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The generator in Figure 1 overcomes these limitations by using random noise to form the outgoing data stream. The circuit uses the ECLinPS logic family (Reference 1). The MC10EL16 liner receiver ...
The circuit shown in the figure uses a standard white-noise maker using Q1, Q2, and R1. The noise is amplified by C1, R2, R3, and Q3, providing 1 or 2 V of noise at roughly 1 MHz.
The über crypto-geeks in the house just raised all kinds of eyebrows with the announcement of Toshiba's new physical random-number generator, which can pump out 2 megabits per second of random ...
It’s quantum, it’s chaotic, it makes for a great source for a random number generator, and there are already dozens of prototype circuits around the Internet.
Using a single, chip-scale laser, scientists have managed to generate streams of completely random numbers at about 100 times the speed of the fastest random-numbers generator systems that are ...
For this white-noise generator circuit, some output capacitance that leads to peaking can be a design feature rather than a hazard. The output sees 10-kΩ R S and a 50-nF C X to ground.
This circuit and its description can be found as figure 13 in the AD8037 data sheet. (from the days when ADI appended lots of lovely app notes). The second pulse generator output (left) can be found ...
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