China Standard Compatible 399171 Gutter Pump Kit / Vacuum Pump for Vidoejet 1000 Series Printer with Free Design Custom

Product Description

Suitable 399171 Gutter Pump Kit / Vacuum Pump for Vidoejet a thousand Sequence Printer

Original and compatible spare components for all videojet models , inlcuding excel and one thousand sequence. 
Rapidly supply and favorable price tag with original good quality.

HangZhou Prima Technology Co., Ltd is found in HangZhou Science Metropolis. We are engaged in Design and style and Producer of Inkjet Printer, Laser Marking Machine and Corollary Equipment.More than the previous decade, we have been fully commited to offering a total line of secure and reliable solution identification and traceability remedies for buyers in food, beverage, daily chemical, pharmaceutical, components, electronics, design resources, lamps, toys, packaging, printing and other industries.

Our Solution Variety:
one. Inkjet printer, like CIJ Printer, TIJ Printer, UV inkjet printer, Colour UV inkjet printer, Handheld inkjet printer. 
2. Laser marking equipment, including fiber laser marking device, COtwo laser marking amchine and UV laser marking machine. 
3. Industrial printing answers, including visual inspection and rejection program and may differ of printing remedies .
four. Consumables( Ink, Make-up and cleaning answers)  for all brand of CIJ Printer, these kinds of as Videojet, Domino, Marken Imaje, Linx,
    Citronix and etc.
5. Spare elements for all brand of CIJ Printers, including inkcore, keyboard, CSB, strain sensor, nozzle, valve module ,printhead
    module , ETH, filter, pump, gutter pump, chip, inkcore board, empty cartridge and and many others.  

 

 


 

Model 40u/50u 
Print Module
60u
Print Module 
70u 
Print Module
Valve
Module
CSB4 CSB5 PIB PSU EHT 
Module 
630-2L 383105 383106 383110 SP383092 SP392440 383122 383094 383124
630-3L 383105 383106 383110 SP383103 SP392441 383122 383094 383124
650 383105 383106 383110 383043 SP392442 383122 383094 383124
680 383105 383106 383110 383044 SP392443 383122 383094 383124
1210 399422 399180 399181 SP399334 SP392407 399078 399077 399081
1220 399422 399180 399181 SP392123 SP392414 399078 399077 399081
1320 399422 399181 SP399537 SP392410 399078 399077 399081
1330 399422 399180 399181 383166 SP392419 399078 399077 399081
1350 399422 399180 399181 SP399773 SP392432 399078 399077 399081
1510 399422 399180 399181 SP500074 SP392405 399078 399077 399081
1520 399422 399180 399181 SP392121 SP392413 399078 399077 399081
1550 399422 399180 399181 395890 SP392417 399078 399077 399081
1610 399422 399180 399181 SP399394W SP392408 399473 399077 399081
1610DH 399422 399180 399181 SP399597W SP399754 399077 SP239229
1620 399422 399180 399181 SP392125 SP392416 399473 399077 399081
1620UHS 395916     399181 SP392125UHS SP392436 399473 399077 399081
1620HR 397353     399181 SP392125UHS SP392436 399473 399077 399081

###

Model Switch Front
Panel
LCD&
FIB
LCD FIB Inkcore
(with pump)
Inkcore
(without pump)
Ink Pump Gutter Pump Kit SEPTUM ASSEMBLY KIT
630-2L 383123 383118 383093 383049 383050 383119 383107
630-3L 383123 383118 383093 383089 383090 383119 383107
650 383123 383118 383093 383047 383045 383119 383107
680 383123 383118 383093 383048 383046 383119 383107
1210 SP219041 399116 399091 399306 399307 399076 399171 399073
1220 SP219041 399116 399091 SP392126 SP392167 399076 399171 399073
1320 SP219041 399116 399091 399539 399538 399076 399171 399073
1330 SP219041 399116 399091 383164 383167 399076 399171 399073
1350 SP219041 399116 399091 399673 399672 399076 399171 399073
1510 SP219041 399116 399091 399069 399070 399076 399171 399073
1520 SP219041 399116 399091 SP392093 SP392165 399076 399171 399073
1550 SP219041 399116 399091 395790 395791 SP392093 SP392165 399076 399171 399073
1610 SP219041 399116 399091 399340 399341 399076 399171 399073
1610DH SP219041 399116 399091 399340 399341 399076 399171 399073
1620 SP219041 399116 399091 SP392128 SP392128 399076 399171 399073
1620UHS SP219041 399116 399091 395964 395964 399076 399171 399073
1620HR SP219041 399116 399091 395964 395964 399076 399171 399073
Model 40u/50u 
Print Module
60u
Print Module 
70u 
Print Module
Valve
Module
CSB4 CSB5 PIB PSU EHT 
Module 
630-2L 383105 383106 383110 SP383092 SP392440 383122 383094 383124
630-3L 383105 383106 383110 SP383103 SP392441 383122 383094 383124
650 383105 383106 383110 383043 SP392442 383122 383094 383124
680 383105 383106 383110 383044 SP392443 383122 383094 383124
1210 399422 399180 399181 SP399334 SP392407 399078 399077 399081
1220 399422 399180 399181 SP392123 SP392414 399078 399077 399081
1320 399422 399181 SP399537 SP392410 399078 399077 399081
1330 399422 399180 399181 383166 SP392419 399078 399077 399081
1350 399422 399180 399181 SP399773 SP392432 399078 399077 399081
1510 399422 399180 399181 SP500074 SP392405 399078 399077 399081
1520 399422 399180 399181 SP392121 SP392413 399078 399077 399081
1550 399422 399180 399181 395890 SP392417 399078 399077 399081
1610 399422 399180 399181 SP399394W SP392408 399473 399077 399081
1610DH 399422 399180 399181 SP399597W SP399754 399077 SP239229
1620 399422 399180 399181 SP392125 SP392416 399473 399077 399081
1620UHS 395916     399181 SP392125UHS SP392436 399473 399077 399081
1620HR 397353     399181 SP392125UHS SP392436 399473 399077 399081

