ZST-AYZ-24-46DS
Zenithsolar
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NAME | Automatic Intelligent Integration Energy-saving Laminator | |||
Model | ZST-AYZ-24-46DS | Patent No: ZL2009 2 0217588.0 | CE Certificate NO: CN.CE.0631-08/10 New CE Certificate NO: GB/1067/5856/16 | |
Capacity | Total 460800 Panels /One Year, ( For 330W 16 piece 156*72 Cells =152MW/3Shift) | |||
Device parameters | Power | AC380V/50Hz/3Phase/5Line | Weight | ≈48T |
Compressed Air Flow | 1500L/min | Air pressure | 0.5~1.0MPa | |
Laminated cavity height | 25mm | Lamination area | 2400mm×4600mm×2x2 | |
Normal power | ≈110KW | Total Power | 230KW | |
Working face | 10.4”Touchscreen | Vacuum Rate | 2*2*302M 3 /High Efficiency Vacuum Pump | |
Heating Platform | Per square meter of non-flatness ≤ 300um | Maximum temperature | 180℃ | |
Temperature uniformity | ≤ ± 2 ℃ | Working Temperature | 100℃~160℃ | |
Temperature range | 30℃~180℃ | Temperature Accuracy | ±1℃ | |
Maximum setting temperature | 180℃ | Noise at Work | <65dB | |
Vacuum Time | 90 seconds 100Pa | Lamination time | PVB/EVA :12-15/min | |
Cover travel | 200mm | Dimensions(mm) | 21.6m×3.52m×2.88m | |
Major Structure: Loading + Laminating + Unloading Four set 302 of Vacuum Pumps, Two set of Heating Stations. | ||||
1. Improved Productivity This machine offers a significant increase in efficiency compared to a standard double-chamber laminating machine. It can produce 3.6 times more output than a typical single-chamber laminating machine. For example, with continuous operation for 24 hours a day, 300 days a year, and 4 components processed in each cycle, a single machine can generate an annual output of 152MW using 72 pieces of 330W components measuring 156×156 in size made of regular silicon wafer. 2. Space-Saving Design Despite having the same capacity as a traditional double-cavity laminating machine, this equipment only takes up half the space. This compact design not only saves valuable factory space but also reduces production costs. Additionally, the streamlined design requires fewer operators, leading to lower labor expenses. 3. Automated Operation Equipped with a 4-chamber design, automatic feeding, and intelligent control, this machine can seamlessly integrate into a fully automated production line. 4. Easy Maintenance The internal structure of this equipment is designed for easy maintenance. Operators can easily check the equipment status and identify any issues, simplifying the maintenance process. 5. Multi-Purpose This machinery is capable of packaging a variety of solar panels, such as monocrystalline, polycrystalline, and thin-film double glass panels. It is suitable for use in both industrial and laboratory settings. 6. Flexibility Each level of the chamber is equipped with its own vacuum and pressure system. The dual-layer chamber can operate together with a lifting transmission platform or independently. If one level requires maintenance, it will not disrupt the functioning of the other level. 7. Security The materials utilized in the production of the equipment are harmless and safe for handling. 8. Implementing the Thimble System According to Needs. |
NAME | Automatic Intelligent Integration Energy-saving Laminator | |||
Model | ZST-AYZ-24-46DS | Patent No: ZL2009 2 0217588.0 | CE Certificate NO: CN.CE.0631-08/10 New CE Certificate NO: GB/1067/5856/16 | |
Capacity | Total 460800 Panels /One Year, ( For 330W 16 piece 156*72 Cells =152MW/3Shift) | |||
Device parameters | Power | AC380V/50Hz/3Phase/5Line | Weight | ≈48T |
Compressed Air Flow | 1500L/min | Air pressure | 0.5~1.0MPa | |
Laminated cavity height | 25mm | Lamination area | 2400mm×4600mm×2x2 | |
Normal power | ≈110KW | Total Power | 230KW | |
Working face | 10.4”Touchscreen | Vacuum Rate | 2*2*302M 3 /High Efficiency Vacuum Pump | |
Heating Platform | Per square meter of non-flatness ≤ 300um | Maximum temperature | 180℃ | |
Temperature uniformity | ≤ ± 2 ℃ | Working Temperature | 100℃~160℃ | |
Temperature range | 30℃~180℃ | Temperature Accuracy | ±1℃ | |
Maximum setting temperature | 180℃ | Noise at Work | <65dB | |
Vacuum Time | 90 seconds 100Pa | Lamination time | PVB/EVA :12-15/min | |
Cover travel | 200mm | Dimensions(mm) | 21.6m×3.52m×2.88m | |
Major Structure: Loading + Laminating + Unloading Four set 302 of Vacuum Pumps, Two set of Heating Stations. | ||||
1. Improved Productivity This machine offers a significant increase in efficiency compared to a standard double-chamber laminating machine. It can produce 3.6 times more output than a typical single-chamber laminating machine. For example, with continuous operation for 24 hours a day, 300 days a year, and 4 components processed in each cycle, a single machine can generate an annual output of 152MW using 72 pieces of 330W components measuring 156×156 in size made of regular silicon wafer. 2. Space-Saving Design Despite having the same capacity as a traditional double-cavity laminating machine, this equipment only takes up half the space. This compact design not only saves valuable factory space but also reduces production costs. Additionally, the streamlined design requires fewer operators, leading to lower labor expenses. 3. Automated Operation Equipped with a 4-chamber design, automatic feeding, and intelligent control, this machine can seamlessly integrate into a fully automated production line. 4. Easy Maintenance The internal structure of this equipment is designed for easy maintenance. Operators can easily check the equipment status and identify any issues, simplifying the maintenance process. 5. Multi-Purpose This machinery is capable of packaging a variety of solar panels, such as monocrystalline, polycrystalline, and thin-film double glass panels. It is suitable for use in both industrial and laboratory settings. 6. Flexibility Each level of the chamber is equipped with its own vacuum and pressure system. The dual-layer chamber can operate together with a lifting transmission platform or independently. If one level requires maintenance, it will not disrupt the functioning of the other level. 7. Security The materials utilized in the production of the equipment are harmless and safe for handling. 8. Implementing the Thimble System According to Needs. |