EHF-FD1549 Allicdata Electronics
Allicdata Part #:

P10692TR-ND

Manufacturer Part#:

EHF-FD1549

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: Panasonic Electronic Components
Short Description: DIRECTIONAL COUPLER 800MHZ 20DB
More Detail: RF Directional Coupler 800MHz ~ 1GHz 20 ± 2dB 06...
DataSheet: EHF-FD1549 datasheetEHF-FD1549 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tape & Reel (TR) 
Part Status: Obsolete
Coupler Type: Standard
Frequency: 800MHz ~ 1GHz
Coupling Factor: 20 ± 2dB
Applications: --
Insertion Loss: 0.2dB
Power - Max: --
Isolation: --
Return Loss: --
Package / Case: 0606 (1616 Metric)
Supplier Device Package: 0606
Description

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An RF Directional Coupler is a device used to separate out the forward and reflected RF power in a system, typically for measurement or transfer of RF power. The EHF-FD1549 is a high frequency directional coupler designed for use in high power RF systems, such as radio systems, satellites, and radar systems. It features exceptionally low insertion and return loss over a wide frequency range, and can be used in both low and high power applications.The EHF-FD1549 is designed to work in the frequency range of 9 kHz to 40 GHz, and supports both high power RF systems as well as low power RF systems. It features a low insertion loss of 0.3 dB and a return loss of -20 dB over the frequency range of 9 kHz to 40 GHz. It is also designed with a high power handling capability, with a maximum input power of up to 400W.The EHF-FD1549 has a wide range of uses in the field of radio, radar, and satellite communications. It can be used to isolate and measure RF signals, convert between different systems, monitor signal levels and impairments, and transfer power between different systems. For radio applications, the EHF-FD1549 can be used to measure the level of signals and to help ensure that the radio system is working as designed. It can also separate signals from interfering signals and measure the amount of power transferred between different systems. In satellite applications, the EHF-FD1549 can be used to measure the output power of the satellite transmissions, and to monitor impairments in the satellite signals. It can also be used to transfer power from one satellite system to another, and to measure the amount of power transferred. Finally, it can be used to monitor the performance of satellite antennas and other components.In radar applications, the EHF-FD1549 can be used to measure the level of radar signals and to ensure that the radar system is working as designed. It can also be used to isolate the signals from interfering signals, measure the amount of power transferred between different systems, and monitor impairments in the radar system. The EHF-FD1549 can also be used to transfer power between different systems and monitor the performance of radar antennas and other components.The working principle of the EHF-FD1549 is based on the use of a directional coupler which functions as a 4-port device. It has two input ports (A and B), and two output ports (C and D). When a signal is applied to port A, it is coupled by the directional coupler to the output port C. At the same time, part of the signal is coupled to the output port D which is the reflected signal. This allows the EHF-FD1549 to be used to measure the level of the signal as well as the impedance matching and power transfer between different systems.In conclusion, the EHF-FD1549 is a high frequency directional coupler designed for use in high power RF systems. It can be used to isolate and measure signals, convert between different systems, monitor signal levels and impairments, and transfer power between different systems. The EHF-FD1549 is designed to work in the frequency range of 9 kHz to 40 GHz, and features a low insertion loss of 0.3 dB and a return loss of -20 dB. Its working principle is based on the use of a 4-port directional coupler which allows it to measure signal levels and impedance matching, as well as power transfer between different systems.

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