Showing posts with label digital. Show all posts
Showing posts with label digital. Show all posts

Tuesday, 28 March 2017

CL21N11MJZXXAX Samsung DIGITAL TELEVISION RECEIVER Circuit diagram Chassis KS9A N


Used ICs: TDA9352PS/N21/3-OTP, 24C04, LA6510, 346VF2(Infrared sensor), KA5Q0765R | KA5Q0740RT(120v) | KA5Q0765RT (220V), KA7632, FCA173B(FBT), NJM2235D, AN7522N, MSP3425G-B7 and TDA6107Q [NTSC system – North America, South Central America and Mexico]
FOCUS Adjustment
1. Input a black and white signal.
2. Adjust the tuning control for the clearest picture.
3. Adjust the FOCUS control for well defined scanning lines in the center area of the screen.
Factory Adjustment
To enter the “Service Mode”, Press the remote-control keys in this sequence :
- If you do not have Factory remote-control
Picture OFF > Mute > 1 > 8 > 2 > Picture ON
- If you have Factory remote-control
Picture ON > Display > Factory
Circuit diagram
Click on the circuit diagrams to magnify


Readmore → CL21N11MJZXXAX Samsung DIGITAL TELEVISION RECEIVER Circuit diagram Chassis KS9A N

Wednesday, 8 March 2017

How to build Digital Step Km Counter Circuit Schematic


Description

This circuit measures the distance covered during a walk. Hardware is located in a small box slipped in pants' pocket and the display is conceived in the following manner: the leftmost display D2 (the most significant digit) shows 0 to 9 Km. and its dot is always on to separate Km. from hm. The rightmost display D1 (the least significant digit) shows hundreds meters and its dot illuminates after every 50 meters of walking.
A beeper (excludable), signals each count unit, occurring every two steps. A normal step was calculated to span around 78 centimeters, thus the LED signaling 50 meters illuminates after 64 steps (or 32 operations of the mercury switch), the display indicates 100 meters after 128 steps and so on.
For low battery consumption the display illuminates only on request, pushing on P2. Accidental reset of the counters is avoided because to reset the circuit both pushbuttons must be operated together. Obviously, this is not a precision meter, but its approximation degree was found good for this kind of device. In any case, the most critical thing to do is the correct placement of the mercury switch inside of the box and the setting of its sloping degree.

Circuit diagram:

 

Parts:

  • R1 = 22K 1/4W Resistor
  • R2 = 2.2M 1/4W Resistor
  • R3 = 22K 1/4W Resistor
  • R4 = 1M 1/4W Resistor
  • R5 = 4.7K 1/4W Resistor
  • R6 = 47R 1/4W Resistor
  • R7 = 4.7K 1/4W Resistor
  • R8 = 4.7K 1/4W Resistor
  • R9 = 1K 1/4W Resistor
  • C1 = 47nF 63V Polyester Capacitor
  • C2 = 100nF 63V Polyester Capacitor
  • C3 = 10nF 63V Polyester Capacitor
  • C4 = 10µF 25V Electrolytic Capacitor
  • D1 = Common-cathode 7-segment LED mini-display (Hundreds meters)
  • D2 = Common-cathode 7-segment LED mini-display (Kilometers)
  • Q1 = BC327 45V 800mA PNP Transistors
  • Q2 = BC327 45V 800mA PNP Transistors
  • P1 = SPST Pushbutton (Reset)
  • P2 = SPST Pushbutton (Display)
  • IC1 = 4093 Quad 2 input Schmitt NAND Gate IC
  • IC2 = 4024 7 stage ripple counter IC
  • IC3 = 4026 Decade counter with decoded 7-segment display outputs IC
  • IC4 = 4026 Decade counter with decoded 7-segment display outputs IC
  • SW1 = SPST Mercury Switch, called also Tilt Switch
  • SW2 = SPST Slider Switch (Sound on-off)
  • SW3 = SPST Slider Switch (Power on-off)
  • BZ = Piezo sounder
  • B1 = 3V Battery (2 AA 1.5V Cells in series)

Circuit operation:

IC 1A & IC 1B form a monostable multi vibrator providing some degree of freedom from excessive bouncing of the mercury switch. Therefore a clean square pulse enters IC2 that divides by 64. Q2 drives the LED dot-segment of D1 every 32 pulses counted by IC2. Either IC3 & IC4 divide by 10 and drive the displays. P1 resets the counters and P2 enables the displays. IC1C generates an audio frequency square wave that is enabled for a short time at each monostable count. Q1 drives the piezo sounder and SW2 allows disabling the beep.

