WFH330L250J

WFH330L250J

  • 厂商:

    OHMITE(欧米特)

  • 封装:

    -

  • 描述:

    WFH330L250J

  • 数据手册
  • 价格&库存
WFH330L250J 数据手册
WFH Series Aluminum Housed Wirewound Power Ohmite’s new flat core winding technology allows for wirewound heatsinkable resistors affording a very low profile, and superior thermal transfer characteristics when compared to conventional aluminum housed wirewound resistors. Close mounting of heat sensitive components is possible due to only a slight rise of the temperature on the aluminum profile. No heat sink compound is required because of large mounting surface. F e at u r e s • Solder lug, wire, and “Fast-on” amp terminations • Multiple resistors in one profile possible • Custom wire lengths available S ERIE S S P ECI F ICATI O N S Type WFH90 WFH160 WFH230 WFH330 Power Rating* (watts) 90 160 230 330 Resistance Range (Ω) 0.22Ω – 6.8K 0.47Ω-18K 0.82Ω-27K 1Ω - 39K *at 40°C base plate temperature characteristics Power Dissipation Power rating 90W-330W Resistance ±5%, ±10% tolerance Dielectric 2500 VAC peak strength W/Resistor 300 Temperature Normal: 50ppm - 150ppm Coefficients Low ohmic values: 400ppm 250 200 150 100 50 Working voltage 1200 VAC 0 Test voltage 6000 VAC Lead wire (wire terminal version only): XLPE, 600V, 125C, 18 AWG stranded Insulation Silicone Rubber & Mica. The Silicone is UL-recognised (UL 94 HB) to a working temperature of 220°C. Temperatures of up to 300°C can be endured for shorter periods. This may however cause an expansion of the silicone rubber with a possibility of reducing the dielectric strength. Min. Storage & -40˚C Operating Temp. This graph shows the maximum wattage rating for each possible resistor of standard size corresponding to the heat sink temperature. It is assumed that all resistors are equally loaded. 350 WFH330 WFH230 WFH160 WFH90 40° 60° 80° 100° 120° Heat Sink Temperature, °C 140° Thermal Resistances Thermal Resistance (°C/W) between different measuring points resistor surface to heat sink WFH90 WFH160 WFH230 WFH330 RTH1 2 1 0.75 0.5 RTH2 6.8 3.9 2.75 2 RTH3 0.1 0.05 0.03 0.02 RTH4 0.3 0.17 0.1 0.085 RTH4 RTH3 aluminum housing to heat sink aluminum housing to air RTH2 RTH1 wire to aluminum housing THIS PRODUCT IS DESIGNED FOR USE WITH PROPER HEATSINKING. Maximum base plate temperature of the resistor must be monitored and kept within specified limits to establish the power rating. Best technique is to attach a thermocouple to the side of the base plate of the resistor. Temperature of plastic housing or heat sink cannot be used to establish rating of the resistor.   (continued) 1-866-9-OHMITE • Int’l 1-847-258-0300 • Fax 1-847-574-7522 • www.ohmite.com • info@ohmite.com 133 WFH Series Aluminum Housed Wirewound Power d e s i g n i nfo r m a t i on The following equations are applied in the dimensioning of the resistors at stationary load. If more information is required please consult Ohmite. It is assumed that the air around the resistors is stationary (worst case). See ohmite.com for more examples. 1. WFH is mounted on a heat sink: A. The thermal resistance RTH of the heat sink is known, T = WMAX x (RTH4 + RTH) Check that: TMAX = WMAX x (RTH + RTH3 + RTH1) + TAMB
WFH330L250J 价格&库存

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