Showing posts with label field. Show all posts
Showing posts with label field. Show all posts
Saturday, September 13, 2014
Remote Field Strength Meter Wiring diagram Schematic
Remote Field Strength Meter Circuit Diagram. This field strength meter consists of a tuned crystal detector producing a dc output voltage from a transmitted signal. The dc voltage is used to shift the frequency of a transmitter of 100-mW power operating at 1650 kHz. The frequency shift is proportional to the received field strength. This unit has a range of several hundred feet and is operated under FCC part 15 rules (100-mW max power into a 2-m-iong antenna between 510 and 1705 kHz).
Remote Field Strength Meter Circuit Diagram
Friday, September 5, 2014
Simple Electromagnetic Field Detector Schematic
This schema is sensitive to low frequency electromagnetic radiation and will detect for example hidden wiring or the field that encompasses a transformer. Pickup is by a radial type inductor, used as a probe which responds well to low frequency changing magnetic and electric fields. Ordinary headphones are used to for detection. The field that surrounds a transformer is heard as a 50 or 60Hz buzz. The schema is below:-
Electromagnetic Field Detector Circuit Diagram
Notes:
I threaded a length of screened cable through an old pen tube and soldered the ends to a radial type can inductor. I used 1mH. The inductor fitted snugly into the pen tube. The opposite end of the cable connects to the input of the op-amp. Any op-amp should work here, possibly better results may be achieved with a low noise FET type such as the LF351. The 2M2 potentiometer acts as a gain control and the output is a pair of headphones. Stereo types can be used if they are wired as mono. I used an 8 ohm type, but the schema should work equally well with higher impedance types. The probe (shown below) may be connected via screened cable and a 3.5mm stereo plug and socket.
Detection:
The sensitivity of this schema is good. Mains wiring buried an inch in plaster can be detected with precision. A small load on the electric supply is all that is needed; a 20 watt desk lamp or similar will suffice. The hum field surrounding a transformer can be detected oat over 7 inches. Domestic appliances such as videos and alarm clocks all produce interference which can be heard with the probe. The electric field surrounding a loudspeaker or earpiece can also be heard. Try lifting a telephone and place the probe near the earpiece. A telephone pickup coil can be used in place of the inductor if desired. I will make an improved version of this schema with a meter output later.
Monday, August 25, 2014
Field strength meter
Here is a handy field strength meter that can be used to check the strength of AM radio signals.The schema is a very useful for those who assemble radio transmitters(especially in the tuning of the final stage for maximum range).
The schema is essentially some sort of a AM receiver it self. The capacitor C3 and inductor L1 forms a tuned schema to receive a particular frequency(the frequency of your transmitter).The diode D1 detects the signal and applies to the base of transistor Q1 (MPSA 18).The collector current of the Q1 will be proportional to the strength of this signal and will be shown in the meter M1.In result the meter reading will be a measure of the strength of the signal (of the tuned frequency) falling on the antenna.
Notes.
* The C3 must be varied to tune in to the frequency of your transmitter.For that,keep the antenna of meter schema close to the antenna of your transmitter and adjust C3 to get a maximum reading on meter M1.
* Now the meter is tuned to your frequency.
* In order to tune your transmitter for a maximum range, place the meter schema some place near to the transmitter and adjust the transmitters tuning elements.Maximum range setting will at the point where the meter shows full deflection.
* Power the schema using a 9v battery.
* The antenna can be a 15 cm long Copper wire.
* The transistor Q1 can be any high gain NPN RF transistor.
* Switch S1 is used as a power switch.Keep this switch OFF when schema is not in use to save battery life
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