HFE82V-150F KG | Alldatasheet

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Technical content

HFE82V-150F_EN Rev 1.0 1 A HFE82V-150F HIGH VOLTAGE DC RELAY

  • 150A, 500Vdc - 1 Form A Relay
  • 4kVac dielectric strength between coil and contacts
  • Different coil voltages: 12, 24Vdc
  • Outline Dimensions: (50x37.7x71.3) mm
  • Dimensions with flanges: (77x48.7x71.3) mm
  • Screw load terminals
  • Quick Connect terminals for coil connection
  • Mounting flanges reinforced with compression sleeves
  • RoHS compliant materials and processes Contact Data Characteristics Rated Load 150A @ 500Vdc Insulation resistance 1,000MΩ (at 1000 Vdc) Contact form 1 Form A Dielectric strength: Contact material Cu Alloy Coil to contact 4kVac for 1 min. Contact resistance* ≤0.5mΩ (at 150A) Across open contacts 3kVac for 1 min. Max. switching voltage 750Vdc Ambient temperature -40°C to +85°C Max. switching current 1300A @ 400Vdc (1 op) Ambient humidity 5% - 85% RH Set time ≤ 30ms Vibration 1.5 mm (DA) 10 Hz to 500 Hz † Reset time ≤ 10ms Shock resistance: Bounce time ≤ 5ms Functional 196 m/s2 ‡ Electrical endurance 1,000 cycles § Destructive 490 m/s2 ** Mechanical endurance 200,000 cycles Termination: Coil power consumption 6W Coil termination Quick Connect terminal Load termination Bolt terminal (Female) Unit weight Approximately 350g * Typical value for Initial Contact Resistance: Using a sample quantity of at least 20 units, take the average value from 5 continuous measurements from each sample † Sinusoidal vibration, 1.5 mm double amplitude, 10 Hz to 500 Hz, acceleration 49m/s2, 8 hours each for every axis,4 hours each for the energized and non-energized status, total 24 hours. There shall not be any abnormalities on relay appearance, construction and performance ‡ Duration 11ms, non-energized status 98 m/s2, duration 11ms,500 ops for each direction of three mutually perpendicular axes, 250 ops each for the energized and non-energized status, total 3000 shocks. The opening time for close contacts or the closing time for open contacts should not exceed 10μs § Rating at: 23°C, 450Vdc/150A ** Duration 6ms, 50 shocks for each direction of three mutually perpendicular axes, total 300 shocks. There shall not be any abnormalities on relay appearance, construction and performance

HFE82V-150F_EN Rev 1.0 2 A Current Endurance†† Current Duration 150A Continuous 180A 2 h 225A 15 min 320A 2 min 400A 1 min 600A 20 s 900A 8 s †† Testing Conditions: 1V, 85°C, 50 mm2 cable used Electrical Endurance‡‡ Contact Rating Product Model Operations Breaking: Steady 20 A Contact Voltage: 475 Vdc HFE82V-150F 50,000 ops Making: Steady 100 A Contact Voltage: 20 Vdc 70,000 ops Breaking: Steady 150 A Contact Voltage: 450 Vdc 1000 ops Breaking: Steady 1300 A Contact Voltage: 400 Vdc 1 op Short circuit current: 6000A §§, with no fire or explosion 1 op ‡‡ 23°C room temperature, Duty Cycle 0.6s ON/ 5.4s OFF, 50 mm2 cable used §§ Rating at 23°C room temperature for 5ms Coil Resistance (Ω±7%) at 23°C Nominal Coil Voltage Pick-up Voltage Drop-out Voltage Coil Resistance 12Vdc ≤9Vdc ≥1Vdc 24Ω 24Vdc ≤18Vdc ≥2Vdc 96Ω

HFE82V-150F_EN Rev 1.0 3 A Dimensional Drawings (Unit: mm)

Ordering Information

HFE82 ■ - 150 F /■ - ■ - H - Q 5 Y - 1 X Type Application V : Vehicle Nil : New energy power control Series Code 150 : 150A Series Breakdown F : F Series Load Voltage 500 : 500Vdc 750 : 750Vdc Coil Voltage 12 : 12Vdc 24 : 24Vdc Contact Type H : 1 Form A Coil termination Q : Quick Connect Terminal Load termination 5 : Bolt terminal (Female) Mounting Y : Horizontal Mounting Coil Features 1 : Single coil Special Code X : Customer Customization

HFE82V-150F_EN Rev 1.0 4 A Single Coil 1. Load terminals are polarity independent 2. Coil terminals are polarity independent Application Notes 1. To maintain the relay in its closed state, the coil voltage should reach the stated pick-up voltage. 2. For definitions of terms used in this data sheet, see glossary at www.kgtechnologies.net. Disclaimer: This data sheet is for reference only. All specifications are subject to change without prior notice. KG Technologies, Inc. cannot predict every possible application for our relays. While we do our best to make our relays as versatile as possible, we highly recommend contacting our engineering team if you have any questions. KG Technologies, Inc. is not responsible for malfunctioning relays when operated outside the specified parameters given in this data sheet.