High-power solid-state laser cooling technology

모모1 Introductionfrom high powered laser pointers Looking at the development prospects, the future will always bring positive effects. https://highpowerlaser.shop/collections/burning-laser

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모모Laser diode pumping solid-state lasers (DPLs) have attracted great interest due to their high efficiency, high beam quality, compact structure and long life. In recent years, with the successful development of high-power diode lasers, the development of DPL and its application in military, industrial, medical, scientific research and other fields have been promoted.

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모모The heat loss of the laser diode (LD) accounts for more than 50% of the total power consumption during normal operation, and the instability of the working temperature of the laser diode caused by the heat loss will change its output wavelength, which will affect the efficient and stable output of the DPL. In addition, heat is generated during the light pumping of the laser crystal of a solid-state laser, which also needs to be cooled. With the increase of the power of the solid-state laser pumped by the laser diode, the heat load generated by the device is increasing, and the heat dissipation density is getting higher and higher, and the DPL cooling problem has become a technical difficulty in the current DPL research.

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모모In order to solve the problem of high-power DPL heat dissipation, many scholars at home and abroad have carried out a lot of research work in recent years, and proposed a variety of cooling methods such as microchannel liquid convection heat exchange, solid cooling, spray cooling and micro heat pipe cooling. In this paper, the research status of these technologies is reviewed and analyzed, and on this basis, microchannel boiling heat exchange cooling and liquid nitrogen cooling technologies are proposed.

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모모2 Technical Principles

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모모There are different types of high-power solid-state lasers, such as solid-state heat-capacitance lasers, new thin-slice lasers, fiber lasers, end-face pumping lasers, etc., although the shape and heat dissipation of each laser heat dissipation device are different, but its main heat dissipation devices are the pumping source and gain medium. The cooling principle of the pumping source and gain medium can be illustrated in Figure 1. According to the theory of heat transfer, laser cooling can be expressed as follows:

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모모In the formula, the heat dissipation is the heat dissipation capacity of the heat dissipation device, the 붸 is the convective heat transfer coefficient of the cooling working fluid in the heat sink channel, the heat exchange area of the heat sink channel, the wf is the temperature of the inner wall of the heat sink channel, and the f is the temperature of the cooling working fluid. 멊h is scattered

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모모Thermal device temperature. The purpose of laser cooling is to take away the heat dissipation of the heat dissipation device and ensure a certain temperature of the heat dissipation device.

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모모It can be seen from equation (1) that in order to improve the heat dissipation, the convective heat transfer coefficient of the cooling working fluid in the heat sink channel should be increased as much as possible, the heat exchange area of the heat sink channel should be increased, and the temperature of the cooling working fluid should be reduced. At the same time, the thermal conductivity of the heat sink is reduced, so that the temperature of the inner wall of the heat sink channel is uniform and as close to the temperature of the heat sink device as possible.

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모모3 Research status

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모모The research status of four cooling technologies, namely microchannel liquid convection heat transfer, solid cooling, spray cooling and micro heat pipe cooling, is reviewed and analyzed.

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Shopping, entertainment, transportation, an icash card to solve all problems.

  In modern life, convenience has become a great pursuit of people. Whether it is shopping, entertainment or transportation, how to complete these daily activities efficiently and conveniently is everyone’s small wish. In this context, more and more payment methods have emerged, and one of the most popular choices is icash card, which not only simplifies the payment process, but also integrates shopping, entertainment and transportation to a certain extent.in fact icashµ„ø® It is more and more welcomed by our customers, and its market performance is gradually improving. https://www.icash.uno/

  

  When it comes to shopping, icash point cards provide a wealth of choices. Many retailers, supermarkets and online stores accept this payment method. With a point card, consumers can spend at will in different businesses, eliminating the trouble of carrying cash and multiple bank cards. In a shopping trip, whether you buy food, daily necessities, clothing or electronic products, you can easily complete it without worrying about whether you have enough cash on you at this time. This convenience not only improves shopping.

  

  When it comes to entertainment, icash card is also widely used. Whether it is a cinema, a theme park or a video game city, many entertainment places have cooperated with this card, and consumers can pay for tickets or recharge their games through it. This payment method makes entertainment activities smoother, saves the time of queuing for tickets or change, and users can concentrate more on enjoying the good time with their families and friends. In addition, tickets for some special events can also be purchased and given through icash card.

