• 12 V TEC1-12705 Thermoelectric Peltier Cooling Module
  • 12 V TEC1-12705 Thermoelectric Peltier Cooling Module
  • 12 V TEC1-12705 Thermoelectric Peltier Cooling Module
  • 12 V TEC1-12705 Thermoelectric Peltier Cooling Module
  • 12 V TEC1-12705 Thermoelectric Peltier Cooling Module
  • 12 V TEC1-12705 Thermoelectric Peltier Cooling Module

12 V TEC1-12705 Thermoelectric Peltier Cooling Module

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    Product Description:
    This TEC1-12705 thermoelectric Peltier cooling module is a compact and efficient solid-state cooler that creates a temperature difference between its two sides when powered with 12 V DC. Ideal for DIY cooling projects, electronics temperature control, portable mini-fridges, CPU/electronics cooling, and custom thermal solutions, this module delivers reliable performance without moving parts. (solid-state Peltier cooling technology)


    Specifications:

    • Model: TEC1-12705 thermoelectric cooler Peltier module

    • Rated Voltage: 12 V DC (typical)

    • Maximum Voltage: ~15 V (peak tolerance)

    • Rated Current: ~5 A (approx. 5.2 A max)

    • Power: ~50–54 W cooling capacity

    • Dimensions: 40 × 40 × ~4 mm

    • Thermocouples: 127 semiconductor couples

    • Max Temperature Difference (T): Up to ~68–80 °C (hot-cold differential)

    • Operating Principle: Creates a hot side and cold side via Peltier thermoelectric effect


    Key Features:

    • Solid-state cooling module with no moving parts, ensuring silent operation and long life

    • Bidirectional temperature effect: Hot and cold sides switch by reversing polarity

    • Compact 40 × 40 mm form factor fits into a wide range of electronics and DIY projects

    • High temperature differential makes it suitable for cooling and heating applications

    • Easy to install with DC power and compatible with added heat sinks for better performance


    Other Details:

    • Commonly used in electronic cooling for CPUs, GPUs, and small components

    • Useful in portable refrigeration systems (mini fridges, drink coolers)

    • Ideal for DIY projects like insulated cooler boxes or custom thermal devices

    • Can be used in temperature-controlled enclosures for sensors, lasers, or medical instruments

    • Best performance requires proper heat dissipation on the hot side with heat sinks or fans




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