• How To Design A Signal Amplification PC Board
    #PrintedCircuitBoard
    #PCBdesign
    #PCBoardassembly
    Various kinds of circuit boards are essential for electronic devices and the amplifier PCB is one of them. You need amplifiers to reproduce sounds, so the amplifier circuit board is vital for sound-generating devices, such as loudspeakers.
    Understanding An Amplifier PCB
    A PCB with an amplifier produces enhanced signals that input terminals require. Such a circuit board consists of electronic components to transfer signals. The components also increase the power of the amplifier by transferring signals through specific transistors. A substrate is an essential part of an amplifier circuit board like it’s a surface with components and it is composed of resin and fiberglass.
    Though the amplifier is an independent component, it has several parts in it. An amplifier circuit board has many resistors and capacitors to perform various functions. Moreover, it has input and output terminals for both original and amplified signals.
    Such a PCB can be small or large, depending on the device and its application. Generally, the headphones amplifiers are small, whereas the professional sound system has a large amplifier that singers and musicians often use. The size of a large amplifier Printed Circuit Board goes beyond 100 square inches.
    The small amplifiers often depend on an external source for power supply whereas the battery-driven amplifiers are different. Such PCBs are either power amplifiers or audio amplifiers.
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    How To Design A Signal Amplification PC Board #PrintedCircuitBoard #PCBdesign #PCBoardassembly Various kinds of circuit boards are essential for electronic devices and the amplifier PCB is one of them. You need amplifiers to reproduce sounds, so the amplifier circuit board is vital for sound-generating devices, such as loudspeakers. Understanding An Amplifier PCB A PCB with an amplifier produces enhanced signals that input terminals require. Such a circuit board consists of electronic components to transfer signals. The components also increase the power of the amplifier by transferring signals through specific transistors. A substrate is an essential part of an amplifier circuit board like it’s a surface with components and it is composed of resin and fiberglass. Though the amplifier is an independent component, it has several parts in it. An amplifier circuit board has many resistors and capacitors to perform various functions. Moreover, it has input and output terminals for both original and amplified signals. Such a PCB can be small or large, depending on the device and its application. Generally, the headphones amplifiers are small, whereas the professional sound system has a large amplifier that singers and musicians often use. The size of a large amplifier Printed Circuit Board goes beyond 100 square inches. The small amplifiers often depend on an external source for power supply whereas the battery-driven amplifiers are different. Such PCBs are either power amplifiers or audio amplifiers. Read more: https://bit.ly/3uMBVlE Website: https://pnconline.com/ Facebook: https://www.facebook.com/PNCONLINE Twitter: https://twitter.com/PNCINC Instagram: https://www.instagram.com/pnc_pcb/ Tumblr: https://www.tumblr.com/blog/view/pncinc Myspace :https://myspace.com/pncinc2020 Bresdel: https://bresdel.com/pncinc Pinterest :https://www.pinterest.com.au/rrosh2014/_created/ Call us: (973) 284-1600 Email us: sales@pnconline.com Location: PNC INC, 115 East Centre St.Nutley, NJ, 07110
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  • PCB Design, Planning, and Components Selection in Printed Circuit Boards
    #PrintedCircuitBoard
    #PCBOARD
    #PCBdesign
    #pcbassemblyservices
    Designing a printed circuit board or PCB can become challenging because there are many factors to consider, including environmental conditions the PCB will be exposed to and the desired electrical components that the PCB will use. The best design, planning, and component selection bring the best-printed circuit boards. All electronic products contain printed circuit boards so considering the above elements is essential that we will discuss these elements in this article.
    Questions Regarding PCB Planning?
    A few questions to keep in mind when designing and planning a PCB include:
    • How many layers do I want?
    • What thickness of copper foil/laminate do I want?
    • Do I want to use plated through holes or non-plated through holes?
    • Do I want my board to be double-sided, single-sided, or multilayer?
    • Are all of my components going to be surface mount or through-hole?
    • Are all of my connections going to be made using jumpers or solder pads?
    • Can I get away with using cheaper non-plated through holes instead of plated ones? Can I get away with not having a ground plane layer if all my signals are digital logic levels?
