Power Supply

Power Supply



Driven by the design and manufacturing demands of the electronics industry, El Eslèk offers a diverse range of power supply products to meet the needs of a wide variety of applications. Our product lines are organized into several categories, including DC Power Supplies, AC Power Sources, DC Electronic Loads, and Source Measure Units (SMUs).



For DC Power Supplies, our offerings can be tailored to specific requirements, with options such as:

  • Technical, Programmable, or Non-Programmable units

  • Single or Multiple Outputs

  • High-Precision or Cost-Effective models

  • Dual-Range and Flexible Combinations of Voltage and Current



This flexibility ensures that users can select the ideal solution to meet the unique demands of their applications.

Our Precision Source Meters are a state-of-the-art solution featuring a four-quadrant power supply, capable of accurately sourcing voltage or current while simultaneously measuring voltage and/or current—perfect for advanced testing and precise measurements.



With over 100 power supply products, El Eslèk serves a wide range of industries and applications, including electronic assembly testing, education, component testing, wireless product testing, burn-in processes, battery-powered product testing, as well as automotive and aerospace applications.



Power Supply

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IT7900P Series - High-Performance Regenerative Grid Simulator



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Built on advanced SiC (Silicon Carbide) technology, the IT7900P series delivers a comprehensive, all-in-one power testing solution. It can operate as:

  • A grid simulator
  • A four-quadrant power amplifier
  • A four-quadrant regenerative AC/DC electronic load

With full four-quadrant operation and regenerative capability, the system feeds energy back to the grid, supporting environmentally friendly testing while significantly reducing electricity consumption and heat dissipation costs.

Its compact, modular, and high-efficiency design enables up to 15 kVA in a 3U chassis, with scalable power up to 960 kVA through master-slave parallel configuration.

A color touch screen with an intuitive graphical user interface allows users to directly define and customize output waveforms. Multiple operating modes—single-phase, three-phase, reverse-phase, and multi-channel—provide exceptional flexibility for applications in photovoltaic (PV), energy storage systems (ESS), electric vehicles (EV), and other advanced power electronics fields.




Key Parameter Features

  • Advanced SiC technology
  • High power density: up to 15 kVA in 3U
  • Output voltage up to 350 V L-N
  • Master-slave current sharing; scalable up to 960 kVA (up to 64 units in parallel for 3U models)*¹
  • High-efficiency regenerative operation
  • Selectable working modes: single-phase, three-phase, reversed phase, and multi-channel
  • Inverted mode voltage extension up to 200% of rated voltage
  • LIST, SWEEP, and Surge & Sag waveform modes
  • Built-in waveform library
  • Harmonic simulation and analysis up to the 50th order, compliant with IEC 61000-3-2 and IEC 61000-3-12
  • Arbitrary waveform generation with CSV import capability
  • Adjustable phase angle: 0–360°
  • Touchscreen interface with intuitive UI
  • Standard USB / CAN / LAN / Digital I/O interfaces; optional GPIB / Analog & RS232
  • Comprehensive protection functions including automatic clearing, POVP, watchdog, etc.
  • Support for CANopen, Modbus, LXI, SCPI communication protocols




Source Mode Features

  • Regenerative grid simulator & full four-quadrant AC/DC power source
  • Frequency range: 16–2400 Hz*⁴
  • Power amplifier function for PHiL applications
  • Professional islanding test mode supporting R, L, C, active and reactive power settings*⁷
  • Four output modes: AC / DC / AC+DC / DC+AC
  • Multi-channel function: one unit can test 1–3 DUTs simultaneously*⁵
  • Programmable output impedance for real-world grid simulation
  • Harmonic and inter-harmonic synthesis
  • Frequency lock and phase lock functions enabling 6-phase and 12-phase output
  • Compliance testing including LVRT, phase jump, frequency variation, and harmonic injection
  • Supported regulatory tests including IEC 61000-4-11, IEC 61000-4-13, IEC 61000-4-14, IEC 61000-4-28, etc.
  • Advanced trigger configuration with synchronized waveform capture for DUT voltage acquisition and simulation
  • Optional software for pre-compliance testing in civil avionics and marine electrical systems according to international safety regulations*³




