The future development direction of the four PCB markets

Because PCBs (printed circuit boards) are so versatile, even small changes in consumer trends and emerging technologies can have an impact on the PCB market, including how it is used and manufactured.

Although there may be more time, the following four major technology trends are expected to maintain the leadership of the PCB market for a long time and lead the entire PCB industry in different directions.

1- High Density Interconnection and Miniaturization

When computers were first invented, some people probably spent their entire lives getting work done on computers that took up entire walls. And today, even calculator watches have orders of magnitude more computing power than those behemoths, let alone smartphones.

The entire manufacturing industry is currently in the sight of a whirlwind of innovation, much of which is in the service of miniaturization. Our computers are getting smaller and everything else is getting smaller.

Across the consumer base, there seems to be a gradual shift towards smaller electronics. Miniaturization means we can build smaller, more efficient homes and control them. And cheaper, more efficient cars and more.

Since PCBs are vital basic components in electronic products, PCBs must also relentlessly pursue miniaturization.

Especially in the PCB market, this means using high-density interconnect technology. Further improvements in HDI technology will further reduce the size of PCBs and touch more and more industries and commodities in the process.

2- Advanced Materials and Green Manufacturing

Nowadays, the PCB industry is being affected by some very real impacts such as climate and social pressure. The PCB manufacturing process needs to keep up with the trend of the times and evolve towards sustainable development.

In fact, PCB manufacturers have always been a hot topic when it comes to the crossroads of development and environmental protection. The introduction of lead-free solder, for example, required more energy-intensive manufacturing processes. Since then, the industry has been forced to find a new balance.

In other respects, PCB has been leading the way. Polychlorinated biphenyls have traditionally been made using fiberglass as a substrate, which is considered by most to be a relatively environmentally friendly material. Further advancements could see fiberglass replaced by materials better suited for high data transfer rates, such as resin-coated copper and liquid crystal polymers.

As manufacturing efforts of all types continue to adjust their footprints to a changing planet, the link between societal needs and the convenience of production and business will become a new norm.

3- Wearables and Pervasive Computing

We’ve briefly covered the fundamentals of PCB technologies and how they enable greater complexity on thinner boards. Now we put this concept into practice. PCBs are decreasing in thickness and increasing in functionality every year, and now we have a lot of practical applications for small circuit boards.

Consumer electronics as a whole has been a significant driver of PCB manufacturing and usage over the past few decades. Now that wearables have entered this space and are starting to become a reliable consumer product type, related PCBs will follow.

Like smartphones, wearable tech requires printed circuit boards, but they go a step further. They place an emphasis on design efficiency far beyond what past technologies have been able to achieve.

4- Health Medical Technology and Public Oversight

The introduction of modern digital technologies into medicine has been one of the greatest developments in recent human history. Technology now means we can store patient records securely in the cloud and manage them through apps and smartphones.

However, the rapid development of medical technology has also affected PCBs and vice versa in some very interesting ways. The onboard camera is a new development, and it is even possible to fasten an ultra-high fidelity camera to the PCB itself. The medical implications are huge: When a camera needs to be inserted into the body, swallowed by the body, or otherwise introduced into the body, the smaller the better. Some onboard cameras are now small enough to be swallowed.

As for public surveillance, onboard cameras and smaller PCBs can also assist. For example, dash cams and vest cameras have shown useful roles in mitigating offenses, and a number of consumer technologies have emerged to meet this need. Many popular mobile accessory companies are exploring ways to offer drivers increasingly smaller, less obtrusive in-dash cameras that include and include connected hubs to interact with your phone while you’re driving.

New consumer technologies, advances in medicine, breakthroughs in manufacturing, and strong contemporary trends are fascinating. Incredibly, the PCB has the opportunity to be at the heart of it all.

That means entering the field is an exciting time.

In the future, what other technologies will bring new development to the PCB market? Let’s keep looking for answers.

Customer site--a short line of laser marking machine (double-side engraved)-

How to choose a laser marking machine?

How to choose a laser marking machine?

 

At present, laser marking machine is suitable for most materials produced in various industries, so it is widely used in a variety of materials, such as metals, glass, ceramics, plastics, leather, etc. can be permanently marked with high quality. There is no force on the workpiece surface, no mechanical deformation and no corrosion on the material surface. So how to choose a laser marking machine? Let’s discuss something today.

