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wiring$92157$ - vertaling naar grieks

CIRCUIT LAYOUT STYLE IN COMPUTER ENGINEERING
Right-angle wiring; Right angle wiring

wiring      
n. ηλεκτρική σύνδεση, καλωδίωση
overhead wires         
  • An older rail bridge in [[Berwick-upon-Tweed]], retrofitted to include overhead catenary lines
  • location=New York}}</ref>
  • A switch in parallel overhead lines
  • crossings]]
  • 25&nbsp;kV AC neutral zone in Romania
  • Line tensioning in Germany
  • Gantry with old and new suspended equipment at [[Grivita railway station]]<!-- Not to be confused with the [[Grivita metro station]] -->, [[Bucharest]].
  • Uetliberg railway]] (the pantograph is mounted asymmetrically to collect current from this rail); right, 15&nbsp;kV AC for the Sihltal railway
  • Toronto]]: Two runners for pantographs flank the trolley pole frog.
  • JR West]]
  • Line C]] trenches and tunnels in central Paris
  • [[Lineworker]]s on a [[maintenance of way]] vehicle repairing overhead lines (Poland)
  • A section insulator at a section break in Amtrak's 12&nbsp;kV catenary
  • Operation of the overhead conductor rails at Shaw's Cove Railroad Bridge in Connecticut
  • A [[swing bridge]] near [[Meppel]], the Netherlands. There is no overhead line on the bridge; the train coasts through with raised pantograph.
  • insulated trough}}
  • Tram overhead wire (diagonal) crossing trolleybus wires (horizontal), photographed in Bahnhofplatz, Bern, Switzerland
  • Trolleybus wire switch]]
  • Catenary (upper photo) is suited to higher-speed rail vehicles. Trolley wire (lower photo) is suited to slower-speed trams (streetcars) and light rail vehicles.
SINGLE OR RARELY DOUBLE WIRE USED TO TRANSMIT ELECTRICAL ENERGY TO TRAINS, TRAMS, OR TROLLEYBUSES, HANGING ABOVE THE ROUTE OF THE VEHICLE
Overhead Lines; Overhead wires; Overhead wire; Overhead contact system; Overhead line equipment; Overhead electrification; Overhead pickup; Overhead catenary; How can a tram route cross a trolley bus route without short circuits; OHLE; Catenary (railways); Catenary wire; Overhead power; Trolley wires; Catenary (railroad); Catenary (rail); Overhead trolley wire; Phase gap; Catenarie arm; Overhead power supply; Messenger wire; Overhead equipment; Overhead wiring; Overhead electrical wire; Overhead lines; Caternary (rail line power); Overhead conductor rail; Overhead live wire; Contact wire; Traction wire; Overhead Line Electrification; Overhead line electrification; Overhead Line; Overhead line maintenance; Overhead catenary system; Overhead catenary wire; Draft:Neutral section; Neutral section
εναέρια καλώδια
in series         
  • A diagram of several capacitors, side by side, both leads of each connected to the same wires.
  • A diagram of several capacitors, connected end to end, with the same amount of current going through each.
  • A diagram of several inductors, side by side, both leads of each connected to the same wires.
  • A diagram of several inductors, connected end to end, with the same amount of current going through each.
  • A diagram of several resistors, side by side, both leads of each connected to the same wires.
  • This is a diagram of several resistors, connected end to end, with the same amount of current through each.
THE TWO BASIC WAYS OF CONNECTING THE COMPONENTS OF AN ELECTRICAL CIRCUIT
Series circuit; Parallel circuit; Series and parallel curcuits; Parallel (electronics); Parallel curcuit; Series connection; Parallel connection; Parallel wiring; Series wiring; Parallel circuits; Series circuits; Series curcuit; Series curcuits; Series and parallel circuit; Series (circuit); In series; In parallel; Series resistance; Series-coupled cell; Parallel-coupled cell; Capacitors in series; Capacitors in parallel; Inductors in series; Inductors in parallel; Series & parallel circuits; Series circuits information; Resistances in Parallel; In Parallel; R1 series R2; R₁ series R₂; R1 + R2; R₁ + R₂; R1+R2; R₁+R₂; L1 series L2; L₁ series L₂; L1 + L2; L₁ + L₂; L1+L2; L₁+L₂; Z1 series Z2; Z₁ series Z₂; Z1 + Z2; Z₁ + Z₂; Z1+Z2; Z₁+Z₂; C1 series C2; C₁ series C₂; C1 parallel C2; C₁ parallel C₂; C1 ∥ C2; C₁ ∥ C₂; C1∥C2; C₁∥C₂; C1 + C2; C₁ + C₂; C1+C2; C₁+C₂; G1 series G2; G₁ series G₂; G1 + G2; G₁ + G₂; G1+G2; G₁+G₂; G1 parallel G2; G₁ parallel G₂; G1 ∥ G2; G₁ ∥ G₂; G1∥G2; G₁∥G₂; B1 series B2; B₁ series B₂; B1 + B2; B₁ + B₂; B1+B2; B₁+B₂; X1 series X2; X₁ series X₂; X1 + X2; X₁ + X₂; X1+X2; X₁+X₂; Y1 series Y2; Y₁ series Y₂; Y1 + Y2; Y₁ + Y₂; Y1+Y2; Y₁+Y₂; B1 parallel B2; B₁ parallel B₂; B1 ∥ B2; B₁ ∥ B₂; B1∥B2; B₁∥B₂; Y1 parallel Y2; Y₁ parallel Y₂; Y1 ∥ Y2; Y₁ ∥ Y₂; Y1∥Y2; Y₁∥Y₂; Parallel and series circuits; Series (electronics)
στη σειρά

Definitie

wiring
n.
1) defective, faulty wiring
2) electric wiring

Wikipedia

Manhattan wiring

Manhattan wiring (also known as right-angle wiring) is a technique for laying out circuits in computer engineering. Inputs to a circuit (specifically, the interconnects from the inputs) are aligned into a grid, and the circuit "taps" (connects to) them perpendicularly. This may be done either virtually or physically. That is, it may be shown this way only in the documentation and the actual circuit may look nothing like that; or it may be laid out that way on the physical chip. Typically, separate lanes are used for the inverted inputs and are tapped separately.

The name Manhattan wiring relates to its Manhattan geometry. Reminiscent of how streets in Manhattan, New York tend to criss-cross in a very regular grid, it relates to appearance of such circuit diagrams.

Manhattan wiring is often used to represent a programmable logic array.

Alternatives include X-architecture wiring, or 45° wiring, and Y-architecture wiring (using wires running in the 0°, 120°, and 240° directions).