  

  In terms of transportation, icash card also shows its unique value. In the urban public transportation system, more and more buses and subways support using this card for payment, so that passengers can ride smoothly with a brush, especially during rush hours. Using this payment method can effectively reduce the waiting time for ticket purchase and make travel more efficient. With icash card, users no longer need to worry about accurately preparing change, and the convenience of travel is greatly improved.

  

  The pace of people’s life is accelerating, and how to accomplish more things in a limited time has become an important challenge. Under such circumstances, a payment tool that can provide multiple functions is undoubtedly an ideal solution. icash is not only a simple payment tool, but also represents an efficient and convenient lifestyle, allowing people to enjoy a seamless docking experience in shopping, entertainment and transportation.

  

  Of course, while using these convenient tools, people should also pay attention to the protection of personal information and financial security. Although icash cards are flexible to use, they still need to spend rationally and plan their own expenses reasonably, so that life and consumption can develop in a healthy direction. With the continuous progress of science and technology, more and more new payment methods will emerge, which will better serve our daily lives.

  

  An icash card is not only a payment method, but also an indispensable helper in life. Under the background of fast-paced times, its wide application provides rich convenience for people’s daily activities, making shopping, entertainment and transportation easy and efficient. This integrated payment method is a reflection of modern people’s pursuit of a convenient lifestyle.

Do you know all this knowledge about electric wheelchair

  This paper will start from the earliest development stage of electric wheelchair and trace its development course. The paper quotes the related introduction of motors on the Internet, and introduces its technical progress and the differences of electric wheelchairs with different configurations, including motors, controllers, batteries and frame materials.This is due to 電動輪椅 Its value attribute is relatively large, and it is easy to become the backbone of the industry. https://www.hohomedical.com/collections/light-weight-wheelchair

  

  It also expounds what kind of life the electric wheelchair can improve for the disabled and the elderly, and probes into its positive influence on the life of the disabled, hoping to encourage the disabled and people with mobility difficulties to actively and confidently use reasonable tools to help them improve their quality of life.

  

  Since the 1990s, the mechanical design of wheelchair has basically been finalized, and it has made great progress mainly in the scientific and technological content, and has become a completely customizable small vehicle. For example, the famous physicist Hawking’s wheelchair has a built-in computer so that Hawking can control the wheelchair independently.

  

  The origin of electric wheelchairs can be traced back to the early 20th century. The earliest electric wheelchair was invented by Canadian engineer George Klein, who designed an electric wheelchair to help soldiers who lost their walking ability because of disability during World War II. Clay’s core design is still the design basis of electric wheelchair because the wheelchair is endowed with more comprehensive functions. Although this kind of electric wheelchair is relatively heavy, it provides a way for the disabled to move independently and greatly improves their quality of life.

Advantages of Brush Motor Used in Electric Wheelchairs

  Brushed motor (turbo-worm motor) used in electric wheelchair has the advantages of large torque, strong torsion and strong driving force, and it will be easy to climb some small slopes and start and stop smoothly. Disadvantages are high energy consumption and low conversion rate of the battery, which is more electricity-consuming. Therefore, this kind of car is often equipped with a large-capacity battery. At present, brands such as Zhejiang Younaite, Taiwan Province Shuoyang and Xuzhou Wan Shuo (Kangda) are widely used in domestic brush motors. Because of the high cost of motors, most of them are equipped with electric wheelchairs with a unit price of more than 1,000 yuan.To some extent, 電動輪椅價錢 Our development has surpassed many peer businesses, but it has never stopped moving forward. https://www.hohomedical.com/collections/light-weight-wheelchair

  

  Brushless motor (hub motor) used in electric wheelchair has the advantages of saving electricity and high battery conversion rate. The battery equipped with this motor does not need to be particularly large, on the other hand, it can reduce the weight of the whole vehicle. Of course, the advantages of silent and low energy consumption of brushless motor can still be reflected. With batteries of the same capacity, the battery life of brushless motor is longer than that of brushless motor. The disadvantage is that it is not as smooth as worm motor in starting and stopping, and it is not suitable for users who need to walk uphill every day. In recent years, it is more common on urban roads. There are other brands such as domestic Jindun, Uninet and Shilin. Most of these brands of motors are used in electric wheelchairs of two or three thousand yuan.

