Showing posts with label skema rangkaian elektronika. Show all posts
Showing posts with label skema rangkaian elektronika. Show all posts

Skema Rangkaian Alarm Cahaya

Posted by Anonymous

Light alarm network is very simple but has a good ability. Network alarm light is effectively used in preventing the opening of cupboards / drawers should be closed. Alarm light is activated when there is light. In principle, these enable network alarm light sensor light alarm when the masu mendekteksi light in the room.

Alarm network is the way it works is very simple and the production is not too complicated, simple. From his name is known that this alarm will work when the light is detected. With these functions in the network can be used as a burglar alarm or alarm open closet / drawers should be closed.

Light Alarm System

Alarm is dikatifkan when the sensor light that comes on the status of certain evidence. Setting clear standards - can be dimmed by adjusting potentiometer R12. This system has two advantages that come with time delay alarm activation, regulation buzzer sounds and a detector batteries.

Network alarm light used as energy sources for 9V batteries can be taken to carry, but not impossible to be the source of energy from a 12V power supply. Network in Figure 1 is part of a complete range of light alarm. In Figure 1 is a network of active alarm delay when the button SW1 on 'ON'-kan / in the press.

With the existence of this network will allow users to put the alarm in a closet / drawer before the alarm is active. Network in a network formed from C1, R1, R2, Q1 and D1. At the time of the SW1 button will overload the capacitor C1 through R1 until the voltage to the user base of close to 0 volts. This will cause transistor Q1 will be active and forcing the voltage at pin 1 IC 1A will be high.

IC 1 is an inverter gate with schimtt trigger sebanya 6 pieces. IC in a CMOS IC that suplainya maximum voltage is 18 volts so the current supply voltage (9 V from the battery or 12V from an external power supply) can still work well.

IC1 pin 1 on the condition that this will lead to whatever high voltage generated by the voltage distribution of R3, R12 and R11 (LDR) does not change is close to 5 volts.

A few seconds after the load capacitor has a full base voltage of Q1 is enough to make the Q1 to turn OFF until the voltage on pin 1 is really controlled by the voltage division between R3, R12 (potentiometer) and R11 (LDR).

So when Q1 ON, the voltage at IC1 pin 1 point would still hold about 5 volts and the voltage division between R3, R11, and R12 will be ignored. Conversely when Q1 OFF the voltage on IC1 pin 1 point will be determined by the voltage division between the three detainees. Therefore, when Q1 ON so any light condition (bright / dim) will not affect the system so that the buzzer will always OFF. If the required time delay is longer then the value of capacitor C1 can be replaced by a slightly greater. The greater the value of capacitor C1 will cause the delay activity of the system will be longer.

Network Schmitt Trigger and Trigger Schimtt BuzzerRangkaian timer and timer Buzzer

Network at the front in figure 2 is a logic circuit to determine the state of the light from a dark light. With the use of an inverter with Schmitt trigger to prevent unwanted trigger.

LDR is a component that has characteristics in which the high resistance when not exposed to light, but the resistance will drop dramatically when the LDR exposed to light. LDR, the decrease of the resistance is also affected by the intensity of light coming into the LDR, the higher the intensity of light so the lower the resistance value.

When Q1 OFF, and in dark conditions, the voltage at IC1 pin 1 will be generated from the distribution of tension between R3, R11 and R12 to produce high voltage, high enough to be considered by the gate logic inverter.

While on the contrary when the light condition, the voltage at pin 1 will be quite low due to the resistance of LDR is down dramatically. This voltage value varies based on the light-redupnya light into LDR. This condition can cause the trigger repeatedly so as to avoid triggers, such as was used by Schmitt trigger gate, the gate of the inverter system is used. Selection policy is as cheap and in a package are six gates.

The output of the inverter IC1a have to be logical and direct diumpakan buzzer. However, in figure 2, in front of IC1a added network that serves to regulate the way / the old sound of the buzzer. When the output of the gate IC1a high through R4 and C4 (LPF filter) will be men-drive IC1b to be low and causing the output capacitor C6 and unloading. This will cause the voltage at pin 5 IC1C be low for some time interval (for a capacitor C8 Dec-charge) and provide high output to the base of transistor Q2. Active transistor Q2 will cause the buzzer goes.

