HLB098-SMPJ-KP-07

RF Cable Assembly by HASCO Components (230 more products)

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HLB098-SMPJ-KP-07 Image

The HLB098-SMPJ-KP-07 from HASCO Components is a Flexible Cable Assembly that operates from DC to 40 GHz. It is designed for demanding microwave interconnect requirements in dense environments and offers excellent amplitude and phase stability. This assembly is part of HASCO’s Littlebend series of ultra-flexible cable assemblies.

The HLB098-SMPJ-KP-07 cable measures 7 inches and has SMP-female and 2.92 mm-male straight connectors. Also available in SMA and 2.4mm connectors. It has a minimum bend radius of 5.0 mm (static), 10 mm (dynamic), and a diameter of 0.098 inches. It has a velocity of propagation of 74%, an insertion loss of less than 1.3 dB, and a VSWR of 1.15:1. This RoHS-compliant cable assembly has an amplitude stability of ±0.08 dB/m, phase stability of ±4.0°, and a dielectric withstanding voltage of 500 V.

Product Specifications

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Product Details

  • Part Number
    HLB098-SMPJ-KP-07
  • Manufacturer
    HASCO Components
  • Description
    Phase-Stable, Ultra-Flexible Cable Assembly from DC to 40 GHz

General Parameters

  • Connector 1
    SMP
  • Connector 1 Gender
    Female/Jack
  • Bend Radius
    Static : 5 mm, Repeated : 10 mm
  • Connector 1 Geometry
    Straight
  • Connector 2
    2.92 mm
  • Connector 2 Gender
    Male/Plug
  • Center Conductor
    Silver Plated Solid Copper
  • Connector 2 Geometry
    Straight
  • Cable
    0.098"
  • Length
    7 Inches
  • Connector 1 Polarity
    Standard
  • Connector 2 Polarity
    Standard
  • Grade
    Commercial, Military
  • Impedance
    50 Ohms
  • RoHS
    Yes
  • Type
    Flexible
  • Delay
    4.5 ns
  • Frequency
    DC to 40 GHz
  • Insulation_Resistance
    1000 Mohms
  • Temperature
    -55 to 125 Degree C
  • Velocity of Propagation
    74 %
  • Note
    VSWR : 1.25:1, 1.40:1, Insertion Loss : 0.4 to 1.3 dB, Amplitude Stability : ±0.08 dB, Phase Stability : ±4 Degrees, Dielectric Withstanding Voltage : 500 V, Durability : 1000 Cycles

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