Showing posts with label and. Show all posts
Showing posts with label and. Show all posts

Friday, November 14, 2014

Booster Low Power Voltage Doubler Diagram Circuit

All miniature electronic devices operate off batteries. Some of them need higher than the standard battery voltages to operate efficiently. If the battery of that specific voltage is unavailable, we are forced to connect additional cells in series to step up the DC voltage. Thus, the true meaning of miniaturisation is lost. A simple way to overcome this problem is to employ a voltage doubler, if the device under consideration can operate at a small current.

Here we present a low-power voltage doubler circuit that can be readily used with devices that demand higher voltage than that of a standard battery but low operating current to work with. The circuit is quite simple as it uses only a few components. Yet, the output efficiency is 75 to 85 percent along its operating voltage range. The available battery voltage is almost doubled at the output of the circuit.

Here IC1 is wired as an astable multivibrator to generate rectangular pulses at around 10 kHz. This frequency and duty cycle of the pulses can be varied using preset VR1. The pulses are applied to switching transistors T1 and T2 for driving the output section, which is configured as a voltage-doubling circuit. The doubled voltage is available across capacitor C5. During each cycle of the pulse occurance, the high level drives T1 into its saturation, keeping transistor T2 cut off.Circuit diagram:
Low-Power Voltage Doubler Circuit Diagram

So transistor T1 charges capacitor C4 via the path formed by diodes D2 and D1 to a voltage level slightly lesser than the supply. But during the low period of the pulse, transistor T1 is cut off while transistor T2 is driven into saturation. Now, transistor T2 raises the charge on the negative pole of capacitor C4 by another step equal to the supply voltage. Therefore an equal amount of charging is built up on capacitor C5 via diode D3.

This doubling action increases the total voltage across capacitor C5 to almost double the input voltage. If the output of the pulse generator is maintained with a high enough amplitude and frequency, the output voltage and current remain constant and cater to the needs of the load. Even with the half-wave function, this circuit is almost free of ripple voltage. If the connected load doesn’t require a high current, the efficiency can be expected in the upper 90 percentranges.

Since the input voltage is doubled, the current drain from the input power supply is also doubled at the input but halved at the output. One point of caution is that if the multivibrator’s frequency is fairly high, the output may suffer with the interference imposed over the DC voltage. In this case, the frequency must be set favorably by trials and actual load connection procedure. This tiny circuit can be assembled on the general-purpose PCB. If all of the components are surface-mount type, the whole module can be genuinely miniaturized.EFY Lab note.
During testing with input of 8V and 1.25mA load current the output voltage was found to be around 13V.
Source: EFY Mag

Wednesday, November 12, 2014

Booster for Input Impedance Circuit and explanation

The input impedance of a.c.-coupled op amp circuits depends almost entirely on the resistance that sets the d.c. operating point. If CMOS op amps are used, the input is high, in current op amps up to 10 MΩ. If a higher value is needed, a bootstrap may be used, which enables the input impedance to be boosted artificially to a very high value. In the diagram, resistors R1 plus R2 form the resistance that sets the d.c. operating point for opamp IC1. If no other actions were taken, the input impedance would be about 20 MΩ. However, part of the input signal is fed back in phase, so that the alternating current through R1 is smaller. The input impedance, Zin, is then: Zin=(R2+R3)/R3)(R1+R2). With component values as specified, Zin has a value of about 1GΩ. The circuit draws a current of about 3 mA.Circuit diagram:Input
Input Impedance Booster Circuit Diagram

Tuesday, November 11, 2014

Photovoltaic Power System and Wiring Module Interconnection

Photovoltaic
Photovoltaic (PV) is the field of technology and research related to the application of solar cells for energy by converting sunlight directly into electricity. The following Photovoltaic Power System manual is a suggested practices manual examines the requirements of the 2005 National Electrical Code (NEC) as they apply to photovoltaic (PV) power systems. In this manual you will get the design requirements for the balance-of-systems components in a PV system are addressed, including conductor selection and sizing, overcurrent protection device rating and location, and disconnect rating and location.

This manual is divided into sections which covers discussion on Photovoltaic Modules (including Modules Marking, Wiring, Module Interconnection, Tracking Modules, Terminals, Transition Wiring, Module Connection Access, Module Connectors, and Splices), Conductor Color Code, PV Array Ground-Fault Protection, PV Array Installation and Service, Grounding (including size of DC grounding electrode conductor, point of connection, charge controller, ungrounded system), Equipment Grounding, Inverter AC Outputs, Conductor Ampacity, Overcurrent Protection, Batteries, Generators, Charge Controller, Inverters, Stand Alone Distribution System, etc.

Copper conductors are recommended for almost all photovoltaic system wiring. Copper conductors have lower voltage drops and better resistance to corrosion than other types of comparably sized conductor materials. Aluminum or copper-clad aluminum wires can be used in certain applications, but the use of such cables is not recommended—particularly in dwellings. All wire sizes presented in this guide refer to copper conductors.