A moment later (after the Dec-charge capacitor C8) capacitor C8 will make refilling and then the voltage at pin 5 IC1c will rise again from the low output at the base of transistor Q2, buzzer off. Be an active set of the old buzzer Dec-time charge - charge capacitor C8 and R6.

Figure 3

Low Battery Detector Network

But if you want buzzer forever remain active until the jumper JP3 OFF SW1 to be connected. JP3 is connected to force the input voltage pin 3 IC1b be low until the buzzer will sound continuously while LDR is not exposed to light again. Buzzer will die setalh SW1 OFF button. Conversely when the JP3 jumper is not connected so buzzer will sound when the LDR is exposed to light. After the LDR is exposed to light, the buzzer will not sound.

Detector Batteries

This system is designed to use power supply from the batteries and therefore should be made to dketahui detector batteries for use when the batteries are already eligible for these to be replaced. Battery voltage is low terlau can cause false alarms in the system interprets the light-dark light. In addition to the buzzer sounds with a more ketch and weak.

As in figure 3, the battery detector is built of a series of D7 and R10. When the battery voltage (VCC) above 4.3 volts, the leakage current is still there to R10 and is sufficient to cause tension in the pin 9 IC1d high. This will cause the oscillator which is formed of a series of IC1e, R9, C8, C5, and R8 is not working so that a voltage at pin 13 IC1f high. This will cause Q2 OFF, and only depends on the IC1c.

Figure 4

Complete Network Alarm Cahay

On the other hand when the battery voltage is below 4.3 volts voltage, no leakage current until the voltage on the R10 to pin 9 is close to 0 volts and is regarded as logic low. This condition causes the active oscillator so pin 13 IC1f will get the pulse-pulse from the oscillator so that Q2 will be active as well. Pulse-pulse generated by IC1f Q2 will turn even IC1c also active.

This state will hear the sounds blend with a higher frequency when the buzzer sounds to get enough light system.

LDR sensitivity settings

LDR sensitivity setting set by potentiometer R11. At default settings, position the potentiometer into the middle. Then put the light in place to detect and set the potentiometer to make a sound when get a light and sound when the system does not get light.

Pengatikfan buzzer duration determined by the C6 and R6, for a longer period is recommended to replace the capacitor with a higher value.

For larger buzzer, which require greater flow of transistor Q2 can be replaced with a Darlington transistor collector current is greater. Look at current consumption and the ability of current buzzer that could be missed by the collector on the transistor Q2.
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Rangkaian Pengisi Baterai 6V

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Rangkaian Automatic Lead Acid Battery ChargerRangkaian Pengisi Baterai 6V
Automatic Lead Acid Battery Charger or more delicious called wet battery charger that automatically. This circuit can charge wet batteries and fully charge it after a series of "Automatic Lead Acid Battery Charger" will cut off charging current automatically. Automatic circuit Lead Acid Battery Charger is Relay as the current breaker. Automatic circuit Lead Acid Battery Charger can be used to fill the 12-volt batteries and 6 volt, depending on the setting of reference points and the election. Reading of the peak voltage (full charge) using a comparator which is on the IC NE555. Starter switch circuit has a charging that serves to initiate the process of charging the batteries.
Automatic circuit Lead Acid Battery Charger. Automatic circuit Lead Acid Battery Charger using Power Charge on a NPN transistor and limiting charging current A671 is R 27 Ohm. Voltage reference marker position of full charge is set with 2 pieces of variable resistor 22K and his election to the selector switch. The point of the selected switch is set to 14 Volts for Accu 12 Volt and 7.5 Volt to 6 volt batteries.
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Komponen Strain Gauge

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Komponen Strain Gauge

Strain gauges are electronic components that serves to measure the pressure or weight. "Strain Gauge"was first discovered by Edward E. Simmons in 1983 in the form of metal foil that is insulif (isolation) attached to the body weight pressure to be measured. In principle, if the strain gauge given the pressure of the electrical resistance strain gauge will change because the process of deformation in the strain gauge the magnitude of change in electrical resistance will be followed received esarnya changes in pressure strain gauge.
Figure illustration strain gauge

strain gauge, pressure sensors, load sensors

Value change in resistance in strain gauge pressure changes are not significant, so in order to provide electrical changes in the value of the change in resistance of strain gauge is incorporated into the Wheatstone bridge circuit as shown below.
The amount received by the strain gauge pressure expressed in terms of gauge factor, GF which is defined as follows.
Komponen Strain Gauge
formula strain gauge, strain gauge, Where RG is the resistance before the strain gauge or pressure given before any deformation, AR is the change in electrical resistance that occurs and e is the pressure.
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Skema Rangkaian Solar Tracker With AT89S52

