
H140-1,8
Ferrite drum core coil with an H-core configuration based on the high-performance ferrite HP3616 for compact and precise applications. The closed magnetic circuit enables particularly low RDC values combined with high efficiency in a compact design.
Technologies
Characterized by a purity of at least 99.995% copper
OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
Maximum efficiency and very low RDC in a compact design. Ideal when space and resistance are critical.
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
A solid conductor is formed into a winding and provides an easily calculable inductance.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Our precision material for low-signal applications: fast, clean and very compact.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Make sure that the left and right channels work identically, important for stable stage and positioning.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering
Similar configurations
1 VARIANTS
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Our services for manufacturers and cooperation partners
We manufacture coils in-house. This gives us flexibility—from material selection and micro-series production to standard products.
Material & design
Which coil material and design are best suited for your application? We provide independent advice, regardless of whether you ultimately choose a standard product or a custom solution.
Your material and parameter mix
Do you have a specific vision for the material, winding type, and electrical parameters? We can implement combinations outside of our standard range—either using our modular system or through a new development.
Custom small and micro-series
Thanks to our in-house production, we can manufacture coils in very small quantities—starting from a batch size of 1, provided it is economically viable. We can also provide approval samples before full-scale production upon request.

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering

OFC Copper
- Purity: at least 99.995% Cu, often 99.999% (4N) or higher
- Feature: almost oxygen-free (typically <10 ppm)
- Result: more stable grain boundaries, less oxide formation, more uniform electron flow
H-Core
The H-Core has a relatively closed magnetic circuit and therefore operates particularly efficiently. For the same inductance, less conductor length – and thus less copper – is required, which is why very low RDC values are possible in a compact design.
The trade-off is the saturation margin: H-Cores saturate sooner than P-Cores at high currents. When properly designed, the H-Core delivers a very tight, controlled sound reproduction with high efficiency.
It is particularly well-suited when low resistance and space savings are priorities.
Round Wire
Round wire coils are the tried and tested standard design: A solid conductor is formed into a winding and provides an easily calculable inductance. In terms of sound, DC resistance (RDC) is decisive here because it directly influences efficiency and control — especially in the bass range.
Ferrite HP3616
HP3616 is our precision material for low-signal applications: fast, clean and very compact. Particularly in correction links, equalizers and selected midrange tasks, he shows his strength in clarity and definition.
The design is decisive for high currents in the bass, as the magnetization reserves are limited.
Tight Tolerances
Tight tolerances in capacitance, inductance, and resistance ensure that capacitors of one type are very close together in terms of their electrical properties. In crossovers, the left and right channels therefore work virtually identically: crossover frequencies, level ratios and phase positions match closely. This is the basis for stable, precise stereo imaging and reproducible results — in series production and also after service.
Tonal Effects
- precise, stable soundstage without drifting
- Coherent overall impression: left and right channels fuse into a single, seamless whole
- characteristic sound is reliably retained even after component replacement/repair
- More stable virtual center and clearer spatial layering
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Sample orders are currently available to business customers only. If you have any questions about our products, you can reach us at any time by email at info@mundorf.com or by phone on +49 221 977705 - 0.
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Find a dealer
Art & Voice Medien GmbH
Davenstedter Str. 111,
30453 Hannover
Tel. +49 511 441046
www.highend-hifi-shop.de