1064nm Laser Sensor Capacitor Head-manufacture,factory,supplier from China

(Total 24 Products for 1064nm Laser Sensor Capacitor Head)
Laser sensor is an important component in laser equipment or additive manufacturing equipment, primarily used in laser cutting and cladding processes. It rapidly scans the coating with a high-energy laser beam, causing the preset powder to melt and solidify instantaneously, while the base metal melts into a thin layer. Within a narrow region, the interface between the two rapidly undergoes molecular or atomic-level interdiffusion, forming a strong metallurgical bond.
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The laser sensor is a crucial part of laser and additive manufacturing equipment, particularly in laser cutting and cladding processes. It uses a high-energy laser beam to scan the coating, melting and solidifying the preset powder instantly, while the base metal melts into a thin layer.
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Laser sensor is an essential factor in laser tools or additive manufacturing equipment, exceptionally used in laser slicing and cladding processes. It hastily scans the coating with a high-energy laser beam, inflicting the preset powder to soften and solidify instantaneously, whilst the base metallic melts into a skinny layer.
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The three-phase automatic AC compensation voltage stabilizer is a power voltage stabilizing device that combines modern electronic technology and automatic control technology. It can monitor grid voltage fluctuations in real-time and automatically adjust the output voltage to maintain its stability.The voltage sensor monitors the fluctuations in the grid voltage in real-time. The control system receives signals transmitted by the voltage sensor and compares them with the set stable voltage to calculate the voltage value that needs to be compensated.
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Laser Sensor Cable is a type of cable designed for transmitting RF signals, with the purpose of ensuring efficient and stable transmission of RF signals to the laser, thereby driving it to produce high-quality laser beams.In fields such as communications, medical, and industrial applications, laser RF cables play a crucial role.
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Raytools laser nozzles serve a vital function in laser cutting machines by connecting the laser cutting head with the TRA component's capacitive sensor, thereby ensuring seamless operation.
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Raytools laser nozzles are primarily used to connect the laser cutting head with the TRA component's capacitive sensor, ensuring the smooth operation of the laser cutting machine.
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Optical Fiber Laser Marker-Miniature can achieve micrometer-level marking precision, meeting the requirements of applications where high marking fineness is needed.The laser beam does not have direct contact with the workpiece surface, avoiding potential physical damage and deformation caused by traditional marking methods.It can be used for marking a variety of materials, including metals, plastics, ceramics, glass, and more.High flexibility: Customizable engraving content, including fonts, sizes, depths, positions, etc., to meet personalized needs.It is usually equipped with a computer
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Laser ceramic ring of the laser head refers to the component used to connect the laser head and the laser body in a laser device. It is typically made of alumina ceramic material, known for its heat resistance and corrosion resistance. In a laser device, the ceramic body of the laser head is one of the core components, playing a crucial role.Laser ceramic ring of the laser head is a key component connecting the laser head and the laser body.
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Laser safety goggles are specialized eyewear designed to protect the eyes from the harmful effects of laser radiation. Also known as laser safety glasses or anti-laser glasses, their main function is to reduce or prevent laser-induced damage to the eyes. These goggles use advanced optical materials and designs to absorb and disperse laser beams, providing effective eye protection.Crafted from specialized optical materials, the lenses offer high visible light transmittance while keeping reflectance low.
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Laser ceramic ring of the laser head refers to the issue used to join the laser head and the laser physique in a laser device. It is commonly made of alumina ceramic material, acknowledged for its warmth resistance and corrosion resistance. In a laser device, the ceramic physique of the laser head is one of the core components, enjoying a vital role.Laser ceramic ring of the laser head is a key element connecting the laser head and the laser body.
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The laser nozzle plays a crucial role in laser cutting by maintaining the distance between the laser head and the workpiece, directing auxiliary gas flow, creating high pressure at the outlet to speed up cutting, removing molten slag, and protecting the laser head's internal lenses.