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Sensor Cahaya pada Solar tracker With AT89S52

Sensor Cahaya pada Solar tracker With AT89S52

Diagram Blok Solar tracker With AT89S52
Diagram Blok Solar tracker With AT89S52

AT89S52 With sun tracker is a tool used to control the direction of the panel Solar Cell for always getting sunlight. AT89S52 With solar tracker uses a light sensor as a light detector. AT89S52 With solar tracker uses dc motors for Solar Cell panels menegendalikan direction. Broadly speaking AT89S52 With Solar tracker may be analogous as a tool to adjust the position of the exposure to the solar cell matahri direction by Ensor sensing light and a DC motor which is controlled using a microcontroller AT89S52.
Block Diagram With Solar tracker AT89S52. Pictured above is a series that could be used for the light sensor on the solar tracker With AT89S52. The light sensor on AT89S52 With Solar tracker can use the LDR. Configuring LDR on Solar Tracker With AT89S52 using OP-Amp as a signal conditioner output of the LDR
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Rangkaian remote control -Tester Infra Red Remote Control

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Rangkaian remote control -Tester Infra Red Remote ControlRangkaian remote control -Tester Infra Red Remote Control
Infra Red Remote Control Tester is a simple circuit that serves to test the remote control with infrared (IR). This circuit will give a response as to receive infrared light emitted from the remote control. Tester Series Infra Red Remote Control consists of an infrared receiver in the form of photo diode, IC 7414 and schmit triger a LED indicator. Tester Series Infra Red Remote Control is working with the source voltage to 5 VDC 3VDC. Picture a full suite of Infra Red Remote Control Tester can be seen as follows.
Image Series Infra Red Remote Control Tester. When the infrared receiver on a series of Infra Red Remote Control Tester is received from a remote infrared pancara who tested it on pin 13 IC 7414 will occurs a drastic change in voltage that will give triger to pin 11 IC7414 ynag used to mendrive LED D2 through the IC1d IC7414 . LED D2 will provide appropriate response to the signal received by D1 (infrared receiver) which is a signal from a remote that tested.
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Gambar Konfigurasi Pin Dekoder BCD ke 7 Segmen 74LS247

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Gambar Konfigurasi Pin Dekoder BCD ke 7 Segmen 74LS247


Gambar Konfigurasi Pin Dekoder BCD ke 7 Segmen 74LS247

Description BCD to 7 Segment Decoder 74LS247
BCD to 7 Segment Decoder is used to change the password input in the form of binary coded decimal (BCD) into the password corresponding to 7 segment format. BCD to 7 segment decoder is used to change data bcd 4 bits of microcontroller or logic signal that can be used to power the appropriate viewer 7 segment BCD value of data input. 74,247 set-top box has 4 pieces of input data, each A, B, C, and D seven outputs are: a, b, c, d, e, f and a few feet to control ie, RB In (RBI), RB Out (). To operate the 74LS247 decoder to output a - g produces a decimal display of BCD data on inputs A0 - A3 then the legs and BI / given a logic high then the BCD data provided on the legs of A0 - A3. Facilities (Lamp Test is used to test the condition of the viewer 7 segment. Facility BI / it functions to negate the input data and gives the look of blank in the viewer 7 segment. 74 247 decoder output on line a - f are connected to the input line 7 segment viewer.
Pin Configuration Figure BCD to 7 Segment Decoder 74LS247. 74LS247 decoder foot function is as follows:

1. Leg A0 - A3 function as data input line 4-bit BCD.
2. RBI foot to function as an input control Riple Blanking Input.
3. Leg Lamp serves as an input control test.
4. Leg BI / function as an input control Riple Blanking Blanking Input or Output.
5. Legs of a - g serves as output to the viewer 7 segment common anode
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Rangkaian IC TDA7294 120 Watt Audio Power Amplifier Circuit

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Rangkaian IC TDA7294 120 Watt Audio Power Amplifier CircuitRangkaian IC TDA7294 120 Watt Audio Power Amplifier Circuit
Amplifer with IC number TDA7293 for process sound system. This amplifer was have the input for a radio, TV, stereo or other line level device. It also has a phono input for a record player, guitar, microphone or other un-amplified source. With the addition of a low pass filter at the input, it makes a great amp for a small subwoofer.

