BPPM00151360551X00
Common Mode Choke, 550ohm, 10A, BPPM Series, 15x13x6mm
- Manufacturer: PULSE ELECTRONICS
- Product type: SMD Common Mode Chokes / Filters
- SVHC: No SVHC (04-Feb-2026)
- Impedance: 550ohm
- Inductance: -
- Product Range: BPPM Series
- Product Width: 13mm
- Qualification: -
- Product Height: 6mm
- Product Length: 15mm
- DC Current Rating: 10A
- DC Resistance Max: 3800µohm
- Inductor Case / Package: -
- Operating Temperature Max: 125°C
- Operating Temperature Min: -40°C
| Delivery and price | |
|---|---|
| Units per pack | 450 |
| Price | 1.24 € |
| Current stock | 10+ |
| Lead time | 30 days |
## **EMI Common Mode Choke**
## **BPPM Series**
## **Overview**
An EMI common mode choke (CMC) for power lines is a passive component specifically designed to suppress electromagnetic interference (EMI) in power supply circuits A full series of common mode choke is designed for excellent noise attenuation with compact sizing for use in wide range of applications. Both standard series and custom designs are available.
## **Benefits**
1. For DC Power Line Common Mode Filter
2. Miniature SMD type common mode filter for fully automated assembly
3. Wide impedance range (70Ω ~ 3000Ω) for EMI suppression
4. Operating temperature range `-` 40℃ `~` 125℃
4. Excellent solderability
## **Applications**
1. Networking
2. EMI solutions for charger
3. Media player, Dashboard
## **Product Information**
**Series Size Code (JIS/EIA) Impedance(Ω)** BPPM 5050/2020 70 ~ 3000 7060/2824 9070/3628 1211/4844 1513/6052 4850/1920
## Tee **BPPM00151360 Series Specification**
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4 1 Scope: This specification applies to the Pb Free DC Power Line Common Mode Filter<br>2 Part Numbering:<br>7<br>B PPM □□ □□□□□□ □□□□ □□<br>Internal Code<br>Tolerance<br>Inductance<br>Dimensions<br>| f e Control Code<br>Product Series<br>Grade<br>**----- End of picture text -----**<br>
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3 Rating:<br>4<br>**----- End of picture text -----**<br>
- Operating Temperature: 40℃ ~ 125℃(Including self - temperature rise) Storage Temperature: (on tape & reel): -20°C to +40°C; 75% RH max.
## **4 Standard Testing Condition:** ~~4~~
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Unless otherwise specified In case of doubt<br>Temperature Ordinary Temperature(15 to 35 ℃ ) 20 to 30 ℃<br>Humidity Ordinary Humidity(25 to 85% RH) 50 to 80 %RH<br>5 Configuration and Dimensions and Unit Weight: A: 15.0±0.5 mm<br>7<br>A1:15.5±0.5 mm<br>B: 13.0±0.4 mm<br>C: 6.0 Max. mm<br>4 1 D: 9.0 Typ. mm<br>1 4<br>E: 3.4 Typ. mm<br>551 F: 2.8 Typ. mm<br>2 3<br>3 2 G: 3.0 Typ. mm<br>Net Weight (grms)<br>Net Weight<br>Marking XXX SIZE CODE<br>| (grms)<br>Marking color:Black 151360 3.34(Typ.)<br>a<br>**----- End of picture text -----**<br>
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~~iia~~ **BPPM00151360 Series Specification**