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The laser nozzle is accountable for retaining the distance between the laser head and the workpiece, guiding the auxiliary fuel to ignore easily via the workpiece being cut, and growing excessive strain at the nozzle outlet to speed up the reducing speed. It additionally consists of away molten slag and protects the inside lenses of the laser head.
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The laser ceramic ring of a laser device is a vital component connecting the laser head and laser body. Made of alumina ceramic material, it is renowned for its heat and corrosion resistance. This ring serves as a buffer, minimizing stress due to mismatched thermal expansion coefficients, thereby reinforcing the connection between the laser head and body.The high energy and temperature within the laser device pose rigorous demands on its internal materials. The alumina ceramic body of the laser head withstands high-temperature, high-energy lasers without sustaining damage over time.
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The laser ceramic ring in a laser device is crucial for connecting the laser head and body. Made of heat and corrosion-resistant alumina ceramic, it acts as a buffer to reduce stress from mismatched thermal expansion coefficients, strengthening the connection. The high energy and temperature within the device require robust internal materials, and the alumina ceramic body of the laser head meets this challenge, enduring high-temperature, high-energy lasers without damage.
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CO2 laser engraving and cutting machine is a device that utilizes CO2 laser technology.CO2 laser engraving and cutting machine mainly consists of a laser generator, an optical path system, a worktable, a cutting head, and a cooling system.
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CO2 laser engraving and cutting machine uses CO2 laser technology, featuring a laser generator, optical path system, worktable, cutting head, and cooling system. It offers high accuracy, fast scanning speed, and efficient energy conversion, minimizing material loss. Adjustable parameters allow versatility in cutting different materials.
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The laser nozzle is responsible for maintaining the distance between the laser head and the workpiece, guiding the auxiliary gas to pass smoothly through the workpiece being cut, and creating high pressure at the nozzle outlet to accelerate the cutting speed. It also carries away molten slag and protects the internal lenses of the laser head. It is an indispensable part of the laser cutting process and directly determines the quality of laser cutting.Single-layer nozzle: Nitrogen is used as the auxiliary gas.
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CO2 laser engraving and cutting machine is a device leveraging CO2 laser technology. Its main components include a laser generator (producing the laser beam), an optical path system (transmitting the beam to the cutting head), a worktable (supporting and moving the material), a cutting head (focusing the beam for cutting), and a cooling system (ensuring the generator operates normally).This machine boasts high focusing accuracy for precise engraving and cutting, rapid scanning speed for enhanced processing efficiency, and high energy conversion efficiency, minimizing material loss.
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CO2 laser engraving and cutting machine employs CO2 laser technology.Its primary components include a laser generator (which produces the laser beam), an optical path system (directs the beam to the cutting head), a worktable (supports and moves the material), a cutting head (focuses the beam for cutting), and a cooling system (keeps the laser generator operational).This machine offers high focusing accuracy for precise cutting and engraving, fast scanning speeds for efficient processing, and high energy conversion efficiency with minimal material loss.It is easy to maintain and oper
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CO2 laser engraving and cutting machine utilizes CO2 laser technology, comprising a laser generator (producing the beam), an optical path system (directing it to the cutting head), a worktable (supporting and moving the material), a cutting head (focusing the beam), and a cooling system (ensuring the generator operates). This machine boasts high focusing accuracy, fast scanning speeds, and efficient energy conversion with minimal material loss. It is low-cost, easy to maintain, and versatile due to adjustable parameters like laser intensity, frequency, and scanning speed.
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D20 Laser Collimating LensLaser Collimating Lens is an optical factor used to focal point the laser beam and preserve the steadiness and accuracy of the laser path.
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Laser focus lens, also known as laser focusing mirrors or focusing lenses, are optical elements capable of adjusting the angle and focal point of a laser beam. They can converge a divergent laser beam into a small spot, thereby enhancing the laser beam's penetration and energy density. The working principle of laser focusing lenses is primarily based on light refraction and focusing effects. When a laser beam passes through the lens, the direction of beam propagation changes due to the influence of the lens material's refractive index and shape, achieving a focusing effect.
