Scheme for preparing a charging device for a battery from a transformer.

submit / Golovna

Basic functionality The problem of the battery is now known to many car enthusiasts. Reasonable nutrition immediately comes to mind: “What should I charge it with?” The message is simple: “Come to the store urgently.” charger " It’s good that the cost of such devices is low, around 500-1000 rubles.

There is another option - choose it yourself car battery charger. Moreover, motorists respect that self-charging is a matter of pride. You can work on your skin. In this article, we will look at the principle of folding charger for batteries

And, okay, let’s try to pick him up. Previously, the TS-180-2 transformer was used on the great old black-and-white tube TVs. You can create it yourself

charger for batteries

.

The overcut that occurs during the preparation of the charging device for the dart should become larger than 2.5 mm2.

The number, because of the insurance coverage of the secondary windings, cannot be changed.

For example, if your circuit is rated for a voltage that exceeds 220, then the output of the transformer will probably be more than 12.8 V.

Place the charging line in series with the battery, turning on a 12-volt lamp with a power rating of 21-60 watts in the negative mode.

An ammeter connected to the charging device will help control the voltage and flow.

The range of indicators is as follows: the voltmeter should be no less than 15 V, and the ammeter should be no less than 10 A.

Apply the battery carefully, avoiding short-term incorrect connection of plus and minus. It is not possible to freeze the darts to check for efficiency for a short time (this is what is called checking for a spark).

When the charging device is connected or removed, it is liable to damage. Use the charger with care and respect, and do not unnecessarily deprive it of use.. Charger

for car battery

I want to make this article awkwardly folded

do-it-yourself charger for a car battery


Even if it’s simple, you can’t take revenge on anything malicious.


The remaining circuit allows you to change the value of the charging circuit, change the voltage on the battery.

If you do not trust the transformer, the function of the struma stabilizer can be placed on an original 12 volt car light bulb.


Charging circuit with a ballast lamp:

Having decided to complete the charging process, we took the TS-160 transformer from a Radian tube TV as a basis, rewinding it to suit our needs, the output was 14 volts at 10 amperes, which allows charging the battery to a high capacity And, including cars.

Housing for charging station

The housing is made of zinc sheet, so we want to make it as simple as possible.

At the back of the case there was an opening for the fan, for greater reliability, having added active cooling, the valves have accumulated, so don’t lie idle.

Then, having started to work on the filling, having screwed on the transformer, the next place was found in stock - KRVS-3510, fortunately there is not much to stock up:

At the front panel, make a hole for the voltmeter, and also screw in a socket for alligator clips.

It turned out exactly what I wanted - simple and reliable.

Basically, this unit is used to charge the battery and supply 12 volt LED strips. Well, in an extreme situation for adjusting automobile redesigns.

And in order to have less overload, after installing a pair of capacitors on the bridge with a lead capacitance of about 5 thousand. mkf. The market is literally filled with new technical innovations. Therefore, adding a charger for the battery, moreover, and the price for such batteries is completely affordable, is not a problem today.

A lot of car enthusiasts still rely on the simplest charging devices to make the most of them.

  • Reduce voltage on all windings.
  • Check what is indicated in the passport, on the case, and check the effectiveness of the product.

  • For the TS-180, two “ficand” wires are taken (they are 6.3 each) and connected in series with a jumper.

  • The result yields the required minimum – 12.6.

Take your place.


For example, based on semi-automatic devices of the D242A series.

You can find them on TV, solder and vikorist. Another option is to buy a ready-made assembly in a store (KBPC10005 or similar; the seller will explain why it is needed). Prepare the radiator.

This is necessary to ensure that the charging area does not overheat.




For diodes, use a fin structure made of aluminum (or aluminum) plates.

It is obviously not right to use such a primitive circuit for charging a car battery.

2017-07-20

But in an important situation, if there is no other solution, you can help out.

Power transformers, TS-160, TS-160-1, TS-160-1, TS-160-2, TS-160-3, TS-160-4, TSSh-160, TSSh-170, TSSh-170-3 .

This series of transformers was produced both on split, strip cores made from steel strips, grade E-320, and on armored cores made from stamped W-like plates USH30x60.All of them were divided and used mainly for the life of television receivers of black-and-white images and consumer radio equipment.It is necessary for mothers to be respectful, so that the data placed here may vary

You probably have transformers,

In connection with changes in technical specifications, distilleries, often other minds and their traces, take only as a basis.
If you need to determine more accurately the number of turns of the windings of your transformer, wind an additional winding with the desired number of turns, measure the voltage on it and, after removing the data, inspect your transformer.
Transformators on armored cores, TSSh-160, TSSh-170, TSSh-170-3.

