Produits VOOHU WHPL1211A Common Mode Chokes

Produits d’inductance

WHPL1211A Common Mode Chokes

WHPL1211A shares a size band with WHAL1211A but carries its own specification. Similar naming is not a licence to treat them as equivalents, so read both datasheets and compare impedance at the frequency your measurement actually fails.

Recherche et sélection de références

Trouver des références pour WHPL1211A Common Mode Chokes

Le tableau utilise les fiches produits actuelles du site anglophone, les critères de sélection publiés et les liens vers les fichiers techniques propres à chaque référence.

* Colonnes Image et Référence figées · faites glisser horizontalement pour consulter toutes les caractéristiques

Résultats de la sélection pour WHPL1211A Common Mode Chokes
Image Référence Fiche technique Comparer Téléchargements Dimensions (L×l×H max.)Z (Ω) à 100 MHz/0,1 V, min.Z (Ω) à 100 MHz/0,1 V, réf.Résistance DC (mΩ), max.Courant nominal DC (A), max.Résistance d’isolement (MΩ), min.Tension nominale (V), max. Échantillon
VOOHU WHPL-1211A-231T0 WHPL1211A Common Mode Chokes WHPL-1211A-231T0 SPEC 12118023041010125
VOOHU WHACM12A65R272 WHPL1211A Common Mode Chokes WHACM12A65R272 SPEC 121123002700501.510125
VOOHU WHACM12A65R222 WHPL1211A Common Mode Chokes WHACM12A65R222 SPEC 121122002500351.810125
VOOHU WHACM12A65R102 WHPL1211A Common Mode Chokes WHACM12A65R102 SPEC 1211750100014610125
VOOHU WHACM12A65R801 WHPL1211A Common Mode Chokes WHACM12A65R801 SPEC 12116008008810125
VOOHU WHACM12A65R701 WHPL1211A Common Mode Chokes WHACM12A65R701 SPEC 12115007006810125
VOOHU WHACM12A65R800 WHPL1211A Common Mode Chokes WHACM12A65R800 SPEC 12118023021010125

Comment sélectionner

Selecting a power line common mode choke in four steps

Work from the failing frequency band outward to current, losses and board space.

  1. 01

    Identify the failing band

    Read the frequency range where your conducted emission scan exceeds the limit. That band, not a general noise complaint, decides which impedance curve you need.

  2. 02

    Match the impedance curve

    Pick a part whose common mode impedance peaks across the failing band. Read the impedance at that frequency, not the headline figure at the family's peak.

  3. 03

    Check current and DC resistance

    The rated current must cover the worst-case load with margin. DC resistance sets the voltage drop and the heat the winding has to shed.

  4. 04

    Confirm the mechanical fit

    Check size, land pattern and clearance to neighbouring parts, then re-scan on your own board because layout changes the result.

Parameters

Reading common mode choke ratings

Impedance is a curve, not a single number, so read the test frequency with the value.

01

Common mode impedance

The resistance the choke presents to common mode noise, quoted at a stated frequency. Compare candidates at the same frequency or the values do not correspond.

02

Courant nominal

The continuous current the winding carries under stated temperature-rise conditions. Derate for ambient temperature and restricted airflow inside the enclosure.

03

DC resistance

Winding resistance, usually a maximum figure. It sets the conduction loss and the voltage drop the supply has to tolerate at full load.

04

Common mode inductance

Measured with both windings in the common mode configuration. Higher inductance generally moves the impedance peak toward lower frequencies.

05

Leakage inductance

The part of the winding that does not couple. It acts on differential signals and can be useful, but it also limits how high a current the part handles.

06

Withstand voltage

Isolation between the two windings under a stated test. Select against the safety requirement that applies to the equipment, not the working voltage.

Comparer

Common mode choke families side by side

Size band drives impedance and current capability more than family naming does.

Revenir au sélecteur ↑
Dimensions (L×l×H max.)RéférencesZ (Ω) à 100 MHz/0,1 V, min.Z (Ω) à 100 MHz/0,1 V, réf.Résistance DC (mΩ), max.Courant nominal DC (A), max.Résistance d’isolement (MΩ), min.Tension nominale (V), max.Action
1211780, 500, 600, 750, 2200, 2300230, 700, 800, 1000, 2500, 27002, 4, 6, 8, 14, 35, 501.5, 1.8, 6, 8, 1010125Filtrer →
15135225, 400, 500, 800, 1200300, 500, 700, 1000, 15005, 6, 7, 10, 235, 9, 10, 131080Filtrer →
45201460, 90, 180, 200, 250, 300, 350, 500, 650, 800, 1000, 1200, 1800, 250090, 150, 230, 300, 380, 420, 500, 700, 900, 1000, 1200, 1400, 2000, 300035, 40, 45, 50, 55, 58, 60, 70, 801, 1.5, 1.9, 2.0, 2.1, 2.2, 2.4, 2.5, 3, 3.21050Filtrer →
7060940, 100, 225, 275, 500, 800, 910, 2000, 250070, 140, 300, 450, 700, 1020, 1300, 2700, 30005, 10, 15, 17, 21, 63, 750.9, 1, 2.5, 3, 4, 5, 9, 1510125Filtrer →
90706225, 450, 500, 750, 1700, 2500300, 600, 700, 1000, 2200, 30006, 8, 10, 13, 60, 752.5, 3, 4, 5, 5.5, 61050Filtrer →

Analyse de l’application

Where power line common mode chokes are fitted

Confirm the line current, the failing band and how much board space the filter can take.