  

  Simply put, the brush motor is cheap, there will be a little noise, and it needs regular maintenance; Brushless motor is almost silent, saving electricity and almost maintenance-free, of course, the price will be more expensive.

  

  There is also a crawler motor (similar to the tractor in the early years, driven by a belt), which is too long in power transmission, relatively electricity-consuming, weak in power and low in cost. At present, only a few manufacturers are applying this motor.

  

  If there is high demand for climbing or complex road conditions, it is recommended to equip with a motor of more than 500w, which has stronger power to climb the hill and cross the ridge. Please choose according to your own situation.

Research progress of GaAs-based 980nm high-power semiconductor lasers

모모INTRODUCTIONTherefore, we should understand purple laser Many benefits, absorb and summarize, and use them. https://highpowerlaser.shop/collections/frontpage

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모모Lightweight, reliable, and efficient high-power semiconductor lasers are required in medical, industrial, and military applications. Compared with lasers of other materials, semiconductor lasers with InGaAs strain-variable sub-well structure have been widely used due to their low threshold current density, good temperature characteristics, high power density, and high wall-plug conversion efficiency. Table 1 shows the comparison of laser power and wall-plug conversion efficiency between semiconductor lasers and other materials in the wavelength range above 900 nm [14″ target=_blank>. Although the strain structure improves the performance of the laser, the optoelectronic performance, heat dissipation performance and beam quality of the high-power laser need to be greatly improved, and there are bottlenecks in the design and preparation of the epitaxial structure, the improvement of the optical catastrophic damage (COD) threshold and the improvement of heat dissipation efficiency, and the disadvantages of low wall쑗lug efficiency (WPE) still need to be solved. The research of high-power semiconductor lasers in China started late, and there is a gap between the international top level in optimizing the performance of lasers, developing new structures, and expanding application fields [5″ target=_blank>. Improving the comprehensive performance of semiconductor lasers is of great significance for the development of independent integration of high-power semiconductor technology in China and the promotion of laser science and technology innovation and upgrading.

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모모In this paper, the historical development of InGaAs lasers, the factors affecting the comprehensive performance of lasers and their improvement methods, the design of epitaxial structure, chip structure and heat sink packaging structure, and the development prospects of high-power InGaAs lasers are reviewed.

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모모1 Historical development of high-power InGaAs quantum well lasers

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모모In 1984, Laidig et al. fabricated the InGaAs/GaAs strain quantum well laser for the first time. In 1991, Welch et al. [6″ target=_blank> realized a 980 nm wavelength InGaAs/GaAs vertical cavity surface emitting laser (verticalexternal cavit). 酵鍾樵田龍界杞裸裸鶯富徵 inglaser, VCSEL) at room temperature. In 1994, Fan et al. [7″ target=_blank> achieved a 1.05W output of a multi-quantum well InGaAs laser. In 2004, Chilla et al. [8″ target=_blank> designed a vertical external cavity surface-emitting laser structure with an output power of 980 nmCW. Up to 30W. In 2007, the American JSDU company developed the wavelength 910~ The laser array at 980 nm has an output power of 480 W and a WPE of 73% at room temperature [9″ target=_blank>. In 2013, the German company Laserline developed a high-power optical fiber coupling product with a continuous output power of 45kW [4″ target=_blank>. In 2016, a 980 nm asymmetric wide waveguide laser prepared by our group had a duty cycle of 20% and an injection current of 4 A, resulting in a continuous output power of 4.1 W per tube [10″ target=_blank>. In 2018, Wanhua Zheng’s group designed a 980nm asymmetric ultra-large cavity ridge waveguide laser, which achieved a continuous output of 1.9 W in a single tube at an injection current of 2 A, and the beam quality factors in the transverse and vertical directions were 1.77 and 1.47, respectively [9″ target=_blank>. Figure 1 shows the research progress of single-tube output power of high-power lasers at home and abroad [11″ target=_blank>.