Power transformer TSSh-160, interchangeable with transformers TSSh-170 and TSSh-170-3.
Power transformers TSSh-160 and TSSh-170 are differentiated from the transformer TSSh-170-3 except that the remaining edge winding has only 220 volts, the other edge windings are numbered 1 - 2 and further numbers This is the number of secondary windings number 3, so If instead of the transformer TSSh-160, or TSSh-170, install TSSh-170-3, then up to the TSSh-170-3 pins 3-4, solder the darts to go up to the 7-8 pins for the TSSh-160 and TSSh-170 transformers, Well, that’s it for now with the scheme. The 220 volt limit to the primary winding of transformers TSSh-160 and TSSh-170 is connected to terminals 1 and 6, in which case it is necessary to close terminals 2 and 5 to each other. For the TSSh-170-3 transformer, the 220 volt limit is primary winding, the primary is connected 1 and 2.

Malyunok 1.External look

This diagram of transformers TSSh-160, TSSh-170, TSSh-170-3

Table 1.

Motor data for transformers TSSh-160, TSSh-170, TSSh-170-3.

Transformer type

Core

NN vysnovkov

Number of turns

Brand and bore diameter, mm
Voltage, nom.

1-2
2-3
4-5
5-6
7-8
9-10
11-12
13-14

200
30
30
200
139
242
12,5
12

U
U
U
U
Strum, no.
A
TSSH-160
(TSSh-170)

110
17
17
110
74
130
6,4
6,3

0,7
0,7
0,7
0,7
0,4
0,6
8,5
0,3

PEV-1 0.59

Transformers of this series were intended both for the life of tube television and radio equipment, and for radio equipment mounted on overhead conductor devices.
Up to the primary winding of power transformers, type TS-160 A voltage of 220 volts is connected to terminals 1 and 1", at which terminals 2 and 2 are connected to each other.
For transformers TS-160-2 and TS-160-4, pins 2 and 2" are already structurally connected to each other, and only up to pins 1 and 1" are connected.

Power transformers, TS-160, TSA-160-1, TS-160-1.

Intended for storage in housing units for lamp, lamp-pipe-conductor television and radio equipment.
Transformers, in principle, are the same and interchangeable with each other.

One type of motor is affected by an insignificant voltage difference in the secondary windings.
The TCA transformer is separated from the TC transformers without having windings with aluminum wire.

The primary winding of transformers can be composed of either two sections of 110 volts or 220 volts.
The hemlock winding will have 1-3 wires, 2 wires will be absent.

The 220 volt circuit is connected to the 1-1" terminals. The 3-3" terminals are connected to each other.Malyunok 2.

This diagram of transformers TSSh-160, TSSh-170, TSSh-170-3

Table 1.

Motor data for transformers TSSh-160, TSSh-170, TSSh-170-3.

Transformer type

Core

NN vysnovkov

Number of turns

1-2
2-3
1"-2"
2"-3"
5-6
5"-6"
7-8
7"-8"
9-10
9"-10"
11-12
11"-12"

414
64
414
64
129
129
253
253
27
27
26
26

Transformer diagram TS-160, TS-160-1.
Transformer diagram TS-160, TS-160-1.
Transformer diagram TS-160, TS-160-1.
Transformer diagram TS-160, TS-160-1.
Table 2.
Table 2.
Motor data for transformers TS-160, TS-160-1.
Motor data for transformers TS-160, TS-160-1.
PEL 0.69
PEL 0.69
PEL 0.47
PEL 0.51

110
17
110
17
31
31
64
64
6,5
6,5
6,4
6,4

0,75
0,75
0,75
0,75
0,4
0,4
0,5
0,5
3,5
3,5
0,3
0,3

1-2
2-3
1"-2"
2"-3"
5-6
5"-6"
7-8
7"-8"
9-10
9"-10"
11-12
11"-12"

414
64
414
64
158
158
250
250
26
26
26
26

Transformer diagram TS-160, TS-160-1.
Transformer diagram TS-160, TS-160-1.
Transformer diagram TS-160, TS-160-1.
Transformer diagram TS-160, TS-160-1.
Table 2.
Table 2.
Motor data for transformers TS-160, TS-160-1.
Motor data for transformers TS-160, TS-160-1.
PEL 0.69
PEL 0.69
PEL 1.35
PEL 0.41

110
17
110
17
39
39
61
61
6,4
6,4
6,4
6,4

0,75
0,75
0,75
0,75
0,4
0,4
0,5
0,5
3,5
3,5
0,35
0,35


PEL 0.41
PEL 0.57
PEL 0.57
* - The pin numbers of the TS-160 transformer correspond to the pin numbers of the pressure pins on the transformer frames.
Transformers TS-160 may have a separate contact plate with its own numbering from 1 to 14. The numbering of pins on the contact plate will be different;
1-11-8 - Primary winding (measuring 220 volts 1-8); 11 - midpoint of the primary winding (110+110);
2-6-3 – 33+33 volts (6 – the middle point of the winding);

9-4-10 – 64.5+64.5 volts (4 – the middle point of the winding);

5-12 - roasted 6.3 tbsp.