## **6 Electrical Characteristics:** ~~_|~~
|**PT/NO.**<br>~~Tr~~|**at 100MHz**<br>**Impedance(Ω)**|**at 100MHz**<br>**Impedance(Ω)**|**Test**<br>**Frequency**|**Resistance**<br>**RDC(Ω)**<br>**Max.(1 line)**|**Rated**<br>**Current (A)**<br>**Max.**|**Insulation**<br>**Resistance**<br>**(MΩ) Min.**|**Rated**<br>**Voltage**<br>**(V)Max.**|
|---|---|---|---|---|---|---|---|
||**Min.**|**Typ.**||||||
|**BPPM00151360301X00**<br>~~Tr~~<br>Ot™~“—s;S*~SYSCSC~é‘'YC'.C'iTSSté<“CdrTC~*drSCSCsé‘~rSSS~SCSCi‘S|**250**<br>Ot™~“—s;S*~SYSCSC~é‘'YC'.C'iTSSté<“CdrTC~*drSCSCsé‘~rSSS~SCSCi‘S|**300**<br>Ot™~“—s;S*~SYSCSC~é‘'YC'.C'iTSSté<“CdrTC~*drSCSCsé‘~rSSS~SCSCi‘S<br>~~OR~~|**100MHz**<br>Ot™~“—s;S*~SYSCSC~é‘'YC'.C'iTSSté<“CdrTC~*drSCSCsé‘~rSSS~SCSCi‘S<br>~~CO~~|**4.7 Max.**<br>Ot™~“—s;S*~SYSCSC~é‘'YC'.C'iTSSté<“CdrTC~*drSCSCsé‘~rSSS~SCSCi‘S<br>~~CO~~|**13**<br>Ot™~“—s;S*~SYSCSC~é‘'YC'.C'iTSSté<“CdrTC~*drSCSCsé‘~rSSS~SCSCi‘S<br>~~CO~~|**10**<br>Ot™~“—s;S*~SYSCSC~é‘'YC'.C'iTSSté<“CdrTC~*drSCSCsé‘~rSSS~SCSCi‘S|**125**<br>Ot™~“—s;S*~SYSCSC~é‘'YC'.C'iTSSté<“CdrTC~*drSCSCsé‘~rSSS~SCSCi‘S|
|**BPPM00151360551X00**<br>~~Tr~~<br>~~SO~~|**450**<br>~~SO~~|**550**<br>~~SO~~<br>~~OR~~|**100MHz**<br>~~SO~~<br>~~CO~~<br>~~GC~~|**3.8±20%**<br>~~SO~~<br>~~CO~~<br>~~GC~~|**10**<br>~~SO~~<br>~~CO~~<br>~~GC~~|**10**<br>~~SO~~|**125**<br>~~SO~~|
|**BPPM00151360701X00**<br>~~SO~~|**500**<br>~~SO~~|**700**<br>~~OR~~<br>~~SO~~<br>~~OR~~|**100MHz**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CO~~|**7.0 Max.**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CO~~|**10**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CO~~|**10**<br>~~SO~~|**125**<br>~~SO~~|
|**BPPM00151360102X00**<br>~~SO~~|**600**<br>~~SO~~|**1000**<br>~~SO~~<br>~~OR~~|**100MHz**<br>~~GC~~<br>~~SO~~<br>~~CO~~<br>~~GC~~|**9.0 Max.**<br>~~GC~~<br>~~SO~~<br>~~CO~~<br>~~GC~~|**8.5**<br>~~GC~~<br>~~SO~~<br>~~CO~~<br>~~GC~~|**10**<br>~~SO~~|**125**<br>~~SO~~|
|**BPPM00151360152X00**<br>~~SO~~|**1100**<br>~~SO~~|**1500**<br>~~OR~~<br>~~SO~~<br>~~OR~~|**50MHz**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CO~~|**9.0 Max.**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CO~~|**8.5**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CO~~|**10**<br>~~SO~~|**125**<br>~~SO~~|
|**BPPM00151360232X00**<br>~~SO~~|**1800**<br>~~SO~~|**2300**<br>~~SO~~<br>~~OR~~|**50MHz**<br>~~GC~~<br>~~SO~~<br>~~CO~~<br>~~GC~~|**11.0 Max.**<br>~~GC~~<br>~~SO~~<br>~~CO~~<br>~~GC~~|**7.0**<br>~~GC~~<br>~~SO~~<br>~~CO~~<br>~~GC~~|**10**<br>~~SO~~|**125**<br>~~SO~~|
|**BPPM00151360322X00**<br>~~SO~~|**2700**<br>~~SO~~|**3200**<br>~~OR~~<br>~~SO~~|**40MHz**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CC~~|**15.5 Max.**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CC~~|**6.0**<br>~~CO~~<br>~~SO~~<br>~~GC~~<br>~~CC~~|**10**<br>~~SO~~|**125**<br>~~SO~~|
|**BPPM00151360432X00**<br>~~SO~~|**3700**<br>~~SO~~|**4300**<br>~~SO~~|**30MHz**<br>~~GC~~<br>~~SO~~<br>~~CC~~|**21.0 Max.**<br>~~GC~~<br>~~SO~~<br>~~CC~~|**5.0**<br>~~GC~~<br>~~SO~~<br>~~CC~~|**10**<br>~~SO~~|**125**<br>~~SO~~|
## **CIRCUIT DIAGRAM**
## **NOTE:**
1.Rated DC Current `:` Based on temperature rise ( `△` T `:` 40 `℃` Typ.)
