Tin-plated EMI Strips 0077007102

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Tin-plated EMI Strips 0077007102
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We supply Tin-plated emi strips 0077007102 of shielding finger.After tin plating on these fingerstock,it can prevent surface oxidation of the product,thereby increasing its corrosion resistance. At the same time, it can increase its conductivity.
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Fingerstock
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Description
Product Introduction

 

We supply Tin-plated emi strips 0077007102 of shielding finger.After tin plating on these fingerstock,it can prevent surface oxidation of the product,thereby increasing its corrosion resistance. At the same time, it can increase its conductivity.

 

Product Parameter

 

 
 

52

Part Number

T(mm)

A

B

C

D

P

S

Lmax

Nodes

Surface Color

MB-1071-01

0.08

11.43

3.3

6.7

1.65

3.175

0.46

406 mm

128

Bright Finish

MB-1071-0S/N

0.08

11.43

3.3

6.7

1.65

3.175

0.46

406 mm

128

-0S:Tin / -0N:Nickel

MB-1071C-01

0.08

11.43

3.3

6.7

1.65

3.175

0.46

7.62 M

2400

Coil; Bright Finish

MB-2071-01

0.05

11.43

3.3

6.7

1.65

3.175

0.46

406 mm

128

Bright Finish

MB-2071-0S/N

0.05

11.43

3.3

6.7

1.65

3.175

0.46

406 mm

128

-0S:Tin / -0N:Nickel

MB-2071C-01

0.05

11.43

3.3

6.7

1.65

3.175

0.46

7.62 M

2400

Coil; Bright Finish

Re: Length can be cut into X nodes, X=1.2.3.4..., The surface also can be plated with Gold. Silver & Zinc etc;

Notes: The longer node is consisted of five shorter nodes, referring to 15.88 mm.

19

Product feature and application

 

Tin-plated EMI (Electromagnetic Interference) strips of shielding finger are used for providing electromagnetic shielding in various electronic and electrical applications. The primary feature of these strips is their ability to block or reduce the electromagnetic radiation emitted by electronic components or devices. Here are some applications and features of tin-plated EMI strips of shielding finger:

Features:

Tin-plated Coating: The tin-plated coating on the strips enhances their electrical conductivity and corrosion resistance, making them suitable for long-term use in various environments.

Shielding Effectiveness: These strips are designed to provide high shielding effectiveness, minimizing the passage of electromagnetic interference and preventing signal degradation or disruption.

Finger Design: The finger-like structure of the strips allows them to be easily installed or attached to specific areas, providing targeted shielding to vulnerable components or sections.

Flexibility: Tin-plated EMI strips are often made of flexible materials, enabling them to conform to irregular shapes or bends, making them suitable for a wide range of applications.

Easy Installation: These strips are typically designed for simple installation, allowing them to be easily applied to electronic devices or equipment during manufacturing or as a retrofit solution.

Applications:

Printed Circuit Boards (PCBs): Tin-plated EMI strips can be used to shield sensitive components on PCBs from external electromagnetic interference, reducing the risk of signal degradation or malfunction.

Electronic Enclosures: These strips are often utilized to line the interior walls of electronic enclosures, creating a conductive barrier that prevents electromagnetic radiation from entering or escaping the enclosure.

Cables and Connectors: Tin-plated shielding fingers can be employed on cables and connectors to suppress electromagnetic interference, ensuring reliable signal transmission and minimizing the risk of cross-talk or data corruption.

Telecommunications Equipment: EMI strips are commonly used in telecommunications devices such as routers, switches, and base stations to prevent interference between components and improve overall system performance.

Medical Devices: Medical equipment sensitive to electromagnetic interference, such as MRI machines or implantable devices, can benefit from tin-plated EMI strips to maintain signal integrity and ensure accurate operation.

 

Production details

 

product-750-608product-750-544

In today's rapidly advancing technological landscape, electromagnetic interference (EMI) poses a significant challenge to the performance and reliability of electronic devices. To combat this issue, the use of effective shielding solutions has become essential. One such solution is tin-plated EMI strips of shielding finger, which not only provide effective EMI shielding but also offer added advantages in terms of surface oxidation prevention and increased conductivity. This article explores the benefits and applications of tin-plated EMI strips of shielding finger, shedding light on their role in improving product performance and durability.

EMI Shielding: An Essential Requirement: Electromagnetic interference refers to the disruption caused by electromagnetic waves emitted from electronic devices. This interference can adversely affect the operation of nearby electronic components and systems, leading to reduced performance, signal degradation, and even complete system failure. To counteract EMI, effective shielding measures are required, and one such measure involves the use of EMI strips of shielding finger.

