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APS-7203 Programmable DC Power Supply

3-channel programmable budget DC power supply. Rated Output Voltage: 0~32V x2; 0~6V x1. Rated Output Current: 0-3A x3. Resolution Voltage: 10mv. Resolution Current: 1mA (≤3A) / 2mA (>3A). Power Effect Voltage: ≤3mV. Power Effect Current: ≤3mA. Load Effect Voltage: ≤3mV (≤3A) / ≤8mV (>3A). Load Effect Current: ≤3mA (≤3A) / ≤5mA (>3A). Set Accuracy Voltage: ≤0.05%+10mV (≤36V) / ≤0.05%+20mV (>36V). Set Accuracy Current: ≤0.1%+5mA (≤3A) / ≤0.1%+10mA (>3A). Ripple (20Hz~20MHz) Voltage: ≤1mVrms (≤3A). Ripple (20Hz~20MHz) Current: ≤3mArms (≤3A) / ≤5mArms (>3A). Memory Store/Recall: 0~90 points. Memory Setting timer (resolution): 1s~9999s (1s). Dimensions: 230x140x380mm / 9.1x5.5x15in

Manuals: 
User's Manual (3.42 Mb)

AKTAKOM APS-7203 is high-performance 3-channel programmable budget DC power supply. It has a clear LCD panel with simultaneous output/parameter view for better reading of the output and programming. APS-7203 power supply is ideal for applications requiring high resolution, multiple output and automated operation such as production testing and rack mounting system.

Features

  • Full digital programmable interface
  • Compact and lightweight package
  • Precession resolution
  • Low Ripple and Noise
  • Quick Response time
  • High stability. Low Drift (<100ppm)
  • Over-voltage, over-current, over temperature protection
  • Built-in buzzer for warning alerts
  • Serial and Parallel operation
  • 100 groups setting storage
  • Alterable display mode
  • Intelligent window interface
  • Intelligent fan control
  • Standard Interface: RS-232, USB
  • Nominal Voltage 110V

Specifications

  • Channels: 3 Channel
  • Rated Output Voltage: 0~32V x2; 0~6V x1
  • Rated Output Current: 0-3A x3
  • Resolution Voltage: 10mv
  • Resolution Current: 1mA (≤3A) / 2mA (>3A)
  • Power Effect Voltage: ≤3mV
  • Power Effect Current: ≤3mA
  • Load Effect Voltage: ≤3mV (≤3A) / ≤8mV (>3A)
  • Load Effect Current: ≤3mA (≤3A) / ≤5mA (>3A)
  • Set Accuracy Voltage: ≤0.05%+10mV (≤36V) / ≤0.05%+20mV (>36V)
  • Set Accuracy Current: ≤0.1%+5mA (≤3A) / ≤0.1%+10mA (>3A)
  • Ripple (20Hz~20MHz) Voltage: ≤1mVrms (≤3A)
  • Ripple (20Hz~20MHz) Current: ≤3mArms (≤3A) / ≤5mArms (>3A)
  • Memory Store/Recall: 0~90 points
  • Memory Setting timer (resolution): 1s~9999s (1s)
  • Dimensions: 230x140x380mm / 9.1x5.5x15in

Accessories

  • Power Cord

  • CD-ROM (including User Manual and Application Software)

  • USB cable

Safety Precautions

  • Handling or storage, the use of pressure or vibration should be avoided.
  • Without a professional technician, you should not dismantle the machine by yourself when it does not work in order not to result in a change in its characteristics.
  • Note the use of power supply 230V/115V and fuse specifications instructions.
  • The machine uses a three-linear power supply, to ensure that the machine casing and power have good grounding protection.
  • To avoid the above +10 V voltage outside the signal output.
  • Range of operating environment 0 °C ~ 40 °C; and should be avoided at high temperatures, high humidity, and magnetic interference of the operation.

Power supply controls

1 POWERPress this button to make the power on
2DISPLAYThe display Settings of voltage and current, output voltage and output current, setting and output condition
3CHI OUTCHI output terminals
4CH2 OUTCH2 output terminals
5CH3 OUTCH3 output terminals
6GND TerminalGround terminal connecting to CASE
7Rotary Encoder Shuttle knob: it can immediately adjust the output voltage and current steppingly
8V SET (CHI)Set Output voltage: Switch to channel 1 by pressing [SHIFT] [CHI] to proceed group setting
9I SET (CH2)Set Output current: Switch to channel 2 by pressing [SHIFT] [CH2] to proceed group setting
10OVP SET (CH3) Set OVP value: Switch to channel 3 by pressing [SHIFT] [CH3] to proceed group setting
11F/C (STEP)Switch input of shuttle knob to be macro-tuning and micro-tuning; you can increase or decrease the steps of the order in the mode of shuttle by pressing F/C
12RECALL (STORE)Recall the stored information. Proceed information storing and editing by pressing [SHIFT][STORE],
13AUTO (COMM)Single click namely after entering automatically execute mode. Click [SHIFT] [COMM] into the interface of the communication setting
14INDEP
(PARA/SER)
Press the [SHIFT][PARA/SER] into parallel selection screen,
Single click [INDEP] key to independent output mode
15OCP
(OVP RESET)
OCP on/off open or close OCP
Press [SHIFT][RESET] key to clear over-voltage protection
16 SHIFTThe second function selection, clear the selected channel while pressing it.
17CONTRAST Proceed the contrast adjustment of the display by pressing [SHIFT][C0NTRAST]. The rotary shuttle knob can adjust display contrast; press [ENTER] to exit setting.
18Turn on/off the buzzer by pressing [SHIFT] [ ]
19Move the cursor upward by pressing [↑] in the condition of storage
20Move the cursor downward by pressing [↓] in the condition of storage
21Move the cursor on the left by pressing [←] in the condition of storage
22Move the cursor on the right by pressing [→] in the condition of storage
23OUTPUT Turn on or off output by pressing the knob; when you select a channel, you can turn on/off the corresponding channel; when you select no channel, you turn on/off all channels.
240~9
".", ENTER
Data entry, ENTER Value output
25[W], "0"Press [SHIFT] [W] to restore factory settings
26AC Power SocketAC Power Socket AC power input terminal
27Cooling FanCooling Fan
28InterfaceRS-232C communication interface
29 USB interface

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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