Load Mode Features

  • Regenerative full four-quadrant AC/DC electronic load
  • Frequency range: 16–500 Hz
  • AC mode supports CC / CP / CR / CS / CC+CR / CE modes
    • CE mode simulates various circuit topologies such as single-phase rectifier RLC and shunt RLC
  • DC mode supports 9 operating modes including CC / CR / CP / CV
  • AC mode supports rectified and non-rectified operation
  • Adjustable crest factor: 1.414–5.0
  • Phase shift adjustment range: **-180° to 180°***⁶
  • Unity power factor mode for dynamic current tracking of voltage waveform
  • Adjustable unloading angle: 0–359°




Notes

*¹ For 3U models, up to 64 units can be connected in parallel.
*² Harmonic analysis in source mode (voltage) and load mode (current); fundamental frequency ≤ 60 Hz.
*³ Optional software module.
*⁴ 16–150 Hz in grid simulator and island simulation modes.
*⁵ Not available for single-phase models.
*⁶ Phase shift range may be limited when rectification mode is enabled.
*⁷ Not available in multi-channel mode.



IT6000C Series - Bidirectional Programmable DC Power Supply



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IT6000C Series – Bidirectional Programmable DC Power Supply

The IT6000C series is a bidirectional programmable DC power supply featuring third-generation SiC (Silicon Carbide) technology. It integrates both source and sink (load) functions into a single unit, enabling multi-quadrant operation.

With its advanced energy regeneration capability, the IT6000C feeds absorbed energy cleanly back into the grid. This significantly reduces overall power consumption and cooling requirements, while maintaining grid stability and power quality.

The IT6000C series provides an output voltage of up to 2250 V and supports parallel operation in a master-slave configuration with balanced current sharing. Total system power can be expanded up to 2 MW.

An integrated waveform generator enables the creation of arbitrary waveforms and supports LIST file import via the front-panel USB port. Combining high reliability, optimized efficiency, and comprehensive protection and measurement functions, the IT6000C is an ideal solution for demanding R&D, validation, and industrial testing applications.


Key Features

  • Third-generation SiC technology, integrating source and sink functions in a single unit
  • Standalone output power up to 144 kW, expandable to 2 MW through parallel operation
  • Output voltage range: 0 – 2250 V
  • Output current range:
    • 0 – 2'040 A (single cabinet)
    • 0 – 8'000 A (parallel system)
  • High power density: up to 18 kW in a compact 3U form factor
  • Seamless switching between source and sink modes
  • Energy regeneration efficiency up to 95%
  • Standard built-in interfaces: USB / CAN / LAN / Digital I/O
  • Optional interfaces: GPIB / Analog / RS232
  • Comprehensive protection features: OVP, ±OCP, ±OPP, OTP, power-off protection, and anti-islanding protection
  • CC/CV priority setting with configurable control loop speeds
  • Partial pre-compliance with standards: LV123, LV148, DIN 40839, ISO 16750-2, SAE J1113-11, LV124, ISO 21848
  • Battery cycling capability supporting CC / CV / CP modes
  • Built-in function generator for arbitrary waveform creation
  • PV simulator function with optional SAS1000 software
  • Battery simulator function with optional BSS2000 software
  • Multiple operating modes with adjustable rise and fall times
  • Data logging via USB flash drive, with a minimum sampling interval of 10 µs
  • Advanced dynamic profile simulation with up to 10'000'000 points



Tabletop Power Supply, 24 Vdc, 4A



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Reference : 162417




Technical Specifications

  • Fully protected against overloads and short circuits
  • 4 mm safety terminals
  • Input voltage: 85–265 V AC (47–63 Hz)
  • Output voltage: 24 V DC
  • Maximum output current: 4 A
  • Dimensions: 75 × 155 × 235 mm

Supplied with mains power cable



IT6600C Series - Graphical Bidirectional Programmable DC Power Supply



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The IT6600C Series is a new-generation graphical bidirectional programmable DC power supply designed for high-performance testing applications. Featuring a modern touchscreen interface and intuitive graphical user interface (GUI), it simplifies parameter configuration and waveform editing, improving both efficiency and user experience.

