Showing posts with label Radio/Intercom. Show all posts
Showing posts with label Radio/Intercom. Show all posts

Wednesday, April 06, 2011

Rangkaian 3V FM Transmitter

This 3V FM transmitter is about the simplest and most basic transmitter to build and have a useful transmitting range. It is surprisingly powerful despite its small component count and 3V operating voltage. It will easily penetrate over three floors of an apartment building and go over 300 meters in the open air.

The circuit is basically a radio frequency (RF) oscillator that operates around 100 MHz. Audio picked up andamplified by the electret microphone is fed into the audio amplifier stage built around the first transistor. Output from the collector is fed into the base of the second transistor where it modulates the resonant frequency of the tank circuit (the 5 turn coil and the trimcap) by varying the junction capacitance of the transistor. Junction capacitance is a function of the potential difference applied to the base of the transistor. The tank circuit is connected in a Colpitts
Rangkaian 3V FM TransmitterSkema Rangkaian 3V FM transmitter

Place the transmitter about 10 feet from a FM radio. Set the radio to somewhere about 89 - 90 MHz. Walk back tothe FM transmitter and turn it on. Spread the winding of the coil apart by approximately 1mm from each other. No coilwinding should be touching another winding. Use a small screw driver to tune the trim cap. Remove the screwdriverfrom the trim screw after every adjustment so the LC circuit is not affected by stray capicitance. Or use a plasticscrewdriver. If you have difficulty finding the transmitting frequency then have a second person tune up and downthe FM dial after every adjustment. One full turn of the trim cap will cover its full range of capacitance from 6pF to 45pF. The normal FM band tunes in over about one tenth of the full range of the tuning cap.

So it is best to adjust it in steps of 5 to 10 degrees at each turn. So tuning takes a little patience but is not difficult. The reason that there must be at least 10 ft. separation between the radio and the FM transmitter is that the FM transmitter emits harmonics; it does not only emit on one frequency but on several different frequencies close to each other. You should have little difficulty in finding the Tx frequency when you follow this procedure.

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Friday, February 11, 2011

LM390 Simple 2-Way intercom Circuit

This is a very simple two way intercom circuit based on a LM390 audio amplifier circuit . the intercom circuit is a stand-alone electronic communications system intended for limited or private dialogue. For this circuit you can use a 8 ohms speaker, one for each station and require a 6 volts dc power supply. Gain control can be done by capacitively coupling a resistor (or FET) from pin 6 to ground.

Simple 2-Way intercom CircuitLM390 Simple 2-Way intercom Circuit

LM390 Pin out

The LM390 Power Audio Amplifier is optimized for 6V, 7.5V, 9V operation into low impedance loads. The gain is internally set at 20 to keep the external part count low, but the addition of an external resistor and capacitor between pins 2 and 6 wil increase the gain to any value up to 200. The inputs are ground referenced while the output is automatically biased to one half the supply voltage.

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Thursday, January 07, 2010

Rangkaian Booster TV Sederhana

Rangkaian Booster TV

This is circuit that can be used to strengthen the RF signals from a television antenna work at UHF frequencies in the range 450-800MHz. It has a gain of around 10dB and is suitable for boosting weak TV signals

rangkaian booster TVSkema rangkaian booster TV sederhana


The tuned circuit comprising the 15nH inductor and 2.2pF capacitor resonate in the center of the UHF band. The 2.2pF capacitor may be Exchanged for a 4.7pF or a Trimmer capacitor of 2-6pF to improve results. The approximate frequency response is shown below. N.B. This is a simulated response using the TINA program produced by using a swept input 20uV swept over the frequency range 400-800MHz. Output was measured into a 1k source and the frequency generator has a 75ohm impedance.

