Darbo įrankio aprašymas: Litavimo stotelė | LCD ekranas | autosleep | T12 75 W (YT-82462)

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Litavimo stotelė | LCD ekranas | autosleep | T12 75 W (YT-82462)

Litavimo stotelė | LCD ekranas | autosleep | T12 75 W (YT-82462)
Litavimo stotelė | LCD ekranas | autosleep | T12 75 W (YT-82462)
10 (10/10)01
88,77 €
Prekės kodas: YT-82462

Aprašymas:

Gamintojas:
YATOYATO
SOLDERING STATION FOR T12 TIP WITH LCD DISPLAY WITH AUTOSLEEP FUNCTION, 75W POWER
YT-82462
Mark
Yato
Symbol
YT-82462
Series
GRE
Power
75 W
Tension
110-240 V a.c.
Frequency
50-60 Hz
Operating temperature
90-480 ˚C
Temperature stability
±2 ˚C
Arrowhead type
T12-JL02, T12-BCM2, T12-K, T2-D16
Warm-up time
6 pp
Functions
temperature stabilization, temperature calibration (range -99 ~ +99˚C), device hibernation, automatic shutdown
Temperature setting memory
x3
Fuse
6 A / 250 V, type F6AL250V
Switch
Yes
Automatic shutdown
20~999 pp
Display type
LCD
Voltage supplying the soldering iron
24V d.c.
Tip tension - ground
˂ 2 mV
Tip resistance - ground
˂ 2 Ω
Cable length
1.05 m
Electrical insulation class
AND
Mass
0.47kg
Set contents
soldering station, soldering tip x4 (T12-ILS, T12-JL02, T12-BCM2, T12-K), stand for the butt with a pocket for a cleaner for brass chip tips,
Contents of the set cont.
rubber handle for quick replacement of heated tips

YT-82462 soldering station with LCD display, temperature regulation and calibration, auto sleep function and three memory channels. Works with T12 type tips. T12 tips are a combination of a resistance wire embedded in ceramic, a temperature sensor and a high-quality soldering tip. The integrated tip design enables express heating and very fast temperature stabilization.

Heating the tip to a temperature of 350°C takes only 6 seconds. The soldering iron allows for quick tip replacement, is very pleasant to the touch and has one of the shortest grip distances from the handle to the soldering point, which is useful when performing precise work.

power: 75W
heater operating voltage: 24V
temperature range: 90 - 480°C
temperature accuracy: +- 2°C
temperature stabilization
temperature calibration
adjustable auto sleep function: from 20 to 999 seconds
on-off button on the front
The LCD display informs us about:

the set and then the actual tip temperature
currently used power of the device in the form of a bar graph
counter for the auto sleep function
temperature calibration settings
auto sleep settings
switching the device to auto sleep mode
turning off the device using the button on the front panel
Soldering iron:

tip type: T12
quick tip replacement
small distance between the handle and the soldering point: the tip protrudes only 45 mm
high temperature resistant flexible cable
cable length: 1.05 m
weight of the flask with the tip + cable: about 65 g
Accessories included:

four soldering tips: T12-ILS, T12-JL02, T12-BCM2, T12-K
stock stand with a pocket for a brass shavings tip cleaner
rubber handle for quick replacement of heated tips
T12 arrowheads: STRENGTHS

One of the greatest advantages of tips with an integrated design is the elimination of the problem of air resistance between the soldering tip and the temperature sensor. The temperature sensor in T12 tips is connected in series with the heater* and is located in the soldering tip as close to its tip as possible. Therefore, any change in temperature, e.g. when soldering large elements, is almost immediately read by the temperature stabilization function, which in real time will adjust the power of the device to maintain the set setting.**

Another advantage appreciated by many users is the speed of changing the soldering tip, and even the possibility of replacing it without having to wait for the tip to cool down. To do this, simply use a high-temperature-resistant material to grab the heated tip and slide it out of the soldering iron.

FUNCTION DESCRIPTION

Temperature stabilization allows you to maintain the set temperature of the tip in various conditions of heat demand to make a proper soldering joint. The tip, depending on the size of the soldered element and the soldering field, gives off more or less heat, and the device, using the built-in tip temperature sensor, constantly reads its real value and compares it to the set one, then increases or decreases power consumption as needed to maintain the set temperature.

Temperature calibration allows you to calibrate the temperature sensor built into the tip. Depending on the quality, size and degree of wear of the tip, a demanding user can calibrate the sensor himself using a temperature measuring device. Correct reading not only positively affects temperature stabilization but also helps an experienced user avoid the error of overheating the connection in PCB boards.

Auto sleep/hibernation of the device allows the station to go into standby mode. Thanks to this, we avoid unnecessary heating of the tip, which significantly extends its life.

Settings memory allows you to save your favorite temperature settings to three memory channels. After saving, the operator can quickly switch to the previously saved settings.
ATTENTION

*The temperature sensor in the T12 tips is connected in series with the resistance wire/heater, and communication with the control system takes place via cables powering the heater. Typically, in this type of construction, a special control system cuts off the power to the heater for less than a millisecond, reads the temperature of the tip of the tip and continuously adjusts the power consumption parameters depending on the need. This is a cyclical process and is not noticeable during normal operation, and its effect is to stabilize the temperature of the tip of the tip.

**For comparison, temperature stabilization in devices with a flask design with a heater and a tip placed on it is delayed by the effect of air resistance. The air in the free space between the tip and the heater must also heat up or cool down, which further prolongs the response of the temperature sensor built into the heater. Stabilization, especially in older designs where the temperature sensor was built into the center of the heating element, worked slowly. Modern flasks, such as those in the YT-82456, YT-82458 and YT-82459 devices, have new generation heaters with a special shape and a temperature sensor located at its end. Therefore, the tip adheres well to the heater, and the influence of air resistance on the stabilization function is limited to a minimum.

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