Built on advanced third-generation SiC (Silicon Carbide) technology, a single 3U unit delivers up to 21 kW per channel in a dual-channel configuration. When the two independent channels are connected in series or parallel, total output power can reach 42 kW. Thanks to its wide output range, one IT6600C unit can replace 3 to 5 conventional power supplies, making it ideal for applications requiring high voltage or high current.

More than just a power supply, the IT6600C also functions as a high-performance electronic load. It can both source DC power and operate as a regenerative DC electronic load, absorbing energy and feeding clean power back into the grid for energy recycling.

The IT6600C Series delivers a new level of performance for complex high-power testing in industries such as automotive, energy storage, industrial systems, and renewable energy, providing reliable support for R&D, validation, and production environments.




Key Features

  • Bidirectional design, integrating DC power supply and electronic load in one unit
  • High power density: up to 42 kW in a compact 3U chassis
  • Independent dual-channel architecture; channels configurable in series or parallel
  • High-efficiency power regeneration
  • Master-slave current sharing; scalable up to 10 MW in parallel systems
  • 5-inch touchscreen with intuitive GUI
  • Dynamic response time ≤ 200 µs
  • Rise time ≤ 1 ms
  • High accuracy ≤ 0.03% + 30 mA
  • Built-in communication interfaces:
    • USB (USB-TMC / USB-VCP)
    • LAN (Raw Socket / Modbus-TCP / Profinet / VNC / VXI-11 / Web / Telnet)
    • CAN 2.0B (CANopen / CAN 2.0)
    • Digital I/O
  • Optional communication interfaces: GPIB / EtherCAT / Analog & RS232



Power Supply, 24 Vdc, 4A, ER version



Festo Logo

Reference : 8049382




Technical Specifications

  • Fully protected against overloads and short circuits
  • 4 mm safety terminals
  • Input voltage: 85–265 V AC (47–63 Hz)
  • Output voltage: 24 V DC
  • Maximum output current: 4 A
  • Dimensions: 75 × 155 × 235 mm

Supplied with mains power cable



FCS3000 - Fuel Cell Simulation Software



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Reference

FCS3000 Fuel Cell Simulation Software



The FCS3000 Fuel Cell Simulation Software, when used in combination with the IT6000C bidirectional DC power supply and the IT6000B regenerative power system, enables accurate simulation of fuel cell stack polarization curves.

The system supports output voltages up to 2250 V and scalable power up to 1152 kW, meeting the requirements of high-power fuel cell simulation applications.

FCS3000 is specifically designed to replace real fuel cell stacks in laboratory environments, providing a highly efficient and flexible simulation platform for hydrogen energy and hybrid propulsion system research.

By eliminating the need for physical fuel cell stacks, the software helps reduce testing costs, simplify platform setup, and avoid performance degradation commonly associated with repeated experimental use of real fuel cell systems.

With its intuitive user interface and comprehensive data reporting capabilities, FCS3000 provides reliable experimental support for both practical testing and theoretical research.


Key Features

  • Automatic wide-range output with voltage up to 2250 V
  • Scalable fuel cell simulation power up to 1152 kW
  • User-defined fuel cell polarization curve with up to 4096 programmable points
  • Support for .csv file import for customized curve simulation
  • Data storage and export functions for analysis and reporting
  • Graphical software interface with real-time display of output voltage, current, and power



SAS1000 - Solar Array Simulation Software



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References

SAS1000 Solar array software for IT6500C/IT6000B/IT6000C/IT-M3600

SAS1000L Solar array software for IT6500C/IT6000B/IT6000C/IT-M3600 (power ≤15kW)

SAS1000M Solar array software for IT6500C/IT6000B/IT6000C/IT-M3600 (multi-channel)



ITECH introduces its latest high-speed, high-performance photovoltaic simulation solution. When combined with high-power DC power supplies, the SAS1000/L solar array simulation software accurately reproduces solar array I-V curves, with output voltage up to 2250 V and scalable system power up to 10 MW.

The system delivers fast dynamic response, excellent control accuracy, high repeatability, outstanding stability, and precision performance. It features built-in simulation models compliant with EN 50530, Sandia National Laboratories PV model, NB/T 32004, CGC/GF004, and CGC/GF035.

