 30 35 40 45 50 0 10 20 30 40 DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors Performance Characteristics (Reference 1) [ ETQP6M3R3YLC ] [ ETQP6M4R7YLC ] (μH) 233...505 (μH) 45 Inductors 1102....5050 Inductors 312 0.0 0 0 5 10 15 20 25 30 35 40 0 5 10 15 20 25 30 35 40 DC Bias(A) DC Bias(A) Performance Characteristics (Reference 2) ● 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 [ETQP5MR33YLC ] [ETQP5MR68YLC ] K) K) T( 80 T( 80 Δ Δ e 60 e 60 e ris 40 e ris 40 ur ur erat 20 erat 20 mp 0 mp 0 e 0 10 20 30 40 50 60 e 0 5 10 15 20 25 30 35 40 45 T T DC Bias(A) DC Bias(A) [ETQP5M1R0YLC ] [ETQP5M2R0YLC ] T(K) 80 T(K) 80 e Δ 60 e Δ 60 e ris 40 e ris 40 ur ur at 20 at 20 er er mp 0 mp 0 e 0 5 10 15 20 25 30 35 e 0 5 10 15 20 25 30 T T DC Bias(A) DC Bias(A) [ETQP6M1R5YLC ] [ETQP6M2R5YLC ] K) 80 K) 80 ΔT( 60 ΔT( 60 e e e ris 40 e ris 40 atur 20 atur 20 er 0 er 0 p p m 0 5 10 15 20 25 30 35 m 0 4 8 12 16 20 24 28 e e T DC Bias(A) T DC Bias(A) [ETQP6M3R3YLC ] [ETQP6M4R7YLC ] ) ) (K 80 (K 80 T T Δ Δ e 60 e 60 s s ri ri e 40 e 40 ur ur at 20 at 20 er er p 0 p 0 m m e 0 5 10 15 20 25 e 0 5 10 15 20 T T DC Bias(A) DC Bias(A) 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. 1-Feb-20

Power Inductors Dimensions in mm (not to scale) Dimensional tolerance unless noted : ±0.5 Series PCC-M0530M Series PCC-M0630M Series PCC-M0540M Series PCC-M0645M (ETQP3M□□□YFP/ETQP4M□□□YFP) (ETQP3M□□□YFN/ETQP4M□□□YFN) Inductance Suffix Inductance Suffix 5.5±0.4 6.5±0.4 5.0±0.4 3.0±0.3 6.0±0.4 3.0±0.3 Date Code Polarity 1.2 1.2 Date Code Polarity 1.5 1.5 n. Series H n. Series H 5mi H M0530M 3.0 max. 5mi H M0630M 3.0 max. 0.0 M0540M 4.0 max. 0.0 M0645M 4.5 max. Series PCC-M0754M Series PCC-M0854M Series PCC-M0750M Series PCC-M0850M (ETQP5M□□□YFM/YGM) (ETQP5M□□□YFK/YGK) Inductance Suffix Inductance Suffix 7.5±0.4 8.5±0.4 0±0.4 3.0±0.3 ±0.4 0±0.3 7. 0 3. 8. Date Code Polarity 2.0 2.0 Date Code Polarity 2.0 2.0 Series H 1min. H MM00775540MM 55..40 mmaaxx.. min. H MS0e8r5ie4sM 5.4 Hmax. 0. 1 0. M0850M 5.0 max. Series PCC-M1054M Series PCC-M1050ML Series PCC-M1050M Series PCC-M1060ML (ETQP5M□□□YFC/YGC) (ETQP5M□□□YLC/ETQP6M□□□YLC) Inductance Suffix Inductance Suffix 10.7±0.5 10.9±0.6 3 0.4 ±0. 0.4 0.3 ± 2 ± ± 0.0 4. 0.0 7.3 1 1 Date Code Polarity Date Code Polarity 2.0 2.0 1.8 1.8 n. Series H n. Series H mi H M1054M 5.4 max. mi M1050ML 5.0 max. 1 5 H 0. M1050M 5.0 max. 0.1 M1060ML 6.0 max. 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. 1-Feb-20