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## **BPPM00151360 Series Specification**
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6 Electrical Characteristics:<br>_|<br>(6)-1 Impedance<br> Measured by HP4291B RF Impedance Analyzer.<br>Measurement terminal<br>(6)-2 DC Resistance<br> Measured by Chroma 16502 milliohm meter.<br>Measurement terminal<br>o<br>— _ 0)nonen —_<br>(6)-3 Insulation Resistance<br> Measured by Chroma 19073<br> Measurement voltage : 50V ,Measurement time : 3 sec.<br>Measurement terminal<br>**----- End of picture text -----**<br>
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## **BPPM00151360 Series Specification**
## **6 6.1 Construction:**
## **6.2 Material List:**
|**NO.**|**ITEM**|**DESCRIPTION & TYPE**|
|---|---|---|
|**1**|**CORE**|**FERRITE**|
|**2**|**Wire**|**Magnet Wire**|
|**3**|**Cover**|**Mayler**|
|**4**|**Marking**|**INK**|
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## **BPPM00151360 Series Specification**
## MECHANICAL
|**TEST ITEM**|**SPECIFICATION**|**TEST DETAILS**|
|---|---|---|
|**Solder ability**|**The product shall be connected to the test**<br>**circuit board by the fillet (the height is 0.2mm).**|**Apply cream solder to the printed circuit board .**<br>**Refer to clause 8 for Reflow profile.**|
|**Resistance to**<br>**Soldering heat**<br>**(reflow soldering)**|**There shall be no damage or problems.**|**Temperature profile of reflow soldering**<br>**Note:**<br>**1. Re-Flow Possible times:within 2 times**<br>**2. Nitrogen adopted is recommended while in re-flow**<br>Temperature<br>Ramp up:<br>Rampdown:<br>3°C/sec. max.<br>6°C/sec. max.<br>~SF<br>160°C<br>|<br>|<br>Soldering<br>260°C +3°C<br>| 10 - 30sec.<br>Of<br>2src<br>€Preheat<br>\€ Liquidus<br>Time<br>150-200°C<br>>217°C<br>60-120 sec.<br>60-150 sec.|
|**Terminal strength**|**The terminal electrode and the ferrite must**<br>**not damaged.**|**Solder a chip to test substrate , and then laterally apply**<br>**a load 9.8N in the arrow direction.**<br>z<br>g<br>Se<br>io]<br>a<br>2<br>=<br>&|
|**Strength on PC board**<br>**bending**|**The terminal electrode and the ferrite must**<br>**not damaged.**|**Solder a chip to test substrate and then apply a load.**<br>10<br>_20<br>ate<br>Oy<br>rf<br>Testboard:FR4 100x40x1mm<br>R10<br>«| Fallspeed:1mm7/sec.|
|**High**<br>**temperature**<br>**resistance**|**Impedance:Within±20% of the initial value.**<br>**Insulation resistance and DC resistance on the**<br>**specification(refer to clause 2-1) shall be met.**<br>**The terminal electrode and the ferrite must not**<br>**damaged.**|**After the samples shall be soldered onto the test circuit**<br>**board,the test shall be done.**<br>**Measurement : After placing for 24 hours min.**<br>**Temperature : +125±2**℃<br>**Applied voltage : Rated voltage**<br>**Applied current : Rated current**<br>**Testing time : 500±12 hours**|
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## **BPPM00151360 Series Specification**
MECHANICAL
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||||||
|---|---|---|---|---|
|TEST ITEM|SPECIFICATION|TEST DETAILS|
|Humidity|Impedance:Within±20% of the initial value.|After the samples shall be soldered onto the test circuit|
|resistance|Insulation resistance and DC resistance on the board,the test shall be done.|
|specification(refer to clause 2-1) shall be met.|Measurement : After placing for 24 hours min.|
|The terminal electrode and the ferrite must not|Temperature : +60±2|℃|, Humidity : 90 to 95 %RH|
|damaged.|Applied voltage : Rated voltage|
|Applied current : Rated current|
|Testing time : 500±12 hours|
|Thermal shock|Impedance:Within±20% of the initial value.|1 cycle|
|30 min.|
|Insulation resistance and DC resistance on the|+125|℃|30 sec|
|specification(refer to clause 2-1) shall be met.|
|The terminal electrode and the ferrite must|
|-40|℃|
|not damaged.|
|30 min.|