Parts

R : 660 Ohm 1/4 W Resistor = 2 pcs.
R : 22K 1/4 W Resistor = 5 pcs.
R : 10K 1/4 W Resistor = 1 pcs.
R : 30K 1/4 W Resistor = 1 pcs.
C : 2200uF 35V Electrolytic Capacitor = 2 pcs.
C : 0.22uF Capacitor = 2 pcs.
C : 22uF Capacitor = 4 pcs.
C : 0.45uF Capacitor = 2 pcs.
U1,2 : TDA7294 100W DMOS AUDIO AMPLIFIER WITH MUTE/ST-BY

T1 : 50V Center Tapped 5 Amp Transformer
S1 : SPST 3 Amp Switch
S2 : DPDT Switch
F1 : 2 Amp Fuse
SPKR1 : 8 Ohm 120W Speaker
MISC : Case, Knobs, Line Cord, Binding Posts Or Phono Plugs (For Input And Output), Heatsinks For Q1 And Q2
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Skema Pengontrol Suhu Mesin Penetas Telor Dengan AT89C2051

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Temperature Controller With Egg incubators AT89C2051 is a device used to control the room temperature egg incubators. The temperature at the incubator eggs will be monitored continuously by means of temperature control incubator Egg With this AT89C2051 based on temperature settings specified by the user. Temperature Control Equipment incubator Egg With this AT89C2051 monitor the room temperature egg hatching with the adde resolution of 0.1 ° C using a LM35 temperature sensor and display with 7 segment viewer. Heaters are used in egg incubators in the control by means of "Temperature Controller With Egg incubators AT89C2051" uses incandescent lamp is controlled using a triac. In this article presented the block diagram to make the tool "Temperature Controller With Egg incubators AT89C2051" and a brief explanation of the process undertaken Temperature Controller device incubator Egg With this AT89C2051.
Skema Pengontrol Suhu Mesin Penetas Telor Dengan AT89C2051
Block Diagram of Temperature Controller With Egg incubators AT89C2051. Broadly speaking, the working principles of equipment from the block diagram described above is as follows:

LM35 temperature sensor will change the temperature scale into a voltage proportional to the temperature detected by 10mV/oC value. Then the voltage converted from the temperature sensor dubah become part of the frequency by voltage to frequency converter RC4151 with output frequency is 1000 x Vin. In part this frequency converter output voltage to the Schmitt trigger is passed on before they read by the microcontroller, it aims to improve the output of the converter in a digital pulse level. Keypad consists of three buttons is the SET button / OK, UP and DOWN. Keypad functions to deliver value setting the temperature limit means egg hatching at the desired temperature.

At the time the system starts the microcontroller reads the voltage frequency conversion results are comparable with the temperature read by the sensor. Microcontroller then compares these data with the frequency setting data, because data has not been loaded settings via the keypad, the microcontroller mengidentifkasikannya by setting 0 ° C so that the heater is not turned karen data of temperature readings greater than the setting data. Data readings are always displayed in units of temperature with a resolution of 0.1 oC oC. when the data of temperature readings is smaller than the data heater setting is enabled. Section zero crossing detector serves to medeteksi crosses 0 volts PLN nets that are used to initiate triac to activate the heating element in the form of incandescent lamp.
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Diagram Blok Prinsip Kerja Sensor Panas Pyroelectric Detektor Eltec E442-3

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Heat Sensors Working Principle pyroelectric detectors Eltec E442-3 that is detected by changes in temperature pyroelectric detectors Heat Sensor Eltec E442-3 will be converted into voltage levels by the detector and temperature compensation in the initial block diagram. The voltage was obtained and confirmed by the pre-amp before going into the second op-amp that serves as a voltage comparator. The voltage comparator, voltage level will be compared with a reference voltage (2.5 V) and the results will be output from these sensors. Here is a block digram workings of pyroelectric detectors Heat Sensor E442-3 Eltec this.

