Showing posts with label full. Show all posts
Showing posts with label full. Show all posts

Thursday, October 3, 2013

Full duplex Intercom Circuit

No complex switching required, Simple circuitry, 6-12V supply

This design allows to operate two intercom stations leaving the operator free of using his/her hands in some other occupation, thus avoiding the usual "push-to-talk" operation mode. No complex changeover switching is required: the two units are connected together by means of a thin screened cable. As both microphones and loudspeakers are always in operation, a special circuit is used to avoid that the loudspeaker output can be picked-up by the microphone enclosed in the same box, causing a very undesirable and loud "howl", i.e. the well known "Larsen effect". A "Private" switch allows microphone muting, if required.

Circuit Diagram :

Full-duplex Intercom Circuit diagram Full-duplex Intercom Circuit diagram

Parts:

P1_____________22K Log. Potentiometer
R1_____________22K 1/4W Resistor
R2,R3_________100K 1/4W Resistors
R4_____________47K 1/4W Resistor
R5______________2K2 1/4W Resistor (See Notes)
R6______________6K8 1/4W Resistor
R7_____________22K 1/2W Carbon or Cermet Trimmer
R8______________2K7 1/4W Resistor
C1,C6_________100nF 63V Polyester or Ceramic Capacitors
C2,C3__________10µF 63V Electrolytic Capacitors
C4_____________22µF 25V Electrolytic Capacitor
C5_____________22nF 63V Polyester or Ceramic Capacitor
C7____________470µF 25V Electrolytic Capacitor
Q1____________BC547 45V 100mA NPN Transistor
IC1_________TDA7052 Audio power amplifier IC
SW1____________SPST miniature Switch
MIC____________Miniature electret microphone
SPKR___________8 Ohm Loudspeaker
Screened cable (See Text)

Circuit operation:

The circuit uses the TDA7052 audio power amplifier IC, capable of delivering about 1 Watt of output power at a supply voltage comprised in the 6 - 12V range. The unusual feature of this design is the microphone amplifier Q1: its 180° phase-shifted audio output taken at the Collector and its in-phase output taken at the Emitter are mixed by the C3, C4, R7 and R8 network and R7 is trimmed until the two incoming signals almost cancel out. In this way, the loudspeaker will reproduce a very faint copy of the signals picked-up by the microphone.

At the same time, as both Collectors of the two intercom units are tied together, the 180° phase-shifted signal will pass to the audio amplifier of the second unit without attenuation, so it will be loudly reproduced by its loudspeaker. The same operation will occur when speaking into the microphone of the second unit: if R7 will be correctly set, almost no output will be heard from its loudspeaker but a loud and clear reproduction will be heard at the first unit output.

Notes:

  • The circuit is shown already doubled in the diagram. The two units can be built into two separate boxes and connected by a thin screened cable having the length desired.
  • The cable screen is the negative ground path and the central wire is the signal path.
  • The power supply can be a common wall-plug adapter having a voltage output in the 6 - 12V dc range @ about 200mA.
  • Enclosing the power supply in the box of one unit, the other unit can be easily fed by using a two-wire screened cable, its second wire becoming the positive dc path.
  • To avoid a two-wire screened cable, each unit may have its own separate power supply.
  • Please note that R5 is the only part of the circuit that must not be doubled.
  • Closing SW1 prevents signal transmission only, not reception.
  • To setup the circuit, rotate the volume control (P1) of the first unit near its maximum and speak into the microphone. Adjust Trimmer R7 until your voice becomes almost inaudible when reproduced by the loudspeaker of the same unit.
  • Do the same as above with the second unit.

Source : www.redcircuits.com

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Friday, April 12, 2013

Panasonic 3D FULL HDTV Technology


The pitch to Visual authenticity : Reproducing Depth

Panasonic 3D FULL HDTV Technology

With Panasonics VIERA 3D HDTVs, reproducing flawless natural images was the goal. Full HD 3D technologies send rightful-to-life images and do both spatial fidelity and minimized crosstalk in favor of realistic fact.

•Blurless 3D Imaging - earliest Panasonic technologies bear greatly cut-rate crosstalk. This results fashionable a highly realistic 3D experience with the purpose of allows you to dip physically in the image.

•Signal Image Rendering in 3D - Motion image performance has been auxiliary enhanced by optimizing the workstation, driver and panel. Smooth, lucid images are achieved even with 3D images.

•Reproducing Image Depth - VIERAs renowned black idiom is powerful with 3D images equally well. Deep, rich black rendering brings obtainable the natural beauty of both image.

New Crosstalk Reduction knowledge

By accurately detecting the in turn in place of all the proper-eye and absent-eye 3D images, Panasonics 3D HDTVs lessen the fold up image question. This results trendy make, comfortable 3D viewing by dipping the crosstalk.


3D 24p Cinema Smoother

VIERA incorporates skill to analyzes picture in a row in both the preceding and succeeding frames, and creates a precise supplementary frame involving them. This suppresses the jerky effect seen in the field of movies, so playback is smooth and natural-looking. The distinctive tonal qualities and ambiance of the show are preserved, and you get pleasure from exceedingly convincing 3D images. 
Frame Sequential knowledge

The technology in which the missing-eye and acceptable-eye 3D images are sent to the viewer is the solution to 3D image quality. in support of this, gorged HD 3D uses something called the Frame Sequential expertise. chief, the plasma flaunt panel, which has a quantity of inherent advantages for emotive picture pledge, was added later to allow images in favor of apiece of the not here and right eyes to take place alternately reproduced on the rate of 60 frames apiece go along with (fps), making a figure up of 120 fps for both eyes. Viewers watch the images through anticyclone-precision 3D Eyewear*, which amenable and close the absent and right shutters here harmonization with the alternating images. when a effect, a separate high quality image is sent to every eye. This addresses the image quality problems and blurring with the purpose of were nothing special to earlier 3D systems, and creates sour, brittle 3D images.

Plasma 3D Technology

Panasonic 3D FULL HDTV Technology


•Smallest serenity - Reformulating the phosphor equipment has minimized afterglow and increased gleaming efficiency. This reduces crosstalk blare and displays translucent, detailed 3D images.

•Extra Light-Emitting Process - New VIERA optical equipment reduces crosstalk indoors dark areas. conservative light production, which goes from dark-to-light, was distorted to a light-to-dark sequence. This turns highest giving out warm feeling into lowest emission afterglow, and dramatically reduces the feel-good factor duration. besides, by speeding up the timing of both light giving out and expanding the interval until the subsequently frames emission, we greatly concentrated the interference to the absent and sincere frames, which causes crosstalk, and reduced din. 

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