| Self-Resonant Frequency (SRF) | >40.0 GHz (Flat, resonance-free curve) |
| Assembly Method | Flying Lead Welding + Epoxy Dot-Fixing |
| Payment Terms | L/C,D/A,D/P,T/T, |
| S-Parameters Data | 10MHz-40GHz .s2p Touchstone Available |
| Delivery Time | 3 working days stock, 15-25 days production |
| Rated Frequency Band | 0.025 - 40.0 GHz |
| Supply Ability | 50000 Pieces per Month |
| Nominal Inductance | 1000 nH (1.0 µH) ±20% (@10MHz, 0.1Vrms, 25°C) |
| Core Architecture | Air-core Conical Coil |
| Brand Name | Hoan |
| Certification | ISO 9001:2015 |
| Place of Origin | China |
| Model Number | HALT50005 |
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Product Specification
| Self-Resonant Frequency (SRF) | >40.0 GHz (Flat, resonance-free curve) | Assembly Method | Flying Lead Welding + Epoxy Dot-Fixing |
| Payment Terms | L/C,D/A,D/P,T/T, | S-Parameters Data | 10MHz-40GHz .s2p Touchstone Available |
| Delivery Time | 3 working days stock, 15-25 days production | Rated Frequency Band | 0.025 - 40.0 GHz |
| Supply Ability | 50000 Pieces per Month | Nominal Inductance | 1000 nH (1.0 µH) ±20% (@10MHz, 0.1Vrms, 25°C) |
| Core Architecture | Air-core Conical Coil | Brand Name | Hoan |
| Certification | ISO 9001:2015 | Place of Origin | China |
| Model Number | HALT50005 | ||
| High Light | 25MHz Broadband Inductors ,40GHz Broadband Inductors ,1.0uH RF Choke Coil | ||
A designer looking at the number 1.0 µH and then scanning across to 40 GHz has every right to be skeptical. Conventionally, an inductor delivering a full microhenry of inductance requires enough turns that the aggregate inter-winding capacitance produces a self-resonance somewhere in the low hundreds of megahertz. At 40 GHz, that same component has long since transitioned from inductive to capacitive behavior and offers essentially zero RF isolation.
The HALT50005 achieves this seemingly contradictory combination of specifications by employing a continuously tapered conical winding wound from 0.05 mm (50 µm) oxygen-free copper wire. The key insight is not to eliminate parasitic capacitance—that is physically impossible in any multi-turn winding—but to distribute it across a geometric gradient so that no single LC product dominates. At the narrow apex, the microscopic turn diameter presents negligible shunt loading to the 50-Ω microstrip, allowing K-band and millimeter-wave signals to pass unimpeded. At the wide base, the accumulated 1.0 µH of inductance blocks signals with a low-frequency corner of just 25 MHz. Between these two extremes lies a continuous impedance spectrum with no discrete self-resonant peak.
The HALT50005 is rated for 250 mA of continuous DC current with a temperature rise constrained to 15°C or less. An optional 0.08 mm heavy-wire variant is available on custom order for applications that prioritize current handling over the last few gigahertz of upper bandwidth.
Each HALT50005 undergoes production VNA testing on a TRL-calibrated microstrip fixture. The measured behavior across the operating spectrum is summarized below:
| Frequency Span | Through-Line Loss | RF-to-DC Blocking | Design Significance |
|---|---|---|---|
| 10 MHz – 500 MHz | Remains below 0.15 dB | Very high reactive impedance | Blocks power-supply noise and low-frequency spurs from the bias rail; negligible attenuation of the main RF path |
| 10 MHz – 20 GHz | Flat; no resonant dips detected | Exceeds 1.8 kΩ (>65 dB in 50 Ω) | Rated band for wideband bias tees spanning VHF through K-band |
| 10 MHz – 40 GHz | Flat; measurement floor limits resolution above 25 GHz | Shielding sustained to the 40 GHz instrument limit | Verified mmWave performance; PCB pad layout dominates residual parasitics at the high band edge |
| Parameter | Guaranteed Value | Test Conditions |
|---|---|---|
| Model | HALT50005 | — |
| Topology | Air-core conical, dual axial flying leads | — |
| Inductance | 1000 nH (1.0 µH) ±20% | 10 MHz, 0.1 Vrms, 25°C |
| SRF | Higher than 40.0 GHz | Flat impedance; no discrete LC resonance |
| Rated Band | 0.025 – 40.0 GHz | Bias-tee and broadband decoupling |
| Tested Band | 0.01 – 40.0 GHz | Fixture-compensated VNA measurement |
| DC Current | 250 mA continuous | ΔT ≤ 15°C |
| Heavy-Wire Option | 0.08 mm (custom order) | Reduced DCR; lower upper bandwidth |
| Conductor | 50 µm OFC, polyimide jacket | Au/Sn plated terminations |
| Length | 3.0 mm | Along winding axis |
| Temperature | -55°C to +125°C | Industrial & Strategic Grade |
| Storage | 20–25°C, 40–60% RH | Cleanroom; 12-month shelf |
| Mounting | Soldered lead + epoxy dot | SAC305, AuSn, PbSn; ≤2s @ 280–320°C |
| Design Data | .s2p Touchstone (10 MHz–40 GHz) | 201 points; TRL-de-embedded to lead reference plane |
Many conical inductors in this product family start their rated blocking at 50 MHz or even 100 MHz. The HALT50005 extends the low-frequency corner down to 25 MHz—a 50% improvement over the 550 nH series—because the higher inductance (1.0 µH versus 0.55 µH) generates proportionally more inductive reactance at any given frequency. For systems that carry low-frequency telemetry tones, supervisory channel modulation, or slow control signals on the bias line, this additional octave of low-end blocking margin eliminates the need for a separate large-value choke in the bias network.
The 250 mA current rating—25% higher than the 550 nH series at 200 mA—reflects the slightly thicker wire gauge used in the available turns, which also marginally reduces the DC resistance and the associated I²R self-heating. This makes the HALT50005 particularly well-suited for bias tees in GaN power amplifier drain bias networks, where the combination of high bias current and wide operating bandwidth places simultaneous demands on both the current capacity and the frequency response of the choke element.
Q: How is this variant different from the HALT40005 series?
A: The HALT50005 provides 1000 nH (1.0 µH) of inductance versus 550 nH for the HALT40005 series. This higher inductance extends the low-frequency blocking corner from 50 MHz down to 25 MHz and increases the RF isolation to >1.8 kΩ (versus >1.5 kΩ). The current rating is also higher at 250 mA (versus 200 mA). All three variants share the same 0.05 mm wire, conical geometry, and 40 GHz upper frequency limit.
Q: Our bias tee must pass signals down to 30 MHz. Is 25 MHz start sufficient?
A: The 25 MHz rating represents the -3 dB corner of the choke’s inductive reactance curve. At 30 MHz, the HALT50005 provides approximately 1.2× the reactance available at the corner frequency, delivering robust blocking with comfortable margin. If your application requires blocking below 25 MHz, contact Hoan for custom higher-inductance conical inductor options.
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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