KR2023 Series 2.00mm Pitch ULH Wire to Board Connector with TPA
Wire to Board Connector, 2.00mm Pitch, Single Row, SMT Type, Right Angle, 2-10 Circuits, Tin Plating, Natural, with TPA.
Pitch | 2.00mm |
Circuits: | 2-10 Pin |
Current: | 5A |
Voltage: | 100V |
KR2023 Series 2.00mm Pitch ULH Wire to Board Connector with TPA
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General Specifaction
Material: | Nylon 66 UL 94V-0/ Stainless/ Copper Alloy |
Insulation O.D: | 1.5mm Max |
Withstanding Voltage: | 1000V AC/ minute |
Temperature Range: | -40℃~+105℃ |
Contact Resistance: | 15mΩ/max |
Insulation Resistance: | 100MΩ/ min |
Product Plating: | Tin Plated Over Nickel |
Overview
KR2023 series wire-to-board connectors adopt 2.00mm pitch, single row SMT type design, suitable for 2-10 circuit connection. Excellent electrical performance, support 5A current and 100V voltage, low and stable contact impedance, strong insulation and voltage resistance.
The connector has a strong environmental adaptability, can work in a wide range of temperatures from -40 ℃ to +105 ℃, and through 48 hours of salt spray test, to ensure the stability of long-term use. It is suitable for equipment with small space and high vibration.
Advantages
- High electrical performance
Supporting up to 5A current and 100V voltage, the connectors are suitable for a wide range of electrical applications, while the low and stable contact impedance ensures the integrity and efficiency of signal transmission.
- Durable and Reliable
With optimised design and material selection, the connectors have excellent durability and reliability, and can work stably for a long time in harsh environments.
- Good environmental adaptability
Able to work normally in a wide range of temperatures from -40℃ to +105℃, and passed the salt spray test, showing good resistance to harsh environments.
- Excellent mechanical properties
The connector is equipped with TPA, which helps to ensure that the position of the terminals in the Housing is fully in place, and helps to avoid possible disengagement when the conductor is subjected to external pressure.