NLV32T-033J-PF >
NLV32T-033J-PF
TDK Corporation
FIXED IND 33NH 450MA 240MOHM SMD
25250 Pcs New Original In Stock
33 nH Unshielded Drum Core, Wirewound Inductor 450 mA 240mOhm Max 1210 (3225 Metric)
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NLV32T-033J-PF TDK Corporation
5.0 / 5.0 - (374 Ratings)

NLV32T-033J-PF

Product Overview

6659375

DiGi Electronics Part Number

NLV32T-033J-PF-DG

Manufacturer

TDK Corporation
NLV32T-033J-PF

Description

FIXED IND 33NH 450MA 240MOHM SMD

Inventory

25250 Pcs New Original In Stock
33 nH Unshielded Drum Core, Wirewound Inductor 450 mA 240mOhm Max 1210 (3225 Metric)
Quantity
Minimum 1

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In Stock (All prices are in USD)
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NLV32T-033J-PF Technical Specifications

Category Fixed Inductors

Manufacturer TDK

Packaging Cut Tape (CT) & Digi-Reel®

Series NLV-PF

Product Status Not For New Designs

Type Drum Core, Wirewound

Material - Core Ferrite

Inductance 33 nH

Tolerance ±5%

Current Rating (Amps) 450 mA

Current - Saturation (Isat) -

Shielding Unshielded

DC Resistance (DCR) 240mOhm Max

Q @ Freq 25 @ 100MHz

Frequency - Self Resonant 1.4GHz

Ratings -

Operating Temperature -40°C ~ 105°C

Inductance Frequency - Test 100 MHz

Mounting Type Surface Mount

Package / Case 1210 (3225 Metric)

Supplier Device Package 1210

Size / Dimension 0.126" L x 0.098" W (3.20mm x 2.50mm)

Height - Seated (Max) 0.094" (2.40mm)

Datasheet & Documents

HTML Datasheet

NLV32T-033J-PF-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Affected
ECCN EAR99
HTSUS 8504.50.8000

Additional Information

Other Names
-NLV32T-033J
NLV32T033JPF
445-1508-6
445-1508-2
445-1508-1
Standard Package
2,000

Alternative Parts

View Details
PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
B82422T3330J000
EPCOS - TDK Electronics
818
B82422T3330J000-DG
0.0811
MFR Recommended
NLV32T-033J-EF
TDK Corporation
3686
NLV32T-033J-EF-DG
0.0261
MFR Recommended

Reviews

5.0/5.0-(Show up to 5 Ratings)
꿈***길
Dec 02, 2025
5.0
구매 후에도 지속적인 케어와 상담이 정말 인상적입니다. 고객을 위한 세심한 서비스 덕분에 재구매 의사가 높아졌어요.
Caverne***Sérénité
Dec 02, 2025
5.0
Je recommande chaleureusement DiGi Electronics pour ses prix économiques et son service clients irréprochable.
Nua***oux
Dec 02, 2025
5.0
Après mon achat, j’ai eu un souci et le service après-vente a répondu immédiatement pour le résoudre, je suis très satisfait.
Blissf***oments
Dec 02, 2025
5.0
Reliable performance across all products, thanks to DiGi Electronics' strict quality control.
Lus***nds
Dec 02, 2025
5.0
The long-term durability of their products makes the initial investment worthwhile.
Lun***eam
Dec 02, 2025
5.0
The promptness of their order handling greatly improves our operational workflow.
Ocea***eeze
Dec 02, 2025
5.0
Every order I’ve made has been delivered swiftly, thanks to their reliable logistics.
Gleam***Garden
Dec 02, 2025
5.0
Shipping was efficient and reliable, arriving just in time and in perfect condition.
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Frequently Asked Questions (FAQ)

Can the NLV32T-033J-PF be safely used in a high-density buck converter design where thermal cycling and proximity to other components may cause localized heating above 85°C?

The NLV32T-033J-PF is rated for an operating temperature range of -40°C to 105°C, so it can technically tolerate brief excursions near its upper limit. However, sustained operation above 85°C—especially in tightly packed layouts with poor airflow—can accelerate core and winding degradation due to thermal stress on the ferrite drum core and enamel insulation. Since this part is unshielded, adjacent heat sources may also induce eddy currents or magnetic coupling. For long-term reliability in such environments, consider adding thermal relief spacing, using a shielded alternative like the B82422T3330J000, or validating performance with thermal imaging during prototype testing.

I'm replacing a legacy inductor in a 2.4GHz RF matching network—can the NLV32T-033J-PF handle the self-resonant frequency demands without introducing parasitic losses?

With a self-resonant frequency (SRF) of 1.4GHz, the NLV32T-033J-PF is unsuitable for reliable operation at 2.4GHz, as it will behave capacitively above its SRF, severely degrading Q-factor and introducing unpredictable impedance. Although its Q of 25 @ 100MHz suggests decent mid-band performance, it drops significantly near and beyond SRF. For 2.4GHz applications, select an inductor with SRF >3GHz; consider TDK’s MLG series or Coilcraft’s 0402CS instead. Using the NLV32T-033J-PF here risks signal attenuation, impedance mismatch, and potential oscillator instability.

Is the NLV32T-033J-PF a drop-in replacement for the B82422T3330J000 in a 5V, 300mA power rail filter, given both have 33nH inductance and similar footprint?

While both inductors share 33nH nominal inductance and a comparable 1210-sized package, they are not direct drop-in replacements due to critical differences: the B82422T3330J000 is shielded (reducing EMI), has lower DCR (~180mΩ), and higher current rating (500mA vs. 450mA). The NLV32T-033J-PF’s unshielded construction may introduce noise coupling in sensitive analog sections, and its higher DCR increases power loss by ~33% at 300mA. If board space and cost are constrained and EMI is manageable, it may work—but verify conducted emissions and thermal rise in your specific layout before committing to volume production.

Given that the NLV32T-033J-PF is marked 'Not For New Designs,' what risks should I consider if I continue using it in a new product development cycle?

Using the NLV32T-033J-PF in new designs poses long-term supply chain and compliance risks. Being 'Not For New Designs' indicates TDK is phasing it out, which may lead to last-time buy scenarios, price volatility, or eventual obsolescence. Additionally, while it is RoHS3 compliant, its 'REACH Affected' status means certain SVHCs may be present—requiring documentation for EU market access. For new projects, migrate to the recommended alternative NLV32T-033J-EF (same electrical specs, updated lifecycle status) or evaluate cross-compatible shielded options like the B82422T3330J000 to ensure design longevity and regulatory readiness.

How does the unshielded drum core construction of the NLV32T-033J-PF impact EMI performance in a mixed-signal PCB with sensitive ADC inputs located 2mm away?

The unshielded ferrite drum core in the NLV32T-033J-PF emits significant stray magnetic fields, which can couple inductively into nearby high-impedance traces or components—such as ADC reference lines or analog sensor inputs—even at 2mm distance. This may manifest as noise injection, reduced SNR, or measurement drift, especially if the inductor carries switching currents (e.g., from a DC-DC converter). To mitigate risk, increase spacing to >5mm, route sensitive signals orthogonally, or use grounded guard traces. For robust mixed-signal designs, prefer shielded inductors like the B82422T3330J000, which reduce radiated field strength by >20dB and minimize cross-talk without requiring major layout changes.

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