China best 4″ Ss Submersible Deep Well Water Vacuum Pump Price with Solar Powered with Good quality

Product Description

4″ ss Submersible Deep Well Water vacuum pump Price with Solar Powered

Product Details:

 

4″submersible pump / stainless steel impeller
                                     
NO LIYUAN TYPE MOTOR POWER CAPACITY MAX Q
(m3/h)
MAX H
(m)
OUTLET
mm(inch)
PUMP BODY LENGTH
(mm)
PUMP BODY WEIGHT(kg)  
HP KW (m3/h) 0.4 0.6 0.8 1 1.2 1.4 1.6 1.8 2 2.4 2.8 3 3.2 3.6 4  
(l/min) 7 10 13 17 20 23 27 30 33 40 47 50 53 60 67  
1 4SG1/6 0.5 0.37 TOTAL HEAD(m) 33 32 31 30 29 27 25 22 20             3 35 32mm(11/4″) 281 2.3  
2 4SG1/9 0.5 0.37 50 49 48 46 44 41 38 34 30             3 52 344 2.9  
3 4SG1/13 0.75 0.55 72 71 69 67 64 60 55 49 42             3 75 428 3.7  
4 4SG1/17 1 0.75 95 92 90 87 84 78 71 66 60             3 98 512 4.5  
5 4SG1/21 1.5 1.1 118 115 112 108 103 97 89 80 75             3 122 596 5.3  
6 4SG1/25 1.5 1.1 140 137 134 129 123 116 106 95 82             3 143 680 6.1  
7 4SG1/28 2 1.5 157 153 150 145 138 130 119 107 93             3 164 743 6.7  
8 4SG1/32 2 1.5 179 175 171 165 158 148 136 122 109             3 185 827 7.5  
9 4SG1/36 2 1.5 202 197 192 186 178 167 153 137 119             3 210 911 8.3  
10 4SG1/39 3 2.2 219 214 209 202 193 181 166 149 140             3 238 974 8.9  
11 4SG1/42 3 2.2 236 230 225 217 208 195 179 167 158             3 246 1037 9.5  
12 4SG1/46 3 2.2 258 252 246 238 227 213 196 186 171             3 265 1121 10.3  
13 4SG1/50 3 2.2 282 276 269 260 248 233 214 192 180             3 290 1205 11.1  
14 4SG3/6 0.5 0.37     36   34   32   30 28 26 24 23 18 13 5 37 32mm(11/4″) 281 2.3  
15 4SG3/9 0.75 0.55     53   51   48   45 42 38 36 33 27 20 5 54 344 2.9  
16 4SG3/12 1 0.75     70   68   64   61 57 52 49 44 37 27 5 72 407 3.5  
17 4SG3/15 1.5 1.1     87   85   81   77 72 65 61 56 47 34 5 90 470 4.1  
18 4SG3/18 1.5 1.1     105   103   97   92 87 78 74 68 57 42 5 106 533 4.7  
19 4SG3/22 2 1.5     130   126   120   113 106 96 91 84 70 53 5 131 617 5.5  
20 4SG3/27 3 2.2     159   154   146   138 130 118 111 104 87 66 5 164 722 6.5  
21 4SG3/32 3 2.2     189   183   173   163 154 140 131 122 102 79 5 194 827 7.5  
22 4SG3/38 4 3     224   217   205   194 183 168 157 146 122 94 5 225 953 8.7  
23 4SG3/43 4 3     254   246   233   220 207 190 179 166 139 107 5 255 1058 9.7  
24 4SG3/52 5.5 4       300   290   276   260 245 225 222 208 170 125 5 328 1247 11.5  
 
