LEM LF 2010-S, TRANSDUCER CURRENT 2000A HALL EFFECT,CLOSED LOOP

LF 2010-S
brand logo

HT Part No. HT257589

Mfr. Part No. LF 2010-S

Manufacturer: LEM

Technical Documents: Datasheet(datasheets)

400 - In Stock pcs
Price:
£ 188.07
Units Per Unit Price
1 - 5 £ 188.07
6 + £ 179.11
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Product Specification

Product Attributes
Frequency 0 ~ 150KHz
Applications N/A
Secondary Signal 400mA
Sensitivity 0.2mA/A
Operating Temperature -40°C ~ +85°C
Mounting Type Free
Connversion Ratio None
Voltage Range (Max) None
Rohs ROHS
Primary Signal Type AC/DC
Technology Hall Effect,Closed Loop
Current Range (Max) ±3000A
Packaging BOX
Manufacturer LEM
Primary Nominal Value 2000A
Supply Voltage ±15~±24VDC
Response Time 500ns

More Information

The LEM LF 2010-S is a high-performance transducer utilizing Hall effect technology within a closed-loop system to accurately measure current up to 2000A. It converts the primary current passing through its core into a proportional voltage, ensuring precise and reliable electrical measurements. Designed for industrial and commercial applications requiring robust current monitoring, it integrates seamlessly into power distribution systems, energy management setups, and industrial automation processes. Its closed-loop design offers enhanced stability and accuracy, making it ideal for critical operations where precise current monitoring is essential.

Possible Advantages of Using the LEM LF 2010-S, Current Transducer

  • Hall effect technology for accurate current sensing.
  • Closed-loop system for improved stability and linearity.
  • Compact and robust design suitable for harsh environments.
  • Wide operating temperature range.
  • Low power consumption.
  • High accuracy and reliability in current measurement.
  • Reduced susceptibility to external electromagnetic interference.
  • Long-term stability for consistent performance.
  • Easy integration into existing systems.
  • Maintenance-free operation.

Application Versatility of the LF 2010-S, Current Transducer

  • Power Distribution Systems Monitoring
  • Renewable Energy Systems
  • Electric Vehicle Charging Stations
  • Industrial Motor Control and Monitoring
  • Battery Management Systems
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Possible Advantages of Using the SEMIKRON SKKH41/08D, Thyristor Diode: Enhanced Reliability: The robust design ensures long-term performance in demanding applications. High Efficiency: Effective thermal management reduces the risk of overheating. Versatile Usage: Suitable for various industrial and power electronics applications. Compact Design: Saves space and streamlines the installation process. - The SEMIKRON SKKH41/08D is a thyristor diode module designed for high-power applications. This dual module supports a maximum current of 40A and can handle voltages up to 800V. It is housed in a TO240AA chassis for efficient thermal management and durability. Usage Information of the SEMIKRON SKKH41/08D, Thyristor Diode: Power Supplies: Utilized in rectifiers and inverters for stable power delivery. Motor Drives: Essential in controlling and protecting high-power motors. HVAC Systems: Used in heating, ventilation, and air conditioning systems for efficient control. Renewable Energy: Integral in solar inverters and wind turbine controls for reliable energy conversion. Standout Features Include: Provides robust performance and flexibility. Suitable for high-current applications. Ensures reliability under high voltage conditions. Offers excellent thermal management and ease of installation. Possible Advantages of Using the SEMIKRON SKKH41/08D, Thyristor Diode: Enhanced Reliability: The robust design ensures long-term performance in demanding applications. High Efficiency: Effective thermal management reduces the risk of overheating. Versatile Usage: Suitable for various industrial and power electronics applications. Compact Design: Saves space and streamlines the installation process. - The SEMIKRON SKKH41/08D is a thyristor diode module designed for high-power applications. This dual module supports a maximum current of 40A and can handle voltages up to 800V. It is housed in a TO240AA chassis for efficient thermal management and durability. 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