Please note that Rockwell Automation Quotations are valid until Friday 4th September 2026, for deliveries on or before Friday 4th September 2026 due to the Rockwell Price Adjustment

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Phoenix Contact - UT 2,5 BK - 3045088

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Phoenix Contact - UT 2,5 BK
£45.50

/ 50 each

£0.91

50

Delivery

Number of available items for delivery:0

Essential specifications

  • Connectable conductor cross section fine-strand without cable end sleeve - 0.14...2.5 mm²

  • Rated current In - 24 A

  • Type of electrical connection 1 - Screw connection

  • Number of clamp positions per level - 2

  • Mounting method - DIN rail (top hat rail) 35 mm

Packaging

  • 1 each

GTIN

4017918975425

Supplier Ref

3045088

Manufacturer Ref

3045088

Commercial Reference

3045088

Connectable conductor cross section fine-strand without cable end sleeve:

0.14...2.5 mm²

Rated current In:

24 A

Type of electrical connection 1:

Screw connection

Number of clamp positions per level:

2

Mounting method:

DIN rail (top hat rail) 35 mm

Connectable conductor cross section fine-strand with cable end sleeve:

0.14...2.5 mm²

Connectable conductor cross section solid-core:

0.14...4 mm²

Connectable conductor cross section multi-wired:

0.14...4 mm²

Rated voltage:

1000 V

Type of electrical connection 2:

Screw connection

Number of levels:

1

Material insulation body:

Thermoplastic

Width:

5.2 mm

Depth:

47.7 mm

End plate required:

yes

Colour:

Black

Internally connected levels:

no

Feed-through terminal block, Connection method: Screw connection, Cross section: 0.14 mm² - 4 mm², AWG: 26 - 12, Width: 5.2 mm, Color: black, Mounting type: NS 35/7,5, NS 35/15


  • The large wiring space enables the connection of solid and stranded conductors without ferrules, even above the nominal cross section
  • As well as saving space, the compact design enables user-friendly wiring in a small amount of space
  • Optimum screwdriver guidance through closed screw shafts
  • The cable entry funnel enables the use of conductors with ferrules and plastic collars within the nominal cross section