Home / Products / RF/IF and RFID / RF Directional Coupler

RF Directional Coupler

An RF Directional Coupler is a specialized device used in the field of radio frequency engineering to selectively sample the power of a signal flowing in one direction without disturbing the flow of that signal. Typically employed in applications such as power monitoring, signal distribution, and network analysis, these couplers provide a critical function in ensuring signal integrity and system performance. The main characteristics of RF Directional Couplers include their ability to operate over a wide range of frequencies and their minimal insertion loss, which ensures that the primary signal's strength and quality are not significantly diminished. Common manufacturers of these components include Mini-Circuits, Pasternack, and Molex, among others.

Search within results
Filter by Manufacturers
Apply
Image
Part Number
Manufacturer
Description
Inquiry
DIRECTIONAL COUPLER 1.71-178GHZ
RFQ
COUPLER 3DB 90DEG 500MHZ-1GHZ
RFQ
COUPLER 3DB 90DEG 8GHZ-12.4GHZ
RFQ
IC DIRECTIONAL CPLR FLIPCHIP
RFQ
COUPLER 90DEG 0.88-0.96GHZ 8SOIC
RFQ
COUPLER 90DEG 0.88-0.96GHZ 8SOIC
RFQ
COUPLER DIR 2.30-2.60GHZ SOT-6
RFQ
COUPLER I TYPE 9.0GHZ 6DB
RFQ
COUPLER I TYPE 2.2GHZ 49DB
RFQ
COUPLER I TYPE 2.2GHZ 20DB
RFQ
COUPLER I TYPE 2.2GHZ 10DB
RFQ
COUPLER I TYPE 1.5GHZ 37DB
RFQ
COUPLER I TYPE 1.5GHZ 30DB
RFQ
DIR COUPLER 17.65DB 2450MHZ
RFQ
DIR COUPLER 10DB 2450MHZ
RFQ
DIR COUPLER 20DB 1810MHZ
RFQ
DIR COUPLER 20DB 1748MHZ
RFQ
DIR COUPLER 14.5DB 1747MHZ
RFQ
DIR COUPLER DB SP 869MHZ
RFQ
DIR COUPLER 20.3DB 848MHZ
RFQ
3 dB HYBRID COUPLER 1950MHZ
RFQ
PCN 3 DB HYBRID COUPLER (LTCC)
RFQ
3 dB HYBRID COUPLER 880MHZ
RFQ
DIR COUPLER W/LP FILTER 1748MHZ
RFQ
COUPLER DUALBAND 898-1748MHZ
RFQ
 
12345 ... 43 Go to Page Go
Electronic Parts Index
More
# 0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

We value your privacy

Our website uses cookies to ensure you are getting the best browsing experience, serve personalized content, and analyze our traffic.
By clicking "Accept Cookies", you consent to our use of cookies. Privacy Policy