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Mitsubishi Xantar® LDS 3734 Polycarbonate
Categories: Polymer; Thermoplastic; Polycarbonate (PC)

Material Notes: LDS is becoming increasingly popular as the MID technology to enable an increased number of novel functions available inside appealing housings and covers, such as smart phones and notebooks. With LDS, tailored plastic materials are activated locally using a laser, and subsequently metalized exclusively in the activated areas, thus enabling a fast, highly flexible, 3D-design of, for instance, antennas in existing parts such as covers and frames. The XANTAR LDS portfolio is ideally suited for integrated mobile phone antennas from antenna carriers to fully integrated antennas in the housing or frame. The application area has now been extended to antennas in laptops and notebooks. Full Color custom-made PC- and PC/ABS-based grades are available that enable selective electroless plating by means of laser direct structuring (LDS) to integrate electric circuits into molded parts. For parts that require soldering, specially developed high-temperature Reny® LDS grades are available. Benefits of XANTAR® LDS for laser direct structuring technology (based on joint development with LPKF): Highest-impact material available for laser direct structuring. Halogen free flame retardant. Resolution (line/space) down to 100 microns. Extremely well suited for antennas in mobile phones and notebooks. Full color availability for PC- and PC/ABS based LDS grades. High-performance/robustness: Dielectric constant of PC/ABS helps to assure high antenna performance. Outstanding impact strength outperforms competitive PC-blends. Advantages of innovative LDS technology: Higher flexibility compared to other molded interconnect device (MID) technologies, providing faster time-to-market. Enables 3D shapes and electrical connections simultaneously. Suitable for relatively small surface areas. Only three process steps: molding, laser processing, metallization.

Information provided by Mitsubishi Engineering Plastics Corporation.

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Physical PropertiesOriginal ValueComments
Density 1.29 g/cc
Water Absorption 0.35 %
Linear Mold Shrinkage, Flow 0.0050 cm/cm
Melt Index of Compound 11 g/10 min
@Load 5.00 kg,
Temperature 260 °C
 
Mechanical PropertiesOriginal ValueComments
Tensile Strength, Yield 50.0 MPa
Elongation at Break >= 50 %
Elongation at Yield 6.0 %
Tensile Modulus 2200 MPa
Flexural Strength 78.0 MPa
Flexural Modulus 2000 MPa
Izod Impact, Notched (ISO) 35.0 kJ/m²
@Temperature -20.0 °C
 50.0 kJ/m²
@Temperature 23.0 °C
Charpy Impact Unnotched NB
@Temperature 23.0 °C
 NB
@Temperature -30.0 °C
Charpy Impact, Notched 25.0 kJ/m²
@Temperature -30.0 °C
 45.0 kJ/m²
@Temperature 23.0 °C
Puncture Energy 40.0 J
 
Electrical PropertiesOriginal ValueComments
Volume Resistivity >= 1.00e+15 ohm-cm
Surface Resistance 1.00e+15 ohm
 
Thermal PropertiesOriginal ValueComments
CTE, linear, Parallel to Flow 60.0 µm/m-°C
CTE, linear, Transverse to Flow 60.0 µm/m-°C
Deflection Temperature at 1.8 MPa (264 psi) 120 °C
Vicat Softening Point 142 °C
@Load 5.10 kg
rate 50°C/h
Flammability, UL94 HB
@Thickness 0.400 mm
 
Processing PropertiesOriginal ValueComments
Melt Temperature 290 °CAs Tested; Injection
Mold Temperature 100 °C

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