The coil is half a turn of 18-20 SWG copper wire bent around a half inch drill bit. This ensures a low Q and therefore broad tuning. High frequency work requires special construction techniques to avoid instability (unwanted oscillations) caused by feedback from output to input. Veroboard is not suitable for this project as the capacitance between tracks is around 0.2pF. A better approach is to use tag-strip or a PCB. The circuitry should be enclosed in a metal case and a screen made between input and output. As the transistor is used in common base mode, its low input impedance is a good match for 50-75 ohm coax cable, whilst at the same time providing full voltage gain to the upper frequency limit of the device. The 15nH inductor load, having almost a short circuit impedance at DC, has an impedance of 56ohms at 600MHz. This inductance and 2.2pF capacitor form a tank circuit at the transistors collector, providing maximum gain at resonance.

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Tuesday, January 05, 2010

Rangkaian Pemancar TV|Video Sederhana

Pemancar TV|Video PAL

The following is a series of simple TV transmitter using negative using sound modulation and PAL video modulation. This is suitable for countries using TV systems B and G.

rangkaian pemancar TV|VideoSkema rangkaian pemancar TV|Video sederhana


Note:
This circuit will be illegal in some countries

The frequency of the transmitter lies within VHF and VLF range on the TV channel, however this circuit has not been tested at UHF frequencies. The modulated sound signal contains 5.5-6MHz by tuning C5. Sound modulation is FM and is compatible with UK System I sound. The transmitter however is working at VHF frequencies between 54 and 216MHz and therefore compatible only with countries using Pal System B and Pal System G.

Inductor L1 can be made by wire email (24SWG) 4 convolution with 6mm diameter and T1 can be used with a radio frequency transformer internal capacitor. (Can be found on the old transistor radios).


List Componet of TV transmitter circuit
  • R1 = 10KOhm
  • R2 = 47KOhm
  • R3 = 15KOhm
  • R4 = 8.2KOhm
  • R5 = 47KOhm
  • R6 = 47KOhm
  • Variable resistor R7 = 1Kohm
  • R8 = 75Ohm
  • C1 = 10uF / capacitor 25Volt electrolik
  • C2 = 0.001uf / 10nF ceramic capacitor
  • C3 = 100nF
  • C4 = 10nf
  • C5 = 47pF (variable capacitors)
  • C6 = 10nF
  • C7 = 10pF
  • C8 = 27pF
  • C9 = 100nF
  • C10 = 470uF
  • C11 = 10nF
  • C12 = 220uF / 25Volt
  • Q1 = BC547 NPN transistor
  • Q2 = BC547 NPN transistor
  • T1 = T1 can use the radio frequency transformer with a built in capacitor. (Can be found on the old transistor radio board).
  • L1 = 4 turns of copper enamel 24SWG on 6mm diameter: with a plastic core

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Monday, December 21, 2009

Rangkaian Boster Radio Penerima FM

Boster Radio Penerima FM


Here is a simple circuit of an FM booster that can be used to listen to programmes from distant FM stations clearly. This amplifier will pull in all distant FM stations clearly. The circuit is configured as a common-emitter tuned RF pre-amplifier wired around VHF/UHF transistor Q1.

rangkaian boster radio penerima FM
Skema rangkaian boster radio penerima FM


2SC2570. (Only C2570 is annotated on the transistor body.) Assemble the circuit on a good-quality PCB (preferably, glass-epoxy). Adjust input/ output trimmers (VC1/VC2) for maximum gain.

All capacitors are ceramic and 50V is the standard but the 25V types work fine too. Trimmer capacitors Tr1 and Tr2 (22pF) are adjusted for maximum gain. Input coil L1 consists of 4 turns of 20SWG enamelled copper wire over a 5mm diameter former. It is tapped at the first turn from the ground lead side. Coil L2 is similar to L1, but has only three turns. Pin configuration is shown in the diagram.