###

Model Switch Front
Panel
LCD&
FIB
LCD FIB Inkcore
(with pump)
Inkcore
(without pump)
Ink Pump Gutter Pump Kit SEPTUM ASSEMBLY KIT
630-2L 383123 383118 383093 383049 383050 383119 383107
630-3L 383123 383118 383093 383089 383090 383119 383107
650 383123 383118 383093 383047 383045 383119 383107
680 383123 383118 383093 383048 383046 383119 383107
1210 SP219041 399116 399091 399306 399307 399076 399171 399073
1220 SP219041 399116 399091 SP392126 SP392167 399076 399171 399073
1320 SP219041 399116 399091 399539 399538 399076 399171 399073
1330 SP219041 399116 399091 383164 383167 399076 399171 399073
1350 SP219041 399116 399091 399673 399672 399076 399171 399073
1510 SP219041 399116 399091 399069 399070 399076 399171 399073
1520 SP219041 399116 399091 SP392093 SP392165 399076 399171 399073
1550 SP219041 399116 399091 395790 395791 SP392093 SP392165 399076 399171 399073
1610 SP219041 399116 399091 399340 399341 399076 399171 399073
1610DH SP219041 399116 399091 399340 399341 399076 399171 399073
1620 SP219041 399116 399091 SP392128 SP392128 399076 399171 399073
1620UHS SP219041 399116 399091 395964 395964 399076 399171 399073
1620HR SP219041 399116 399091 395964 395964 399076 399171 399073

What Are Vacuum Pumps?

Vacuum pumps use air flow as the source of energy. The system is ideal for dewatering wet media, creating filter cakes, and pneumatically moving materials through a pipe. A vacuum pump works through air flow that is moved by differential pressure. The pump’s air flow develops a vacuum in a chamber that is called the vacuum box. As the air flow collects gas at a faster rate than atmospheric pressure, it is considered the “heart” of a vacuum system.
Vacuum Pump

Principles of operation

Vacuum pumps work by reducing the volume of air that moves through them. Depending on the design, there are several different types of vacuum pumps. All of these types operate under the same principles, but have their own special features. Here are some of their most important characteristics. In addition to their capacity, the main differences between these pumps are their manufacturing tolerances, materials of construction, and level of tolerance for chemicals, oil vapor, and vibration.
Vacuum pumps create a partial or low-pressure vacuum by forcing gas molecules from their high-pressure states to their low-pressure states. However, these pumps can only achieve a partial vacuum, and other methods are necessary to reach a higher level of vacuum. As with all pumps, there are several ways to increase the level of a vacuum.
First, consider the type of vacuum you want. This is the most important factor when choosing a vacuum pump. If you need a high level of vacuum, you’ll need a high-quality vacuum pump. High-quality vacuum pumps have a high pressure limit, while ultrahigh-quality pumps are capable of achieving a very low vacuum. As the pressure decreases, the amount of molecules per cubic centimeter decreases and the quality of the vacuum increases.
Positive displacement pumps are best suited for low and medium-pressure systems. But they can’t reach high vacuum, which is why most high-pressure systems use two pumps in tandem. In this case, the positive displacement pump would stall and the other one would be used instead. Similarly, entrapment pumps have higher-pressure limits, so they must be refreshed frequently or exhaust frequently when there is too much gas to capture.
Another important aspect of vacuum pump operation is its speed. The speed of pumping is proportional to the differential pressure across the system. Therefore, the faster the pumping speed, the lower the draining time.

