MENU
CORTEX DC Bidirectional Programmable Power Supply

CORTEX Bidirectional Programmable DC Power Supply

Rackmount DC Power Supply, 30kW/3U, 0-2000 VDC, 15kw to 3MW, Battery & PV Emulation


Integrated SiC and IGBT technologies, rackmount 3U form factor, along with advanced software options mark CORTEX DC bidirectional programmable power supply one of the most flexible, compact and high power-density options among ActionPower's portfolio. A proudly developed modular power supply with high response time of 500 μs, 0.02% voltage/current accuracy, zero voltage input functions for specific use cases, and advanced profile emulation functions for battery and solar panel simulation - all from a single 3U chassis.            

User Manual

【User Manual】CORTEX DC Series Programmable Power Supply CE Version

Detailed installation, operation procedures, and safety information for engineers.

Technical Specification

【Specification】CORTEX Series DC Programmable Power Supply Standard Version

Technical specification that provides full detailed introduction to CORTEX DC programmable bidirectional power supply

Technical Specification

【Specification】CORTEX Series DC Programmable Power Supply CE Version

Technical specification that provides full detailed introduction to CORTEX DC programmable bidirectional power supply

CE Version Model Options

Product Model Power (kW) Voltage Level (V) Current Level (A) Size Weight (kg)
CD15-040B 15406673U40
CD15-060B 15606673U40
CD15-080B 15806673U40
CD15-200B 152001603U35
CD15-360B 153601603U35
CD15-500B 155001203U35
CD15-600B 156001203U35
CD15-800B 15800543U35
CD15-1K0B 151000543U35
CD15-1K5B 151500453U35
CD15-2K0B 152000453U35
CD20-040B 20406673U40
CD20-060B 20606673U40
CD20-080B 20806673U40
CD20-200B 202002403U40
CD20-360B 203602403U35
CD20-500B 205001803U35
CD20-600B 206001803U35
CD20-800B 20800803U35
CD20-1K0B 201000803U35
CD20-1K5B 201500603U35
CD20-2K0B 202000603U35
CD30-200B 302002403U35
CD30-360B 303602403U35
CD30-800B 30800803U35
CD30-1K0B 301000803U35
CD30-1K5B 301500603U35
CD30-2K0B 302000603U35

Standard Model Options

Product Model Power (kW) Voltage Level (V) Current Level (A) Size Weight (kg)
CD15-200B 152001603U35
CD15-360B 153601603U35
CD15-500B 155001203U35
CD15-600B 156001203U35
CD20-200B 202002403U40
CD20-360B 203602403U35
CD20-500B 205001803U35
CD20-600B 206001803U35
CD30-200B 302002403U35
CD30-360B 303602403U35
CD30-500B 305001803U35
CD30-600B 306001803U35

Technical Features

Discover the technical features and functional advantages of CORTEX series DC bidirectional programmable power supply - an automatic source-load switching DC test bench with battery and solar panel emulation capability.


High-Power Density and Compact 3U Form Factor

CORTEX is built on advanced power semiconductors and power electronics technologies. The architecture combines IGBT, SiC-MOSEFET, along with FPGA-based circuit and Digital Matrix Parallel control methods. From a 3U chassis where the maximum power rating offered is 30kW, test engineers can set up flexible in their test bench for laboratory testing applications thanks to the compact footprint and high-power density.

CORTEX DC bidirectiona programmable power supply is of compact 3U chassis

bidirectional operation power flow of cortex dc power supply

Source-Load Integrated Unit, Auto-Ranging and Automatic Switching

CORTEX DC combines regenerative programmable electronic load and high-precision programmable power source into one chassis. The bidirectional operation capability supplants the additional set of programmable electronic DC load for user cases where energy profile requires interaction of power flow while saving energy cost with 91% efficiency of regenerative recovery.

The auto-ranging and switching capability free test engineers from the conventional approach of setting operation mode in advance. The system conditions and regulates its operation automatically for voltage and current within its rated power and envelopes to fulfil maximum power output across various testing scenarios and uses cases dynamically and controlled. 


