Terminal Blocks & Blocks
DIN-rail terminals, barrier strips, distribution and grounding.
Also searched as: terminal blockdin terminalbarrier stripground bar
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Barrier Terminal Strip
Wire Size: 6 AWG
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Barrier Terminal Strip
Wire Size: 12 AWG
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Barrier Terminal Strip
Wire Size: 10 AWG
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Barrier Terminal Strip
Wire Size: 12 AWG
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Block Fork Terminal
Wire Size: 22 - 18 AWG
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Bright Round Bar for Earthing Rod Manufacturing
Diameter: 13.80 mmLength: 1-6 m
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CT Terminal Block, DIN Rail Sliding Link
Amps: 50 AVoltage: 300 V
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Component Terminal Block Push in Terminal Block 1.5mm
Wire Size: 1.5mm
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Copper Ground Terminal Bar
Current: 150ADimensions: 6x9mmVoltage: 380V
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Covered Dual Row 4 Position Screw Terminal Block
Maximum Rated AMPS: 15AMaximum Rated Voltage: 600VPositions: 4
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DG65S-B WJ65S KF65S Barrier Strip Barrier Fixed
Rated Current: 30A
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DIN Rail Barrier Terminal Block
Current: 25AVoltage: 600VWays: 5
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DIN Rail Mounted Terminal Blocks
Mounting: DIN Rail
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DIN Rail Ring Lug Terminal Block
Width: 7.2mm
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DIN Rail Screw Terminal Block
Mounting: DIN RailType: Screw
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DIN Rail Terminal Block
Mounting: DIN Rail
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DIN Rail Terminal Block
Mounting: DIN Rail
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DIN Rail Terminal Block
Amperage: 30 AMounting Type: DIN RailNumber of Contacts: 28Number of Poles: 28Number of Rows: 3
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DIN Rail Terminal Block 0.2-2.5mm2
Current: 32AVoltage: 800VWire Size: 0.2-2.5mm2
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DIN Rail Terminal Block Assembly
Mounting Type: DIN Rail
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DIN Rail Terminal Block UT 2.5-PE GROUND TERM BLOCK
Connector Type: ScrewMounting Type: DIN Rail Mount
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DIN Rail Terminal Blocks
Compatible Wire Size: 0.2-2.5mm²/AWG24-12
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DIN Rail Terminal Blocks
Configuration: 2 in 8 outQuantity: 6 PcsWire Gauge: 28-12 AWG
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DIN Rail Terminal Blocks
Wire Gauge: 24-12 AWG
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DIN Terminal
Operating Pressure Range: 0.15 psiSolenoid Supply Voltage: 24 V dc
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DIN Terminal
Manual Operation Type: Push-Turn Locking (Slotted)Maximum Operating Pressure: 101 psiOperating Temperature Range: 14 to 122 °F
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DIN Terminal
Manual Operation Type: Non-Locking PushMaximum Operating Pressure: 101 psiOperating Temperature Range: 14 to 122 °F
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DIN Terminal
Flow Coefficient Cv. Range: 14 to 122 °FMaximum Operating Pressure: 145 psiOperating Medium: Air
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DIN Terminal
Manual Operation Type: Non-Locking PushMaximum Operating Pressure: 145 psiOperating Temperature Range: 14 to 140 °FProof Pressure: 218 psi
About terminal blocks & blocks
Terminal blocks and barrier strips provide a secure, organized method for connecting electrical wires within control panels, machinery, and various electronic assemblies. DIN-rail mount terminal blocks, such as feed-through, ground, and disconnect types, are common for industrial control applications, offering modularity and ease of installation on standard 35mm or 15mm DIN rails. Barrier strips, characterized by their screw terminals separated by insulating barriers, are frequently used for lower voltage applications or where individual wire termination is preferred. Distribution blocks facilitate power distribution from a single input to multiple outputs, often featuring multiple poles and varying current ratings. Grounding blocks ensure a reliable earth connection for safety and EMI reduction. Selection criteria include current rating (Amperes), voltage rating (Volts), wire gauge compatibility (AWG or mm²), number of positions/poles, and terminal type (screw clamp, spring clamp, push-in). Materials typically include polyamide (PA66) or melamine for insulation, with conductive parts made from nickel-plated brass, copper, or steel, ensuring robust electrical and mechanical performance. Dimensions, such as pitch and overall footprint, are critical for panel layout.
How to choose
When selecting terminal blocks, first determine the required current and voltage ratings to match application demands. Second, identify the wire gauge(s) to be terminated, which dictates the appropriate terminal size and connection method (e.g., screw, spring, push-in). Third, consider the mounting preference: DIN-rail for modularity and industrial standards, or panel/surface mount for barrier strips. Fourth, specify the number of poles or positions needed for each connection point. Finally, evaluate any special functions required, such as grounding, fused, or disconnect blocks, which add specific capabilities at the expense of footprint and cost.