In detail: fubag in 160 DIY repair from a real master for the site my.housecope.com.
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Posts: 503
The Fubag in160 is similar to the GYSMI 161 circuitry.
I continue to repair IN160, the NCP1055 microcircuit was replaced from another batch, dead transistors Q11S02 = Q11S01 = BSR14, replacement from a donor, dead optocouplers U12X01, U41X01. The duty room has started up, the fan is spinning. The S17LITE05 processor does not issue a PWM signal, therefore the power section does not start. I took off the force, unsoldered the comb, I did not find any broken elements. Does anyone have a power section diagram?
S17LITE05 was thrown from the donor, there are no changes, not the fact that it is whole.
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Posts: 1960
Basically, devices with defective microcircuits do not react in any way to attempts to turn on, but there were rare cases when Fubag IN160 inverter shutdown with warm-up, after a few seconds it turned on, then turned off again, and clicked. In this case, it turned out to check the microcircuit by turning on the device and, while clicking, gently leaning a cotton swab moistened with alcohol against it, the clicking immediately stopped and the inverter worked normally until the alcohol dried out.
Sometimes, after opening the device and external examination, such defects of the NCP1055B microcircuit are visible, one might say, with the naked eye.
Often the microcircuit breaks down, by itself, without affecting the vital surrounding elements. Something she has personal problems with the tightness of the case. In such cases, it is sufficient to replace only the microcircuit. We will consider this option.
First of all, we will clear the place from the killed microcircuit.
It makes no sense to put it in the SOT-223 case again, since they are unreliable. Better to somehow contrive. and receive the FEATHER BIRD. no set the microcircuit to DIP-8.
Video (click to play).
Comparing the conclusions of this microcircuit by the datasheet, we bend them in this way.
If everything is done correctly and the surrounding components are intact, which is better to be sure by using the circuit in advance and checking them, then the device turns on immediately and works great.
On the forums, you can find options for replacing the NCP1055B with the TNY268 with a slight alteration of the circuit. remont22 Posted 02 April 2011 - 01:57 PWM NCP1055P100. From another forum. I fixed another deadhead, with an "improved" duty feeder on the NCP1055 that explodes all the time. In general, this product can be exchanged for a TNY268 in a DIP-8 package. I soldered it onto a small breadboard, and connected it to the circuit with short conductors. How to do this is clear from the comparison of the documentation for these 2 mikruhi. The bypass kander (10mk) is changed to 0.1mk.A source.
Which option to choose is at your discretion.
Attention! Be careful when repairing the welding inverter with your own hands, the responsibility lies with you.
Repair of welding inverters from Fubag and other manufacturers.
Welding inverters Fubag often brought in for repair with accompanying comments - “turns on but does not cook" or "works but no current“.
These models have a very peculiar design of the power unit.
In most cases, the racks coming from the secondary winding of the power transformer burn out. In this case, the device stops cooking, as they say “no current“.
So in order for the current to appear, it is necessary to restore the connection of the rack to the power unit board, in other words, to solder it.
It's easier to say, and a little harder to do.
Firstly armed with this gadget: Glowing Soldering Iron.
We unsolder the board from the power unit.
Now we have gained access to all the torn off and burnt-out racks, we can proceed to the restoration.
The Fubag inverter restored in this way can still serve its owner.
Attention! To avoid complications when repairing a welding inverter with your own hands - be careful, all responsibility is on you.
Repair of welding inverters from Fubag and other manufacturers.
More on the topic:
Repair of welding inverter FUBAG IN130
Frying FUBAG - grill for inverters
Repair of the welding inverter GYSMI 131
Repair of the welding inverter FUBAG IN160 [1]
Repair of welding inverter GYSMI 145
2. diggerweb (14.06.2015 17:37) It depends on how it burned out. This is the Fubag IN 190 power unit.
The area under the pillar of the power unit burned out. The white layer under the foil is the intact heat-conducting coating, the dark area is burnt down to the radiator.
The burnout area is smeared with transparent silicone and a piece of mica is glued on top. Silicone is a common sealant, it does not burn or melt from high temperatures when we solder the rack. I used the silicone that comes with the repair kit for restore TV remotes, Something like that.
After all this has dried to the surviving foil, we solder a copper patch and a stand to it. The transistor had to be moved a little, since the space allowed.
And this is Fubag IN 160, here the situation is hopeless - the heat-conducting layer burned out not only under the rack but also under the transistors, this is already in the trash.