Find more information about Photovoltaic Power System and Wiring Module Interconnection in the following manual. (source: scribd.com)

Friday, October 31, 2014

Pulse Generator And Signal Tracer Circuit Diagram

Dual-purpose test-instrument, Very simple circuitry, 1.5V Battery-operated. This simple circuit generates narrow pulses at about 700-800Hz frequency. The pulses, containing harmonics up to the MHz region, can be injected into audio or radio-frequency stages of amplifiers, receivers and the like for testing purposes. A high-pitched tone can be heard from the speaker of the device under test when all is working properly. The clip must be connected to the ground of the device under test, touching with the probe the different stages of the circuit, starting from the last stage and going up towards the first. When the tone is no longer heard, the defective stage has been found.

Connecting an earclip or headphone to J1, the circuit will automatically change into a two-stage amplifier and any audio signal coming from the device under test and picked-up by the probe will be heard through the headphones. The testing of a circuit should be made in the reverse manner, i.e. starting from the first stage and going down until the last stage. When nothing is heard, the defective stage has been found.

Circuit diagram:
Pulse
Pulse Generator And Signal Tracer Circuit Diagram


Parts:
R1________________1M 1/4W Resistor
R2,R4_____________2K7 1/4W Resistors
R3________________150K 1/4W Resistor
C1________________2n2 630V Ceramic or Polyester Capacitor (See Notes)
C2,C3_____________4n7 63V Ceramic or Polyester Capacitors
D1_______________1N4148 75V 150mA Diode
Q1_______________BC547 45V 100mA NPN Transistor
Q2_______________BC557 45V 100mA PNP Transistor
SW1______________SPST miniature Slider Switch (See Notes)
J1_______________Stereo switched 3mm. Jack socket (See Notes)
Probe____________Metal Probe 3 to 5 cm. long
Clip______________Miniature Crocodile Clip
B1_______________1.5V Battery (AA or AAA cell etc.)

Circuit operation:

Q1 & Q2 form a complementary astable multivibrator, whose operating frequency is set mainly by R3, C2 & C3 values. Output pulses are taken at Q2 Collector and applied to the probe by means of decoupling capacitor C1. D1 provides a symmetrical shape for the output waveform. If an earclip or headphone jack is plugged into J1, the connection from Q2 Collector and C1 - C2 is broken by the switch incorporated into J1: in this case the circuit becomes a two-stage amplifier.

Notes:
  • If you intend to use the circuit to test valve operated devices C1 must be a 630V type. Working with low voltage supply transistor devices the voltage of C1 can be lowered to 63 or 100V.
  • If instead of a short probe, you intend to connect the circuit to the device under test by means of a piece of wire longer than a few centimeters, a small ceramic capacitor (470 to 1000pF) should be added in parallel to D1 to prevent unwanted RF oscillation.
  • Current drawing when in Pulse-Generator mode is about 60µA and 1.2mA when in Signal-Tracer mode operation. Therefore SW1 can be omitted, provided that the earclip or headphones are unplugged when the circuit is unused.
  • J1 is a stereo switched jack socket wired to obtain a series connection of the two earpieces forming a stereo headphone. In this manner the circuit is loaded with a higher impedance and sensitivity will be improved.
  • Therefore, the higher the load impedance the more sensitive the Signal-Tracer. In any case, common 32 Ohm impedance mini-headphones suitable for walkman sets will work fine.
  • A crystal (high impedance) earpiece is a good solution, provided you substitute J1 with a mono switched jack socket.
  • The entire circuit can be easily fitted into a pen-like enclosure, with the probe protruding like a nib.

Monday, October 27, 2014

MAX98304 Class D amplifier Diagram Circuit

This electronic circuit project is a very simple class D amplifier that will provide a maximum output power up to 3.2W . This Class D amplifier is based on MAX98304 amplifier IC and provides Class AB audio performance with Class D efficiency.
This device offers five selectable gain settings (0dB, 3dB, 6dB, 9dB, and 12dB) set by a single gain-select input (GAIN).
Active emissions-limiting, edge-rate, and overshoot control circuitry greatly reduces EMI.

This Class D amplifier features click-and-pop suppression that reduces audible transients on startup and shutdown.
The amplifier includes thermal overload and short-circuit protection.

The MAX98304s 0.95mA at 3.7V (1.2mA at 5V) quiescent current extends battery life in portable applications.
The circuit can be powered from an input voltage range between 2.5 and 5.5 volts DC .
As you can see in the circuit diagram these amplifier circuit require extreme low external parts and thanks to low power consumption and to its small package these circuit can be used in portable audio applications like : mp3 players, cellular phones , etc.

