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At Candor, our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.

Page Title
A line of about this page.
At Candor, our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
Page Title
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At Candor, our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
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Some highlighted content can be written here. Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design. We believe in quick responsiveness, a focus on innovation and commitment to creating a seamless prototype cycle that reduces revisions and results in savings of cost and time.
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Some highlighted content can be written here. Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design. We believe in quick responsiveness, a focus on innovation and commitment to creating a seamless prototype cycle that reduces revisions and results in savings of cost and time.
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Some highlighted content can be written here. Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design. We believe in quick responsiveness, a focus on innovation and commitment to creating a seamless prototype cycle that reduces revisions and results in savings of cost and time.
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Some highlighted content can be written here. Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design. We believe in quick responsiveness, a focus on innovation and commitment to creating a seamless prototype cycle that reduces revisions and results in savings of cost and time.
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Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
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Single-layer or single-sided PCBs are the most common type of board. These boards have a single conductive copper layer sitting above the substrate, with electrical components soldered to one side. There is an etched circuit visible on a single side of the board, with a single conductive layer, and paths that do not overlap. Single-sided PCBs function best for low-density design requirements and are used for basic electronics such as radios, power supplies, and calculators. They’re easy to manufacture, cost-effective, and simple to repair.
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Ready to start your PCB project?
Fill out the form to get a custom quote for your printed circuit board project now. Let us know the quantity and type of PCB required, include any Schematics & Supporting Files, and we’ll get back to you shortly!
Single Layer PCB
Single-layer or single-sided PCBs are the most common type of board. These boards have a single conductive copper layer sitting above the substrate, with electrical components soldered to one side. There is an etched circuit visible on a single side of the board, with a single conductive layer, and paths that do not overlap. Single-sided PCBs function best for low-density design requirements and are used for basic electronics such as radios, power supplies, and calculators. They’re easy to manufacture, cost-effective, and simple to repair.
Multilayer PCB
Multilayer PCBs feature two or more copper layers and three or more conductive layers. These boards are designed with double-sided conductive layers divided by insulating materials, bonded and laminated under high temperatures and pressure which ensures a stable final product with no air gaps. Multilayer PCBs are commonly used in mobile phones, laptops, GPS trackers, medical equipment, and other more complex circuits. They are compact, feature robust design options, have higher levels of flexibility, and are the preferred option for high-speed circuits.

Our Process
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made for single layer, double layer, and multilayer boards. Paste application, automated component placement, soldering, and inspection create your unique PCB, and each stage requires different equipment to ensure your PCB is built correctly, functions as intended, and meets our standards.
01
Soldering
PCB assembly involves placing various electronic components on the board. The process applies a small amount of solder to the pads on the PCB before placing components. Then, a stencil is used to apply past to the board’s surface. This allows our Automatic Optical Inspection Machine and In-Circuit Test Fixture to make early tests and inspections of your board. Our solder paste jet printer utilizes extreme precision, eliminating board transfer time whether it’s a single layer PCB or a multilayer PCB. The solder paste allows components to be attached, and an inspection ensures that the paste is evenly applied.
02
Component Placement
This stage features automated component placement, where a robotic hand accurately positions and mounts the surface-mount components of your PCB. These pieces of PCB use advanced algorithms and vision systems to identify each component’s location and orientation. By using advanced, cutting-edge techniques, components can be precisely placed on the board. This technique improves the assembly process’s speed, accuracy, and reliability, reduces the need for manual labor, and increases the overall quality of the finished product.
03
Reflow Soldering
When it’s time for soldering, electronic components and circuit parts on the PCB are conjoined by melting and fusing a metal alloy with a low melting point called a solder. There are other steps, such as adhesives or bindings, that ensure a proper flex adhesive is chosen so that your printed circuit board stays together. Other epoxy-based laminates are used to assemble your PCB, and Candor utilizes special materials that ensure that boards meet our quality standards. For instance, Black FR4 is a substrate material used for high-performance applications that require excellent electrical and mechanical properties.
04
Quality Control and Inspection
Inspection is the critical final step in Candor’s PCB assembly process. This involves examining the assembled board and ensuring it meets our quality standards. The inspection process helps to identify errors and defects and thwarts other issues that could impact the board’s functionality or reliability. We only deliver excellent, functional, dependable products to our customers.
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Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
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Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made for single layer, double layer, and multilayer boards. Paste application, automated component placement, soldering, and inspection create your unique PCB, and each stage requires different equipment to ensure your PCB is built correctly, functions as intended, and meets our standards.
Item Title
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made for single layer, double layer, and multilayer boards. Paste application, automated component placement, soldering, and inspection create your unique PCB, and each stage requires different equipment to ensure your PCB is built correctly, functions as intended, and meets our standards.
Item Title
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made for single layer, double layer, and multilayer boards. Paste application, automated component placement, soldering, and inspection create your unique PCB, and each stage requires different equipment to ensure your PCB is built correctly, functions as intended, and meets our standards.


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Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
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Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
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Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
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Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
Section Title
List Items with Images Below
Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
Single Layer PCB
Single-layer or single-sided PCBs are the most common type of board. These boards have a single conductive copper layer sitting above the substrate, with electrical components soldered to one side. There is an etched circuit visible on a single side of the board, with a single conductive layer, and paths that do not overlap. Single-sided PCBs function best for low-density design requirements and are used for basic electronics such as radios, power supplies, and calculators. They’re easy to manufacture, cost-effective, and simple to repair.

