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Showing posts with label Mobile. Show all posts

Tuesday, January 1, 2013

GSM Based Energy Meter

Traditional metering method for retrieving the energy data is not convenient and the cost of the data logging systems is high. So this paper presents of design and development of Automatic meter reading (AMR) system. AMR system is a boom for remote monitoring and control domestic energy meter. AMR system give the information of meter reading,power cut, total load used, power disconnect and tempering on request or regularly in particular interval through SMS.This information is being sent and received by concerned energy Provider Company with the help of Global system for mobile communication (GSM) network. Energy provider receives the meter reading within a second without visiting person.AMR minimize the number of traditional visits required by employs of energy Provider Company.
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Sunday, February 5, 2012

Solar Powered Mobile Phone Charger

Solar Powered Mobile Phone Charger
Schematic diagram of solar powered mobile phone battery charger. The circuit is designed to charge the battery from a source with a lower voltage. Do not use it to charge the battery with the same or lower voltage than the voltage which is generated by the solar panel. For proper operation of the circuit necessarily requires the battery. Various models of mobile phones have different requirements to the charge, and this circuit might not work well with all phone types.
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Friday, January 13, 2012

Incoming Call Indicator

Mobile Incoming Call Indicator or Detector

This circuit can be used to escape from the nuisance of mobile phone rings when you are at home. This circuit will give a visual indication if placed near a mobile phone even if the ringer is deactivated.
When a call is coming to the mobile phone, the transmitter inside it becomes activated. The frequency of the transmitter is around 900MHz.The coil L1 picks up these oscillations by induction and feds it to the base of Q1. This makes the transistor Q1 activated.Since the Collector of Q1 is connected to the pin 2 of IC1 (NE555)
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Monday, August 1, 2011

MOBILE BUG



This handy, pocket-size mobile transmission detector can sense the presence of an activated mobile phone from a distance of oneand-a-half metres. So it can be used to prevent use of mobile phones in examination halls, confidential rooms,etc. It is also useful for detecting the use of mobile phone for spying and unauthorised video transmission.
The circuit can detect both the incoming and outgoing calls, SMS and video transmission even if the mobile phone is kept in the silent mode. The moment the bug detects RF transmission signal from an activated mobile phone, it starts sounding a beep alarm and the LED blinks. The alarm continues until the signal transmission ceases.
An ordinary RF detector using tuned LC circuits is not suitable for detecting signals in the GHz frequency band used in mobile phones. The transmission frequency of mobile phones ranges from 0.9 to 3 GHz with a wavelength of 3.3 to 10 cm. So a circuit detecting gigahertz signals is required for a mobile bug.
Here the circuit uses a 0.22µF disk capacitor (C3) to capture the RF signals from the mobile phone. The lead length of the capacitor is fixed as 18 mm with a spacing of 8 mm between the leads to get the desired frequency. The disk capacitor along with the leads acts as a small gigahertz loop antenna to collect the RF signals from the mobile phone.Op-amp IC CA3130 (IC1) is used in the circuit as a current-to-voltage converter with capacitor C3 connected between its inverting and non-inverting inputs. It is a CMOS version using gate-protected p-channel MOSFET transistors in the input to provide very high input impedance, very low input current and very high speed of performance.
The output CMOS transistor is capable of swinging the output voltage to within 10 mV of either supply voltage terminal.Capacitor C3 in conjunction with the lead inductance acts as a transmission line that intercepts the signals from the mobile phone. This capacitor creates a field, stores energy and transfers the stored energy in the form of minute current to the inputs of IC1.This will upset the balanced input of IC1 and convert the current into the corresponding output voltage.
Capacitor C4 along with high-value resistor R1 keeps the non-inverting input stable for easy swing of the output to high state. Resistor R2 provides the discharge path for capacitor C4.Feedback resistor R3 makes the inverting input high when the output becomes high. Capacitor C5 (47pF) is connected across ‘strobe’ (pin 8) and ‘null’ inputs (pin 1) of IC1 for phase compensation and gain control to optimise the frequency response.When the mobile phone signal is detected by C3, the output of IC1 becomes high and low alternately according to the frequency of the signal as indicated by LED1. This triggers monostable timer IC2 through capacitor C7. Capacitor C6 maintains the base bias of transistor T1 for fast switching action. The low-value timing components R6 and C9 produce very short time delay to avoid audio nuisance.
Assemble the circuit on a generalpurpose PCB as compact as possible and enclose in a small box like junk mobile case. As mentioned earlier, capacitor C3 should have a lead length of 18 mm with lead spacing of 8 mm.Carefully solder the capacitor in standing position with equal spacing of the leads. The response can be optimised by trimming the lead length of C3 for the desired frequency. You may use a short telescopic type antenna.Use the miniature 12V battery of a remote control and a small buzzer to make the gadget pocket-size. The unit will give the warning indication if someone uses mobile phone within a radius of 1.5 metres.

