ARTE
BELLEZZA E BENESSERE
MESTIERE
CULTURA E STORIA
DIVERTIMENTO
AMBIENTE
CIBO E BEVANDE
INGEGNERIA INVERSA
SCIENZE
SPORT
TECNOLOGIA
INDOSSABILI

The Negative Feedback Amplifier
A telephone line across a continent needs hundreds of amplifiers in series, and their faults add. Each valve's gain drifts as it ages and each stage adds a little distortion, so a hundred repeaters each drifting one decibel is a hundred decibels of drift. Bell Labs spent the 1920s hand-selecting valves, matching them in pairs and re-matching them every year, and it was not working.
Harold Black tried the obvious fix first. His 1923 feedforward amplifier separated out the distortion, amplified it on its own, and subtracted it from the output further down. It works on the bench and it needs two active paths matched to about one per cent and HELD there while the valves age and the room warms up. Nothing in 1923 could do that.
On the morning of 2 August 1927, crossing the Hudson on the Lackawanna Ferry, he wrote the other answer on a spare copy of the New York Times. Feed a fraction of the output back to the input in opposition, and the closed-loop gain becomes A over one plus A-beta. Make the loop gain large and that collapses to one over beta - a number set by two resistors, which do not age, do not distort and cost nothing to match.
One decision buys four things at once, all divided or multiplied by the same factor: the distortion falls, the gain drift falls, the bandwidth rises, and the amplifier's own characteristics stop mattering. The price is stated just as plainly. To keep forty decibels of gain with forty decibels of feedback you must build eighty and throw half of it away.
It also buys a problem nobody had before. A loop can howl, and in 1927 there was no way to predict which one would.
Intermedio
3 hours
Istruzioni
1
1
An amplifier with no feedback at all
An amplifier with no feedback at all
Build a common-emitter stage on the breadboard: 2N3904, 4k7 collector load, base biased near half the supply, emitter straight to ground through a 220 uF capacitor.
Feed it 10 mV at 1 kHz and measure the output. Note the gain. Then warm the transistor with your finger and watch the gain move.
Materiali per questo passaggio:
BJT Transistors - NPN 2N39041 pezzo
1/4W Resistor Kit (600pcs, 30 Values)1 kit
Electrolytic Capacitor Kit (200pcs, 15 Values)1 kitStrumenti necessari:
Breadboard - Classic
DDS Signal Generator (1Hz-65MHz)
Digital Oscilloscope
Bench Power Supply (30V/5A)
Digital Multimeter (Lab Grade)2
2
Take the capacitor out
Take the capacitor out
Remove the emitter bypass capacitor so the emitter resistor is in circuit for signal. You have just closed a feedback loop: the emitter voltage follows the output current and opposes the input.
Re-measure. The gain has collapsed to roughly the ratio of two resistors - and now it does not move when you warm the transistor, and the sine wave on the scope is visibly cleaner at large signals. Same parts, one component moved.
Materiali per questo passaggio:
1/4W Resistor Kit (600pcs, 30 Values)1 kitStrumenti necessari:
Breadboard - Classic
DDS Signal Generator (1Hz-65MHz)
Digital Oscilloscope
Digital Multimeter (Lab Grade)3
3
One over beta, four benefits, and the thing Black tried first
One over beta, four benefits, and the thing Black tried first
Loading Jupyter Notebook...
Strumenti necessari:
Desktop Computer4
4
Compendium: the patent nobody believed, and the minus sign
Compendium: the patent nobody believed, and the minus sign
The British Patent Office initially treated the application the way they treated perpetual motion machines, on the reasonable-sounding grounds that an amplifier whose output opposes its input cannot amplify. It is a fair objection and the answer is that it does not amplify - the LOOP does, and what the loop delivers is not gain but accuracy. Black's US patent 2,102,671 was filed in 1932 and granted in 1937, ten years after the ferry. Bell System repeaters using it went into service in the 1930s and the same equation now sits under every operational amplifier, every switching regulator and every servo in this batch.
The minus sign is worth being careful about, because it is only a minus sign at low frequency. Every real amplifier adds phase shift as frequency rises, and at some frequency the feedback that was subtracting arrives 180 degrees late and starts adding instead. If the loop gain is still above one when that happens, the amplifier oscillates. More feedback makes every static property better and moves that frequency closer, which is why the Bell amplifiers with the most feedback were the ones that sang - and why the next two blueprints exist.
Strumenti necessari:
Notebook and PencilMateriali
3- BJT Transistors - NPN 2N390410% commissione1 pezzo€1.00
- 1/4W Resistor Kit10% commissione2 kitSegnaposto
- Electrolytic Capacitor Kit10% commissione1 kitSegnaposto
Strumenti richiesti
7- Breadboard - Classic10% commissione€9.00
- Segnaposto
- Segnaposto
- Digital Multimeter - Lab Grade10% commissioneSegnaposto
- Desktop Computer100% commissioneSegnaposto
- Notebook and Pencil10% commissioneSegnaposto
Totale stimato
€1.00Blueprint correlati
Questi blueprint condividono conoscenze — tecniche, materiali o principi
CC0 Pubblico dominio
Questo progetto è rilasciato sotto CC0. Sei libero di copiare, modificare, distribuire e utilizzare quest'opera per qualsiasi scopo, senza chiedere permesso.
Supporta il Maker acquistando prodotti tramite il suo progetto dove guadagna una Commissione Maker stabilita dai venditori, oppure crea una nuova iterazione di questo progetto e includilo come collegamento nel tuo progetto per condividere i ricavi.