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City: Oryol
Name: ROMAN
Post has been editedROMAN-WELDER on: 30 March 2014 - 11:55
Members
1803 posts
City: Nizhny Novgorod
Name: Alexey
tehsvar (30 March 2014 - 16:53) wrote:
Add what is the denomination of the green resistor, N55B burned out and burst
The manifestation of a malfunction according to the owners: does not work
What preceded the breakdown: suddenly, banged during work, repairs in a third-party SC and short-term work, plugged into an outlet clicked and stopped working
The following problems have been identified at various times: malfunction of the rectifier circuits of the welding current. malfunction of the power supply circuit of the primary circuits of the inverter; malfunction of the welding current circuits; malfunction of the welding current rectifier. malfunction of the current adjustment potentiometer; malfunction of the main board; malfunction of the power supply circuits of the power section control circuit;
Work performed: repair of welding current rectifier circuits; repair of the control circuit of the power unit; fan replacement; repair of power supply circuits;
disassembly. dust cleaning. disconnection of boards. replacement of diodes soldering racks. replacement of power outlets. connection of boards. filling with varnish. assembly. examination.
disassembly. cleaning from dust and dirt. separation of boards. assembly. filling with varnish. test at the stand.
potentiometer knob
disassembly. cleaning. replacing a ceramic resistor with two in series. replacement mic-we ncp1055. replacement of a 24v 0 / 3a cooler.
the apparatus is tested with a ballast and an electrode.
replaced 1 diode, fan, in total 5 racks were soldered - I separated the board 2 times and soldered
check on the ballast and on the welding table.
disassembly. cleaning. ncp replacement. resistor replacement. check on the ballast and on the welding table.
assembly.
replaced by:
resistor 47ohm 5w
ncp1055
filled with varnish
on ballast norms, the electrode burned.
diodes stth 4
2 pcs. from a donor.
disassembly. cleaning. installation of diodes and soldering of the control board.
check on the ballast and on the welding table.
disassembly. identification of malfunctions. rectifier malfunction.
assembly. ballast check. 140 a. check on the welding table.
replacement diode stth 2003
assembly. ballast check. check on the welding table.
replacement
replacement ims ncp1055
5w47om resistor replacement
output diodes for replacement. repair of a network cable.
igbt replacement-1pc
replacement ncp1055
filter capacitor replacement
preventive cleaning, dismantling-installation of the unit with replacement of the capacitor of the mains filter and restoration of the burnt seal
elimination of the closure of the tracks along the UPS + 5v circuit, replacement of two transistors for switching on the relay and replacement of the charging resistor
check on ballast and welding table
no limitation (replacement of the current regulator with a switch)
replacement of the current regulator with a switch
In this section, practical cases of repair from our service center
Be careful! The information provided should not be taken as a guide to action, since in the event of an attempt to repair complex electronic devices by unqualified personnel, various negative consequences may occur.
Today the stores offer a wide range of inverter welding machines. One of the most popular is the inverter in 160 fubag scheme.
This device is a single-phase welding inverter, suitable for carrying and ventilation.
The presented machine produces welding using electrodes and direct current.
With this welding machine, you can weld all kinds of electrodes from rutile to stainless steel.
As for the voltage required for the operation of the tool, it is 220 volts.
In order for the device to perform its direct functions, it must be connected to a 16, 20 or 25 A socket with a voltage of 220 volts.
Then you should attach the earth clamp and the electric holder to the inverter, guided by the information about the polarity, which corresponds to the type of electrode used.
The device will turn on the moment the potentiometer is set to the required current.
The scheme - inverter in 160 fubag can work in two modes - MMA and TIG. When applying the first mode, do not forget to follow the existing welding rules.
In addition, do not turn off the device immediately after stopping welding, leave it on in order to allow it to cool sufficiently.
When the yellow indicator lights up, it means that the thermal protection has tripped. Please note that the cooling period for the tool is approximately 5 minutes.
When using TIG mode, connect the clamp of the earth cable to the socket with positive polarity and insert the valve torch into the socket with negative polarity.
Then connect the gas hose from the cylinder to the tool and set the required pressure. After that, proceed to adjust the desired intensity using the potentiometer.
Remember that during the operation of the welding machine, the inverter in 160 fubag diagram cannot be viewed at work. Certain safety rules must be followed.
Always wear protective clothing, mask or goggles and other protective equipment when using the tool to avoid damage to skin and eyes.
