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TJC4
DLL
Specification:
TJC4 8-6...6MM Pitch Wire to Board connector,TJC4 8-6...6MM Pitch PCB Bar connector
Rated Voltage: | 250V AC,DC |
Rated current: | 5A AC,DC |
Contact resistance: | 10MΩ Max |
Insulation Resistance: | 1000 MΩ min |
Withstand Voltage: | 1500V AC/minute |
Temperature: | -25℃~+85℃ |
Wire Range: | AWG#24~#18 |
Material:
Housing: | (Nylon)UL94-V0(2) |
Terminal: | Phosphor Bronze,Tin Plated |
Wafer: | (Nylon)UL94-V0(2) |
Drawing:
Our company has powerful research and development ability,we can open mold,develop and produce the products you want!
More Products For You To Choose:
Application
External circuitry can be used to compensate for the effects of parasitic inductance and capacitance. For example, adding series resistors and shunt capacitors in a controlled manner can form a filter network to counteract the unwanted effects. In high - speed digital circuits, equalization techniques can be employed to correct the signal distortion caused by the connector's parasitic elements, allowing for more accurate signal transmission over longer distances or at higher speeds.
TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector
Specification:
TJC4 8-6...6MM Pitch Wire to Board connector,TJC4 8-6...6MM Pitch PCB Bar connector
Rated Voltage: | 250V AC,DC |
Rated current: | 5A AC,DC |
Contact resistance: | 10MΩ Max |
Insulation Resistance: | 1000 MΩ min |
Withstand Voltage: | 1500V AC/minute |
Temperature: | -25℃~+85℃ |
Wire Range: | AWG#24~#18 |
Material:
Housing: | (Nylon)UL94-V0(2) |
Terminal: | Phosphor Bronze,Tin Plated |
Wafer: | (Nylon)UL94-V0(2) |
Drawing:
Our company has powerful research and development ability,we can open mold,develop and produce the products you want!
More Products For You To Choose:
Application
External circuitry can be used to compensate for the effects of parasitic inductance and capacitance. For example, adding series resistors and shunt capacitors in a controlled manner can form a filter network to counteract the unwanted effects. In high - speed digital circuits, equalization techniques can be employed to correct the signal distortion caused by the connector's parasitic elements, allowing for more accurate signal transmission over longer distances or at higher speeds.
TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector TJC4 8-6...6MM Pitch PCB Bar Wire to Board connector