S-UV-30A laser marking machine
S-UV-30A laser marking machine

1,The quality of laser: As laser is the crucial part of the whole machine, its quality determines the machine’s quality. In general, the imported laser will be better, its beam quality is good, the electro-optic conversion rate is high, and the domestic laser is slightly inferior, but the homemade laser can also meet the needs of any industry.So if you have a limited budget,then the homemade laser is a good choice.

Off-line laser marking machine (4)
Off-line laser marking machine (4)

2. The cooling device.The cooling equipment of machine can be judged from the following aspects:
(1) What’s the cooling water velocity? (If the speed of cooling water is fast, the heat dissipation will fast as well)
(2) Whether the water pipe of the cooling system leaks, if dew, will also affect the power of the laser.

 

3. The quality of laser lens. The better laser lens, the more reflected laser beam, and the smaller the laser loss, which is conducive to increasing the electro-optic conversion rate of laser marking machine.
There are two kinds of lenses: the imported one and homemade one, the homemade also divided into imported materials and homemade materials.
The service life and use effect will being effected by its price .

Off-line laser
Off-line laser

4. Laser operating software. You need to confirm whether the software is original genuine development, pirated software will often appear light leakage, power consumption, performance instability, short service life, high maintenance costs.
5. After-sales service. You need to acknowledge if the supplier can offer this service like deliver, training, debugging and so on.

Off-line laser and computer
Off-line laser and computer

Conclusion:

Laser marking machine has 3 main parts: laser, galvanometer and laser software.

There are many types of laser marking machines. First of all, you should make clear the scope of production, processing materials and processing capacity of our enterprises, and then determine the type and quantity of equipment to be purchased.

 

Auto-Laser marking machine

 

 

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How to clean up SMT stencil to improve PCBA quality for EMS

Customer site--a short line of laser marking machine (double-side engraved)-

Smart Factory!! Laser marking is where MES traces back from the workshop

Smart Factory!! Laser marking is where MES traces back from the workshop

Smart factories have developed rapidly in recent years. MES is a workshop-oriented production management technology and real-time information system. It is the basic technical means to implement enterprise intelligent manufacturing strategy and realize workshop production agility. It is in the middle part of the enterprise’s planning and control layer, namely the execution layer (workshop layer). Although the enterprise’s planning layer and control layer have made great progress in the operation, there are still some problems that can not be solved in the execution layer,like:

  1. When consumers complain about quality problems, can you trace all the production process information (laser marking machine carved directly on the product surface) according to the product number? Can you immediately identify its raw material supplier, operation position/personnel, the process and key process parameters?
  2. Can the quality information of every product in the workshop be counted and monitored in time? Can the quality inspection data of products be automatically counted and analyzed, and the random fluctuation and abnormal fluctuation of product quality can be distinguished accurately? So that the hidden quality removed at the first time.
  3. When the same production line needs to mix and assemble various types of products, can it automatically verify and prompt operation to prevent workers’assembly errors, product production process errors, product mixing and delivery errors? (The two-dimensional bar code of the product itself can be traced back to any assembly step of the product)
  4. What are the quantities of each product in upstream, current steam,downstream of current warehouse? Will be sell  to which distributor?When can it be delivered in time?
  5. How much time there are for producing  at the production line and processing equipment, and how much time does it stop and idle?
  6. Can the manual report be replaced by electronic reports and the production quantity, qualification rate and defect code of each process be automatically counted?

 Customer site--a short line of laser marking machine (double-side engraved)

Customer site–a short line of laser marking machine (double-side engraved)

ERP system(the planning level) is difficult to provide a perfect solution when faced with the above typical workshop management problems, so it is impossible to link up the ERP system and the field automation system. But MES can do that and delivers information to optimize the production process from placing orders to completing products.

Under producing activities, MES system can collects timely and correct data, and provide appropriate guidance, response then reporting to the decisioner. MES improves equipment recovery, punctual delivery, inventory turnover, marginal contribution and cash flow performance. MES provides the production information needed for two-way communication between enterprises and suppliers.