Class

Saturday, October 18, 2014

IC 555 12VDC to 220VAC Inverteuit and overview

This is a simple 12VDC to 220AC inverter circuit that can be used produces an AC output at line frequency and 220AC or different voltage by selecting transformer T1. The 555 IC is configured as a low-frequency oscillator, tunable over the frequency range of 50 to 60 Hz by Frequency potentiometer R4.
12VDC to 220VAC Inverter Circuit

The 555 feeds its output (amplified by Q1 and Q2) to the input of transformer T1, a reverse-connected filament transformer with the necessary step-up turns ratio. Capacitor C4 and coil L1 filter the input to T1, assuring that it is effectively a sine wave. Adjust the value of T1 to your voltage. The output ( in watts) is up to you by selecting different components.

Input voltage is anywhere from +5V to +15Volt DC, adjust the 2700uF caps working voltage accordingly. Replacement types for Q1 are: TIP41B, TIP41C, NTE196, ECG196, etc. Replacement types for Q2 are: TIP42B, TIP42C, NTE197, ECG197, etc.

Friday, October 17, 2014

Satellite Dish and Antenna location on one cable


With a very long and difficult to pronounce name, Diplexer Satellite Combiner & Splitter is a marvel of electronics, it is a divider and mix of RF combining satellite antenna + DC + local terrestrial antenna digital (VHF UHF HDTV CATV TV ) on a single cable without interference or other problems. The Diplexer Combiner, as it is called, has two entrances, one to the antenna ANT Local VHF and UHF, another SAT for antenna TV, and I / O output with the two mixed signals.

Satellite Dish Antenna and common in one cable


The name comes from Diplexer Duplex , which means double , equivalent to twice or that replicates the service, which operates in two modes or two systems or a communication system consisting of two points that communicate with each other in both directions , at our case are RF signals that are mixed and then separated . This mixer is the lifeline for small spaces , long distances or where the wiring will not support another cable . You can use the same coaxial cable already installed to pass the RF antenna of the local terrestrial and satellite signal + DC together.

Using diplexers (two crossovers ) the main benefit is to use only one coaxial cable, so a reduction of spending on materials and workmanship . The Diplexer Combiner supports a satellite dish , or an LNBF to Receiver C Band or Ku band. It is capable of supporting systems FTA ( Free to Air) as well as C-band KU band , Digital receiver , Analog Receiver , cable TV operators DirecTV , Sky , Via Embratel , Hi , Vivo , Telefonica , among others .

There are hundreds of manufacturers Diplexer but little difference in the electronic issue between him , is more on the mechanics they differ . Most have an antenna input ( ANT ) which can be VHF - UHF - HDTV - CATV , which has a frequency range of 5 MHz to 850 MHz , since the input to satellite dish ( SAT ) has a frequency range of 950 MHz to 2400 MHz ( varies from manufacturer ) . The maximum DC current passing is 500 mA , the loss of RF signal from the satellite avg 3 dB and the impedance is 75 Ohms .

How to Install Satellite TV Diplexer

The installation and operation of the Diplexer Sat TV is quite simple, you should always use two antennas Diplexer one along to mix the signals of the satellite dish antenna and common, and another near the TV and satellite receiver to separate the RF signals. It supports other components in the antenna, including the keys to high frequency multipoint LNBF and mixers VHF and UHF signal Places antennae system.



It is advisable to protect the Diplexer time, especially rain, although toasted and weatherproof, a small water infiltration can cause damage and losses in the RF signal. When installing crossovers let the satellite receiver off. This system is compatible with all satellite receivers analog and digital KU and C band

See this installation manual for Diplexer one of the manufacturers in PDF

Even the Azbox, Elsys, TP-LINK, Tocomsat, Cromus, Duosat, Naza Box, Hicom, azamerica, Telesystem, IZ receptors: boz, Century Midiabox, Bedinsat, etc.

Sunday, October 5, 2014

Party Like Music Produced from Acid Machine overview and explanation

Party-Like

Overview

This machine works by making a LED blink in the frequency of the sound and a set speed rotates the image.

Explanation

On top of the machine is the circle that contains lines where the notes being played are displayed while rotating. The lines in the middle circle will be standing still when C is played which will go outward and all notes will be displayed on a keyboard in 12 steps. The musical frequencies are displayed in centimeters for the distance between the lines. The frequencies in the circle are transformed by a script made in PHP to display the notes. To find notes using the potentiometers on the synth, the circle can also be used.

A simple noise generator and a filter comprise the sound part of the machine as it is based on logic ICs. A binary counter and a resistor ladder are used to make the 4-bit saw which is the sound the synth generates. The rotation speed of the tone wheels is determined by the red knob or the potentiometer on the controller. The notes are played as an arpeggiator by the sequencer which comes is 2 different modes.

Thursday, September 18, 2014

4 x 12 W power amplifier with dynamic distortion detector and diagnostic interface

FEATURES
Requires very few external components
High output power
Fixed gain
Diagnostic facility (distortion, short-circuit and temperature detection)
Good ripple rejection
Mode select switch (operating, mute and stand-by)
Load dump protection
AC and DC short-circuit safe to ground and to VP
Low power dissipation in any short-circuit condition
Thermally protected
Reverse polarity safe
Electrostatic discharge protection
No switch-on/switch-off plop
Flexible leads
Low thermal resistance
Identical inputs.