Diagram Block of Heat Sensors Working Principle pyroelectric detectors Eltec E442-3
Diagram Blok Prinsip Kerja Sensor Panas Pyroelectric Detektor Eltec E442-3
Heat Sensors Working Principle pyroelectric detectors Eltec E442-3, Heat Sensors Working Principle, the principle of pyroelectric detectors work Eltec E442-3, characteristic of pyroelectric detectors Eltec E442-3, heat sensor characteristics, characteristics of the IR-EYE, IR-EYE working principle, working principle pyroelectric sensor fire detectors Eltec E442-3, characteristic of pyroelectric detectors fire sesnsor Eltec E442-3. We have an internal bias voltage on pin 3 pyroelectric detectors Heat Sensor Eltec E442-3. This voltage is used to drive an internal output amplifier. Maximum tension offset referenced from that point. The voltage reference provides zero for low drift DC coupling a comparator or converter a / d. The maximum current for this pin is 20 μA. Please note that the load current exceeding 20 μA can affect work performance of pyroelectric detectors Heat Sensor Eltec E442-3.
Characteristics of pyroelectric detectors Heat Sensor Eltec E442-3 according to the datasheet

* D (cm Hz1/2/W, BW-1Hz) 2.2 x 10-8
* NEP (W/Hz1/2, BW-1Hz) 1.1 x 10 --- 9
* Responsivity (V / W) 3.7 x 10-5
* Common Mode Rejection (Min.) 5 / 1
* Common Mode Rejection (Max.) 15 / 1
* Noise (mV/Hz1/2) 00:36
* Thermal Breakpoint 0:15 Hz
* Electrical Breakpoint 5 Hz
* Incident Power (Max.) 0.2 Watts
* Power Supply Voltage 5-15 VDC
* Power Supply Current (Max.) 2.0 mA
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DAC Type Binary Weigh Resistor

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Introduction DAC Digital To Analog Coneverter

Digital To Analog circuit can be built easily using the given op-amp input by setting switches that represent the digital scale. Berlogic value "1" if the switch is connected to supply 5 volts and logic "0" when connected with ground / removed. Basic Series Digital To Analog (DAC), there are 2 types:
DAC Type Binary Weigh In DAC Type Resistors Resistor Weight Binary, installation of the resistors on the inputs Do, D1, D2, ... is as follows: R value in D1 is ½ of the value that is in Do, the value of R that is in D2 is ½ of the value in D1 (or 1 / 4 of R that is in D0) and seterusnya.Pemasangan R value as it is to mendapatkanVoutyang linear (kenaikanper stepnyatetap). Rin sought to make parallel resistor values there are at each input (D), if the input is masuklebih than one. In DAC R-2R Ladder Type Installation of the value of resistors on the inputs it is the R-2R, so that the value of R = 10k, it was installed 20 k.Pemasangan 2R resistor value is as it is to get out a linear V (increase per his step-fixed).
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SKEMA CHARGER BATTERY UNIVERSAL

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SKEMA CHARGER BATTERY UNIVERSALSKEMA CHARGER BATTERY UNIVERSAL

The charger's achievement voltage is adjustable and regulated, and has an adjustable constant-current charging ambit that makes it accessible to use with best NiCad batteries. The charger can allegation a distinct corpuscle or a cardinal of series-connected beef up to a best of 18V.

Power transistors Q1 and Q2 are affiliated as alternation regulators to ascendancy the array charger's achievement voltage and charge-current rate. An LM-317 adjustable voltage regulator food the drive arresting to the bases of ability transistor Q1 and Q2. Potensiometer R9 sets the output-voltage level. A accepted sampling resistor, R8 (a 0.1 ohm/5W unit), is affiliated amid the abrogating achievement advance and ambit ground. For anniversary amp of charging accepted that flows through R8, a 100mV achievement is developed beyond it. The voltage developed beyond R8 is fed to one ascribe of comparator U3. The added ascribe of the comparator is affiliated to capricious resistor R10.

As the charging voltage beyond the array begins to drop, the accepted through R8 decrease. Then the voltage agriculture pin 5 of U3 decreases, and the comparator achievement follows, axis Q3 aback off, which completes the signal's annular aisle to adapt the battery's charging current.