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Laser sealing ring consists of a corrosion-resistant spring (typically a stainless metal spring) and a U-shaped filler cloth (usually PTFE or different high-performance polymeric materials) that together structure a sealing ring.
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Relate News
As lasers are being used more and more commonly, people may wonder whether it is necessary to wear laser safety goggles during laser operations. Why should we wear them? Let's explore this topic by discussing what laser operations are, their practical applications, and the reasons for wearing laser safety goggles during such operations.What are Laser Operations and Their Practical Applications?① Laser operations refer to a series of activities involving the generation, transmission, control, and application of lasers using laser equipment.
When using a CO2 laser, specific safety glasses are required to protect the eyes from laser damage. Consider the optical density (OD) level. Below are the requirements for safety glasses suitable for CO2 lasers:Protective WavelengthCO2 lasers typically have a wavelength of around 10.6 micrometers. Safety glasses should effectively block laser radiation at this wavelength. Choose glasses with a high OD value for the CO2 laser wavelength to ensure adequate protection. Generally, the higher the OD value, the better the protection.
On March 6, 2024, the 20th China (Tianjin) International Equipment Manufacturing Expo, the First Tianjin International New Energy Technology and Equipment Expo and the 2024 Beijing-Tianjin-Hebei New Energy Collaborative Innovation and Development Summit Forum, which were co-sponsored by the China Machinery Industry Federation and Zhenwei International Exhibition Group, were opened at the National Convention and Exhibition Center (Tianjin). Kicked off, the exhibition lasted until March 9th.Junze Laser Technology Co., Ltd.
What factors should be considered when choosing laser safety goggles? Laser safety goggles are essential personal protective equipment that can shield the eyes from the harm of laser radiation. When selecting laser safety goggles, we need to consider a series of factors to ensure they meet our needs and suit our working environment. Below are some key points we should take into account.Laser Safety GogglesFirstly, we should understand the type and class of the laser, as different types and classes of lasers pose varying degrees of risk to the eyes.
The markings "CE" and "OD" on laser protective glasses carry crucial significance, representing distinct yet indispensable characteristics and certification information. Let's delve into what "CE" and "OD" mean on laser protective glasses.CE MarkingThe CE marking is a safety certification mark that is mandatory in the European Union market. It indicates that the laser protective glasses comply with the basic requirements of relevant EU directives and harmonized standards.
Jinan Junze Laser Technology Co., Ltd. shines at Jinan International Machine Tool Show 2024The spring city of Jinan in March, spring is full of vitality. 2024 March 20 to 23, the 27th Jinan International Machine Tool Fair and the World Laser Industry Conference was grandly held in Shandong International Convention and Exhibition Center.
With the popularization of laser technology, laser theory and materials research in China has a certain depth, the application of laser technology has been quite extensive, many traditional manufacturing industries have introduced laser technology, to bring new development momentum for enterprises.
JUNZER Laser shines at 2024 Qingdao Industrial Expo, and reaches cooperation with many domestic and overseas small and medium-sized enterprisesQingdao, a beautiful coastal city, attracts attention from all over the world with its unique geographical location and rich cultural heritage. In August 2024, Qingdao once again became the focus of the industrial manufacturing field, ushering in the grand convening of the Qingdao International Industry Fair (hereinafter referred to as the “Qingdao Industrial Fair”).
With the increasing prevalence of laser technology, laser protection goggles, as protective equipment to ensure the safety of the human eyes during laser operations, have raised a common question: How often should laser protection goggles be replaced?Generally, there is no fixed timeline for the replacement cycle of laser protection goggles.
The reasons for the price differences in laser protective eyewear mainly include the following points:Wavelength Protection RangeExpensive laser protective eyewear: Typically provides a broader and more precise range of wavelength protection. For instance, in scientific research and industrial laser applications, some high-end protective eyewear can guard against multiple different wavelengths of lasers.
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