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High-Precision 6J13 Manganin Alloy Foil 0.0125*100mm

Place of Origin Shanghai
Brand Name Huona
Certification ISO9001
Model Number 6J13
Minimum Order Quantity 20kg
Price Negotiable
Packaging Details Carton/Wooden case
Delivery Time 5-21 days
Payment Terms L/C,T/T,Western Union,MoneyGram
Supply Ability 500 tons per month

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Product Details
Product Name 6J13 Manganin Alloy Foil Thickness 0.0125mm (12.5μm) (tolerance: ±0.0005mm)
Width 102mm (tolerance: ±0.15mm) Resistivity (20℃) 0.44±0.04 μΩ·m
TCR (-40℃ To 140℃) ±8 Ppm/℃ Elongation (Annealed) ≥28%
Surface Roughness (Ra) ≤0.1μm Operating Temperature Range -50℃ To 130℃ (continuous)
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6J13 Manganin alloy foil

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0.0125mm precision alloy foil

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100mm wide Manganin foil

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Product Description
High-Precision 6J13 Manganin Alloy Foil 0.0125*100mm
Product Overview

6J13 manganin alloy foil (0.0125mm×100mm), a ultra-thin precision resistance material independently developed by Huona New Material, is a Mn-Cu-Ni ternary alloy foil engineered for miniaturized high-precision components. Through proprietary "ultra-thin cold-rolling + vacuum annealing" technology, this foil achieves an extreme thickness of 0.0125mm (12.5μm) with ultra-tight tolerance (±0.0005mm) and uniform width of 100mm--perfectly matching the processing requirements of micro-electronic elements and pressure sensor grids.

Standard Designations & Application-Oriented Foundation
  • Alloy Grade: 6J13
  • Dimensional Specification: 0.0125mm (12.5μm) thickness × 100mm width (tolerance: thickness ±0.0005mm, width ±0.15mm)
  • International Alignment: Performance comparable to DIN 17471 CuMn12Ni2 ultra-thin foils
  • Compliant Standards: GB/T 1234-2019 + GB/T 2059-2021 + IEC 60404-8-2
  • Manufacturer: Huona New Material, certified to ISO 9001 and RoHS
Key Core Advantages
1. Ultra-Thin Precision for Miniaturization
  • Extreme Thickness Advantage: 0.0125mm thickness (12.5μm) is 75% thinner than conventional 0.05mm manganin strips
  • Dimensional Uniformity: Thickness variation across the entire foil width (100mm) is ≤0.0003mm
2. Sensor-Specific Performance Optimization
  • Stable TCR for Measurement Accuracy: TCR as low as ±8 ppm/℃ (-40℃ to 140℃)
  • Flexibility for Curved Sensors: Elongation ≥28% (annealed state) enables bending to a minimum radius of 0.1mm
3. Micro-Processing Adaptability for Electronic Elements
  • Ultra-Fine Etchability: Supports micro-chemical etching with line width as narrow as 0.01mm
  • Clean Surface for Thin-Film Bonding: Oil-free, oxide-free surface ensures strong adhesion with substrates
Technical Specifications
Attribute Value (Typical) Application Significance
Chemical Composition (wt%) Cu: 82.0-86.0%; Mn: 12.0-13.0%; Ni: 2.0-3.0%; Fe: ≤0.5%; Si: ≤0.1% Optimized for ultra-thin rolling ductility (avoids fracture)
Thickness 0.0125mm (12.5μm) (tolerance: ±0.0005mm) Fits micro-sensor layer gaps (≤20μm)
Width 100mm (tolerance: ±0.15mm) Matches standard sensor substrate sizes (100mm×100mm)
Resistivity (20℃) 0.44±0.04 μΩ*m Balanced for 0.01mm line-width resistors (avoids overheating)
TCR (-40℃ to 140℃) ±8 ppm/℃ Ensures pressure sensor accuracy ≤0.1% FS
Product Specifications
Item Specification Processing Advantage
Surface Finish Bright annealed (oxide-free, oil-free) Reduces etching pre-treatment time by 30%
Flatness ≤0.03mm/m Ensures uniform etching and bonding pressure
Supply Form Rolls (20m/50m per spool, spool diameter 80mm) Prevents foil creasing (critical for ultra-thin materials)
Typical Application Scenarios
  • Pressure Sensors: Strain gauge grids for MEMS pressure transducers
  • Ultra-Miniature Electronic Elements: Thin-film resistors for foldable smartphones
  • Precision Measuring Instruments: Resistance elements for portable digital pressure gauges
  • Automotive Electronics: Strain gauge foils for tire pressure monitoring systems (TPMS)
Huona's Application-Specific Support
  • Sensor Etching Kit: Provides free etching parameter templates
  • Substrate Bonding Guidance: Offers tailored recommendations for adhesive selection
  • Small-Batch Customization: Accepts MOQ of 20m for this fixed specification