Material:High-grade brass with corrosion-resistant plating
Operating Temperature Range:-40°C to +120°C
Rated Current Capacity:25 A
Rated Voltage Capacity:AC 250 V / DC 160 V
Insulation Resistance:≥ 1000 MΩ
Contact Resistance:≤ 50 mΩ
Insulation Voltage:3000 V
IP Rating:IP67
Number of Contacts:2, 3 or 4
Cable Size Compatibility:1.5mm² to 2.5mm²
Wire Gauge:0.14mm² to 1.5mm²
Crafted for industrial strength, the SIEMENS 6ES7 590-0AA00-0AA0 Connector boasts a robust construction designed to withstand harsh environments typically encountered in manufacturing plants. Its high-grade brass material, coupled with a corrosion-resistant plating, ensures longevity and reliability under varying operational conditions.
This connector is meticulously engineered to support a wide range of applications, from simple signal transmission to complex control circuits, making it a versatile component for diverse automation systems. Its compatibility with a variety of cable sizes (1.5mm² to 2.5mm²) and wire gauges (0.14mm² to 1.5mm²) facilitates easy integration with existing infrastructure, reducing installation time and complexity.
Featuring an operating temperature range of -40°C to +120°C, this connector is suitable for use in extreme climates, ensuring continuous performance without downtime. With a rated current capacity of 25 A and voltage capacities up to AC 250 V and DC 160 V, it supports high power applications, making it ideal for high-demand industrial settings.
The connector’s insulation resistance of ≥ 1000 MΩ and low contact resistance of ≤ 50 mΩ ensure reliable electrical performance, minimizing power loss and ensuring stable signal integrity. The 3000 V insulation voltage rating provides robust protection against electrical surges, safeguarding against potential damage.
Equipped with an IP67 rating, this connector is dust-tight and can withstand water immersion up to 1 meter for 30 minutes, making it suitable for outdoor or washdown environments. With its ability to connect up to 2, 3, or 4 contacts, it offers flexibility in managing multiple circuit connections within a compact space, optimizing layout and efficiency.
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