DMPS (Digital Matrix Parallel System) Technology for High-Power Scaling-Up

With 100 units of 3U/30kW chassis in parallel connection through DMPS technology, CORTEX DC allows flexible modular power up-scaling into standard racks by IEC-60297 for reaching 3 MW as the maximum power rating. High speed fiber-optic interconnection eliminates the latency among parallelled units, above which a further advanced feature of redundancy will isolate unit in fault from the parallelled system for maintaining the load current and consistent operation without downtime.

DMPS digital matrix parallel system of CORTEX DC power allows 3MW power upscaling

dynamic mode CC CV CR CP operation of CORTEX DC power supply

Versatile Output Modes Supported CC, CV, CP, CR and Precise and Flexible Programming

The Cortex DC series supports not only the basic Constant Voltage (CV) and Constant Current (CC) modes but also integrates Constant Power (CP) and Constant Resistance (CR) modes. The versatile operation mode is the control foundation to the simulation of both simple electronic components and complex power system.

Either from the integrated interface or from a host computer, test engineers can set up automated testing automation sequence combining miscellaneous current and voltage profiles following steps, list, advanced and custom modes, with an ultra-high measurement accuracy of 0.02% and an ultra-fast dynamic response as low as 500μs.


Integrated SAS (Solar Array Simulator) Mode, EN 50530 and Sandia Profile

SAS mode is optionally provided within CORTEX through built-in photovoltaic simulation software that fully complies with mainstream international standard models such as EN 50530 and Sandia which are critical functions for PV inverter testing.

Highlighted SAS mode features

  • The system supports static I-V curve loading and dynamic curve programming. Users can perform static and dynamic MPPT (Maximum Power Point Tracking) efficiency tests.
  • SAS mode can even simulate complex real-world weather changes and photovoltaic panel shading scenarios, making it an ideal choice for inverter R&D and certification testing.
solar array simulation mode of CORTEX DC programmable power supply can test pv inverters

Battery Simulator Mode with Versatile User-Defined and Settings

By integrating advanced software, CORTEX DC offers battery simulator mode that allows test engineers to set up a virtual and profile-controlled battery to replace a real one and achieve repeatable testing.

Highlighted battery simulator mode features

  • Broad Range of Battery Types: CORTEX DC comes with built-in support for various mainstream chemical systems, including Lithium Manganese Oxide (LiMn2O4), Lithium Cobalt Oxide (LiCoO2), Lithium Iron Phosphate (LiFePO4), Nickel-Metal Hydride (NiMH), Ternary Lithium, and Lead-Acid batteries.
  • Controlled Configuration and Customization: Users can flexibly set key parameters such as nominal voltage, internal resistance, capacity, and Depth of Discharge (DoD) according to their testing needs. By simulating the terminal voltage changes of batteries under different States of Charge (SoC), CORTEX helps engineers efficiently verify the performance of chargers, BMS (Battery Management Systems), and power tools without the need for physical batteries.
CORTEX DC Bidirectional Programmable Power Supply with battery simulation mode

Technical Specifications

Note: The technical parameters contained within the below specification tables are subject to updates and modifications without notification in advance. For more detailed technical information please contact our sales and technical support team.

MODEL: 40V/60V/80V

AC INPUT

Voltage Range304Vac-480Vac/380V±20%
Frequency (Hz)47-63Hz
Wiring Mode3ph+PE
Power Factor0.99 @ full load
Efficiency93.5%

PROTECTIVE FUNCTIONS

Over-Voltage ProtectionAdjustable 0-110% U-Nominal(+1% F.S.)
Over-Current ProtectionAdjustable 0-110% I-Nominal(+1% F.S.)
Over-Power ProtectionAdjustable 0-110% P-Nominal(+1% F.S.)
Over-Temperature Protection