Component List:
  • R1 = 27K
  • R2 = 270 ohm
  • R3 = 1K
  • Tr1,Tr2 = 22pF, trimmer cap (15-40pF)
  • C1,C2 = 5.6pF
  • C3 = 0.001uF (1nF), ceramic
  • C4,C5 = 10pF, ceramic
  • C6 = 0.1uF (100nF), ceramic
  • Q1 = 2SC2498, 2SC2570, 2N5179, SK9139, or NTE10. NPN VHF/UHF transistor
  • L1 = 4 turns of 20SWG magnet wire, 5mm diameter. (so-called 3T+1)
  • L2 = 3 turns of 20SWG magnet wire, 5mm diameter.

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Monday, October 12, 2009

Rangkaian Mini FM Radio Transmitter

This is an mini fm Radio transmitter circuit. The supply voltage is between 1.1 – 3 Volts with power consumption is 1.8 mA at 1.5 Volts. This circuit should be able to cover 30 meters of range max. at 1.5 Volts.

mini FM transmitterSkema rangkaian mini FM transmitter


Note:
* Use a battery for powering the circuit.It will reduce noise.
* An FM antenna from a old radio is a better option than the wire antenna.



PN2222A transistor description

This device is NPN General Purpose Amplifier for use as a medium power amplifier and switch requiring collector currents up to 500mA.

Absolute Maximum Ratings.
  • Collector-Emitter Voltage (VCEO ) : 40 V.
  • Collector-Base Voltage (VCBO) : 75 V.
  • Emitter-Base Voltage (VEBO) : 6.0 V.
  • Collector Current (IC) 1.0 : A.
  • Operating and Storage Junction Temperature Range (TSTG) :- 55 ~ 150 °C.
  • Collector-Emitter Breakdown Voltage : 40 V.
  • Collector-Base Breakdown Voltage : 75 V.
  • Emitter-Base Breakdown Voltage : 6.0 V.

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Thursday, September 24, 2009

Rangkaian Penerima Radio Fm Sederhana

Here is a FM radio circuit using IC7400. IC TDA7000 is a monolithic integrated circuit for mono FM portable radios, where a minimum on peripheral components is crucial. The IC TDA7000 has a Frequency-Locked-Loop system with an intermediate frequency of 70 kHz. The intermediate frequency selectivity is achieved by active RC filters. The only function which needs alignment is the resonant circuit for the oscillator, thus selecting the reception frequency. Spurious reception is avoided by means of a mute circuit, which also eliminates too noisy input signals. Special steps are taken to meet the radiation requirements

Penerima Radio FmSkema Rangkaian Penerima Radio Fm


• L1 and L2 wind 5 turns of 0.6 mm enameled Copper wire on a 4 mm dia plastic former.


IC TDA7000 Description

The TDA7000 is a monolithic integrated circuit for mono FM portable radios, where a minimum on peripheral components is important (small dimensions and low costs).
The IC has an FLL (Frequency-Locked-Loop) system with an intermediate frequency of 70 kHz. The i.f. selectivity is obtained by active RC filters. The only function which needs alignment is the resonant circuit for the oscillator, thus selecting the reception frequency. Spurious reception is avoided by means of a mute circuit, which also eliminates too noisy input signals. Special precautions are taken to meet the radiation requirements.

IC TDA7000Lay out IC TDA7000


Data IC TDA7000

Supply voltage range: 2,7 to 10 V
Supply current : 8 mA
R.F. input frequency range: 1,5 to 110 MHz
Sensitivity for -3 dB limiting
• (e.m.f. voltage)
• (source impedance: 75 Ohm mute disabled) EMF: 1,5 uV
Signal handling (e.m.f. voltage)
• (source impedance: 75 Ohm) EMF typ. 200 mV
A.F. output voltage at RL = 22 kOhm75 Mv

Supply voltage: max. 12 V
Oscillator voltage: 0,5 to VP0,5 V
Storage temperature 55 to 150 C
Operating ambient temperature 0 to 60 C.
.