In addition, do not under any circumstances come into contact with exposed inverter cables that carry current, as well as with the electric holder and the surface to be welded.
Moreover, do not allow contact with water while using the tool, as well as fumes and gases generated during the welding process, as they can harm your health.
Among other things, take care not only of your own safety, but also of the safety of those around you, so make sure that there are no other people on the work site.
These are basic safety rules. You can familiarize yourself with all existing standards in more detail by carefully studying the instructions for this welding machine.
Low-cost models of welding inverters are distinguished by a limited period of uninterrupted operation and a rather narrow specification of currents. Therefore, when choosing such a welding machine, it is necessary to weigh the pros and cons. Consider a model from the German manufacturer Fubag IN 160.
Fubag IN 160 refers to budget single-phase inverters. Hence, it is suitable for working with cast iron and low carbon metals. Domestic technical data sheets indicate that the apparatus cooks galvanized steel and alloy steels; in practice, the seam is far from ideal. Therefore, it is better not to experiment.
The main problem of the designers during the creation of the device was to reduce the weight and dimensions. The resulting inverter is the smallest in the entire range. This is convenient for high-altitude work.
The manufacturer tried to provide the most multifunctional device for a minimum of funds. In addition to classical welding, the possibility of argon-arc welding is provided, there is a HOT-START function, which simplifies the occurrence of an arc. The ANTI STICK function is responsible for preventing the electrode from sticking to metal.
For the convenience of work, a visual display is installed that shows the current strength. There are warning indicators.
The face shield is the most interesting accessory in the package. It is equipped with an electronically controlled liquid crystal display. Darkening occurs only at the moment the arc occurs. Therefore, you do not need to constantly take off and put on the mask. All electronics are powered by a solar panel.
The price ranges from $ 300 to $ 350.
It is impossible to draw a conclusion based only on reviews, so we will carefully dwell on the capabilities of the inverter:
operating voltage - 220 V,
current strength - 10-160 A,
uninterrupted operating time of 6 minutes at a current strength of 160 A,
diameter of electrodes - 1.6-4 mm,
dimensions - 42x17x37 cm,
weight - 4.2 kg, with additional accessories - 6.3 kg,
idle running of the transformer - 75 V,
protection - IP 21.
If everything is clear with the main characteristics, then let's talk about the protection class in more detail. IP marking is a uniform worldwide standard. The first number means protection against mechanical stress, the second - against water penetration. Given the sophistication of the Fubag IN 160 at a relatively inexpensive cost, it is obvious that the manufacturer should have saved money. The second class of mechanical protection means that the main working elements of the inverter are protected from the effects of objects with a diameter of 12 mm and more. The first class of moisture protection means that the device will withstand several vertical drops, therefore, you need to work in well-ventilated rooms, away from water sources.
inverter housing,
holder,
power cable,
grounding cable,
carrying strap,
case for transportation,
mask.
It should be noted right away that the cables are very short, both power and ground. Therefore, they either have to be replaced, or a certain equipment upgrade must be carried out. Another major problem is the lack of a fuse. It will be solved by using an extension cord with automatic shutdown. It is better to set the RCD at 25 A, standard 16 A will not withstand and in case of overheating of the device or a strong voltage surge, the coils of the inverter will burn out to the ground.
after assembly, the power cable is connected to the mains,
the device is started by the start button, it also regulates the current strength,
It is necessary to turn on the inverter only once and until all the work is completed, the constant on-off of the device leads to a quick breakdown of the regulator.
select the mode, conventional or argon welding,
install and fix the appropriate electrode,
install grounding,
try out the arc,
make a seam,
let the seam cool down,
knock down the scale.
The average welding current is 115-125 A, in this mode the Fubag IN 160 inverter works for 10-12 minutes. After that, the device must cool down without fail. In summer it is at least 15 minutes, in winter 5-7 minutes. The device must cool naturally, no fans, air conditioners and even more extravagant means can be used.
The Fubag IN 160 inverter welding machine is widely used in construction for the repair and installation of structures made of cast iron, stainless, medium and low carbon steel. This is an average in performance and price inverter with a current of 10–160 A. Long-term operation with overloads can lead to a breakdown of the device. If your inverter is damaged, do not wait for its complete failure or accidents at the construction site, order the repair of welding equipment.
The main reasons why Fubag IN 160 may require repair:
Voltage drops in the power supply network.
Failure of the central microcircuit and other electronic components.
Lack of regular preventative maintenance.