0.3A;

13-14 - heating 6.4 at 7.5A (two windings 9-10 and 9"-10" connected in parallel)
Power transformer, TS-160-2.

Transformer TS-160-2 is used for supplying air-to-air radio equipment.External view of the transformer TS-160-2, pictures of the baby 3, diagram of the transformer is shown in the picture 4, and the motor data and electrical characteristics are shown in table 3.

Malyunok 3.External appearance of the transformer TS-160-2.

This diagram of transformers TSSh-160, TSSh-170, TSSh-170-3

Table 1.

Motor data for transformers TSSh-160, TSSh-170, TSSh-170-3.

Transformer type

Core

NN vysnovkov

Number of turns

1-2
1"-2"
3-4
3"-4"
5-6
5"-6"
7-8
7"-8"
9-10
9"-10"

414
414
42
42
68
68
75
75
210
210

Malyunok 4.
Malyunok 4.
Diagram of transformer TS-160-2.
Diagram of transformer TS-160-2.
Table 3.
Table 3.
Diagram of transformer TS-160-2.
Diagram of transformer TS-160-2.
Model data of the transformer TS-160-2.
PEV-1 0.69

110
110
10,5
10,5
17,5
17,5
19
19
54
54

0,65
0,65
1,8
1,8
0,6
0,6
1,8
1,8
0,25
0,25

PEV-1 0.95

Power transformer, TS-160-3, similar and interchangeable with transformer TS-150-1.
The primary winding of the transformer can have two windings, for 127 and 220 volts, as in the diagram, images for small 6, and only for 220 volts, - the transformer has two windings Ib and Ib "and windings 3 and 3".

The external appearance of the TS-160-3 transformer is shown in figure 5, the transformer diagram is shown in figure 6, and the motor data and electrical characteristics are shown in table 4.
Malyunok 5.

External appearance of the transformer TS-160-3.
Malyunok 6.

Diagram of transformer TS-160-3.Table 4.

This diagram of transformers TSSh-160, TSSh-170, TSSh-170-3

Table 1.

Motor data for transformers TSSh-160, TSSh-170, TSSh-170-3.

Transformer type

Core

NN vysnovkov

Number of turns

1-2
2-3
1"-2"
2"-3"
4-5
4-6
4-7
4"-5"
4"-6"
4"-7"

362
56
362
56
27
36
46
27
36
46

Motor data for transformers TS-160.
Motor data for transformers TS-160.
Motor data for transformers TS-160.
Motor data for transformers TS-160.
PEV-1 0.56
PEV-1 0.56
PEV-1 0.56
PEV-1 0.56
PEV-1 0.56
PEV-1 1.55

110
17
110
17
7,0
9,5
13,0
7,0
9,5
13,0

0,65
0,65
0,65
0,65
6,0
6,0
6,0
6,0
6,0
6,0

PEV-1 1.55

Power transformer, TS-160-4.
Transformer of specializations, applications for the life of power supply equipment and equipment installed on microcircuits.
Zastosovuvavsya for EOM living blocks.
The transformer core is split, type PL, made from steel stitch E-320, crossbar 20x40x50.

The voltage of the circuit is 220 volts to the primary winding of the transformer, which is connected to windings 1 and 1".
The external appearance of the transformer TS-160-4, pictures are shown in 7, the transformer diagram is shown in 8, and the motor data and electrical characteristics are shown in Table 5.

Malyunok 7.
External appearance of TS-160-4.

Malyunok 8.Diagram of transformer TS-160-4.

This diagram of transformers TSSh-160, TSSh-170, TSSh-170-3

Table 1.

Motor data for transformers TSSh-160, TSSh-170, TSSh-170-3.

Transformer type

Core

NN vysnovkov

Number of turns

1-2
1"-2"
3-4
3"-4"
5-6
5"-6"
7-7"
9-10
9"-10"

414
414
36
36
36
36
75+75
90
90

Motor data for transformers TS-160.
Motor data for transformers TS-160.
Table 5.
Table 5.
Model data of the transformer TS-160-4.
Model data of the transformer TS-160-4.
Model data of the transformer TS-160-4.
PEV-1 1.8
PEV-1 0.64

110
110
9,0
9,0
9,0
9,0
38
24
24

0,7
0,7
7,0
7,0
0,85
0,85
0,85
0,06
0,06

08.10.2014

PEV-1 0.18 PEV-1 0.18 I show you more just a diagram charger for a car battery.


There is nothing special about the scheme, so we raise its confidence.


Statti has a decal


simple options

chargers that can be collected from cobs.
Since I have a fan, for which there is an opening, although the parts don’t get so hot, but to be safe, it wouldn’t bother me.


The front part also has a place for a voltmeter and crocodiles.

After installing the circuit - a transformer, a voltmeter, a fan, the next place to take stock is KRVS-3510.

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