|Testing Time:100 cycle|
|Low|Impedance:Within±20% of the initial value.|After the samples shall be soldered onto the test|
|temperature|Insulation resistance and DC resistance on the|circuit board,the test shall be done.|
|storage|specification(refer to clause 2-1) shall be met.|Measurement : After placing for 24 hours min.|
|The terminal electrode and the ferrite must|Temperature : -40±2|℃|
|not damaged.|Testing time : 500±12 hours|
|Vibration|Impedance:Within±20% of the initial value.|After the samples shall be soldered onto the test circuit|
|Insulation resistance and DC resistance on|board,the test shall be done.|
|the specification(refer to clause 2-1)|Frequency : 10 to 55 Hz|
|shall be met.|Amplitude : 1.52 mm|
|The terminal electrode and the ferrite must|Dimension and times : X ,Y and Z directions|
|not damaged.|for 2 hours each.|
|Solderability|New solder More than 75%|Flux (rosin, isopropyl alcohol{JIS-K-1522}) shall be coated|
|over the whole of the sample before hard, the sample shall|
|then be preheated for about 2 minutes in a temperature|
|of 130|~|150|℃|and after it has been immersed to a depth|
|0.5mm below for 3±0.2 seconds fully in molten solder|
|M705 with a temperature of 245±2|℃|. More than 75% of the|
|electrode sections shall be couered|
|with new solder smoothly when the sample is taken out|
|of the solder bath.|
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## **BPPM00151360 Series Specification**
## **7 Packaging:** ~~_|~~ **7.1 Packaging -Cover Tape**
## **7.2 Packaging Quantity**
|TYPE|PCS/REEL|
|---|---|
|BPPM00151360|450|
## **7.3 Reel Dimensions**
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## **BPPM00151360 Series Specification**
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7 Packaging:<br>7.4 Tape Dimensions in mm<br>aa“9 2@.0+0.1 4.0+0.1<br>@R eeeigtest&¢ dt teoeeseeree is<br>ou — '<br>cu |<br>Unreeling<br>Direction<br>Trailer A s required Leader Leader<br>ooooo o l /O oO 0 0 e e<br>JOOUOOGOOOGOU<br>110 min. 240 min.<br>(10 p it ch min.) (20 p it ch min.) _ | 150-360<br>400 - 560<br>8 Recommended Land Pattern:<br>(STANDARD PATTERN) Unit : mm<br>551 551 551 551<br>**----- End of picture text -----**<br>
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## eee **BPPM00151360 Series Specification**
**9 Note:**
1. Please make sure that your product has been evaluated and confirmed against your specifications when our product is mounted to your product.
2. Do not knock or drop.
3. All the items and parameters in this product specification have been prescribed on the premise that our product is used for the purpose,under the condition and in the environment agreed upon between you and us. You are requested not to use our product deviating from such agreement.
4. Please keep the distance between transformer/coil and other components
- (refer to the standard IEC 950)
5. The moisture sensitivity level (MSL) of products is classified as level 1.
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## **BPPM00151360 Series Specification**
TYPICAL ELECTRICAL CHARACTERISTICS
## Frequency vs impedance
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BPPM00151360301X00<br>10000<br>_——$—<br>pe<br>SS SOOCOO<br>1000 eeee el<br>ee ee<br>a NSN<br>100 ee<br>(en eS SS SSS<br>ed a a<br>a a<br>10 ee =<br>SSS — ES Common Mode HI<br>Sse anes<br>a Differential Mode in<br>1 aee ee ee el<br>1 10 100 1000<br>Frequency(MHz)<br>BPPM00151360551X00<br>10000<br>cS<br>rT | | [trio ft FT ttt ry<br>1000 A<br>se a<br>es a eS ee<br>pe<br>100 | ee<br>eS<br>_ | eer] er | ||<br>ee te<br>eeeee<br>10 a=<br>=ee Fy<br>Common Mode<br>a OO OG OO Differential Mode is<br>= O<br>1 PTT E PeR<br>1 10 100 1000<br>Frequency(MHz)<br>Impedance(Ω)<br>Impedance(Ω)<br>**----- End of picture text -----**<br>
ATTACHMENT
