Shenzhen Ali Brother Technology Co. Ltd
Shenzhen Ali Brother Technology Co. Ltd
Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
  • Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
  • Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
  • Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
  • Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
  • Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer
Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer

Wholesale Polyimide Heated Bed 160mm 12V 120W For 3D Printer

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Basic Info
Basic Info
Payment Type: PayPal, Western Union or T/T
Product Description
Product Description
  • Features:
    • Good tensile strength and tear resistance
    • Low out-gassing
    • Wattages: 2.5, 5 or 10W/in
    • Small, flexible radius
    • Chemically resistant to many solvents and oils
    • Comes with pressure sensitive adhesive backing
    • Working voltages:12-24V DC
    • Multiple power heaters and profiled power
  • Basic information:
    • Interior FEP binding stands 200°C
    • Applied in vacuum environment
    • Stand against most of chemical material such as acid, impregnated and alkali (except NaOH)
    • Size: can be very small
    • Thin and small curly semi-diameter
    • Temperature range: -50-200°C, maximum temperature is 150°C for the heater with paster
    • Materials: Kapton/FEP, polyimide membrane
    • Resistance precision range: ±10%ak±0.5Ω (taking maximum)
    • Medium strength: 1,000V RMS
    • Minimum curve semi-diameter: 0.8mm
  • Technical data:
    • Insulation: UDC500V ≥200MΩ
    • Dielectric strength: UAC≥2,000V
    • Operating temperature: ≤232°C
    • Power density: ≤1.1W/cm² or ≤6.5W/cm² (with thermostat)
    • Thickness: ≤0.2mm can bent at any angle
    • Weight: ≤278g/m²
  • Design instruction:
    • Drawing for maximum installation size of the heater
    • Relevant electric parameters: as power, voltage, resistance, current and tolerance
    • Direction, length and location of the lead wire
  • Why Kapton:
    • Heating for very small sizes
    • Very thin
    • High dielectric strength
    • Flexible circuit design
    • Superior tensile strength and tear resistance
    • Resistant to radiation and most solvents
    • Better choice far high watt density heaters (those over 5 watts/in)
    • Also used for watt densities of 5 or less
    • Good choice for heaters that require multi-zoned powers or heaters that have many holes and/or cutouts
    • May provide an economic advantage for high volume applications
  • Good tensile strength and tear resistance
  • Low out-gassing
  • Wattages: 2.5, 5 or 10W/in
  • Small, flexible radius
  • Chemically resistant to many solvents and oils
  • Comes with pressure sensitive adhesive backing
  • Working voltages:12-24V DC
  • Multiple power heaters and profiled power
  • Interior FEP binding stands 200°C
  • Applied in vacuum environment
  • Stand against most of chemical material such as acid, impregnated and alkali (except NaOH)
  • Size: can be very small
  • Thin and small curly semi-diameter
  • Temperature range: -50-200°C, maximum temperature is 150°C for the heater with paster
  • Materials: Kapton/FEP, polyimide membrane
  • Resistance precision range: ±10%ak±0.5Ω (taking maximum)
  • Medium strength: 1,000V RMS
  • Minimum curve semi-diameter: 0.8mm
  • Insulation: UDC500V ≥200MΩ
  • Dielectric strength: UAC≥2,000V
  • Operating temperature: ≤232°C
  • Power density: ≤1.1W/cm² or ≤6.5W/cm² (with thermostat)
  • Thickness: ≤0.2mm can bent at any angle
  • Weight: ≤278g/m²
  • Drawing for maximum installation size of the heater
  • Relevant electric parameters: as power, voltage, resistance, current and tolerance
  • Direction, length and location of the lead wire
  • Heating for very small sizes
  • Very thin
  • High dielectric strength
  • Flexible circuit design
  • Superior tensile strength and tear resistance
  • Resistant to radiation and most solvents
  • Better choice far high watt density heaters (those over 5 watts/in)
  • Also used for watt densities of 5 or less
  • Good choice for heaters that require multi-zoned powers or heaters that have many holes and/or cutouts
  • May provide an economic advantage for high volume applications
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    • Mr.  Yefeng

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