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Monday, September 21, 2009

Pemancar Fm 88-108Mhz - IC MAX2606

This is a FM transmitter circuit using Maxim semiconductors IC MAX2606. In the circuit the nominal frequency is set to 100 Mhz by inductor L1, (390nH) . The left and right channel audio signals from your source are added by R3 and R4, and attenuated by the POT R2. R2 can be used as a volume control .POT R1 can be used to select a channel of transmission between 88Mhz and 108Mhz.Use 80 cm long wire as the antena.

Pemancar Fm 88-108MhzSkema Rangkaian Pemancar Fm 88-108Mhz



Note:
* Use a battery for powering the circuit.It will reduce noise.
* An FM antenna from a old radio is a better option than the wire antenna.


IC MAX2606 Description

The MAX2605-MAX2609 are compact, high-performance intermediate-frequency (IF) voltage-controlled oscillators (VCOs) designed specifically for demanding portable wireless communication systems. They combine monolithic construction with low-noise, low-power operation in a tiny 6-pin SOT23 package.

These low-noise VCOs feature an on-chip varactor and feedback capacitors that eliminate the need for external tuning elements, making the MAX2605-MAX2609 ideal for portable systems. Only an external inductor is required to set the oscillation frequency. In addition, an integrated differential output buffer is provided for driving a mixer or prescaler. The buffer output is capable of supplying up to -8dBm (differential) with a simple power match. It also provides isolation from load impedance variations.

The MAX2605-MAX2609 operate from a single +2.7V to +5.5V supply and offer low current consumption. These IF oscillators can cover the 45MHz to 650MHz frequency range.

Pin IC MAX2606
IC MAX2606 Absolute Maximum Rating
  • VCC to GND..............................................................-0.3V to +6V
  • IND to GND ................................................-0.6V to (VCC + 0.3V)
  • TUNE to GND .............................................-0.3V to (VCC + 0.3V)
  • OUT+, OUT- to GND ..................................-0.3V to (VCC + 0.6V)
  • Continuous Power Dissipation (TA = +85°C)
  • 6-Pin SOT23 (derate 8.7mW/°C above +70°C)...........696mW
  • Operating Temperature Range ...........................-40°C to +85°C
  • Junction Temperature......................................................+150°C
  • Storage Temperature Range .............................-65°C to +150°C
  • Lead Temperature (soldering, 10s) .................................+300°C

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Monday, August 17, 2009

Rangkaian Pemancar TV Sederhana

This Rangkaian Pemancar TV uses standard 1 FM modulation for sound and PAL for video modulation. Audio signal will be modulated is pre-amplified using the transistor Q1 and associated components. The transistor Q2 has two jobs: production of carrier frequency and modulation. The pre-amplified audio signal is fed to the base of transistor Q2 for modulation. Capacitor C5 and inductor L1 forms the tank circuit which is responsible for producing the carrier frequency. The video signal is fed to the emitter of transistor Q2 via POT R7 for modulation. The modulated composite signal (audio+video) is transmitted by the antenna A1.

 Pemancar TV  Skema Rangkaian Pemancar TV Sederhana

Inductor L1 can be made by making 4 turns of 24SWG enameled copper wire on a 6mm dia: plastic former. T1 can be a radio frequency transformer with built in capacitor. (Can be found on old transistor radio boards). Antenna A1 can be a 1M long copper wire. (Experiment with the length to get optimum performance). This transmitter is working in VHF band somewhat between 50 – 210MHz. This transmitter is compatible only with PAL B and PAL G systems.

List Componet:
R1 = 10KOhm R2 = 47KOhm R3 = 15KOhm R4 = 8.2KOhm R5 = 47KOhmR6 = 47KOhm R7 = 1Kohm resistor variable R8 = 75Ohm C1 = 10uF/25Volt capacitor electrolik C2 = 0.001uf/10nF capacitor ceramic C3 = 100nF C4 = 10nf C5 = 47pF (variable capacitor) C6 = 10nF C7 = 10pF C8 = 27pF c9 = 100nF C10 = 470uF c11 = 10nF C12 = 220uF/25Volt Q1 = BC547 NPN transistor Q2 = BC547 NPN transistor
T1 = T1 can be a radio frequency transformer with built in capacitor. (Can be found on old transistor radio boards).
L1 = 4 turns of 24SWG enameled copper wire on a 6mm dia: plastic former.

