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ATH-4012 DC Power Supply 30V / 3A 2 Channels

Perfect choice for repair and debugging processes and an ideal power supply for research laboratories. 4 digital LED displays. Indicators of CC and CV stabilization. Separate indication of current and voltage. Short circuit protection. Current / voltage stabilization mode. Tracking mode. Two channels. Output voltage: 0…30 V x 2 (independent channels). Output current: 0…3 A x 2 (independent channels). Dimensions: 10.3 x 6 x 13.8 in / 260 x 150 x 350 mm. Weight: 18.7 lb / 8.47 kg.

AKTAKOM ATH-4012 Power supply provides smoothly regulated stabilized voltage and stabilized current. This model is perfect choice for repair and debugging processes and an ideal power supply for research laboratories.

Features:

  • 4 digital LED displays
  • Indicators of CC and CV stabilization
  • Separate indication of current and voltage
  • Short circuit protection
  • Current / voltage stabilization mode
  • Tracking mode

Specifications:

  • Input voltage:
    - 110VAC~127VAC±10%/60Hz
    - 220VAC~240VAC±10%/50Hz (Switchable)
  • Output voltage: 0…30 V x 2 (independent channels)
  • Output current: 0…3 A x 2 (independent channels)
  • Line regulation:
    - CV = 1 x 10-4 + 3mV
    - CC = 2 x 10-3+ 3mA
  • Load regulation:
    - CV = 1 x 10-4+ 2 mV (I≤3A)
    - CV = 1x10-4+ 5 mV (I>3A)
    - CC = 2 x 10-3+ 3 mA (I≤3A)
    - CC = 2 x 10-3+ 5 mA (I>3A)
  • Ripple and noise:
    - CV = 0.5 mV rms (I≤3A)
    - CV = 1.0 mV rms (I>3A)
    - CC < 3mA rms
  • Fixed output: 10 mVrms
  • Protection: current-limit
  • Display accuracy
    - Volt indication: ±(0.2%Rdg+2 digits), ±2.5% Full Scale
    - Ampere indication: ±(1.0%Rdg+2 digits), ±2.5% Full Scale
  • Dimensions: 10.3 x 6 x 13.8 in / 260 x 150 x 350 mm
  • Weight: 18.7 lb / 8.47 kg

Accessories:

  • User Manual
  • Power Cord

Frequently Asked Questions

  • May I use AKTAKOM power supplies to charge accumulators?

  • May I use AKTAKOM power supplies to charge accumulators?

    AKTAKOM power supplies can’t be used for accumulator charging since it may cause the accumulator breakage (recharge, electrolyte boiling, extra pressure of the internal gas which will lead to the accumulator explosion). Accumulators should be charged with the current source which controls the accumulator voltage and regulates the charging current accordingly. When the required accumulator voltage is achieved such type of source simply stops the charging process, its name is a charging device.


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