Notes:

  • Experiment with placement and sloping degree of mercury switch inside the box: this is very critical.
  • Try to obtain a pulse every two walking steps. Listening to the beeper is extremely useful during setup.
  • Trim R6 value to change beeper sound power.
  • Push P1 and P2 to reset.
  • This circuit is primarily intended for walking purposes. For jogging, further great care must be used with mercury switch placement to avoid undesired counts.
  • When the display is disabled current consumption is negligible, therefore SW3 can be omitted. 

  Source http://www.extremecircuits.net/2009/12/digital-step-km-counter-circuit.htm

Readmore → How to build Digital Step Km Counter Circuit Schematic

Saturday, 4 March 2017

AT89S51 Microcontroller based on Digital Clock


AT89S51 Microcontroller based on Digital Clock
Digital hours to create this not too tough. This series is not my original project, I trace the series of files and program from the internet, there is no chance the program listing. when I download the file to its hex-hour direct approach. This clock only displays hours and minutes, to seconds but you'll install the led associated with a series of I Hz oscillator formed from IC 555 (which I do, because I do not recognize the program listing).

a pair of led in parallel and installed as a bookmark seconds. Led to two installed in the middle of the hours and minutes. though with the approach that seconds and minutes if observed (calculated) decline slightly however i am not the problem, Moreover individuals won't understand it.

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Monday, 20 February 2017

SW Converter for Digital AM Car Radio


This circuit is purposely presented with many loose ends (not literally, of course) to stimulate experimenting with RF circuitry at a small outlay. Looking at the circuit diagram you may recognize a modified version of the SW Converter for AM Radios described elsewhere in this issue. The modifications were necessary to make the circuit compatible with a digital rather than analogue AM car radio. The main difference between digital AM radios and their all-analogue predecessors is that tuning is in 9 kHz (some-times 4.5 kHz steps) in compliance with the international frequency allocation for the band. Obviously, that particular step size, desirable as it may be on MW, is a stumbling block if you want to use a digital AM receiver in combination with a frequency step-up converter for SW, where chaos reigns and there is no fixed step size. The first attempt was to make the crystal oscillator variable by about 5 kHz each way.

 

Circuit diagram :

SW Converter for Digital AM Car-Radio-Circuit-Diagram

SW Converter for Digital AM Car Radio Circuit Diagram

 

Unfortunately, despite serious efforts, the crystal could not be pulled more than 1 or 2 kHz so another solution had to be found. After studying the NE/SA602/612 datasheet, it was found that a variable LC based oscillator was the best alternative. The circuit worked after winding a resonant LC circuit and adding a 0.1 µF series capacitor to block the DC component on pin 6 of the NE602 (612). When the tuning was found to be a bit sharp with the original capacitor, a simple bandspread (or fine tuning) feature was added by shunting the LC resonant circuit with a lightly loaded 365 pF tuning capacitor (C10) which, like the main tuning counterpart, C8, was ratted from an old transistor radio. The tuning coil, L1, consists of 8 to 10 turns of 0.6-0.8mm dia. enamelled copper wire (ECW) on a 6-8 mm dia. former without a core. With this coil, frequency coverage will be from about 4 MHz to 12 MHz or so. Details on Tr1 may be found in the referring article.

