NXP Semiconductors MRF1K50N 1500W RF Power Transistors

NXP MRF1K50N and MRF1K50GNR5 1500W RF Power Transistors combine high RF output power, superior ruggedness, and thermal performance. These LDMOS devices feature an over-molded plastic package, offering up to 30% lower thermal resistance compared with the ceramic MRF1K50H. NXP's plastic packaging technology helps extract more performance from RF transistors while simplifying amplifier manufacturability thanks to tighter dimensional tolerances and better solder connections. 

NXP MRF1K50N and MRF1K50GNR5 RF Power Transistors are designed to deliver 1.50kW CW at 50V and reduce the number of transistors in high-power RF amplifiers. The input and output design of these devices allow for wide frequency range use from 1.8MHz to 500MHz.

Features

  • High drain-source avalanche energy absorption capability
  • Unmatched input and output allowing wide frequency range utilization
  • Device can be used single-ended or in a push-pull configuration
  • Characterized from 30V to 50V for ease of use
  • Suitable for linear application
  • Integrated ESD protection with greater negative gate-source voltage range for improved Class C operation
  • Offered in OM-1230-4L (MRF1K50N) and OM-1230G-4L (MRF1K50GN) packages for design flexibility
  • RoHS compliant

Applications

  • Industrial, Scientific, Medical (ISM)
    • Laser generation
    • Plasma etching
    • Particle accelerators
    • MRI, diathermy, skin laser, and ablation
    • Industrial heating, welding, and drying systems
  • Broadcast
    • Radio broadcast
    • VHF TV broadcast
  • Aerospace
    • VHF Omnidirectional Range (VOR)
    • HF and VHF communications
    • Weather radar
  • Mobile Radio
    • VHF and UHF base stations

Specifications

  • N-channel polarity
  • Si technology
  • 36A continuous drain current
  • 133V drain-source breakdown voltage
  • 1.8MHz to 500MHz operating frequency range
  • 23dB gain
  • 1.5kW output power
  • -40°C to +150°C operating temperature range
Paskelbta: 2016-12-07 | Atnaujinta: 2022-03-11