    • Does my design require low-noise analog filtering?
    • Will I need to isolate high-voltage circuitry from low-voltage circuitry, and high-speed circuitry from slow-speed circuitry?
    You can start designing a PCB after getting answers to the above questions.
    Read more: https://www.pnconline.com/blog/pcb-design-planning-and-components-selection-in-printed-circuit-boards/
    Location: PNC INC, 115 East Centre St.
    Nutley, NJ, 07110
    Phone: (973) 284-1600
    Email:sales@pnconline.com
    PCB Design, Planning, and Components Selection in Printed Circuit Boards #PrintedCircuitBoard #PCBOARD #PCBdesign #pcbassemblyservices Designing a printed circuit board or PCB can become challenging because there are many factors to consider, including environmental conditions the PCB will be exposed to and the desired electrical components that the PCB will use. The best design, planning, and component selection bring the best-printed circuit boards. All electronic products contain printed circuit boards so considering the above elements is essential that we will discuss these elements in this article. Questions Regarding PCB Planning? A few questions to keep in mind when designing and planning a PCB include: • How many layers do I want? • What thickness of copper foil/laminate do I want? • Do I want to use plated through holes or non-plated through holes? • Do I want my board to be double-sided, single-sided, or multilayer? • Are all of my components going to be surface mount or through-hole? • Are all of my connections going to be made using jumpers or solder pads? • Can I get away with using cheaper non-plated through holes instead of plated ones? Can I get away with not having a ground plane layer if all my signals are digital logic levels? • Does my design require low-noise analog filtering? • Will I need to isolate high-voltage circuitry from low-voltage circuitry, and high-speed circuitry from slow-speed circuitry? You can start designing a PCB after getting answers to the above questions. Read more: https://www.pnconline.com/blog/pcb-design-planning-and-components-selection-in-printed-circuit-boards/ Location: PNC INC, 115 East Centre St. Nutley, NJ, 07110 Phone: (973) 284-1600 Email:sales@pnconline.com
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    PCB Design, Planning, and Components Selection in Printed Circuit Boards
    This guide will help you understand how to select components for your PCB design effectively.
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  • Design Elements Influencing SMT Assembly
    View more: https://youtu.be/mBqXrHQISU4
    #PCboard
    #PCboardfabrication
    #PCBdesign
    #PCBfabrication
    #SMTassembly
    #Circuitboardfabrication
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    Design Elements Influencing SMT Assembly View more: https://youtu.be/mBqXrHQISU4 #PCboard #PCboardfabrication #PCBdesign #PCBfabrication #SMTassembly #Circuitboardfabrication Call us: (973) 284-1600 Visit us: sales@pnconline.com Location: PNC INC, 115 East Centre St. Nutley, NJ, 07110
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  • Printed Circuit Board Routing Practices after Auto Routing
    #PCBoardFabrication
    #PCBOARD
    #PCBdesign
    #PCBoardassembly
    In electronic design, PCB routing is the positioning of conductive pathways on a printed circuit board before final soldering and interconnection. The purpose of PCB routing is to have an arrangement where signal traces connect electrically to components and other signal traces while avoiding the signal crosstalk and maintaining short electrical paths between the components.
    You can have a manual PCB through computer-aided design software or the use of specialized routing hardware, such as manually controlled routers or auto-routers.
    How To Reset Your Board After Auto Routing
    If you’ve used an auto-router, but you’re not happy with its results, you can fix it in different ways. Moreover, if you know what a DRC is, you can use it to override certain errors that auto-router made.
    DRC means the Design Rule Check which you can perform by running an ERC or Error Report Check. The ERC will report all of your errors on your design file on a text file. It will then tell you how many errors are found in each layer.
    You can then go into each layer and manually change any error that was reported by using the P-CAD’s drag function to move components around until they fit perfectly within their pads or tracks. This is also known as drag fitting.
    When everything fits perfectly, save your design as a new version so that you don’t accidentally erase anything important. Once saved, run another DRC and see if it finds anything else wrong with your board layout. If not, continue with another step to check for shorts between traces/pads/vias/traces, etc.
    After fixing these issues, perform another DRC again. Now that everything looks good, export your Gerber files. Make sure you select the top copper layer only and then hit OK. Your Gerber files should now be ready to send off for PC Board Fabrication.
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    Read more: https://www.pnconline.com/blog/printed-circuit-board-routing-practices-after-auto-routing/
    Printed Circuit Board Routing Practices after Auto Routing #PCBoardFabrication #PCBOARD #PCBdesign #PCBoardassembly In electronic design, PCB routing is the positioning of conductive pathways on a printed circuit board before final soldering and interconnection. The purpose of PCB routing is to have an arrangement where signal traces connect electrically to components and other signal traces while avoiding the signal crosstalk and maintaining short electrical paths between the components. You can have a manual PCB through computer-aided design software or the use of specialized routing hardware, such as manually controlled routers or auto-routers. How To Reset Your Board After Auto Routing If you’ve used an auto-router, but you’re not happy with its results, you can fix it in different ways. Moreover, if you know what a DRC is, you can use it to override certain errors that auto-router made. DRC means the Design Rule Check which you can perform by running an ERC or Error Report Check. The ERC will report all of your errors on your design file on a text file. It will then tell you how many errors are found in each layer. You can then go into each layer and manually change any error that was reported by using the P-CAD’s drag function to move components around until they fit perfectly within their pads or tracks. This is also known as drag fitting. When everything fits perfectly, save your design as a new version so that you don’t accidentally erase anything important. Once saved, run another DRC and see if it finds anything else wrong with your board layout. If not, continue with another step to check for shorts between traces/pads/vias/traces, etc. After fixing these issues, perform another DRC again. Now that everything looks good, export your Gerber files. Make sure you select the top copper layer only and then hit OK. Your Gerber files should now be ready to send off for PC Board Fabrication. Call us: (973) 284-1600 Visit us: sales@pnconline.com Location: PNC Inc.115 East Centre St.Nutley, NJ 07110 Read more: https://www.pnconline.com/blog/printed-circuit-board-routing-practices-after-auto-routing/
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    Printed Circuit Board Routing Practices after Auto Routing
    In electronic design, PCB routing is the positioning of conductive pathways on a Printed Circuit Board before final soldering and interconnection.
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  • DFM Issues in PCB Design
    #PCboardfabrication
    #pcbassembly
    #Printedcircuitboard
    #PCBdesign
    #pcbassemblyservices
    You need a well-designed PCB for the effective functioning of the device, and you can have it by focusing on the DFM or Design for Manufacturing. Different requirements are there in terms of PCB design, management, and fabrication that you have to follow. At the same time, you should consider the timeline to have a circuit board within your budget.
    PCB and DFM Issues
    Having well-executed CAD tools is easy, but these tools cause certain DFM issues which need lots of effort to solve. Sometimes a PCB is correct in terms of electrical requirements, but it is hard to manufacture because you don’t focus on the design layout. The layout issues stay hidden, making it hard for you to assemble a PCB, besides the testing also becomes difficult.
    However, you can overcome the DFM problems if you understand the entire process of manufacturing. Now, we will discuss a few DFM issues, including tolerances, acid traps, SMD issues like open vias and uneven connections, a wrong opening of the solder mask, and the violation of standards.
    Once you know these problems, it becomes easier for you to resolve them and have an easy fabrication that involves less time to review the design. So, let’s discuss the DFM issues one by one and find their solutions to have the best device. ...
    View more: https://youtu.be/3_DH3S-kCs0
    Call us: (973) 284-1600
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    Location: PNC INC, 115 East Centre St.
    Nutley, NJ, 07110
    DFM Issues in PCB Design #PCboardfabrication #pcbassembly #Printedcircuitboard #PCBdesign #pcbassemblyservices You need a well-designed PCB for the effective functioning of the device, and you can have it by focusing on the DFM or Design for Manufacturing. Different requirements are there in terms of PCB design, management, and fabrication that you have to follow. At the same time, you should consider the timeline to have a circuit board within your budget. PCB and DFM Issues Having well-executed CAD tools is easy, but these tools cause certain DFM issues which need lots of effort to solve. Sometimes a PCB is correct in terms of electrical requirements, but it is hard to manufacture because you don’t focus on the design layout. The layout issues stay hidden, making it hard for you to assemble a PCB, besides the testing also becomes difficult. However, you can overcome the DFM problems if you understand the entire process of manufacturing. Now, we will discuss a few DFM issues, including tolerances, acid traps, SMD issues like open vias and uneven connections, a wrong opening of the solder mask, and the violation of standards. Once you know these problems, it becomes easier for you to resolve them and have an easy fabrication that involves less time to review the design. So, let’s discuss the DFM issues one by one and find their solutions to have the best device. ... View more: https://youtu.be/3_DH3S-kCs0 Call us: (973) 284-1600 Visit us: sales@pnconline.com Location: PNC INC, 115 East Centre St. Nutley, NJ, 07110
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  • Identify SMT Components Polarity on a PC Board
    The design of PCB and its assembly involves different components. The smart era has resulted in a compact PCB design and the components’ polarity is hard to identify now. Here, we will see how to recognize the polarity of the SMT components to avoid its reversal during production, ensure a correct PCB, and enhance the quality of engineers’ knowledge regarding the polarized components’ direction.
    Understand the Polarity of Components In PCB?
    The polarity of SMT components is the position of the SMT components’ first pin or it’s the direction of the component. In other words, when you mount a component during the SMT assembly process, it should be installed in a specific direction and that is polarity.
    You have to make sure that both negative and positive poles of the components are connected to the circuit board. If the components’ direction is wrong while mounting, it would result in a blocked circuit, causing a short circuit. Moreover, the body of the component gets burned and the circuit does not function correctly due to wrong placement.
    Read more: https://www.pnconline.com/blog/identify-smt-components-polarity-on-a-pc-board/
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    #PCboard
    #PCBdesign
    #Printedcircuitboard
    #SMTassemblyprocess
    #pcbassembly
    Identify SMT Components Polarity on a PC Board The design of PCB and its assembly involves different components. The smart era has resulted in a compact PCB design and the components’ polarity is hard to identify now. Here, we will see how to recognize the polarity of the SMT components to avoid its reversal during production, ensure a correct PCB, and enhance the quality of engineers’ knowledge regarding the polarized components’ direction. Understand the Polarity of Components In PCB? The polarity of SMT components is the position of the SMT components’ first pin or it’s the direction of the component. In other words, when you mount a component during the SMT assembly process, it should be installed in a specific direction and that is polarity. You have to make sure that both negative and positive poles of the components are connected to the circuit board. If the components’ direction is wrong while mounting, it would result in a blocked circuit, causing a short circuit. Moreover, the body of the component gets burned and the circuit does not function correctly due to wrong placement. Read more: https://www.pnconline.com/blog/identify-smt-components-polarity-on-a-pc-board/ Call us: (973) 284-1600 Visit us: sales@pnconline.com #PCboard #PCBdesign #Printedcircuitboard #SMTassemblyprocess #pcbassembly
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    Identify SMT Components Polarity on a PC Board
    The design of PCB and its assembly involves different components. The smart era has resulted in a compact PCB design and the components’ polarity is hard to identify now. Here, we will see how to recognize the polarity of the SMT components to avoid its reversal during production, ensure a correct PCB, and enhance the … Continue reading Identify SMT Components Polarity on a PC Board →
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  • Basic PC Board Rules for Successful IoT Design
    #PCBoard
    #pcboardassembly
    #pcbassembly
    #pcbassemblyusa
    #PCBDesign
    Readmore: https://www.pnconline.com/blog/basic-pc-board-rules-for-successful-iot-design-2/
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    Basic PC Board Rules for Successful IoT Design #PCBoard #pcboardassembly #pcbassembly #pcbassemblyusa #PCBDesign Readmore: https://www.pnconline.com/blog/basic-pc-board-rules-for-successful-iot-design-2/ Visit us: https://www.pnconline.com Email: sales@pnconline.com Phone: (973) 284-1600
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    Basic PC Board Rules for Successful IoT Design
    IoT-based PC Board involves a precise evaluation and focusing on the power management, sensors, and the wireless connection
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