Electronic load
An economical electronic load series that meets a wide range of needs.
The BK Precision 8500 series electronic loads from the United States offers a wide range of products from small to large sizes.
- Company:常盤商行
- Price:Other
Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.
1~11 item / All 11 items
An economical electronic load series that meets a wide range of needs.
The BK Precision 8500 series electronic loads from the United States offers a wide range of products from small to large sizes.
Connect to a solar cell and operates at the maximum operating point (Pmax). It can track the maximum power point under various solar illumination, angle, and temperature conditions.
To evaluate the power generation performance of solar cells, it is necessary to actually put the solar cells in a generating state. Without connecting a load, no current will flow, and thus power generation performance cannot be measured. This device consumes the output power by converting it into heat internally when the solar cells are connected. By simply establishing a minimal measurement environment, it is possible to measure the power generation of the solar cells (the device measures voltage, current, and power every second). For tracking the maximum power point, a unique MPPT tracking method is employed, which, in addition to the conventional sequential power comparison (hill climbing method), sweeps the I-V curve output characteristics of the solar cells once per minute to explore the maximum operating point, thereby performing MPPT control. As a result, even when the maximum operating point (Pmax) changes significantly due to sudden weather changes or shading, it continues to track the maximum operating point. Additionally, when combined with a PV analyzer (I-V curve tracer), it is possible to construct a simulated system under load for outdoor exposure tests. This device is used for applications such as confirming domestic power generation amounts for new types of solar cells (perovskite type), vehicle-mounted solar cells, and OEM products.
Up to 8 parallel connections at 192kW! Supporting the development of smart energy essential for a decarbonized society.
The "LSP Series" is an electronic load device with a power range of 6kW to 24kW, available in 150V/600V/1200V models. Up to 8 units can be connected in parallel, allowing for large-capacity discharge testing of up to 192kW. It can be used for the evaluation of many smart energy devices, such as batteries and EV chargers, charging stations, solar cells, and regenerative batteries, which are being developed for larger sizes and higher voltages. 【Features】 ■ Maximum rated power of 24kW ■ Parallel operation possible with 1 master and 7 slaves ■ Equipped with pulse discharge and ramp discharge functions ■ Automatic discharge testing designed for various devices *For more details, please refer to the PDF materials or feel free to contact us.
It has a wide power measurement range, with a measurement speed for voltage and current of up to 40kHz and a measurement resolution of up to 1mV/1mA.
Equipped with a wide power measurement range, the measurement speed for voltage and current is up to 40kHz, with a maximum measurement resolution of 1mV/1mA. It offers a rich set of measurement functions and modes, as well as a standard RS-232C communication interface, allowing for flexible adaptation to various inspection and measurement conditions in the field.
Oscilloscope-like UI! Equipped with a convenient Sweep mode! High voltage 1000V external I/O equipped!
The high-end large-capacity DC electronic load "QL-D Series" adopts an oscilloscope-like UI and a high-speed current control circuit, enhancing usability and the fundamental performance of electronic loads, building on the positive feedback received for conventional electronic loads. It evolves the basic specifications, performance, and concept of the previous 34000A series, offering features such as Sweep functionality through various load modes and MPPT functionality as an option, catering to diverse needs with a variety of functions. It is available in increments of 5kW up to 25kW and can be expanded to 150kW with a maximum of 6 units in parallel. The compact design achieves a height of 5U (for the 5kW model) in a 19-inch rack size.
The current can be adjusted up to 3.0A.
The current can be adjusted up to 3.0A.
This series is a cost-effective programmable DC electronic load.
This series is a cost-effective programmable DC electronic load. It has a resolution of 0.1mV and 0.1mA, and multiple protection features significantly enhance the reliability of the equipment. This series is equipped with an RS-232 communication interface and offers various testing functions and modes. It is also possible to equip other communication interfaces according to design and testing requirements, catering to the needs of various customers in education, scientific research, manufacturing, and more.
Equipped with a wide power measurement range, the measurement speed for voltage and current is up to 40kHz, and the measurement resolution is up to 1mV/1mA.
Equipped with a wide power measurement range, the measurement speed for voltage and current is up to 40kHz, with a maximum measurement resolution of 1mV/1mA. It offers a rich variety of measurement functions and modes, as well as a standard RS-232C communication interface, allowing for flexible adaptation to various inspection and measurement conditions in the field.
This series is a cost-effective programmable DC electronic load.
This series is a cost-effective programmable DC electronic load. It has a resolution of 0.1mV and 0.1mA, significantly improving the reliability of the equipment with multiple protection features. The series is equipped with an RS-232 communication interface and offers various testing functions and modes. It is also possible to equip other communication interfaces according to design and testing requirements, catering to the needs of various customers in education, scientific research, manufacturing, and more.
The electronic load device market is expected to experience rapid growth from 2023 to 2031.
The global electronic load device market is expected to experience rapid growth from 2022 to 2031. Market revenue is projected to increase from $3.2 billion to $5.1 billion, with a compound annual growth rate (CAGR) of 5.4% during the forecast period from 2023 to 2031. The demand for electronic load devices is anticipated to rise alongside advancements in energy conversion technologies. In particular, as the adoption of renewable energy and electric vehicles expands, the market for electronic load devices is expected to accelerate its growth. For application methods, please check the [PDF download] button or apply directly through the related links.