VOLTAGE

Programming Accuracy±0.002% F.S.
Programming Resolution±1mV
Display Accuracy±0.002% F.S.
Line Regulation CV±0.01%FS. (208V-480VAC+10%input voltage, constant load and constant temperature)
Load Regulation CV±0.01%FS. (0-100% load, constant load and constant temperature)
Ripple (rms) CV<25mV
Ripple and Noise p-p CV<300mVpp
Remote Compensationmax. Voltage ±1V
Rise Time 10%-90% CV1ms
Full Time 90%-10% CV1ms
Voltage Swing Rate150V/ms
Recovery TimeRecovery to steady state within 2.5ms±0.75% F.S. (25%-50% or 50%-25%) load
Discharge Time≤20s

BATTERY SIMULATION

Battery TypeLithium manganate, lithium Cobaltate, lithium iron phosphate, Nickel-metal hydride, Ternary lithium, lithium titanate and lead-acid batteries
Setting Parameters
  • Parameters such as number of series connections,numberofparalel connections
  • Initial SOC,initial temperature,internal resistance, single unit capacity
InterfaceSupport for CSV custom model import
Real-Time200μs command update rate

Environment

Operating Temperature0 to50(°C) (power derating over 35°C)
Storage Temperature-20 to 70(°C)
Humidity≤80%. Not condensing
AltitudeOutput current derating 2%/100m above 2000m or Ta derating 1°C/100m

Insulation

Negative-PE±500 VDC
Positive-PE+500 VDC
AC Input-PE2.5kVAC

Other

Dimension435*132*781mm
Weight40kg

CURRENT

Programming Accuracy+0.15% F.S.
Programming Resolution+100mA
Display Accuracy+0.15% F.S.
Display Resolution+10mA
Line Regulation CC±0.01%FS. (208V-480VAC+10% input voltage, constant load and constant temperature)
Load Regulation CC±0.05%FS. (0-100% load, constant load and constant temperature)
Rise Time 10%-90% CC1ms
Full Time 90%-10% CC1ms

POWER

Programming Accuracy+30W
Programming Resolution+10W
Display Accuracy+30W
Display Resolution+10W

RESISTANCE

Range0.003-100Ω
Programming Accuracy1mΩ
Programming Resolution1mΩ

SAS

Short-Circuit Current Setting Range0A~le
Simulated Fill Factor Range0.3~0.95
Photovoltaic Panel Type SelectionC-Si, Thin-film, Custom
I-V Curve Update RateTypically 1ms, with online curve switching function
I-V Curve CriteriaEN50530, Sandia, simple
I-V Curve FunctionStatic curves; curve scanning; static sequences; static MPPT; dynamic MPPT;weather simulation; Shading of photovoltaic panels; curve programming; custom curves etc.
Curve Setting
  • I-V Curves can be customized with parameters such as Voc, Isc, FF and Pm
  • Dynamic working mode takes into account environmental influences such as temperature changes and irradiance, and can continuously output I-V curves for different environments
  • Built-in EN50530, Sandia dynamic I-V curve test program

PROGRAMMING

Programming ModeLive, Wave, Step, Advanced
Programming Steps200
Cycle Range0~9999999 times
Minimum Programming Cycle100μs
Mode of OperationLoad, end, trigger

Interfaces/Any Port

Functions and DefinitionsSee "Any port interface specification"
Isolation707VDC

Interfaces

Rear Panel
  • Type-B, USB, LAN, Share Bus, Magic-BUS, Magic-BOX
  • DC terminal, AC supply, Remote sensing, Analog interface
Isolation707VDC
MODEL: 200V/360V

AC INPUT

Voltage Range304Vac-480Vac/380V±20%
Frequency (Hz)47-63Hz
Wiring Mode3ph+PE
Power Factor0.99 @ full load
Efficiency94%

PROTECTIVE FUNCTIONS

Over-Voltage ProtectionAdjustable 0-110% U-Nominal(+1% F.S.)
Over-Current ProtectionAdjustable 0-110% I-Nominal(+1% F.S.)
Over-Power ProtectionAdjustable 0-110% P-Nominal(+1% F.S.)
Over-Temperature Protection

