| Self-Resonant Frequency (SRF) | >40.0 GHz (Flat, resonance-free) |
| Tested Frequency Band | 0.01 - 40.0 GHz (Fixture-compensated) |
| Payment Terms | L/C,D/A,D/P,T/T, |
| Insertion Loss (10-500MHz) | <0.15 dB |
| RF Isolation (10MHz-20GHz) | >2.2 kΩ |
| Delivery Time | 3 working days stock, 15-25 days production |
| Supply Ability | 50000 Pieces per Month |
| Maximum Continuous Current | 200 mA (ΔT ≤15°C) |
| Recommended Frequency Band | 0.010 - 40.0 GHz |
| Nominal Inductance | 2000 nH (2.0 µH) ±20% (@10MHz, 0.1Vrms, 25°C) |
| Model Number | HALT68005 |
| Place of Origin | China |
| Brand Name | Hoan |
| Certification | ISO 9001:2015 |
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Product Specification
| Self-Resonant Frequency (SRF) | >40.0 GHz (Flat, resonance-free) | Tested Frequency Band | 0.01 - 40.0 GHz (Fixture-compensated) |
| Payment Terms | L/C,D/A,D/P,T/T, | Insertion Loss (10-500MHz) | <0.15 dB |
| RF Isolation (10MHz-20GHz) | >2.2 kΩ | Delivery Time | 3 working days stock, 15-25 days production |
| Supply Ability | 50000 Pieces per Month | Maximum Continuous Current | 200 mA (ΔT ≤15°C) |
| Recommended Frequency Band | 0.010 - 40.0 GHz | Nominal Inductance | 2000 nH (2.0 µH) ±20% (@10MHz, 0.1Vrms, 25°C) |
| Model Number | HALT68005 | Place of Origin | China |
| Brand Name | Hoan | Certification | ISO 9001:2015 |
| High Light | 2000nH Broadband Inductors ,Ultra Wideband Microwave Inductor ,40GHz Broadband Inductors | ||
The HALT68005 is a broadband conical inductor for millimeter-wave RF bias networks and high-speed optoelectronics operating from 10 MHz to 40 GHz. It delivers 2000 nH (2.0 µH) of nominal inductance—the highest in the broadband conical inductor product series—with a ±20% tolerance at 10 MHz. The component is wound with 0.05 mm (50 µm) ultra-fine oxygen-free copper wire in a continuously tapered conical geometry, rated for 200 mA continuous DC current across -55°C to +125°C.
A standard solenoid with 2000 nH of inductance would self-resonate below 500 MHz due to concentrated inter-turn parasitic capacitance. The HALT68005 overcomes this through its tapered conical architecture: turn diameter increases continuously from a narrow ~0.40 mm OD at the apex to a wider base, distributing parasitic capacitance across a mechanical gradient rather than concentrating it at a single LC product. The result is a flat, resonance-free high-impedance response spanning 10 MHz to 40 GHz—a frequency ratio of 4000:1 in a single 3.0 mm component.
An optional 0.08 mm wire configuration is available on custom order for applications requiring higher DC current at reduced upper bandwidth. The air-core construction eliminates magnetic saturation, maintaining the full 2000 nH inductance across the 0–200 mA DC range. Each unit is fixture-characterized: .s2p Touchstone data (10 MHz–40 GHz, 201 points, TRL-de-embedded to the component lead reference plane) is available for direct import into RF circuit simulators.
| Category | Parameter | Guaranteed Value | Test / Measurement Conditions |
|---|---|---|---|
| Electrical | Nominal Inductance | 2000 nH (2.0 µH) ±20% | 10 MHz, 0.1 Vrms, 25°C |
| Electrical | Self-Resonant Frequency (SRF) | >40.0 GHz | Flat, resonant-free high-impedance curve |
| Electrical | Maximum Continuous Current | 200 mA | Rated at ΔT ≤ 15°C temperature rise |
| Electrical | Recommended Frequency Band | 0.010 – 40.0 GHz | Broadband RF decoupling, millimeter-wave bias tee |
| Electrical | Tested Frequency Band | 0.01 – 40.0 GHz | With calibration fixture compensation |
| Physical | Overall Coil Length | 3.0 mm | Typical length of wound cone section |
| Physical | Winding Wire Diameter | 0.05 mm (50 µm) | Ultra-fine copper wire for maximum turns |
| Physical | Optional Wire Diameter | 0.08 mm | Custom low-DCR option for higher current |
| Physical | Lead Wire Finish | Gold / Tin Plated | Enhances micro-soldering and gold wire wedge bonding |
| Physical | Design Architecture | Air-core Conical Coil | Tapered winding with dual straight flying leads |
| Assembly | Mount Style | Flying Lead Welding | Suitable for eutectic soldering / micro-soldering |
| Assembly | Adhesive Stabilization | Epoxy Glue Fixing (mandatory) | Must be dot-epoxied to prevent vibration |
| Reliability | Operating Temperature | -55°C to +125°C | Industrial & Strategic Grade |
| Reliability | Storage Temperature & RH | 20–25°C, 40–60% RH | Cleanroom environment |
| Design Support | Simulation Data | .s2p Touchstone | 10 MHz–40 GHz, VNA-characterized, fixture-de-embedded |
Achieving continuous operation from 10 MHz to 40 GHz requires solving two opposing physical constraints simultaneously. The 2000 nH inductance needed for 10 MHz blocking demands a high turn count, which naturally increases inter-turn parasitic capacitance and lowers the self-resonant frequency. The 40 GHz upper limit demands minimal capacitance, which favors fewer turns and lower inductance.
