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From vacuum tubes to GaN & LDMOS—RF tech has transformed. ⚡️
Elite RF is proud to power the next chapter.
Learn more: t.ly/G96wp

#rfamplifier #rfengineering #microwave #rfindustry #rfpower

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⚡ Power. Precision. Performance.

The Elite RF DB018027G4747AC delivers reliable, high-efficiency performance across demanding defense, comms & test applications.

📄 Spec sheet 👉 t.ly/lDHrx

#EliteRF #RFPower #Amplifiers #HighPowerPerformance #EngineeringExcellence #DefenseTechnology

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⚡ Meet the Elite RF MB-026-0G434850 — a broadband solid-state RF power amplifier built for unmatched reliability, efficiency & strength in demanding environments.

📄 View specs: t.ly/soks8
📩 sales@eliterf.com

#EliteRF #RFPower #Amplifiers #DefenseTechnology #HighPowerPerformance

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Photo of -55 dBm calibration setup with 100 MHz oscillator, 5 dB pad, 0-70 dB 10 dB step attenuator, 2-way splitter, TinySA-Ultra level monitor, and Mini-Circuits ZX47-55 sensor connected to an Arduino with LCD display shield. Sensor is powered from a +12V wall wart power adapter. It works!

Photo of -55 dBm calibration setup with 100 MHz oscillator, 5 dB pad, 0-70 dB 10 dB step attenuator, 2-way splitter, TinySA-Ultra level monitor, and Mini-Circuits ZX47-55 sensor connected to an Arduino with LCD display shield. Sensor is powered from a +12V wall wart power adapter. It works!

Photo of the +5 dBm level test using same setup as -55 dBm, just different step attenuator setting. Sensor is within 1 dB of TinySA-Ultra reading over +5 to -55 dBm level (measured in 10 dB steps). Also calibrated temp reading using a separate 1-wire/Arduino sensor to be within 0.5 C at the set point temp.

Photo of the +5 dBm level test using same setup as -55 dBm, just different step attenuator setting. Sensor is within 1 dB of TinySA-Ultra reading over +5 to -55 dBm level (measured in 10 dB steps). Also calibrated temp reading using a separate 1-wire/Arduino sensor to be within 0.5 C at the set point temp.

DIY RF Power Meter Achievement Unlocked (initial functionality achieved). Reviewed code, made tweaks, found cal-offset magic numbers and calibrated temperature (single point) and input RF level over -55 to +5 dBm at my test oscillator’s frequency of 100 MHz […]

[Original post on mastodon.radio]

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Photo showing the ZX47-55 detector module and two TinkerKit displays. The TinkerKit displays have an on-board Leonardo processor with connections to add sensors and I/O easily. Lower right module is setup for a thermal  sensor and temperature display. Bare upper right module targeted for this project if minimal button control is realizable.

Photo showing the ZX47-55 detector module and two TinkerKit displays. The TinkerKit displays have an on-board Leonardo processor with connections to add sensors and I/O easily. Lower right module is setup for a thermal sensor and temperature display. Bare upper right module targeted for this project if minimal button control is realizable.

A smaller cleaner hardware platform might be one of these TinkerKit Leonardo-based displays. Either way, the code for these 2x16 LCD display modules is mostly the same. Would prefer developing using LabVIEW, but good to brush up on Arduino sized code and might […]

[Original post on mastodon.radio]

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Photo showing the ZX47-55 detector module and two TinkerKit displays. The TinkerKit displays have an on-board Leonardo processor with connections to add sensors and I/O easily. Lower right module is setup for a thermal  sensor and temperature display. Bare upper right module targeted for this project if minimal button control is realizable.

Photo showing the ZX47-55 detector module and two TinkerKit displays. The TinkerKit displays have an on-board Leonardo processor with connections to add sensors and I/O easily. Lower right module is setup for a thermal sensor and temperature display. Bare upper right module targeted for this project if minimal button control is realizable.

A smaller cleaner hardware platform might be one of these TinkerKit Leonardo-based displays. Either way, the code for these 2x16 LCD display modules is mostly the same. Missing LabVIEW, but might have some fun getting one of these boards/displays working as a […]

[Original post on mastodon.radio]

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From precision to power—RF modular systems lead the way in:

Radar: Advanced detection & awareness
Tactical Comms: Real-time, secure data
Electronic Warfare: Jam, deceive, dominate

When clarity & control matter—RF delivers.
🔗 eliterfllc.com

#RF #RFPower #RFAmplifier

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At Elite RF, we design & build solid-state power amps & high-power microwave generators for the toughest missions—defense, aerospace, medical & more. 💥

🔗 eliterfllc.com

#EliteRF #RFAmplifiers #MicrowaveTech #DefenseTech #GaNPower #MadeInUSA #RFEngineering #RFPower

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Arduino-Board mit gesockelten Optokopplern und anderen Bauteilen auf einer Streifenrasterplatine

Arduino-Board mit gesockelten Optokopplern und anderen Bauteilen auf einer Streifenrasterplatine

Nur ganz leichter Overkill: #arduiono als BCD-Encoder zwischen Antennenmatrix und #rfpower PA. Die weiß so, welche Antenne angeschaltet ist und der interne ATU und sucht die passende Abstimmung heraus. Als Gimmick gibt's Potenzialtrennung zwischen Station und […]

[Original post on radiosocial.de]

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The Future of #Connectivity: RF Power #semiconductors are driving #5G, #IoT, and advanced #wirelesscommunication! Explore the key trends shaping the #RFPower Semiconductor Market in our latest report.📡
shorturl.at/YXe1f
#Radiofrequency #marketresearch #Telecoms #aerospace #BusinessGrowth

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