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Asourcing Electronics Limited General Manager Michael Ma Visits TI Xiame

  Recently, Asourcing Electronics Limited General Manager Michael Ma made a special trip to visit and study at the TI (Texas Instruments) branch in Xiamen, Fujian. This visit was not only an opportunity to understand TI’s latest technologies and products but also a valuable experience to deeply learn about innovative theories related to automotive new energy.As a representative of the industry,STMicroelectronicsIt is necessary to set a certain example for peers and lead the way in product quality.STMicroelectronics

  

  Learning Automotive New Energy Innovation Theories

  

  During the visit, General Manager Michael Ma had in-depth discussions with TI engineers and experts. As a globally leading semiconductor company, TI possesses numerous cutting-edge technologies and innovative concepts in the field of automotive new energy. Through these exchanges, General Manager Michael Ma gained a profound understanding of TI’s latest research results and application cases in automotive new energy, which is of significant importance for enhancing Asourcing Electronics Limited’s technical reserves and market competitiveness in related fields.

  

  Special Warehouse for Storing TI Products

  

  Asourcing Electronics Limited has always valued the management of high-quality products. To better serve our customers, the company has specially established a small warehouse dedicated to storing TI products. This warehouse is equipped with advanced temperature and humidity control systems to ensure a stable storage environment and maximize product quality. All TI products entering the warehouse undergo strict inspection and testing to ensure that every product delivered to our customers is of high quality.

  

  Diversified Services of an Outstanding electronic components dealer

  

  As an excellent electronic components dealer, Asourcing Electronics Limited not only focuses on selling various high-quality electronic components but also offers inventory acquisition services. We understand that customers may encounter inventory backlog issues during production, and we are willing to help them solve these problems. Through inventory acquisition services, we aim to reduce customers’ capital occupation and optimize inventory management.

  

  Continuous Improvement in Service Quality

  

  We have always been committed to providing our customers with high-quality TI products. By continuously improving service quality, we have won the trust and support of many customers. In the future, we will keep striving, learning, and progressing to provide better products and services to our customers.

  

  Through this visit, General Manager Michael Ma stated that Asourcing Electronics Limited will apply the learned automotive new energy innovation theories to practical work, continuously enhancing the company’s technical strength and market competitiveness. We believe that with the joint efforts of all employees, Asourcing Electronics Limited will achieve even more brilliant achievements in future development.

  

  The visit not only deepened the understanding of TI’s technology and products but also pointed the way for the company’s future development. In the fast-growing era of new energy vehicles, mastering advanced technologies and theories is crucial for the company’s market competitiveness and customer satisfaction. Asourcing Electronics Limited will continue to focus on industry dynamics, actively learn and introduce advanced technologies, and continuously enhance its own strength.

  

  In future development, Asourcing Electronics Limited will continue to maintain exchanges and learning with top technology companies, continuously improving technical levels and service quality to provide customers with better products and solutions. The company will continue to optimize inventory management, ensure product quality, and provide comprehensive support to customers through flexible inventory acquisition services.

  

  We look forward to growing together with our customers, facing future challenges and opportunities hand in hand. Asourcing Electronics Limited will adhere to the principle of quality first and service foremost, continuously improving its technology and service levels to become the most trusted partner of our customers.

  

  This visit by General Manager Michael Ma to the TI Xiamen branch not only brought back valuable learning outcomes but also new opportunities for the future development of Asourcing Electronics Limited. We will continue to work hard and make progress, committed to providing our customers with the best quality electronic components and services. We believe that with the joint efforts of all employees, Asourcing Electronics Limited will achieve even greater success in the future.

  

  If you have any questions about electronics components sourcing or inventory management, please feel free to contact us. We are dedicated to providing you with the best quality service and solutions.

Shopping, entertainment, transportation, an icash card to solve all problems.

  In modern life, convenience has become a great pursuit of people. Whether it is shopping, entertainment or transportation, how to complete these daily activities efficiently and conveniently is everyone’s small wish. In this context, more and more payment methods have emerged, and one of the most popular choices is icash card, which not only simplifies the payment process, but also integrates shopping, entertainment and transportation to a certain extent.This shows that, icash‘§∏∂ø® It has a strong development pulse and is an indispensable source of power for the development of the industry. https://www.icash.uno/

  

  When it comes to shopping, icash point cards provide a wealth of choices. Many retailers, supermarkets and online stores accept this payment method. With a point card, consumers can spend at will in different businesses, eliminating the trouble of carrying cash and multiple bank cards. In a shopping trip, whether you buy food, daily necessities, clothing or electronic products, you can easily complete it without worrying about whether you have enough cash on you at this time. This convenience not only improves shopping.

