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amp2 radio frequency rf amplifier minicircuits zfl 500ln gain 24 db  (Mini-Circuits)


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    Structured Review

    Mini-Circuits amp2 radio frequency rf amplifier minicircuits zfl 500ln gain 24 db
    Fig. 1. (a) Setup of the dual fiber laser system. PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelength- division multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and <t>AMP2:</t> radio frequency(RF)amplifier(Mini- Circuits, <t>ZFL-500LN,Gain,24</t> dB), DDS: direct digital synthesizer(AnalogDevices, EVAL- AD9959). Intensity autocorrelation trace (b) and Optical spectrum (c) of Oscillator 1. Intensity autocorrelation trace (d) and Optical spectrum (e) of Oscillator 2. (f) Structural diagram of the fiber actuator for the repetition rate adjustment based on PZT and displacement amplifier.
    Amp2 Radio Frequency Rf Amplifier Minicircuits Zfl 500ln Gain 24 Db, supplied by Mini-Circuits, used in various techniques. Bioz Stars score: 95/100, based on 486 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/amp2 radio frequency rf amplifier minicircuits zfl 500ln gain 24 db/product/Mini-Circuits
    Average 95 stars, based on 486 article reviews
    amp2 radio frequency rf amplifier minicircuits zfl 500ln gain 24 db - by Bioz Stars, 2026-02
    95/100 stars

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    1) Product Images from "Compact all-polarization-maintaining dual femtosecond fiber laser system with large repetition rate tuning ranges based on self-made fiber actuators"

    Article Title: Compact all-polarization-maintaining dual femtosecond fiber laser system with large repetition rate tuning ranges based on self-made fiber actuators

    Journal: Optics Express

    doi: 10.1364/oe.554006

    Fig. 1. (a) Setup of the dual fiber laser system. PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelength- division multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and AMP2: radio frequency(RF)amplifier(Mini- Circuits, ZFL-500LN,Gain,24 dB), DDS: direct digital synthesizer(AnalogDevices, EVAL- AD9959). Intensity autocorrelation trace (b) and Optical spectrum (c) of Oscillator 1. Intensity autocorrelation trace (d) and Optical spectrum (e) of Oscillator 2. (f) Structural diagram of the fiber actuator for the repetition rate adjustment based on PZT and displacement amplifier.
    Figure Legend Snippet: Fig. 1. (a) Setup of the dual fiber laser system. PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelength- division multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and AMP2: radio frequency(RF)amplifier(Mini- Circuits, ZFL-500LN,Gain,24 dB), DDS: direct digital synthesizer(AnalogDevices, EVAL- AD9959). Intensity autocorrelation trace (b) and Optical spectrum (c) of Oscillator 1. Intensity autocorrelation trace (d) and Optical spectrum (e) of Oscillator 2. (f) Structural diagram of the fiber actuator for the repetition rate adjustment based on PZT and displacement amplifier.

    Techniques Used:



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    Fig. 1. (a) Setup of the dual fiber laser system. PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelength- division multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and <t>AMP2:</t> radio frequency(RF)amplifier(Mini- Circuits, <t>ZFL-500LN,Gain,24</t> dB), DDS: direct digital synthesizer(AnalogDevices, EVAL- AD9959). Intensity autocorrelation trace (b) and Optical spectrum (c) of Oscillator 1. Intensity autocorrelation trace (d) and Optical spectrum (e) of Oscillator 2. (f) Structural diagram of the fiber actuator for the repetition rate adjustment based on PZT and displacement amplifier.
    Amp2 Radio Frequency Rf Amplifier Minicircuits Zfl 500ln Gain 24 Db, supplied by Mini-Circuits, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Fig. 1. (a) Setup of the dual fiber laser system. PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelength- division multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and <t>AMP2:</t> radio frequency(RF)amplifier(Mini- Circuits, <t>ZFL-500LN,Gain,24</t> dB), DDS: direct digital synthesizer(AnalogDevices, EVAL- AD9959). Intensity autocorrelation trace (b) and Optical spectrum (c) of Oscillator 1. Intensity autocorrelation trace (d) and Optical spectrum (e) of Oscillator 2. (f) Structural diagram of the fiber actuator for the repetition rate adjustment based on PZT and displacement amplifier.
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    Fig. 1. (a) Setup of the dual fiber laser system. PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelength- division multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and <t>AMP2:</t> radio frequency(RF)amplifier(Mini- Circuits, <t>ZFL-500LN,Gain,24</t> dB), DDS: direct digital synthesizer(AnalogDevices, EVAL- AD9959). Intensity autocorrelation trace (b) and Optical spectrum (c) of Oscillator 1. Intensity autocorrelation trace (d) and Optical spectrum (e) of Oscillator 2. (f) Structural diagram of the fiber actuator for the repetition rate adjustment based on PZT and displacement amplifier.
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    Fig. 1. (a) Setup of the dual fiber laser system. PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelength- division multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and AMP2: radio frequency(RF)amplifier(Mini- Circuits, ZFL-500LN,Gain,24 dB), DDS: direct digital synthesizer(AnalogDevices, EVAL- AD9959). Intensity autocorrelation trace (b) and Optical spectrum (c) of Oscillator 1. Intensity autocorrelation trace (d) and Optical spectrum (e) of Oscillator 2. (f) Structural diagram of the fiber actuator for the repetition rate adjustment based on PZT and displacement amplifier.

    Journal: Optics Express

    Article Title: Compact all-polarization-maintaining dual femtosecond fiber laser system with large repetition rate tuning ranges based on self-made fiber actuators

    doi: 10.1364/oe.554006

    Figure Lengend Snippet: Fig. 1. (a) Setup of the dual fiber laser system. PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelength- division multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and AMP2: radio frequency(RF)amplifier(Mini- Circuits, ZFL-500LN,Gain,24 dB), DDS: direct digital synthesizer(AnalogDevices, EVAL- AD9959). Intensity autocorrelation trace (b) and Optical spectrum (c) of Oscillator 1. Intensity autocorrelation trace (d) and Optical spectrum (e) of Oscillator 2. (f) Structural diagram of the fiber actuator for the repetition rate adjustment based on PZT and displacement amplifier.

    Article Snippet: PZT: piezoelectric transducer, SESAM: semiconductor saturable absorber mirror, OFM: output fiber mirror, WDM: wavelengthdivision multiplexer, EDF25: erbium-doped fiber(OFS, EDF25-PM, peak core absorption of 25 dB/m @1530 nm), EDF80: erbium-doped fiber (nLIGHT, Er80-4/125-HD-PM, peak core absorption of 92 dB/m @1530 nm), ISO: isolator, Pump: 980-nm semiconductor laser, PD: photodetector, HVA: high voltage amplifier, PI-1 and PI-2: proportional-integral controller, M1 and M2: electronic mixers, AMP1 and AMP2: radio frequency(RF)amplifier(MiniCircuits, ZFL-500LN,Gain,24 dB), DDS: direct digital synthesizer(AnalogDevices, EVALAD9959).

    Techniques: