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Top Trends in PCB Assembly for 2025
PCBs are the heart of the modern world. Whether it’s household equipment, industrial equipment, or defense ordnance, printed circuit boards are running everything. With new developments, the global scene of PCB manufacturing is changing rapidly. Using the newest technologies is not only a great concept, but staying competitive depends on it as well. From downsizing to AI-driven manufacturing, 2025 promises to bring major breakthroughs along with making advancements in current technologies that will change the way Printed Circuit Boards (PCBs) are manufactured.
This article will walk you through some key industry trends that will sketch the future of PCB assembly.
5 Key Trends in PCB Assembly to Follow in 2025
As the world is moving towards manufacturing more complex products and adopting advanced technologies, the PCB assembly industry is also observing several key trends. Here are a few noteworthy trends to follow.
1. Shrinking is in High-Density Interconnections: HDI and Miniaturization
Think about our daily gadgets, such as wearables, Internet of Things devices, and sophisticated medical electronics. These devices need robust and small PCBs, and therefore, in these spaces, High-Density Interconnect (HDI) technology excels. HDI lets electronic gadgets be more powerful despite their compact stature. In what manner? For high-speed applications, it increases signal integrity, lowers component spacing, and permits smaller trace lengths, hence enhancing electrical performance. And it will change the entire PCB manufacturing market.
According to a forecast [1], the HDI PCB market is expected to rise rapidly and, by 2032, will reach almost $40 billion. That makes the direction in which things are heading quite obvious.
2. Smart Factories: Artificial Intelligence and Automation
Like in every other industry, PCB assembly is becoming significantly faster, smarter, and more efficient. Industry 4.0 and manufacturing driven by artificial intelligence lead the push. Think about robotic soldering and pick-and-place robots for fast, more perfect component installation. Artificial intelligence and machine learning have found their way into quality control, that is, for error reduction and flaw detection done automatically. Imagine the Internet of Things, connected production lines, allowing real-time monitoring and predictive maintenance.
3. Bendable and Adaptable: Rigid-flexible PCBs
Flexible and rigid-flex printed circuit boards are becoming more popular in industries such as transportation, aircraft, and healthcare electronics. But you may think, why so? Because of their small size and lightweight nature, they are ideal for manufacturing small, portable electronic devices. They can withstand significant external force and resist bending and vibration. They endure longer with fewer interconnect failures, making them more reliable.
4. Green is Good: Manufacturing Sustainable Circuit Boards
Growing worries about e-waste and carbon footprints force sustainability to the front stage in PCB production. Lead-free soldering, biodegradable and reusable substrates, recyclable materials, and energy-efficient manufacturing procedures will become the focal points in the near future. It’s about matching global laws and customer demand as much as it is about environmental responsibility.
5. Printing the Future: 3D Printing in PCB Assembly
Additive manufacturing is revolutionizing PCB manufacturing and streamlining complex multilayer design construction. From this, faster prototyping, reduced material waste, and more customization for specific uses follow. This is a breakthrough for design and development; it will only get more so.
The Final Thought
There are a lot of exciting new possibilities in the PCB assemblyand PCB manufacturing industries. Miniaturization, automation, sustainability, and developments in AI-driven manufacturing will enable you to produce premium printed circuit boards (PCRs) that satisfy future electronics needs. Survival in a dynamic industry depends on keeping ahead of the competitors. By following these trends and wise technology investments, you could set yourself up for success in 2025 and beyond.
Know More : https://www.pcbpower.us/blog/top-trends-pcb-assembly
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The Role of Automatic Soldering
Enhancing Operational Efficiency in Electronics Manufacturing: The Role of Automatic Soldering In today’s rapidly evolving manufacturing landscape, where precision, speed, and reliability are non-negotiable, automatic soldering has emerged as a game-changing solution. Particularly in the electronics and electrical sectors, where component miniaturization and high-density boards are the norms, traditional soldering methods often fall short. Automatic soldering technology bridges this gap—delivering consistent results, reducing human error, and enhancing overall productivity.
What Is Automatic Soldering? Automatic soldering refers to the use of machines and robotic systems to perform soldering tasks that were traditionally done manually. These systems are designed to apply solder precisely and efficiently, whether through wave soldering, selective soldering, or robotic point soldering. Unlike manual methods, which are labor-intensive and vary based on technician skill, automatic soldering ensures high repeatability and precision, making it ideal for large-scale production lines and quality-driven industries.
Why Automatic Soldering Matters 1. Consistent Quality and Precision Automatic soldering systems follow exact parameters for temperature, timing, and positioning. This eliminates the inconsistencies found in manual soldering and ensures robust solder joints, which are critical for long-term device performance.
2. Increased Throughput In fast-paced industries like consumer and automotive electronics, saving time means saving money. Automatic soldering machines can work faster and more accurately than human operators, drastically increasing production speeds without compromising quality.
3. Reduced Labor Costs By automating repetitive tasks, manufacturers can significantly reduce reliance on manual labor, reassign skilled technicians to more complex duties, and lower operationalcosts over time.
4. Enhanced Safety Soldering involves high temperatures and potentially hazardous fumes. Automation minimizes human exposure to these risks, promoting a safer workplace environment. Applications of Automatic Soldering Across Industries Electronics Manufacturing Used extensively for PCB assembly, automatic soldering ensures tight quality control for devices ranging from smartphones to industrial controllers.
Automotive Sector As electric cars and driver-assistance systems become more common, car electronics need accurate and dependable soldering. Automatic systems help make sure these important safety parts stay reliable.
Telecommunication Equipment Devices used in communication networks have tightly packed circuit boards. Automated soldering is essential for creating reliable connections, especially in complex or hard-to-reach areas.
Medical Devices In an industry where precision can be life-saving, automated soldering offers the accuracy needed for implantable devices, diagnostic machines, and other sensitive equipment.
Choosing the Right Automatic Soldering Solution
When selecting an automatic soldering system, manufacturers should consider:
Type of Soldering Method: Wave, selective, or robotic soldering, based on product complexity.
Component Sensitivity: Ensure compatibility with heat-sensitive components.
Production Volume: Choose equipment that can handle your expected throughput.
Flexibility: Systems that adapt to varying board layouts are a plus in dynamic manufacturing settings.
The Sumitron Advantage in Soldering Solutions As more industries embrace automation, trusted partners like Sumitron provide more than just tools—they deliver integrated solutions. From ESD-safe soldering stations to robotic soldering systems, Sumitron offers a curated range of products to meet the exacting needs of today’s electronics manufacturers. With a deep understanding of industry requirements and a commitment to quality, Sumitron ensures every solution is tailored to maximize uptime, reduce errors, and future-proof your production line.
Looking Ahead: The Future of Soldering is Smart The future of automatic soldering is being shaped by Industry 4.0, with intelligent machines capable of real-time monitoring, predictive maintenance, and self-adjusting soldering profiles. As AI and IoT converge with manufacturing, automatic soldering systems will not only perform tasks—but also optimize and evolve with production needs.
Conclusion: Whether you're producing cutting-edge electronics or mission-critical automotive components, automatic soldering is no longer a luxury—it’s a necessity. With benefits that touch every aspect of manufacturing, from cost and quality to safety and speed, adopting this technology is a smart move for future-ready businesses.
Discover Sumitron’s range of soldering automation tools and elevate your production capabilities with solutions engineered for excellence.
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The Rise of Automatic BGA Machines in India: A Game Changer for Electronics Manufacturing
As the demand for high-performance electronics continues to soar, manufacturers are constantly seeking innovative solutions to streamline production and enhance product quality. In the world of Surface Mount Technology (SMT), Ball Grid Array (BGA) components have become increasingly common due to their superior performance and miniaturization capabilities. To handle the delicate process of placing and soldering these components, automatic BGA machines in India have emerged as a crucial tool for modern electronics manufacturing.
This blog explores the importance of automatic BGA machines in India, their functionality, advantages, and why they are becoming indispensable in electronics manufacturing.
What is a BGA?
Before diving into the benefits of automatic BGA machines, it's essential to understand what a Ball Grid Array (BGA) is. A BGA is a type of surface-mount packaging used for integrated circuits. Unlike traditional leaded packages, BGAs use a grid of tiny solder balls on the underside of the component to make electrical connections. This design allows for higher density, improved thermal performance, and more reliable connections, making BGAs ideal for applications in computers, smartphones, and other high-performance electronics.
However, soldering BGAs manually is an extremely challenging task due to the small size and the hidden placement of solder joints beneath the package. This is where automatic BGA machines in India come into play.
What is an Automatic BGA Machine?
An automatic BGA machine is a specialized piece of equipment designed to automate the placement, soldering, and inspection of BGA components on printed circuit boards (PCBs). These machines are equipped with advanced vision systems, precise robotic arms, and reflow soldering technology to ensure that BGA components are accurately placed and securely soldered.
The automatic BGA machines in India are now widely adopted across electronics manufacturing industries, as they enhance production efficiency and ensure high-quality, defect-free assembly.
Key Features of Automatic BGA Machines
High Precision Placement Automatic BGA machines use advanced vision systems to accurately align and place BGA components on the PCB. This precision is crucial because even slight misalignment can lead to soldering defects, such as cold solder joints or bridging.
Reflow Soldering Capability Most BGA machines feature reflow soldering ovens that evenly heat the PCB and the BGA component. This ensures that the solder balls melt uniformly, creating strong electrical connections between the component and the board.
Automated Optical Inspection (AOI) To ensure that all solder joints are properly formed, many automatic BGA machines include an automated optical inspection system. This system uses high-resolution cameras to check the quality of the solder joints and detect any defects that could affect the performance of the final product.
Flexibility in Handling Different BGA Sizes Automatic BGA machines in India are designed to handle a wide range of BGA package sizes, from small micro BGAs to larger packages used in high-performance computing. This flexibility allows manufacturers to use a single machine for various applications.
User-Friendly Interface Modern BGA machines come with intuitive software interfaces that allow operators to easily program the machine, adjust settings, and monitor the production process in real time.
Benefits of Using Automatic BGA Machines in India
1. Increased Production Efficiency
One of the most significant advantages of using automatic BGA machines is the ability to dramatically increase production efficiency. By automating the placement and soldering process, manufacturers can achieve higher throughput, reduce production times, and eliminate the bottlenecks associated with manual assembly.
2. Enhanced Accuracy and Quality
Automatic BGA machines offer superior accuracy in placing components, which is essential when working with delicate and compact BGAs. The automated process minimizes human errors, resulting in higher-quality assemblies with fewer defects. This level of precision is especially important in industries such as aerospace, automotive, and telecommunications, where reliability is paramount.
3. Reduced Labor Costs
Automation significantly reduces the need for manual labor in the assembly process. With an automatic BGA machine, a single operator can oversee multiple machines, allowing manufacturers to reduce labor costs and reallocate resources to other areas of the production process.
4. Improved Yield Rates
By ensuring consistent and accurate placement and soldering, automatic BGA machines in India help to improve yield rates. Fewer defects mean less rework and scrap, which directly impacts the overall profitability of the manufacturing process.
5. Compatibility with Advanced PCBs
As PCBs become more complex, with smaller components and higher densities, manual assembly becomes increasingly difficult. Automatic BGA machines are designed to handle these complex assemblies with ease, making them ideal for manufacturing next-generation electronics.
Applications of Automatic BGA Machines in India
The use of automatic BGA machines in India spans across various industries, including:
Consumer Electronics In the consumer electronics sector, where devices like smartphones, tablets, and laptops require compact and high-performance components, BGA packages are essential. Automatic BGA machines ensure that these components are placed and soldered with the utmost precision, contributing to the performance and reliability of the final product.
Automotive Electronics The automotive industry relies heavily on advanced electronics for critical systems such as engine control units (ECUs), infotainment systems, and safety features. With the rise of autonomous and electric vehicles, the demand for reliable and high-quality electronics has never been greater. Automatic BGA machines play a key role in assembling these components to meet stringent quality standards.
Telecommunications Telecommunication equipment, such as base stations, routers, and network switches, relies on high-performance BGAs to handle data transmission and processing. Automatic BGA machines help ensure the quality and reliability of these critical components, which are essential for maintaining network performance.
Medical Devices In the medical device industry, where precision and reliability are of utmost importance, automatic BGA machines are used to assemble components for diagnostic equipment, monitoring devices, and medical imaging systems. These machines help manufacturers meet the high standards required for medical-grade electronics.
Aerospace and Defense The aerospace and defense industries require electronics that can withstand extreme conditions and deliver reliable performance. Automatic BGA machines are used to assemble mission-critical components for applications such as avionics, communication systems, and radar equipment.
Why Choose Ascompinc for Automatic BGA Machines in India?
Ascompinc is a leading provider of automatic BGA machines in India, offering cutting-edge solutions that meet the needs of modern electronics manufacturers. Here's why you should consider Ascompinc for your BGA machine requirements:
High-Quality Products At Ascompinc, we offer a range of automatic BGA machines that are built to deliver precision, efficiency, and reliability. Our machines are designed to handle the most demanding manufacturing environments, ensuring consistent performance.
Technical Support We provide comprehensive technical support to help you select the right machine for your specific application. Our team of experts is available to assist with installation, training, and ongoing maintenance, ensuring that your equipment operates at peak performance.
Competitive Pricing Ascompinc offers competitive pricing on all our automatic BGA machines, making advanced electronics manufacturing accessible to businesses of all sizes.
Customized Solutions We understand that every manufacturing process is unique, which is why we offer customized solutions to meet your specific requirements. Whether you need a machine for high-volume production or specialized applications, we can tailor our products to suit your needs.
#madeinindia#electronicsmanufacturing#margot robbie#BGAMachinesIndia#ElectronicsManufacturing#SMTTechnology#AutomaticBGA
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PCB cleaning chemicals
Enhancing Electronics Manufacturing Efficiency with Advanced Equipment
In the realm of electronics manufacturing, precision and cleanliness are paramount. Circuit boards (PCBs) are the backbone of electronic devices, and any contaminants or flaws in their assembly can lead to malfunctions or even failure of the entire system. As technology advances, so does the demand for more sophisticated equipment to ensure the quality and reliability of electronic components. This has led to the development of specialized machines and tools such as PCB cleaning machines, acrylic conformal coating systems, adhesive dispensers, robotic dispensers, and electric screwdrivers, all of which play critical roles in streamlining the manufacturing process and enhancing product performance.
PCB Cleaning Machines:
PCB cleaning machines are indispensable in the electronics manufacturing industry. These machines use various techniques such as aqueous cleaning, ultrasonic cleaning, and vapor phase cleaning to remove contaminants such as flux residues, solder pastes, and other impurities from PCBs. By ensuring the cleanliness of PCBs, these machines contribute to the reliability and longevity of electronic devices.
PCB Cleaners in Delhi:
Delhi, being a hub for electronics manufacturing, offers a wide range of PCB cleaning solutions tailored to the diverse needs of manufacturers. Whether it's batch cleaning for high-volume production or precision cleaning for delicate components, PCB cleaners in Delhi provide efficient and cost-effective solutions to ensure the quality of electronic assemblies.
Acrylic Conformal Coating:
Acrylic conformal coating is applied to PCBs to protect them from environmental factors such as moisture, dust, and chemical contaminants. This thin layer of protective coating enhances the insulation properties of the PCB, prevents corrosion, and improves the overall reliability of electronic assemblies, especially in harsh operating environments.
Adhesive Dispensing:
Adhesive dispensing systems are used to precisely apply adhesives, sealants, and coatings onto electronic components and assemblies. These systems come in various configurations, including manual, semi-automatic, and fully automated, allowing manufacturers to choose the most suitable option based on their production requirements and budget constraints.
Robotic Dispensers:
Robotic dispensers offer unparalleled accuracy and consistency in adhesive application. Equipped with advanced robotic arms and programmable controllers, these dispensers can precisely dispense adhesives onto complex PCB layouts with minimal wastage. Robotic dispensers not only improve productivity but also ensure uniformity in adhesive distribution, resulting in higher quality electronic assemblies.
Dispensing Caps:
Dispensing caps are essential accessories for adhesive dispensing systems, enabling controlled and precise application of adhesives onto small and intricate components. These caps come in various sizes and shapes to accommodate different dispensing needs, ensuring optimal performance and efficiency in electronics manufacturing processes.
Fluid Dispensing System:
Fluid dispensing systems are versatile tools used for dispensing a wide range of fluids, including adhesives, lubricants, and solvents. These systems feature programmable controls and adjustable dispensing parameters, allowing manufacturers to tailor the dispensing process to meet specific application requirements. From simple dot dispensing to complex pattern dispensing, fluid dispensing systems offer flexibility and precision in electronic assembly processes.
Best Electric Screwdrivers:
Electric screwdrivers are indispensable tools for assembling PCBs and electronic components. With their adjustable torque settings, quick-change bits, and ergonomic designs, electric screwdrivers streamline the assembly process while ensuring consistent and reliable fastening of screws. The best electric screwdrivers combine performance, durability, and affordability, making them essential investments for electronics manufacturers.
Conclusion:
In the fast-paced world of electronics manufacturing, efficiency and precision are key to staying competitive. Specialized equipment such as PCB cleaning machines, acrylic conformal coating systems, adhesive dispensers, robotic dispensers, and electric screwdrivers play crucial roles in optimizing production processes and ensuring the quality and reliability of electronic assemblies. By investing in advanced equipment and technologies, manufacturers can meet the growing demands of the industry while maintaining high standards of product excellence. Visit here - https://mectronics.in
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ULiROBOTS PCB circuit board automatic soldering robot
Automatic soldering robot is a kind of welding equipment. The soldering system is the core part of the welding robot. The soldering tin system is mainly composed of automatic tin feeding mechanism, temperature control, heating element and soldering iron tip. The robot arm can be adjusted to any required welding position, and the tin wire will automatically extend to the soldering iron with a fixed speed and a fixed amount; the digital temperature is set at a glance, light and flexible, does not occupy space, temperature, tin feeding speed, and tin point size Adjustable.

1. Using ABB six-axis robotic arm
2. With visual positioning system
3. The real unmanned operation can be directly connected to the previous process assembly line.
4. According to different welding needs, it can be arbitrarily matched with the front section, the middle section and the end section to adapt to more products!
5. The appearance of the machine is novel, and the main body adopts a special surface treatment, which is beautiful and generous.
6. The new lean design, the same size brings a larger effective stroke.
7. The user software developed based on the Windows operating system is more in line with the user's operating habits.
8. The real digital program, modify the parameters and input directly, the same type of tin point can be changed once, and the insertion point can be deleted by one key operation;
9. The 12-inch high-definition touch screen man-machine interface and the dynamic display of the running track make your welding process more intuitive.
10. The tin feeding can be started at any time, which fully meets the various soldering processes and improves machine efficiency.
11. Comes with an anti-collision function, which reduces the damage rate of the machine and products in the event of an accidental collision (optional function).
12. The authority management mode prevents the operator from modifying the parameters by mistake.
13. The parameters of the solder joint types can be switched flexibly, and the running speed of the solder joints can be set independently without affecting each other.
14. With functions such as height correction and Z, the angular deviation generated after the repositioning of the mold can be corrected.
15. The compensation point is automatically calculated, and the angle compensation and the center compensation can be switched at will.
16. Four different types of array methods directly shorten the running distance and improve production efficiency.
17. The file name can be freely created, copied, modified, deleted and supports Chinese/English, numbers, and symbols input.
Features:
1. Flexible movement, low movement inertia, and strong versatility;
2. Compact size and small footprint;
3. Independent research and development of special solder control system based on industrial computer;
4.8-inch high-definition touch screen man-machine interface, dynamic display of running track;
5. Authority management mode to prevent the operator from modifying the operating parameters by mistake;
6. Flexible soldering methods, with multiple functions such as spot welding and drag welding;
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Sipotek Visual Inspection Machine
AOI machine, automatic or robotic optical inspection systems found in electronics PCB printed routine board manufacturing
Sipotek automated optical inspection machine
Automatic or maybe automated optical inspection, AOI, is a key approach used from the manufacture in addition to test connected with electronics published circuit planks, PCBs. Programmed optical check up, AOI permits fast as well as accurate examination of gadgets assemblies and also in particular PCBs for you to ensure that the good quality of product departing often the production line is large and the items are generally built effectively and with no manufacturing flaws.
Sipotek automated optical inspection machine Need regarding AOI, automatic dvd assessment
Despite the major advancements that have been produced, modern promenade are significantly more complicated as compared to forums were even a several years ago. The introduction associated with surface install technology, along with the subsequent more savings in size mean this snowboards are particularly lightweight. Even comparatively average panels have 1000s of soldered joint parts, and these usually are just where the majority of complications are located.
This boost in the difficulty regarding boards also means which manual inspection is certainly not option option these days and nights. Even when it absolutely was a great accepted approach, it ended up being realized that it seemed to be not particularly successful since inspectors soon fatigued in addition to poor and inappropriate design was easily overlooked. Using the marketplace now demanding high volume, high level of quality goods to be delivered to market quickly extremely reliable and quickly strategies are needed to make certain that product or service quality stays high. AOI, automatic dvd inspection is surely an essential application in an built-in electronic products test strategy that assure costs are kept low by detecting faults early on in the production range.
One of the strategies to this is to make use of automated as well as automatic dvd inspection methods. Automated dvd inspection programs can always be placed into the manufacturing brand just after the actual solder procedure. In this specific way they can possibly be used to get issues early in the development method. This has any number of advantages. Having faults costing more to help fix the particular further alongside the production course of action they will are found, this will be clearly the optimum spot to find errors. In addition process problems inside solder and assembly location can easily be seen early inside the production practice as well as information used to opinions swiftly to earlier levels. This way a rapid reply can ensure that will difficulties are recognised quickly and also rectified before too several planks are built together with the same trouble.
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How to Solder Using a Soldering Machine
Buying a soldering machine is a great way to get your hands on an inexpensive, yet highly effective tool for electronic component assembly. Before starting, you should clean the components and remove any oxide layers. Next, you should flux the components using a noncorrosive solution. Once the components are ready, place the printed circuit board on top of the melted solder. Metal clasps will hold the PCB in place as you solder.
When soldering, copper pipe conducts heat away from its joints. To get a smooth, leak-free joint, apply solder at the gap between the fitting and the pipe. Solder flows into the joint by capillary action. Afterward, remove the joint and wipe it clean with a dry rag to remove excess automatic soldering machine and flux residue. A solder ring joint is made when a ring of molten solder appears around the edge of the fitting. The solder must be allowed to cool before re-joining the two pieces.

A dispensing machine stand is a useful tool, since it holds the hot iron while you're working. It comes with a sponge for cleaning the tip, and a spool of solder. These tools are great for beginners. If you have no experience soldering, a product selection tool can help you decide on the best machine for your needs. If you're not sure what to get, check out the Pro-Craft(r) electric soldering machine. The machine is available in several sizes, and is 10 1/4" by 6 3/4" in size.
To use a dispensing robot, you should hold the tip of the soldering iron near the component's lead or pad. It is crucial to touch the copper or gold component without damaging it. To achieve a solid connection, the solder should be applied in small circles of approximately 0.5 mm. Depending on the size of the wires, the amount of solder required will vary. The heat should be even enough to make a solid connection between the two pieces. When the glue dispensing machine , the joint will form a cone-like shape.
Another option is a temperature controlled soldering iron. These are often free-standing and have a head and a tip with a heating element. They are controlled by a epoxy dispensers base, which may have temperature control and temperature displays. Depending on the needs of your project, you can adjust the temperature with the iron and the hot air gun. This is a great tool for adding extra functionality to a project, and it will save you from the expense of a full remake.

A soldering station should be ESD safe, as this will help minimize the risk of a device malfunctioning. The soldering iron itself is plugged into the soldering station and contains a heating element and soldering bit. The soldering iron's tip is typically made of chrome, copper, or nickel solder. Once the device is set up, the soldering station can be used to solder various electronic components.
Before you begin, you should clean the tips of the soldering robot to prevent oxidation. Use acetone cleaner to clean the tips, and blow them with compressed air to remove any particles that may have gotten caught. If you use a flux, make sure you wipe off any excess flux before you begin soldering. If you can't do this, you may want to consider buying a flux-free soldering machine.
The hottest types of solder are tin and copper. Lead-based soldering fume extractor lead, while lead-free solder is made of tin and copper. Lead-free solder has higher melting temperatures and is better for the environment. Lead-free solder is almost identical to lead-based solder, but with higher melting temperature and less "wettability."
There are two types of soldering fume absorber: tinning and resistance soldering. Tinning increases the efficiency of a soldering iron. Resistance soldering is an energy-efficient alternative to flame-soldering. Its advantages are similar to flame soldering, but resistance soldering is more localized and heat-efficient. When used correctly, both types of machines are useful for soldering, brazing, and other applications.
When using a robotic soldering machine, it is crucial to wear protective clothing. The solder itself is molten metal, so safety glasses are essential. Make sure you wear gloves and don't wear loose clothing near the soldering area. Also, be sure to use a fume extractor. The fumes from the flux are toxic and can damage the lungs. Then, be sure to keep pets and children away from the area where the machine is being used.
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Top Trends in PCB Assembly for 2025
Top Trends in PCB Assembly for 2025
PCBs are the heart of the modern world. Whether it's household equipment, industrial equipment, or defense ordnance, printed circuit boards are running everything. With new developments, the global scene of PCB manufacturing is changing rapidly. Using the newest technologies is not only a great concept, but staying competitive depends on it as well. From downsizing to AI-driven manufacturing, 2025 promises to bring major breakthroughs along with making advancements in current technologies that will change the way Printed Circuit Boards (PCBs) are manufactured.
This article will walk you through some key industry trends that will sketch the future of PCB assembly.
5 Key Trends in PCB Assembly to Follow in 2025
As the world is moving towards manufacturing more complex products and adopting advanced technologies, the PCB assembly industry is also observing several key trends. Here are a few noteworthy trends to follow.
1. Shrinking is in High-Density Interconnections: HDI and Miniaturization
Think about our daily gadgets, such as wearables, Internet of Things devices, and sophisticated medical electronics. These devices need robust and small PCBs, and therefore, in these spaces, High-Density Interconnect (HDI) technology excels. HDI lets electronic gadgets be more powerful despite their compact stature. In what manner? For high-speed applications, it increases signal integrity, lowers component spacing, and permits smaller trace lengths, hence enhancing electrical performance. And it will change the entire PCB manufacturing market.
According to a forecast [1], the HDI PCB market is expected to rise rapidly and, by 2032, will reach almost $40 billion. That makes the direction in which things are heading quite obvious.
2. Smart Factories: Artificial Intelligence and Automation
Like in every other industry, PCB assembly is becoming significantly faster, smarter, and more efficient. Industry 4.0 and manufacturing driven by artificial intelligence lead the push. Think about robotic soldering and pick-and-place robots for fast, more perfect component installation. Artificial intelligence and machine learning have found their way into quality control, that is, for error reduction and flaw detection done automatically. Imagine the Internet of Things, connected production lines, allowing real-time monitoring and predictive maintenance.
3. Bendable and Adaptable: Rigid-flexible PCBs
Flexible and rigid-flex printed circuit boards are becoming more popular in industries such as transportation, aircraft, and healthcare electronics. But you may think, why so? Because of their small size and lightweight nature, they are ideal for manufacturing small, portable electronic devices. They can withstand significant external force and resist bending and vibration. They endure longer with fewer interconnect failures, making them more reliable.
4. Green is Good: Manufacturing Sustainable Circuit Boards
Growing worries about e-waste and carbon footprints force sustainability to the front stage in PCB production. Lead-free soldering, biodegradable and reusable substrates, recyclable materials, and energy-efficient manufacturing procedures will become the focal points in the near future. It's about matching global laws and customer demand as much as it is about environmental responsibility.
5. Printing the Future: 3D Printing in PCB Assembly
Additive manufacturing is revolutionizing PCB manufacturing and streamlining complex multilayer design construction. From this, faster prototyping, reduced material waste, and more customization for specific uses follow. This is a breakthrough for design and development; it will only get more so.
The Final Thought
There are a lot of exciting new possibilities in the PCB assemblyand PCB manufacturing industries. Miniaturization, automation, sustainability, and developments in AI-driven manufacturing will enable you to produce premium printed circuit boards (PCRs) that satisfy future electronics needs. Survival in a dynamic industry depends on keeping ahead of the competitors. By following these trends and wise technology investments, you could set yourself up for success in 2025 and beyond.
Know More: https://www.pcbpower.us/blog/top-trends-pcb-assembly
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Innovations in Tinkering Lab at The NorthCap University
Tinkering Lab in The NorthCap University was inaugurated by Prof B K Kuthiala, Chairperson Haryana Higher Education Council, Govt of Haryana, on 21st July 2018. The EECE dept. maintains the Tinkering Lab for the usage of all members of the university to promote innovative and interdisciplinary project work. The primary objective of the Tinkering lab is to spur the spark of creativity, foster curiosity and imagination in young minds, which go beyond regular curriculum and textbook learning. It is equipped with facilities such as Soldering station, PCB designing kit, equipment/components for Electronics development, Robotics, Internet of Things and Sensors, Electrical and measurement tools, Power supplies, Consumables, Computers, Printer, etc. Students of any discipline with a bend for invention and innovation can come together under one roof to give shape to their new ideas. Students can design, create and engineer prototypes, new products, etc. Moreover, the Tinkering lab is also used for fostering entrepreneurship and utilized by the students as incubators and accelerators for business start-ups.

Tinkering lab provides support in terms of manpower and resources. The dedicated technical staff and faculty members provide hands-on different emerging areas such as IoT, Big data, cloud computing, Robotics, etc. The in-charge of the Tinkering lab is an expert in making all kinds of electronic projects and is always ready to guide students. Students are motivated by the faculty members to work in the Tinkering lab; thus, students are making full use of the lab. Students of all disciplines such as ECE, CSE, ME, CE, Law, and Management work in this lab on different electronics based and mechanical projects using electronic circuits, Arduino boards, other microcontrollers, different types of sensors, motors, ICs and control circuit modules. Students work in the Tinkering lab by making groups, which enhances their peer to peer interaction with students of other streams as well, and this promotes interdisciplinary projects.
Some of the projects on which students have worked in the tinkering lab are Hydraulic bridge, Electronic quiz, Automatic gas stove controller, Air purifier, Automatic street light, Automatic emergency light, Floor cleaner, Automatic curtains, Home automation, Earthquake resistance building, Drone delivery system, Smart classroom with automatic room lock, light On-off system, Gesture controlled Car, Automatic smart parking system, Secret coded door lock, Portable emergency light, Musical alarm and many more. Approximately hundreds of projects are worked upon the tinkering lab. The lab is always open during the university timing. Students of all years are welcomed to work on basic to advanced levels of projects.
Project exhibitions and competitions are organized towards the end of each semester, and good projects are awarded through cash prizes and appreciation certificates to motivate students of the university to work on innovative and interdisciplinary projects. During the Student Project Exhibition conducted in the Tinkering Lab in December 2019, Automatic gas stove controller, Smart dine-in system, Home automation system using Google assistant and NodeMCU projects received cash prizes and certificates of appreciation.
Automatic car management system (with features of automatic type puncture detection in types of the car and automatic lifting of a car by lowering the jacks already attached the car body) project sponsored by the university under VC innovation fund was designed and given shape in the tinkering lab only. Law students also visit tinkering lab to give shape to interdisciplinary projects. One of the projects included a bakery model representing Intellectual Property Rights (IPRs) such as Patent, Copyright, Trademark, and Designs act, with the help of a small electronic circuit.
For any queries connect at [email protected]

Written by
Dr. Vandana Khanna,
Assistant Professor,
EECE Department
at The NorthCap University, Gurugram.
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WHAT IS A PRINTED CIRCUIT BOARD?
A printed circuit board is an electrical circuit whose components and conductors are contained within a mechanical structure. Conductive features include copper traces, pads, heat sinks, or conductive planes. The mechanical structure is made with insulating material laminated between layers of conductive material. The overall structure is plated and covered with nonconductive solder mask and silk screen to legend electronic component location.
The printed circuit board is built by alternating layers of conductive copper with layers of nonconductive insulation material. During manufacture the inner copper layers are etched leaving intended traces of copper to connect circuit components. Once etched insulation material is laminated to the copper layers and so on until the printed circuit board is complete.
Electronic components are added to the outer layers of the printed circuit board when all the layers have been etched and laminated together. Surface mount parts are automatically applied with robots and through-hole parts are manually placed. All the pieces are then soldered onto the board using techniques such as reflow or wave soldering.
History Of Printed Circuit Boards In Today’s Landscape
Before we can get into answering what is a printed circuit board, it is best to understand where PCBs have come from. It’s been a tremendous journey moving toward HDI designs with hundreds of holes and PCBs whose electrical connections are powering everything from smartphones to heart rate monitors to rockets. The process from wiring board to flexible PCBs and wherever else technology takes us in the future has been fun.
Before printed circuit boards, electrical circuits were built by attaching individual wires to components. Conductive paths were accomplished by soldering metal components together with wire. Larger circuits with many electronic components contained many wires. The number of wires were so great that they could get tangled or inhabit a large space within a design. Debugging was difficult and reliability suffered. Manufacturing was slow necessitating manual soldering of multiple components to their wired connections.
CONNECT ELECTRONIC COMPONENTS WITH NETS ON PRINTED CIRCUIT BOARDS
Remove the need for wires by routing nets with copper on multiayer boards. Working from the schematic place components and connect pins along the circuit board layers with thoughtful net placement. Start with auto-route and use manual routing for important nets. Altium Designer offers autoroute to help with multiple net routing.
Evaluate wires vs nets in today’s circuit design landscape.
Consider The Advantages and Disadvantages of Designing with Breadboards
Consult your schematic to evaluate layer stack needs.
Then read about Getting Your Layer Stack Right
Begin routing once your components are placed.
Apply Best Routing Practices after Auto Routing Goes the Distance
Once you’ve considered net count within your schematic and determined routing needs for your layout consider design rules and constraints.
Printed Circuit Boards Use Schematics To Place And Route Components
Today printed circuit board software provides schematic capture to define circuits and their components for design into printed circuit boards. PCB designers work from the schematic to organize components onto a virtual board whose outline dimensions have been specified by the mechanical engineer on the design team. Components are placed and routing occurs following design rules to mitigate noise through carefully planned grounding planes and impedance planning.
Electronic products these days have numerous demands from flexible PCBs to surface-mount technology and components for tricky Printed Circuit. A Printed Circuit Board manufacturing process will be improved significantly with software that can accurately keep track of holes, traces and materials in an organized and secure fashion. Further, drafting electronic devices will be made easier with schematic capture that can easily translate data files throughout the design process.
USE UNIFIED EDA SOFTWARE ENVIRONMENT TO MAP CIRCUITS TO LAYOUTS
PCB designers consult with circuit designers to determine best practice for component placement, multilayer stack, net specifications, and base material selection. Procurement and supply chain enter the picture for material sourcing. Component libraries within the tool incorporate sourcing and pricing information along with electrical parameters. Fabrication vendors are engaged so material definitions for the layer stack coincide with practical Printed Circuit Board manufacturing processes.
Design Printed Circuit Boards In Altium’s Unified Environment
PCBs will only get more technologically intensive as the years press forward. Thankfully, design software is continually improving to make designing them easier. The least of your worries when designing your PCB should be in how to accurately convey to manufacturers the holes on your board, where to lay the copper foil, or how to apply the solder paste. The more layers your board has, the more you need the gold standard in CAD software for your copper standards.
Altium Designer has all the tools you need within a unified platform to design and build your printed circuit board. From schematic capture through release to production, mechanical dimensioning and outline drawing to board layout and component footprints, Altium has you covered. Rules may be set during schematic layout to define high-speed traces for impedance control. Components may be selected from a shared library so physical as well as electrical considerations can be incorporated into selection for downstream success.
ALTIUM REALIZES CIRCUIT DESIGN WITH UNIFIED PRINTED CIRCUIT BOARD TOOLS
You no longer need to worry that the circuit details you captured in your schematic will port to the layout. A PCB and all its associated substrate, copper, holes, layers, and traces will be a process to manufacture. But it doesn’t need to be a worrisome process when you have accurate and easy-to-read software outputs.
Altium’s unified environment incorporates the PCB layout tool so designers can follow the nets you laid down in the schematic. Use Directives within Schematic capture to communicate design constraints to your layout designer. Board outlines designed with your mechanical team easily import into Altium’s PCB layout tool. Component libraries are linked and consistent across the unified design environment. Impedance calculators follow specifications defined in the schematic.
Altium Designer’s unified environment provides all of the tools you need into one place. Beginning with the schematic in the project directory your circuits are captured and your nets are defined. Rules and constraints may be set here that will port to the PCB layout environment keeping your layout designer informed. Mechanical drawings easily import into the unified environment so board outlines begin from their origin. Component libraries are shared rather than being ad hoc amongst differing EDA tools for the same board. With component libraries linked across the enterprise, your circuit designers can select readily-accessible parts early in the design cycle keeping the printed circuit board layout relevant by the time it is released to manufacture. Routing nets is sophisticated with unified tools for impedance calculations. Planes are set early in the layer stack manager so high-speed signals can be routed on stripline adjacent to the ground plane.
Don’t drop your PCBs back down to printed wiring board days. Let strong PCB design software handle the tough work of your PCB for you. Altium Designer is the best tool on the market to design and produce your printed circuit board for today’s electronic market.
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PCB
In the early years, only single-sided printed circuit boards, but later also double-sided, metalized and multilayer printing. For every "question" we provide production "answer". Depending on your needs, print type, and version, you can continuously scale-up: from 1 piece in 24 hours to 10,000 prints per month, no problem! The printed circuit boards that we supply can be divided into the following groups: - Single-sided printed circuit boards - Single-sided printed circuit boards with a metal core (IMS / Metalboard) - Double-sided Metallized printed circuit boards - Multilayers (4, 6 or 8 layers) - Flex and Rigid-Flex circuit boards Printed circuit boards can be produced in a number of different versions, for example, printing can be carried out with a thicker copper layer so that the print tracks and higher amperage can cope, also a thicker base material can be used which makes the print stronger. Finishing a print also brings a number of options.
A summary of these options and extras gives the following list: - Delivery times - Material type - Material thickness - Copper thickness - Corners, slots and deviating shapes - Penalisation (breaker panel / v-cut) - Reference holes / Fiducialmarks - Flashgold - Soldermask - Silkscreen - HASL or OSP - Electrical testing Delivery times In principle, a standard delivery time of 11 working days applies to all types of printed circuit boards. Sometimes this may differ due to a larger number, or by adding additional options (eg flashgold). Faster delivery times (2 to 3 working days) are also possible, but this does depend on the current orders. Therefore always inform first what the possibilities are before you place an urgent order, and also clearly state that it concerns an urgent order. Material type - Epoxy FR4 (standard) - CEM - Pertinax Phenol paper Material thickness - 1.6 mm (standard) - 0.2 mm / 0.5 mm / 0.8 mm - 1.0 mm / 2.4 mm Special thicknesses on request Copper thickness - 35 µM (standard) - 18 µM - 70 µM Thicker copper layers on request Corners, slots and different shapes Because the printing board and milling machine nowadays use highly advanced CNC drilling and milling machines, the possibilities in the field of milling are almost unlimited. In principle, your print can be milled in all possible shapes, and slots or other cut-outs can also be made in the print. All prints are milled as standard, creating a nice right-angled print edge free of fibers. Penalisation (breaking panel / v-cut) In consultation, we can supply printing in a panel based on a drawing supplied by you, contour in the Gerber file, or you make known what your specific wishes are and we put the panel together for you. With a breaker panel, the prints are milled almost completely around and remain stuck on a number of breakers. This means that you do not have to assemble the individual PCBs piece by piece, but you can assemble the entire panel immediately. After assembly, you can then simply break the prints out of the panel, after which you will have loose prints again, where you only have to pass a file at a number of places. If the prints are only separated by straight lines, it might be better to separate the prints by a v-cut milling line. The method mills the material on both sides for 1/3 under a 'v' corner. This creates a weak spot exactly in the middle of that line. The material is still strong enough to be able to assemble, but can easily be cut or broken off after assembly. Reference holes / Fiducialmarks Fiducials or fiducial marks are markers or reference points that an SMD pick and place robot needs to properly position a panel and then provide it with SMD components. If you have new prints or panels that must be fitted with SMD components, you can indicate this with your order and we will place the fiducials on the panel for you. Round fiducials are standard on the panel, but other shapes can also be used when necessary. There are also SMD robots that do not use, or make limited use of, fiducial marks, or printed circuit boards that are assembled in control frames where a dowel system is required. For these axle assembly types, it is, therefore, necessary to provide dowel holes or reference holes in the panels in order to position the panel. When you indicate the positions of the holes on your layouts, we ensure that they are placed in the print or panel. Gilding (Flashgold) When your print is going to be used as a plug-in card or PC card, a good electrical connection is often required. When this connection is made without connectors it is sometimes better to gild the (hard edge) contacts. Unfortunately, selective gilding is no longer possible, so these prints are fully equipped with flash gold. Flash gold is also the best option when placing fine pitch SMD components. Finishing your PCB with flash gold ensures that the surface of the print remains as flat as possible. This is in contrast to the standard HASL, where the surface remains bumpy. The islands also remain protected against oxidation, and yet easy to solder. Soldermask An (anti) solder mask is a (green) lacquer layer that covers the entire circuit board with the exception of the islands (pads). This is necessary when the print contains smd components and when the print is to be soldered in an automatic soldering process such as a wave soldering machine. Because the entire print is covered with the (anti) solder mask, this prevents tin from sticking to the tracks on the print and therefore soldering only where one wants it, namely only on the islands. With prints that contain smd components, it is almost a must to use a (anti) solder mask, because when the prints go through the reflow oven there is a chance that the smd components will float on a tin layer already applied to the print. Silkscreen A text print or silk screen is also a lacquer layer that can be put on the print in order to make the component outlines and component values or references clear. A text print is usually white, but may also be applied in a different color. When the print is assembled or perhaps will be repaired at a later stage, it is useful to have such a text print on the print. It is easier to see on the print where the components should be placed than first on a drawing and then on the print. HASL or OSP All the prints that we produce come standard with a lead-free HASL finish. HASL stands for Hot Air Solder Leveling and is a certain technique for applying a layer of tin / silver / copper or tin / copper / nickel alloy on the pads and / or traces of a printed circuit board. Advantages of the HASL finish on printed circuit boards are: Pads are already tinned and therefore easy to solder. All traces and pads not covered by the solder mask are protected against (copper) oxidation. Disadvantages of HASL is that in some cases it gives an increased chance of short circuits when the pitch of components becomes smaller and that SMD pads in particular are sometimes no longer flat. For printed circuit boards with a large number of smd components and / or finepitch (smd) components, we do not recommend the use of HASL. In these cases choose flashgold or OSP. If you do not want your pcb assembly illinois to be (standard) tinned, please indicate this with your order. For example, we can provide your printing with OSP. With organic Passifers (OSP) we apply a kind of lacquer layer that protects the solderability of the copper pads against oxidation. Inspection and final inspection By default, all prints are visually inspected for (production) errors. For more advanced printed circuit boards that can no longer be visually inspected, electrical test equipment can be used. For example, printing can be tested using a bed-of-nails or pen bed tester, or a flying probe test machine. These test devices have the advantage that after this electrical test, the PCBs are 100% electrically in order. All multilayers supplied by us are tested using a flying probe as standard. Electrical testing is of course also possible on all other print versions.
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How is a PCB board made?
Manufacturing Process
Printed circuit board processing and assembly are done in an extremely clean environment where the air and components can be kept free of contamination. Most electronic manufacturers have their own proprietary processes, but the following steps might typically be used to make a two-sided printed circuit board.
Making the substrate
1 Woven glass fiber is unwound from a roll and fed through a process station The above illustrations show an enlarged section of a PCB & PCBA .where it is impregnated with epoxy resin either by dipping or spraying. The impregnated glass fiber then passes through rollers which roll the material to the desired thick-ness for the finished substrate and also remove any excess resin.
2 The substrate material passes through an oven where it is semicured. After the oven, the material is cut into large panels.
3 The panels are stacked in layers, alternating with layers of adhesive-backed copper foil. The stacks are placed in a press where they are subjected to temperatures of about 340°F (170°C) and pressures of 1500 psi for an hour or more. This fully cures the resin and tightly bonds the copper foil to the surface of the substrate material.
Drilling and plating the holes
4 Several panels of substrate, each large enough to make several printed circuit boards, are stacked on top of each other and pinned together to keep them from moving. The stacked panels are placed in a CNC machine, and the holes are drilled according to the pattern determined when the boards were laid out. The holes are deburred to remove any excess material clinging to the edges of the holes.
5 The inside surfaces of the holes designed to provide a conductive circuit from one side of the board to the other are plated with copper. Non-conducting holes are plugged to keep them from being plated or are drilled after the individual boards are cut from the larger panel.
Creating the printed circuit pattern on the substrate
The printed circuit pattern may be created by an "additive" process or a "subtractive" process. In the additive process, copper is plated, or added, onto the surface of the substrate in the desired pattern, leaving the rest of the surface unplated. In the subtractive process, the entire surface of the substrate is first plated, and then the areas that are not part of the desired pattern are etched away, or subtracted. We shall describe the additive process.
6 The foil surface of the substrate is degreased. The panels pass through a vacuum chamber where a layer of positive photoresist material is pressed firmly onto the entire surface of the foil. A positive photoresist material is a polymer that has the property of becoming more soluble when exposed to ultraviolet light. The vacuum ensures that no air bubbles are trapped between the foil and the photoresist. The printed circuit pattern mask is laid on top of the photoresist and the panels are exposed to an intense ultraviolet light. Because the mask is clear in the areas of the printed circuit pattern, the photoresist in those areas is irradiated and becomes very soluble.
7 The mask is removed, and the surface of the panels is sprayed with an alkaline developer that dissolves the irradiated photoresist in the areas of the printed circuit pattern, leaving the copper foil exposed on the surface of the substrate.
8 The panels are then electroplated with copper. The foil on the surface of the substrate acts as the cathode in this process, and the copper is plated in the exposed foil areas to a thickness of about 0.001-0.002 inches (0.025-0.050 mm). The areas still covered with photo resist cannot act as a cathode and are not plated. Tin-lead or another protective coating is plated on top of the copper plating to prevent the copper from oxidising and as a resist for the next manufacturing step.
9 The photo resist is stripped from the boards with a solvent to expose the substrate's copper foil between the plated printed circuit pattern. The boards are sprayed with an acid solution which eats away the copper foil. The copper plating on the printed circuit pattern is protected by the tin-lead coating and is unaffected by the acid.
Attaching the contact fingers
10 The contact fingers are attached to the edge of the substrate to connect with the printed circuit. The contact fingers are masked off from the rest of the board and then plated. Plating is done with three metals: first tin-lead, next nickel, then gold.
Fusing the tin-lead coating
11 The tin-lead coating on the surface of the copper printed circuit pattern is very porous and is easily oxidized. To protect it, the panels are passed through a "reflow" oven or hot oil bath which causes the tin-lead to melt, or reflow, into a shiny surface.
Sealing, stenciling, and cutting the panels
12 Each panel is sealed with epoxy to protect the circuits from being damaged while components are being attached. Instructions and other markings are stenciled onto the boards.
13 The panels are then cut into individual boards and the edges are smoothed.
Mounting the components
14 Individual boards pass through several machines which place the electronic components in their proper location in the circuit. If surface mount technology is going to be used to mount the components, the boards first pass through an automatic solder paster, which places a dab of solder paste at each component contact point. Very small components may be placed by a "chip shooter" which rapidly places, or shoots, the components onto the board. Larger components may be robotically placed. Some components may be too large or odd-sized for robotic placement and must be manually placed and soldered later.
15 The components are then soldered to the circuits. With surface mount technology, the soldering is done by passing the boards through another reflow process, which causes the solder paste to melt and make the connection.
16 The flux residue from the solder is cleaned with water or solvents depending on the type of solder used.
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Consumer PCB Assembly
Consumer electronic products have different connotations in different developing countries and have different connotations in different development stages of the same country.Consumer electronics in our country refers to the audio and video products that are used for personal and family radio and television.Mainly include: television, DVD player (VCD, SVCD, DVD), VCR, video recorder, radio, radio recorder, combination stereo, record player, CD player, etc.In some developed countries, phones, personal computers, home office equipment, home appliances, car electronics and so on are also in consumer electronics.

With the development of technology and the emergence of new products, digital cameras, mobile phones, pdas and other products are also emerging as consumer electronic products.Since the late 1990 s, is a blend of computer, information and communication of information home appliances, consumer electronics, three areas began to widely into family life, it has the audio-visual, information processing, two-way communications, and other functions, is supported by embedded processor and related hardware, such as display adapters, storage media, the IC card or credit card reading equipment), embedded operating system and application layer software package.Broadly speaking, information home appliances include all can interactive information through the network system of home appliance products, such as PC, set-top boxes, HPC, DVD, super VCD, wireless data communication devices, video game equipment, such as WEBTV.
At present, audio, video and communication equipment are the main components of information appliances.In the long run, refrigerators, washing machines, microwave ovens will be developed into information home appliances, and constitute a part of the intelligent home appliances, from intelligent home appliances to the future kitchen bathroom, from autopilot to bionic robot, the frontier science and technology of black products the most anticipated consumer technology products, all is our necessities of life in the future.In recent years, there have been a lot of intelligent consumer products that have changed our lives in all aspects of food and clothing.

KingSong is professionally in manufacturing Consumer PCB Assembly,we don’t sell Finished Consumer products,but we strongly support for Consumer industry,including production and sales of PCB, PCBA complete product processing, sales, and so on.We can provide you varies of printed circuit board to suit for all your Consumer electronic applications.
Our PCB Manufacturing Advantages: 1.Professional PCB fabrication team -all engineers have years’ experience in PCB manufacturing field. 2.Advanced equipment and high precision inspection & testing tools. 3.Top raw materials including CCL (Copper Clad Lamination), chemistry, and solder mask ink & legend ink. 4.Skilled operators with good command of all CCPs (Critical Control Points). 5.Full set of surface finish equipment can do ENIG, immersion silver,OSP, HASL (lead free), plating gold etc. 6.Most advanced printed circuit board manufacturing processes capacities.
Our PCB Assembly Advantages: 1.high-speed pick and place SMT lines 2.Reflow Oven 3.Wave Soldering Machine 4.Automatic Solder Paste Printing Machines 5.PCBA Depaneling Machine 6.Automatic Optical Inspection (AOI) Machine 7.X-ray Machine 8.BGA removal and replacement station 9.SMT IR rework station 10.Thru-hole rework station 11.SMT Machine Engineers 12.Programming & IC Burning Engineers 13IPQC/QA 14.BOM List Engineers for quick quote
If you are looking for a quality of Consumer PCB Assembly Manufacturer and Supplier,KingSong would be your best choice,welcome to send your design file to us to request for quotation at [email protected]
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Black Friday 2017 – Featured Deals
All of our teams are getting ready to break records this year. With discounts up to 99% on a vast range of products, free same-day shipping*, and hassle-free returns, this Black Friday 2017 promises to be the best we’ve ever done.
Take a first look at some of our favorite deals coming at the end of the week below, and make sure you don’t miss them! Add a reminder to your calendar, or RSVP to our Facebook event to get exclusive tips and notifications for the best deals.
Professor Einstein WiFi Enabled Talking Robot
Hello – I am Professor Einstein WiFi Enabled Talking Robot! I have inherited the famous Albert Einstein’s intelligence and science know-how so that you can explore the world through my eyes. Bring me home and get on your personal path to genius! I am an amazingly expressive and playful robot who trains your brain and teaches you science.
Professor Einstein WiFi Enabled Talking Robot
Now $159.99 – Was $199 (20% off)
DFRobotShop Rover V2 – Arduino Compatible Tracked Robot
The DFRobotShop Rover V2 – Arduino Compatible Tracked Robot (Basic Kit) is a versatile mobile robot tank based on the popular Arduino Uno R3 USB Microcontroller microcontroller. The Rover uses the popular Tamiya twin-motor gearbox and the Tamiya track and wheel set. The DFRobotShop Rover PCB incorporates a standard Arduino Uno (surface mount ATMega328), L293B motor driver (connected to pins 5 to 8), voltage regulator and prototyping area while contributing to the mechanical structure of the robot. The onboard voltage regulator allows the entire board to be powered using as little as 3.7V to ~9V*.
DFRobotShop Rover V2 – Arduino Compatible Tracked Robot
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E-Blox Circuit Builder 115 Set
Great addition to any STEM program. Learn all about electricity, current, and voltage. Play song and sounds while lights flash and a fan spins. Compatible with other building brick sets
E-Blox Circuit Builder 115 Set
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Grillbot Automatic Grill Cleaning Robot (Black)
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Grillbot Automatic Grill Cleaning Robot (Black)
Now $89.95 – Was $89.95 (14% off)
Beagle, Monkey and Cat Robotic Toy Bundle
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LittleBits Droid Inventor Kit
With the LittleBits Droid Inventor Kit, kids can create their own custom Droid™ and bring it to life! Using littleBits electronic blocks and the free Droid Inventor app, they’ll teach their R2 Unit new tricks and take it on 16+ missions. Then kids can level-up their inventor expertise and reconfigure their Droid to give it new skills, or design any Droid they can dream up. The kit comes with everything kids need to create and customize their R2 Unit straight out of the box. Initial assembly is easy with step-by-step instructions to create their Droid and control it in Drive Mode, Self-Nav, Force™ Mode, and more. After mastering their Droid Inventor skills, kids continue on to challenges that spark creativity and get them inventing brand-new Droids.
LittleBits Droid Inventor Kit
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Litter-Robot III Open Air Automatic Self-Cleaning Litter Box w/ 1-Year Extended Warranty (Canada only)
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This Clocky Robot Alarm Clock runs away and hides when you don’t wake up. Clocky gives you one chance to get up. But if you snooze, Clocky will jump off of your nightstand and wheel around your room looking for a place to hide. Clocky is kind of like a misbehaving pet, only he will get up at the right time. It is also available in Clocky Robot Alarm Clock – Aqua, Almond, Raspberry, and Coco.
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Now $26.98 – Was $34.99 (23% off)
LIDAR-Lite 3 Laser Rangefinder
The LIDAR-Lite 3 Laser Rangefinder by Garmin is an essential, powerful, scalable and economical laser-based measurement solution supporting a wide variety of applications (ex. drones, general robotics, industrial sensing and more). Measures distance, velocity and signal strength of cooperative and non-cooperative targets at distances from zero to more than 40 meters. Offering the highest performance available in a single beam ranging sensor in its class.
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Now $110.99 – Was $149.59 (25.805% off)
Quirkbot Robot Kit
The Quirkbot Robot Kit is a little character you can program and construct into different shapes and forms. Connect Strawbees, motors, LEDs, and sensors to make your own creatures! It’s a fun and easy way to the inspiring world of physical programming, electronics and mechanics for kids, grown-ups and educators.
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Now $94.99 – Was $119 (20.18% off)
RPLIDAR A2 360° Laser Scanner
The RPLIDAR A2 360° Laser Scanner is the next generation of 360 degrees 2D lidars. The RPLIDAR A2 adopts low-cost laser triangulation measurement system developed by SLAMTEC, and therefore has excellent performance in all kinds of indoor environments and outdoor environments without direct sunlight exposure.
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Now $379 – Was $449 (16% off)
Squishy Circuits Lite Kit
The Squishy Circuits Lite Kit uses conductive and insulating play dough to teach the basics of electrical circuits in a fun, hands-on way. There’s no need for breadboards or soldering – just add batteries and our pre-made doughs (or make your own dough with the provided recipes). Let your creations come to life as you light them up with LEDs, make noises with buzzers, and spin with the motor.This is the most basic kit and includes everything that you need to make your first Squishy Circuits light up quickly and easily.
Squishy Circuits Lite Kit
Now $8.5 – Was $10 (15% off)
*conditions apply – please see our website for minimum order value for free shipping, and requirements for same-day shipping
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Black Friday 2017 – Featured Deals
All of our teams are getting ready to break records this year. With discounts up to 99% on a vast range of products, free same-day shipping*, and hassle-free returns, this Black Friday 2017 promises to be the best we’ve ever done.
Take a first look at some of our favorite deals coming at the end of the week below, and make sure you don’t miss them! Add a reminder to your calendar, or RSVP to our Facebook event to get exclusive tips and notifications for the best deals.
Professor Einstein WiFi Enabled Talking Robot
Hello – I am Professor Einstein WiFi Enabled Talking Robot! I have inherited the famous Albert Einstein’s intelligence and science know-how so that you can explore the world through my eyes. Bring me home and get on your personal path to genius! I am an amazingly expressive and playful robot who trains your brain and teaches you science.
Professor Einstein WiFi Enabled Talking Robot
Now $159.99 – Was $199 (20% off)
DFRobotShop Rover V2 – Arduino Compatible Tracked Robot
The DFRobotShop Rover V2 – Arduino Compatible Tracked Robot (Basic Kit) is a versatile mobile robot tank based on the popular Arduino Uno R3 USB Microcontroller microcontroller. The Rover uses the popular Tamiya twin-motor gearbox and the Tamiya track and wheel set. The DFRobotShop Rover PCB incorporates a standard Arduino Uno (surface mount ATMega328), L293B motor driver (connected to pins 5 to 8), voltage regulator and prototyping area while contributing to the mechanical structure of the robot. The onboard voltage regulator allows the entire board to be powered using as little as 3.7V to ~9V*.
DFRobotShop Rover V2 – Arduino Compatible Tracked Robot
Now $58.99 – Was $89.99 (34% off)
E-Blox Circuit Builder 115 Set
Great addition to any STEM program. Learn all about electricity, current, and voltage. Play song and sounds while lights flash and a fan spins. Compatible with other building brick sets
E-Blox Circuit Builder 115 Set
Now $22.49 – Was $29.99 (25% off)
Grillbot Automatic Grill Cleaning Robot (Black)
The Grillbot Automatic Grill Cleaning Robot (Black) is a fully automated, safe and easy to use Grillbot. It is the world’s first automatic grill cleaning robotic device. Its push-button makes it easy to operate. It does all the heavy scrubbing to rid your grill of grease and grime while you get on with your life. It not only cleans your grill but allows the grill to retain its ongoing flavor. Grillbot takes the work out of it with disposable brushes and three motor power to blast away grime and grease. When finished, Grillbot alerts you with an alarm. With the Grillbot you can save yourself time and energy. It does the tough job of scrubbing and cleaning the grill so you can go ahead and do other things like watching the game or joining the family to play games. Simply put the Grillbot on your grill, press a button and you are done. Grillbot scours grease and caked-on grime leaving your grill like new. Grill cleaning has never been easier.
Grillbot Automatic Grill Cleaning Robot (Black)
Now $89.95 – Was $89.95 (14% off)
Beagle, Monkey and Cat Robotic Toy Bundle
Beagle, Monkey and Cat Robotic Toy Bundle – Cute animals that chatter and walk.
Beagle, Monkey and Cat Robotic Toy Bundle
Now $17.98 – Was $29.97 (40% off)
LittleBits Droid Inventor Kit
With the LittleBits Droid Inventor Kit, kids can create their own custom Droid™ and bring it to life! Using littleBits electronic blocks and the free Droid Inventor app, they’ll teach their R2 Unit new tricks and take it on 16+ missions. Then kids can level-up their inventor expertise and reconfigure their Droid to give it new skills, or design any Droid they can dream up. The kit comes with everything kids need to create and customize their R2 Unit straight out of the box. Initial assembly is easy with step-by-step instructions to create their Droid and control it in Drive Mode, Self-Nav, Force™ Mode, and more. After mastering their Droid Inventor skills, kids continue on to challenges that spark creativity and get them inventing brand-new Droids.
LittleBits Droid Inventor Kit
Now $80 – Was $99.99 (20% off)
Litter-Robot III Open Air Automatic Self-Cleaning Litter Box w/ 1-Year Extended Warranty (Canada only)
The Litter-Robot III Open Air Automatic Self-Cleaning Litter Box w/ 1-Year Extended Warranty makes cat ownership easier every day. It is the first major revision to the highly successful Litter-Robot platform. The larger, more ergonomic entry and litter chamber along with the new self-adjusting cat sensor accommodates all cats, large and small. It sifts clumps and waste out of the litter seven minutes after a cat uses it and drops the waste into a receptacle drawer for easy disposal.
Litter-Robot III Open Air Automatic Self-Cleaning Litter Box w/ 1-Year Extended Warranty
Now $449.99 – Extended Warranty offered for free
Clocky Robot Alarm Clock – Black
This Clocky Robot Alarm Clock runs away and hides when you don’t wake up. Clocky gives you one chance to get up. But if you snooze, Clocky will jump off of your nightstand and wheel around your room looking for a place to hide. Clocky is kind of like a misbehaving pet, only he will get up at the right time. It is also available in Clocky Robot Alarm Clock – Aqua, Almond, Raspberry, and Coco.
Clocky Robot Alarm Clock – Black
Now $26.98 – Was $34.99 (23% off)
LIDAR-Lite 3 Laser Rangefinder
The LIDAR-Lite 3 Laser Rangefinder by Garmin is an essential, powerful, scalable and economical laser-based measurement solution supporting a wide variety of applications (ex. drones, general robotics, industrial sensing and more). Measures distance, velocity and signal strength of cooperative and non-cooperative targets at distances from zero to more than 40 meters. Offering the highest performance available in a single beam ranging sensor in its class.
LIDAR-Lite 3 Laser Rangefinder
Now $110.99 – Was $149.59 (25.805% off)
Quirkbot Robot Kit
The Quirkbot Robot Kit is a little character you can program and construct into different shapes and forms. Connect Strawbees, motors, LEDs, and sensors to make your own creatures! It’s a fun and easy way to the inspiring world of physical programming, electronics and mechanics for kids, grown-ups and educators.
Quirkbot Robot Kit
Now $94.99 – Was $119 (20.18% off)
RPLIDAR A2 360° Laser Scanner
The RPLIDAR A2 360° Laser Scanner is the next generation of 360 degrees 2D lidars. The RPLIDAR A2 adopts low-cost laser triangulation measurement system developed by SLAMTEC, and therefore has excellent performance in all kinds of indoor environments and outdoor environments without direct sunlight exposure.
RPLIDAR A2 360° Laser Scanner
Now $379 – Was $449 (16% off)
Squishy Circuits Lite Kit
The Squishy Circuits Lite Kit uses conductive and insulating play dough to teach the basics of electrical circuits in a fun, hands-on way. There’s no need for breadboards or soldering – just add batteries and our pre-made doughs (or make your own dough with the provided recipes). Let your creations come to life as you light them up with LEDs, make noises with buzzers, and spin with the motor.This is the most basic kit and includes everything that you need to make your first Squishy Circuits light up quickly and easily.
Squishy Circuits Lite Kit
Now $8.5 – Was $10 (15% off)
*conditions apply – please see our website for minimum order value for free shipping, and requirements for same-day shipping
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Ionised air gun
Ionizing air gun is the ideal strategy of eliminating static, impurities as well as dirt from three dimensional parts before putting together, product packaging, paint or finishing.
The Ionized Airgun or Warm gun includes a hand trigger and an ionisation head crafted right into the finger guard.
Static eliminator
Personal static eliminator neutralizes fixed discharge keeping your work space, components and also tools safe from damage. Portable design with adjustable angles allows you position exactly where needed.
· Compact and also lightweight for mobility
· Rotating dial conveniently adjusts follower rate to wanted rate
· Easy to clean
· Power intake: 30W
· Ion equilibrium: = ± 10
· . Coverage range: 15 3.
· Dimensions (L) x (W) x (H): 5.5" x 3.3" x 8.7".
Electrostatic field meter
This excellent quality electronic area meter is a hand held, non-contacting meter which spots as well as gauges electrostatic field meter. It is battery run and has an LCD display.
Test method: turning chopper.
Test variety: 0V - ± 160kV distance setting.
0V-- 800kV/m area toughness mode.
The meter is supplied in a bring case consisting of a basing lead, 9v battery, instruction manual and also calibration certificate.
Ion Bar
The ion bar needs no calibration. Exhaust of DC steady-state offers efficient discharge. Thus the ion gets neutralized as well as gets rid of fixed accurately successfully.
Static charge removal systems
We manufacture and supply Static charge removal system with Fixed System Guard. Made using high end innovation, this system is used to eliminate all opportunities of damaging impacts on personnel as well as material, therefore assist in providing high efficiency in regards to manufacturing, quality, less guy hour and also higher profits.
Digital multimeter
A digital multimeter is an examination device utilized to gauge two or more electric worth’s-- principally voltage (volts), current (amps) and also resistance (ohms). It is a basic diagnostic tool for professionals in the electrical/electronic markets.
Digital clamp meter
If you are seeking to buy Digital Clamp Meter online, then rejoice, for your search mores than. Advance tech services Pvt Ltd understands that it can be a tiresome procedure especially for individuals that want to see a mix of quality and fantastic rates with Digital clamp meters and also brings to you quality ended up electronic clamp meters online at spending plan prices. Clamp meters can measuring homes like regularity, capacitance, voltage, resistance, duty cycle and temperature level. They are most commonly used by electrical contractors for examining electric systems and appliances as well as likewise in troubleshooting electric concerns.
Digital Tachometer
Digital Tachometer makes use of most current technology for accurate measurements. It has unique one chip of Microcomputer LSI Circuit; it is housed in difficult ABDOMINAL MUSCLE instance & has ergonomic layout for easy holding in the hand.
Lux Meter
For this, the Lux meter must be used. To measure the light properly, a lux meter is a really appropriate tool.
Insulation Resistance Tester
Insulation starts to age as quickly as it's made. As it ages, its shielding performance deteriorates. One of the simplest tests as well as its required examination instrument are not globally comprehended. To help remove this absence of understanding, allows talk about thoroughly Insulation Resistance tester as well as the megohmmeters.
Soldering Iron
This is a really simple repaired temp, quick home heating, 30W 110/120 VAC soldering iron. We really enjoy using the extra pricey irons, but if you actually require a low-cost iron for your device box, this wonderful iron is a good selection.
Flux cleaner
If you are preparing to have a look at several of the best in cleaning chemicals, https://www.advancetech.co.in has everything for you. The flux cleaner chemical assists in eliminating change from the soldering procedure. This helps in maintaining the circuits tidy and eliminates the diversions in the flow of current. The ULS cleaning solvent is a basic one and is used for the basic cleaning objectives particularly electric contacts.
Soldering station
Soldering station depends on the soldering station utilized, the welding torches as well as pointers, in addition to the soldering methods. Make sure you have the right devices to tackle any soldering project with our variety of soldering and desoldering stations, blowpipes, tips, conventional and also lead-free solder, hot-air rework stations and also even more. Don't forget fume extraction devices and filters to ensure your safety and security
Desoldering station
The Digital Soldering and also Desoldering Station are a high performance as well as multi feature station for digital product research, production and revamp. We create the best soldering and desoldering services including electronic soldering station in India. Our soldering as well as desoldering station uses accurate as well as innovative temperature Control with mini controller technology. Digital calibration will be done through mini controller to stay clear of analog parts tolerances.
SMD Rework station
We offer SMD Rework Station, In order to satisfy the established top quality standards, these are manufactured utilizing the ideal quality raw product and also sophisticated innovation. Our product array additionally comprises of Soldering Station as well as Power Supply.
No clean flux
No Clean Flux are low solid (less than 5%) fluxes, particularly created for smds and also combined modern technology soldering. They are entirely non-halide, show outstanding solder ability on all sorts of board including smds, provide exceptional moistening on surface area placed elements, as well as leave no noticeable flux residue after soldering. Usually no additional cleaning is needed, however if really high ionic cleanliness is required, the deposit can be removed by solvent or saponification cleaning.
VOC free flux
VOC-free flux utilizes water as the dominant solvent. The downside of VOC-free/water-based changes is that they require even more pre-heat to drive off the water than similar alcohol-based changes.
Electric screwdriver
Select electric screwdriver from www.advancetech.co.in if you want to get low-cost electric screwdriver. It undertakings to supply the items that you want, supplying the most effective value. Whatever electric screwdriver styles you desire, can be easily bought.
Pneumatic screwdriver
Advance Technology solutions Pvt Ltd supplies a wide variety of pneumatic screwdriver as well as devices from leading Indian producers. All our principals are ISO 9001: 2000 accredited. We give production line production services with our series of pneumatically-driven tools for much better productivity & much less driver fatigue.
Digital screw driver
Digital screwdrivers feature an integral LCD show for practical torque readings. The systems are designed for screw tightening torque confirmation and measures in Top, Live, Peak Down and Constant Output gauging settings (selectable).
Torque meter
AdvanceTech services Pvt ltd uses a total variety of torque testers, torque analysers as well as torque meter for tool confirmation and also calibration. From fundamental analog testers to assessment grade research laboratory tools we have your torque requires covered. Don't see what you need? Please call us relating to customized devices. Our skilled group of designers can create as well as construct a full range of custom torque gauging devices for your application.
Epoxy dispenser
Our automatic Epoxy dispenser are preferably matched for Epoxy giving applications in the electronics, medical gadget, automobile, telecommunications and also defence industries as well as for various other general manufacturing procedures.
Desoldering wick
Location the pigtail over a connection as well as warmth the contrary side with an iron. In some cases adding a small amount of solder to the iron pointer can in fact quicken the process since that solder will help the iron transfer warm right into the pigtail much faster. Cut off as well as discard the utilized wick. The only concern with utilizing desoldering wick/braid is that the elements as well as pads can conveniently end up being overheated, especially surface mount pads. As constantly, attempt to reduce the time parts are heated.
Soldering robo
After [Brian] starting marketing his very own Raspberry Pi development boards, he located himself with a need for a robotic that can solder 40-pin headers for him. He first did what lots of people could do by searching for pre-built remedies. Every little thing he discovered was either too sluggish, also large, or expenses as much as a brand-new vehicle. When he chose to just build his own soldering robo, that's.
Solder Pots
For all the electrical professionals, digital equipment enthusiasts, college students and all who require soldering pot for wire/battery tinning or need to solder PCB's, your quest for quality soldering pot has concerned an end.
Advance Tech Services (P) Ltd. recognizes your wish for those fine-quality steel joints and so offers you just the very best soldering pot. The soldering pots diverse online at Advance Tech Services (P) Ltd. deal a long life as it is heat resistant and also at the same time anti-corrosive alloys are made use of for manufacture.
At Advance Tech Services (P) Ltd, you will discover whatever under one roofing system, right from the conventional soldering pot to the modern-day marvels which have Digital controller or Thermostat attached to maintain the temperature of the pot. Rest assured with the best brand names available, you will certainly locate what you are looking for.
#solder pots#soldering robo#desoldering wick#epoxy dispenser#torque meter#Digital screw driver#electric screwdriver#no clean flux#voc free flux#SMD Rework station#desoldering station#soldering station#flux cleaner#Soldering Iron#Insulation Resistance Tester#Lux Meter#digital tachometer#Digital clamp meter
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