Main Characteristics of MES

  1. Suitable for diversified production processes, support multiple production lines, improve management efficiency, and can effectively arrange production on multiple production lines for each batch of work;
  2. Establish a perfect database, provide powerful query function, more complete and deeper information, can collect all information on the production line at any time and anywhere, including material and personnel production capacity, maintenance, etc.
  3. The function of error prevention in assembly line operation, preventing parts assembly errors and product production process errors in advance, and promptly remind operators to correct;
  4. Production data timely and correctly to integrate online
  5. Monitoring Production Line timely,and it is the best tool for quality assurance.
  6. Statistical analysis of maintenance data is convenient for knowledge management. The system can rank the top ten items for different types and different maintenance projects, so that maintenance personnel can get maintenance basis.
  7. Provides display for visual management. The panel displays the information of current workstation’s goal, accomplishment, rate of defect, difference and so on. The manager can timely understand the production and quality of the site, and realize real-time transparent production and management.

MES system is the bridge of manufacturing process information integration, which dispel the gap between enterprise planning layer and workshop process control system. MES helps enterprises to implement complete closed-loop production by emphasizing the overall optimization of manufacturing process, and also provides a good foundation for the construction of intelligent factories. Deeply understanding of MES, an advanced management idea, and better application of MES in workshop will bring infinite benefits to enterprises.

The role of 2D code in the whole production system can not be replaced, whether using label paper printing, ink jet printing or laser coding can be achieved. However, due to the increasing cost of production and the increasing automation requirements of modern enterprises, it is also a trend to realize unmanned operation. Laser marking machine is to realize the advantage of “zero consumables”, MES system and laser marking stand out. It has been widely used in SMT industry.

S-400 Laser marking machine-Built-in reversal system
S-400 Laser marking machine-Built-in reversal system

 

 

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How to clean up SMT stencil to improve PCBA quality for EMS

The comparison of PCB double side laser marking approaches

The comparison of PCB double side laser marking approaches

                     —built-in reversal system of laser marking machine

In SMT industry, the traceability of PCB contract manufacturer and  independent product are becoming more and more important, which leads to more and more attention from customers to the permanent mark. Nowadays Chinese enterprises that manufacture laser marking devices have owned different models,such as for double side engrave there have online-built-in reversal laser system and online-built-in up&down laser head.

 

 

Laser marking production line with PCB surface cleaner Laser marking production short line with PCB surface cleanerToday I am gonna talk about the comparison of these two approaches.

1,Laser marking machine with online-built-in reversal laser system

Merits:

(1)Double-side MARK camera recognition system,

(2)Double-side 2D code reading function,

(3)A accurately marking position.

(4)Identical marking area for both two sides

(5)A good cleaning effect of marking process

(6)An excellent service lifetime

Demerits:

(1)Few seconds waiting time

(2)Requiring mechanical motion when turnover the PCB

S-400 Laser marking machine-Built-in reversal system
S-400 Laser marking machine-Built-in reversal system

2, Laser marking machine with built-in up&down laser head

Merits:

(1)Up-side MARK Camera Recognition

(2)Up-side 2D code reading function

(3)A accurately marking position at up side

(4)A good cleaning effect of marking process

(5)Faster marking efficiency

Demerits:

(1)No MARK recognition at down side.

(2)No code reading function at down side

(3)Fixed laser head at down side,require mechanical positioning

(4)Limited marking area at down side

(5)Fell dust after engraving will damage laser head

That’s it for today,please visit our blog page to learn more.

 

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https://www.smthelp.net/product/stencil-cleaner-machine/
How to clean up SMT stencil to improve PCBA quality for EMS

Basic working principle of wave soldering

 

S-WS450 Wave Soldering machine

 

一、Wave soldering machine

Wave solderingis a kind of solder wave with a specific shape formed on the surface of molten liquid solder by means of pump pressure. When mounted components pass through the solder wave at a fixed angle, solder joints are formed in the lead solder zone. The component is preheated in the preheating zone of the welding machine (the preheating of the component and the temperature to be reached are still controlled by the predetermined temperature curve) in the process of conveyor belt conveyor. In actual welding, the preheating temperature of the assembly surface is usually controlled, so many devices have added corresponding temperature detection devices (such as infrared detectors). After preheating, the components enter the lead slot for welding. Tin trough contains molten liquid solder. The nozzle at the bottom of the trough determines the shape of the solder. Thus, the solder wave is heated when the welding surface of the component passes through the wave. At the same time, the solder wave wets the welding zone and expands and fills the welding process.

