Narrow linewidth series microwave ferrite materials

Product > Microwave Ferrite > Narrow linewidth series microwave ferrite materials

Narrow linewidth series microwave ferrite materials

Narrow Linewidth Ferrites: Precision Engineered for High-Fidelity RF Systems

Why Linewidth Matters?
Ferromagnetic resonance (FMR) linewidth (ΔH) directly determines microwave device performance:

      · ΔH <20 Oe: Enables ultra-low loss phase shifters (Insertion loss <0.1dB @ Ka-band)

      · ΔH <15 Oe: Critical for quantum radar receivers (Reduction of noise coefficient 40%)

      · ΔH <10 Oe: Essential in superconducting RF cavities (Q value >10)

Our proprietary coprecipitation synthesis achieves ΔH=12-18 Oe with ±0.5 Oe batch consistency.


Six Technological Breakthroughs

  1. Atomic-Level Doping

      Bi³/La³ Ion substitution control (Lattice distortion <0.02Å)

      Anisotropy field H<sub>a</sub> 3000-5000 Oe adjustale

  2. Nano-Grain Structure

      Average grain size 0.3-0.8μm (1/5 of traditional craftsmanship)

      Density ≥95% (theoretical value)

  3. Frequency Customization

      Working frequency band 2-110GHz (Support Sub-6G to THz)

      Dielectric constant ε=10-14 ±0.2

  4. Extreme Stability

      Temperature coefficient TCμ <1×10⁻⁴/°C (-196°C to +200°C)

      Aging rate <0.1%/decade

  5. Mass Production Capability

      Monthly production capacity 5,000 pcs (Φ100mm wafer)

      Cpk value ≥1.67 (Six Sigma Process)

  6. High-Grade Reliability

      MIL-F-15733 Radiation Resistance Certification

      100% HIP densification treatment


Performance Benchmarking

Parameter

Our NW Series

Industry Average

Improvement

Linewidth (ΔH)

14.5 Oe

25-35 Oe

45%↓

Insertion Loss

0.08dB/cm

0.25dB/cm

68%↓

Power Handling

1kW/cm²

300W/cm²

3.3×↑

Cost per GHz

$12

$18

33%↓







Enabling Cutting-Edge Applications

  1. Low Earth Orbit Satellite Payload

      · Interstellar laser communication magneto-optical isolator (extinction ratio>40dB)

      · Multi beamforming network (phase error<1 °)

  2. Millimeter wave base station

      · 64T64R Massive MIMO Phase Shifter (Delay<0.5ps)

      · DPD Linearization Loop (Third Order Intermodulation<-70dBc)

  3. Quantum computing

      · Superconducting qubit reading resonant cavity

      · Magnetic flux pump isolation component

  4. Electronic countermeasure

      · Core material of DRFM digital RF memory

      · Cognitive interference machine reconfigurable filter

Typical technical indicators and foreign reference brands

TYPES

SATURATION MAGNETIZATION

4πMs (Gauss

±5%

CURIE

TEMPERATURE

Tc

LINE WIDTH

ΔH

(Oe)

 

SPIN WAVE

LINE WIDTH

ΔHk(Oe)

±20%

DIELECTRIC

CONSTANT

ε’

±5%

DIELECTRIC

LOSS TANGENT

tanδ

 

19G3

1950

250

≤16

2

14.6

≤0.0002

18G32

1850

260

≤16

2

14.1

≤0.0002

18G20

1800

280

≤22

2

14.1

≤0.0002

Y1801

1650

250

≤16

2

14.1

≤0.0002

16G3

1600

240

≤16

2

14.0

≤0.0002

14G34

1400

220

≤16

2

13.8

≤0.0002

12G32

1200

210

≤16

2

13.6

≤0.0002

10G3

1000

200

≤16

2

13.4

≤0.0002

8G4

800

180

≤16

2

13.1

≤0.0002

14V

1400

230

≤16

2

13.5

≤0.0002

12V

1200

220

≤16

2

13.3

≤0.0002

FAQ Section:

  Q: How to measure ferrite linewidth accurately?

  A: We provide VNA-based ΔH test kits with ±0.2 Oe uncertainty. [Watch Measurement Demo]

  Q: Can narrow ΔH ferrites reduce phase noise?

  A: Yes! NW-315 grade lowers VCO phase noise by 6dBc/Hz @10kHz offset.