 

Note that no tuning capacitor is used on the secondary — the input stray capacitance of the NE602 (612) does the trick. A BFO (beat frequency oscillator) was added to enable SSB (single sideband) signals to be received. The BFO built around T1 is simple, has a heap of output and is stable enough to hold an SSB signal for a few minutes without adjustment. The BFO frequency is tuned with C3. Tr2 is a ready-made 455 kHz IF transformer whose internal capacitor was first crushed and then removed with pliers. When S2 is closed the BFO output signal is simply superimposed on the NE602 (612) IF output to the MW radio. The converter should be built into a metal box for shielding. If you find that the BFO gives too much output, disconnect it as suggested in the circuit diagram and let stray coupling do the work. Sensitivity, even on a 1-metre length of car radio aerial, is quite amazing. Bearing in mind that most of the major international SW broadcasting stations like Radio NHK Japan, Moscow, BBC etc.) generate enough power to make sure that you will hear them, it is still quite exciting to hear such signals for the first time on your car radio.

 

Author : P. Laughton, VK2XAN – Copyright : Elektor Electronics


Readmore → SW Converter for Digital AM Car Radio

Friday, 27 January 2017

Doubler Digital Frequency circuit


Doubler Digital Frequency circuit includes a simple and easy to understand. Digital Frequency Doubler circuit application contained in the system electronics such as audio-producing organ, or keyboard. The function of this series Digital Frequency Doubler for multiplying two input frequencies.

The process of multiplying 2 on scales in an organ in principle is like this series Digital Frequency Doubler. Example of rising to a ringing tone DO RE then electronically technique in it is by multiplying the two frequency bands such as this series Digital Frequency Doubler.
Digital Frequency Doubler.

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Wednesday, 11 January 2017

Digital Volume Control


This digital volume control has no pot to wear out and introduces almost no noise in the circuit. Instead, the volume is controlled by pressing UP and DOWN buttons. This simple circuit would be a great touch to any home audio project.

Parts:



Part

Total Qty.

Description
C1
1
0.1uf Ceramic Disc Capacitor
U1
1
DS1669 Digital Pot IC (See Notes)
S1, S2
2
Momentary Push Button Switch
MISC
1
Board, Wire, Socket For U1


Notes:

1. U1 is available from Dallas Semiconductor.

2. S1 turns the volume up, S2 turns it down.

3. The input signal should not fall below -0.2 volts.

4. Using a dual polariity power supply (+-5V works fine) will cure most clipping problems. You will have to check the data sheet for the correct pins to connect your voltages.

Readmore → Digital Volume Control

Tuesday, 13 December 2016

Philips Plasma display FM23 main digital board circuit diagram 2


Scaler clock generator, PW scaler and memory, back end EPLD, Back end LVDS output, Audio source selection, Audio processor, Audio delay line
Scaler clock generator
PW Scaler and memory
Back end EPLD
Back end LVDS output
Audio source selection
Audio processor
Audio delay line


Readmore → Philips Plasma display FM23 main digital board circuit diagram 2

Tuesday, 15 November 2016

Digital Multimeter Overview





















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Tuesday, 8 November 2016

proper use of the typical digital multimeter




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Tuesday, 27 September 2016

Get Wiring diagram for digital thermostat


 Honeywell, Dometic and Suburban Digitial Thermostat Install | ModMyRV

Honeywell, Dometic and Suburban Digitial Thermostat Install | ModMyRV

File Name : mods_thermostat_01_digital_thermostat_diagram.jpg

File Name : mods_thermostat_01_digital_thermostat_diagram.jpg

honeywell digital thermostat reset digital thermostat use of which is

Honeywell digital thermostat reset digital thermostat use of which is

File Name : Thermostat-heat-cool-fan-on.jpg

File Name : Thermostat-heat-cool-fan-on.jpg

 : Replacing a Thermostat, Meanings of the Different Wire Colors

: Replacing a Thermostat, Meanings of the Different Wire Colors

 Wire Thermostat Wiring Diagram. on honeywell digital thermostat wiring

Wire Thermostat Wiring Diagram. on honeywell digital thermostat wiring

Project Circuit Diagram - Electronic Circuit Schematic Wiring Diagram

Project Circuit Diagram - Electronic Circuit Schematic Wiring Diagram


Above is a picture representation Wiring diagram for digital thermostat



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Readmore → Get Wiring diagram for digital thermostat