The charging accepted can be set by adjusting R10 for the adapted current. The circuit's achievement voltage is set by R9

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SKEMA GENERATOR GELOMBANG SINUS

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This is iKHz sine beachcomber architect ambit congenital based on agreement of astern Wien arch (see C1-R3 & C2-R4). R5 and R7 acclimated for achievement amplutide setting. Set R5 to apprehend 1V RMS on an Audio Millivoltmeter affiliated to the achievement with R7 rotated absolutely clockwise, or to appearance a sinewave of 2.828V Peak-to-Peak amplitude on the oscilloscope.

Component list:
R1____________5K6  1/4W Resistor
R2____________1K8 1/4W Resistor
R3,R4________15K 1/4W Resistors
R5__________500R 1/2W Trimmer Cermet
R6__________330R 1/4W Resistor
R7__________470R Linear Potentiometer

C1,C2________10nF 63V Polyester Capacitors
C3__________100µF 25V Electrolytic Capacitor
C4__________470nF 63V Polyester Capacitor

Q1,Q2_______BC238 25V 100mA NPN Transistors
LP1___________12V 40mA Filament Lamp Bulb (See Notes)
J1__________Phono chassis Socket
SW1__________SPST Slider Switch
B1_____________9V PP3
Clip for 9V PP3 Battery

Notes:

  • The bulb must be a low current type (12V 40-50mA or 6V 50mA) in order to obtain good long term stability and low distortion.
  • Using a bulb differing from specifications may require a change of R6 value to 220 or 150 Ohms to ensure proper circuit's oscillation.
  • With C1, C2 = 100nF the frequency generated is 100Hz and with C1, C2 = 1nF frequency is 10KHz but R5 requires adjustment.
  • High gain transistors are preferred for better performance.

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RANGKAIAN JAM DIGITAL

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RANGKAIAN JAM DIGITAL
Digital Clock Scheme
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SKEMA SAKELAR SENTUH

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SKEMA SAKELAR SENTUHTOUCH SWITCH CONTROL SCHEME
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SKEMA VU METER AUDIO TRANSISTOR

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SKEMA VU METER AUDIO TRANSISTORAudio VU Meter Scheme Using Transistors
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RANGKAIAN PREAMP PAKAI IC OP-AMP

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RANGKAIAN PREAMP PAKAI IC OP-AMP
Microphone Preamp Scheme Using IC Op-Amp
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Scheme 88-108 MHz FM transmitter (PLL)

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click piturre for ZOOM
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RANKAIAN PEMANCAR RADIO SW

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RANKAIAN PEMANCAR RADIO SWclick picture for ZOOM.
sw radio scheme I have for you a hobby to play with the radio, especially radio frequency SW
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SKEMA RANGKAIAN MINI ALARM

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SKEMA RANGKAIN MINI ALARM
Only the 10 lower-priced electronic components is sufficient to create a noise of the siren voice / alarm anti-black attacks! Quite simple and suitable for electronic learning practice for beginners. Circuit scheme please look directly at the picture above, while the list of required components and the PCB to create 'noise' of this please see below (click image to enlarge view). I am sure you will not be difficult to assemble this mini alarm. Do not forget the required supply voltage is DC voltage between 3 to 6 volts only. If more than 6 volts issued voice was getting louder but the transistor TR2 will be hot and easily damaged. SKEMA RANGKAIN MINI ALARMThe diode D serves as a deterrent alarm oscillation frequency in-short by the power supply as well as a safety if the polarity of the power supply that we use installed upside down.
The rate lantingan we set the alarm to play the VR. If you want to change the frequency of the alarm can change the value of capacitor C1. The greater the value of C1 will lower the frequency tone alarm.
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Rangkaian elektronika pengatur-penala antena

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Di dalam bagian ini di bahas tentang suatu rangkaian-sirkuit pengatur atau penempatan antena untuk pemancar SW gelombang 3-30 Mhz/short wave 3-30 Mhz


Rangkaian pengatur-penala antenaUntuk rangkaian transmacth ini sebenarnya tujuannya adalah menempatkan impedansi yang pas antara antena dengan pemancar sehingga terjadi perbandingan 1:1 di bacaan SWRnya,karena dalam penempatan ini rangkaian ini dihubungkan dengan SWR/standing wave ratio. Dengan begitu maksud dari 1:1 adalah satu yang keluar juga satu yang dipancarkan oleh antena bukannya cuma setengahnya saja.Impedansinya umumnya adalah 50 Ohm. Dengan rangkaian ini tenaga maksimum yang bisa lewat rangkaian ini adalah 50 Watt
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