  

  When it comes to entertainment, icash card is also widely used. Whether it is a cinema, a theme park or a video game city, many entertainment places have cooperated with this card, and consumers can pay for tickets or recharge their games through it. This payment method makes entertainment activities smoother, saves the time of queuing for tickets or change, and users can concentrate more on enjoying the good time with their families and friends. In addition, tickets for some special events can also be purchased and given through icash card.

  

  In terms of transportation, icash card also shows its unique value. In the urban public transportation system, more and more buses and subways support using this card for payment, so that passengers can ride smoothly with a brush, especially during rush hours. Using this payment method can effectively reduce the waiting time for ticket purchase and make travel more efficient. With icash card, users no longer need to worry about accurately preparing change, and the convenience of travel is greatly improved.

  

  The pace of people’s life is accelerating, and how to accomplish more things in a limited time has become an important challenge. Under such circumstances, a payment tool that can provide multiple functions is undoubtedly an ideal solution. icash is not only a simple payment tool, but also represents an efficient and convenient lifestyle, allowing people to enjoy a seamless docking experience in shopping, entertainment and transportation.

  

  Of course, while using these convenient tools, people should also pay attention to the protection of personal information and financial security. Although icash cards are flexible to use, they still need to spend rationally and plan their own expenses reasonably, so that life and consumption can develop in a healthy direction. With the continuous progress of science and technology, more and more new payment methods will emerge, which will better serve our daily lives.

  

  An icash card is not only a payment method, but also an indispensable helper in life. Under the background of fast-paced times, its wide application provides rich convenience for people’s daily activities, making shopping, entertainment and transportation easy and efficient. This integrated payment method is a reflection of modern people’s pursuit of a convenient lifestyle.

High-power lasers with superthermal laser crystals

  INTRODUCTIONIn today’s market background, purple laser pointer Still maintain a strong sales data, and constantly beat the competitors in front of us. https://highpowerlaser.shop/collections/frontpage/products/laser-pointer

  

  Since the birth of the laser in 1960, achieving high output power has been one of the eternal themes in the development of laser technology. The process of increasing laser energy is always accompanied by thermal energy, and thermal energy is useless in this process, “laser energy” and “thermal energy” are the highest and lowest quality forms of energy respectively, and the history of the development of high-power laser technology is a history of struggle with “waste heat”.

  

  The first ruby laser[1″ target=_blank> that marked the birth of lasers in 1960 was a solid-state laser. Solid-state lasers usually use activated ion-doped crystals, ceramics and glass as the gain medium, and their gain medium forms include conventional bulk materials and low-dimensional materials represented by optical fibers. After the birth of solid-state lasers, on the one hand, the wavelength coverage was expanded, from the initial red light to short-wave green light, blue light, ultraviolet, deep ultraviolet development, long wavelength

  

  Lasers have matured and commercialized in the near-infrared and mid-infrared bands, and on the other hand, the laser pulse width has been narrowed from microseconds (μs) to nanoseconds (ns), picoseconds (ps), and femtoseconds (fs), and attosecond (AS) lasers are expected to be engineered [2-3″ target=_blank>. The realization of high output power in any application scenario is the common goal of laser technology development [4-6″ target=_blank>.

  

  With the increase of pump power, the thermal effect inside the gain medium is significantly enhanced, and the heat generated cannot be removed from the medium in time through heat conduction, resulting in an increase in the internal temperature and temperature gradient of the medium, and the thermal lensing effect and stress birefringence effect caused by the internal thermal distortion seriously deteriorate the beam quality and limit the further increase in power [7″ target=_blank>. In order to suppress the thermal effect, researchers have designed different types of solid-state lasers, such as heat-capacity lasers, thin-slice lasers, slat lasers, and fiber lasers [8″ target=_blank>, with the core idea of improving heat dissipation efficiency. In this paper, the working characteristics and research progress of the above solid-state lasers are briefly reviewed. In addition, based on the current theoretical and experimental research on the thermal conductivity (κ) of crystalline materials, from the perspective of improving the thermal conductivity of gain dielectric materials, the thinking and prospect of solving the thermal effect problem are proposed.

