Heating step and attention point using electric constant temperature incubator

Connect the power to the thermostatic incubator and turn the power switch to "1". Open the door, put the culture into the box, close the glass door, observe the normal condition of the working room after the fan is running, and close the door. This is the first step to using an electrothermal incubator.
The temperature setting of the electrothermal incubator is also worthy of detailed analysis, so as to ensure the safe use of the incubator. First of all, press SET, the PV screen displays the actual temperature in the room, the first highlight of the SV screen, the other bits flash, and second, use ← to select the specific position of the highlighted bit displayed on the SV screen. Then, use ↑↓ to change the value of the SV screen and set the temperature for this culture. Finally, press SET, the PV screen displays “T1” (enter timer function). If you do not use the timer function, use ↑↓ to make the SV screen “0”. Press the SET button again and the incubator will enter the working state. If you use the timer function, press ↑↓ to adjust the SV screen value, set the training time, and then press SET again, the incubator will enter the working state.
Electric heating constant temperature incubator need to pay attention to some matters after use, so as to maintain the function of electric constant temperature incubator. During the cultivation of items, it is best not to open the glass door unless you place and retrieve items inside the box. If you open and close the door for a long time, it is normal for the temperature inside the box to fluctuate. Do not put inflammable and explosive materials in the electric constant temperature incubator. Place the contents of the box not to over-extruded or overweight to facilitate air circulation. The instrument temperature control range: room temperature +5 ~ 60 °C, temperature control accuracy ± 0.3 °C, constant temperature fluctuations ± 0.5 °C.

Machining Centers

A machining center is an efficient and precise CNC machine tool that can process complex surfaces and precision parts. It has advantages such as high precision, high speed, high flexibility, and high automation. Machining centers can be classified according to different dimensions.
1. The number of more movable axes can be divided into three axis machining centers, four axis machining centers, five axis machining centers, etc.
According to the structure of the aircraft, it can be divided into: double column machining center (gantry machining center), single column machining center, etc.
3. According to the direction of spindle installation, it can be divided into: vertical machining center, horizontal machining center, and vertical horizontal dual-purpose machining center.
4. According to the number of spindles, they can be divided into single spindle machining centers, double spindle machining centers, and multi spindle machining centers.
5. According to the type of product being processed, it can be divided into mold machining centers and part machining centers.
6. According to the materials used for processing products, they can be divided into metal machining centers, graphite machining centers, glass machining centers, ceramic machining centers, and silicon carbide machining centers.
7. According to the purpose of the processing technology, there are: boring and milling machining centers, and turning and milling composite machining centers.
According to the type of track, it can be divided into linear track machining centers and box track machining centers.
9. According to the number of workbenches, they can be divided into single worktable machining centers, double worktable machining centers, and multi worktable machining centers.

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