VOLTAGE

Programming Accuracy±0.002% F.S.
Programming Resolution±10mV
Display Accuracy±0.002% F.S.
Line Regulation CV±0.01%FS. (208V-480VAC+10%input voltage, constant load and constant temperature)
Load Regulation CV±0.01%FS. (0-100% load, constant load and constant temperature)
Ripple (rms) CV<60mV
Ripple and Noise p-p CV<480mVpp
Remote Compensationmax. Voltage ±1V
Rise Time 10%-90% CV1ms
Full Time 90%-10% CV1ms
Voltage Swing Rate200V/ms
Recovery TimeRecovery to steady state within 2.5ms±0.75% F.S. (25%-50% or 50%-25%) load
Discharge Time≤20s

BATTERY SIMULATION

Battery TypeLithium manganate, lithium Cobaltate, lithium iron phosphate, Nickel-metal hydride, Ternary lithium, lithium titanate and lead-acid batteries
Setting Parameters
  • Parameters such as number of series connections,numberofparalel connections
  • Initial SOC,initial temperature,internal resistance, single unit capacity
InterfaceSupport for CSV custom model import
Real-Time200μs command update rate

Environment

Operating Temperature0 to50(°C) (power derating over 35°C)
Storage Temperature-20 to 70(°C)
Humidity≤80%. Not condensing
AltitudeOutput current derating 2%/100m above 2000m or Ta derating 1°C/100m

Insulation

Negative-PE±1500 VDC
Positive-PE+1500 VDC
AC Input-PE2.5kVAC

Other

Dimension435*132*781mm
Weight35kg

CURRENT

Programming Accuracy+0.02% F.S.
Programming Resolution+10mA
Display Accuracy+0.02% F.S.
Display Resolution+1mA
Line Regulation CC±0.01%FS. (208V-480VAC+10% input voltage, constant load and constant temperature)
Load Regulation CC±0.05%FS. (0-100% load, constant load and constant temperature)
Rise Time 10%-90% CC500μs
Full Time 90%-10% CC500μs

POWER

Programming Accuracy+3W
Programming Resolution+1W
Display Accuracy+3W
Display Resolution+1W

RESISTANCE

Range0.05-100Ω
Programming Accuracy0.01Ω
Programming Resolution0.01Ω

SAS

Short-Circuit Current Setting Range0A~le
Simulated Fill Factor Range0.3~0.95
Photovoltaic Panel Type SelectionC-Si, Thin-film, Custom
I-V Curve Update RateTypically 1ms, with online curve switching function
I-V Curve CriteriaEN50530, Sandia, simple
I-V Curve FunctionStatic curves; curve scanning; static sequences; static MPPT; dynamic MPPT;weather simulation; Shading of photovoltaic panels; curve programming; custom curves etc.
Curve Setting
  • I-V Curves can be customized with parameters such as Voc, Isc, FF and Pm
  • Dynamic working mode takes into account environmental influences such as temperature changes and irradiance, and can continuously output I-V curves for different environments
  • Built-in EN50530, Sandia dynamic I-V curve test program

PROGRAMMING

Programming ModeLive, Wave, Step, Advanced
Programming Steps200
Cycle Range0~9999999 times
Minimum Programming Cycle100μs
Mode of OperationLoad, end, trigger

Interfaces/Any Port

Functions and DefinitionsSee "Any port interface specification"
Isolation707VDC

Interfaces

Rear Panel
  • Type-B, USB, LAN, Share Bus, Magic-BUS, Magic-BOX
  • DC terminal, AC supply, Remote sensing, Analog interface
Isolation707VDC
MODEL: 500V/600V

AC INPUT

Voltage Range304Vac-480Vac/380V±20%
Frequency (Hz)47-63Hz
Wiring Mode3ph+PE
Power Factor0.99 @ full load
Efficiency95%

PROTECTIVE FUNCTIONS

Over-Voltage ProtectionAdjustable 0-110% U-Nominal(+1% F.S.)
Over-Current ProtectionAdjustable 0-110% I-Nominal(+1% F.S.)
Over-Power ProtectionAdjustable 0-110% P-Nominal(+1% F.S.)
Over-Temperature Protection

