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Directional coupler - vertaling naar spaans

RADIO TECHNOLOGY DEVICES
Directional coupler; Combiner; Hybrid coupler; Power divider; Power splitter; Power combiner; Moreno crossed-guide directional coupler; Bethe-hole directional coupler; Moreno coupler; RF splitter; Coupling factor (directional couplers); Branch-line coupler
  • 50 Ω}} system
  • 600 Ω}} system
  • 40 dB}} (voltage gain 100) solid state amplifier
  • '''Figure 9'''. A 3-section branch-line coupler implemented in planar format
  • '''Figure 3'''. Graph of insertion loss due to coupling
  • '''Figure 1'''. Two symbols used for directional couplers
  • '''Figure 13'''. Power Divider
  • '''Figure 12'''. Hybrid ring coupler in planar format
  • '''Figure 15'''. Magic tee
  • A 10 dB 1.7–2.2 GHz directional coupler. From left to right: input, coupled, isolated (terminated with a load), and transmitted port.
  • '''Figure 10'''. Simple T-junction power division in planar format
  • '''Figure 14'''. A multi-hole directional coupler
  • '''Figure 22'''. Phase arrangement on a hybrid power combiner.
  • '''Figure 2'''. Symbol for power divider
  • A 3 dB 2.0–4.2 GHz power divider/combiner.
  • '''Figure 7'''. Lumped-element equivalent circuit of the couplers depicted in figures 5 and 6
  • '''Figure 8'''. A 5-section planar format directional coupler
  • 50 Ω}} system
  • '''Figure 17'''. Directional coupler using transformers
  • '''Figure 20'''. Two-tone receiver test setup
  • '''Figure 11'''. Wilkinson divider in coaxial format

Directional coupler         
Acoplador direccional
Combiner         
Combinador
acoustic coupler         
  • Sendata Series 700
COMMUNICATION DEVICE
Accoustic coupler; Acoustic coupling; Acoustically coupled modem; Phone coupler
(n.) = acoplador acústico
Ex: Unlike the modem, the acoustic coupler does not require an electrical connection.

Definitie

directional coupler
<communications> (tap) A passive device used in cable systems to divide and combine radio frequency signals. A directional coupler has at least three ports: line in, line out, and the tap. The signal passes between line in and line out ports with loss referred to as the insertion loss. A small portion of the signal power applied to the line in port passes to the tap port. A signal applied to the tap port is passed to the line in port less the tap attenuation value. The tap signals are isolated from the line out port to prevent reflections. A signal applied to the line out port passes to the line in port and is isolated from the tap port. Some devices provide more than one tap output line (multi-taps). (1995-12-23)

Wikipedia

Power dividers and directional couplers

Power dividers (also power splitters and, when used in reverse, power combiners) and directional couplers are passive devices used mostly in the field of radio technology. They couple a defined amount of the electromagnetic power in a transmission line to a port enabling the signal to be used in another circuit. An essential feature of directional couplers is that they only couple power flowing in one direction. Power entering the output port is coupled to the isolated port but not to the coupled port. A directional coupler designed to split power equally between two ports is called a hybrid coupler.

Directional couplers are most frequently constructed from two coupled transmission lines set close enough together such that energy passing through one is coupled to the other. This technique is favoured at the microwave frequencies where transmission line designs are commonly used to implement many circuit elements. However, lumped component devices are also possible at lower frequencies, such as the audio frequencies encountered in telephony. Also at microwave frequencies, particularly the higher bands, waveguide designs can be used. Many of these waveguide couplers correspond to one of the conducting transmission line designs, but there are also types that are unique to waveguide.

Directional couplers and power dividers have many applications. These include providing a signal sample for measurement or monitoring, feedback, combining feeds to and from antennas, antenna beam forming, providing taps for cable distributed systems such as cable TV, and separating transmitted and received signals on telephone lines.