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Toroidal differential mode inductor for the input filter stage of industrial power equipment. Differential mode noise travels down one line and returns on the other, generated by the converter's own switching current. A common mode choke cannot remove it, because a common mode choke is designed to cancel exactly this opposing current. A dedicated differential mode inductor is required to pass conducted emission testing in the lower frequency band.
The core is a toroidal powder core with a single winding of heavy gauge enamelled copper wire. The single winding is the key difference: a common mode choke has two windings whose fields cancel, so its core sees almost no net flux from load current. Here the full line current flows through one winding, so the core must carry real DC and low frequency flux without saturating. That is why a distributed air gap powder core is used instead of high permeability ferrite or nanocrystalline, which would saturate immediately at the same current.
In the finished filter the inductor forms an LC low pass network with the X capacitors: the inductor blocks high frequency switching current from reaching the mains, the capacitors give it a low impedance return path inside the equipment. Inductance value sets the corner frequency, and therefore the attenuation achieved at the failing frequencies.
Made to order. Inductance, rated current, core material, wire gauge, turn count, lead length and lead spacing are all defined against your drawing or the measured emission problem.
2. TECHNICAL SPECIFICATIONS
No.
Parameter
Specification
1
Product type
Toroidal differential mode inductor / choke
2
Winding configuration
Single winding
3
Core type
Toroidal powder core, distributed air gap
4
Core material
Iron powder / sendust / high flux, per order
5
Core coating
Insulating epoxy coating, colour coded
6
Winding material
Enamelled copper wire, Class 155 to Class 200
7
Inductance range
Customisable, typical 10 uH to 1000 uH
8
Inductance tolerance
Plus or minus 10% standard, 5% on request
9
Rated current
Customisable, typical 3 A to 30 A
10
Saturation behaviour
Soft saturation, gradual roll off under bias
11
DC resistance
Defined per turn count and wire gauge
12
Test condition
100 kHz, 0.1 V, no bias, unless specified
13
Effective frequency band
150 kHz to 30 MHz suppression range
14
Operating temperature
-40 C to +125 C including self heating
15
Temperature rise
40 K maximum at rated current
16
Dielectric strength
1500 VAC for 1 minute, winding to core
17
Insulation resistance
100 megohm minimum at 500 VDC
18
Mounting
Radial through hole, PCB mount
19
Termination
Two tinned copper leads, length customisable
20
Finish
Varnish impregnated winding
21
Compliance
RoHS, REACH; UL recognised materials on request
22
Customisation
OEM / ODM, free electrical design service
Note: inductance, rated current, core material, outer diameter, turn count and wire gauge are defined per application. Approval drawings and samples are issued for your confirmation before mass production.
3. PRODUCT FEATURES
Single winding designed to carry full load current. The core material and turn count are selected so that the inductance holds up under the actual DC and low frequency bias present on the line, rather than collapsing the moment the equipment reaches full load. An inductor that saturates at working current provides no filtering when it is most needed.
Soft saturation powder core. The distributed gap inside a powder core produces a gradual inductance roll off instead of a sharp saturation knee. Filtering performance degrades smoothly during inrush and load steps rather than disappearing, which keeps emission behaviour predictable across the full operating range.
Closed toroidal magnetic path. Flux stays inside the ring, so the inductor radiates very little stray field into surrounding traces and sensitive analogue circuitry. This is a direct advantage over gapped bobbin designs, where the gap becomes a local radiator that then has to be shielded.
Low loss at switching frequency. Core material is chosen against the customer switching frequency and ripple current, so core loss and copper loss are balanced at the real operating point instead of at a catalogue condition.
Mechanically stable construction. The winding is varnish impregnated so turns do not shift under vibration or thermal cycling. Stable geometry means stable inductance, which means the filter corner frequency stays where the design placed it over the life of the equipment.
Compact radial format. The toroidal geometry and radial lead termination give a high inductance to volume ratio and a small board footprint, which is useful where the EMI filter has to fit into an already committed layout.
Engineered against your emission data. If you provide the failing frequency and the margin required, we can propose the inductance value rather than asking you to guess it.
4. APPLICATIONS
Industrial switching power supply input EMI filter stages
Solar inverters and energy storage power conversion systems
Uninterruptible power supplies and industrial backup power
Motor drives, servo drives and variable frequency drive input filters
Industrial LED lighting power modules
Welding equipment and industrial heating power supplies
Telecom and server rectifier modules
Frequency converters and industrial automation power sections
Test and measurement equipment requiring a clean supply
Medical and laboratory equipment with strict emission limits
The component is normally installed in the AC input line immediately after the fuse and the common mode choke, working with X capacitors to form a complete differential mode filter section. In DC applications it is used in series with the supply rail to suppress ripple and switching noise.