VOLTAGE

Programming Accuracy±0.002% F.S.
Programming Resolution±10mV
Display Accuracy±0.002% F.S.
Line Regulation CV±0.01%FS. (208V-480VAC+10%input voltage, constant load and constant temperature)
Load Regulation CV±0.01%FS. (0-100% load, constant load and constant temperature)
Ripple (rms) CV<200mV
Ripple and Noise p-p CV<1000mVpp
Remote Compensationmax. Voltage ±1V
Rise Time 10%-90% CV1ms
Full Time 90%-10% CV1ms
Voltage Swing Rate1500V/ms
Recovery TimeRecovery to steady state within 2.5ms±0.75% F.S. (25%-50% or 50%-25%) load
Discharge Time≤30s

BATTERY SIMULATION

Battery TypeLithium manganate, lithium Cobaltate, lithium iron phosphate, Nickel-metal hydride, Ternary lithium, lithium titanate and lead-acid batteries
Setting Parameters
  • Parameters such as number of series connections,numberofparalel connections
  • Initial SOC,initial temperature,internal resistance, single unit capacity
InterfaceSupport for CSV custom model import
Real-Time200μs command update rate

Environment

Operating Temperature0 to50(°C) (power derating over 35°C)
Storage Temperature-20 to 70(°C)
Humidity≤80%. Not condensing
AltitudeOutput current derating 2%/100m above 2000m or Ta derating 1°C/100m

Insulation

Negative-PE±1500 VDC
Positive-PE+2000 VDC
AC Input-PE2.5kVAC

Other

Dimension435*132*781mm
Weight35kg

CURRENT

Programming Accuracy+0.02% F.S.
Programming Resolution+10mA
Display Accuracy+0.02% F.S.
Display Resolution+1mA
Line Regulation CC±0.01%FS. (208V-480VAC+10% input voltage, constant load and constant temperature)
Load Regulation CC±0.05%FS. (0-100% load, constant load and constant temperature)
Rise Time 10%-90% CC500μs
Full Time 90%-10% CC500μs

POWER

Programming Accuracy+3W
Programming Resolution+1W
Display Accuracy+3W
Display Resolution+1W

RESISTANCE

Range0.05-3000Ω
Programming Accuracy0.01Ω
Programming Resolution0.01Ω

SAS

Short-Circuit Current Setting Range0A~le
Simulated Fill Factor Range0.3~0.95
Photovoltaic Panel Type SelectionC-Si, Thin-film, Custom
I-V Curve Update RateTypically 1ms, with online curve switching function
I-V Curve CriteriaEN50530, Sandia, simple
I-V Curve FunctionStatic curves; curve scanning; static sequences; static MPPT; dynamic MPPT;weather simulation; Shading of photovoltaic panels; curve programming; custom curves etc.
Curve Setting
  • I-V Curves can be customized with parameters such as Voc, Isc, FF and Pm
  • Dynamic working mode takes into account environmental influences such as temperature changes and irradiance, and can continuously output I-V curves for different environments
  • Built-in EN50530, Sandia dynamic I-V curve test program

PROGRAMMING

Programming ModeLive, Wave, Step, Advanced
Programming Steps200
Cycle Range0~9999999 times
Minimum Programming Cycle100μs
Mode of OperationLoad, end, trigger

Interfaces/Any Port

Functions and DefinitionsSee "Any port interface specification"
Isolation707VDC

Interfaces

Rear Panel
  • Type-B, USB, LAN, Share Bus, Magic-BUS, Magic-BOX
  • DC terminal, AC supply, Remote sensing, Analog interface
Isolation707VDC
MODEL: 800V/1000V

AC INPUT

Voltage Range304Vac-480Vac/380V±20%
Frequency (Hz)47-63Hz
Wiring Mode3ph+PE
Power Factor0.99 @ full load
Efficiency94%

PROTECTIVE FUNCTIONS

Over-Voltage ProtectionAdjustable 0-110% U-Nominal(+1% F.S.)
Over-Current ProtectionAdjustable 0-110% I-Nominal(+1% F.S.)
Over-Power ProtectionAdjustable 0-110% P-Nominal(+1% F.S.)
Over-Temperature Protection

