2000891-1 Overview
The 2000891-1 is a precision electronic component designed for industrial connectivity and signal integrity. Engineered with robust materials and optimized construction, it ensures reliable performance in demanding environments. Its compact form factor facilitates easy integration into complex assemblies, offering consistent electrical parameters that enhance system stability. Ideal for engineers and sourcing specialists, this component supports high-quality signal transmission and durability. For further details on sourcing and technical support, visit IC Manufacturer.
2000891-1 Technical Specifications
| Parameter | Specification |
|---|---|
| Contact Material | Copper Alloy with Gold Plating |
| Number of Positions | 6 |
| Current Rating | 3 A per Contact |
| Voltage Rating | 250 V AC/DC |
| Contact Resistance | ?? 10 m?? |
| Insulation Resistance | > 1000 M?? |
| Operating Temperature Range | -40 ??C to +105 ??C |
| Durability | 500 Mating Cycles |
| Mounting Type | PCB Through-Hole |
2000891-1 Key Features
- High current carrying capacity: Supports up to 3 A per contact, ensuring efficient power delivery in compact circuits.
- Gold-plated contacts: Provide excellent corrosion resistance and low contact resistance, improving signal integrity.
- Robust mechanical design: Rated for 500 mating cycles, this component assures long-term reliability in repetitive connect-disconnect scenarios.
- Wide operating temperature range: Suitable for harsh industrial environments, maintaining performance from -40 ??C to +105 ??C.
2000891-1 Advantages vs Typical Alternatives
This component offers superior contact resistance and durability compared to standard connectors, enhancing signal reliability and system uptime. Its gold-plated copper alloy contacts minimize oxidation, improving long-term accuracy. The current rating and temperature tolerance exceed many typical alternatives, making it a dependable choice for demanding industrial applications. Additionally, its compact, through-hole PCB mounting facilitates easy integration with minimal footprint.
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Typical Applications
- Industrial automation systems requiring reliable electrical connections with high current capacity and resistance to environmental stress.
- Control panels and instrumentation that demand consistent signal integrity and durability over extended use.
- Power distribution modules where compact, high-performance connectors are essential for optimized circuit design.
- Embedded systems in harsh environmental conditions benefiting from robust temperature and mechanical specifications.
2000891-1 Brand Info
The 2000891-1 is produced by a leading manufacturer specializing in high-quality interconnect solutions tailored for industrial electronics. The brand emphasizes precision engineering and rigorous quality control to deliver components that meet stringent industry standards. This product exemplifies the brand??s commitment to providing reliable, efficient, and easy-to-integrate connectors that support diverse industrial applications worldwide.
FAQ
What materials are used in the construction of the 2000891-1?
The component utilizes a copper alloy for its contacts, which are further enhanced with gold plating. This combination ensures excellent electrical conductivity, corrosion resistance, and durability, making it suitable for demanding industrial environments.
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What is the maximum current this device can handle?
Each contact within the device is rated to carry up to 3 amperes. This current rating supports efficient power transfer in various applications without compromising performance or safety.
How does the 2000891-1 perform under temperature extremes?
Designed to operate reliably between -40 ??C and +105 ??C, it maintains electrical and mechanical integrity across a wide range of harsh environmental conditions typically encountered in industrial settings.
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What type of mounting does this connector support?
The device is designed for through-hole mounting on printed circuit boards (PCBs), enabling secure mechanical attachment and stable electrical connections in assembly processes.
How many mating cycles can this component withstand?
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