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Memaparkan catatan dengan label Sq Wave Gen. Papar semua catatan
Memaparkan catatan dengan label Sq Wave Gen. Papar semua catatan

Isnin, Jun 03, 2013

PWM Generator

Free Electronic/electric Circuit diagram for many electronic project, electrical project and electromachanical.

PWM Discrete Generator Circuit 

PWM waveforms are commonly used to control the speed of DC motors. The mark/space ratio of the digital wave-form can be defined either by using an adjustable analogue voltage level (in the case of a NE555 based PWM generator) or digitally using binary values. Digitally derived PWM waveforms are most often produced by the timer/counter modules in microcontrollers but if you do not want to include a microcontroller in your circuit it’s also quite simple to generate the signals using discrete logic components.

Circuit diagram:

An extension of the circuit shown can produce two PWM wave-forms from an 8-bit digital input word. Each signal has 15 values. The 8-bit word can be produced for example from an expansion board fitted in a PC or from an 8-bit port of a processor which does not have built-in PWM capability or from a laptop’s printer port. The mark/space ratio is only programmable up to 15/16 rather than 16/16; a binary input of 0000 produces a continuous low on both outputs turning both motors off.

Similar circuits often employ a dedicated ‘enable’ input to turn the motors off but it is not necessary in this design. The diagram shows the circuitry required to produce just one waveform. For the full two channel circuit it is necessary to use an additional 74HC193. The clock signal produced by the HCF4060 generator can be used to drive both channels and the free flip flop in the 74HC74 package can be used for the second channel (the corresponding pin numbers are shown in brackets). Altogether the entire two channel circuit can be built using just four ICs.

Khamis, Mei 16, 2013

Square-wave Gen using uA 741

Description.
A wide range square wave generator using IC uA741 is shown here.The circuit uses positive feedback for Schmitt trigger action and negative feedback for timing of the wave form.
Let us presume that the output is high and the capacitor C1 is fully  discharged.C1 now starts charging via R2 and R1.When the voltage across C1 rises above that the Junction of R3 & R4,the output quickly switches to fully negative voltage.C1 now starts discharging and charges in the opposite direction.Again,when the negative voltage across C1 falls below that at pin 3,the circuit switches back quickly to the fully positive output value.The cycle repeats endlessly.
The frequency of the square wave can be varied by varying POT R1.The frequency range of the circuit depends on the value of R3,R4 & C1.
Circuit diagram with Parts list.

Notes.
  • The circuit has to be powered from a +9/-9 V  DC dual power supply .
  • The IC 1 must be mounted on  an IC base.
  • The frequency of output can be varied by varying POT R1.
  • The frequency range  can be adjusted by changing the value of R3,R4 or C1.
  • The table given below gives the relationship between the values of C1 and the frequency range covered.
           frequency-range-ua-741-sq-osc.JPG

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