Produits VOOHU WHYTP Compact Molded Inductors

Produits d’inductance

WHYTP Compact Molded Inductors

WHYTP uses the smallest footprint in the range at 3.4 by 3.2 by 1.8 millimetres, covering 0.33 to 10 microhenries with RMS currents to 8 amps. It suits point-of-load rails and modules where board area rather than height is the limit.

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Résultats de la sélection pour WHYTP Compact Molded Inductors
Image Référence Fiche technique Comparer Téléchargements Dimensions du boîtierDimensions (L×l×H)Valeur d’inductanceDCR(mΩ)IRMSISAT Échantillon
VOOHU WHYTP0320 series WHYTP Compact Molded Inductors WHYTP0320 series SPEC Série WHYTP3.4*3.2*1.8mm0.33-10uH21-422mΩ1.4-8A1.6-10A

By series

Molded inductor series by size band

Series split by footprint and height, which together set current capability and loss.

Comment sélectionner

Selecting a molded power inductor in four steps

Ripple sets the inductance; IRMS and ISAT set the size; height often decides.

  1. 01

    Calculate the inductance

    Derive it from input and output voltage, switching frequency and the ripple current you can accept. Then check the tolerance band at its worst corner.

  2. 02

    Check both current ratings

    IRMS caps the continuous current by temperature rise. ISAT caps the peak by inductance roll-off. Your design has to satisfy both, not the friendlier one.

  3. 03

    Pick the size band

    Larger footprints and taller bodies give lower DC resistance and higher current. Work back from the height clearance over the converter.

  4. 04

    Verify on the board

    Measure ripple, efficiency and the inductor's temperature at full load in the real enclosure, then confirm at the highest rated ambient.

Parameters

Reading molded inductor ratings

IRMS and ISAT are defined differently and both have to be satisfied.

01

Package size and dimensions

Stated as length by width by height in millimetres. Height is often the binding constraint, and within one footprint the taller option usually carries more current.

02

Inductance value

Ranges from about 0.1 to 150 microhenries across the family. Low values suit high switching frequency; higher values reduce ripple at lower frequency.

03

DC resistance

From about 0.65 milliohm on the largest low-value parts up to several hundred milliohms on the small high-inductance ones. It sets conduction loss.

04

IRMS

The continuous RMS current producing the datasheet's stated temperature rise. It is the steady-state limit and must be derated for high ambient temperature.

05

ISAT

The current at which inductance falls by the stated percentage. It caps the instantaneous peak, including startup inrush and load transients.

06

Blindage

Molded construction encloses the winding in magnetic material, so the part is inherently shielded. That reduces coupling into nearby traces and lowers audible noise.

Comparer

Molded inductor series side by side

Footprint and height together decide what current and inductance are available.

Revenir au sélecteur ↑
Dimensions du boîtierRéférencesDimensions (L×l×H)Valeur d’inductanceDCR(mΩ)IRMSISATAction
Série WHYT117.0*6.6*2.8mm, 7.0*6.6*3.8mm, 7.0*6.6*4.8mm, 11.5*10*2.8mm, 11.5*10*3.8mm, 11.5*10*4.8mm, 13.45*12.6*4.8mm, 13.45*12.6*5.8mm, 13.45*12.6*6.5mm, 17.15*17.15*7mm, 23.5*22*12.6mm0.22-47uH, 0.68-47uH, 0.47-47uH, 0.22-33uH, 0.15-100uH, 0.22-100uH, 4.7-150uH, 4.7-100uH, 2.2-100uH, 1.00-100.00uH3-385mΩ, 4.8-320mΩ, 3.9-230mΩ, 0.89-160mΩ, 0.65-340mΩ, 0.8-290mΩ, 0.7-130mΩ, 9-350mΩ, 8.5-170mΩ, 2.5-130mΩ, 0.95-40mΩ1.5-24A, 1.8-17A, 2-20A, 4-50A, 2-45A, 2.1-37A, 3-50A, 1.5-15A, 3.5-16A, 3.7-29A, 11-70A2-34A, 2.5-19A, 2.6-21A, 2.6-33A, 2.3-75A, 2.8-65A, 5-75A, 2.7-24A, 4-24A, 5-34A, 9-60AFiltrer →
Série WHYTA74.4*4.2*1.0mm, 4.4*4.2*1.8mm, 5.4*5.2*1.6mm, 5.4*5.2*2.8mm, 7.0*6.6*1.3mm, 7.0*6.6*1.6mm, 7.0*6.6*2.2mm0.15-4.7uH, 0.1-10uH, 0.47-10uH, 0.1-22uH, 0.22-22uH9-195mΩ, 4-282mΩ, 9-155mΩ, 3-125mΩ, 8.5-175mΩ, 2.3-350mΩ, 3-230mΩ1.8-7.5A, 1.6-13A, 2.5-10.5A, 3.2-25A, 2-10A, 1.8-25A, 2-21A2.2-15A, 2-22A, 3-15.5A, 3.5-30A, 3-16A, 2.3-38A, 2.5-34AFiltrer →
Série WHYTP13.4*3.2*1.8mm0.33-10uH21-422mΩ1.4-8A1.6-10AFiltrer →