wave soldering process
wave soldering process

二、Basic working principle

Wave soldering is based on the principle of convection heat transfer to the welding area heating. The molten solder wave acts as a source of heat. On the one hand, it flows to wash out the pin welding area, on the other hand, it acts as a heat conduction. The pin welding area is heated under this effect. When the silver lead solder is used, the melting solder temperature is usually controlled at about 245 degrees Celsius. In order to ensure the temperature of the welding zone, the solder wave usually has a fixed width, so that when the welding surface of the component passes through the wave, there is sufficient time for heating and wetting. In traditional wave soldering, a wave is adopted and the wave is relatively flat. With the use of lead solder, double wave mode is adopted at present.

wave soldering pot

三、The welding spot

The pin of the component provides a way to immerse the liquid solder into the metal through hole. When the pin contacts the solder wave, the liquid solder climbs up along the pin and the hole wall with the help of the surface tension. The capillary action of metallized through-hole improves the climb of solder. When the solder reaches the PcB part, the surface tension of the pad is expanded. The rising solder discharges flux gas and air from the through hole, filling the through hole and forming a solder joint after cooling.

四、What’s the difference between wave soldering and reflow oven?


The mainly different are in heating source and solder supply mode.
In wave soldering, the solder is pre-heated and melted in the trough. The solder wave pumped by the pump plays a dual role of heat source and solder supply. The solder wave of solder solder solder causes the through holes, pads and component pins of the PcB to be heated, and also provides the solder needed to form solder joints. In reflow soldering, solder paste is pre-quantitatively assigned to the solder zone of PCB. The role of heat source in reflow is to re-melt the solder.

五、Main components and working principle of wave soldering

A wave soldering machine is mainly composed of conveyor belt, heater, tin trough, pump, flux foaming (or spraying) device, etc. It is mainly divided into flux adding area, preheating zone and welding area.

The solder in the solder tank, heated by a heater, gradually melts, and the molten liquid solder, under the action of a mechanical pump (or electromagnetic pump), forms a specific shape of solder wave on the surface of the solder tank, which becomes a wave. The PCB with mounted elements is placed on the conveyor and solder joints are welded by passing through the solder wave at a certain angle and at a certain immersion depth, so it is called wave soldering.

For a single wave, there is only one wave, called the advection wave. For double waves, the first wave is called the disturbing wave, and the second wave is called the advection wave (Ping Huabo).

The role of spoiler: SMT element welding and prevent leakage welding, it ensures the proper distribution of solder through the circuit board. The solder is penetrated through the slit at a relatively high speed, thus leading to narrow gap. The direction of the jet is the same as that of the circuit board. For SMT components, the disturbance wave can basically be welded. But for through-hole components, the spoiler wave itself can not properly weld the components, it leaves the weld unevenness and excess solder, so the need for a second wave – advection wave.

The role of advection wave is to eliminate burr and weld bridge generated by the disturbance wave. Advection wave is actually the wave used by the single wave soldering machine. Therefore, when the traditional through-hole components are welded on the dual-wave machine, the disturbing wave can be turned off and the soldering can be completed by advection wave. The entire wavefront of the advection wave is basically horizontal, like a mirror. At first glance, it looks as if the tin wave is static, but in fact the solder is flowing continuously, but the wave is very smooth.

六、Wave soldering machine welding spot molding

Solder Joint Forming: When PCB enters the front end of the wave, the substrate and pin are heated, and before leaving the wave, the whole PCB is immersed in the solder, that is, bridged by the solder, but at the moment of leaving the wave end, a small amount of solder is attached to the pad due to the effect of wetting force, and due to surface tension, it will come out. At present, the shrinkage of the lead wire is small, and the wetting force between the solder and the pad is greater than the cohesion of the solder between the two pads. Therefore, a full, round solder joint will be formed, leaving the excess solder at the end of the wave, and due to gravity, it will fall back into the tin bath.

S-WS250 Wave Soldering machine

How to choose laser marking machine in SMT production line

The most important choice of laser marking machine is its laser.So today I’m gonna to tell  you something about four most common lasers.

