Produits VOOHU Signal Line Common Mode Chokes

Produits d’inductance

Signal Line Common Mode Chokes

On a differential pair the choke has to suppress common mode noise without damaging the signal itself. Start from the interface and the frequency band your scan fails, then check that the impedance peak sits away from your signal's fundamental and that insertion loss stays acceptable.

Recherche et sélection de références

Trouver des références pour Signal Line 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 Signal Line Common Mode Chokes
Image Référence Fiche technique Comparer Téléchargements TailleImpédance de mode commun à 10 MHz, min. (Ω)Impédance de mode commun typ. (Ω)Inductance (μH), +50/−30 %RDC (Ω), max.Inductance de fuite (nH), typ.Résistance d’isolement (MΩ), min.Courant nominal, max.Tension nominale (V), max. Échantillon
VOOHU WHLC-2012A-121T1 Signal Line Common Mode Chokes WHLC-2012A-121T1 SPEC 2012-120-0.3-10400mA125
VOOHU WHLC-2012A-381T0 Signal Line Common Mode Chokes WHLC-2012A-381T0 SPEC 2012-380-0.45-10300mA50
VOOHU WHLC-2012A-900T0 Signal Line Common Mode Chokes WHLC-2012A-900T0 SPEC 2012-90-0.35-10300mA50
VOOHU WHLC-2012A-181T0 Signal Line Common Mode Chokes WHLC-2012A-181T0 SPEC 2012-180-0.35-10300mA50
VOOHU WHLC-2012A-261T0 Signal Line Common Mode Chokes WHLC-2012A-261T0 SPEC 2012-260-0.4-10300mA50
VOOHU WHLC-2012A-361T1 Signal Line Common Mode Chokes WHLC-2012A-361T1 SPEC 2012-360-0.45-10300mA50
VOOHU WHLC-2012A-801T0 Signal Line Common Mode Chokes WHLC-2012A-801T0 SPEC 2012-800-0.88-10300mA50
VOOHU WHLC-2012A-102T0 Signal Line Common Mode Chokes WHLC-2012A-102T0 SPEC 2012-1000-1.3-10300mA50
VOOHU WHLC-2012A-122T0 Signal Line Common Mode Chokes WHLC-2012A-122T0 SPEC 2012-1200-1.5-10300mA50
VOOHU WHLC-2012A-750C Signal Line Common Mode Chokes WHLC-2012A-750C SPEC 2012-75-0.55-10280mA50
VOOHU WHAC-2012A-801T0 Signal Line Common Mode Chokes WHAC-2012A-801T0 SPEC 2012-800-0.88-10300mA50
VOOHU WHAC-2012A-900T0 Signal Line Common Mode Chokes WHAC-2012A-900T0 SPEC 2012-90-0.35-10300mA50
VOOHU WHLC-2012A-121T0 Signal Line Common Mode Chokes WHLC-2012A-121T0 SPEC 2012-120-0.3-10400mA50

By interface

Chokes by interface: USB, CAN, Ethernet, HDMI

The interface sets the data rate and therefore what the choke is allowed to do to the signal.

Comment sélectionner

Selecting a signal line common mode choke in four steps

Interface first, then the failing band, then signal integrity, then the footprint.

  1. 01

    Start from the interface

    USB, CAN bus, Ethernet and HDMI each set a data rate and a signalling scheme. That determines how much the choke is allowed to affect the signal.

  2. 02

    Find the failing band

    Read the frequency range where the radiated or conducted scan exceeds the limit, then look for a part whose impedance is high across that range.

  3. 03

    Protect the signal

    Check the impedance peak does not sit near your signal's fundamental, and that DC resistance does not add unacceptable loss on the pair.

  4. 04

    Verify on the real link

    Measure the eye diagram and return loss on your own board. Datasheet curves are taken in a reference fixture, not in your layout.

Parameters

Reading signal line choke ratings

Impedance is quoted at a frequency; so is everything else that matters here.

01

Common mode impedance

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

02

Courant nominal

Matters when the pair also carries bias or power, as on some bus and PoE-adjacent designs. On a pure signal pair it is rarely the binding constraint.

03

DC resistance

Adds loss in the signal path and causes a voltage drop where the pair carries current. Read the maximum figure rather than a typical value.

04

Differential mode loss

How much of the wanted signal the part removes. Low values matter more as the data rate rises; verify by measurement rather than by datasheet alone.

05

Package size

Sets the board area and the spacing available between the differential traces. Smaller packages ease layout but usually offer lower impedance.

06

Mode conversion

Asymmetry between the two windings turns common mode into differential noise. It is the reason a choke can make an eye diagram worse rather than better.

Comparer

Signal line choke families side by side

Package size and impedance level separate the families; the interface decides which fits.

