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TDK-Lambda RSHN-2300 Single Phase High Attenuation Power Line EMI Filter 300A 250VAC Screw Terminal Base Mounting

TDK-Lambda RSHN-2300 Single Phase High Attenuation Power Line EMI Filter 300A 250VAC Screw Terminal Base Mounting


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SeriesRSHN Series
Filter TypeSingle Stage High Attenuation Power Line EMI Filter (Two Stage Filter)
Voltage250 VAC / 250 VDC (50/60Hz)
Rated Current300A
Connection TypeScrew Terminal / Connector
InstallationBase Mounting / Flange Mounting
Leak CurrentStandard version (high current models usually do not have low leakage current options, refer to installation manual for details)
Total DC ResistanceApprox. 0.6 mΩ (Typical Value, Refer to Series Data Sheet)
Operating Temperature-25°C to +85°C (including derating)
Storage Temperature Range-40°C ~ +85°C
Insulation Resistance> 100 MΩ (500 VDC, 1 minute)
Pressure TestLine-to-Ground 2250 VDC / Line-to-Line 1450 VDC (1 minute)
Safety CertificationUL 1283 (E71639), CSA C22.2 No.8 (LR45938), EN 60939 (VDE/ENEC)
Environmental ComplianceRoHS 2.0 (EU 2015/863) Compliant, REACH Compliant, Halogen-Free
MaterialMetal housing (Aluminum/Steel), Grounding bolt M8/M10
WeightApprox. 13.0 kg (12.999 kg)
Mean Time Between Failures> 1,000,000 hours (MIL-HDBK-217F, 25°C, GB)
Fire Resistance GradeUL 94 V-0 (Internal Components)
Manufacturer No.
RSHN-2300A575NAA-RSHN-001
OEM Part No.
RSHN-2300
Interchange No.
RSHN-2300
Fitment Vehicles
Industrial Automation EquipmentInverter/Servo DriveUninterruptible Power Supply (UPS)High Power Switched Mode Power SupplyNumerical Control Machine ToolWelding Equipment

Electrical and Electronic System - Industrial Encyclopedia

TDK-Lambda RSHN-2300 Single Phase High Attenuation Power Line Filter, rated current 300A, rated voltage 250VAC/VDC, screw terminal wiring, base/flange mounting. Compliant with UL, CSA, EN safety certifications, RoHS directive compliant, weight about 13kg. Suitable for EMI suppression at the input end of industrial automation, power equipment, and inverters, providing a two-stage filtering topology structure, ensuring excellent common mode/differential mode attenuation performance.