Tin-Plated Shielding Finger: Enhancing Performance: The tin-plated EMI strips of shielding finger are a specialized solution designed to offer superior EMI protection. These strips are typically made from highly conductive materials, such as copper or beryllium copper, which provide excellent shielding effectiveness. However, the application of a tin-plating layer to these fingerstocks offers additional benefits that enhance the overall performance of the product.

Surface Oxidation Prevention: One of the key advantages of tin plating on shielding fingerstock is its ability to prevent surface oxidation. Oxidation can occur over time due to exposure to environmental factors like moisture, heat, and corrosive agents. When the surface of the fingerstock oxidizes, it can compromise the shielding effectiveness and electrical conductivity of the material. Tin plating acts as a protective layer, effectively preventing oxidation and ensuring consistent performance over an extended period.

Corrosion Resistance: By inhibiting surface oxidation, tin-plated EMI strips of shielding finger provide increased corrosion resistance. This is particularly beneficial in applications where the products may be exposed to harsh environments, such as outdoor installations or industrial settings. The corrosion-resistant properties of tin plating help to maintain the structural integrity of the fingerstock, prolonging its lifespan and ensuring reliable performance.

Enhanced Conductivity: In addition to its protective properties, tin plating also improves the electrical conductivity of the shielding fingerstock. Tin is a highly conductive material, allowing for efficient transmission of electrical signals and minimizing losses. The increased conductivity provided by the tin-plated fingerstock contributes to better signal integrity and reduced electrical noise, resulting in improved overall product performance.

Applications and Industries: Tin-plated EMI strips of shielding finger find applications in a wide range of industries and electronic devices. They are commonly utilized in telecommunications equipment, medical devices, automotive electronics, aerospace systems, and industrial machinery, among others. These fingerstocks can be customized to meet specific requirements, including shape, size, and thickness, making them adaptable to various design needs.

Conclusion: Tin-plated EMI strips of shielding finger offer a valuable solution for combating electromagnetic interference while simultaneously providing surface oxidation prevention, corrosion resistance, and enhanced conductivity. These advantages contribute to improved product performance, durability, and reliability in a wide range of industries. As technology continues to evolve, the demand for effective EMI shielding solutions will persist, making tin-plated shielding fingerstocks a crucial component in the quest for optimal device performance and longevity.

 

Product qualification

 

Manufacturing Process Flow Of BeCu Fingerstock

product-750-294

Design And Manufacturing Capability Of Toolings

 

Advantages of the company

Two professional Tooling designers both have more than10 Years of design experience.We break through thetechnical difficulties in the stamping field with imported tooling processing equipment and powerful tooling manufacturing capacity.More than 15 sets of molds can be completed each month.

Fast delivery: 7 days for manual samples and 16 days for mass production molds.

Extraordinarily Tooling life: our company adopts special mold materials for more than 100 million times.

Our Company mainly uses raw materials from BrushWellman Co.,Ltd of the USA.

Major Equipments:

Precision grinder:4 sets;

Milling machine :3 sets;

Drilling machine: 3 sets;

Wire-electrode cutting: 2 sets;

The millwrights:1 set;

Else: 5 sets

21

Deliver,shipping and serving

 

product-558-1039

FAQ

 

Questions and keys of fingerstock and gaskets procurement purchase:

Q1: What is the purpose of tin-plated EMI strips?

A1: Tin-plated EMI strips are used to provide electromagnetic shielding by blocking or reducing electromagnetic interference in electronic and electrical applications.

 

Q2: What does the tin-plated coating on the EMI strips do?

A2: The tin-plated coating enhances the electrical conductivity and corrosion resistance of the strips, making them suitable for long-term use and ensuring reliable performance.

 

Q3: Can tin-plated EMI strips be easily installed?

A3: Yes, tin-plated EMI strips are designed for easy installation. They can be applied during manufacturing or retrofitted to existing equipment, making them convenient to use.

 

Q4: What are the advantages of using tin-plated EMI strips?

A4: The advantages include high shielding effectiveness, flexibility to conform to various shapes, resistance to corrosion, and ease of installation.

 

Q5: Are there any safety considerations when using tin-plated EMI strips?

A5: Safety considerations may vary depending on the application. It is important to follow appropriate guidelines and standards to ensure proper grounding and minimize any potential risks associated with electrical or electromagnetic fields.

 

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