NO LIYUAN TYPE MOTOR POWER CAPACITY MAX Q
(m3/h)
MAX H
(m)
OUTLET
(inch)
PUMP BODY LENGTH
(mm)
PUMP BODY WEIGHT(kg)  
HP KW (m3/h) 3 3.5 4 4.5 5 5.5 6 7 8 9 10 12 14 16 18  
(l/min) 50 58 67 75 83 92 100 117 133 150 167 200 233 267 300  
25 4SG5/4 0.5 0.37 TOTAL HEAD(m) 20 19 18 17 15 13 10                 7 25 40mm(11/2″) 239 1.9  
26 4SG5/6 0.75 0.55 30 28 27 26 22 19 15                 7 35 281 2.4  
27 4SG5/8 1 0.75 40 38 36 33 30 25 20                 7 48 323 2.8  
28 4SG5/12 1.5 1.1 59 57 54 50 45 38 30                 7 73 407 3.6  
29 4SG5/17 2 1.5 84 80 76 71 64 54 43                 7 98 512 4.7  
30 4SG5/21 3 2.2 104 99 94 87 79 67 53                 7 124 596 5.5  
31 4SG5/25 3 2.2 124 118 112 104 94 80 64                 7 148 680 6.4  
32 4SG5/29 4 3 144 137 130 120 108 92 74                 7 170 764 9.2  
33 4SG5/33 4 3 163 156 148 137 123 105 84                 7 192 848 8  
34 4SG5/38 5.5 4 188 178 170 158 142 121 97                 7 222 953 9.1  
35 4SG5/43 5.5 4 213 203 193 179 161 137 109                 7 262 1058 10.1  
36 4SG5/52 7.5 5.5 257 245 233 216 194 165 131                 7 326 1247 12  
37 4SG8/5 1 0.75 26   24   23   22 21 19 17 14         13 31 50mm(2″) 288 2.6  
38 4SG8/7 1.5 1.1 36   34   33   31 29 27 24 20         13 41 343 3.1  
39 4SG8/10 2 1.5 52   50   47   45 42 39 35 29         13 60 425 3.9  
40 4SG8/12 3 2.2 62   60   57   54 51 47 42 35         13 70 480 4.4  
41 4SG8/15 3 2.2 77   74   71   68 64 59 53 44         13 85 567 5.1  
42 4SG8/18 4 3 93   89   86   81 77 71 63 53         13 108 645 6  
43 4SG8/21 5.5 4 108   104   100   95 90 83 74 62         13 125 728 6.8  
44 4SG8/25 5.5 4 129   124   119   113 108 99 89 74         13 150 843 7.8  
45 4SG8/30 7.5 5.5 155   149   143   136 130 119 106 88         13 170 975 9.3  
46 4SG8/37 7.5 5.5 191   184   176   167 159 147 131 109         13 220 1173 11  
47 4SG8/44 10 7.5 227   218   209   199 190 174 156 129         13 260 1360 13  
48 4SG8/50 10 7.5 258   248   238   226 216 198 177 147         13 290 1530 14.5  
49 4SG12/5 2 1.5 34   33       31   29   27 25 22 18 13 22 35 50mm(2″) 360 3.4  
50 4SG12/7 3 2.2 48   46       43   40   38 35 31 25 19 22 49 444 4.3  
51 4SG12/10 4 3 67   65       62   58   55 50 45 36 27 22 70 570 5.5  
52 4SG12/13 5.5 4 88   86       81   76   71 66 59 48 36 22 91 696 6.8  
53 4SG12/15 7.5 5.5 99   97       93   88   82 76 68 55 41 22 105 780 7.7  
54 4SG12/18 7.5 5.5 120   118       112   105   99 91 81 66 50 22 126 906 9  
55 4SG12/21 10 7.5 138   136       130   123   115 106 95 77 58 22 144 1032 10.3  
56 4SG12/25 10 7.5 166   163       155   146   137 126 113 92 69 22 170 1200 12  

Full Family:
3″ oil-cooled submersible motor (220V 50Hz 60Hz)
4″ oil-cooled submersible motor (220V/380V 50Hz 60Hz)
6″ water-cooled submersible motor (380V50Hz  60 Hz)
3″ submersible pump
4″ submersible pump
6″ submersible pump

Company profile:

Our Certificates:

Packing:

FAQ:
Q:What time will you reply if receive the clients’ inquiry?
A: Within12 hours,if in our working time,we will feedback within 2 hours.
Q: What is your MOQ of this item?
A:50PCS/type Or 100  PCS/type,we can accept the trial order,please contact our sales firstly.
Q:Is it acceptable to make customers’ own brand?
A:Of course no problem,We have 23 years experience in this area. we not only have own brand,but also accept OEM.
Q:Are you a factory or a trading company?
A: “ZheJiang HangZhou CHINAMFG Pump Co.,Ltd” pump manufactory , we locate in HangZhou city,ZheJiang Province,China.
   We are selling the products to the clients directly with more reasonble price.
  Besides,We have ability to produce client’s customized order.
Q:Do your factory have catalog ?
A:Of course,we have catalog and can send the catolog to the clients.
Q: What are your payment terms? 
A: 30% T/T deposit, 70% against documents, or L/C at sight.
Q: How long is your warranty?
A: One year.
Q: What’s your delivery time?
A: 1.The samples can be sent to you within 3-5days.
2.The batch order can be shipped to you within 25-30days after order confirmation

 

Max.Head: >150m
Max.Capacity: 200-300 L/min
Driving Type: Motor
Material: Stainless Steel
Structure: Multistage Pump
Assembly: Booster Pump
Customization:
Available

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vacuum pump

What Is the Role of Vacuum Pumps in Semiconductor Manufacturing?

