Prototype Boards Unperforated

Results:
91
Manufacturer
Series
Size / Dimension
Material
Board Thickness
Proto Board Type
Circuit Pattern
Pitch
Plating
Hole Diameter
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesProto Board TypeSize / DimensionBoard ThicknessMaterial
675
PROTO BOARD COPPER CLAD 18X12"
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Quantity
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PCB Symbol, Footprint & 3D Model
600
Copper Clad, Positive Sensitized
18.00" x 12.00" (457.4mm x 304.8mm)
0.031" (0.79mm) 1/32"
Phenolic Paper, Single Sided, 1 oz.
698
PROTO BOARD COPPER CLAD 9" X 6"
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Quantity
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PCB Symbol, Footprint & 3D Model
600
Copper Clad, Positive Sensitized
9.00" x 6.00" (228.6mm x 152.4mm)
0.015" (0.40mm) 1/64"
Copper Clad FR4, Double Sided, 1 oz.
597
PROTO BOARD COPPER CLAD 9" X 6"
1+
$0.2832
5+
$0.2674
10+
$0.2517
Quantity
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PCB Symbol, Footprint & 3D Model
500
Copper Clad, Uncoated
9.00" x 6.00" (228.6mm x 152.4mm)
0.015" (0.40mm) 1/64"
Copper Clad FR4, Single Sided, 1 oz.
612
PROTO BOARD COPPER CLAD 9" X 6"
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Quantity
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PCB Symbol, Footprint & 3D Model
600
Copper Clad, Positive Sensitized
9.00" x 6.00" (228.6mm x 152.4mm)
0.062" (1.57mm) 1/16"
Copper Clad FR4, Single Sided, 1 oz.
650
PROTO BOARD COPPER CLAD 6" X 6"
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Quantity
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PCB Symbol, Footprint & 3D Model
600
Copper Clad, Positive Sensitized
6.00" x 6.00" (152.4mm x 152.4mm)
0.062" (1.57mm) 1/16"
Copper Clad FR4, Double Sided, 1 oz.
3388-1000
BREADBOARD 28POS DUAL SOCKET
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Quantity
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PCB Symbol, Footprint & 3D Model
-
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3397-0040
BREADBOARD 4POS SOLDER STRIP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
-
-
3397-1080
BREADBOARD 8POS PLUG STRIP
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
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-
3398-1000
BREADBOARD 18POS DUAL SOCKET
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Quantity
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PCB Symbol, Footprint & 3D Model
-
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532
PCB COPPER CLAD 1/16" 2-SIDE
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Quantity
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PCB Symbol, Footprint & 3D Model
500
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0.062" (1.57mm) 1/16"
-
812C2
PROTO BOARD COPPER CLAD 12X8"
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Copper Clad, Uncoated
12.00" x 8.00" (304.8mm x 203.2mm)
0.062" (1.57mm) 1/16"
Copper Clad FR4, Double Sided, 1 oz.

Prototype Boards Unperforated

Unperforated prototype board products are frequently utilized in hobbyist and developmental settings to create personalized printed circuit boards for interconnecting electronic components. These products typically consist of a sheet made of fiberglass-reinforced epoxy resin that is coated on one or both sides with a layer of copper. The fiberglass-reinforced epoxy resin provides durability and stability to the board, ensuring it can withstand the rigors of circuit construction and usage. The copper layer serves as the conductive pathway, allowing for the interconnection of electronic components. These products are available in two main variations. Some boards come pre-coated with a photosensitive material, which enables the use of photographic pattern reproduction techniques. This coating allows users to transfer their circuit design onto the board using a photographic process. This method is often preferred for its accuracy and efficiency in reproducing intricate circuit patterns. Alternatively, there are uncoated boards that do not have a photosensitive material. These boards are compatible with computer-controlled machining operations, where a milling machine or router is used to remove copper from specific areas based on a digitally generated layout file. This approach offers flexibility for those who prefer computer-based design and manufacturing processes. Both types of boards provide a reliable foundation for creating custom circuit boards. They offer versatility in terms of design and manufacturing methods, allowing hobbyists and developers to choose the most suitable approach for their specific projects. To summarize, unperforated prototype board products are commonly used in hobbyist and developmental settings to create customized printed circuit boards. These boards consist of a fiberglass-reinforced epoxy resin sheet coated with a layer of copper. They are available either pre-coated with a photosensitive material for photographic pattern reproduction or without a coating for computer-controlled machining operations. These boards offer flexibility and reliability for constructing personalized circuits.