Saturday, February 2, 2013
Wiring switch 6 positions cooker
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| Wiring switch 6 positions cooker |
In electric kitchens, to have heat control uses two or three resistors with suitable rotary switch connects in series or parallel to achieve the exact temperature
More over such a connection shown with three resistors
R1: 950 W 55,68 Ohm
R2: 450 W 117,55 Ohm
R3: 600 W 88,16 Ohm
R: 230 Vac
0: neutral
When resistors are connected in parallel, the total power is the sum of the individual powers.
Connected in series earn the lowest possible power.
On new kitchens there is one setup, there is a resistance to power with analog setting.
Typically the setting takes values ​​from zero to six, but it really is like a thermostat oven.
Sunday, January 27, 2013
Programming example of the small PLC's Siemens LOGO!
Programmable Logic Controllers from the original of which was named PLC, are electronic, primarily circuits - devices with electrical inputs and outputs. We can say that it is a relatively small force computer programmed with its own programming languages.
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| LOGO! from SIEMENS |
The Telemecanique zelio of the group Schneider Electric is another, similar, popular small PLC.
It is ideal to start a familiarity with the PLC and have evolved into power and memory capacity making them ideal for many applications.
The demo of the software program called LOGO! Soft Comfort, is freely available and the only function that has cut is the communication between the PC and the hardware device LOGO! made with a special cable. With LOGO! Soft Comfort can each experiment and as he wants to plan the LOGO! in the screen of his computer at no cost.
Programming can be done from the small screen that has the LOGO! but cumbersome method.
The same data apply to zelio.
We can plan with two "languages" the microcontroller LOGO!.
In function block diagram (FBD), as shown in the example of the first image
or ladder diagram (LAD), as shown in second picture.
From the menu of LOGO! Soft Comfort can turn the program easily from one format to another
| fbd |
| lader program |
Despite
This example shows the implementation of the following logic operation:
{
((If you see a trend in both input 1 and input 2)
or voltage appears at the input 3)
and pressed the up arrow of the logo
Then it turned on the output 1.
}
The environment of LOGO! Soft Comfor has option to emulate the operation of the program, which is very useful for finding errors. From this screen modes the pictures are.
Bottom left in the images appear to be activated by clicking the mouse inputs "up arrow", I1 and I2.
With these conditions exit 1 is activated. The lamp Q1 in bottom left of the image is lit.
The blue line in the simulation indicates that it is logical 0 (no current passes) and the red line to logical 1 (current passes).
The output, depending on the model of the LOGO!, Can be activate contact relay or transistor.
For the name of the program elements used some letters and we can put comments to make it more understandable the circuit. The reviews are in fact very necessary, as an important piece of program documentation.
I come from the initial letter of the word INPUT .
B is the first letter of the word BLOCK.
To exit the letter Q is used as the O, the initial letter of the word OUTPUT is like 0 (zero) and is not used . The Q is what is more like the O so it was chosen.
The & is the symbol for logical AND.
The> = 1 is the symbol for the alternative or.
The exclamation point at the end of the word LOGO! is part of the trademark of Siemens
Monday, January 21, 2013
weekly timer
| electronic weekly timer |
When we want to control the exact time of activation and function of a power consumption that is repeated every week we can use the weekly timer. Similarly there daily timer and rarely monthly timer.
A simple weekly electronic timer shown in the photo.
The minimum period you can turn depends on the individual model. in one in photograph is one minute.
There are also mechanic timer that gets its name from the programming way, with teeth that get on or off and each tooth has a specific duration eg 15 minutes.
The standard is to contain an internal battery to keep time if it drops the power supply.
Bottom right, in this photography is to provide suply at 230 volts and below left is the contact we use for control. The supply voltage varied depending on the model and is electrically isolated (galvanically isolated) from contact consumption.
If we have high power consumption is better to put intermediate relays. The timer in this case controls the armature of the relay and the relay controls the consumption.
Necessarily need intermediate relay if consumption is three phase or consisting of more than two single-phase differential phase.
There are popular in the market timers who come directly to schuko socket and control the consumption of their own place in the socket - outlet.
Double recycle time relay
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| Double recycle time relay |
Sometimes we need to automate one electric - electronic element that makes continuous opening and closing his mark, like a flash, or something similar.
The double time doing just that.
It has, as shown in the photo, two positions for setting the time that the internal relay or transistor, is armed and the other adjust the time that the internal relay is deactivated.
Usually the range is independent for each time, e.g. may function to ON (armed) to select the region from 1 to 10 hours and for operation OFF (off) 0.1 to 1 second. In any case and for as long a duration is armed, the two times continuously rotated simultaneously with the contact.
The operating voltage of the double time is similar to that of other components used in automation. Common values ​​are 230 volts AC and 24 vollts AC or DC.
In the market there are times that can work in all standard voltages (the same) or multifunction time not only double but they and many other time functions.
The Timers that are more accurate but they are basically more expensive.
The numbers usually used for contact operation is 15 (for the common node) and 16/18 for open or closed contact, while arming them A1 and A2 (or B) depending on the manufacturer and the voltage operation.