5. ADVANTAGES
Company advantages
Established in 2000, with 26 years of continuous experience in magnetic components and power solutions for industrial control and power electronics.
Toroidal winding and EMI component design are core in house capabilities, supported by a 20 person R&D team and a 20 person quality control team.
Certified management system: ISO 9001 for quality and ISO 14001 for environment. Products comply with RoHS and REACH, with CE, CB, UL and cUL coverage across the product range.
Annual export value of 42 million USD, serving North America, Northern Europe, South America and Southeast Asia, including established industrial equipment brands.
Product advantages
Filtering that survives full load. Correct core selection means the inductance is still there at rated current, which is the difference between passing and failing an emission test in the field.
Lower radiated coupling. The closed toroidal path suppresses stray field at the source, which is cheaper than shielding it afterwards.
Matched to your filter, not to a catalogue. We size the inductance against your switching frequency, your load current and the attenuation you need.
Consistent batch to batch inductance. Controlled winding tooling and electrical testing keep every unit inside the tolerance window your filter design depends on.
Complete filter sourcing from one supplier. Differential mode inductors, common mode chokes and related magnetic components can be supplied together, which simplifies qualification and reduces the number of vendors to manage.
Free electrical design service. Send the specification or the emission problem and we will propose the core, the turns and the wire gauge, then confirm it with samples.
6. FAQ
Q1. What is the difference between a differential mode inductor and a common mode choke?
A1. A common mode choke has two windings whose magnetic fields cancel for the load current, so it only blocks noise that travels in the same direction on both lines. A differential mode inductor has a single winding and blocks noise that travels down one line and returns on the other. Most industrial equipment needs both, because they address different noise paths and neither one can replace the other.
Q2. What is your minimum order quantity?
A2. Standard MOQ is 1,000 pieces. Smaller quantities can be arranged for sample evaluation and first article approval.
Q3. What payment methods do you accept?
A3. We accept T/T, PayPal and Western Union.
Q4. What is the lead time?
A4. Samples are normally 7 to 21 days depending on complexity. Mass production is normally 15 to 25 days after drawing approval and deposit, subject to quantity.
Q5. How do I choose the correct inductance value?
A5. It depends on your switching frequency, the current you need to pass, the X capacitor value already in the filter and the attenuation you are missing. Send us those figures, or the conducted emission scan showing where you are failing, and our engineers will propose a value and confirm it with samples.
Q6. Can it carry my full line current without saturating?
A6. Yes, provided the part is specified correctly. Tell us the continuous current and any inrush condition, and we will select a core and turn count that keeps the inductance stable at that operating point. This is the most common reason a differential mode inductor underperforms in the field, so we size it deliberately rather than by catalogue lookup.
Q7. Which core material do you use, and can I specify it?
A7. Iron powder, sendust and high flux options are available, each with a different loss and DC bias trade off. Iron powder is the economical choice for lower frequency filtering, while sendust and high flux offer lower core loss at higher frequency. If your design already specifies a material, we follow your specification.
Q8. Can the lead length, lead spacing and dimensions be customised?
A8. Yes. Inductance, rated current, DC resistance target, outer diameter, height, lead length and lead spacing are all customisable to your drawing and your existing footprint.
Q9. How is the part tested before shipment?
A9. Electrical parameters are tested on production equipment before packing, and the test conditions are stated on the approval drawing so your incoming inspection measures the part under the same conditions we do.
Q10. What certifications and material compliance do you provide?
A10. Manufacturing runs under ISO 9001 and ISO 14001. Products comply with RoHS and REACH, and UL recognised wire and insulation materials can be specified on request. If your destination market requires an additional approval, tell us the country before ordering.
Q11. Can you supply the matching common mode choke as well?
A11. Yes. We manufacture common mode chokes, differential mode inductors and other magnetic components in the same factory, so a complete input filter set can be sourced and qualified from one supplier.
Q12. Do you have overseas warehouses or offer drop shipping?
A12. No. All goods ship directly from our factory in Guangdong, China. We support FOB, CIF, DDU and DDP terms.
Company Details
Bronze Gleitlager
,
Bronze Sleeve Bushings
and
Graphite Plugged Bushings
from Quality China Factory
Business Type:
Manufacturer
Year Established:
2007
Total Annual:
28820000-29820000
Employee Number:
400~450
Ecer Certification:
Verified Supplier
Chipsen Electronics - Supplier to Fortune Global 500 Companies
Magnetic Components Engineered for Performance & Reliability
Founded in 2007, Dongguan Chipsen Electronics Technology Co., Ltd. is a professional manufacturer specializing in magnetic components and micro switches.
...
Chipsen Electronics - Supplier to Fortune Global 500 Companies
Magnetic Components Engineered for Performance & Reliability
Founded in 2007, Dongguan Chipsen Electronics Technology Co., Ltd. is a professional manufacturer specializing in magnetic components and micro switches.
...