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| Gesobyte Amplified HD Digital TV Antenna |
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1 By One Amplified HD Digital TV Antenna
| 1 By One Amplified HD Digital TV Antenna |
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| Gesobyte Amplified HD Digital TV Antenna |
| 1 By One Amplified HD Digital TV Antenna |
The answer can be shown in the graph above. This was produced by two
For you who wants to experiment with the early computer technology 8 bit Data , this project is very useful to start with, and 8 Bit Data Digital I/O still use in Industrial process , such on factories process control system.
The Design of This Digital Output card is based on accessing PC UART as shown at table2. The basic lines for UART communications is TXD and RXD for Transmit Data and Receive Data. The other lines are DTR, RTS, CTS, DCR, DCD and RI , each for input and output in communication 8 Bit Data via Serial Communication.
The Active Wideband Loop Antenna is one of the most effective receiving antennas for the 10–30 MHz shortwave spectrum. Unlike long wire antennas that require large outdoor space, this compact loop antenna can be built at home as a DIY project while delivering excellent performance for shortwave listening (SWL), amateur radio, SDR receivers, and HF monitoring.
Originally inspired by classic designs published in Elektor Electronics Magazine, this modernized version is optimized for today’s receivers and offers low noise, wide bandwidth, and high signal-to-noise ratio.
Traditional wire antennas often suffer from high noise pickup, especially in urban environments. An active loop antenna solves this problem by using a small magnetic loop combined with a low-noise RF amplifier.
This antenna is designed primarily for receiving, not transmitting.
The 10–30 MHz HF spectrum covers a wide range of important radio services:
A wideband loop antenna allows you to monitor all these frequencies without retuning coils or switching antennas.
The antenna consists of two main sections:
A loop of wire responds primarily to the magnetic component of radio waves, which makes it inherently resistant to electric-field noise generated by household electronics.
The amplifier buffers the loop, providing:
This design ensures consistent performance across the entire 10–30 MHz range.
| Feature | Active Loop Antenna | Long Wire Antenna |
|---|---|---|
| Size | Compact | Large |
| Noise Immunity | Excellent | Poor |
| Urban Use | Ideal | Problematic |
| Bandwidth | Wide | Variable |
This project is suitable for beginners with basic soldering skills. All components are inexpensive and widely available online.
Larger loops improve sensitivity but are not mandatory.
The amplifier uses a wideband RF transistor or JFET configured as a low-noise buffer. The design prioritizes stability and flat gain across HF frequencies.
The amplifier can be housed in a small waterproof enclosure near the loop.
Using quality components improves reliability and noise performance.
When properly built, this antenna delivers:
Many users report better results than long wire antennas in noisy environments.
Yes. This antenna is receive-only and does not transmit RF energy. It complies with radio regulations worldwide.
The Active Wideband Loop Antenna for 10–30 MHz is one of the most practical DIY antennas for modern shortwave listening. With compact size, low noise, and wide coverage, it is ideal for home construction and urban environments.
Inspired by classic Elektor designs and updated for modern receivers, this project offers excellent performance.