Users can easily configure test regulations, material types, Vmp, Pmp, and other parameters to simulate I-V curve characteristics and automatically generate test reports. The software is ideal for static and dynamic maximum power point tracking (MPPT) performance testing of photovoltaic inverters.


Product Features

  • Automatic wide-range output, with voltage up to 2250 V
  • Scalable power up to 10 MW
  • Built-in I-V curve mathematical model for accurate solar array simulation
  • Simulation of various solar cell technologies (monocrystalline, polycrystalline, thin-film), including Fill Factor configuration
  • I-V curve simulation under varying temperature and irradiation conditions
  • Shading simulation for solar panels (e.g., cloud or tree shadow scenarios)
  • Static and dynamic MPPT efficiency testing
  • Built-in EN 50530, Sandia National Laboratories PV model, NB/T 32004, CGC/GF004, and CGC/GF035 test programs with automatic report generation
  • Graphical user interface with real-time MPPT status monitoring
  • Automatic programming of up to 100 I-V curves via Voc, Isc, FF, Pm, and other parameter points
  • Support for 100 × 128-point curves and 4096-point high-resolution programming
  • Adjustable output impedance
  • Independent edge configuration for multiple operating modes, with adjustable rise and fall times
  • Seamless bidirectional current switching for rapid cell charge and discharge simulation/li>
  • Built-in DIN 40839 and ISO 16750-2 compliance
  • Standard USB, RS232, GPIB, and LAN (LXI compliant) interfaces
  • Support for up to 20 solar power supplies for multi-channel MPPT testing

Applications

  • Design and validation of PV inverter MPPT circuits and algorithms
  • Verification of inverter MPP voltage range and full-load MPP voltage range/li>
  • Validation of static maximum power tracking efficiency
  • Dynamic MPPT performance testing according to EN 50530, Sandia National Laboratories PV model, NB/T 32004, CGC/GF004, and CGC/GF035
  • Verification of inverter start-up voltage, maximum input voltage, maximum input current, and related electrical parameters
  • MPPT validation under partial shading conditions
  • DC terminal protection testing (OVP, OPP)
  • Validation of microgrid control centers and photovoltaic energy storage control functions
  • MPPT performance verification from sunrise to sunset operating conditions
  • Total and conversion efficiency testing of inverters when used with the IT9100 power analyzer



IT-N2100 - Solar Array Simulator



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References

IT-N2121 Solar array simulator 80 V, 25 A, 800 W

IT-N2131 Solar array simulator 80 V, 25 A, 1500 W

IT-N2123 Solar array simulator 150 V, 10 A, 800 W

IT-N2133 Solar array simulator 150 V, 10 A, 1500 W




The IT-N2100 Series Solar Array Simulator is a high-performance DC power supply designed to accurately replicate real-world photovoltaic (PV) array behavior. With ultra-fast I–V curve response and advanced simulation capabilities, it enables precise testing of solar microinverters, power optimizers, and PV power systems under dynamic environmental conditions.

The system faithfully reproduces solar panel characteristics across varying temperature, irradiance, shading, and aging scenarios. Its high-voltage architecture, ultra-low ripple performance, and rapid MPPT response make it an ideal solution for R&D, validation, and production testing environments.




Key Features

  • High-precision simulation of silicon, GaAs, and other PV technologies
  • Ultra-fast dynamic response optimized for MPPT efficiency testing
  • Up to 1500V DC common-mode voltage for series DUT testing
  • Advanced I–V curve modeling, including dynamic and cloud-shading simulations
  • Built-in compliance testing for EN50530, Sandia, NB/T32004, CGC/GF004, and CGC/GF035 standards with automated reporting
  • 4096-point I–V curve fitting in table mode
  • Four-point rapid I–V curve generation (Voc, Isc, Vmp, Imp)
  • Multi-channel synchronous control capability
  • Ultra-low ripple and high-precision measurement performance
  • Comprehensive protection: OVP, OCP, OPP, OTP
  • Compact 2U half-rack design
  • 4.3” HD graphical interface with real-time MPPT monitoring
  • LAN, USB, and digital I/O interfaces with SCPI command support

The IT-N2100 provides a reliable, flexible, and standards-compliant solution for advanced photovoltaic system validation.