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Query: modification yaesu
Links: 55 | Categories: 23
Categories
- Radio Equipment > HF Transceivers > Yaesu FT-100
- Radio Equipment > HF Transceivers > Yaesu FT-1000MP
- Radio Equipment > HF Transceivers > Yaesu FT-2000
- Radio Equipment > HF Transceivers > Yaesu FT-450
- Radio Equipment > VHF-UHF Mobile > Yaesu FT-7800R
- Radio Equipment > HF Transceivers > Yaesu FT-817
- Radio Equipment > HF Transceivers > Yaesu FT-847
- Radio Equipment > HF Transceivers > Yaesu FT-857
- Radio Equipment > VHF-UHF Mobile > Yaesu FT-8800R
- Radio Equipment > HF Transceivers > Yaesu FT-897
- Radio Equipment > HF Transceivers > Yaesu FT-9000
- Radio Equipment > HF Transceivers > Yaesu FT-920
- Radio Equipment > HF Transceivers > Yaesu FT-950
- Radio Equipment > HF Transceivers > Yaesu FT-991
- Radio Equipment > HF Transceivers > Yaesu FTDX-5000
- Radio Equipment > HF Transceivers > Yaesu FTDX101
- Radio Equipment > VHF-UHF Handhelds > Yaesu VX-150
- Radio Equipment > VHF-UHF Handhelds > Yaesu VX-170
- Radio Equipment > VHF-UHF Handhelds > Yaesu VX-2
- Radio Equipment > VHF-UHF Handhelds > Yaesu VX-5R
- Radio Equipment > VHF-UHF Handhelds > Yaesu VX-6R
- Radio Equipment > VHF-UHF Handhelds > Yaesu VX-7R
- Radio Equipment > VHF-UHF Handhelds > Yaesu VX-8R
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A Magnetic Loop Controller project details the construction and operation of an automatic tuning system for magnetic loop antennas, which are resonant circuits using an oversized inductor and an adjustable capacitor. The system employs a stepper motor to precisely adjust the variable capacitor, maintaining optimal resonance across the HF bands. It integrates with various transceivers, including _Icom_, _Kenwood_, and _Yaesu_ models, by monitoring the VFO frequency and adjusting the loop's tuning accordingly. The project provides comprehensive building instructions, a PowerPoint-style presentation, and the full source code for the controller's firmware, enabling hams to replicate and customize the design. The controller's firmware offers diverse functionality, including automatic frequency tracking, manual tuning, and SWR monitoring, significantly enhancing the operational efficiency of magnetic loop antennas, particularly for QRP and portable operations. The design emphasizes accurate capacitor positioning, crucial for achieving low SWR and maximum radiated power. Comparisons with manual tuning methods highlight the benefits of real-time adjustment, especially when operating across different bands or making frequent QSYs. The project's detailed documentation and available source code facilitate experimentation and modification by advanced builders, allowing for tailored performance characteristics.
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The article explains how to adapt the YAESU FT817 transceiver so that it can be used to control Kuhne electronic transverters by transmitting at +12V via the coaxial wire. Different FT817 versions imply that some of the modification proposals that have been made so far don't apply to everyone. This tutorial provides a workaround that works with all FT817 models. It makes use of the external ACC socket, connecting an interior tiny circuit board to two thin wires. Follow ON7WP's instructions for using the rear antenna socket.
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The FT101ZD DDS VFO project replaces the original VFO in the Yaesu FT101Z/ZD rigs with an AD9850 DDS module, providing enhanced frequency control. It uses the original optical encoder and clarifier for compatibility, with a custom 6V power supply modification. The project includes selectable step sizes, a frequency save function, and works with both RX and TX modes. The design involves mechanical and electronic modifications, including SMD components and a custom PIC processor. Calibration ensures accurate frequency output, with further improvements under consideration.
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YaesuFT1000MK V stands out with improved close-spaced SSB transmit performance, reversing a trend seen in other modern radios. Featuring a class-A mode, it offers clean HV finals when kept out of ALC. However, two significant flaws persist: the noise blanker causes receiver IM distortion, and the transmitter lacks wave-shaping on CW, resulting in pronounced keyclicks. Preliminary tests reveal strong keyclicks +1kHz and -1kHz, prompting a combined modification to address both issues.
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This study analyzes the antenna pattern of the Utah Amateur Radio Club's 146.760 MHz repeater following antenna relocation in 1997. Noting degraded transmission toward the north, a customized signal mapping system using a Yaesu FT-817, GPS, and software was developed to log real-time signal data. Calibration techniques extended the radio's signal range, enabling precise field measurements. The method allowed continuous signal strength monitoring while driving, revealing anomalies in coverage likely due to tower modifications. Findings helped assess and visualize the antenna’s actual radiation pattern and highlighted environmental impact on signal distribution.