Power Inductors Recommended Land Pattern in mm (not to scale) Dimensional tolerance unless noted : ±0.5 Series PCC-M0530M Series PCC-M0630M Series PCC-M0754M Series PCC-M0540M Series PCC-M0645M Series PCC-M0750M (ETQP3M□□□YFP/ETQP4M□□□YFP) (ETQP3M□□□YFN/ETQP4M□□□YFN) (ETQP5M□□□YFM/YGM) 7.1 8.4 6.1 6 0 6 0 3. 7. .6 .0 . . 3 8 3 6 2.2 2.8 2.8 7.2 8.8 10.0 ※Don't wire on the pattern on shaded portion the PWB. Series PCC-M0854M Series PCC-M1054M Series PCC-M1050ML Series PCC-M0850M Series PCC-M1050M Series PCC-M1060ML (ETQP5M□□□YFK/YGK) (ETQP5M□□□YFC/YGC) (ETQP5M□□□YLC/ETQP6M□□□YLC) 9.4 11.7 11.9 00 80 9 0 4.9. 4.1. 7. 1. 1 1 3.8 6.1 6.5 12.4 13.7 13.9 ※Don't wire on the pattern on shaded portion the PWB. ■ 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. 1-Feb-20

Power Inductors Packaging Methods (Taping) ● Embossed Carrier Tape Dimensions in mm (not to scale) P2 P0 t t2 E 1 A F W B P1 Taperunningdirection Series A B W E F P P P φD t t 1 2 0 0 1 2 PCC-M0530M 3.3 5.6 6.1 PCC-M0540M 4.3 PCC-M0630M 3.3 7.1 6.6 16.0 7.5 12.0 0.4 PCC-M0645M 5.0 1.75 2.0 4.0 1.5 PCC-M0754M/M0750M 8.1 7.6 6.0 PCC-M0854M/M0850M 9.1 8.6 PCC-M1054M/M1050M 10.65 11.75 24.0 11.5 16.0 0.5 6.35 PCC-M1050ML/M1060ML ● Taping Reel Dimensions in mm (not to scale) Serise A B C D E W E PCC-M0530M/M0540M C PCC-M0630M/M0645M B 17.5 PCC-M0754M/M0750M 330 100 13 21 2 D PCC-M0854M/M0850M W PCC-M1054M/M1050M 25.5 PCC-M1050ML/M1060ML A Component Placement (Taping) Serise Serise M0630M/M0645M M0530M/M0540M al M0754M/M0750M M1054M/M1050M min M0854M/M0850M M1050ML/M1060ML er T Terminal Standard Packing Quantity/Reel Serise Part No. Minimum Quantity/ Packing Unit Quantity per reel PCC-M0530M ETQP3M YFP PCC-M0540M ETQP4M YFP 2,000 pcs / box(2 reel) 1,000 pcs ◻◻◻ PCC-M0630M ETQP3M YFN ◻◻◻ PCC-M0645M ETQP4M YFN ◻◻◻ PCC-M0754M ETQP5M YFM ◻◻◻ PCC-M0750M ETQP5M YGM ◻◻◻ PCC-M0854M ETQP5M YFK ◻◻◻ PCC-M0850M ETQP5M YGK 1,000 pcs / box(2 reel) 500 pcs ◻◻◻ PCC-M1054M ETQP5M YFC ◻◻◻ PCC-M1050M ETQP5M YGC ◻◻◻ PCC-M1050ML ETQP5M YLC ◻◻◻ PCC-M1060ML ETQP6M YLC ◻◻◻ ◻◻◻ 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. 1-Feb-20