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Saturday, December 18, 2010

Cell Phone Detector

This is a mobile phone sniffer circuit that can detect the signals being used in the GSM (Global System for Mobile Communication) band at about 900 MHz.Since the signals are digitally encoded, it can detect only the signal activity,not the speech or the message contents. A headphone is used to hear the detected signals.
There are two separate detector units.Every detector unit consists of a dipole antenna,a choke and a diode.The antenna receives the GSM signals in media.Then a small amount of charge is induced in the choke.The diode demodulates the signal and finishes detecting.The diodes must be schottky diodes or germanium diodes.Since the forward voltage of a silisium diode is high,it won't give a sufficient result in this circuit.LM358 amplifies the received signal.It contains two separate op-amps that are supplied by a common power source.R3 and R7 resistors determine the gain of the amplifiers.When the resistor values are greater than 10M then the noise level increases.If they are small like about 100k,this time it becomes harder to hear the signal.
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Thursday, December 2, 2010

Cellphone Operated Land Rover

Conventionally,wireless-controlled robots use RF circuits,which have the drawbacks of limited working range,limited frequency range and limited control.Use of a mobile phone for robotic control can overcome these limitations.It provides the advantages of robust control,working range as large as the coverage area of the service provider,no interference with other controllers and up to twelve controls.
Although the appearance and capabilities of robots vary vastly,all robots share the features of a mechanical,movable structure under some form of control.The control of robot involves three distinct phases: perception,processing and action.Generally,the preceptors are sensors mounted on the robot,processing is done by the on-board microcontroller or processor and the task (action) is performed using motors or with some other actuators.
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Tuesday, November 23, 2010

USB Single Cell LiPoly Charger

Lithium Polymer Batteries are a very common source of power today.Many electronics gadgets have one inside,and they have some reasonable features.we bought great batteries,with different sizes and capacities for electronics projects.
USB Single Cell LiPoly Charger
So long using this batteries,coming the problem: charge them.
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Friday, November 12, 2010

Flashes a LED when detecting an incoming call Powered by one 1.5V cell

This circuit was designed to detect when a call is incoming in a cellular phone (even when the calling tone of the device is switched-off) by means of a flashing LED.
The device must be placed a few centimeters from the cellular phone, so its sensor coil L1 can detect the field emitted by the phone receiver during an incoming call.
Flashes a LED when detecting an incoming call Powered by one 1.5V cell

Circuit operation:

The signal detected by the sensor coil is amplified by transistor Q1 and drives the monostable input pin of IC1.The IC's output voltage is doubled by C2 & D2 in order to drive the high-efficiency ultra-bright LED at a suitable peak-voltage.
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Friday, September 24, 2010

SIM Card Reader Part-2

In First Tutorial We Create a Hardware For Sim Card Reader,Now We Learn How To Use It.

Inserting SIM cards:

Inserting the SIM card is fairly straight-forward.First verify that any cables and/or batteries are disconnected.This is the safest way to insert and remove cards.
SIM Card Reader Part-2
Slide the holder away from the power LED (look for the OPEN-> indication on the card holder), the holder will pop open.
SIM Card Reader Part-2
Slide the SIM card in so that the contacts face up and the notched corner is on the bottom. The holder is designed so that cards can't be placed backwards.
SIM Card Reader Part-2
To remove a SIM card, disconnect all power and cables, then reverse the steps.
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Tuesday, September 21, 2010

SIM Card Reader Part-1

sim card reader kit

Overview:

This project details how to build a Smart/SIM card reader/writer for experimentation and investigation of SIM & Smart cards.Once the reader design is built, the open source software can be used to read from and write to the card. Together they can be used to backup/restore stored SIM card data, recover deleted SMS's and phone contacts, examine the last phone numbers dialed, etc.
In this Tutorial we create a sim card reader kit.
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