Radios, how do they work?
11–20 of 114 posts
Re: Radios, how do they work?
#12Would it be possible to construct a rudimentary FM radio receiver with only the most basic parts ala Masters of the Air?
Re: Radios, how do they work?
#13I think this undersells the trick behind radio. Say we have the technology to broadcast a signal from an antenna to receivers, with some bandwidth B. Without getting clever, we can only send or receive one signal, since any others would interfere with each other. The trick is, can we do something to shift the bandwidth B to some other base frequency F such that B + F > B? Or B + (N - 1)F > B? And if we can do that, a…
> divide that bandwidth by frequency (like AM and FM) or time Ah. The real magic is when we separate by space (beyond just frequency or time). The ability to do this was discovered relatively recently, in 1996, by a guy called Foschini, though radio astronomers will say "Meh". By adding multiple antennas and doing space-time coding engineers found they could pump an order of magnitude more data through a radio channe…
Re: Radios, how do they work?
#14Would it be possible to construct a rudimentary FM radio receiver with only the most basic parts ala Masters of the Air?
AM is quite easy (a diode and a capacitor can be enough), an FM receiver need a local oscillator that require some active elements (transistors) and a more complex circuit.
Re: Radios, how do they work?
#15Earlier quoted context omitted.
AM is quite easy (a diode and a capacitor can be enough), an FM receiver need a local oscillator that require some active elements (transistors) and a more complex circuit.
Under what circumstances is a diode and a capacitor enough to make a radio receiver?
In conclusion, you should be able to build a simple radio from copper wire, aluminium foil, a pencil, a razor blade, and baking powder.
[1] https://en.wikipedia.org/wiki/Crystal_radio
[2] https://en.wikipedia.org/wiki/Crystal_earpiece
[3] https://en.wikipedia.org/wiki/Foxhole_radio
[4] https://en.wikipedia.org/wiki/Potassium_sodium_tartrate
[5] https://rimstar.org/science_electronics_projects/index.htm#S...
Re: Radios, how do they work?
#16Earlier quoted context omitted.
AM is quite easy (a diode and a capacitor can be enough), an FM receiver need a local oscillator that require some active elements (transistors) and a more complex circuit.
Under what circumstances is a diode and a capacitor enough to make a radio receiver?
Re: Radios, how do they work?
#17Earlier quoted context omitted.
AM is quite easy (a diode and a capacitor can be enough), an FM receiver need a local oscillator that require some active elements (transistors) and a more complex circuit.
Under what circumstances is a diode and a capacitor enough to make a radio receiver?
Re: Radios, how do they work?
#18Earlier quoted context omitted.
AM is quite easy (a diode and a capacitor can be enough), an FM receiver need a local oscillator that require some active elements (transistors) and a more complex circuit.
Under what circumstances is a diode and a capacitor enough to make a radio receiver?
https://en.wikipedia.org/wiki/Foxhole_radio
> The aerial is connected to the grounded inductor. The coil has an internal parasitic capacitance which, along with the capacitance of the antenna forms a resonant circuit (tuned circuit) with the inductance of the coil, resonating at a specific resonant frequency. The coil has a high impedance at its resonant frequency, and passes radio signals from the antenna at that frequency along to the detector, while conducting signals at all other frequencies to ground. By varying the inductance with a sliding contact arm, a commercial crystal radio can be tuned to receive different frequencies. Most of these wartime sets did not have a sliding contact and were only built to receive one frequency, the frequency of the nearest broadcast station. The detector and earphones were connected in series across the coil, which applied the radio signal of the received radio station. The detector acted as a rectifier, allowing current to flow through it in only one direction. It rectified the oscillating radio carrier wave, extracting the audio modulation, which passed through the earphones. The earphones converted the audio signal to sound waves.
Re: Radios, how do they work?
#19I think this undersells the trick behind radio. Say we have the technology to broadcast a signal from an antenna to receivers, with some bandwidth B. Without getting clever, we can only send or receive one signal, since any others would interfere with each other. The trick is, can we do something to shift the bandwidth B to some other base frequency F such that B + F > B? Or B + (N - 1)F > B? And if we can do that, a…
And for those even deeper into the theory, one question you might ask is, if we can divide spectrum and time to get some bandwidth B per channel, how many bits can we send/receive over a distinct channel? The answer is C = Blog2(1 + S/N) where B is the bandwidth and S/N is the signal to noise ratio determined by the environment (how much noise is present relative to the signal being transmitted). The crazy thing is t…
Re: Radios, how do they work?
#20Earlier quoted context omitted.
AM is quite easy (a diode and a capacitor can be enough), an FM receiver need a local oscillator that require some active elements (transistors) and a more complex circuit.
Under what circumstances is a diode and a capacitor enough to make a radio receiver?
The idea behind this demodulator is quite easy: the diode filters out all of the negative part of the signal, then the positive signal charge the capacitor and the energy is released in a quite constant way (R*C must be several order of magnitude higher than 1/f where f is the carrier frequency) during the negative signal "hole".