Results E-cloud Measurements MD Week 29
... It was found that most of the traces are severely contaminated by beam harmonics related IMD, where the AM correlates very well with the intensity of the beam harmonics The amount of residual modulation by the base band 44kHz signal on the cables can’t be determined (no high pass filters at the inpu ...
... It was found that most of the traces are severely contaminated by beam harmonics related IMD, where the AM correlates very well with the intensity of the beam harmonics The amount of residual modulation by the base band 44kHz signal on the cables can’t be determined (no high pass filters at the inpu ...
beat-frequency audio genera tor
... e. Varythefrequencywiththe ZERO ADJUST control until thebeat between the oscillator and power-line frequencies, as indicated by the fluctuation of the meter pointer, is as slow as possible. When the oscillator frequency is near the line frequency there is a large-amplitude fluctuation. At multiples ...
... e. Varythefrequencywiththe ZERO ADJUST control until thebeat between the oscillator and power-line frequencies, as indicated by the fluctuation of the meter pointer, is as slow as possible. When the oscillator frequency is near the line frequency there is a large-amplitude fluctuation. At multiples ...
File - Physics with Miss OO
... The charge flow for a current of 1A in 10 seconds The charge flow for a current of 3A in 10 seconds The charge flow for a current of 5A in 200 seconds Calculate the average current in a wire through which a charge of 15C passes in 5s • Calculate the average current in a wire through which a charge o ...
... The charge flow for a current of 1A in 10 seconds The charge flow for a current of 3A in 10 seconds The charge flow for a current of 5A in 200 seconds Calculate the average current in a wire through which a charge of 15C passes in 5s • Calculate the average current in a wire through which a charge o ...
B-Tech Lab Manual - Bapatla Engineering College
... To the lower end, a heavy uniform circular disc is attached by another chuck. The length of the suspension (from top portion of chuck to the clamp) is fixed to a particular value (say 60 cm or 70 cm). Keep the two cylindrical masses are at equal distance from chuck nut, and note down this distance. ...
... To the lower end, a heavy uniform circular disc is attached by another chuck. The length of the suspension (from top portion of chuck to the clamp) is fixed to a particular value (say 60 cm or 70 cm). Keep the two cylindrical masses are at equal distance from chuck nut, and note down this distance. ...
CMOS high-speed dual-modulus frequency divider for RF frequency
... Fig. 7 shows the functional block diagram of the dualmodulus frequency divider, which includes a divide-by-3or-4 synchronous counter as the first (high-frequency) stage followed by a divide-by-4 asynchronous counter as the second (low-frequency) stage. The input signal, amplified by a logic inverter ...
... Fig. 7 shows the functional block diagram of the dualmodulus frequency divider, which includes a divide-by-3or-4 synchronous counter as the first (high-frequency) stage followed by a divide-by-4 asynchronous counter as the second (low-frequency) stage. The input signal, amplified by a logic inverter ...
UC3844B, UC3845B, UC2844B, UC2845B High Performance
... input of the NOR gate high. This causes the Output to be in a low state, thus producing a controlled amount of output deadtime. An internal flip−flop has been incorporated in the UCX844/5B which blanks the output off every other clock cycle by holding one of the inputs of the NOR gate high. This in ...
... input of the NOR gate high. This causes the Output to be in a low state, thus producing a controlled amount of output deadtime. An internal flip−flop has been incorporated in the UCX844/5B which blanks the output off every other clock cycle by holding one of the inputs of the NOR gate high. This in ...
application of resonant converter in ozone generator
... a. Linier model of ozone generator which consist of capacitor and resistor b. Linier model of ozone generator which represent capacitance of air gap and dielectric c. Non linier model of Ozone generator Figure 2.a. is a linear model of ozone generators. This model represents the OG with only one res ...
... a. Linier model of ozone generator which consist of capacitor and resistor b. Linier model of ozone generator which represent capacitance of air gap and dielectric c. Non linier model of Ozone generator Figure 2.a. is a linear model of ozone generators. This model represents the OG with only one res ...
TM-11-5099 - Liberated Manuals
... lists or supply manual 7, 8, or 9) will be used for reporting these improvements. This form will be completed in triplicate by the use of pencil, pen, or typewriter. The original and one copy will be forwarded direct to commanding Officer, U. S. Army Electronics Materiel Support Agency, ATTN: SELMS- ...
... lists or supply manual 7, 8, or 9) will be used for reporting these improvements. This form will be completed in triplicate by the use of pencil, pen, or typewriter. The original and one copy will be forwarded direct to commanding Officer, U. S. Army Electronics Materiel Support Agency, ATTN: SELMS- ...
unit iii analog multiplier and pll
... 1. Define capture range of PLL [April/MAY 2008], [May/June 2010], [April/May 2011] The range of frequencies over which the PLL can acquire lock with an input signal is called the capture range. It is expressed as a percentage of the VCO free running frequency. 2. Define lock-in range of a PLL. [Apri ...
... 1. Define capture range of PLL [April/MAY 2008], [May/June 2010], [April/May 2011] The range of frequencies over which the PLL can acquire lock with an input signal is called the capture range. It is expressed as a percentage of the VCO free running frequency. 2. Define lock-in range of a PLL. [Apri ...
Klystron
A klystron is a specialized linear-beam vacuum tube, invented in 1937 by American electrical engineers Russell and Sigurd Varian, which is used as an amplifier for high radio frequencies, from UHF up into the microwave range. Low-power klystrons are used as oscillators in terrestrial microwave relay communications links, while high-power klystrons are used as output tubes in UHF television transmitters, satellite communication, and radar transmitters, and to generate the drive power for modern particle accelerators.In the klystron, an electron beam interacts with the radio waves as it passes through resonant cavities, metal boxes along the length of the tube. The electron beam first passes through a cavity to which the input signal is applied. The energy of the electron beam amplifies the signal, and the amplified signal is taken from a cavity at the other end of the tube. The output signal can be coupled back into the input cavity to make an electronic oscillator to generate radio waves. The gain of klystrons can be high, 60 dB (one million) or more, with output power up to tens of megawatts, but the bandwidth is narrow, usually a few percent although it can be up to 10% in some devices.A reflex klystron is an obsolete type in which the electron beam was reflected back along its path by a high potential electrode, used as an oscillator.The name klystron comes from the stem form κλυσ- (klys) of a Greek verb referring to the action of waves breaking against a shore, and the suffix -τρον (""tron"") meaning the place where the action happens. The name ""klystron"" was suggested by Hermann Fränkel, a professor in the classics department at Stanford University when the klystron was under development.