GENERAL DESCRIPTION

The TDA8562Q is an integrated class-B output amplifier in a 17-lead single-in-line (SIL) power package. It contains 4 × 12 W single-ended amplifiers.

Circuit Diagram
4 x 12 W power amplifier with dynamic distortion detector and diagnostic interface

Saturday, September 6, 2014

Part 2 Contact info and web adresses of integrated circuits power audio amplifiers manufacturers


Crl- Cirrus Logic, Inc.
 P.O. Box 17847, Austin, Texas 78760, USA. Phone: (512) 445 7222
http://www.cirrus.com

Csm- Chengdu Sino Microelectronics System Co., Ltd.
2nd floor, Building D, Science & Technology Industrial Park, 11 Gaopeng Avenue, Chengdu
High-Tech Zone, Chengdu City, Sichuan Province, P.R.China. Phone: +86-28-8517-7737
http://www.csmsc.com451

Dae- Deawoo Semiconductor
60-8 Kasan-Dong, Kumchun-Gu, Seoul Korea. Phone: +02-818-9652
http://www.daewoo.co.kr

Ecg- ECG (Is not a current ICs manufacturer)
A Philips (USA) subdivision.
1025 Westminster Drive, Williamsport, PA 17701 USA
http://www.ecgproducts.com

Eut- Eutech Microelectronics
4F, 38-1, Ming Shen N. Rd. Sec. 1, Kuei-Shan, Taoyuan 333, Taiwan, R.O.C.
Phone: 886-3-3164556
http://www.eutechmicro.com

Exr- Exar Corporation
48720 Kato Road Freemont, CA 94538, USA. Phone: +1-510-668-7000
http://www.exar.com

Fch- Fairchild Semiconductor Corp.
333 Western Avenue, South Portland ME 04106, USA. Phone: 207/775-8100
http://www.fairchildsemi.com

Fuj- Fujitsu Microelectronics, Inc.
3545 North First Street, San Jose, CA 95134, USA. Phone: 408/922-9000
http://www.fujitsumicro.com

GE- General Electric Semiconductor
Electronics Park Bldg. 7 Syracuse, NY 13221, USA. Phone: 315/456-3606
http://www.ge.com

Gen- Gennum Corp.
Box 489, Station A, 970 Fraser Drive, Burlington, Ontario, Canada, L7R 3Y3
Phone:+1-905-632-2996
http://www.gennum.com

Har- Harris Corporation (Is not a current ICs manufacturer)
1025 West NASA Boulevard, Melbourne, Florida 32919-0001, USA
Phone: 1-321-727-9207
http://www.harris.com

Friday, September 5, 2014

UM protection unit and acoustics overcurrent

It is based in protection circuit Audio Analogue Aida - from the site of its designer Federico Paoletti . I developed it a little bit and used in his new mobile amplifier - also borrowing from Paoletti. The scheme is applicable to any PA whose output - compound emitter follower (2 stages or more, or a Darlington Naturally - silicon, or a cascade of CMOS).
In the original scheme in the traditional circuit protection (voltage drop across the emitter resistor opens key bypass transition BE composite output transistor) added two optocoupler (circuit shunt base for the upper and lower arm). Current drawn from the shunt base flows through the LED of optocoupler and opens galvanically isolated key. Fine, but the same node can not just arbitrarily turn off power, but doing it on the pitch outside. Need another pair of optocouplers, shunt BE transitions output transistors:


Threshold set divider R1-R2 based on the current limit for each transistor and the emitter resistance in the circuit output. The total resistance R1 + R2 must be in the range 10 .. 100 ohms. Thanks circuit R3-C1-R4-D1, R8-C2-R9-D2 (LPF) threshold DC is much higher than the AF.Furthermore, the threshold decreases with increasing temperature T1, T2.
The first and fourth (vertical) optocouplers - security sensors (closed = alarm), second and third - the keys controlled by an external signal (sink current = off UM). In the chain of forced shutdown necessarily provide current-limiting resistor. Resistors R9-10 - I put instead of jumpers on the board, whether they are as such - probably not.

Despite the additional voltage drop across the LED, the scheme is guaranteed off the PA with a repeater on single and dual Darlington (0.33 ohms under the emitter). The main thing that current drawn T1, T2 in the "triangle" - the voltage amplifier - was sufficient to guarantee the inclusion of optocouplers (not less than 1 mA for TLP521). Optocouplers - any except Darlington (well, they go to hell, and do not need much gain here). Requires current transfer ratio is determined by currents and levels of automatic protection, as well as current shunt which will select from the "triangle". T1, T2 - any thin with low saturation voltage.

Incidentally, memorized by heart half volt LED on - not quite right. The LED TLP521 in this scheme falls at room temperature not more than 0.9V.

