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1-36 Layers Rigid-Flex boards incorporating Circle PCB Outline technology

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1-36 Layers Rigid-Flex boards incorporating Circle PCB Outline technology

Country/Region china
City & Province shenzhen
Categories Electronics Stocks
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Product Details

1-36layers Rigid-flex boards incorporating Circle Pcb Outline technology

Product Description:

Rigid-Flexible PCB Product Overview

Rigid-Flexible PCB, also known as Rigid-Flex Circuit Boards, is a type of printed circuit board that combines both rigid and flexible circuitry in a single board. It is widely used in various electronic devices due to its unique characteristics and advantages.

Product Attributes:
  • Cu Weight: 0.5-4 0z
  • Certificates: ISO9001, ISO14001, IATF16949, UL
  • Layers: 1-36layers
  • Solder Mask: Yellow, Blue, Black, White...
  • Maximum Panel Size: 600mm X 1200mm
Product Description:

Our Rigid-Flexible PCBs are manufactured using advanced technology and high-quality materials to ensure excellent performance and durability. They are designed to provide a flexible and reliable solution for complex electronic applications that require both rigid and flexible circuitry in a compact form.

The Rigid-Flexible PCB consists of multiple layers of rigid and flexible materials, connected through plated through-holes and conductive adhesive. The flexible layers are made of polyimide, while the rigid layers are made of epoxy resin or polyimide-glass composites. This combination of materials allows for high-density interconnection and enables the board to bend and flex without breaking.

Customized Design:

We offer customized design services for our Rigid-Flexible PCBs to meet the specific requirements of our customers. Our team of experienced engineers and designers work closely with clients to understand their needs and create a tailored solution that meets their unique application needs.

We can customize the number of layers, copper weight, solder mask color, and panel size according to the customer's specifications. We also ensure that our Rigid-Flexible PCBs comply with industry standards and have the necessary certifications, such as ISO9001, ISO14001, IATF16949, and UL, for quality assurance.

Conclusion:

In summary, our Rigid-Flexible PCBs offer a versatile and efficient solution for electronic devices that require both rigid and flexible circuitry. With our advanced manufacturing technology, high-quality materials, and customized design services, we are committed to providing our customers with top-quality Rigid-Flexible PCBs that meet their unique needs and exceed their expectations.

 

Features:

  • Product Name: Rigid flexible PCB
  • Cu Weight: 0.5-4 0z
  • Maximum Panel Size: 600mm X 1200mm
  • Minimum Bend Radius: 0.5mm
  • Drilling Size: Min 0.0078”(0.2mm)
  • Service: One-stop Service / OEM,DFM
  • Rigid Flex Hybrid PCB
  • Rigid-Flex Circuitry
  • Flex-Rigid Circuit Boards
 

Technical Parameters:

Rigid Flexible PCB Technical Parameters
ServiceOne-stop Service / OEM,DFM
Pcba TestX-ray,AOI Test,Functional Test
CertificatesISO9001, ISO14001, IATF16949, UL
Function Test100% Functional Test
ColorGreen,blue
Maximum Panel Size600mm X 1200mm
Layers1-36 layers
Polyimide Base MaterialPolyimide Flex
Pcb OutlineSquare, Circle, Irregular(with Jigs)
Application SegmentAuto, Industrial, Medical, DataCom,Comsumer
 

Applications:

Rigid Flexible PCB: A Versatile Solution for Electronic Devices

Rigid-flexible PCB, also known as flex-rigid printed circuit board, is a unique type of printed circuit board that combines the benefits of both rigid and flexible PCBs. It is a highly versatile and durable solution that is commonly used in various electronic devices. Let's explore some application scenarios and scenes of this product.

  • Rigid-flex boards for Wearable Devices: With the increasing popularity of wearable devices such as smartwatches, fitness trackers, and VR headsets, the demand for compact and lightweight electronic components is on the rise. Rigid-flex boards are an ideal choice for these devices as they can be bent, twisted, and folded without compromising functionality. This makes them suitable for various applications in the healthcare, fitness, and entertainment industries.
  • Flexible Printed Circuit Board for Automotive Electronics: In the automotive industry, space is a major constraint. Rigid-flex boards are used in various electronic components of vehicles such as navigation systems, infotainment systems, and engine control units. The flexible nature of these boards allows them to be easily integrated into different areas of the vehicle, making them a perfect fit for the automotive industry.
  • PCB Assembly for Aerospace and Defense: The aerospace and defense industries require high-performance electronic devices that can withstand extreme temperatures, vibrations, and shocks. Rigid-flex boards are designed to meet these requirements and are commonly used in avionics, satellites, and military equipment. They offer high density interconnects, which reduce the size and weight of the devices, making them suitable for use in space and defense applications.
  • High-Density Interconnects for Medical Equipment: Medical equipment such as MRI machines, ultrasound scanners, and pacemakers require high-density interconnects for efficient functioning. Rigid-flex boards offer a high level of flexibility, which is crucial for these devices to operate accurately and consistently. Additionally, their compact size and lightweight nature make them ideal for use in medical equipment.

