Richco, SFCBS Series, Board Supports

Results:
6
Manufacturer
Series
Length - Overall
Between Board Height
Features
Mounting Hole Diameter
Support Panel Thickness
Mounting Panel Thickness
Holding Type
Support Hole Diameter
Material
Mounting Type
Results remaining6
Applied Filters:
Richco, SFCBS
Select
ImageProduct DetailPriceAvailabilityECAD ModelMounting TypeMaterialMounting Hole DiameterLength - OverallFeaturesBetween Board HeightSeriesHolding TypeSupport Hole DiameterSupport Panel ThicknessMounting Panel Thickness
SFCBS-M4-12M-01
CBS STUD-FIT 12MM STUD FOR 10MM
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Quantity
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PCB Symbol, Footprint & 3D Model
Screw Mount
Nylon
-
0.874" (22.20mm)
M4 Thread
0.472" (12.00mm)
Richco, SFCBS
Snap Lock
0.157" (3.99mm)
0.062" (1.57mm) 1/16"
-
SFCBS-M4-14M-01
CBS STUD-FIT 14MM STUD FOR 12MM
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Quantity
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PCB Symbol, Footprint & 3D Model
Screw Mount
Nylon
-
0.953" (24.21mm)
M4 Thread
0.551" (14.00mm)
Richco, SFCBS
Snap Lock
0.157" (3.99mm)
0.062" (1.57mm) 1/16"
-
SFCBS-M4-10M-01
BRD SPT SNAP LOCK SCREW MNT 10MM
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Quantity
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PCB Symbol, Footprint & 3D Model
Screw Mount
Nylon
-
0.795" (20.20mm)
-
0.394" (10.00mm)
Richco, SFCBS
Snap Lock
0.157" (3.99mm)
0.062" (1.57mm) 1/16"
-
SFCBS-M4-18M-01
CBS STUD-FIT 18MM STUD FOR 16MM
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Quantity
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PCB Symbol, Footprint & 3D Model
Screw Mount
Nylon
-
1.110" (28.20mm)
M4 Thread
0.709" (18.00mm)
Richco, SFCBS
Snap Lock
0.157" (3.99mm)
0.062" (1.57mm) 1/16"
-
SFCBS-M4-20M-01
CBS STUD-FIT 20MM STUD FOR 18MM
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Quantity
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PCB Symbol, Footprint & 3D Model
Screw Mount
Nylon
-
1.189" (30.20mm)
M4 Thread
0.787" (20.00mm)
Richco, SFCBS
Snap Lock
0.157" (3.99mm)
0.062" (1.57mm) 1/16"
-
SFCBS-M4-16M-01
CBS STUD-FIT 16MM STUD FOR 14MM
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Quantity
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PCB Symbol, Footprint & 3D Model
Screw Mount
Nylon
-
1.031" (26.20mm)
M4 Thread
0.630" (16.00mm)
Richco, SFCBS
Snap Lock
0.157" (3.99mm)
0.062" (1.57mm) 1/16"
-

Board Supports

Board supports are engineered to establish a designated space between two boards or between a surface and a board at a precise elevation. They incorporate built-in mechanisms for attaching the device securely to the boards, ensuring stability and structural integrity. These devices exhibit a range of characteristics that cater to specific application requirements. The holding type, mounting type, between board height, length overall, support hole diameter, support panel thickness, mounting hole diameter, and mounting panel thickness are key attributes that determine their suitability for various installation scenarios. The holding type refers to the method by which the board support grasps and secures the boards, ensuring a firm and reliable connection. Common holding types include snap-locking features, adhesive backing, screw-in mounts, and other fastening mechanisms tailored to different mounting surfaces and materials. Mounting type specifies how the board support is affixed to the assembly, encompassing options such as through-hole mounting, surface mounting, or adhesive attachment. Each mounting type offers distinct advantages in terms of ease of installation, load-bearing capacity, and overall stability. The between board height denotes the specific vertical clearance provided by the board support, allowing for the desired separation between components or surfaces. This dimension is critical for accommodating wiring, electronic components, or other elements that necessitate spatial clearance. Overall length, support hole diameter, support panel thickness, mounting hole diameter, and mounting panel thickness are physical dimensions that determine the compatibility and functionality of the board supports within a given application. These dimensions are selected based on the specific layout, material thickness, and structural requirements of the assembly. In summary, board supports are engineered to create precise spacing between boards or between a surface and a board while incorporating various features such as holding type, mounting type, between board height, length overall, support hole diameter, support panel thickness, mounting hole diameter, and mounting panel thickness. By considering these characteristics, designers and engineers can select the most suitable board supports to ensure secure attachment, proper spacing, and overall robustness in their assemblies or installations.