 

S-UV-300 laser marking machine for PCB
laser marking machine for PCB

1. CO2 laser /(CO2 laser marking machine)

1)Principle

CO2 laser marking machine principle: CO2 laser marking machine, or carbon dioxide laser marking machine (CO2 is carbon dioxide). It is a laser galvanometer marking machine using CO2 gas as working medium. CO2 laser marking machine is a CO2 laser with CO2 gas as the medium, CO2 and other auxiliary gases are charged into the discharge tube on the electrode to add high voltage, the discharge tube produces glow discharge, so that the gas emits a wavelength of 10.64um laser, laser energy amplified, after the galvanometer scanning and F-Theta mirror focusing, under the control of computer and laser marking control card. The marking of images, words, numbers and lines can be carried out on the workpiece according to the requirements of users.

2)Constitution

CO2 laser marking machine consists of CO2 laser, 10.64 field mirror, 10.64 beam expander, CO2 laser power supply, scanning galvanometer, control computer, laser control card, laser control software, laser frame, laser circulating water system, circuit control system and other parts.

3)Advantages and application areas

The main features of CO2 laser marking machine are: using carbon dioxide laser, belonging to the general model, post-focusing mode, small size, high integration.

This machine is suitable for marking most non-metallic materials, such as paper packaging, plastic products, label paper, leather cloth, glass and ceramics, resin and plastic, bamboo and wood products, PCB board, etc. CO2 laser is a gas laser with a wavelength of 10.64 um in the far infrared optical band. CO2 gas filled discharge tube is used as the medium to produce laser. When high voltage is applied to the electrode, glow discharge is produced in the discharge tube. The gas molecule can release the laser, and the laser beam is formed after amplifying the laser energy.

Auto-Laser marking machine
Auto-Laser marking machine

2.Green laser /(Green laser marking machine)

1)Principle

Green laser marking machine uses high-power multi-mode laser diode pumped to produce green laser beam after laser frequency doubling, and then through computer control of high-speed scanning galvanometer deflection marking or cutting. Two laser beams are projected from different angles into transparent objects (such as glass, crystal, etc.), accurately intersecting at a point. Because two laser beams interfere and cancel at the intersection point, their energy is converted from light energy to internal energy, releasing a lot of heat, melting the point into a tiny hole. The machine accurately controls the intersection of two laser beams at different locations, creating a large number of tiny holes that eventually form the desired pattern.

 

2)Advantages and application areas

The green laser with 532 nm wavelength has obvious advantages: smaller spot diameter, more concentrated energy, high electro-optic conversion efficiency, good beam quality, marking accuracy below 10 micron level, neat marking frame, no explosion point, no thermal deformation. Mainly used in glass, crystal products, surface and internal marking, ceramics, metals, electronics, plastics and other products. It belongs to the category of cold light. It is also suitable for some products with high heat reaction and high precision.

3.Ultraviolet laser/(Ultraviolet laser marking machine)

1)Principle

Through photochemical ablation, that is, by laser energy to break the bonding between atoms or molecules, making it into small molecules gasification, evaporation. The focus spot is very small and the heat affected zone is very small, so it can be used for superfine marking and special material marking.

2)Constitution

The main components of UV laser marking machine are: focusing system, trigger type, computer control system, laser power supply, laser, galvanometer field mirror scanning system, marking control software.

3)Advantages and application areas

Ultraviolet laser marking machine with its unique low-power laser beam, especially suitable for ultra-fine processing of the high-end market.iPhone, cosmetics, pharmaceuticals, food and other polymer packaging bottle surface marking; flexible PCB board; silicon wafer micro-hole, blind hole processing; LCD liquid crystal glass, glassware surface, metal surface coating, plastic buttons, electronic components, Communications Equipment,  and other fields.

Laser marking machine
Laser marking machine

4.Optical fiber laser/(Optical fiber laser marking machine)

1)Principle

Optical fiber laser marking machine principle: Optical fiber laser marking machine is the use of laser beams in a variety of different substances on the surface of permanent marking. Marking effect is through the evaporation of the surface material to expose the deep material, or through the light energy causes the chemical and physical changes of the surface material to “engrave” out the trace, or through the light energy burns off part of the material, showing the desired etched patterns, text, bar code and other graphics. The so-called fiber laser marking machine refers to the use of fiber laser marking machine, fiber laser with small size (no water-cooled device, using air-cooled), light is good quality (base mode), maintenance-free and so on.

