| Brand Name: | Hoan |
| Model Number: | HALT60005 |
| MOQ: | 10 Pieces |
| Payment Terms: | L/C,D/A,D/P,T/T,Western Union |
| Supply Ability: | 50000 Pieces per Month |
The HALT60005 is a broadband conical inductor for RF decoupling and bias tee applications spanning 20 MHz to 40 GHz. It delivers 1400 nH of nominal inductance through a continuously tapered conical winding wound with 0.05 mm oxygen-free copper wire, rated for 200 mA continuous DC current over an operating temperature range of -55°C to +125°C.
| Parameter | Value | Test Conditions |
|---|---|---|
| Model Number | HALT60005 | — |
| Winding Architecture | Air-core tapered conical, dual flying leads | — |
| Nominal Inductance | 1400 nH ±20% | 10 MHz, 0.1 Vrms, 25°C |
| Self-Resonant Frequency (SRF) | >40.0 GHz | Flat, resonance-free impedance profile |
| Recommended Frequency Band | 0.020 – 40.0 GHz | Broadband RF decoupling, bias tee |
| Reference Frequency Band | 0.01 – 40.0 GHz | Fixture-compensated, design guidance |
| Maximum Continuous Current | 200 mA | ΔT ≤ 15°C temperature rise |
| Nominal Wire Diameter | 0.05 mm | Oxygen-free copper, polyimide insulated |
| Optional Wire Diameter | 0.08 mm | Custom low-DCR, higher current option |
| Overall Coil Length | 3.0 mm | Measured along winding axis |
| Lead Wire Finish | Gold / Tin Plated | For micro-soldering and wedge bonding |
| Operating Temperature Range | -55°C to +125°C | Continuous rated |
| Storage Temperature & RH | 20–25°C, 40–60% RH | Cleanroom environment |
| Guaranteed Shelf Life | 1 Year | Under optimal storage conditions |
| Mount Style | Flying Lead Welding | Eutectic soldering / micro-soldering |
| Adhesive Stabilization | Epoxy Glue Fixing | Required to prevent vibration-induced modulation |
| Simulation Data | .s2p Touchstone (10 MHz – 40 GHz) | TRL-de-embedded, 201 points |
Standard solenoidal inductors self-resonate at a frequency determined by the product of winding inductance and inter-turn parasitic capacitance. Above this SRF, the component transitions from inductive to capacitive behavior and ceases to provide RF isolation. In wideband systems spanning multiple octaves, this creates a transmission notch within the operating band.
The HALT60005 addresses this through its conical winding geometry:
Each unit is characterized on a calibrated vector network analyzer using microstrip calibration fixtures with TRL de-embedding to move the reference plane to the component leads:
| Frequency Spectrum | Attenuation / Impedance | Design Relevance |
|---|---|---|
| 10 MHz – 500 MHz | High inductive reactance; insertion loss < 0.15 dB | Blocks power-supply noise from the DC bias rail; minimal through-path attenuation in the transition band |
| 10 MHz – 20 GHz | Flat, continuous insertion loss; no resonant dips | Rated band for wideband bias tees; delivers > 2.0 kΩ RF isolation |
| 10 MHz – 40 GHz | Extended high-frequency response; fixture parasitics dominate above 25 GHz | Verified millimeter-wave capability; PCB pad layout is the limiting factor |
The choice of 0.05 mm wire is driven by the need to minimize inter-turn capacitance. Reducing the conductor diameter from 0.15 mm to 0.05 mm decreases the facing surface area between adjacent turns by approximately 89%. Since inter-winding capacitance scales with conductor surface area, this directly translates to proportionally lower parasitic capacitance and a higher SRF.
The polyimide enamel insulation has a low relative permittivity (εr ≈ 3.5) and is applied in a thin, uniform coating, further suppressing electric field coupling between turns. The air-core topology eliminates ferrite core losses, permeability temperature drift, and DC bias saturation effects—the SRF is governed solely by the deterministic winding geometry.
| Parameter | Conical (HALT60005) | Standard Solenoid | Multi-Layer Ceramic |
|---|---|---|---|
| Bandwidth (Resonance) | Ultra-broadband; flat to 40 GHz | Narrowband; sharp resonant peak | Narrowband; high Q but limited BW |
| Insertion Loss Continuity | Excellent; no discrete dips | Poor; sudden amplitude drop at SRF | Moderate; typical HF roll-off |
| DC Current Capacity | 200 mA (0.05 mm wire) | High, limited by bulk size | Low; thin-film high resistance |
| Mechanical Footprint | Compact, 3.0 mm axial | Bulky; excessive board area | Compact; high parasitic C |
| Mounting | Symmetrical conical axial | Axial or radial horizontal | Surface-mount |
Q: Why does a single 1400 nH conical inductor outperform cascading multiple inductors?
A: In standard bias networks, achieving broadband isolation requires cascading a large-value inductor (for low frequencies) with a small-value inductor (for high frequencies). The connection between them forms a parasitic LC tank circuit that resonates in-band, producing a transmission dip. The HALT60005 combines high inductance with a tapered conical architecture, achieving continuous isolation from 20 MHz to 40 GHz in a single component with no junction parasitics.
Q: Is the 0.05 mm wire durable in high-vibration environments?
A: The low mass of the air-core structure (<5 mg) reduces susceptibility to mechanical shock. When properly secured with epoxy dot-fixing, the assembly passes MIL-STD-202 Method 204 vibration and Method 213 mechanical shock tests. There is no ferrite core to crack from CTE mismatch.
Q: What is the lead time for custom inductance values?
A: Hoan maintains quick-turn conical inductor prototyping. Custom values (typically 50 nH to 2000 nH in the 0.05 mm or 0.08 mm wire series) can be sampled within 3–4 weeks. Volume production lead times are 8–12 weeks. Contact Hoan with your target inductance, frequency band, and DC current requirement.