Analyse de l’application

AC mains input filtering

  • Confirm the line current and the failing band from the conducted scan, then verify the withstand voltage meets the equipment safety case.
Analyse de l’application

DC power distribution

  • Check the rated current against the worst-case load and confirm DC resistance does not push the rail below tolerance at full draw.
Analyse de l’application

Motor drives and inverters

  • Switching noise is broadband. Verify the impedance curve covers the whole failing range, not just the fundamental switching frequency.
Analyse de l’application

Industrial power supplies

  • Space and temperature rise usually decide. Confirm the derated current at the real ambient inside the enclosure.
Obtenir une assistance technique →

Documents

Common mode choke datasheets and drawings

Datasheets carry the impedance curve, current rating and recommended land pattern.

7
Fiches techniques PDF répertoriées
1
Jeux de fichiers 3D répertoriés
0
Empreintes PCB répertoriées

Le contenu produit publié par VOOHU est vérifié par son équipe technique. Les caractéristiques, les téléchargements et les informations d’assistance technique sont associés à des références précises afin que vous puissiez les vérifier avant de demander des échantillons ou un devis.

Présentation de la catégorie

How a common mode choke works and how to choose one

Most selection mistakes here come from treating impedance as a single number, or from confusing common mode with differential mode noise.

01

Common mode versus differential mode

Differential noise travels out on one conductor and back on the other. Common mode noise travels the same direction on both and returns through ground. A choke winds both conductors on one core so their supply currents cancel, while common mode current sees a high impedance. That is why it filters one and passes the other.

02

Impedance is a curve

The headline impedance figure is measured at one frequency. What matters is whether the curve is high across the band where your conducted emission scan actually fails. A part with a higher peak in the wrong place will not help. Read the curve from the datasheet, identify your failing band first, and match the two.

03

What limits the choice

Rated current and DC resistance set the ceiling. A choke with excellent impedance is useless if the winding cannot carry the load current, or if its resistance drops the rail below tolerance. Check those against worst case, then confirm on your own board, because layout and the rest of the filter change the measured result.

FAQ

Common mode choke questions engineers ask

Answers cover how the choke works, how to read impedance and where it belongs.

How does WHPL1211A differ from WHAL1211A?

The two share a size band, but impedance, rated current and DC resistance are each defined by their own datasheet. Naming similarity reflects a size convention rather than electrical equivalence. Compare the two datasheets item by item before treating either as a substitute for the other.

Can I use the WHAL land pattern for WHPL?

Verify it from the datasheet rather than assuming. Parts in the same size band often share a footprint, but pin arrangement, body tolerance and recommended pad geometry are stated per part. A mismatch that looks minor on the drawing can cause placement and reflow problems in production.

Which one should I evaluate first?

Start from your requirement, not from the part number. Identify the frequency band that fails, the line current and the board space, then read both datasheets against those three constraints. Whichever covers them with more margin is the one to sample first.

Does the same rated current apply to both?

No, each part states its own. Rated current depends on winding design and the temperature rise the part was qualified to, which can differ between two parts of the same physical size. Read the figure from the specific datasheet and derate for your actual ambient conditions.

How do I request samples or a quote?

With a complete part number, send the part number, quantity, delivery region and the date you need it. If you are still selecting, send the line current, the frequency band where your scan fails and the board space available, and a sales engineer will confirm candidates first.

Assistance technique

Poursuivre après la sélection du produit

Envoyez la référence candidate et la condition à examiner. Vous pourrez demander des échantillons une fois la sélection précisée ; les questions commerciales peuvent être abordées au cours du même échange technique.

  1. 1Références sélectionnées
  2. 2Analyse technique
  3. 3Demande d’échantillons
  4. 4Échange commercial

Pour une étude de remplacement

  • Référence d’origine et fiche technique

    Indiquez la révision du document

  • Conditions de fonctionnement

    Température, tension d’isolement et conditions de courant PoE prises comme référence

  • Contraintes du boîtier

    Nombre de broches, pas et espacement entre les rangées de broches

  • Phase du projet et volume annuel

    Pour faciliter la priorisation des échantillons et de l’évaluation

  • Date d’analyse souhaitée

    Date à laquelle vous avez besoin de références candidates et d’un comparatif des différences

L’analyse technique identifie les références candidates et explique les différences.

Pour des échantillons et un devis

  • Références candidates

    Issues du sélecteur ou de l’analyse technique

  • Quantité et phase du projet

    Prototypage / présérie / production

  • Date de livraison requise

    Précisez séparément les délais des échantillons et de la production

  • Documentation requise

    Documents de conformité, déclarations de matières ou rapports de tiers

La quantité d’échantillons, le délai et le coût dépendent de la phase du projet et de la référence. L’équipe commerciale répond les jours ouvrés.

Vos informations seront utilisées uniquement pour répondre à cette demande d’assistance.

Comparaison des paramètres

Comparer les références sélectionnées

Les différences sont présentées pour analyse ; confirmez les valeurs finales et les révisions des fichiers dans la fiche technique propre à chaque référence.