Allicdata Part #: | 3D1.6UL-ND |
Manufacturer Part#: |
3D1.6UL |
Price: | $ 54.05 |
Product Category: | Uncategorized |
Manufacturer: | Altech Corporation |
Short Description: | 3D1.6UL 1.6A CIRCUIT BREAKER D C |
More Detail: | N/A |
DataSheet: | 3D1.6UL Datasheet/PDF |
Quantity: | 1000 |
4 +: | $ 49.14000 |
Series: | * |
Part Status: | Active |
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Advanced shielding technology, or AST, has been developed over the past few years to provide improved performance in 3D1.6UL applications. AST utilizes an extra layer of conductive material and an insulating material to create a barrier that prevents the passage of electromagnetic waves. The AST layer is typically made up of a thin metallic foil, which is placed between two non-electrically-conductive materials (such as polyethylene foam or dense plastic). Depending on the application, different types of foams and plastics may be chosen to optimize the performance of the shield. AST has been used in a variety of applications, including medical imaging equipment, aircraft, automotive, telecommunications, and satellite communications.
The 3D1.6UL application field is characterized by the need for efficient and reliable shielding technology in order to protect electronic systems from various electromagnetic interference sources. This is achieved by creating a barrier around the equipment to prevent outside radio frequencies from entering and interfering with the system. The AST layer acts as a barrier to stop the interference, while at the same time allowing the desired signal frequencies or data to pass through. In some cases, the AST layer can also be used to reduce the noise generated by the system itself.
The working principle of AST in 3D1.6UL applications is relatively simple. The extra layer of the metal foil effectively acts as a shield to block out electrical signals from outside sources, while allowing the desired signal frequencies to pass through. The metal foil is made up of multiple alternating conducting and non-conducting layers, which form the desired dielectric boundary. The thickness of the foil is also a critical factor in determining the shielding effectiveness of the system, as a thicker foil will create a more effective shield. The desired signal frequencies are able to pass through the AST due to the unique design of the AST layer, which allows the electromagnetic waves to pass through the alternating layers without any disruption.
In addition to providing shielding protection, AST also offers physical protection for the equipment. It can be used to protect against shock and vibration, and it can also provide insulation against dust and water. AST also has other advantages, such as increased signal integrity, improved signal stability, and improved signal performance. In addition, the AST layer acts as a heat-dissipating material, which can help reduce the heat generated by the system.
In conclusion, 3D1.6UL AST is a versatile shielding technology which can provide significant protection against a variety of interference sources. Its unique design allows it to provide both shielding protection and physical protection for the equipment, while also helping to improve signal integrity and other performance characteristics. AST is a reliable and efficient technology which is well suited for a variety of applications, and it is rapidly becoming the standard for shielding technology in many industries.
The specific data is subject to PDF, and the above content is for reference
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