VOLTAGE

Programming Accuracy±0.002% F.S.
Programming Resolution±10mV
Display Accuracy±0.002% F.S.
Line Regulation CV±0.01%FS. (208V-480VAC+10%input voltage, constant load and constant temperature)
Load Regulation CV±0.01%FS. (0-100% load, constant load and constant temperature)
Ripple (rms) CV<200mV
Ripple and Noise p-p CV<1200mVpp
Remote Compensationmax. Voltage ±1V
Rise Time 10%-90% CV1ms
Full Time 90%-10% CV1ms
Voltage Swing Rate600V/ms
Recovery TimeRecovery to steady state within 2.5ms±0.75% F.S. (25%-50% or 50%-25%) load
Discharge Time≤20s

BATTERY SIMULATION

Battery TypeLithium manganate, lithium Cobaltate, lithium iron phosphate, Nickel-metal hydride, Ternary lithium, lithium titanate and lead-acid batteries
Setting Parameters
  • Parameters such as number of series connections,numberofparalel connections
  • Initial SOC,initial temperature,internal resistance, single unit capacity
InterfaceSupport for CSV custom model import
Real-Time200μs command update rate

Environment

Operating Temperature0 to50(°C) (power derating over 35°C)
Storage Temperature-20 to 70(°C)
Humidity≤80%. Not condensing
AltitudeOutput current derating 2%/100m above 2000m or Ta derating 1°C/100m

Insulation

Negative-PE±1500 VDC
Positive-PE+1500 VDC
AC Input-PE2.5kVAC

Other

Dimension435*132*781mm
Weight35kg

CURRENT

Programming Accuracy+0.02% F.S.
Programming Resolution+10mA
Display Accuracy+0.02% F.S.
Display Resolution+1mA
Line Regulation CC±0.01%FS. (208V-480VAC+10% input voltage, constant load and constant temperature)
Load Regulation CC±0.05%FS. (0-100% load, constant load and constant temperature)
Rise Time 10%-90% CC500μs
Full Time 90%-10% CC500μs

POWER

Programming Accuracy+3W
Programming Resolution+1W
Display Accuracy+3W
Display Resolution+1W

RESISTANCE

Range0.05-1000Ω
Programming Accuracy0.01Ω
Programming Resolution0.01Ω

SAS

Short-Circuit Current Setting Range0A~le
Simulated Fill Factor Range0.3~0.95
Photovoltaic Panel Type SelectionC-Si, Thin-film, Custom
I-V Curve Update RateTypically 1ms, with online curve switching function
I-V Curve CriteriaEN50530, Sandia, simple
I-V Curve FunctionStatic curves; curve scanning; static sequences; static MPPT; dynamic MPPT;weather simulation; Shading of photovoltaic panels; curve programming; custom curves etc.
Curve Setting
  • I-V Curves can be customized with parameters such as Voc, Isc, FF and Pm
  • Dynamic working mode takes into account environmental influences such as temperature changes and irradiance, and can continuously output I-V curves for different environments
  • Built-in EN50530, Sandia dynamic I-V curve test program

PROGRAMMING

Programming ModeLive, Wave, Step, Advanced
Programming Steps200
Cycle Range0~9999999 times
Minimum Programming Cycle100μs
Mode of OperationLoad, end, trigger

Interfaces/Any Port

Functions and DefinitionsSee "Any port interface specification"
Isolation707VDC

Interfaces

Rear Panel
  • Type-B, USB, LAN, Share Bus, Magic-BUS, Magic-BOX
  • DC terminal, AC supply, Remote sensing, Analog interface
Isolation707VDC
MODEL: 1500V/2000V

AC INPUT

Voltage Range304Vac-480Vac/380V±20%
Frequency (Hz)47-63Hz
Wiring Mode3ph+PE
Power Factor0.99 @ full load
Efficiency95%

PROTECTIVE FUNCTIONS

Over-Voltage ProtectionAdjustable 0-110% U-Nominal(+1% F.S.)
Over-Current ProtectionAdjustable 0-110% I-Nominal(+1% F.S.)
Over-Power ProtectionAdjustable 0-110% P-Nominal(+1% F.S.)
Over-Temperature Protection