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Power Inductors Safety Precautions (Common precautions for Power Choke Coils (Automotive Grade) : Series DUST, Series MC) ・ When using our products, no matter what sort of equipment they might be used for, be sure to make a written agreement on the specifications with us in advance. The design and specifications in this catalog are subject to change without prior notice. ・ Do not use the products beyond the specifications described in this catalog. ・ This catalog explains the quality and performance of the products as individual components. Before use, check and evaluate their operations when installed in your products. ・ Install the following systems for a failsafe design to ensure safety if these products are to be used in equipment where a defect in these products may cause the loss of human life or other significant damage, such as damage to vehicles (automobile, train, vessel), traffic lights, medical equipment, aerospace equipment, electric heating appliances, combustion/gas equipment, rotating equipment, and disaster/crime prevention equipment. ✽ Systems equipped with a protection circuit and a protection device. ✽ Systems equipped with a redundant circuit or other system to prevent an unsafe status in the event of a single fault. ■Precautions for use 1. Provision to abnormal condition This power choke coil itself does not have any protective function in abnormal condition such as overload, short-circuit and open-circuit conditions, etc. Therefore, it shall be confirmed as the end product that there is no risk of smoking, fire, dielectric withstand voltage, insulation resistance, etc. in abnormal conditions to provide protective devices and/or protection circuit in the end product. 2. Temperature rise Temperature rise of power choke coil depends on the installation condition in end products. It shall be confirmed in the actual end product that temperature rise of power choke coil is in the limit of specified temperature class. 3. Dielectric strength Dielectric withstanding test with higher voltage than specific value will damage Insulating material and shorten its life. 4. Water This Power choke coil must not be used in wet condition by water, coffee or any liquid because insulation strength becomes very low in such condition. 5. Potting If this power choke coil is potted in some compound, coating material of magnet wire might be occasionally damaged. Please ask us if you intend to pot this power choke coil. 6. Model When this power choke coil is used in a similar or new product to the original one, it might be unable to satisfy he specifications due to difference of condition of usage. Please ask us if you use this power choke coil in the manner such as above. 7. Drop If the power choke coil receives mechanical stress such as drop, characteristics may become poor (due to damage on coil bobbin, etc.). Never use such stressed power choke coil. 8. Buzz Noise When this coil is used in the frequency band of the audible range (≒ 20 Hz to 20 kHz), or, when using in burst mode, depending on the operating conditions (conditions of the energized waveform) sounds (buzz noise) may occur. Depending on the circuit / board installation environment it may be heard as abnormal sounds, so please check in advance. 9. Solvent (Series MC) If this power choke coil is dipped in the cleaning agent, and the coating agent of the toluene and the xylene system, there is a possibility that the performance decreases greatly. Please ask us if you intend to pot this power choke coil. 10. Static electricity measures (Series MC) ① Circuit design Please set up the ESD measures parts such as capacitors in the former steps of this power choke coil for static electricity when there is a possibility that static electricity is impressed to the choke coil on the circuit. Moreover, please consult our company about such a case once. 1-Oct-19

Power Inductors ②Treatment with single Take countermeasures against static electricity when using single power choke coil. (process and equipment) There is a possibility that the characteristic changes when the voltage of 200 V or more is impressed to this power choke coil. Please handle 200 V or less. 11. Printed circuit board design ①Land pattern and Via which exceed Operating Voltage, should not be placed top layer PWB under the products for keeping isolation between inside coil and surface of PWB. (Series DUST) ②To the opposing part in this power choke coil bottom please install neither pattern nor the beer, etc. (Series MC) The opposing part in the choke coil bottom 8.4 3.8 8 2.8 10 ③Parts arranged around this power choke coil do Side Top side not touch the surface of this power choke coil The opposing (Top side and side). (Series MC) part in the choke coil bottom (PWB) Side ④This power choke coil is different from the ferrite core-type that installs general concentration GAP. It has the leakage magnetic bunch distribution of the choke coil to the vertical direction. Please be cautious when using parts and circuit compositions which are easily affected by the leakage flux. 12. Other using emviroment This power choke coil is not designed for the use in the following, special environment. Therefore, please do not use it in the following special environment. • Use in place where a lot of causticity gases such as sea breeze, Cl , H S, NH , SO , and NOx exist. 2 2 3 2 • Use in place where out-of-door exposure and direct sunshine strike. 13. Core Chipping and Core Crack This choke coil has a possibility to make partial chipping or crack in the core due to excessive mechanical stress  from outside, and might have initially a partial chipping and/or cracks that do not affect the quality. 14. Keeping environment If this power choke coil is kept under following environment and condition, there is a possibility that the performance and soldering decreases greatly. • Keep in place where a lot of causticity gases such as sea breeze, Cl , H S, NH , SO , and NOx exist. 2 2 3 2 • Keep in place where out-of-door exposure and direct sunshine strike. ■AEC-Q200 Compliant The products are tested based on all or part of the test conditions and methods defined in AEC-Q200. Please consult with Panasonic for the details of the product specification and specific evaluation test results, etc., and please review and approve Panasonic's product specification before ordering. <Package markings> Package markings include the product number, quantity, and country of origin. In principle, the country of origin should be indicated in English. 1-Oct-19