Incorrect operation: improper use, faulty condition, incorrect current selection.
Looseness of contacts. Damage to the cable.
The Welding Zone company will carry out free diagnostics of malfunctions and repair the Fubag IN 160 welding machine. Our masters are experienced professionals who will detect any breakdown and offer the best in terms of time and cost option for repairing an inverter welding machine. Most of the spare parts needed for repairs are in stock.If the part you need is not currently in stock, we can quickly order everything you need to repair inverter welding machines from reliable suppliers. Very often, after a repair, the device works better and longer than before.
If your welding inverter is out of order, please contact our Fubag service center. We accept requests for repairs by phone: +7 (495) 215-17-22 around the clock, seven days a week. You can also come to our service center in Moscow at the address: Volgogradskiy prospect, 125 or place an application on the website. We carry out warranty and post-warranty repairs with the preparation of all the necessary documents.
The company "Zona-Svarki.rf" invites you to visit our stand at the International Exhibition Weldex 2018! We provide welding equipment and plasma cutters CEBORA. The program includes a static exhibition of the best devices and demonstrations. Waiting for you.
The company Zona-Svarki.RF together with the welders forum WebSvarka has completed the summer competition "Summer Season". The competition included two nominations: technical and artistic. But there were so many works that a separate winner was singled out, who received the "Audience Award". The choice from the presented works was very difficult. Each master showed "aerobatics" in the possession of a welding machine, and each work was distinguished by its elegance and laboriousness. Zona-Welding.RF thanks everyone who took part in the competition. All winners received well-deserved awards. Follow our news so as not to miss the next competition!
Dear Clients! Our company is constantly developing for you. And we have good news. We received the authorization of the service center from SVAROG Group of Companies. Now you can contact us with warranty and non-warranty Svarog welding machines.
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Group: Users Posts: 49 Registration: 21.4.2011 User #: 22548
initially there was a burnt power supply. it provided 5 volts for powering the microcontroller and 24 volts for relays and ventilation. having supplied power from an external source, the LED lit up, the cooler turned on and the relay worked. because the voltage remained on the capacitors, then the entire inverter started working. having measured the voltage at the output, I accidentally shorted +310 volts from the capacitors (there were about 100 left) to the power supply of the PWM. got a dead 3845, L6368 and apparently a microcontroller. Now, when power is applied to the mk, both LEDs light up regardless of the position of the variable resistor with the power switch. replaced 3845 and L6368 and small things. the shim started up. I am attaching photos. the strength is whole. now, when power is applied to the PWM and to the input of the inverter, there is voltage at the output, but the current is not regulated. Because the firmware on the mk I will hardly find it, then I want to bypass it altogether. As I understand it, it controls the output current, blocks the PWM when the temperature rises and controls the cooler with a soft charging relay. the values of the resistances and the zener diode (apparently) are also of interest (circled in red). also confuses the fact that the impulses from the L6368 are different. I will attach oscillograms later
Post has been edited hhh – 12.1.2012, 8:45
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Rummaged in the internet on one forum, I found that the matter could be in the firmware or calibration. I sin on it for now. Disassemble again, oh, how not a hunt! And so, when soldering the bridge from the main board, I damaged one track - I had to restore it with a MGTF wire. The design is just hellish) Please help, ipaSoft.
1) Check this contact very well. Pay attention if there is no burnout of the interlayer bushings in the printed circuit board. 2) Connect a 100 W light bulb as a load, only apply the load after turning on the device, and not before. 3) If the voltage subsided, or rather, decreased to 0, then the contact between the rack and the board is bad. Connect the lamp to the rack. Repeat measurements. 4) If the voltage sags, climb the oscillator onto the motherboard and check the signal on L6386: between 8 and 9 feet, between 12 and 13 feet. a) If there are pulses, then this is not firmware or calibration. Two options b) Both output diodes are broken. You can check with a tester. c) The amplifier stage from the complementary pair on the module is faulty (decoupling L6386 with MOSFET keys)
Further, a huge complex branch for further troubleshooting of this machine. But I will not dump everything, I will listen to your measurements.
The popularity of welding inverters is due to their versatility, light weight, mobility and sufficient power. The Fubag inverter, which is produced by a German company, stands out against the general background. It is used for construction, installation and repair work, for welding various grades of steel and cast iron.
The fubag features are resistance to power surges, excellent functionality of the device and European quality. All models of this brand are equipped with the latest microprocessors, which are responsible for the trouble-free operation of all components of the inverter. Power supply for fubag inverters - 220 V.
