PDBFS Series, Power Distribution

Results:
7
Manufacturer
Series
Load Side Wire/Stud Size
Load Side Connections Per Pole
Current Rating (Amps)
Line Side Wire/Stud Size
Line Side Connections Per Pole
Load Side Connection Type
Line Side Connection Type
Type
Number of Poles
Voltage - Rated
Results remaining7
Applied Filters:
PDBFS
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ImageProduct DetailPriceAvailabilityECAD ModelCurrent Rating (Amps)SeriesTypeNumber of PolesLine Side Connections Per PoleLoad Side Connections Per PoleLine Side Connection TypeLoad Side Connection TypeLine Side Wire/Stud SizeLoad Side Wire/Stud SizeVoltage - Rated
PDBFS377
1+
¥278.1761
5+
¥262.7218
10+
¥247.2676
Quantity
36 Available
Can ship immediately
Ships from: HK
PCB Symbol, Footprint & 3D Model
-
PDBFS
Power Distribution Block
1
2
12
Screw Connection
Screw Connection
300MCM (kcmil) - #4CU/AL
4 - #6CU/AL, #8 - #14CU, #8 - #12AL
600 V
PDBFS303
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
310 A
PDBFS
Power Distribution Block
1
1
1
Screw Connection
Screw Connection
350MCM (kcmil) - #6CU/AL
350MCM (kcmil) - #6CU/AL
600 V
PDBFS220
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Quantity
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PCB Symbol, Footprint & 3D Model
-
PDBFS
Power Distribution Block
1
1
4
Screw Connection
Screw Connection
2/0 - #8CU/AL, 10 - #1CU
4 - #6CU/AL, #8 - #14CU, #8AL
600 V
PDBFS504
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Quantity
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PCB Symbol, Footprint & 3D Model
760 A
PDBFS
Power Distribution Block
1
2
2
Screw Connection
Screw Connection
500MCM (kcmil) - #6CU/AL
500MCM (kcmil) - #6CU/AL
600 V
PDBFS500
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Quantity
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PCB Symbol, Footprint & 3D Model
620 A
PDBFS
Power Distribution Block
1
2
2
Screw Connection
Screw Connection
350MCM (kcmil) - #6CU/AL
350MCM (kcmil) - #6CU/AL
600 V
PDBFS330
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Quantity
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PCB Symbol, Footprint & 3D Model
-
PDBFS
Power Distribution Block
1
1
6
Screw Connection
Screw Connection
500MCM (kcmil) - #6CU/AL
2 - #8CU/AL, 10 - #14CU
600 V
PDBFS204
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Quantity
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PCB Symbol, Footprint & 3D Model
175 A
PDBFS
Power Distribution Block
1
1
1
Screw Connection
Screw Connection
2/0 AWG - #14 CU/AL
2/0 AWG - #14 CU/AL
600 V

About  Power Distribution

Power distribution terminal blocks are crucial components in electrical systems that allow for the branching of a single power source to multiple circuits. They provide a reliable and organized method of distributing power within a system. These terminal blocks are available in various configurations, including push-in, screw connection, threaded stud, or quick connect poles, catering to different installation requirements. One of the key factors that differentiate power distribution terminal blocks is the number of poles. This refers to the number of separate input and output connections that the terminal block can accommodate. The connections per pole indicate the number of terminals available for each individual pole, allowing for multiple wires to be connected or branched off at a single point. Another important consideration is the stud size, which determines the maximum diameter of the connecting stud or bolt that can be secured to the terminal block. This ensures compatibility with different wire gauges and sizes. Additionally, power distribution terminal blocks are characterized by their voltage and current ratings, indicating the maximum electrical potential and current they can safely handle. These terminal blocks are designed to provide secure and stable connections, ensuring efficient power distribution while minimizing the risk of loose connections or power loss. They are commonly used in industrial, commercial, and residential applications where multiple circuits need to be fed from a single power source. Power distribution terminal blocks simplify wiring processes, improve system reliability, and enhance maintenance efficiency. By centralizing power distribution, they facilitate easier troubleshooting and modification of circuits. Moreover, their modular nature allows for easy expansion or reconfiguration of the electrical system as needed. In summary, power distribution terminal blocks are versatile components used for branching a single power source to multiple circuits. They come in different configurations, including push-in, screw connection, threaded stud, or quick connect poles, and are differentiated by the number of poles, connections per pole, stud size, and voltage and current ratings. With their ability to provide reliable and organized power distribution, these terminal blocks are essential for efficient electrical system design and operation.