HomeElectronicsExcessive-Frequency Sub Miniature-A Adaptors 

Excessive-Frequency Sub Miniature-A Adaptors 


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This 2.92 mm SMA adaptor helps frequencies as much as 26.5 GHz for testing in lab circumstances and on-field circumstances. 

Excessive-Frequency Sub Miniature-A Adaptors 
stainless-steel 2.92 mm to SMA adapters

Amphenol RF has added 2.92 mm SMA precision adapters into its vary of coaxial adapters, concentrating on labs and manufacturing items that carry out RF testing. Sub Miniature model A (SMA) is a semi-precision, threaded coaxial RF connector designed for high-frequency  and microwave purposes, guaranteeing a steady impedance connection for minimal sign loss.

The corporate stated off-the-shelf merchandise are supposed for engineers working with broadband purposes that demand exact measurements.

These adapters assist frequencies as much as 26.5 GHz. This frequency spectrum covers radar techniques testing, community evaluation, RF manufacturing testing and high-frequency modules evaluations. This excessive frequency testing can be central in testing defence gear communication.

That includes an air-dielectric interface, these adapters scale back sign loss and preserve Low Voltage Standing Wave Ratio (Low-VSWR) for optimum measurement correct check knowledge. Its working temperature vary is specified from  −65 °C to +165 °C. This permits for lab managed testing and in addition on-field testing circumstances

The design follows MIL-STD-348 compliant interfaces. These adapters are suitable with commonplace SMA and a pair of.92 mm (SMK) connectors. The physique and coupling nut are machined from passivated stainless-steel and have a contact constructed from gold-plated beryllium copper. 

The retaining ring is SUS 304 (stainless-steel alloy) with a silicone gasket, and the two.92 mm insulator is constructed from PTFE whereas the SMA insulator is constructed from Ultem 1000. This new off-the-shelf answer joins a broad providing of adapters designed to fulfill the rising want for high-frequency knowledge transmission in next-generation designs.

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