Tuesday, June 27, 2017

Electronic Design: FM Transmitter Circuit Using CD4069 and Varicap Diode Without Coil

Radio Circuit. - This is one of implementation of varicap diode and CD4069 IC to build radio generator or oscillator system. It is only need small component completed to build this electronic circuit that basically component.

The electronic design circuit of FM Transmitter Circuit Using CD4069 and Varicap Diode Without Coil is look like in Figure 1 below. Other component used like resistors, capacitors, and Ceramic crystal filter 10.7 MHz.

Beside we will show you electronic design circuit and component parts need, we also will give you global description about this circuit. So, please enjoy to continue reading this article until finish and get more useful.

Electronic Circuit Design

Component Parts

  • R1_____________6.8K
  • R2_____________10K
  • R3_____________1K
  • R4_____________1M
  • R5_____________100K
  • R6_____________1.5M
  • Capacitors
  • C1, C3__________0.1uF 50V Polyester capacitors
  • C2_____________10uF 25V Electrolytic capacitors
  • C4_____________100pF 50V Polyester capacitors
  • C5_____________100uF 16V Electrolytic capacitors
  • C6_____________22pF 50V polyester capacitors
  • C7_____________0.001 uF 50V polyester capacitors
  • Semiconductors
  • IC1____________CD4069
  • D1____________ Varicap diode
  • Others
  • Condenser Micro phone
  • Ceramic crystal filter 10.7 MHz
Description

The electronic circuit design like in Figure 1 above show you radio transmitter oscillator circuit using varicap diode and CD4069. Other component need also that can supply with low voltage DC +9V and ground source to charge this IC and all system component from power supply built. With this electronic design circuit you can produce FM transmitter generator that useful now.

According Eleccircuits blog mentioned that in Figure 1 above is RF oscillator circuit which use a inverter IC1/2 and ceramic crystal filter 10.7 MHz to use drive IC1/4 – IC1/6 by through IC1/3.

When inverter in parallel form this impedance output is low thus they can drive directly an antenna.

When output of IC1/4 – IC1/6 are square wave which have much more internal harmonic. The harmonic number 9 of frequency 10.7 MHz (96.3 MHz) will take place at the center of the FM band.

The IC1/1 is audio amplifier which signal from the the micro phone will be amplified and will send to varicap diode. This signal causes the capacitance of the varicap diode changed and make also oscillator frequency changes. Thus its occurs modulation frequency.

Friday, June 9, 2017

Electronic Design: Monostable Latch Circuit using 555-Timer

555 Circuit. - This is one of implementation of 555 IC to build monostable latch. It is only need small component to build this electronic circuit that basically using 555 and other component.

The electronic design circuit of Monostable Latch using 555-Timer is look like in Figure 1 below. Other component used like LED, resistors, capacitors, and push-button switch.

Beside we will show you electronic design circuit and component parts need, we also will give you global description about this circuit. So, please enjoy to continue reading this article until finish and get more useful.

Electronic Circuit Design

Component Parts

  • IC 555
  • Resistors
  • Capacitors
  • Push-button switch
  • Diode LED
Description

The electronic circuit design like in Figure 1 above show you monostable latch circuit using 555 Timer. Other component need also that can supply with low voltage DC +12V source to charge this IC and all system component. With this electronic design circuit you can produce monostable latch that useful now.

According Circuitstoday blog mentioned that using the charging and discharging phases of RC-Circuit as a continuous voltage signal, timing circuits can be designed. When the voltage at trigger input falls from Vcc to below 1/3 Vcc the LC (Lower Comparator) sets and this, in turn, sets the RS-Latch and hence, the output is set. The voltage across the capacitor is connected to the Non-Inverting terminal of the UC (Upper Comparator) and is compared with pre-set 2/3 Vcc at the inverting terminal of the Op-Amp. When the capacitor voltage tends to exceed 2/3 Vcc, the UC sets and this, in turn, resets the RS-Latch and hence, the output is reset.