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Conical Inductor
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High Density SMD Inductor Compact Surface Mount Inductor For Broadband Operation

High Density SMD Inductor Compact Surface Mount Inductor For Broadband Operation

Brand Name: HALT
Model Number: HALT20008
MOQ: 10 Pieces
Payment Terms: T/T,L/C,PayPal,Western Union
Supply Ability: 100000 Pieces per Month
Detail Information
Place of Origin:
Shaanxi, China
Certification:
ISO 9001:2015, RoHS Compliant
Inductor Type:
Conical Inductor
Frequency Range:
200MHz To 40GHz
Self-Resonant Frequency:
Greater Than 40GHz
Mounting Type:
SMD Surface Mount
Reliability Rating:
MIL-STD-202 Compliant
Supply Ability:
100000 Pieces per Month
Highlight:

High Density SMD Inductor

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SMD Inductor Compact

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Compact Surface Mount Inductor

Product Description

HALT20008 Conical Inductor Compact Size High Density SMD Design for High Reliability Resonance Free Broadband Operation


HALT20008 Conical Inductor — Compact High-Reliability Broadband SMD Solution

Industry Context: The Reliability Imperative in Modern RF Systems

As RF systems migrate from sheltered data centers to outdoor tower tops, low-earth orbit satellites, and airborne platforms, component reliability has become the dominant design constraint. A single failed bias tee in a 64T64R mMIMO array can degrade beamforming performance by 3–6 dB in affected sectors — potentially violating FCC/3GPP spectral emission masks. The HALT20008 conical inductor addresses this challenge with MIL-STD-202 qualified construction, gold metallization, and a demonstrated MTBF exceeding 10 million hours at 85°C ambient, enabling network operators to meet 10-year mean-time-between-repair (MTBR) targets without redundant component designs.

Compact Design Without RF Compromise

Miniaturization in RF engineering traditionally forces painful trade-offs — smaller components mean narrower bandwidth, lower power handling, or reduced reliability. The HALT20008's conical winding geometry achieves 7.6 octaves of bandwidth (200MHz–40GHz) in standard EIA SMD packages, outperforming distributed-element alternatives that require 5–10* more board area. Key density metrics:

  • Channel density: Up to 16 independent bias tee channels on a 50mm * 50mm PCB
  • Package options: 0603 (1.6*0.8*0.6mm), 0805 (2.0*1.25*0.9mm), 1206 (3.2*1.6*1.2mm)
  • Assembly compatibility: Standard JEDEC reflow profile (peak 260°C, RoHS compliant)

Reliability Engineering: Measured Data, Not Marketing Claims

Reliability is quantified, not asserted. The HALT20008's reliability pedigree is built on:

Proven Metallization System

2.5-micron gold over nickel barrier termination, tested to 1,000+ thermal cycles (-55°C to +125°C, 15-minute dwell, MIL-STD-202 Method 107 Condition B) with zero solder joint failures and < 2% DC resistance shift. Gold metallization eliminates tin whisker risk — a critical requirement for space, avionics, and high-reliability ground systems.

Validated Field Data

Accelerated life testing across 5 million device-hours at 85°C ambient yields a calculated MTBF of >10 million hours (MIL-HDBK-217F, ground benign). At 60% derating (300mA max for mission-critical applications), predicted MTBF extends beyond 50 million hours.

Environmental Survivability

  • Thermal Shock: MIL-STD-202 Method 107, Condition B — 15 cycles, -55°C to +125°C
  • Vibration: MIL-STD-202 Method 204, Condition D — 20G peak, 10–2000Hz, 12 hours per axis
  • Moisture Resistance: MIL-STD-202 Method 106 — 10 cycles, 25–65°C, 90–98% RH
  • MSL Rating: Level 1 per J-STD-020 — unlimited floor life, no dry-pack required

Technology Comparison: Choosing the Right Broadband Solution

Selection Criteria HALT20008 Conical Chip Spiral Inductor Tapered Distributed Stub Ferrite Bead
Bandwidth 200MHz–40GHz ✅ 50MHz–8GHz ⚠️ SRF limited 2–18GHz ⚠️ size-dependent 1MHz–3GHz ❌ narrowband
Board Area (mm²) 1.6–4.0 ✅ 2.5–9.0 15–80 ❌ 1.6–3.2 ✅
DC Current Up to 500mA ✅ 100–300mA N/A ❌ 50–500mA ✅
Phase Linearity < ±2° ✅ ±8–15° ❌ ±5–10° ⚠️ ±20°+ ❌
Thermal Range -55 to +125°C ✅ -40 to +85°C -55 to +125°C ✅ -40 to +125°C
MTBF (85°C) >10M hours ✅ 1–5M hours >50M hours ✅ 5–20M hours ✅
Cost (10k volume) $0.85–3.50 ✅ $0.10–0.80 $2.00–15.00 ❌ $0.05–0.50
Best For Broadband bias tee ✅ Narrowband matching mmWave only Power supply filtering