Design

A vacuum pump is a mechanical device used to generate a vacuum. It can create a low or high vacuum. These pumps are used in the process of oil regeneration and re-refining. The design of a vacuum pump must be compatible with the vacuum. The pump’s mass and speed should be matched.
The design of a vacuum pump is important for many reasons. It should be easy to use and maintain. Vacuum pumps need to be protected from external contamination. For this reason, the oil must be kept clean at all times. Contamination may damage the oil, resulting in pump failure. The pump’s design should include features that will prevent this from happening.
The main objective of a vacuum pump is to remove air and other gases from a chamber. As the pressure of the chamber drops, the amount of molecules that can be removed becomes more difficult. Because of this, industrial and research vacuum systems typically require pumps to operate over a large pressure range. The range is generally between one and 10-6 Torr. A standard vacuum system uses multiple pumps, each covering a portion of the pressure range. These pumps can also be operated in a series to achieve optimal performance.
The design of a vacuum pump can vary depending on the application and the pressure requirement. It should be sized appropriately to ensure that it works properly. There are several different types of pumps, so selecting the right pump is essential to maximizing its efficiency. For example, a slow running vee belt drive rotary vane vacuum pump will have a lower running temperature than a fast-running direct-drive pump.
Vacuum Pump

Performance

The performance of a vacuum pump is an important indicator of its overall condition. It helps determine whether the system is performing optimally and how high the ultimate vacuum level can be achieved. A performance log should be maintained to document variations in pump operating hours and voltage as well as the temperature of the pump’s cooling water and oil. The log should also record any problems with the pump.
There are several ways to increase the performance of a vacuum pump. For example, one way is to decrease the temperature of the working fluid. If the temperature of the fluid is too high, it will lead to a low vacuum. A high temperature will make the vacuum degree of the pump even lower, so heat transfer is an important part of the process.
Nozzles are another major component that impacts the performance of a vacuum pump. Damage or clogging can result in a compromised pumping capacity. These problems can occur due to a number of causes, including excessive noise, leakage, and misassembled parts. Nozzles can also become clogged due to rusting, corrosion, or excess water.
Performance of vacuum pump technology is vital for many industries. It is an integral part of many central production processes. However, it comes with certain expenses, including machines, installations, energy, and maintenance. This makes it essential to understand what to look for when purchasing a vacuum pump. It is important to understand the factors that can influence these factors, as they affect the efficiency of a vacuum pump.
Another important factor in determining the performance of a vacuum pump is throughput. Throughput is a measurement of how many molecules can be pumped per unit of time at a constant temperature. Moreover, throughput can also be used to evaluate volume leak rates and pressure at the vacuum side. In this way, the efficiency of a vacuum pump can be judged by the speed and throughput of its leaks.

Atmospheric pressure

Vacuum pumps work by sucking liquids or air into a container. The amount of vacuum a pump can create is measured in pressure units called atms (atmospheric pressure). The pressure of a vacuum pump is equal to the difference between atmospheric pressure and the pressure in the system.
The amount of force produced by air molecules on each other is proportional to the number of impacts. Therefore, the greater the impact, the higher the pressure. In addition, all molecules have the same amount of energy at any temperature. This holds true for both pure and mixture gases. However, lighter molecules will move faster than heavier ones. Nevertheless, the transfer of energy is the same for both.
The difference between atmospheric and gauge pressure is not always straightforward. Some applications use one term to describe the other. While the two concepts are closely related, there are key differences. In most cases, atmospheric pressure is a higher number than gauge pressure. As a result, it can be confusing when choosing a vacuum pump.
One method is to use a U-tube manometer, a compact device that measures the difference between atmospheric pressure and vacuum. This device is commonly used for monitoring vacuum systems. It can measure both negative and positive pressure. In addition, it uses an electronic version of a gauge.
The atmospheric pressure affects the performance of a vacuum pump. When working with porous materials, the pump must overcome leakage. As a result, it must be equipped with enough capacity to compensate for variations in the porosity of the work piece. This is why it is critical to buy a vacuum pump that has a large enough capacity to handle the variation.
Vacuum Pump

Typical application

Vacuum pumps are used in a variety of applications. They generate low and high pressures and are used to evaporate water or gases from various materials. They are also used in petroleum regeneration and re-refining processes. Typical applications of vacuum pumps include: a.
b. Rotary vane pumps are used in a variety of vacuum applications. They are suitable for industrial applications, freeze drying and cabinet making. They use oil as a sealant and coolant, allowing them to perform well in a variety of applications. This makes them ideal for use in a variety of industries.
The pumping rate of the vacuum pump is important. This refers to the volume pumped from a given point at a given rate. The higher the speed, the faster the pump will expel the air. Depending on the gas composition, this number will vary. When choosing a vacuum pump, gas composition and process requirements should be considered.
Vacuum pumps are used in a variety of industries from laboratories to medical facilities. In medical applications, they are used in radiation therapy and radiopharmaceuticals. They are also used in mass spectrometers, which are instruments used to analyze solid, liquid, or surface materials. Vacuum pumps are also used in decorative vacuum coatings and Formula 1 engine components. A trash compactor is another example of using a vacuum pump.
Vacuum pumps are used in a variety of applications including water purification and aeration. Vacuum pumps are also used in portable dental equipment and compressors in the dental industry. Vacuum pumps are also used in molds for dental implants. Other common applications for vacuum pumps include soil aeration and air sampling.

Vacuum Pump

As one of the vacuum pump manufacturers, suppliers, and exporters of mechanical products, We offer vacuum pumps and many other products.

Please get in touch with us for details.

Manufacturer supplier exporter of the vacuum pump.

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