## **BPPM00151360 Series Specification**
## TYPICAL ELECTRICAL CHARACTERISTICS
## Frequency vs impedance
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BPPM00151360701X00<br>10000<br>1000<br>100<br>10<br>Common Mode<br>Differential Mode<br>1<br>1 10 100 1000<br>Frequency(MHz)<br>BPPM00151360102X00<br>10000<br>Esa aeeesOOes ee Oe ee<br>1000<br>et<br>_ SSSNNSe<br>ae RN<br>ee ee eee ee<br>100<br>ae<br>Z O Common Mode<br>Set Differential Mode<br>a ee ee l<br>10<br>1 10 100 1000<br>Frequency(MHz)<br>Impedance(Ω)<br>Impedance(Ω)<br>**----- End of picture text -----**<br>
ATTACHMENT
## **BPPM00151360 Series Specification**
## TYPICAL ELECTRICAL CHARACTERISTICS
## Frequency vs impedance
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BPPM00151360152X00<br>**----- End of picture text -----**<br>
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10000<br>SSS SS —_ _—_____- ===.<br>Es es ee A Oe GG OO GO OO<br>sese ee ee ee<br>oO<br>1000 a ee)Ze<br>SSneSS reee, eeNSee<br>pA NNN<br>tt eth se<br>100 TR<br>= SSae<br>aZs |TCC| | smiTCisl tTddTT| |<br>Lae 4 ee ee eee Common Mode |<br>re 4 eee eee Differential Mode |<br>10 |L teo<br>1 10 100 1000<br>Frequency(MHz)<br>BPPM00151360232X00<br>10000<br>EsCOSSSseSSeS ASSS SSSGGG)”SSS SSeSDO 4ctGR, TGOOSSSGG SETI<br>se ee ee eee” ee ee ee ee<br>1000 eeptPo|ATEeaONea<br>ee<br>CP C—SC ‘$e WM Pw TT dT TT RTT<br>a ee Ae ee eee ee<br>p>, Re LEAT<br>100 pe | eeIN<br>= ae<br>a ck ee eee eee<br>a ae ee ee ee ee eee<br>a ee ee ee ee ee eee eee Common Mode<br>rn eneel<br>10 Ft LT LEE S| EE = Differential Mode<br>1 10 100 1000<br>Frequency(MHz)<br>Impedance(Ω)<br>Impedance(Ω)<br>**----- End of picture text -----**<br>
ATTACHMENT
## **BPPM00151360 Series Specification**
TYPICAL ELECTRICAL CHARACTERISTICS
Frequency vs impedance
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BPPM00151360322X00<br>100000<br>es a<br>10000 a<br>rr rr<br>eI —ELEEE-<br>Eee<br>1000<br>ee ES<br>——<—S = = = SS= - == ==<br>a<br>ee SS<br>100<br>ot ert |TTS<br>Common Mode<br>es a Differential Mode<br>10 e ee eeeee<br>1 10 100 1000<br>Frequency(MHz)<br>BPPM00151360432X00<br>100000<br>a<br>10000 a<br>eT<br>1000 aS<br>ee NNR<br>ae OSE<br>100 |<br>Common Mode<br>a Differential Mode<br>a a ee e e<br>10<br>1 10 100 1000<br>Frequency(MHz)<br>Impedance(Ω)<br>Impedance(Ω)<br>**----- End of picture text -----**<br>
ATTACHMENT
Updated at June 5, 2026
Pulse Electronics, a YAGEO company, is a global leader in the design and manufacturing of passive electronic components. With a legacy of innovation dating back to 1956, the company provides essential technology for the communications, computing, industrial, transportation, and IoT sectors. Pulse is recognized worldwide for delivering high-performance solutions that power advanced applications, ranging from 5G networks and electric vehicles to data centers and smart grids. The company's extensive product portfolio is heavily anchored in power and networking magnetics. This includes a comprehensive range of power inductors engineered for exceptional efficiency and reliability in demanding environments. To address complex electromagnetic compatibility challenges, Pulse also manufactures highly effective EMC and RFI suppression solutions, such as common mode chokes and filters, alongside specialized toroidal and RF inductors designed to ensure clean power delivery and optimal signal integrity. Beyond traditional magnetics, Pulse excels in the development of advanced wireless and power conversion components. Their connectivity solutions feature a wide array of high-performance RF antennas and single-band chip antennas tailored for modern connected devices. Furthermore, to support sophisticated power architectures, Pulse provides a broad spectrum of transformers—encompassing PCB-mounted designs, current sensing transformers, and precise pulse transformers—equipping engineers with robust, industry-proven components for power isolation and measurement.
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