Vacuum pumps play a critical role in semiconductor manufacturing processes. Here’s a detailed explanation:

Semiconductor manufacturing involves the production of integrated circuits (ICs) and other semiconductor devices used in various electronic applications. Vacuum pumps are used extensively throughout the semiconductor manufacturing process to create and maintain the required vacuum conditions for specific manufacturing steps.

Here are some key roles of vacuum pumps in semiconductor manufacturing:

1. Deposition Processes: Vacuum pumps are used in deposition processes such as physical vapor deposition (PVD) and chemical vapor deposition (CVD). These processes involve depositing thin films of materials onto semiconductor wafers to create various layers and patterns. Vacuum pumps help create a low-pressure environment necessary for precise control of the deposition process, ensuring uniform and high-quality film formation.

2. Etching and Cleaning: Vacuum pumps are utilized in etching and cleaning processes, which involve the removal of specific layers or contaminants from semiconductor wafers. Dry etching techniques, such as plasma etching and reactive ion etching, require a vacuum environment to facilitate the ionization and removal of material. Vacuum pumps aid in creating the necessary low-pressure conditions for efficient etching and cleaning processes.

3. Ion Implantation: Ion implantation is a process used to introduce impurities into specific regions of a semiconductor wafer to modify its electrical properties. Vacuum pumps are used to evacuate the ion implantation chamber, creating the required vacuum environment for accurate and controlled ion beam acceleration and implantation.

4. Wafer Handling and Transfer: Vacuum pumps are employed in wafer handling and transfer systems. These systems utilize vacuum suction to securely hold and manipulate semiconductor wafers during various manufacturing steps, such as loading and unloading from process chambers, robotic transfer between tools, and wafer alignment.

5. Load Lock Systems: Load lock systems are used to transfer semiconductor wafers between atmospheric conditions and the vacuum environment of process chambers. Vacuum pumps are integral components of load lock systems, creating and maintaining the vacuum conditions necessary for wafer transfer while minimizing contamination risks.

6. Metrology and Inspection: Vacuum pumps are utilized in metrology and inspection tools used for characterizing semiconductor devices. These tools, such as scanning electron microscopes (SEMs) and focused ion beam (FIB) systems, often operate in a vacuum environment to enable high-resolution imaging and accurate analysis of semiconductor structures and defects.

7. Leak Detection: Vacuum pumps are employed in leak detection systems to identify and locate leaks in vacuum chambers, process lines, and other components. These systems rely on vacuum pumps to evacuate the system and then monitor for any pressure rise, indicating the presence of leaks.

8. Cleanroom Environment Control: Semiconductor manufacturing facilities maintain cleanroom environments to prevent contamination during the fabrication process. Vacuum pumps are used in the design and operation of the cleanroom ventilation and filtration systems, helping to maintain the required air cleanliness levels by removing particulates and maintaining controlled air pressure differentials.

Vacuum pumps used in semiconductor manufacturing processes are often specialized to meet the stringent requirements of the industry. They need to provide high vacuum levels, precise control, low contamination levels, and reliability for continuous operation.

Overall, vacuum pumps are indispensable in semiconductor manufacturing, enabling the creation of the necessary vacuum conditions for various processes, ensuring the production of high-quality semiconductor devices.

vacuum pump

How Do Vacuum Pumps Assist in Freeze-Drying Processes?

Freeze-drying, also known as lyophilization, is a dehydration technique used in various industries, including pharmaceutical manufacturing. Vacuum pumps play a crucial role in facilitating freeze-drying processes. Here’s a detailed explanation:

During freeze-drying, vacuum pumps assist in the removal of water or solvents from pharmaceutical products while preserving their structure and integrity. The freeze-drying process involves three main stages: freezing, primary drying (sublimation), and secondary drying (desorption).

1. Freezing: In the first stage, the pharmaceutical product is frozen to a solid state. Freezing is typically achieved by lowering the temperature of the product below its freezing point. The frozen product is then placed in a vacuum chamber.

2. Primary Drying (Sublimation): Once the product is frozen, the vacuum pump creates a low-pressure environment within the chamber. By reducing the pressure, the boiling point of water or solvents present in the frozen product is lowered, allowing them to transition directly from the solid phase to the vapor phase through a process called sublimation. Sublimation bypasses the liquid phase, preventing potential damage to the product’s structure.

The vacuum pump maintains a low-pressure environment by continuously removing the water vapor or solvent vapor generated during sublimation. The vapor is drawn out of the chamber, leaving behind the freeze-dried product. This process preserves the product’s original form, texture, and biological activity.

3. Secondary Drying (Desorption): After the majority of the water or solvents have been removed through sublimation, the freeze-dried product may still contain residual moisture or solvents. In the secondary drying stage, the vacuum pump continues to apply vacuum to the chamber, but at a higher temperature. The purpose of this stage is to remove the remaining moisture or solvents through evaporation.