Application Deep-Dives

  • 5G mMIMO Active Antenna Unit (AAU): In a 64T64R n78 (3.3–3.8GHz) AAU, 64 bias tees using HALT20008 inductors in 0603 packages occupy less than 1,000mm² total board area — under 3% of a typical 350*250mm AAU PCB. The >10M-hour MTBF means statistically <1 field failure per 10,000 deployed AAUs over 10 years, eliminating the need for redundant bias paths that would double BOM cost and board area.
  • Airborne AESA Radar (X-band, 8–12GHz): The HALT20008's 1,000+ thermal cycle endurance supports fighter aircraft mission profiles with 600+ flight hours per year and ambient temperature swings from -55°C (high altitude) to +85°C (carrier deck, engine proximity). Gold metallization prevents tin whisker formation that could cause inter-element short circuits in densely packed T/R module arrays.
  • LEO Satellite Constellation: In a 1,000-satellite constellation with 16 bias tees per payload, the HALT20008's MSL 1 rating eliminates dry-pack storage and baking requirements during satellite integration, saving approximately 200 person-hours per satellite in assembly flow. Field-reliability data supports 7-year mission life without redundant bias paths.

Design for Reliability: Best Practices

PCB Material Selection: Above 20GHz, use low-loss laminates (Rogers RO4350B, Megtron 6, or equivalent; Df < 0.004 at 10GHz). FR-4 is acceptable below 6GHz but contributes 0.5–1.0dB additional insertion loss per 10mm of trace at 20GHz.

Thermal Management: At maximum DC current (500mA) and worst-case DCR (0.8Ω), the HALT20008 dissipates 200mW. Provide at least 10mm * 10mm of copper ground pour for heat spreading. No forced air cooling is required at or below 300mA.

Derating for Critical Missions: For space, airborne, or life-safety applications, derate DC current to 60% of maximum (300mA) and peak RF power to 50% (+27 dBm). This extends predicted MTBF beyond 50 million hours at 85°C ambient per MIL-HDBK-217F.

Inspection Criteria: Accept per IPC-A-610 Class 3 for high-reliability applications. Solder joint inspection under 40* magnification; minimum 75% solder fillet on termination end caps.

Technical Specifications

Model Number HALT20008
Frequency Range 200MHz – 40GHz (guaranteed, 100% production tested)
Self-Resonant Frequency > 40GHz (no SRF within operating band)
Inductance Range 0.5 nH – 100 nH
DC Resistance 0.02 – 0.8 Ohm
Rated DC Current 100mA – 500mA continuous
Package Options 0603 / 0805 / 1206 SMD (EIA standard)
Operating Temperature -55°C to +125°C
MTBF (85°C, ground benign) > 10 million hours (MIL-HDBK-217F)
Thermal Shock MIL-STD-202 Method 107, Condition B
Vibration MIL-STD-202 Method 204, Condition D (20G, 10–2000Hz)
Moisture Resistance MIL-STD-202 Method 106
Solderability MIL-STD-202 Method 208 (gold termination)

Frequently Asked Questions

Is the HALT20008 qualified for space applications?
The HALT20008 has passed MIL-STD-202 thermal vacuum cycling and vibration profiles consistent with LEO/MEO satellite requirements. Gold metallization eliminates tin whisker concerns. For Class S (NASA EEE-INST-002) or ESA ECSS-Q-ST-60 qualification, contact our engineering team for custom screening including DPA, SEM cross-section, and radiation hardness testing (TID and SEE characterization).
What lead time should I expect?
Stock quantities (≤1,000 pieces): 3–5 working days. Production volumes (10,000+ pieces): 2–4 weeks. High-reliability screened lots with full lot traceability, CofC, and S-parameter test data: 4–6 weeks. Custom screening (burn-in, thermal cycling): add 2 weeks.
Can I get S-parameter data for my specific PCB stack-up?
Yes. Every production lot undergoes S-parameter characterization from 10MHz to 43.5GHz (Keysight PNA-X, SOLT calibration). Standard S2P Touchstone files (50Ω reference) are included with every shipment. Custom characterization for your specific impedance environment and PCB stack-up is available as an engineering service.
How do I verify the HALT20008 before committing to a production design?
Request our evaluation kit, which includes 5 each of 0603, 0805, and 1206 variants mounted on Rogers RO4350B evaluation boards with SMA connectors and calibration structures. S-parameter data and a getting-started guide for bias tee design are included.

Contact our reliability engineering team for detailed qualification reports, MTBF calculations, and application-specific derating analysis for your mission profile.