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1.27X2.54mm Ribbon cable connectors
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1. MATERIALS ANDFINISH 1.1 Housing Materials: Thermoplastic (UL 94V-0). Black. 1.2 Contacts: Copper Alloy 1.3 Plating: Gold Plating On Contact Area. Tin/Lead Plating on Solder Tail. Under Plating Nic
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1.27X2.54mm Ribbon cable connectors
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1. MATERIALS ANDFINISH 1.1 Housing Materials: Thermoplastic (UL 94V-0). Black. 1.2 Contacts: Copper Alloy Under Plating Nickel. Contact Area Plating G/F 2. Specifications 2.1 Current Rating: 1A MAX.
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1.27X2.54mm Ribbon cable connectors
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1. MATERIALS ANDFINISH 1.1 Housing Materials: Thermoplastic (UL 94V-0). Black. 1.2 Contacts: Copper Alloy 1.3 Plating: Gold Plating On Contact Area. Tin/Lead Plating on Solder Tail. Under Plating Nic
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1.5mm WIRE TO BOARD CONNECTORS
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Specification Current rating: 1A AC/DC Pitch between poles: 1.5mm Voltage: rating: 100V AC/DC Contact resistance: 20mohm(max) Temperature range: -25 to +85 Insulation resistance: 500mohn min Withst
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1.5mm WIRE TO BOARD CONNECTORS
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Specification Current rating: 1A AC/DC Pitch between poles: 1.5mm Voltage: rating: 100V AC/DC Contact resistance: 20mohm(max) Temperature range: -25 to +85 Insulation resistance: 500mohn min Withst
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1.5mm WIRE TO BOARD CONNECTORS
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Specification Current rating: 1A AC/DC Pitch between poles: 1.5mm Voltage: rating: 100V AC/DC Contact resistance: 20mohm(max) Temperature range: -25 to +85 Insulation resistance: 500mohn min Withst
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1.5mm WIRE TO BOARD CONNECTORS
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Specification Current rating: 1A AC/DC Pitch between poles: 1.5mm Voltage: rating: 100V AC/DC Contact resistance: 20mohm(max) Temperature range: -25 to +85 Insulation resistance: 500mohn min Withst
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2.0mm Female Header connectors
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(S-V45XW4-2Xxx) 2.00mm female header pcb smt180 Specifications Current rating: 2Amp Insulator resistance: 1000mΩ min. Dlelectric Withstanding: 500V AC/DC Contact resistance: 20mΩ max. Ope
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2.0mm Female Header connectors
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(S-V45XW4-2Xxx) 2.00mm female header pcb smt180 Specifications Current rating: 2Amp Insulator resistance: 1000mΩ min. Dlelectric Withstanding: 500V AC/DC Contact resistance: 20mΩ max. Ope
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