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... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94 Thermal...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94 Thermal...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94 Thermal...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94 Thermal Thermal...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94 Thermal...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94 Thermal...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0...
... 1.4 ASTM D1002 Electrical Breakdown Voltage(kv/mm) > 4.5 ASTM D149 Volume Resistivity(Ω.cm) 1012 ASTM D257 Dielectric Constant(@1MHz) 5 ASTM D150 Flammability V-0 UL94 Thermal Thermal...
... (RF) capacitance technology. A radio frequency is applied to the probe and the influence caused by the surrounding environment is determined by continuous analysis. Because all materials have a dielectric c...
... by the guided wave radar propagates along the detection component (steel cable or steel rod), and when it encounters the measured medium, due to the sudden change of the dielectric constant, it causes refle...
...the guided wave radar propagates along the detection component (steel cable ), and when it encounters the measured medium, due to the sudden change of the dielectric constant, it causes reflection, and part ...
... microwave pulse which spread along the detection component (steel cable or steel rod) , and when it encounters the measured medium, due to the sudden change of the dielectric constant which causes reflectio...
... (RF) capacitive technology. A radio frequency is applied to the probe and, through continuous analysis, the effects caused by the surrounding environment are determined. Since all materials have a dielectri...
... along the detection component (steel cable or steel rod). When encountering the measured medium, it causes reflection due to sudden change of dielectric constant, and part of the pulse energy is reflected b...
... propagates along the detection component (steel cable or steel rod). When encountering the measured medium, it causes reflection due to sudden change of dielectric constant, and part of the pulse energy is ...
... (RF) capacitance technology. A radio frequency is applied to the probe and the influence caused by the surrounding environment is determined by continuous analysis. Because all materials have a dielectric c...
... frequency (RF) capacitance technology. A radio frequency is applied to the probe, and through continuous analysis, the influence of the surrounding environment is determined. Since all materials have a diel...