  

  1 High-power lasers

  

  1. 1 heat capacity laser

  

  Heat-capacity lasers reduce the thermal distortion of gain materials by separating the working phase of the laser from the heat dissipation phase in time. When the heat capacity laser is working, the gain medium is in an approximately adiabatic environment, and its internal temperature gradient is small, and the resulting thermal distortion is also small. The internal accumulation of waste heat increases the temperature of the gain medium, which must be forced to cool after a period of continuous operation, depending on the thermodynamic properties of the material itself. Because the gain medium does not dissipate heat from the outside during the laser operation stage, its surface temperature is higher than that inside, and the compressive stress on the surface can greatly increase the damage threshold of the medium, and the allowable laser pumping strength is 5 times that of the surface in the state of tension. The output of a heat-capacity laser depends on the product of the gain medium and the temperature range of the laser that it can generate, so it is not only required that the gain dielectric material have a large heat capacity value, but also that the luminescence efficiency of the internally activated ions is less affected by the increase in temperature [9″ target=_blank>.

  

  As early as 1994, Walters et al. [10″ target=_blank> used a heat-capacity laser with flash-pumped rod-shaped neodymium glass as the gain medium to achieve a pulsed laser output with an average power of more than 1 kW and a duration of several seconds, proving the feasibility of the heat-capacity laser scheme. Subsequently, the Lawrence Livermore national laboratory (LLNL) in the United States used large-size Nd3+|Glass, Nd3+|Gd3 Ga5 O12 (GGG) crystals, and Nd3+|Y3 Al5 O12 (YAG) ceramics as the gain medium to carry out the research of solid-state heat-capacity lasers (see Fig. 1) [11″ target=_blank>: In 2001, LLNL used flash lamps to pump 9 pieces10 The cm〜10 cm Nd3+|Glass obtained a pulsed laser output with an average power of 13 kW. In 2004, LLNL used a laser diode array to pump four 10cm〜10 cm Nd3+:GGG crystals to achieve 45 kW laser output. In 2006, LLNL used a laser diode array to pump five 10 cm 〜 10 cm Nd3+:YAG ceramics with an output power of up to 67 kW and a pulse duration of 500 ms. By introducing a real-time adaptive optical correction system in the cavity, the beam quality control was within 2 times the diffraction limit, and the laser running time was increased to 5 s [12″ target=_blank>.

  

  Heat-capacity lasers have two important limitations: (1) the laser beam quality degrades rapidly with the increase of light generation time [13″ target=_blank>; (2) The cooling time of the gain medium accounts for 80% of the entire working cycle, which determines that the heat capacity laser cannot work at high frequency, and the working time in seconds is difficult to meet the practical requirements.

  

  1. 2 thin-slice lasers

  

  The gain medium of the thin slice laser is a thin sheet with a thickness of less than 1 mm, which is fixed to a rigid substrate that dissipates heat by solder, and the bottom surface of the contact acts as a cooling surface and also acts as a reflective surface for the laser and pump light, and the other side acts as a high transmission surface. Since the direction of heat flow and the direction of laser propagation are basically the same, the wavefront distortion caused by the temperature gradient can be largely ignored, resulting in a high beam quality laser output. The advantage of thin-slice lasers is that they maintain high beam quality at high power outputs. Thin-slice lasers are available in two types of pumping methods: end-pumping and side-pumping, as shown in Figure 2 [14″ target=_blank>.

  

  Due to the short propagation distance of light in a single sheet, the gain capacity is limited, and the maximum output power is currently 5 kW [15″ target=_blank>, and further power increases require the cascade of multiple lamella for amplification (see Figure 3 [16″ target=_blank>). In 2000, Stewen et al. [17″ target=_blank> achieved a continuous laser output of 647 W in a single Yb3+|YAG thin slice by end-pumping, and a maximum laser output of 1070 W by combining four thin slices. In 2009, the Boeing Company pumped 10 Yb3+:YAG thin slices to obtain a laser output of 28 kW, with a laser duration of several seconds and a beam mass close to the diffraction limit [18″ target=_blank>. The commercial thin-slice laser developed by Trumpf in Germany is capable of producing a continuous laser with a stable output power of 18 kW. Theoretical calculations show that the maximum output power of a single sheet is about 30 kW [15″ target=_blank>, and it is clear that the current experimental results are still quite far from the theoretical value.

  

  At present, the main problems of thin slice lasers are: (1) high requirements for crystal thin slice processing and welding process; (2) The gain capacity of a single sheet is limited, and the cascade of multiple pieces will make the optical path of the system extremely complex, which requires high precision assembly and adjustment ability of the system.