2)Constitution

Fiber laser marking machine is mainly composed of fiber laser, high-speed scanning mirror, marking software, industrial computer and cabinet. Fiber laser is the core part.

3)Advantages and application areas

Mainly used in: plastics, electronics, metals, ceramics, tobacco and other materials marked out the required text, pattern, bar code and other graphics. Optical fiber laser marking machine easy to operate, fast marking, clear and other advantages, making the production efficiency of enterprises more efficient. Our commonly used pulsed lasers are 10W, 20W, 30W and 50W.

laser marking machine sample1
laser marking machine sample 1

Summary

We design and manufacture automatic machine for the PCB/SMT and Thru-hole industries in Shenzhen China. We help companies looking to low cost equipment with smart, ROI-driven assembly equipment solutions.Contact us today to learn how we can help you。

S-UV-300 laser marking machine for PCB

Product overview and industry application of laser marking machine

Abstract: The laser marking machine is means it use of  laser.  laser has the advantages of small volume (without water cooling, air cooling), good beam quality (fundamental mode), free maintenance etc, is mainly composed of laser, vibration lens, marking card three parts.

Guide: all you want to know about  laser machine knowledge is here!

S-UV-300 laser marking machine for PCB
S-UV-300 laser marking machine for PCB

In recent years, laser marking has become a hot topic in the study of laser physics. It is considered to be a new generation of products that may replace manual marking in an all-round way. The laser marking machine is a permanent mark on the surface of a variety of materials using a laser beam. The principle of marking is to expose deep matter through the evaporation of surface matter, or to engrave traces through the physical change of surface material caused by light energy, or to burn out some substances by optical energy to etch all kinds of graphics、patterns、characters、barcodes etc,.

The laser marking machine is means it use of laser. It has the advantages of small volume (without water cooling, air cooling), good beam quality (fundamental mode), free maintenance etc, is mainly composed of laser, vibration lens, marking card three parts.
Laser marking machine and its laser beam quality was good and with 1064 nm output center,it’s whole life is about 100 thousand hours,Laser compared with other types of markers for longer life. The efficiency of electro-optic conversion is above 28%, and the conversion efficiency of 2%-10% have a great advantage for other type of marking machine. It has excellent performance in energy saving and environmental protection.

Equipment features
1. A variety of metal and nonmetal materials can be processed. Especially for high hardness, high melting point and brittle material, it is more advantageous to mark the brittle material.
2. It belongs to non – contact processing, no damage to products, no tool wear and good marking quality.
3, the laser beam is fine, the processing material consumption is very small, and the processing heat affected zone is small.
4. The processing efficiency is high, the computer is controlled, and the automation is easy to be realized.

Application fields
Markers are widely used in many fields of graphics and text of integrated circuit chip, computer accessories, industrial bearings, watches, electronic and telecommunication products, aerospace devices, auto parts, household appliances, hardware tools, moulds, food packaging, jewelry, tobacco and military things, and mass production line.

Main features
Laser is divided into three kinds of types: CO2 laser/Green laser/UV laser. The following is a detailed introduction.
1, CO2 laser:10~20W, (laser wave is about 1064nm)
2, Green laser:7~10W(laser wave is about 532nm)
3,UV laser:3~5W(laser wave is about 355nm)
Laser marking machine is the most advanced marking equipment in the world. It has many advantages, such as good beam quality, small volume, fast speed, long service life, flexible and convenient installation, and low maintenance.Laser is the latest international, the most reliable structure, small volume, low power consumption.close to the ideal beam, the USB interface output control, optical scanner, laser with high repetition rate, high speed without distortion.

Future advantage
(1) low cost of manufacturing, mature technology and the availability.
(2) the light source has a very small volume area ratio, fast heat dissipation and low loss, so the up conversion efficiency is high and the laser threshold is low.
(3) the output of laser wavelengths is more.
(4)tunability: because of the wide fluorescence spectrum.
(5) the laser easy to apply to various multi-dimensional and arbitrary space processing applications, making the design of the mechanical system very simple.
(6) no thermoelectric refrigeration and water cooling are needed, only a simple air cooling is needed.
(7) high electro-optic efficiency: the integrated electro-optical efficiency is as high as 20%, saving the power consumption of the work and saving the operation cost.

S-UV-30A laser marking machine
S-UV-30A laser marking machine