The vacuum pump maintains the low-pressure environment, allowing the residual moisture or solvents to evaporate at a lower temperature than under atmospheric pressure. This prevents potential thermal degradation of the product. Secondary drying further enhances the stability and shelf life of the freeze-dried pharmaceutical product.

By creating and maintaining a low-pressure environment, vacuum pumps enable efficient and controlled sublimation and desorption during the freeze-drying process. They facilitate the removal of water or solvents while minimizing the potential damage to the product’s structure and preserving its quality. Vacuum pumps also contribute to the overall speed and efficiency of the freeze-drying process by continuously removing the vapor generated during sublimation and evaporation. The precise control provided by vacuum pumps ensures the production of stable and high-quality freeze-dried pharmaceutical products.

vacuum pump

What Are the Primary Applications of Vacuum Pumps?

Vacuum pumps have a wide range of applications across various industries. Here’s a detailed explanation:

1. Industrial Processes:

Vacuum pumps play a vital role in numerous industrial processes, including:

– Vacuum Distillation: Vacuum pumps are used in distillation processes to lower the boiling points of substances, enabling separation and purification of various chemicals and compounds.

– Vacuum Drying: Vacuum pumps aid in drying processes by creating a low-pressure environment, which accelerates moisture removal from materials without excessive heat.

– Vacuum Packaging: Vacuum pumps are used in the food industry to remove air from packaging containers, prolonging the shelf life of perishable goods by reducing oxygen exposure.

– Vacuum Filtration: Filtration processes can benefit from vacuum pumps to enhance filtration rates by applying suction, facilitating faster separation of solids and liquids.

2. Laboratory and Research:

Vacuum pumps are extensively used in laboratories and research facilities for various applications:

– Vacuum Chambers: Vacuum pumps create controlled low-pressure environments within chambers for conducting experiments, testing materials, or simulating specific conditions.

– Mass Spectrometry: Mass spectrometers often utilize vacuum pumps to create the necessary vacuum conditions for ionization and analysis of samples.

– Freeze Drying: Vacuum pumps enable freeze-drying processes, where samples are frozen and then subjected to a vacuum, allowing the frozen water to sublimate directly from solid to vapor state.

– Electron Microscopy: Vacuum pumps are essential for electron microscopy techniques, providing the necessary vacuum environment for high-resolution imaging of samples.

3. Semiconductor and Electronics Industries:

High vacuum pumps are critical in the semiconductor and electronics industries for manufacturing and testing processes:

– Semiconductor Fabrication: Vacuum pumps are used in various stages of chip manufacturing, including deposition, etching, and ion implantation processes.

– Thin Film Deposition: Vacuum pumps create the required vacuum conditions for depositing thin films of materials onto substrates, as done in the production of solar panels, optical coatings, and electronic components.

– Leak Detection: Vacuum pumps are utilized in leak testing applications to detect and locate leaks in electronic components, systems, or pipelines.

4. Medical and Healthcare:

Vacuum pumps have several applications in the medical and healthcare sectors:

– Vacuum Assisted Wound Closure: Vacuum pumps are used in negative pressure wound therapy (NPWT), where they create a controlled vacuum environment to promote wound healing and removal of excess fluids.

– Laboratory Equipment: Vacuum pumps are essential in medical and scientific equipment such as vacuum ovens, freeze dryers, and centrifugal concentrators.

– Anesthesia and Medical Suction: Vacuum pumps are utilized in anesthesia machines and medical suction devices to create suction and remove fluids or gases from the patient’s body.

5. HVAC and Refrigeration:

Vacuum pumps are employed in the HVAC (Heating, Ventilation, and Air Conditioning) and refrigeration industries:

– Refrigeration and Air Conditioning Systems: Vacuum pumps are used during system installation, maintenance, and repair to evacuate moisture and air from refrigeration and air conditioning systems, ensuring efficient operation.

– Vacuum Insulation Panels: Vacuum pumps are utilized in the manufacturing of vacuum insulation panels, which offer superior insulation properties for buildings and appliances.

6. Power Generation:

Vacuum pumps play a role in power generation applications:

– Steam Condenser Systems: Vacuum pumps are used in power plants to remove non-condensable gases from steam condenser systems, improving thermal efficiency.

– Gas Capture: Vacuum pumps are utilized to capture and remove gases, such as hydrogen or helium, in nuclear power plants, research reactors, or particle accelerators.

These are just a few examples of the primary applications of vacuum pumps. The versatility and wide range of vacuum pump types make them essential in numerous industries, contributing to various manufacturing processes, research endeavors, and technological advancements.

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editor by CX 2023-11-10

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