An RF directional coupler is a passive component used to sample a portion of RF power traveling in one direction while largely isolating signals moving the other way. In practical terms, it lets engineers monitor forward power, reflected power, or signal levels without placing a bulky instrument directly in the main RF path. That makes directional couplers common in test setups, power amplifier monitoring, antenna systems, transmit chains, and lab benches where someone needs a cleaner way to watch what the signal is actually doing. This category usually covers several familiar styles. Coaxial directional couplers are the most common for bench and system use, while surface-mount couplers show up in compact RF boards where layout space is limited. Buyers also run into stripline, microstrip, waveguide, and high-power versions depending on frequency range and power handling. Some parts are built for narrowband cellular or Wi-Fi work, while others are broadband designs that trade a bit of flatness for wider coverage. When sourcing RF directional couplers, engineers usually look past the headline coupling value. Coupling accuracy, insertion loss, directivity, return loss, frequency range, and power rating all matter, but not equally in every design. A coupler that looks fine on paper can be a poor fit if its directivity falls apart at the band edges or if the mainline loss is too high for a sensitive transmit path. Package style matters too. A lab team may want SMA or N-type connectors, while a production line often prefers tape-and-reel SMD parts. Price is only part of the decision. Short lead times can matter more than a lower unit cost when a board spin is already delayed, and this is one of those categories where counterfeit or re-marked parts can create expensive debugging later. For current stock, lead time, or a quote on RF directional couplers, check availability at icxing.com.
Start with how much signal you need to sample and how sensitive your measurement point is. Common values are 10 dB, 20 dB, and 30 dB, but the right choice depends on power level, detector range, and how much insertion loss you can tolerate.
Buyers should also review insertion loss, directivity, return loss, power handling, and connector or package style. In many designs, poor directivity or higher mainline loss causes more trouble than a slightly narrower bandwidth.
Yes, especially for branded coaxial and high-frequency parts bought through spot market channels. It is worth confirming traceability, date codes, and packaging condition, since a bad coupler can waste far more time in debug than it saves up front.
| Image | Part | Manufacturer | Description | Stock | Action | |
|---|---|---|---|---|---|---|
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Hirose | RF DIR COUPLER 8G... |
3,610
In-stock
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Inquiry | ||
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Hirose | RF DIR COUPLER 10.... |
7,470
In-stock
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Inquiry | ||
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Hirose | RF DIR COUPLER 10.... |
4,490
In-stock
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Inquiry | ||
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Hirose | RF DIR COUPLER 10.... |
6,080
In-stock
|
Inquiry | ||
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Hirose | CONNECTOR |
7,320
In-stock
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Inquiry | ||
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Hirose | CONNECTOR |
3,070
In-stock
|
Inquiry | ||
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Hirose | COUPLER |
6,390
In-stock
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Inquiry | ||
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Hirose | COUPLER |
7,750
In-stock
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Inquiry | ||
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Hirose | COUPLER |
4,590
In-stock
|
Inquiry | ||
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Hirose | COUPLER |
5,710
In-stock
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Inquiry | ||
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Hirose | COUPLER |
6,760
In-stock
|
Inquiry | ||
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Hirose | COUPLER |
1,670
In-stock
|
Inquiry | ||
|
Hirose | COUPLER |
1,070
In-stock
|
Inquiry |