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Sunday, August 02, 2009

Rangkaian Intercom|Interkom 3 transistor

Rangkaian Intercom comprises a 3-stage resistor-capacitor coupled amplifier. When ring button S2 is pressed, the amplifier circuit formed around transistors T1 and T2 gets converted into an asymmetrical astable multivib-rator generating ring signals. These ring signals are amplified by transistor T3 to drive the speaker of earpiece.

Current consumption of this intercom is 10 to 15 mA only. Thus a 9-volt PP3 battery would have a long life, when used in this Rankaian Intercom. For making a two-way intercom, two identical units, as shown in figure, are required to be used. Output of one amplifier unit goes to speaker of the other unit, and vice versa. For single-battery operation, join corresponding supply and ground terminals of both the units together.

Rangkaian Intercom sederhana
Skema Rangkaian Intercom 3 Sederhana


The complete of rangkaian intercom, along with microphone and earpiece etc, can be housed inside the plastic body of a cellphone toy, which is easily available in the market. Suggested cellphone cabinet is shown.

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Saturday, August 01, 2009

Rangkaian pemancar FM sedehana

Rangkaian pemancar FM sedehana

mini fm transmitter has a range of about 300-400 meters, when using a 9 volt voltage of the power scattered around 300 meters, and when using a voltage of 12 volt then reach around 400-450 meters, depending on the antenna in use.

For L1 and l2 twist it 5 times roll, you can use the pen cartridge to wind it so neat and after the finish remove the contents pen cartridge page. C5 is used for placement frequency. can tune in between 88-108 Mhz, to reach more use referrer antenna (yagi antenna).

Rankaian Pemancar FMSkema Rangkaian Pemancar FM


List of components:
  • C1 = 0.001uf
  • C2 = 5.6pf
  • C3, C4 = 10uf / 16V (ELCO)
  • C5 = 3-18pf (Adjustable Cap)
  • R1 = 270 Ohm 1/4W
  • R2, R5, R6 = 4.7k 1/4W
  • R3 = 10K 1/4W
  • R4 = 100K 1/4W
  • Q1, Q2 = 2N2222A (NPN transistors) or 2N3904
  • L1, L2 = 5 Turn Air Core Coil
  • MIC = Electret Microphone
  • 9V Battery, PC Board, Wire For Antenna
Note:
This series can be arranged under the Frequency 88 Mhz 188 Mhz or above depending on our desires. Test transmitter must be repeated for coverage and that no signal fraction of the commercial broadcast radio or television station about the location

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Sunday, May 24, 2009

12 watt FM Transmitter

The advantages of FM modulation is free from the influence of air disturbance, the bandwidth (wide band) is larger, and the high fidelitas. If compared with the AM system.

fm transmitter is a modification of the fm transmitter on the market (type of saturn s 038). with several series of modifications and additions boster series can produce power at around 12 watts



Circuit FM transmitter


try in the series after this work is quite good, the signal generated is stable and strong enough
up time should not in a hurry to do directly, but overall do each part in sequence so that the error may be earlier

the first part of the work is in the oscillator, after the raft can try in turn to the way radio waves on the free and set the radio volume so clearly audible hissing sound. turn up the core koker hissing sound on the radio is missing, if you get a signal in a robust and stable means that the set of oscillator has been working with both.

the next section can start at the raft, after finished the second set trimer (C8 and C11) in the buffer in turn can power up in most large and most small SWR. If the series works well, will produce approximately 0.25 watt power

to get more resources than most can add more series boster 12 watt range, so the distance will be increased to reach 7-fold


12 watt Boster Circuit FM transmitter


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