XtremeSpeed RO1200 laminate is a ceramic-filled PTFE material with spread woven-glass reinforcement for high-speed interconnects. It is distinct from RO1200 Bondply, which performs the bonding function in a multilayer structure. The current laminate sheet gives its own dielectric observation rather than the wider selector summary range.

Material system

Ceramic-filled PTFE reinforced with spread woven glass

Technical properties

XtremeSpeed RO1200 Laminate — reported properties and conditions
PropertyReported valueConditions / source
Process dielectric constant3.05Typical, 10 GHz, 23°C; IPC-TM-650 2.5.5.5 clamped stripline; direction is not separately recorded here. Source
Design dielectric constant3.05Typical; 1–20 GHz, differential phase length method, Z direction; average over common thicknesses. Source
Dissipation factor0.0017 MaxMaximum as explicitly labelled in the product datasheet; 10 GHz, 23°C, Z direction, IPC-TM-650 2.5.5.5. It is not a measured typical loss guarantee for a finished channel. Source
Thermal conductivity0.42 W/(m·K)Typical, through thickness; ASTM D5470. The product table does not state test temperature. Source
CTE, X axis8 ppm/°CTypical; -55°C to 288°C, IPC-TM-650 2.4.41; average expansion over the interval, not necessarily linear. Source
CTE, Y axis8 ppm/°CTypical; -55°C to 288°C, IPC-TM-650 2.4.41; average expansion over the interval, not necessarily linear. Source
CTE, Z axis30 ppm/°CTypical; -55°C to 288°C, IPC-TM-650 2.4.24, Z direction; product datasheet. Source
Water absorption0.03 %Typical; E1/105 + D48/50, IPC-TM-650 2.6.2.1. Source
Density2.1 g/cm³Typical; C-24/23/50, ASTM D792. Source

Typical reported values are not a purchase specification. Process Dk, design Dk and values measured at different frequencies are not interchangeable.

Selection and design notes

  • Consider it for demanding channels where dielectric and conductor loss, skew and interconnection geometry require coordinated control. Evaluate the channel's length and rise-time spectrum rather than assigning a universal data-rate capability to the material.
  • Spread reinforcement can help address local structure, but actual differential-pair placement and routing still matter. Use construction-specific skew and loss evaluation for the intended channel geometry.

Thickness and copper options

Standard cores span 3–10 mil in the listed thickness steps; confirm the tolerance and construction for each layer.

Reverse-treated ED and rolled options are described. Match copper to the channel-loss and skew assumptions.

Fabrication considerations

  • A PTFE-capable fabrication process is required, along with an identified compatible bonding system. Define the chosen core thickness, foil and final dielectric spacing so that the signal-integrity model represents the manufactured stackup.

Application fit

  • High-speed backplanes
  • Router and switch interconnects
  • High-performance computing boards

Limits and substitution checks

  • The datasheet labels 0.0017 as a maximum Df at 10 GHz, unlike many typical entries in the library. That value is not a guarantee of channel insertion loss. RO1200 laminate and its bondply also have different dielectric values, so a multilayer cannot be represented by one anonymous RO1200 medium.

Technical sources