Sunday, January 20, 2013
inverter circuit
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| inverter circuit |
The three-phase motor, which is the first choice for many applications have their speed directly dependent on the frequency of the power supply.
Everywhere on earth, the frequency is determined and fixed by the provider and can not be selected
The only satisfactory way to test the speed is via inverter.
The inverter "reverses" (invert) the voltage, makes controlled AC rms and frequency.
The technique of creating alternating voltage constant, which is usually selected by the manufacturers of inverters,is the PWM (Phase Width Modulation)
The DC voltage they need is making from the alternating supply with single-phase or three-phase bridge rectifier.
The basic design operating an inverter shown.
As switches data, T1 to T6, used fast response power transistors. The diodes D1 to D6, which are free-flow passages are also fast response and is to protect the transistor.
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| Schneider-phase inverter |
There are in-phase inverter market is small triphasic motors, three-phase inverter and intended for larger motors.
The characterization of single phase or three phase, indicating loading it, if we have a single-phase input voltage of 230 volts for Greece, or three-phase 400 volts. And also identify the maximum rms value of the output voltage can give, ie 230 volts to 400 volts single phase and three phase for.
The operating parameters of the inverter varies with the brand, the size of their power and capabilities and "passed" to memory by either the panel with the display having, or several models, through H / Y.
The main parameters include acceleration time (how many seconds from startup reaches the selected speed - frequency), time delay (in number of seconds the command will stop reaches the minimum allowable frequency before stopping), the minimum and maximum operating frequency , setting a maximum output current and thermal power.
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| Under the lid of inverter |
Because of the way creating the alternating voltage, fragmentation of continuous electronic switches with large frequencies (approximately 5 to 20 KHz selected via parameter) there are unwanted harmonic frequencies as they are called, which are multiples of the frequency of fragmentation.
In motor controlled by inverter there is the disadvantage of unnecessary "movement" of these harmonic currents that generate unwanted heat pipes and can in some cases the energy waste is measurable and relatively large example in large industries.
The cable from the inverter to the motor must be grounded conductive mantle, that is, blentaz, as they say, because the frequencies of the harmonics are such as electromagnetic pulse transmitted by "parasites" in adjacent circuits and certainly not good for man .
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| Three-phase inverter yaskawa brand |
The motor controlled by inverter must have good ventilation at low speeds because there is adequate ventilation by their own cooling fans.
If it works then at low revs must enter separate cooling fan. There are specially designed motor with higher heat dissipation surfaces specifically to be driven by inverter.
Air conditioners with inverter control the speed of the compressor motor freon according to the temperature setting and not the maximum speed of the motor, as it would be if they had the inverter, thus achieving a better result and economy.
Wednesday, January 16, 2013
Example of OMRON CP1E PLC programming using CX programmer
The PLC of OMRON is generally consistent with many capabilities.It has many models with many variations that cover a variety of needs.
The main method is by programming with LADDER language , computer and program CX - programmer, series programs CX - one, sold separately.
DEMO version of the software is free for download and use.
A small model is the OMRON CP1E associated with the H / PC via a single USB cable from where the example of this suspension.
The 0.00 is the word 0 bit 0 and is always input while 100.01 is bit 1 of word 100 which is always output.
In the example the logical process tells to the PLC:
((if the input I 0.00 is 1 or the input I 0.02 is 0) and the input I 0.01 is 1 then the output Q 100.01 becomes 1)
(If input I 0.03 comes 1 the output Q 100.00 becomes restraint 1 (Set))
(If input I 0.04 comes 1 the output Q 100.00 is 0 (Reset))
Continue read[...]
The main method is by programming with LADDER language , computer and program CX - programmer, series programs CX - one, sold separately.
DEMO version of the software is free for download and use.
A small model is the OMRON CP1E associated with the H / PC via a single USB cable from where the example of this suspension.
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Simple example program for the Omron PLC CP1E with Ladder |
The 0.00 is the word 0 bit 0 and is always input while 100.01 is bit 1 of word 100 which is always output.
In the example the logical process tells to the PLC:
((if the input I 0.00 is 1 or the input I 0.02 is 0) and the input I 0.01 is 1 then the output Q 100.01 becomes 1)
(If input I 0.03 comes 1 the output Q 100.00 becomes restraint 1 (Set))
(If input I 0.04 comes 1 the output Q 100.00 is 0 (Reset))
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| end of the program |
High voltage transformer
| High voltage transformer 22000 Volts |
This particular three-phase AC power transformer of the photograph is 800 KVA, 1155 A reference to the output stage. The usual connectivity is the triangle at the entrance of the high voltage and star at the output (400 Volts).
Within the slices, that look like radiators, oil is there for both insulation and cooling the elements of the transformer.
The black wires that go down is the additional grounding that goes on during work on the transformer or the surrounding area.
| Body temperature of the transformer |
The left indicator is the actual temperature.
The red arrow (right) shows the temperature above which thetransformer for safety reasons, stops the operation of "throwing" the switch that controls the supply voltage. If thetemperature exceeds a reference to the black arrow (here is the middle) sounds a warning siren.
The adapter also comes off for low oil level or multiple air bubbles in the oil.
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