StairWorks® Series, Structural, Motion Hardware

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11403422025
WIE 40 90 DEGREE 3-WAY CORNER IN
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StairWorks®
Railing Connector
WIE, 40MM, ITAS, ALUMINUM
TAR2048
STAIRWORKS, INTERNAL TENSION SYS
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StairWorks®
Railing Connector
40MM OD, 96.25", 2444 MMT, ALUM, 6063, T6, A 141 204 R1 CLEAR ANODIZE
11403421025
WI 40 90 DEGREE ELBOW INTERNAL T
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StairWorks®
Railing Connector
WI 40-90º, ITAS, ALUMINUM
14403410025
MI 40 180 DEGREE COUPLER INTERNA
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StairWorks®
Railing Connector
MI, 40MM, ITAS, ALUMINUM
TAR2044
STAIRWORKS, INTERNAL TENSION SYS
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StairWorks®
Railing Connector
40MM OD, 4 FT, ALUMINUM
13403429025
TGHF 40 STAIR RAILING SUPPORT
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StairWorks®
Railing Connector
TGHF, 40MM, ITAS, ALUMINUM
11403423025
WIT 40 90 DEGREE T-JOINT INTERNA
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StairWorks®
Railing Connector
WIT, 40MM, ITAS, ALUMINUM
10403410025
KI 40 90 DEGREE 4-WAY CROSS INTE
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StairWorks®
Railing Connector
KI, 40MM, ITAS, ALUMINUM
93800
HARDWARE SET FOR STAIR RAILING S
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StairWorks®
Railing Connector
2 EA: BOLTS, WASHERS, T-NUT
11403424025
WITE 40 90 DEGREE 4-WAY CORNER I
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StairWorks®
Railing Connector
WITE, 40MM, ITAS, ALUMINUM
TAR2046
STAIRWORKS, INTERNAL TENSION SYS
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PCB Symbol, Footprint & 3D Model
StairWorks®
Railing Connector
40MM OD, 6', ALUMINUM
11404521025
WI 40-45D 135 DEGREE ELBOW INTER
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StairWorks®
Railing Connector
WI 40-45º, ITAS, ALUMINUM
13403431025
FI 40 BASE MOUNT
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StairWorks®
Railing Connector
FI, 40MM, ITAS, ALUMINUM
13403430025
FIW 40 WALL FLANGE MOUNT
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PCB Symbol, Footprint & 3D Model
StairWorks®
Railing Connector
40MM, ITAS, ALUMINUM
TAR2040
STAIRWORKS, INTERNAL TENSION SYS
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PCB Symbol, Footprint & 3D Model
StairWorks®
Railing Connector
40MM X 3000MM, 6063, T6, A 141 204 R1 CLEAR ANODIZE

About  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.