Single Layer PCB
Single-layer or single-sided PCBs are the most common type of board. These boards have a single conductive copper layer sitting above the substrate, with electrical components soldered to one side. There is an etched circuit visible on a single side of the board, with a single conductive layer, and paths that do not overlap. Single-sided PCBs function best for low-density design requirements and are used for basic electronics such as radios, power supplies, and calculators. They’re easy to manufacture, cost-effective, and simple to repair.

Section Title
List Items in Text Blurbs
Our clients get the benefit of our unique processes combined with our one-to-one customer service mindset that provides advances in technology and design.
I am a heading
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
I am a heading
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
I am a heading
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
I am a heading
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
I am a heading
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
I am a heading
Our PCB assembly process occurs in four unique stages, where key elements and considerations must be made.
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Consumer Electronics
Smartphones, Tablets, Wireless Systems, Video Game Consoles, Handheld Devices
Military/Aerospace
Radar Systems, Satellite Communications, Defense Systems
High Power Applications
Amplifiers, High-Power Transmitters
Medical Devices
X-Ray Machines
Automotive
Navigation Systems, Communication Systems
Industrial
Robotics, Industrial Automation
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Table Design in Rows with Two Columns
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PCB Capability
Circuit Board Materials
Regular FR4
This material can be supplied from Isola, Taiwan Leader, King Board, and Ventec, with product numbers KB6160, TLFR4135, FR406, and VT42. It is flame retardant and resistant, with a good resistance-weight ratio. It uses bromine, does not absorb water, and features a good insulating capacity in various environmental types.
HiTg FR4
This material can be supplied from King Board, Panasonic, Ventec, and Isola, with product numbers KB6167, R1755v, 370HR, and VT47. HiTg has better resistance to heat, moisture, and chemicals, and is made from more stable epoxy glass. It is widely used in computers and precise instruments.
Special FR4
This material can be supplied from Isola, with product numbers IS410, and FR408. Special FR4 is woven glass-reinforced epoxy resin, crafted with improved mechanical strength and water resistance.
RF / High-Frequency Material
This material can be supplied from Rogers and Arlon, with product numbers RO4000, RO4500, and AD250. It has excellent dielectric properties and is a familiar PCB laminate.
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Table Design for Innovation
Design Objectives
Customer Product Benefit
Functional, Qualitative, AestheticPractically perfect plating thickness both in hole and on the surface, with liquid photoresist the conventional issues wtih panel plating are solved. Customer impedance characteristics are easily achievable, unlocking 2% tolerances
Extremly accurate line widths and tolerances
List Item with Sub-Bullets
Practically perfect plating thickness both in hole and on the surface, with liquid photoresist the conventional issues wtih panel plating are solved. Customer impedance characteristics are easily achievable, unlocking 2% tolerances
Extremly accurate line widths and tolerances
Extremly accurate line widths and tolerances
Extremly accurate line widths and tolerances
Practically perfect plating thickness both in hole and on the surface, with liquid photoresist the conventional issues wtih panel plating are solved. Customer impedance characteristics are easily achievable, unlocking 2% tolerances
Capabilities Cards
Below lists what you can achieve working with Candor Industries. Rigid, rigid-flex, and flex circuit boards have the same design limits.
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Form Design
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Our Process
Advantages of BGA
High Density:
BGAs replace PGAs’ pins with solder balls, increasing efficiency and freeing space for compact designs. This improvement streamlines layouts, reduces manufacturing complexity, and shortens turnaround times, solving key challenges in PCB packaging.
Heat Conduction
With lower thermal resistance, BGAs improve heat transfer across the PCB, allowing better dissipation and minimizing overheating risks. Enhanced thermal performance protects components and ensures stable, efficient operation of the circuit.
Easy Packaging
BGAs simplify assembly with self-aligning solder balls that heat-secure to the PCB, forming strong connections. This process minimizes the risk of misalignment or damage, streamlining manufacturing and improving reliability
Lower Cost
BGAs reduce costs with fewer components, simpler assembly, and efficient use of space. By improving thermal management and interconnection density, they cut production time and offer cost-effective solutions without sacrificing quality.
use case by industry
Applications of Thick PCBs
Automotive
Ideal for advanced driver assistance systems (ADAS) and infotainment, HDI PCBs enhance vehicle safety, performance, and connectivity.
Military and Aerospace
Compact and durable, HDI PCBs handle high-performance requirements for navigation, communication, and mission-critical systems.
Telecommunications
Essential for 5G and high-frequency applications, HDI PCBs ensure fast signal transmission and reliable connectivity for global networks.
Industrial
HDI PCBs improve performance in robotics, sensors, and control systems, supporting the efficiency of automated industrial processes.
Medical Electronics
Compact and durable, HDI PCBs handle high-performance requirements for navigation, communication, and mission-critical systems.
Consumer Electronics
HDI PCBs power compact devices like smartphones, tablets, and wearables, enabling high functionality in small form factors for modern consumers.

