| Brand Name: | Hoan |
| Model Number: | HACC-CUSTOM-AD |
| MOQ: | 10 Pieces |
| Payment Terms: | L/C,D/A,D/P,T/T,Western Union |
Conical inductors in high-vibration environments — airborne platforms, launch vehicles, spacecraft during ascent — act as microphonic transducers: mechanical vibration induces winding displacement relative to the magnetic field, modulating inductance and generating spurious electrical noise at the vibration frequency. This microphonic noise can be 20–40 dB above the thermal noise floor in sensitive receiver chains. The HACC-CUSTOM-AD eliminates this with a dual-action damping formulation. Layer 1 is a 0.05–0.15 mm viscoelastic polymer coating (tan δ >0.3 at 1 kHz, silicone-free) applied directly to the winding — it absorbs mechanical vibration energy through molecular relaxation, converting kinetic energy to heat without adding mass or stiffness. Layer 2 is a 0.02–0.05 mm constrained-layer top coat of metallic-loaded epoxy that creates a stiff outer shell — when the inner viscoelastic layer deforms, the constrained outer layer forces shear deformation in the viscoelastic layer, maximizing energy dissipation per cycle. The combined dual-action system achieves over 20 dB microphonic noise reduction from 1–10 kHz, with winding displacement maintained below 0.1 µm under 5 g vibration from 20 Hz to 2 kHz. The mechanical Q at resonance is below 5 — no ringing, and settling time is under 10 µs after an impulse.
Spacecraft and high-vacuum scientific instruments cannot tolerate organic outgassing — condensed volatiles on optical surfaces, thermal control coatings, or detector arrays degrade performance and can cause mission failure. The HACC-CUSTOM-AD is produced under a certified low-outgassing process: all materials are screened per ASTM E595, achieving total mass loss (TML) below 1.0% and collected volatile condensable material (CVCM) below 0.1%. No silicone, no phthalates, and no halogens are used in any material — including the anti-microphonic damping layers, the dot-fixing epoxy, and the wire plating. Every device undergoes a vacuum bake-out at 125°C for 24 hours prior to shipment, with post-bake TML verified below 0.5%. Material traceability is maintained per recognized space industry standards for each production lot. The device is qualified for 10⁻⁹ Torr vacuum with no volatile condensables after 72 hours of vacuum exposure.
The Au/Pd/Ni/Cu plating stack — identical to the NM variant — provides corrosion resistance and bondability without introducing volatile metal surfaces. Wire bond pull strength above 4.0 g is maintained post-vacuum bake, and no Pd-Au intermetallic growth occurs after the 125°C/24h bake-out procedure.
| Parameter | Value |
|---|---|
| Microphonic Reduction | >20 dB at 1–10 kHz, dual-action viscoelastic + constrained layer |
| Vibration Displacement | <0.1 µm under 5 g, 20 Hz–2 kHz |
| Mechanical Q | <5 at resonance, settling <10 µs after impulse |
| Outgassing (TML/CVCM) | TML <1.0%, CVCM <0.1% per ASTM E595 |
| Vacuum Qualification | 10⁻⁹ Torr, post-bake TML <0.5%, 72h vacuum exposure |
| Plating Stack | Au/Pd/Ni/Cu noble metal, ASTM E595 compliant |
| Inductance | 50 nH–500 nH, ±10%, vibration-stable |
| Frequency Range | 100 MHz–40 GHz |
| Operating Temperature | -55°C to +125°C, post vacuum bake-out |
Contact us with your vibration environment, vacuum requirements, and outgassing specifications. Anti-microphonic damped low-outgassing conical inductors ship in 5–7 business days.