When designing the board first, "the mind" is placed own mind and protection circuit - second. In this "ground" defense to hold separate and connect with other "lands" at a common point "star." If a car amplifier analog ground unleashed current board of land and automation unit usually sits on the board, the circuit R4D1 R9D2 connect with analog power and ground otpronov - with on-board.
Original article sourse cxem.net

Build a Relay Switch Activated by Tone and Signal

The essence of the schema is for the input of tone and signal to provide an activation for the relay switch.
  • Relay – an electrically operated switch where the current flowing through the coil of the relay is creating a magnetic field which attracts a lever and changes the switch contacts, thereby making its state open or close
  • BC214 – a complementary silicon planar epitaxial transistor used in AF small signal drivers and am1 as well as for low noise preamplifier applications due to its feature of good linearity of DC current gain
  • LM741 – a general purpose single operational amplifier with features such as offset null, compensated internal freq uency, voltage range with high input, good stability of temperature, and protected from short schema
The use of relay will allow the schema to switch from one condition to another. It can also be referred to as a form of an electrical amplifier since it is able to control an output schema of higher power than the input schema. There are many types of relays being used in many electronic and electrical diagram, which include solid-state relay, Buchholz relay, overload protection relay, latching relay, forced-guided contacts relay, mercury-wetted relay, contactor relay, machine tool relay, reed relay, polarized relay, and solid state contactor relay.

 Relay Switch Activated by Tone and Signal Circuit Diagram

Build
The schema created is sensitive enough to the AC signals in the input stage, where the signals are ranging above 5 mV. It will also be sensitive to react with the human voice signals having a range of frequency from 50 Hz up to 3 KHz. The human voice is a part of the human sound produced primarily by the vocal cords or vocal folds which in turn produces a voice frequency that is used for the transmission of speech.

During the absence of an input signal, the state of the 12 V relay RL1 is at OFF condition as regulated by the 10K Ohms trimmer RV1. The schema can be made to react with its sensitivity in points A, B, & C, where a negative feedback can be placed due to the addition of band pass filter. The filter will operate only in the 1 KHz range and the schema will only correspond at this frequency.
Relay

The signal and tone activated relay switch were used in a wide range of fields which includes measuring instruments, audio systems, communications equipment, and factory-automation equipment. They can also be found on telephone subscriber diagram for the polarity reversing switch, testing, and ringing functions.

Tuesday, September 2, 2014

Emergency Light and Alarm circuit

This is a simple and easy emergency light and alarm schema. This schema is permanently plugged into a mains socket and NI-CD batteries are trickle-charged. When a power outage occurs, the lamp automatically illuminates. Instead of illuminating a lamp, an alarm sounder can be chosen.

When power supply is restored, the lamp or the alarm is switched-off. A switch provides a "latch-up" function, in order to extend lamp or alarm operation even when power is restored.

Emergency

Component parts list:

R1 = 220K
R2 = 470R
R3 = 390R
R4 = 1K5
R5 = 1R
R6 = 10K
R7 = 330K
R8 = 470R
R9 = 100R
C1 = 330nF/400V Polyester Capacitor
C2 = 10µF/63V Electrolytic Capacitor
C3 = 100nF/63V Polyester Capacitor
C4 = 10nF/63V Polyester Capacitor
D1-D5 = 1N4007
D6 = LED Green
D7 = 1N4148
Q1,Q3,Q4 = BC547
Q2,Q5 = BC327
SW1,SW2 = SPST Switches
SW3 = SPDT Switch
LP1 = 2.2V or 2.5V 250-300mA Torch Lamp Bulb
SPKR = 8 Ohm Loudspeaker
B1 = 2.5V Battery (two AA NI-CD rechargeable cells wired in series)
PL1 = Male Mains plug

Circuit Works:
Mains voltage is reduced to about 12V DC at C2s terminals, by means of the reactance of C1 and the diode bridge (D1-D4). This avoids the use of a mains transformer.

Trickle-charging current for the battery B1 is provided by the series resistor R3, D5 and the green LED D6 that also monitors the presence of mains supply and correct battery charging.
Q2 & Q3 form a self-latching pair that start operating when a power outage occurs. In this case, Q1 biasing becomes positive, so this transistor turns on the self latching pair.

If SW3 is set as shown in the schema diagram, the lamp illuminates via SW2, which is normally closed; if set the other way, a square wave audio frequency generator formed by Q4, Q5 and related components is activated, driving the loudspeaker.

If SW1 is left open, when mains supply is restored the lamp or the alarm continue to operate. They can be disabled by opening the main on-off switch SW2.

If SW1 is closed, restoration of the mains power supply terminates lamp or alarm operation, by applying a positive bias to the Base of Q2.

Notes:
  • Close SW2 after the schema is plugged.
  • Warning! The schema is connected to 230Vac mains, then some parts in the schema board are subjected to lethal potential!. Avoid touching the schema when plugged and enclose it in a plastic box.