VOLTAGE

Programming Accuracy±0.002% F.S.
Programming Resolution±10mV
Display Accuracy±0.002% F.S.
Line Regulation CV±0.01%FS. (208V-480VAC+10%input voltage, constant load and constant temperature)
Load Regulation CV±0.01%FS. (0-100% load, constant load and constant temperature)
Ripple (rms) CV<400mV
Ripple and Noise p-p CV<2400mVpp
Remote Compensationmax. Voltage ±1V
Rise Time 10%-90% CV1ms
Full Time 90%-10% CV1ms
Voltage Swing Rate5000V/ms
Recovery TimeRecovery to steady state within 2.5ms±0.75% F.S. (25%-50% or 50%-25%) load
Discharge Time≤30s

BATTERY SIMULATION

Battery TypeLithium manganate, lithium Cobaltate, lithium iron phosphate, Nickel-metal hydride, Ternary lithium, lithium titanate and lead-acid batteries
Setting Parameters
  • Parameters such as number of series connections,numberofparalel connections
  • Initial SOC,initial temperature,internal resistance, single unit capacity
InterfaceSupport for CSV custom model import
Real-Time200μs command update rate

Environment

Operating Temperature0 to50(°C) (power derating over 35°C)
Storage Temperature-20 to 70(°C)
Humidity≤80%. Not condensing
AltitudeOutput current derating 2%/100m above 2000m or Ta derating 1°C/100m

Insulation

Negative-PE±1500 VDC
Positive-PE+2000 VDC
AC Input-PE2.5kVAC

Other

Dimension435*132*781mm
Weight35kg

CURRENT

Programming Accuracy+0.02% F.S.
Programming Resolution+10mA
Display Accuracy+0.02% F.S.
Display Resolution+1mA
Line Regulation CC±0.01%FS. (208V-480VAC+10% input voltage, constant load and constant temperature)
Load Regulation CC±0.05%FS. (0-100% load, constant load and constant temperature)
Rise Time 10%-90% CC500μs
Full Time 90%-10% CC500μs

POWER

Programming Accuracy+3W
Programming Resolution+1W
Display Accuracy+3W
Display Resolution+1W

RESISTANCE

Range0.05-3000Ω
Programming Accuracy0.1Ω
Programming Resolution0.1Ω

SAS

Short-Circuit Current Setting Range0A~le
Simulated Fill Factor Range0.3~0.95
Photovoltaic Panel Type SelectionC-Si, Thin-film, Custom
I-V Curve Update RateTypically 1ms, with online curve switching function
I-V Curve CriteriaEN50530, Sandia, simple
I-V Curve FunctionStatic curves; curve scanning; static sequences; static MPPT; dynamic MPPT;weather simulation; Shading of photovoltaic panels; curve programming; custom curves etc.
Curve Setting
  • I-V Curves can be customized with parameters such as Voc, Isc, FF and Pm
  • Dynamic working mode takes into account environmental influences such as temperature changes and irradiance, and can continuously output I-V curves for different environments
  • Built-in EN50530, Sandia dynamic I-V curve test program

PROGRAMMING

Programming ModeLive, Wave, Step, Advanced
Programming Steps200
Cycle Range0~9999999 times
Minimum Programming Cycle100μs
Mode of OperationLoad, end, trigger

Interfaces/Any Port

Functions and DefinitionsSee "Any port interface specification"
Isolation707VDC

Interfaces

Rear Panel
  • Type-B, USB, LAN, Share Bus, Magic-BUS, Magic-BOX
  • DC terminal, AC supply, Remote sensing, Analog interface
Isolation707VDC

About ActionPower India

ActionPower India is a regional network of Xi'an ActionPower Electric Co., Ltd., represented by Tangent Test Technologies in India for supporting business development and technical services for our regional clientele in the field of power testing. With 5 regional locations in India.

With 30 years of experience with power electronics and testing solutions, further backed by 295+ patents that enforce our technological advancement, we are ready to uncomplicate your challenges of industrial regulation compliance with IEC, IEEE, UL and India local grid code standards.

team at ActionPower India

Discuss with Our Technical Team