Digilent, Inc.

Digilent, Inc.

Digilent, Inc. is a renowned company specializing in providing educational and research tools for electronics and engineering. With a focus on fostering hands-on learning experiences, Digilent offers a wide range of development boards, test and measurement equipment, and accessories that are designed to support both beginners and advanced users. Their products are widely used in universities, research labs, and hobbyist communities worldwide. Digilent's development boards, such as those based on the popular FPGA platforms like Xilinx and Intel, enable users to prototype and implement digital circuits and embedded systems efficiently. The company also provides comprehensive documentation, tutorials, and online resources to support users in their learning journey. With a commitment to affordability, quality, and community collaboration, Digilent continues to empower individuals and institutions in exploring and mastering electronics and engineering concepts.

Solderless Breadboards

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8
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Size / Dimension
Number of Tie Points (Total)
Number of 5-Tie Point Terminals
Number of Distribution Buses
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Digilent, Inc.
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesTypeNumber of Terminal StripsNumber of Distribution BusesNumber of Tie Points (Total)Number of 5-Tie Point TerminalsNumber of Binding PostsSize / Dimension
340-002
BREADBOARD ASSEMBLY 9.06X6.88"
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Assembly (On Frame)
3
5
2390
378
4
9.06" x 6.88" (230.1mm x 174.8mm)
340-015
BREADBRD TERM STRIP 4.50X1.75"
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Terminal Strip (No Frame)
1
1
730
126
-
4.50" L x 1.75" W (114.3mm x 44.5mm)
340-002-1
BREADBOARD KIT SOLDERLESS LARGE
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Assembly (On Frame)
3
5
2390
378
4
9.06" x 6.89" (230.0mm x 175.0mm)
240-131
BREADBOARD TERM STRIP 3.29X2.15"
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Terminal Strip (No Frame)
1
2
400
60
-
3.29" x 2.15" (83.6mm x 54.6mm)
340-038
SOLDERLESS BREADBOARD KIT: SMALL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Terminal Strip (No Frame)
1
2
830
126
-
6.50" x 2.18" (165.1mm x 55.6mm)
410-385
BREADBOARD CANVAS
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Terminal Strip (No Frame)
2
3
1560
252
-
-
471-032
BLANK CANVAS WITH TWO SOLDERLESS
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Terminal Strip (No Frame)
2
3
1868
256
-
-
340-015-1
SOLDERLESS BREADBOARD KIT: SMALL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Terminal Strip (No Frame)
1
1
730
126
-
6.50" L x 1.75" W (165.1mm x 44.5mm)

About  Solderless Breadboards

Solderless breadboard products offer a convenient solution for interconnecting electronic components in hobby, educational, or development settings without the need for soldering or similar fixation processes. These products consist of an electrically insulating housing with a grid of holes, each containing a U-shaped metallic contact. The design of solderless breadboards allows for easy and flexible circuit assembly. Component leads and wire segments can be inserted into the holes of the insulator, where they make contact with the metallic contacts beneath. The spring tension of the contacts ensures a secure electrical connection, while also allowing for easy reconfiguration of the circuit layout. Solderless breadboards are particularly useful for experimentation and prototyping purposes. They enable quick and hassle-free circuit assembly, as components can be easily inserted and removed without the need for soldering or other permanent attachment methods. This flexibility allows for rapid testing and modification of circuit designs. However, it is important to note that solderless breadboards have certain limitations. The connections made on these boards are not mechanically robust, as they rely solely on the spring tension of the contacts to retain the components. This means that excessive movement or vibration can disrupt the connections. Another consideration is that solderless breadboards introduce parasitic circuit elements due to their construction. The contacts and the lengthy wire segments within the breadboard introduce resistance, capacitance, and inductance into the circuit. As a result, solderless breadboards are not suitable for high-speed or high-frequency circuits, as these parasitic elements can significantly impact circuit performance and signal integrity. In summary, solderless breadboards provide a convenient and flexible method for interconnecting electronic components without the need for soldering. They are ideal for rapid prototyping and experimentation, allowing for easy assembly and modification of circuits. However, their connections are not mechanically robust, and the introduction of parasitic circuit elements makes them unsuitable for high-speed applications.