There are several varieties of fubag inverter models, differing in their size and main characteristics.
Welding inverter Fubag in 160
This single phase inverter has dimensions of 420 x 170 x 370 mm. It belongs to the category of medium-sized devices, although according to its data it is able to compete with more powerful and dimensional models. Uses basic and rutile electrodes with a maximum diameter of 4 mm. The welding current is in the range of 10-160 A.
Welding inverter fubag in 163
Its dimensions are 130 x 170 x 280 mm. This is a fairly compact device with a power of 3.6 kW. Welding current - 10-160 A. A newer model, which does not have metal spatter during welding. Has a new electronic board and an updated case design. The apparatus uses a new secondary source circuit. Electrodes with a diameter of 4 mm are used.
Welding inverter fubag 200
Able to use electrodes up to 5 mm thick. Its welding current is from 5 to 200 A. The dimensions of the device are 120 x 340 x 240 mm. In the manufacture of this model, the latest IGBT technology is used, which allows you to significantly reduce losses at high voltage and significant current. According to this technology, the elements can operate even at a voltage of 100 V. This model is equipped with reinforced (cable section is 25 mm sq) and extended (3 m) cables.
In the event of a breakdown of the device, which may occur during its use, the repair of the fubag welding inverter allows you to quickly restore its performance.
The main board of the device can be selectively repaired.
Most often, the central microcircuit fails, which is replaced by a similar one without problems.
Replacing the NCP1055B chip.
The pulse power supply unit in the Fubag IN160 welding inverters is built using the NCP1055B microcircuit in the SOT-223 package and the N55B marking. Here is such a Fubag, assembled on a pcb 63961 board, and got into repair - it does not turn on.
The NCP1055B microcircuit in the SOT-223 package is very unreliable and often fails. Basically, devices with defective microcircuits do not react in any way to attempts to turn on, but there were rare cases when the Fubag IN160 inverter turned off with warming up, after a few seconds it turned on, then turned off again, and clicked. In this case, it turned out to check the microcircuit by turning on the device and, while clicking, gently leaning a cotton swab moistened with alcohol against it, the clicking immediately stopped and the inverter worked normally until the alcohol dried out.
Sometimes, after opening the device and external examination, such defects of the NCP1055B microcircuit are visible, one might say, with the naked eye.
Often the microcircuit breaks down, by itself, without affecting the vital surrounding elements. Something she has personal problems with the tightness of the case. In such cases, it is sufficient to replace only the microcircuit. We will consider this option.
First of all, we will clear the place from the killed microcircuit.
The next step is to look at the datasheet for the NCP1055B microcircuit. According to the datasheet, we see that it is produced in two versions - in the SOT-223 and DIP-8 package. It makes no sense to put it in the SOT-223 case again, since they are unreliable. Better to somehow contrive. and receive the FEATHER BIRD. no set the microcircuit to DIP-8.
Comparing the conclusions of this microcircuit by the datasheet, we bend them in this way.
The operating frequency is high, so the shorter the leads, the better. And install the resulting beetle instead of the old microcircuit. If everything is done correctly and the surrounding components are intact, which is better to be sure by using the circuit in advance and checking them, then the device turns on immediately and works great.
On the forums, you can find options for replacing the NCP1055B with the TNY268 with a slight alteration of the circuit.
remont22 Posted on 02 April 2011 - 01:57 PWM NCP1055P100.From another forum.I repaired one more dead man, with an “improved” duty feeder on NCP1055 which constantly explodes. In general, this product can be changed to TNY268 in the DIP-8 case. I soldered it onto a small breadboard, and connected it to the circuit with short conductors. How to do this is clear from the comparison of the documentation for these 2 mikruhi. The bypass kander (10mk) is changed to 0.1mk. A source.
You can also see here and here
Which option to choose is at your discretion.
Download the diagram of the welding inverter Fubag IN 160 pcb 63961.
Attention! Be careful when repairing the welding inverter with your own hands, the responsibility lies with you.
Repair of welding inverters from Fubag and other manufacturers.
Your experience and knowledge of how this welding inverter works, as well as the reviews left by you, will help others to make a choice.
Fubag IN 170 is a popular inverter for TIG and manual arc welding. Light weight, high performance and compact dimensions make it a popular equipment on the construction site and in the auto repair shop. However, long-term continuous operation or storage in high humidity conditions may result in the need for repairs to the Fubag IN 170 welding machine.