Emergency Light and Alarm schema source: http://www.reddiagram.com/Page45.htm

Sunday, August 31, 2014

Part 1 Contact info and web adresses of integrated circuits power audio amplifiers manufacturers


AD- Analog Devices
One Technology Way, Norwood, MA 02062, USA. Phone: 781/329-4700
http://www.analog.com

All- Allegro MicroSystems Inc.
115 Northeast Cutoff, Box 15036 Worcester, MA 01615, USA. Phone: +1-508-853-5000
http://www.allegromicro.com

Amc - AMIC Technology, Inc.
No. 2 Li-Hsin 6th Road, Science-based industrial Park, Hsin-Chu City, 300, Taiwan
Phone: +886 3567 9966
www.amictechnology.com

Ana- Anachip Corp.
2F, No.24-2, Industry E. Rd. IV, Science-Based Industrial Park, Hsinchu 300, Taiwan
Phone: +886-3-5678234
www.anachip.com.tw

Ang- Angstrem
Moscow, Zelenograd, 103460, Russia. Phone: (095) 531-49-06
http://www.angstrem.ru

Anp- ANPEC Electronics Corp.
5F, No. 2 Li-Hsin Road, SBIP, Hsin-Chu, Taiwan, R.O.C. Phone: 886-3-5642000
www.anpec.com.tw

Apg- Apogee Technology, Inc.
129 Morgan Drive, Norwood, MA 02062, USA. Phone: (781) 551-9450
http://www.apogeemems.com

Apx- Apex Microtechnology Corp.
5980 North Shannon Road, Tucson, Arizona 85741, USA. Phone: 1 (800) 546-2739
http://www.apexmicrotech.com

Asm- Austria microsystems AG
A-8141 Schloss Premstaetten, Austria. Phone: +43 (0) 3136 500 0
http://www.austriamicrosystems.com

Avi- Avic Electronics Corp.
(There is no accesible padding information)
http://www.avictek.com

Ban- Baneasa SA (Is not a current ICs manufacturer)
Erou Iancu Nicolae nr.32, sect. 2, Bucuresti, Romania. Phone: 401/230-4050
BB- Burr-Brown Corp. (Merger by Texas Instruments)
PO Box 11400, 6730 S. Tucson Blvd., Tucson, AZ 85706 USA. Phone: 520/746-7365
http://www.burr-brown.com

Chm- Champion Microelectronic Corporation
5F, No. 11, Park Avenue II, Hsinchu Science-based Industrial Park, Hsinchu city, Tiwan
Phone: +886-3-5679979
http://www.champion-micro.com


Saturday, August 30, 2014

Part 3 Contact info and web adresses of integrated circuits power audio amplifiers manufacturers


Hit- Hitachi, Ltd. (ICs manufacture is handed to Renssas Ltd.)
AKS Bldg., 3, Kanda Neribei-cho, Chiyoda-ku, Tokyo, 101-0022, Japan
Phone: +81-(0)3-4345-6000
http://www.hitachi.com

Holt- Holtek Semiconductor Inc.
No.3, Creation Rd. II, Science Park, Hsinchu, Taiwan .Phone: 886-3-563-1999
http://www.holtek.com.tw

Iks- IK Semocon
A-1306, Woolim Lion’s Valley, #371-28, Gasan-dong, Geumcheon-gu, Seoul, Korea
Phone: 82-2-2026-3110
http://www.iksemi.com

Irf- International Rectifier
233 Kansas Street, El Segundo, California 90245, USA. Phone: (310) 252-7105
http://www.irf.com

Isl- Intersil Inc.
10600 Ridgeviev Ct. Cupertino, CA 95014, USA. Phone: 408-995-5000
http://www.intersil.com

Kec- Korea Electronics Co. LTD
9F Shamber Bldg, 45, 4-Ka Namadaemum-RO, Chung-Ku C.P.O. 4896 Seoul, Korea
http://www.kec.co.kr452

Knw- Kenwood Not the manufacturer of ICs; will use custom IC with Kenwood marking
LG- Lucky Goldstar Electron Co, Ltd. (Fused by Hynix)
942, Daeshi-Dong Kangnam-Gu, Seoul Korea. Phone: +82-2-528-2884
http://www.lgeus.com

Linf- LinFinity Microelectronics INC.
11861 Western Avenue, Garden Grove, CA. 92841, USA. Phone: 714-898-8121
http://www.linfinity.com

Lnd- Linear Dimensions, Inc.
445 East Ohio Street, Chicago IL 60611 USA. Phone: 312-321-1810
http://www.lineardimensions.com

Ltc- Linear Technology Corporation
1630 McCarthy Blvd., Milpitas, CA 95035-7417, USA. Phone: (408) 432-1900
http://www.ltc.com

Friday, August 29, 2014

Power Pulse Using by LM350 and NE555

This is a Simple Power Pulse Using by LM350 and NE555 Circuit Diagram. This schema can use to drive lamp,power LED,DC motor etc. Adjust R5 for output amplitude.Adjust R1 for output power .

