Instek GPP-6030 – 3CH DC Power Supply (CH1 and CH2: 0-60V/0-3A, CH3: 1.8V, 2.5V, 3.3V, 5V/ 5A)


385W Three Channels Programmable DC Power Supply RS-232/USB/LAN

SKU: Instek GPP-6030 - 3CH DC Power Supply (CH1 and CH2: 0-60V/0-3A, CH3: 1.8V, 2.5V, 3.3V, 5V/ 5A) Category:

Instek GPP-6030
Does not have GPIB interface
CH1, CH2: 0-60V/0-3A
CH3: 1.8V, 2.5V, 3.3V, 5V / 5A
Load function capability (CC, CV, CR mode)
Output on/off switch for each channel
3CH DC Power Supply (CH1 and CH2: 0-60V/0-3A, CH3: 1.8V, 2.5V, 3.3V, 5V/ 5A)
GPP-3060 and GPP-6030 three-channel programmable DC power supplies are extension models of the GPP-X323 series. The maximum output power of these two models is 385W. GPP-3060 supports CH1/CH2: 0 ~ 30V / 0 ~ 6A output; GPP-6030 supports CH1/CH2: 0 ~ 60V / 0 ~ 3A output; CH3 of both models supports 1.8V, 2.5V, 3.3V, 5.0V/5A.
GPP-3060 and GPP-6030 inherit the high program resolution (1mV/0.1mA) and read back resolution (0.1mV/0.1mA) of the GPP series with low-ripple noise characteristics ≦1mVrms/≦2mArms and ≦100µs output transient recovery ability. An independent output on-off switch is provided for each channel.
The unique load function of the GPP series can arbitrarily set CH1/CH2 as power supply or load function. For example, one channel is set as power output, and the other channel is set as load function to consume the power of the DUT to satisfy simple battery charging and discharging or load characteristic test by a single power supply.
Tracking Series and Parallel Function
For series and parallel applications of CH1 and CH2, the tracking function of the GPP Series utilizes the internal circuit to automatically switch the output to serial or parallel output without additional external wiring, providing users with convenience not only in operating procedures but also a more stable output. The tracking function design of other brands requires additional external wiring connections for the output in series or parallel. However, excessively long, thin or inconsistent external wiring may cause inaccurate voltage or current output.
Output Monitoring Function
The output monitoring function allows users to set the monitoring conditions according to the requirements, including the voltage, current, and power greater than or less than the setting and the logical relationship of AND, OR. It also allows users to sound alarms or stop the output during the measurement process, stop the measurement, and protect the customer’s DUT. Each Channel could be monitored simultaneously as well.
Sequence Output Function
The GPP-Series provides a sequential output function on Channel 1 and Channel 2. This function not only allows users to edit the power output waveform, but also allows users to set the sequential constant voltage (CV) or constant current (CC) load waveform, i.e. a serial power output or a simulation test of a dynamic load. The maximum settable points for sequence function are 2048, and interval range of each point can be set from 1 to 300 seconds. In order to simplify the setting of waveform editing, the GPP-Series has 8 built-in Template waveforms in sequence output function for users to directly apply for output, including Sine, Pulse, Ramp, Stair Up, Stair Dn, Stair UpDn, Exp Rise, and Exp Fall waveforms.
The editing data of the sequence output can be stored in the internal 10 sets of the memory, or to be saved by USB flash drive (Save/Recall) and saved as *.SEQ or *.CSV file; The stored *.CSV can be exported into Excel for editing and analysis. The final edited file can be imported to (Save/Recall) of the power supply using a USB flash drive.
Load Function
The CH1/CH2 of the GPP series is designed with the load function. A single power supply can meet the basic battery charging and discharging test requirements. It can provide power output in channel 1 and channel 2. The rated constant voltage load (CV), rated constant current load (CC), and maximum 1k constant resistance load (CR) function, are built-in to allow users to conduct discharging test without using an electronic load. In application, users can also set either that one channel of the single GPP series as the power output, one channel as the load function to consume the power of the DUT, or that both channels as load functions to consume the power of different loads simultaneously.


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