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quality Closed loop current transducer LEM LF210-S for accurate measurement of DC AC and pulsed currents in industrial applications factory
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quality Closed loop current transducer LEM LF210-S for accurate measurement of DC AC and pulsed currents in industrial applications factory
>
Specifications
working temperature:
-40℃~+85℃
Current Range:
200A
Voltage - Supply:
11.4V~15.75V
Band Width:
100kHz
Sensitivity:
0.5mA/A
Bidirectional Current Detection:
Support
Mfr. Part #:
LF210-S
Key Attributes
Model Number: LF210-S
Product Description

Product Overview

The LEM LF 210-S is a closed-loop current transducer designed for the electronic measurement of DC, AC, and pulsed currents. It provides galvanic separation between the primary and secondary circuits, making it suitable for applications requiring high accuracy and very low offset drift over temperature. Its panel mounting design and robust features make it ideal for industrial environments.

Product Attributes

  • Brand: LEM International SA
  • Product Name: Current Transducer LF 210-S
  • Origin: Switzerland
  • Certifications: IEC 61010-1: 2010, IEC 61800-5-1: 2007, IEC 62109-1: 2010, UL 508: 2013, UL 508 (USR), CSA C22.2 No. 14-13 (CNR)
  • Application Domain: Industrial
  • Case Material: V0 (According to UL 94)

Technical Specifications

ParameterSymbolUnitMinTypMaxConditions
Absolute Maximum Ratings
Maximum supply voltage (working)±UC maxV±15.75(40 °C … 85 °C)
Maximum primary conductor temperatureTB max°C100
Maximum steady state primary currentIP N maxA200(40 °C … 85 °C)
UL 508: Ratings and Assumptions of Certification
Primary involved potentialV AC/DC1500
Maximum surrounding air temperature°C85
Primary currentA0200
Secondary supply voltageV DC0±15.75
Secondary currentmA0100
Insulation Coordination
RMS voltage for AC insulation test, 50 Hz, 1 minUdkV3.5Type test
Impulse withstand voltage 1.2/50 µsUNikV8.8According to IEC 61800-5-1
Partial discharge RMS test voltage (qm < 10 pC)UtkV1.65Test carried out with a non insulated bar and completely filling the primary hole. According to IEC 61800-5-1
Clearance (pri. - sec.)dCImm10.2Shortest distance through air
Creepage distance (pri. - sec.)dCpmm11Shortest path along device body
Rated insulation RMS voltage (Basic)UNmV1000According to IEC 61800-5-1, CAT III, PD2
Rated insulation RMS voltage (Reinforced)UNmV600According to IEC 61800-5-1, CAT III, PD2
Comparative tracking indexCTI600
Environmental and Mechanical Characteristics
Ambient operating temperatureTA°C-4085
Ambient storage temperatureTS°C-5090
Massmg75
Electrical Data (At TA = 25 °C, ±UC = ±15 V, RM = 1 Ω, unless otherwise noted)
Primary nominal RMS currentIP NA200*
Primary current, measuring rangeIP MA-420420* With ±UC = ±15 V
Measuring resistanceRMΩ0Max value of RM is given in Figure 1
Secondary nominal RMS currentIS NA-0.10.1*
Resistance of secondary windingRSΩ27RS (TA) = RS × (1 + 0.004 × (TA + Δtemp−25))
Secondary currentISA-0.210.21*
Number of secondary turnsNS2000
Nominal sensitivitySNmA/A0.5
Supply voltage±UCV±11.4±15±15.75*
Current consumptionICmA33 + IS35 + IS±UC = ±12 V / ±UC = ±15 V
Offset current, referred to primaryIOA-0.150.15
Temperature variation of IO, referred to primaryIO T AµA-0.20.2*
Magnetic offset current (@ 3 × IP N), referred to primaryIO MA±0.2
Sensitivity errorεS%-0.10.1*
Linearity errorεL% of IP N-0.050.05*
Total error at IP Nεtot% of IP N-0.20.20.2* 25 … 85 °C / -40 … 85 °C
RMS noise current referred to primaryInomA201 Hz to 100 kHz (see Figure 4)
Delay time @ 10 % of IP NtDµs< 0.50 to 200 A, 75 A/µs, RM = 10 Ω
Delay time @ 90 % of IP NtD 90µs< 0.50 to 200 A, 75 A/µs, RM = 10 Ω (see Figure 2)
Frequency bandwidthBWkHz100RM = 50 Ω; -3 dB

2410121742_LEM-LF210-S_C454802.pdf

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