GW Instek launches 20
models of the AEL-5000 series AC/DC electronic loads depending on
the power range. The power range of a single unit is from 1875W to
22500W, and up to 8 units can be connected in parallel. The maximum
power of single-phase parallel connection can reach 180kW, and the
total power of 3-phase can reach 540kW, which are suitable for UPS,
Inverter/Breaker, AC Power Source, Battery, Fuse/Breaker, DC Power
Source and other applications.
The AEL-5000 series has built-in precision measurement circuits such
as 16-bit A/D and DSP to provide accurate measurement items, which
include voltage root mean square value (Vrms), current root mean
square value (Arms), and watt value (Watt), volt-ampere (VA), crest
factor (CF), power factor (PF), total harmonic distortion (THD),
voltage total harmonic distortion (VTHD), current total harmonic
distortion (ITHD) , peak current (Ipeak), maximum current (Amax),
minimum current (Amin), maximum voltage (Vmax), minimum voltage
(Vmin), time measurement. In addition, built-in test modes include
UPS Efficiency, PV Inverter Efficiency, UPS Back-up time, Battery
Discharge time, UPS transfer time, Fuse/Breaker Trip/Non-Trip, short
circuit simulation, OCP, OPP and other test modes.
The AEL-5000 series has the Turbo mode (ON or OFF can be selected)
design, which can increase the current and power of the electronic
load by 2 times in one second. For test applications that require
transient high power and large current such as transient overload
test of protective components or short circuit of Fuse/Breaker and
AC power supply, OCP and OPP tests etc.. The Turbo mode provides the
most economical solution.
GW Instek launches 20
models of the AEL-5000 series AC/DC electronic loads depending on
the power range. The power range of a single unit is from 1875W to
22500W, and up to 8 units can be connected in parallel. The maximum
power of single-phase parallel connection can reach 180kW, and the
total power of 3-phase can reach 540kW, which are suitable for UPS,
Inverter/Breaker, AC Power Source, Battery, Fuse/Breaker, DC Power
Source and other applications.
The AEL-5000 series has built-in precision measurement circuits such
as 16-bit A/D and DSP to provide accurate measurement items, which
include voltage root mean square value (Vrms), current root mean
square value (Arms), and watt value (Watt), volt-ampere (VA), crest
factor (CF), power factor (PF), total harmonic distortion (THD),
voltage total harmonic distortion (VTHD), current total harmonic
distortion (ITHD) , peak current (Ipeak), maximum current (Amax),
minimum current (Amin), maximum voltage (Vmax), minimum voltage
(Vmin), time measurement. In addition, built-in test modes include
UPS Efficiency, PV Inverter Efficiency, UPS Back-up time, Battery
Discharge time, UPS transfer time, Fuse/Breaker Trip/Non-Trip, short
circuit simulation, OCP, OPP and other test modes.
The AEL-5000 series has the Turbo mode (ON or OFF can be selected)
design, which can increase the current and power of the electronic
load by 2 times in one second. For test applications that require
transient high power and large current such as transient overload
test of protective components or short circuit of Fuse/Breaker and
AC power supply, OCP and OPP tests etc.. The Turbo mode provides the
most economical solution.
The AEL-5000 series
also supports the Load On startup function (pre-set Load On). When
the inverter or uninterruptible power supply is turned on, the
series directly loads the set load current to verify that whether
startup of the inverter or uninterrupted power supply connecting to
the electrical appliance is stable. At the same time, the Load On
start function can also set positive half cycle or negative half
load to verify whether the output voltage of the inverter or
uninterruptible power supply remains stable when the actual
electrical appliance only has a positive half cycle or negative half
cycle load current. Control load angle and unload angle can also be
set (range 0~359 degrees) to verify the stability of the transient
response of the inverter or uninterruptible power supply when the
appliance is plugged in and unplugged. In addition, the series also
supports SCR/TRIAC current phase modulation waveform, 90 degree
Trailing Edge and Leading Edge settings.
The AEL-5000 series also supports the Load On startup function (pre-set Load On). When the inverter or uninterruptible power supply is turned on, the series directly loads the set load current to verify that whether startup of the inverter or uninterrupted power supply connecting to the electrical appliance is stable. At the same time, the Load On start function can also set positive half cycle or negative half load to verify whether the output voltage of the inverter or uninterruptible power supply remains stable when the actual electrical appliance only has a positive half cycle or negative half cycle load current. Control load angle and unload angle can also be set (range 0~359 degrees) to verify the stability of the transient response of the inverter or uninterruptible power supply when the appliance is plugged in and unplugged. In addition, the series also supports SCR/TRIAC current phase modulation waveform, 90 degree Trailing Edge and Leading Edge settings.
For the application of
the adjustable bandwidth (BW) function, when the bandwidth of the
DUT does not match the bandwidth of the AEL-5000 series, there will
be oscillations. Users can reduce the BW setting value accordingly
to meet the response speed of the DUT. Inrush Current verifies
whether the transient response of the inverter output voltage is
stable when the electrical appliance is turned on (Inrush Current)
and when the electrical appliance is suddenly connected (Surge
Current).
The entire series of AEL-5000 provides over-voltage warning,
over-current, over-power, and over-temperature protection. Analog
Input terminal can control constant current, constant power and
other working modes through external voltage. Vmonitor/Imonitor
terminal is used to connect external voltage/current monitoring
device. In addition, a variety of optional control interfaces are
provided such as GPIB, RS-232, USB, and LAN to meet the needs of
system integration.