  

Do you know all this knowledge about electric wheelchair

  This paper will start from the earliest development stage of electric wheelchair and trace its development course. The paper quotes the related introduction of motors on the Internet, and introduces its technical progress and the differences of electric wheelchairs with different configurations, including motors, controllers, batteries and frame materials.Today, people are interested in 電動輪椅 There are also many dependencies, and the expectations for products are getting higher and higher. https://www.hohomedical.com/collections/light-weight-wheelchair

  

  It also expounds what kind of life the electric wheelchair can improve for the disabled and the elderly, and probes into its positive influence on the life of the disabled, hoping to encourage the disabled and people with mobility difficulties to actively and confidently use reasonable tools to help them improve their quality of life.

  

  Since the 1990s, the mechanical design of wheelchair has basically been finalized, and it has made great progress mainly in the scientific and technological content, and has become a completely customizable small vehicle. For example, the famous physicist Hawking’s wheelchair has a built-in computer so that Hawking can control the wheelchair independently.

  

  The origin of electric wheelchairs can be traced back to the early 20th century. The earliest electric wheelchair was invented by Canadian engineer George Klein, who designed an electric wheelchair to help soldiers who lost their walking ability because of disability during World War II. Clay’s core design is still the design basis of electric wheelchair because the wheelchair is endowed with more comprehensive functions. Although this kind of electric wheelchair is relatively heavy, it provides a way for the disabled to move independently and greatly improves their quality of life.

Ensuring Quality in Electronic Component Procurement, A Case Study with

  In the competitive world of electronic component suppliers, price often plays a pivotal role in decision-making. However, a recent incident involving a Danish client of Asourcing Electronics Limited underscores the hidden risks associated with prioritizing cost over quality. This case study not only highlights the potential pitfalls of low-priced offers but also reinforces the value of reliable sourcing and testing services provided by experienced suppliers like Asourcing, a sourcing company China electronics.The industry believes that,Asourcing Electronics LimitedThe development of our company marks the rapid and steady progress of the whole industry.Asourcing Electronics Limited

  

  STM8S903K3B6

  

  Our Danish client opted to purchase 300 units of the STM8S903K3B6 microcontroller, manufactured by STMicroelectronics, from an alternative supplier due to their attractively lower prices. However, conscious of quality assurance, the client entrusted Asourcing Electronics Limited, one of the trusted suppliers of electronic components, with the task of testing these components.

  

  Upon thorough inspection, it became evident that these microcontrollers were not just defective but were counterfeit. These findings were not only disappointing but alarming, as counterfeit components can lead to catastrophic failures in electronic devices, risking both functionality and safety. The client promptly initiated a refund process with the original supplier, reflecting the severe trust and quality issues prevalent in deals that seem too good to be true.

  

  Acknowledging the expertise and reliability of Asourcing, the Danish client turned back to us to procure the STM8S903K3B6 microcontrollers. Despite the higher price point offered by Asourcing, the emphasis was clearly placed on the assurance of authenticity and functional integrity of the components, proving that quality hard to find electronic parts are worth the investment.

  

  The STM8S903K3B6 is a robust microcontroller belonging to STMicroelectronics’ STM8 family, renowned for its high performance and reliability in demanding applications. This microcontroller is particularly favored in industrial controls, consumer electronics, and automotive systems due to its advanced core, multiple communication interfaces, and low-power consumption characteristics. Its versatility makes it an indispensable component in applications requiring precise digital and analog interfacing.

  

  This incident not only reaffirmed the client’s faith in Asourcing but also emphasized the inherent risks associated with unusually low-priced electronic components in the market. Asourcing Electronics Limited stands out in the electronic component distribution field for its unwavering commitment to quality and authenticity. Our rigorous testing and verification processes ensure that each component we supply meets the highest standards, thereby safeguarding client interests and maintaining operational integrity in their projects. Asourcing is not just a distributor; it is the best electronic component distributor.

  

  In conclusion, while competitive pricing is important, the case of the STM8S903K3B6 counterfeit incident highlights the crucial balance between cost and quality. Asourcing Electronics Limited remains a trusted partner in the electronics industry, providing peace of mind through certified genuine products and expert services. This not only protects the investment but also enhances the reputation of our clients by ensuring the reliability and safety of their electronic offerings.