In addition to the above-mentioned scenarios, rigid-flex boards are also used in consumer electronics, industrial machinery, and communication devices. Thanks to their one-stop service and OEM, DFM capabilities, they can be customized to meet the specific requirements of different industries. With a Cu weight range of 0.5-4 oz and layer count of 2-8 layers, these boards are highly versatile and can be designed in a variety of shapes and sizes. The use of polyimide flex as a base material makes them resistant to high temperatures, chemicals, and moisture, ensuring their durability and reliability.

In conclusion, rigid-flexible PCBs are a crucial component in the world of electronics, offering a combination of strength, flexibility, and reliability. Their diverse applications and customizable features make them a popular choice for various industries. With a maximum panel size of 600mm X 1200mm, these boards can be used in both small and large electronic devices, making them an essential product for the modern world.

 

Customization:

Customized Service for Rigid Flexible PCB
Product Attributes:
  • Service: One-stop Service / OEM, DFM
  • Layers: 1-36layers
  • Certificates: ISO9001, ISO14001, IATF16949, UL
  • Layer Count: 2-8 Layers
  • Function Test: 100% Functional Test
Key Features:
  • Rigid Flex Hybrid PCB
  • Flex-Rigid Circuit Boards
  • Flexible-rigid printed circuit board
 

Packing and Shipping:

Rigid-flexible PCB Packaging and Shipping

Our rigid-flexible PCBs are carefully packaged and shipped to ensure safe delivery to our customers. Each board is individually wrapped and placed in a protective foam layer to prevent any damage during transportation.

Packaging Process

First, our rigid-flexible PCBs are inspected for quality and functionality. Then, they are carefully wrapped in anti-static bags to prevent any electrostatic damage.

Next, the boards are placed in a sturdy cardboard box with additional padding to provide extra protection. The box is sealed with strong tape to ensure the boards do not shift during transit.

For larger orders, multiple boards are stacked and placed in a custom-designed shipping container to ensure safe delivery.

Shipping Methods

We offer various shipping methods to accommodate our customers' needs. Our standard shipping method is by air, using trusted courier services such as DHL, FedEx, and UPS.

For urgent orders, we also offer expedited shipping options at an additional cost. We can also arrange for sea freight shipping for larger orders upon request.

Customs and Duties

Please note that customers are responsible for any customs and duties fees that may be incurred during shipping. We will provide all necessary documentation to assist with the customs clearance process.

For any special packaging or shipping requests, please contact us and we will do our best to accommodate your needs.

 

FAQ:

  • The rigid part of the PCB is made of FR4, which is a flame-retardant glass fiber epoxy laminate material.
  • The flexible part of the PCB is made of polyimide, which is a high-performance, heat-resistant plastic material.
Q: What are the advantages of using Rigid flexible PCB? A:
  • Rigid flexible PCBs are highly reliable and have a longer lifespan compared to traditional rigid PCBs.
  • They are lightweight, compact, and can be easily mounted in tight spaces.
  • They reduce the need for connectors and solder joints, minimizing the chances of failure.
  • They can withstand high temperatures and have better thermal stability.
  • They are more cost-effective in terms of material and labor costs.
Q: What industries typically use Rigid flexible PCB? A:
  • Rigid flexible PCBs are widely used in aerospace, military, medical, and automotive industries.
  • They are also commonly used in consumer electronics such as smartphones, laptops, and wearables.
  • Industries that require high reliability, durability, and compact designs often opt for rigid flexible PCBs.
Q: How are Rigid flexible PCBs manufactured? A:
  • Rigid flexible PCBs are typically manufactured using a combination of traditional PCB processes and specialized techniques for flex PCBs.
  • The rigid and flexible parts are designed separately and then connected through a lamination process.
  • Copper traces are etched onto the flexible substrate, and components are mounted using specialized methods to ensure flexibility.
Q: What are the design considerations for Rigid flexible PCBs? A:
  • The design must take into account the bending and flexing requirements of the flexible part of the PCB.
  • The placement of components and routing of traces must be carefully planned to avoid stress and strain on the flexible part.
  • The design must also consider the thermal expansion and contraction differences between the rigid and flexible parts.
  • Specialized materials and techniques may be required for high-speed and high-frequency applications.

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