Description
In order to reduce the impact of renewable energy on smart grids, ABB not only strengthens the stability of the power generation link, but also spends a lot on
smart grids. The 2011 “ABB Automation World” will discuss photovoltaic inverter technology and energy storage technology. Many hot spots. ABB proposed the idea
of building solar power stations in the Sahara Desert in the 1990s. In 1992, ABB technology development manager Gunnar Asplund proposed building wind, solar,
hydropower and geothermal power stations in Africa, and using ABB”s leading high-voltage direct current transmission technology. (HVDC) to deliver electricity to Europe.
Robots bring new revolution in photovoltaics
While ABB plays the role of a component purchaser, it also serves component and battery companies. ABB robots are active in the new factories
of LDK LDK and Yingli. In addition to ensuring long-term efficient and high-quality production, robots are also the best way to solve the shortage
of technicians in enterprises. At the same time, the continuous upgrades in robot performance and
efficiency are difficult to match with manual labor. This is also a major trend in future industry development: human- and capital-intensive industries
are moving towards technology- and capital-intensive industries.
The biggest feature of ABB is that they make full use of their resources and technologies in the field of automation and have developed an equipment monitoring system.
Each piece of equipment sold is monitored in real time in ABB”s control center. Once the loss of a certain part or the operation condition reaches Alert value, ABB maintenance
personnel will rush to the scene before the fault occurs to eliminate it invisible.
At present, robots in the photovoltaic industry should still be dominated by manipulators. ABB has been committed to developing parts suitable for robots in all aspects
of photovoltaic. “ABB”s robots can increase customers” economic benefits, improve product quality, and reduce losses. In this way, the investment in t
he machine itself is far lower than the return on investment.”
For the photovoltaic industry, robots have the following outstanding advantages:
1. Reduce the fragmentation rate and improve product quality;
2. Improve production efficiency;
3. Save floor space;
4. There is bound to be survival of the fittest in the photovoltaic market. Small-scale companies face survival pressure. Having automated and robotic equipment
can improve the overall strength of the company and make the company in an invincible position in the face of domestic and foreign competition.
5. Robots have been the driving force behind manpower reduction in recent years.
After robots for component handling, battery and silicon wafer loading were introduced to the market, the robot IRB1600, known as the “all-round champion”, was
applied to the PECVD graphite boat wafer pick-up/insertion system. The IRB uses internal wiring, which reduces cable wear and eliminates maintenance. And the speed reaches an astonishing 3,000
cycles per hour, including taking and inserting films. With a load capacity of 6kg to 8kg, high precision ensures product quality and scrap rate. At the same time, the
special fixture effectively prevents damage to the coating surface, and the operating space is fully enclosed. It adopts IP67 protection level, clean room ISOClass5, and can be steam cleaned.
The robot production line represented by ABB will bring a technological revolution to the photovoltaic industry after changing the production model of the automobile industry .
Display operation panel NKDS01-100
Display operation panel NKDO01-5
Display operation panel NKDO01-2
Display operation panel NKCS01-10
Display operation panel NKCL01-7
Display operation panel NKCL01-6
Display operation panel NKCL01-33
Display operation panel NKCL01-20
Display operation panel NKCL01-10
Display operation panel NKAS11-15
Display operation panel NKAS11-12
Display operation panel NKAS01-9
Display operation panel NKAS01-8
Display operation panel NKAS01-15
Display operation panel NKAS01-13
Display operation panel NKAS01-12
Display operation panel NKAS01-11
Display operation panel NKAS01-10
Display operation panel NIS21
Display operation panel NIRL03
Display operation panel NIRL01
Display operation panel NIPL01
Display operation panel NIOX01
Display operation panel NIOP02
Display operation panel NINT-64
Display operation panel NIMP02
Display operation panel NIMP01
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Display operation panel NIMF02
Display operation panel NIMF01
Display operation panel NIDS01
Display operation panel NIDO01
Display operation panel NIDI01
Display operation panel NICS01
Display operation panel NICL01
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Display operation panel NIAM01
Display operation panel NIAI05
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Display operation panel NIA001
Display operation panel NHSS01
Display operation panel NGCM02
Display operation panel NGCM01
Display operation panel NFTP01
Display operation panel NFTP01
Display operation panel NFCS01
Display operation panel NFBA01
Display operation panel NFAN02
Display operation panel NFAN01
Display operation panel NF93A-2
Display operation panel Nextmove E100
Display operation panel NE870 3BSE080239R1
Display operation panel NDSO04
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Display operation panel NDSO01
Display operation panel NDSM05
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Display operation panel NDSI02
Display operation panel NDSI01
Display operation panel NDLS03
Display operation panel NDLS02
Display operation panel NDLS01
Display operation panel NDIS01
Display operation panel NDIO-02
Display operation panel NDCU-33CX 3AUA0000052751
Display operation panel NDCU-12C NDCU-12CK
Display operation panel NDCS03
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