HLD 710-500/12

Radio interference suppression filter HLD 710

Version HLD 710-500/12
Rated voltage 3 x 520 Vac Rated current 3 x 12 A Leakage current (50 Hz)* 6 mA
Version Rated voltage Rated current Leakage current (50 Hz)*
HLD 710-500/8 3 x 520 Vac 3 x 8 A 6 mA
HLD 710-500/12 3 x 520 Vac 3 x 12 A 6 mA
HLD 710-500/16 3 x 520 Vac 3 x 16 A 6 mA
HLD 710-500/30 3 x 520 Vac 3 x 30 A 6.5 mA
HLD 710-500/42 3 x 520 Vac 3 x 42 A 6.5 mA
HLD 710-500/55 3 x 520 Vac 3 x 55 A 6.5 mA
HLD 710-500/75 3 x 520 Vac 3 x 75 A 6.5 mA
HLD 710-500/100 3 x 520 Vac 3 x 100 A 6.5 mA
HLD 710-500/130 3 x 520 Vac 3 x 130 A 6.5 mA
HLD 710-500/180 3 x 520 Vac 3 x 180 A 7 mA
HLD 710-500/250 3 x 520 Vac 3 x 250 A 7 mA

Technical Data for HLD 710-500/12

Operating data
Rated voltage 3 x 520 Vac
Voltage range 0 - 520 Vac
Rated current 3 x 12 A
Leakage current (50 Hz)* 6 mA
Leakage current (50 Hz)** 60 mA
Rated frequency 50 - 60 Hz
Power loss 9 W
Overrating Capacity 150 %, shortly
Approvals
Approvals cURus, UL 1283 5th edition, CSA 22.2 No.8
Environment
Ambient temperature max. 122.0 °F
Climatic category 25/085/21
[in accordance with EN 60068-1]
Safety and protection
SCCR*** 100 kA
Protection index IP 20
Type Metal enclosure
Safety class (prepared) I
Test voltage 2150 Vdc Phase/Phase, 2700 Vdc Phase/PE
Terminal and mounting
Terminals phase Screw clamp, 4 mm²
Connection type Bolt, M5
Fixing method Mounting lugs
Fixing screws M5
Measures and weights
Width 1.77 inch
Height 2.95 inch
Depth 8.66 inch
Weight 2.20 lbs
Notes
* Leakage current measured against the maximum permissible input voltage fluctuation in accordance with IEC 38 ±10 %
** Leakage current by loss of two phases
*** with corresponding preliminary fuse

Information for HLD 710 series

General Data
  • Leakage current 6.00 - 7.00 mA
  • Rated current 3 x 8 - 3 x 250 A
  • Voltage range 0 - 3 x 520 Vac
  • Rated voltage 3 x 520 Vac
  • Ambient temperature max. 50 °C
  • Degree of protection IP 20
Benefits
  • Increase in the interference immunity of the connected equipment
  • Efficient filter effect against line-bound interference emissions
  • Single-stage filter concept
  • Reduced leakage current
  • For enhanced EMI suppression

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