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Rulon Bearings

Rogers Arlon DiClad 522/527 PTFE/Woven Fiberglass Laminates
Categories: Polymer; Thermoplastic; Fluoropolymer; Polytetrafluoroethylene (PTFE)

Material Notes: DiClad 522 and DiClad 527 use a higher fiberglass/PTFE ratio to provide mechanical properties approaching conventional substrates.
  • Extremely Low Loss Tangent
  • Excellent Dimensional Stability
  • Product Performance Uniformity

Benefits:

  • Electrical Properties are highly uniform across frequency
  • Consistent Mechanical Performance
  • Excellent Chemical Resistance

Typical Applications:

  • Military Radar Feed Networks
  • Commercial Phased Array Networks
  • Low Loss Base Station Antennas
  • Missile Guidance Systems
  • Digital Radio Antennas
  • Filters, Couplers, LNAs

Information provided by Arlon Materials for Electronics (MED); now a part of Rogers Corporation.

Vendors: Arlon Materials for Electronics (MED) is a major manufacturer of specialty high performance laminate and prepreg materials for use in a wide variety of printed circuit board (PCB) applications and in several distinctive markets.

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Physical PropertiesMetricEnglishComments
Density 2.31 g/cc0.0835 lb/in³ASTM D792 Method A
Water Absorption 0.030 %0.030 %IPC TM-650 2.6.2.2
Outgassing - Total Mass Loss  0.010 %
@Pressure <=1.33e-10 MPa,
Temperature 125 °C
0.010 %
@Pressure <=1.93e-8 psi,
Temperature 257 °F
Water Vapor Recovered; NASA SP-R-0022A
 0.020 %
@Pressure <=1.33e-10 MPa,
Temperature 125 °C
0.020 %
@Pressure <=1.93e-8 psi,
Temperature 257 °F
NASA SP-R-0022A
Collected Volatile Condensable Material 0.00 %
@Pressure <=1.33e-10 MPa,
Temperature 125 °C
0.00 %
@Pressure <=1.93e-8 psi,
Temperature 257 °F
NASA SP-R-0022A
 
Mechanical PropertiesMetricEnglishComments
Tensile Strength 103 MPa15000 psiCross; ASTM D882
 131 MPa19000 psiMachine; ASTM D882
Modulus of Elasticity 3.56 GPa517 ksiCross; ASTM D638
 4.87 GPa706 ksiMachine; ASTM D638
Flexural Modulus >= 3.70 GPa>= 537 ksiASTM D790
Compressive Modulus 2.48 GPa359 ksiASTM D695
Peel Strength 2.45 kN/m14.0 pliAfter Thermal Stress; IPC TM-650 2.4.8
 
Electrical PropertiesMetricEnglishComments
Volume Resistivity 1.20e+15 ohm-cm1.20e+15 ohm-cmC96/35/90; IPC TM-650 2.5.17.1
Surface Resistance 4.50e+13 ohm4.50e+13 ohmC96/35/90; IPC TM-650 2.5.17.1
Dielectric Constant  2.4 - 2.65
@Frequency 1e+6 Hz
2.4 - 2.65
@Frequency 1e+6 Hz
C23/50; IPC TM-650 2.5.5.3
 2.4 - 2.65
@Frequency 1e+10 Hz
2.4 - 2.65
@Frequency 1e+10 Hz
C23/50; IPC TM-650 2.5.5.5
Dielectric Breakdown >= 45000 V>= 45000 VD48/50; ASTM D149
Dissipation Factor  0.0010
@Frequency 1e+6 Hz
0.0010
@Frequency 1e+6 Hz
C23/50; IPC TM-650 2.5.5.3
 0.0018
@Frequency 1e+10 Hz
0.0018
@Frequency 1e+10 Hz
C23/50; IPC TM-650 2.5.5.5
Arc Resistance >= 180 sec>= 180 secD48/50; ASTM D495
 
Thermal PropertiesMetricEnglishComments
CTE, linear  14.0 µm/m-°C
@Temperature 0.000 - 100 °C
7.78 µin/in-°F
@Temperature 32.0 - 212 °F
x direction; IPC TM-650 2.4.24
 21.0 µm/m-°C
@Temperature 0.000 - 100 °C
11.7 µin/in-°F
@Temperature 32.0 - 212 °F
y direction; IPC TM-650 2.4.24
CTE, linear, Transverse to Flow 173 µm/m-°C
@Temperature 0.000 - 100 °C
96.1 µin/in-°F
@Temperature 32.0 - 212 °F
z direction; IPC TM-650 2.4.24
Thermal Conductivity 0.254 W/m-K
@Temperature 100 °C
1.76 BTU-in/hr-ft²-°F
@Temperature 212 °F
ASTM E1225
Flammability, UL94 V-0V-0Vertical Burn
 
Descriptive Properties
Temperature Coefficient of Dielectric (ppm/°C)-153IPC TM-650 2.5.5.5 (-10 - 140°C)

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to view all the property values for this datasheet as they were originally entered into MatWeb.

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