The most common causes of malfunctions:
Violation of the rules for storing or working with the tool, exceeding the design loads, incorrect choice of current.
Unstable voltage in the mains due to heavy load on the phase.
Lack of regular cleaning and maintenance. Ingress of metal shavings and dust into the apparatus.
Welding Zone specialists will quickly detect a malfunction due to which your Fubag IN 170 device needs repair, replace boards, microcontrollers and other parts. Equipment diagnostics will be performed free of charge.
If your machine quickly overheats, does not turn on, sparks, makes unusual sounds, do not wait for its complete failure - order a professional repair of the welding machine.We also perform preventive maintenance and diagnostics to identify parts that need replacement. Repairs are covered by a 12 month warranty.
To order a reliable and inexpensive repair of Fubag equipment, contact the Welding Zone. We accept requests for repairs around the clock by calling the hotline: +7 (495) 215-17-22.
You can bring your welding equipment to collection points in Moscow at the addresses: Leningradskiy prospect, 78, building 1; Leninsky prospect, 89 or to the service center at the address: Volgogradsky prospect, 125. We will provide warranty and post-warranty repairs of welding semiautomatic devices, inverters and other welding equipment.
Replacing the NCP1055B chip.
The pulse power supply unit in the Fubag IN160 welding inverters is built using the NCP1055B microcircuit in the SOT-223 package and the N55B marking. Here is such a Fubag, assembled on a pcb 63961 board, and got into repair - it does not turn on.
The NCP1055B microcircuit in the SOT-223 package is very unreliable and often fails.
Basically, devices with defective microcircuits do not react in any way to attempts to turn on, but there were rare cases when the Fubag IN160 inverter turned off with warming up. after a few seconds it turned on, then turned off again, and clicked. In this case, it turned out to check the microcircuit by turning on the device and, while clicking, gently leaning a cotton swab moistened with alcohol against it, the clicking immediately stopped and the inverter worked normally until the alcohol dried out.
Sometimes, after opening the device and external examination, such defects of the NCP1055B microcircuit are visible, one might say, with the naked eye.
Often the microcircuit breaks down, by itself, without affecting the vital surrounding elements. Something she has personal problems with the tightness of the case. In such cases, it is sufficient to replace only the microcircuit. We will consider this option.
First of all, we will clear the place from the killed microcircuit.
The next step is to look at the datasheet for the NCP1055B microcircuit. According to the datasheet, we see that it is produced in two versions - in the SOT-223 and DIP-8 package.
It makes no sense to put it in the SOT-223 case again, since they are unreliable. Better to somehow contrive. and receive the FEATHER BIRD. no set the microcircuit to DIP-8.
Comparing the conclusions of this microcircuit by the datasheet, we bend them in this way.
The operating frequency is high, so the shorter the leads, the better. And install the resulting beetle instead of the old microcircuit.
If everything is done correctly and the surrounding components are intact, which is better to be sure by using the circuit in advance and checking them, then the device turns on immediately and works great.
On the forums, you can find options for replacing the NCP1055B with the TNY268 with a slight alteration of the circuit. remont22 Posted on 02 April 2011 - 01:57 PWM NCP1055P100. From another forum. Repaired one more dead man, with an "improved" duty feeder on NCP1055 which constantly explodes. In general, this product can be changed to TNY268 in the DIP-8 case. I soldered it onto a small breadboard, and connected it to the circuit with short conductors. How to do this is clear from the comparison of the documentation for these 2 mikruhi. The bypass kander (10mk) is changed to 0.1mk. Source.
Which option to choose is at your discretion.
Download the diagram of the welding inverter Fubag IN 160 pcb 63961.
Attention! Be careful when repairing the welding inverter with your own hands, the responsibility lies with you.
Repair of welding inverters from Fubag and other manufacturers.
Your experience and knowledge of how this welding inverter works, as well as the reviews left by you, will help others to make a choice.
2. alexistemdg (07/15/2015 14:52) Be attentive colleagues. bought in advance a non-working micron with warming up goes into a breakdown of generation
Video (click to play).
3.redjo828 (07/30/2015 1:40 PM) Thanks a lot! For the article, however, after replacing it with NCP1055B, the device started but a strong whistle appeared and at the welding outputs 0.003 volts, that is, the device does not cook, noticed that when turned on, there is smoke from a 47k resistor near the relay, you can help with advice. I will be very grateful