Power Pulse Circuit Diagram

Power


The LM350 is adjustable 3-terminal positive voltage regulators is capable of supplying in excess of 3A over a 1.2V to 33V output range.This schema requires 5-15V power supply.

Monday, August 25, 2014

Burglar Alarm Using LDR and BC 548 Circuit diagram


Description

 Circuit showing a Burglar Alarm.Here we have used a ldr and a switching transistor for making this schema
.When the light coming towards the ldr during the period the ldr have low resistance so the buzzer will on.When the light going away the ldr during the period the ldr have high resistance so the transistor will off.Here you need a 12 volt power supply


Burglar Alarm Using LDR and BC 548 Circuit diagram

 


 Components Required

      Resistor

                   10 k(preset)

      Transistor


                   BC 548

       LDR


        Buzzer

Saturday, August 23, 2014

How to make 5 1 channel amplifier and speaker setup

5.1 channel amplifier consists of 6 amplifiers 1 channel mono, which has certain specifications on each canals. Has 6 channel surround sound amplifier that consists of Front Left ,Center,Front Right ,Rear Left (Left Surround),Rear Right (Right Surround) , and LFE (Subwoofer).For clarity I give a simple illustration of the layout and the circuit for these speakers.

5.1
5.1 Speaker Setup

Accoustic Field Generator
Acoustic Field Generator is generating acoustic sound with surround effects are adjustable with a standard Dolby Surround, able to produce surround sound is good enough but not too much need of funds. Technological developments as if not only focused on one area alone but on all fronts. The development of technologies that exist today one of them is in the field of audio. With more advanced audio technology today not only as mere entertainment but has become a hobby, hobby is not cheap of course. Many audio enthusiasts trying to make music sound that sounded to be very hard to make music sound as live, the addition of the amplifier, woofer or special speakers that cost is not cheap.


The sound effects are living seems to now is something that most do not have to exist in every good audio devices. This effect is basically a surround effect that can lead to sound as though coming from different directions and his voice can still be heard clearly. Currently Compo-tape tape that has been a lot of these facilities surround sound but not good enough when heard from a considerable distance because of the effects surroundnya missing. This is because the distance is too far listener and speaker, speaker layout is not quite right, or the effect of unfavorable surround.


Surround effects are nice and can be heard with a good surround system is a system that is in movie theaters and to make it not a bit prangkat needed funds. However, if satisfaction remains the number one then the fund is not a major problem. To find a middle ground between price and quality surround effects it was attempted to make the Acoustic Field Generator that can produce surround sound is good enough but not too much need of funds. Acoustic Field Generator is capable of generating acoustic sound with surround effects are adjustable with a standard Dolby Surround.


Accoustic Field Generator Construction

Basically an Acoustic Field Generator built from op-amp circuit and filters. Op-amps are usually used as a voltage amplifier in the Acoustic Field Generator is more widely used as active filters. The filter in the tool is very instrumental in creating an acoustic sound that is really clear, but in practice, almost all the filters, do not miss the precision of the signal with a specific frequency. An op-amp is good for this application is the op-amp which has a wide bandwidth, rise time, slew rate and fast setting timenya. In addition to op-amp and active filter, theres more important parts of the power supply. This is the part that is instrumental in creating excellence acoustic sound because of the bad power supply which is the only producer of noise, which will enter into a voice signal path so that should clear acoustic sound into an acoustic sound with the addition of reverberation (noise). The power supply used is the twin power supply + / - 18 volts DC. Part Acoustic Field Generators



Before we start doing this project, it helps us know in advance about the function of each speaker.


Front Channel

Channel Front is a forward channel input signal LR. LR signal is passed to an amplifier with gain = 1 so that this signal is passed without change / to filter the input signal LR. Front Left and Front Right, is a public speaker that we encountered in stereo amplifier, consisting of a woofer and tweeter. Woofers generally produce low tone sound with a frequency range ranging from 80Hz - 250Hz, while the tweeter produces a high tone with a frequency range between 15kHz - 20kHz. For projects that we will create, its good we use a good quality woofer, with a size of 10 inches and a type piezoelectric tweeter for each speaker fronts.


Front
Front Channel 5.1 Amplifier


Center Channel

Center, the fullrange speakers, which produce sound with a frequency range between 80Hz - 10Khz. Output from the center speaker is a summation of left and right signal (left + right = center). In a movie or song Dolby Surround format, commonly used center for dialogue / vocal or speech of the actor / artist of a film and to produce a sound that moves ahead of us.



Center
Center Channel 5.1 Amplifier




Rear Channel with Surround System

In this section is the core of this hard perangakat. These sections produce surround effects. To produce the surround effect is required special IC MN3005 / 8 and MN3101. Both these ICs will delay the incoming signal in several phases, so that the signal output from this phase will be left with a signal phase of the signal lain.Pada this section L and R are deducted (LR) and then passed in the buffer, filter LPF, delay line, filter LPF (7KHz) and the last is a splitter between the signals R and L. Circuit which causes the surround effect is 75KHz LPF circuit that produces its output fed to the Right Rear 75KHz LPF amplifier input while it diparalel with the Left Rear amplifier input so as to produce two signals L and R which is basically a LR signal a phase lag with the original signal phase.