The conical winding resolves this trade-off through spatial separation of the low-frequency and high-frequency functions:
The result is a component whose effective SRF exceeds 40.0 GHz—limited by the test fixture parasitics, not the winding itself—while maintaining 2000 nH of blocking inductance at the low-frequency end.
Each unit undergoes VNA characterization on a calibrated millimeter-wave microstrip fixture with TRL de-embedding:
| Frequency Spectrum | Attenuation / Impedance | Significance |
|---|---|---|
| 10 MHz – 500 MHz | Extremely high inductive reactance; insertion loss < 0.15 dB | Outstanding low-frequency transition blocking; isolates power supplies from noise starting at 10 MHz |
| 10 MHz – 20 GHz | Flat, continuous isolation; no major dip or resonant peak | Delivers > 2.2 kΩ RF isolation; suitable for high-speed telecom transceivers |
| 10 MHz – 40 GHz | Outstanding high-frequency response; shielding maintained to 40 GHz | Verified millimeter-wave performance; microstrip layout must minimize parasitic pad capacitance |
| Engineering Parameter | HALT68005 (2000 nH) | HALT60005 (1400 nH) | Design Guideline |
|---|---|---|---|
| Nominal Inductance | 2000 nH (2.0 µH) | 1400 nH (1.4 µH) | HALT68005 provides the highest inductance, enabling filtering down to 10 MHz |
| Winding Wire Diameter | 0.05 mm (50 µm) | 0.05 mm (50 µm) | Both use ultra-fine wire; HALT68005 features more compact winding to pack additional turns |
| Maximum DC Current | 200 mA | 200 mA | Both support up to 200 mA continuous current |
| Lower Frequency Limit | 10 MHz | 20 MHz | HALT68005 starts filtering at 10 MHz—one octave lower |
| Upper Frequency Limit | 40.0 GHz | 40.0 GHz | Both maintain low parasitic capacitance for 40 GHz operation |
| Recommended Application | Ultimate low-frequency mmWave bias tees, 40G/100G transceivers | Wideband bias tees, general mmWave decoupling | Use HALT68005 for applications requiring filtering below 20 MHz with mmWave coverage |
Q: Why is a single 2000 nH conical inductor preferred over cascading multiple inductors?
A: Cascading a large-value inductor with a small-value inductor creates a parasitic LC circuit at their junction, introducing a sharp resonant dip in the microwave band. The HALT68005 combines 2000 nH inductance with a tapered conical architecture, achieving continuous, resonance-free isolation from 10 MHz to 40 GHz in a single component with no junction parasitics.
Q: Is the 0.05 mm wire durable enough for strategic-grade high-vibration environments?
A: While a 0.05 mm wire is extremely delicate, the low mass of the air-core conical coil reduces its susceptibility to mechanical shock. When properly secured with a micro-dot of low-outgassing epoxy on the side of the winding, the assembly passes strategic-grade vibration and mechanical shock tests (MIL-STD-202, Method 204 & 213). There is no ferrite core to crack from CTE mismatch.
Q: Why is the upper frequency limit rated at 40 GHz?
A: The 40 GHz rating is achieved through the 0.05 mm ultra-fine wire, which minimizes capacitive coupling between winding turns to the practical minimum. This allows the inductor to maintain its inductive high-impedance state without entering parallel resonance, ensuring continuous shielding to 40.0 GHz. Above this frequency, pad parasitics and fixture limitations dominate the apparent response rather than the winding itself.
Company Details
Business Type:
Manufacturer
Year Established:
50%-60%
Total Annual:
>1000000
Employee Number:
>100
Ecer Certification:
Verified Supplier
Xi'an Hoan Microwave Co., Ltd. was established in 2005. The company is located in the High-tech Zone of Xi'an. The company covers an area of 800 square meters, including 500 square meters of production area and 300 square meters of office area. It is a professional enterprise specializing in t... Xi'an Hoan Microwave Co., Ltd. was established in 2005. The company is located in the High-tech Zone of Xi'an. The company covers an area of 800 square meters, including 500 square meters of production area and 300 square meters of office area. It is a professional enterprise specializing in t...
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