CIC1 90μm Ceramic Interdigitated Electrode (IDE) Capacitive Array Chip for Bio, Gas, and Humidity Sensors

$11.00

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SKU: CIC1 Category:
Description
Potentiolab • Ceramic Interdigitated Electrode

90μm Ceramic Interdigitated Electrode IDE Capacitive Array Chip

High-stability 90μm ceramic interdigitated electrode IDE capacitive array chip designed for biological, gas, humidity, chemical, and MEMS sensor applications.

90μm IDE PatternAlumina Ceramic

Ti/Cu/Ni/Au

90 micron ceramic interdigitated electrode IDE capacitive array chip for bio gas and humidity sensors
ceramic IDE capacitive array chip for biological gas humidity sensing applications
90μm IDE Structure
  • Line width: 90μm
  • Line spacing: 90μm
  • Finger length: 3.8mm
  • 9 pairs / 18 fingers
Alumina Ceramic Substrate
  • Substrate material: Alumina ceramic
  • Stable ceramic structure
  • Excellent insulation performance
  • Suitable for MEMS sensor applications
Ti/Cu/Ni/Au Metal Layer
  • Metal layer structure: Ti/Cu/Ni/Au
  • Excellent conductivity and bonding stability
  • Corrosion-resistant multilayer design
  • Reliable sensing performance
Wide Operating Temperature
  • Operating temperature: -150°C to 350°C
  • Excellent thermal stability
  • Suitable for harsh environments
  • Large solder pads for easy operation
Typical Applications
  • Biological sensing systems
  • Gas-sensitive sensors
  • Humidity-sensitive sensors
  • MEMS capacitive sensing chips
  • Chemical and physical sensor research
ItemSpecification
Product Name90μm Ceramic Interdigitated Electrode IDE Capacitive Array Chip
Substrate MaterialAlumina Ceramic
Overall Size5mm × 6mm
Line Width90μm
Line Spacing90μm
Finger Length3.8mm
Interdigitated Pairs9 pairs / 18 fingers
Metal Layer StructureTi/Cu/Ni/Au
Metal Layer ThicknessTi 0.1μm / Cu 5μm / Ni 4μm / Au 1μm
Operating Temperature-150°C to 350°C
Special FeatureLarge solder pads for easy handling
Product Advantages
This ceramic interdigitated electrode IDE capacitive array chip features a stable alumina ceramic substrate, 90μm IDE sensing structure, and Ti/Cu/Ni/Au multilayer conductive system. It is suitable for biological, gas, humidity, MEMS, chemical, and physical sensing applications requiring reliable performance and stable quality.
Precautions
  • Handle carefully to avoid scratching the electrode surface.
  • Avoid excessive mechanical impact on the ceramic substrate.
  • Clean gently with suitable laboratory-grade solvents before use.
  • Store in a clean, dry, and dust-free environment.
  • Custom electrode dimensions and patterns are available upon request.
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