Rear Left and Rear Right, also known as surround speakers. This speaker is generally a semi-midrange speaker (usually used on television or Mini Compo), commonly called satellite speakers. In a movie surround speakers are used to generate the audible sound of distant voices or sounds that move from the back of our approach. In a music surround speakers produce sound backing vocals and generally sounds like guitars, violins and trumpets sounded clear here.
Rear
Rear Channel 5.1 Amplifier


Subwoofer Channel


Part of this subwoofer is the summation of inputs L and R inputs to a summing amplifier. The output of the summing amplifier is passed to a class 2A LPF which will only pass signals with frequency rendah.Subwoofer, sometimes referred to as LFE (Low Frequency Effect). For these speakers using a subwoofer speaker. Speaker woofer speaker subwoofer is designed specifically to be able to respond to sound with a very low frequency, ranging from 15Hz - 120Hz. For low tone effect can be produced by either (without any harmonic frequency), then the acoustic box / box speakers are also designed specifically with a variety of methods (there are no visible speaker / inside the box, there are that use insulation / labyrinth, etc. ), so that the speaker is capable of compressing the air effectively, so that will feel the effect.

Subwoofer
Subwoofer Channel 5.1 Amplifier




Wiring
Wiring Diagram Home Theater Amplifier / 5.1 Amplifier


Garage Light and Security Control Wiring diagram Schematic

Useful for vehicle owners, this gadget automatically turns on indoor/outdoor garage lights and raises an alert when an automobile enters the garage.

Garage Light and Security Control Circuit Diagram


Garage


Assume switch S2 is in ‘on’ (closed) state. When power switch S1 is turned on, the complete schema is energised by the 12V DC supply. LED3 lights up to provide power-on indication. Simultaneously, IC3 (CD4017B) is instantly reset by the power-on-reset schema formed by the combination of capacitor C4 and resistor R5, and green LED2 lights up as a standby indicator. As per the physical arrangement, IR rays from IR-LED fall on phototransistor T1 and it conducts to pull up the inputs of NAND gate N1 (used here as an inverter) to logic 1. As a result, the output of gate N2 goes high to make the monostable built around IC2 inactive.

Now, when a vehicle moves through the door, the IR beam is interrupted and the output state of gate N2 changes from high to low state, which triggers the monostable and red LED1 (Rx on) lights up briefly. The output of monostable provides clock pulse to IC3, which changes its output state, with its pin 2 going high and pin 3 going low. As a result, standby indicator green LED2 goes off and relay driver pnp transistor T2 gets forward biased via gate N3 to energise relay RL1. The contacts of relay RL1 can be used to switch indoor and outdoor garage lights.

After parking the vehicle, when the owner moves through the passage to interrupt the light beam once again, the monostable (IC2) is retriggered and the output state of IC3 changes again. This time, the output at pin 2 of IC3 goes low, while the output at its pin 4 goes high. This output resets IC3, after a short delay determined by components R8, C5, and D3. Standby LED2 again lights up.

Before the resetting function, the security system drive schema is activated via gate N4 as follows: During retriggering, both inputs (pins 12 and 13) of gate N4 are at high logic level, taking its output pin 11 low to forward bias pnp transistor T3 via resistor R11. As a result, the SCR (BT169) is triggered via R12 and latched. Now the DC supply is extended to the rest of the schema via the SCR until it is reset by disabling switch S2.

Door switch S3 is N/O type and it opens only when the door is opened. This triggers the regenerative pair of transistors T4 and T5, and relay RL2 is energised (and latched). Contacts of relay RL2 may be connected to an emergency beeper, a high-power signalling device, or an automatic telephone dialer, as desired by the user.

Resistor R7 and capacitor C6 have been deliberately added to delay the switching off of relay RL1. This extends the lamp’s ‘off’ time (for a short duration), allowing the owner to move in while the light is on. The delay can be increased by increasing the value of capacitor C6. (Note. A high-value capacitor will also increase the delay in turning the lights on, which is not desirable.)

This schema costs around Rs 150.


Sourced By: EFY Author Name:  T.K. Hareendran

Thursday, August 21, 2014

Make a Warning Light and Marker Light Wiring diagram Schematic

Make a Warning-light-and-marker-light. This is a led flasher light, A flashing light of high brightness and short duty cycle is often desired to provide maximum visibility and battery life. This necessitates using an output transistor, which can supply the cold filament surge current of the lamp while maintaining a low saturation voltage. The oscillation period and flash duration are determined in the feedback loop, while the use of a photo transistor sensor minimizes sensitivity variations.

Warning Light and Marker Light Circuit Diagram
Warning

Warning