Analyse de l’application

Where molded power inductors are used

Confirm output current, switching frequency, ripple budget and height clearance.

Analyse de l’application

DC-DC converters and POL rails

  • Confirm the ripple budget and switching frequency, then check IRMS at the real ambient and ISAT against startup inrush.
Analyse de l’application

Automotive and industrial supplies

  • Ambient temperature and vibration both matter. Derate IRMS for the environment and confirm the mounting suits the vibration profile.
Analyse de l’application

Compact consumer boards

  • Height usually decides. Work back from the clearance available, then confirm the chosen size band still meets both current ratings.
Analyse de l’application

Noise-sensitive equipment

  • Molded parts are inherently shielded and quieter than open wirewound. Verify audible noise at your switching frequency on the real assembly.
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Documents

Molded inductor datasheets and drawings

Datasheets carry the saturation curve, temperature rise data and land pattern.

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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

Molded versus wirewound, and which current rating binds

Two questions decide most molded inductor selections: whether the construction is right for the design, and which of the two current figures limits you.

01

What molded construction changes

The winding is encased in a magnetic composite rather than wound on an exposed core. That makes the part self-shielding, so it couples less into neighbouring traces, and it damps the movement that causes audible buzz. It also gives a softer saturation curve, where inductance falls gradually rather than collapsing.

02

IRMS and ISAT do different jobs

IRMS is a thermal limit: the continuous RMS current that produces the stated temperature rise. ISAT is a magnetic limit: the current at which inductance has dropped by a stated percentage. A design has to satisfy both. Steady-state load is checked against IRMS, and peaks including startup inrush against ISAT.

03

Height is usually the real constraint

Within the same footprint, a taller body has more winding volume, which means lower DC resistance and higher current for the same inductance. The range spans from one millimetre high up to more than twelve. In practice the clearance over the converter often decides the series before any electrical parameter does.

FAQ

Molded power inductor questions engineers ask

Answers cover molded versus wirewound, IRMS against ISAT, and shielding.

How small is WHYTP?

The body is 3.4 by 3.2 millimetres with a height of 1.8 millimetres, the smallest footprint in the molded range. Inductance covers 0.33 to 10 microhenries, DC resistance runs from about 21 to 422 milliohms, RMS current to 8 amps and saturation to about 10 amps.

What is it suited to?

Point-of-load rails and compact modules where board area is the limiting factor rather than height. The current capability suits secondary rails and local regulation rather than main power stages. For higher current in a similar height, compare the larger footprints in the WHYTA range.

Why is the DC resistance higher than larger parts?

Less winding volume means thinner wire or fewer turns in a smaller window, and resistance rises accordingly. At 21 to 422 milliohms depending on inductance value, conduction loss matters more than on larger parts, so calculate it against your actual RMS current before committing.

When should I move to a larger footprint?

When the RMS current exceeds what 8 amps allows with margin, when the DC resistance loss is too high for the efficiency target, or when you need inductance above 10 microhenries. If board area is truly fixed, send the conditions to our engineers to assess alternatives.

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 output current, switching frequency, ripple budget and the board area available, and a sales engineer will shortlist candidates.

Assistance technique

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