10 Series, Structural, Motion Hardware

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ImageProduct DetailPriceAvailabilityECAD ModelSeriesTypeSpecifications
3395
80/20, LLC
10 S ANCHOR FASTENER ASSEMBLY
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PCB Symbol, Footprint & 3D Model
10
T-Nut
#10-32 Thread
3280-10
80/20, LLC
10S DBL ECON T-NUT 1/4-20 THREAD
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PCB Symbol, Footprint & 3D Model
10
T-Nut
1/4"-20 Thread
1010-72
80/20, LLC
1" X 1" T-SLOTTED EXTRUSION 72"
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Quantity
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PCB Symbol, Footprint & 3D Model
10
Extruded Aluminum Profile
1.000" W x 1.000" H (25.40mm x 25.40mm)
2380-HW
80/20, LLC
FLOOR MOUNT BASE PLATE FOR 1010
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PCB Symbol, Footprint & 3D Model
10
Coupling Plate
L-Shape
1020-72
80/20, LLC
1" X 2" T-SLOTTED EXTRUSION 72"
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PCB Symbol, Footprint & 3D Model
10
Extruded Aluminum Profile
2.000" W x 1.000" H (50.80mm x 25.40mm)
2020-72
80/20, LLC
2" X 2" T-SLOTTED EXTRUSION 72"
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PCB Symbol, Footprint & 3D Model
10
Extruded Aluminum Profile
2.000" W x 2.000" H (50.80mm x 50.80mm)
2025GRA
80/20, LLC
1020 END CAP GRAY W/PUSH-INS
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PCB Symbol, Footprint & 3D Model
10
End Cap
Gray
2028GRA
80/20, LLC
2020 END CAP GRAY W/PUSH-INS
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PCB Symbol, Footprint & 3D Model
10
End Cap
Gray
4265-HW
80/20, LLC
10S 2 HOLE SLOTTED CORNER BRACKE
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PCB Symbol, Footprint & 3D Model
10
Corner Brace
90° Angle

Structural, Motion Hardware

Structural and motion hardware play a crucial role in the construction of frameworks and attachment points for both stationary and moving devices, including motors, controllers, gantries, and similar equipment. These hardware components encompass a diverse range of items, such as brackets, fasteners, connectors, rails, bearings, and other structural elements. They are utilized to assemble robust and reliable structures that provide support, facilitate movement, and enable the proper functioning of various mechanical and electromechanical systems. When designing and selecting structural and motion hardware, considerations include factors such as load-bearing capacity, compatibility with specific components, resistance to environmental conditions, and ease of installation and maintenance. Additionally, the choice of materials, such as steel, aluminum, or specialized alloys, is essential to ensure the required strength, durability, and corrosion resistance for the intended application. In both stationary and dynamic settings, these hardware components form the essential backbone of industrial and mechanical systems, ensuring stability, precision, and operational efficiency. Whether used in manufacturing facilities, transportation systems, or robotics applications, structural and motion hardware contribute to the seamless integration and reliable performance of diverse technological systems.