Revenir au sélecteur ↑
TailleRéférencesImpédance de mode commun à 10 MHz, min. (Ω)Impédance de mode commun typ. (Ω)Inductance (μH), +50/−30 %RDC (Ω), max.Inductance de fuite (nH), typ.Résistance d’isolement (MΩ), min.Courant nominal, max.Tension nominale (V), max.Action
201213-120, 1200, 1000, 800, 380, 360, 260, 180, 90, 75-0.3, 0.35, 0.4, 0.45, 0.55, 0.88, 1.3, 1.5-10280mA, 300mA, 400mA50, 125Filtrer →
32256300, 500, 1000, 2200, -550, 1100, 2600, 5100, -11, 22, 51, 80, 100, 2000.8, 1, 1.6, 2.5, 4, 4.950, 70, 130, 180, -1070mA, 150mA, 200mA, 250mA, 300mA80Filtrer →
453221300, 500, 1000, 2000, -600, 1200, 2800, 5800, 90±25%, 420±25%, 600±25%, 800±25%, 1000±25%, 1400±25%, 140011, 22, 51, 100, -0.25, 1.2, 1.4, 1.8, 2.5, 39, 60, 82, 89, 113, 14850, 80, 150, 200, -10150mA, 200mA, 250mA, 700mA, 1.0A, 1.5A, 1.8A, 2.0A, 2.2A, 3.0A50Filtrer →

Analyse de l’application

Where signal line common mode chokes are fitted

Confirm the interface, the data rate and whether the pair also carries bias current.

Analyse de l’application

USB data lines

  • Confirm the USB generation and its data rate, then verify the eye diagram and return loss on the real board after fitting the choke.
Analyse de l’application

CAN bus and automotive networks

  • Check the bus common mode voltage range and whether the pair carries bias, then confirm the part's temperature rating suits the environment.
Analyse de l’application

Ethernet interfaces

  • Confirm the link speed and how the choke interacts with the LAN transformer already in the path, then measure link stability and emissions.
Analyse de l’application

HDMI and display links

  • High rates make insertion loss and mode conversion critical. Measure the eye before and after rather than relying on the datasheet curve.
Obtenir une assistance technique →

Documents

Signal line choke datasheets and drawings

Datasheets carry the impedance curve, DC resistance and recommended land pattern.

41
Fiches techniques PDF répertoriées
41
Jeux de fichiers 3D répertoriés
34
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

Choosing a common mode choke for a differential pair

On a power line the choke only has to pass current. On a signal pair it has to pass a waveform intact, which makes the selection harder.

01

Why the interface comes first

A choke that works on a CAN bus can wreck a USB link, because the data rates differ by orders of magnitude. The interface sets how much insertion loss and how much impedance in the signal path the link can tolerate. Decide the interface and its rate before you start comparing impedance figures.

02

Where the impedance peak sits

You want high common mode impedance across the band that fails your scan, and low impact at your signal's own frequencies. If the peak sits near the fundamental, the choke will attenuate the wanted signal as well as the noise. Read the curve, locate your two frequencies on it, and check they are far apart.

03

Mode conversion is the hidden risk

Real parts are never perfectly symmetric. Any imbalance between the two windings converts common mode noise into differential noise, which lands directly on the signal. This is why a choke sometimes makes an eye diagram worse. It cannot be predicted from the datasheet, so measure the eye and return loss on your own board.

FAQ

Signal line choke questions engineers ask

Answers cover interface fit, eye diagram impact and how to compare candidates.

Why does the interface matter more than the package?

Because the interface sets the data rate, and the data rate decides how much the choke is allowed to affect the signal. A part that is fine on a CAN bus running at hundreds of kilobits can badly degrade a USB or HDMI link running orders of magnitude faster. Start from the interface, then filter on impedance.

How do I stop the choke damaging my signal?

Check where the impedance peak sits relative to your signal's fundamental frequency. You want the peak over the band that fails your emission scan and well away from the frequencies the signal occupies. Then check DC resistance and measure insertion loss on the real link.

Can a common mode choke make the eye diagram worse?

Yes, and it is a common surprise. No real part is perfectly symmetric, and any imbalance between the windings converts common mode noise into differential noise that lands on the signal. That effect grows with data rate. The only reliable check is measuring the eye before and after on your own hardware.

Do I need a choke if I already have a LAN transformer?

Sometimes. A LAN transformer provides isolation and some common mode rejection, but on higher speed links or in difficult enclosures it may not be enough on its own. Whether an additional choke helps depends on your layout and your scan result, so measure rather than assume.

Does rated current matter on a signal pair?

Only when the pair carries current as well as signal, which happens on some bus designs and in power-over-data arrangements. On a pure signal pair the binding constraints are impedance placement and insertion loss, not current. Read the datasheet for the specific case you have.

Are parts in the same package size interchangeable?

No. Package size tells you the footprint, not the electrical behaviour. Two parts of identical size can have very different impedance curves, DC resistance and symmetry. Compare the impedance at your frequency, the DC resistance and the recommended land pattern before treating one as a substitute.

Where should the choke sit on the board?

Close to the connector, before the noise has a chance to couple into the rest of the board, and with the differential pair kept symmetric through the part. Asymmetric routing through or around the choke undoes much of its benefit, so treat the layout as part of the component choice.

How do I request signal line choke 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 interface and data rate, the frequency band where your scan fails and the space available between the traces.

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.